Rebekah Rowe 6c4b2e9186
Implement GPL3+ and Apache2.0 Dual License.
Commit is being made to allow additions of GPL3+ code previously
un-addable. With these changes, contributions back to cuberite are
possible with the backporting exemtion, as well as adding stuff in
minetest with minetest code properly being read through and implimented
to upgrade it to GPL3 from GPL2.

project still has Apache2.0 license and credits to all its contributers, but now has the freedom of GPL3+ and all the code that can be implimented and shared with it.
2023-03-20 11:49:56 -04:00

197 lines
6.5 KiB
C++

/*
* Copyright 2011-2022 Cuberite Contributors
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "Globals.h"
#include "../TestHelpers.h"
#include "ChunkData.h"
/** Helper that copies a data store into a contiguous flat array, filling in a default value for sections that aren't present. */
template <class StoreType, typename GetType, typename DefaultType, typename OutType>
static void CopyAll(const StoreType & Data, GetType Getter, DefaultType Default, OutType & Out)
{
constexpr auto SectionCount = std::extent_v<OutType> / 16;
for (size_t Y = 0; Y != 16; Y++)
{
const auto Section = (Data.*Getter)(Y);
static_assert(SectionCount == std::tuple_size<std::remove_pointer_t<decltype(Section)>>::value, "Output array has wrong size");
if (Section == nullptr)
{
std::fill_n(Out + Y * SectionCount, SectionCount, Default);
}
else
{
std::copy(Section->begin(), Section->end(), Out + Y * SectionCount);
}
}
}
/** Performs the entire Copies test. */
static void Test()
{
LOGD("Test started");
{
ChunkBlockData buffer;
buffer.SetBlock({ 3, 1, 4 }, 0xDE);
buffer.SetMeta({ 3, 1, 4 }, 0xA);
ChunkBlockData copy;
copy.Assign(buffer);
TEST_EQUAL(copy.GetBlock({ 3, 1, 4 }), 0xDE);
TEST_EQUAL(copy.GetMeta({ 3, 1, 4 }), 0xA);
BLOCKTYPE SrcBlockBuffer[16 * 16 * 256];
NIBBLETYPE SrcNibbleBuffer[16 * 16 * 256 / 2]{};
for (int i = 0; i < 16 * 16 * 256; i += 4)
{
SrcBlockBuffer[i + 0] = 0xde;
SrcBlockBuffer[i + 1] = 0xad;
SrcBlockBuffer[i + 2] = 0xbe;
SrcBlockBuffer[i + 3] = 0xef;
}
buffer.SetAll(SrcBlockBuffer, SrcNibbleBuffer);
BLOCKTYPE DstBlockBuffer[16 * 16 * 256];
CopyAll(buffer, &ChunkBlockData::GetSection, ChunkBlockData::DefaultValue, DstBlockBuffer);
TEST_EQUAL(memcmp(SrcBlockBuffer, DstBlockBuffer, (16 * 16 * 256) - 1), 0);
memset(SrcBlockBuffer, 0x00, 16 * 16 * 256);
buffer.SetAll(SrcBlockBuffer, SrcNibbleBuffer);
CopyAll(buffer, &ChunkBlockData::GetSection, ChunkBlockData::DefaultValue, DstBlockBuffer);
TEST_EQUAL(memcmp(SrcBlockBuffer, DstBlockBuffer, (16 * 16 * 256) - 1), 0);
}
{
ChunkBlockData buffer;
BLOCKTYPE SrcBlockBuffer[16 * 16 * 256]{};
NIBBLETYPE SrcNibbleBuffer[16 * 16 * 256 / 2];
for (int i = 0; i < 16 * 16 * 256 / 2; i += 4)
{
SrcNibbleBuffer[i + 0] = 0xde;
SrcNibbleBuffer[i + 1] = 0xad;
SrcNibbleBuffer[i + 2] = 0xbe;
SrcNibbleBuffer[i + 3] = 0xef;
}
buffer.SetAll(SrcBlockBuffer, SrcNibbleBuffer);
NIBBLETYPE DstNibbleBuffer[16 * 16 * 256/ 2];
CopyAll(buffer, &ChunkBlockData::GetMetaSection, ChunkBlockData::DefaultMetaValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 / 2) - 1), 0);
