sfizz/tests/EventEnvelopesT.cpp
2020-03-14 17:32:25 +01:00

389 lines
14 KiB
C++

// 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/EventEnvelopes.h"
#include "sfizz/SfzHelpers.h"
#include "sfizz/Buffer.h"
#include "catch2/catch.hpp"
#include <absl/algorithm/container.h>
#include <absl/types/span.h>
#include <algorithm>
#include <array>
#include <iostream>
using namespace Catch::literals;
template <class Type>
inline bool approxEqual(absl::Span<const Type> lhs, absl::Span<const Type> rhs, Type eps = 1e-3)
{
if (lhs.size() != rhs.size())
return false;
for (size_t i = 0; i < rhs.size(); ++i)
if (rhs[i] != Approx(lhs[i]).epsilon(eps)) {
std::cerr << lhs[i] << " != " << rhs[i] << " at index " << i << '\n';
return false;
}
return true;
}
TEST_CASE("[LinearEnvelope] Basic state")
{
sfz::LinearEnvelope<float> envelope;
std::array<float, 5> output;
std::array<float, 5> expected { 0.0f, 0.0f, 0.0f, 0.0f, 0.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Basic event")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(4, 1.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.25f, 0.5f, 0.75f, 1.0f, 1.0f, 1.0f, 1.0f, 1.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] 2 events, close")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(4, 1.0f);
envelope.registerEvent(5, 2.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.25f, 0.5f, 0.75f, 1.0f, 2.0f, 2.0f, 2.0f, 2.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] 2 events, far")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 2.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.5f, 1.0f, 1.25f, 1.5f, 1.75f, 2.0f, 2.0f, 2.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] 2 events, reversed")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(6, 2.0f);
envelope.registerEvent(2, 1.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.5f, 1.0f, 1.25f, 1.5f, 1.75f, 2.0f, 2.0f, 2.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] 3 events, overlapping")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 2.0f);
envelope.registerEvent(6, 3.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.5f, 1.0f, 1.5f, 2.0f, 2.5f, 3.0f, 3.0f, 3.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] 3 events, out of block")
{
// sfz::LinearEnvelope<float> envelope;
// envelope.registerEvent(2, 1.0f);
// envelope.registerEvent(6, 2.0f);
// envelope.registerEvent(10, 3.0f);
// std::array<float, 8> output;
// std::array<float, 8> expected { 0.5f, 1.0f, 1.25f, 1.5f, 1.75f, 2.0f, 3.0f, 3.0f }; // TODO: this one is a bit strange
// envelope.getBlock(absl::MakeSpan(output));
// REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] 3 events, out of block, with another block call")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 2.0f);
envelope.registerEvent(10, 3.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 3.0f, 3.0f, 3.0f, 3.0f, 3.0f, 3.0f, 3.0f, 3.0f };
envelope.getBlock(absl::MakeSpan(output));
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] 2 events, with another block call")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 2.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 2.0f, 2.0f, 2.0f, 2.0f, 2.0f, 2.0f, 2.0f, 2.0f };
envelope.getBlock(absl::MakeSpan(output));
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] 2 events, function")
{
sfz::LinearEnvelope<float> envelope;
envelope.setFunction([](float x) { return 2 * x; });
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 2.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 1.0f, 2.0f, 2.5f, 3.0f, 3.5f, 4.0f, 4.0f, 4.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Get quantized")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 2.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.0f, 1.0f, 1.0f, 1.0f, 1.0f, 2.0f, 2.0f, 2.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Get quantized with unquantized targets")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.1f);
envelope.registerEvent(6, 1.9f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.0f, 1.0f, 1.0f, 1.0f, 1.0f, 2.0f, 2.0f, 2.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Get quantized with 2 steps")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 3.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.0f, 1.0f, 1.0f, 2.0f, 2.0f, 3.0f, 3.0f, 3.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Get quantized with 2 steps and an unquantized out of block step")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 3.0f);
envelope.registerEvent(10, 4.2f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.0f, 1.0f, 1.0f, 2.0f, 2.0f, 3.0f, 4.0f, 4.0f };
std::array<float, 8> expected2 { 4.0f, 4.0f, 4.0f,4.0f, 4.0f, 4.0f, 4.0f, 4.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected2);
}
TEST_CASE("[LinearEnvelope] Going down quantized with 2 steps")
{
sfz::LinearEnvelope<float> envelope;
envelope.reset(3.0f);
envelope.registerEvent(2, 2.0f);
envelope.registerEvent(6, 0.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 3.0f, 2.0f, 2.0f, 1.0f, 1.0f, 0.0f, 0.0f, 0.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Get quantized with 2 steps and starting unquantized")
{
sfz::LinearEnvelope<float> envelope;
envelope.reset(0.1f);
envelope.registerEvent(3, 1.0f);
envelope.registerEvent(7, 3.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.1f, 0.1f, 1.0f, 1.0f, 2.0f, 2.0f, 3.0f, 3.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Going down quantized with 2 steps and starting unquantized")
{
sfz::LinearEnvelope<float> envelope;
envelope.reset(3.6f);
