sfizz/tests/BufferT.cpp

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// Copyright (c) 2019, Paul Ferrand
// All rights reserved.
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#include "sfizz/Buffer.h"
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#include "catch2/catch.hpp"
#include <algorithm>
using namespace Catch::literals;
TEST_CASE("[Buffer] Empty (float)")
{
sfz::Buffer<float> emptyBuffer;
REQUIRE(emptyBuffer.empty());
REQUIRE(emptyBuffer.size() == 0);
}
TEST_CASE("[Buffer] Empty (int)")
{
sfz::Buffer<int> emptyBuffer;
REQUIRE(emptyBuffer.empty());
REQUIRE(emptyBuffer.size() == 0);
}
TEST_CASE("[Buffer] Empty (double)")
{
sfz::Buffer<double> emptyBuffer;
REQUIRE(emptyBuffer.empty());
REQUIRE(emptyBuffer.size() == 0);
}
TEST_CASE("[Buffer] Empty (uint8_t)")
{
sfz::Buffer<uint8_t> emptyBuffer;
REQUIRE(emptyBuffer.empty());
REQUIRE(emptyBuffer.size() == 0);
}
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template <class Type>
void checkBoundaries(sfz::Buffer<Type>& buffer, int expectedSize)
{
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REQUIRE((int)buffer.size() == expectedSize);
REQUIRE(((size_t)buffer.data() & (sfz::SIMDConfig::defaultAlignment - 1)) == 0);
REQUIRE(((size_t)buffer.alignedEnd() & (sfz::SIMDConfig::defaultAlignment - 1)) == 0);
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REQUIRE(std::distance(buffer.begin(), buffer.end()) == expectedSize);
REQUIRE(std::distance(buffer.begin(), buffer.alignedEnd()) >= expectedSize);
}
TEST_CASE("[Buffer] 10 floats ")
{
const int baseSize { 10 };
sfz::Buffer<float> buffer(baseSize);
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checkBoundaries(buffer, baseSize);
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for (auto& element : buffer)
element = 0.0f;
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for (auto& element : buffer)
REQUIRE(element == 0.0f);
}
TEST_CASE("[Buffer] Resize 10 floats ")
{
const int baseSize { 10 };
const int smallSize { baseSize / 2 };
const int bigSize { baseSize * 2 };
sfz::Buffer<float> buffer(baseSize);
REQUIRE(!buffer.empty());
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checkBoundaries(buffer, baseSize);
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std::fill(buffer.begin(), buffer.end(), 1.0f);
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REQUIRE(buffer.resize(smallSize));
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checkBoundaries(buffer, smallSize);
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REQUIRE(std::all_of(buffer.begin(), buffer.end(), [](auto value) { return value == 1.0f; }));
REQUIRE(buffer.resize(bigSize));
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checkBoundaries(buffer, bigSize);
for (auto i = 0; i < smallSize; ++i)
REQUIRE(buffer[i] == 1.0f);
}
TEST_CASE("[Buffer] Resize 4096 floats ")
{
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const int baseSize { 4096 };
const int smallSize { baseSize / 2 };
const int bigSize { baseSize * 2 };
sfz::Buffer<float> buffer(baseSize);
REQUIRE(!buffer.empty());
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checkBoundaries(buffer, baseSize);
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std::fill(buffer.begin(), buffer.end(), 1.0f);
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REQUIRE(buffer.resize(smallSize));
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checkBoundaries(buffer, smallSize);
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REQUIRE(std::all_of(buffer.begin(), buffer.end(), [](auto value) { return value == 1.0f; }));
REQUIRE(buffer.resize(bigSize));
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checkBoundaries(buffer, bigSize);
for (auto i = 0; i < smallSize; ++i)
REQUIRE(buffer[i] == 1.0f);
}
TEST_CASE("[Buffer] Resize 65536 floats ")
{
const int baseSize { 10 };
const int smallSize { baseSize / 2 };
const int bigSize { baseSize * 2 };
sfz::Buffer<float> buffer(baseSize);
REQUIRE(!buffer.empty());
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checkBoundaries(buffer, baseSize);
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std::fill(buffer.begin(), buffer.end(), 1.0f);
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REQUIRE(buffer.resize(smallSize));
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checkBoundaries(buffer, smallSize);
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REQUIRE(std::all_of(buffer.begin(), buffer.end(), [](auto value) { return value == 1.0f; }));
REQUIRE(buffer.resize(bigSize));
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checkBoundaries(buffer, bigSize);
for (auto i = 0; i < smallSize; ++i)
REQUIRE(buffer[i] == 1.0f);
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}
TEST_CASE("[Buffer] Copy and move")
{
const int baseSize { 128 };
sfz::Buffer<float> buffer(baseSize);
sfz::Buffer<float> copied { baseSize - 4 };
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std::fill(buffer.begin(), buffer.end(), 1.0f);
std::fill(copied.begin(), copied.end(), 2.0f);
copied = buffer;
checkBoundaries(copied, baseSize);
REQUIRE(std::all_of(copied.begin(), copied.end(), [](auto value) { return value == 1.0f; }));
sfz::Buffer<float> copyConstructed { buffer };
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checkBoundaries(copyConstructed, baseSize);
REQUIRE(std::all_of(copyConstructed.begin(), copyConstructed.end(), [](auto value) { return value == 1.0f; }));
// sfz::Buffer<float> moveConstructed { std::move(buffer) };
// REQUIRE(buffer.empty());
// checkBoundaries(moveConstructed, baseSize);
// REQUIRE(std::all_of(moveConstructed.begin(), moveConstructed.end(), [](auto value) { return value == 1.0f; }));
}