memset(SrcNibbleBuffer, 0x00, 16 * 16 * 256 /2);
buffer.SetAll(SrcBlockBuffer, SrcNibbleBuffer);
CopyAll(buffer, &ChunkBlockData::GetMetaSection, ChunkBlockData::DefaultMetaValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 / 2) - 1), 0);
}
{
ChunkLightData buffer;
NIBBLETYPE SrcNibbleBuffer[16 * 16 * 256 / 2];
for (int i = 0; i < 16 * 16 * 256 / 2; i += 4)
{
SrcNibbleBuffer[i + 0] = 0xde;
SrcNibbleBuffer[i + 1] = 0xad;
SrcNibbleBuffer[i + 2] = 0xbe;
SrcNibbleBuffer[i + 3] = 0xef;
}
buffer.SetAll(SrcNibbleBuffer, SrcNibbleBuffer);
NIBBLETYPE DstNibbleBuffer[16 * 16 * 256 / 2];
CopyAll(buffer, &ChunkLightData::GetBlockLightSection, ChunkLightData::DefaultBlockLightValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 /2) - 1), 0);
memset(SrcNibbleBuffer, 0x00, 16 * 16 * 256 /2);
buffer.SetAll(SrcNibbleBuffer, SrcNibbleBuffer);
CopyAll(buffer, &ChunkLightData::GetBlockLightSection, ChunkLightData::DefaultBlockLightValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 /2) - 1), 0);
}
{
ChunkLightData buffer;
NIBBLETYPE SrcNibbleBuffer[16 * 16 * 256 / 2];
for (int i = 0; i < 16 * 16 * 256 / 2; i += 4)
{
SrcNibbleBuffer[i + 0] = 0xde;
SrcNibbleBuffer[i + 1] = 0xad;
SrcNibbleBuffer[i + 2] = 0xbe;
SrcNibbleBuffer[i + 3] = 0xef;
}
buffer.SetAll(SrcNibbleBuffer, SrcNibbleBuffer);
NIBBLETYPE DstNibbleBuffer[16 * 16 * 256/ 2];
CopyAll(buffer, &ChunkLightData::GetSkyLightSection, ChunkLightData::DefaultSkyLightValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 / 2) - 1), 0);
memset(SrcNibbleBuffer, 0xFF, 16 * 16 * 256 / 2);
buffer.SetAll(SrcNibbleBuffer, SrcNibbleBuffer);
CopyAll(buffer, &ChunkLightData::GetSkyLightSection, ChunkLightData::DefaultSkyLightValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 / 2) - 1), 0);
}
{
ChunkBlockData buffer;
BLOCKTYPE SrcBlockBuffer[16 * 16 * 256];
memset(SrcBlockBuffer, 0x00, 16 * 16 * 256);
BLOCKTYPE DstBlockBuffer[16 * 16 * 256];
CopyAll(buffer, &ChunkBlockData::GetSection, ChunkBlockData::DefaultValue, DstBlockBuffer);
TEST_EQUAL(memcmp(SrcBlockBuffer, DstBlockBuffer, (16 * 16 * 256) - 1), 0);
NIBBLETYPE SrcNibbleBuffer[16 * 16 * 256 / 2];
memset(SrcNibbleBuffer, 0x00, 16 * 16 * 256 / 2);
NIBBLETYPE DstNibbleBuffer[16 * 16 * 256 / 2];
CopyAll(buffer, &ChunkBlockData::GetMetaSection, ChunkBlockData::DefaultMetaValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 / 2) - 1), 0);
}
{
ChunkLightData buffer;
NIBBLETYPE SrcNibbleBuffer[16 * 16 * 256 / 2];
memset(SrcNibbleBuffer, 0x00, 16 * 16 * 256 / 2);
NIBBLETYPE DstNibbleBuffer[16 * 16 * 256 / 2];
CopyAll(buffer, &ChunkLightData::GetBlockLightSection, ChunkLightData::DefaultBlockLightValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 / 2) - 1), 0);
memset(SrcNibbleBuffer, 0xFF, 16 * 16 * 256 / 2);
CopyAll(buffer, &ChunkLightData::GetSkyLightSection, ChunkLightData::DefaultSkyLightValue, DstNibbleBuffer);
TEST_EQUAL(memcmp(SrcNibbleBuffer, DstNibbleBuffer, (16 * 16 * 256 / 2) - 1), 0);
}
}
IMPLEMENT_TEST_MAIN("ChunkData Copies",
Test()
)