envelope.registerEvent(4, 1.0f);
envelope.registerEvent(7, 0.0);
std::array<float, 8> output;
std::array<float, 8> expected { 3.6f, 3.0f, 2.0f, 2.0f, 1.0f, 1.0f, 0.0f, 0.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Get quantized with unclean events")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.2f);
envelope.registerEvent(6, 2.5f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.0f, 1.0f, 1.0f, 2.0f, 2.0f, 3.0f, 3.0f, 3.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
}
TEST_CASE("[LinearEnvelope] Get quantized 3 events, one out of block")
{
sfz::LinearEnvelope<float> envelope;
envelope.registerEvent(2, 1.0f);
envelope.registerEvent(6, 2.0f);
envelope.registerEvent(10, 3.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.0f, 1.0f, 1.0f, 1.0f, 1.0f, 2.0f, 3.0f, 3.0f };
std::array<float, 8> expected2 { 3.0f, 3.0f, 3.0f, 3.0f, 3.0f, 3.0f, 3.0f, 3.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected);
envelope.getQuantizedBlock(absl::MakeSpan(output), 1.0f);
REQUIRE(output == expected2);
}
//
TEST_CASE("[MultiplicativeEnvelope] Basic state")
{
sfz::MultiplicativeEnvelope<float> envelope;
std::array<float, 5> output;
std::array<float, 5> expected { 1.0f, 1.0f, 1.0f, 1.0f, 1.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output == expected);
}
TEST_CASE("[MultiplicativeEnvelope] Basic event")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.registerEvent(4, 2.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 1.1892f, 1.4142f, 1.68176f, 2.0f, 2.0f, 2.0f, 2.0f, 2.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(approxEqual<float>(output, expected));
}
TEST_CASE("[MultiplicativeEnvelope] 2 events")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.registerEvent(4, 2.0f);
envelope.registerEvent(5, 4.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 1.1892f, 1.4142f, 1.68176f, 2.0f, 4.0f, 4.0f, 4.0f, 4.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(approxEqual<float>(output, expected));
}
TEST_CASE("[MultiplicativeEnvelope] 2 events, far")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.registerEvent(2, 2.0f);
envelope.registerEvent(6, 4.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 1.4142f, 2.0f, 2.37841f, 2.82843f, 3.36358f, 4.0f, 4.0f, 4.0f };
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(approxEqual<float>(output, expected));
}
TEST_CASE("[MultiplicativeEnvelope] Get quantized with 2 steps")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.registerEvent(2, 2.0f);
envelope.registerEvent(6, 4.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 1.0f, 2.0f, 2.0f, 2.0f, 2.0f, 4.0f, 4.0f, 4.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 2.0f);
REQUIRE(output == expected);
}
TEST_CASE("[MultiplicativeEnvelope] Get quantized with an unquantized out of range step")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.registerEvent(2, 2.0f);
envelope.registerEvent(6, 4.0f);
envelope.registerEvent(10, 8.2f);
std::array<float, 8> output;
std::array<float, 8> expected { 1.0f, 2.0f, 2.0f, 2.0f, 2.0f, 4.0f, 8.0f, 8.0f };
std::array<float, 8> expected2 { 8.0f, 8.0f, 8.0f, 8.0f, 8.0f, 8.0f, 8.0f, 8.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 2.0f);
REQUIRE(output == expected);
envelope.getQuantizedBlock(absl::MakeSpan(output), 2.0f);
REQUIRE(output == expected2);
}
TEST_CASE("[MultiplicativeEnvelope] Going down quantized with 2 steps")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.reset(4.0f);
envelope.registerEvent(2, 2.0f);
envelope.registerEvent(6, 0.5f);
std::array<float, 8> output;
std::array<float, 8> expected { 4.0f, 2.0f, 2.0f, 1.0f, 1.0f, 0.5f, 0.5f, 0.5f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 2.0f);
REQUIRE(output == expected);
}
TEST_CASE("[MultiplicativeEnvelope] Get quantized with unclean events")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.registerEvent(2, 1.2f);
envelope.registerEvent(6, 2.5f);
std::array<float, 8> output;
std::array<float, 8> expected { 1.0f, 1.0f, 1.0f, 1.0f, 1.0f, 2.0f, 2.0f, 2.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 2.0f);
REQUIRE(output == expected);
}
TEST_CASE("[MultiplicativeEnvelope] Get quantized with 2 steps and starting unquantized")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.reset(0.9f);
envelope.registerEvent(3, 1.0f);
envelope.registerEvent(7, 4.0f);
std::array<float, 8> output;
std::array<float, 8> expected { 0.9f, 0.9f, 1.0f, 1.0f, 2.0f, 2.0f, 4.0f, 4.0f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 2.0f);
REQUIRE(output == expected);
}
TEST_CASE("[MultiplicativeEnvelope] Going down quantized with 2 steps and starting unquantized")
{
sfz::MultiplicativeEnvelope<float> envelope;
envelope.reset(4.6f);
envelope.registerEvent(4, 1.0f);
envelope.registerEvent(7, 0.25f);
std::array<float, 8> output;
std::array<float, 8> expected { 4.6f, 2.0f, 1.0f, 1.0f, 0.5f, 0.5f, 0.25f, 0.25f };
envelope.getQuantizedBlock(absl::MakeSpan(output), 2.0f);
REQUIRE(output == expected);
}
TEST_CASE("[MultiplicativeEnvelope] Pitch envelope basic function")
{
sfz::Buffer<float> output { 256 };
sfz::MultiplicativeEnvelope<float> envelope;
envelope.setFunction([](float pitchValue){
const auto normalizedBend = sfz::normalizeBend(pitchValue);
const auto bendInCents = normalizedBend * 200.0f;
return sfz::centsFactor(bendInCents);
});
envelope.reset(0.0f);
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output[255] == 1.0_a);
envelope.registerEvent(252, -6020.0f);
envelope.getBlock(absl::MakeSpan(output));
REQUIRE(output[255] == Approx(0.9168).epsilon(0.01));
}