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381 lines
13 KiB
C++
381 lines
13 KiB
C++
#include "loadland.hpp"
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#include <algorithm>
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#include <cstdint>
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#include <limits>
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#include <utility>
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#include <components/esm/defs.hpp>
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#include <components/misc/concepts.hpp>
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#include "esmreader.hpp"
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#include "esmwriter.hpp"
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namespace ESM
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{
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namespace
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{
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struct VHGT
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{
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float mHeightOffset;
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std::int8_t mHeightData[LandRecordData::sLandNumVerts];
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};
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template <Misc::SameAsWithoutCvref<VHGT> T>
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void decompose(T&& v, const auto& f)
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{
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char padding[3] = { 0, 0, 0 };
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f(v.mHeightOffset, v.mHeightData, padding);
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}
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void transposeTextureData(const std::uint16_t* in, std::uint16_t* out)
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{
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size_t readPos = 0; // bit ugly, but it works
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for (size_t y1 = 0; y1 < 4; y1++)
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for (size_t x1 = 0; x1 < 4; x1++)
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for (size_t y2 = 0; y2 < 4; y2++)
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for (size_t x2 = 0; x2 < 4; x2++)
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out[(y1 * 4 + y2) * 16 + (x1 * 4 + x2)] = in[readPos++];
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}
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// Loads data and marks it as loaded. Return true if data is actually loaded from reader, false otherwise
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// including the case when data is already loaded.
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bool condLoad(ESMReader& reader, int dataTypes, int& targetDataTypes, int dataFlag, auto& in)
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{
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if ((targetDataTypes & dataFlag) == 0 && (dataTypes & dataFlag) != 0)
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{
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if constexpr (std::is_same_v<std::remove_cvref_t<decltype(in)>, VHGT>)
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reader.getSubComposite(in);
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else
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reader.getHT(in);
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targetDataTypes |= dataFlag;
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return true;
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}
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reader.skipHSub();
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return false;
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}
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}
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void Land::load(ESMReader& esm, bool& isDeleted)
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{
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isDeleted = false;
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bool hasLocation = false;
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bool isLoaded = false;
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while (!isLoaded && esm.hasMoreSubs())
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{
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esm.getSubName();
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switch (esm.retSubName().toInt())
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{
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case fourCC("INTV"):
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esm.getHT(mX, mY);
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hasLocation = true;
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break;
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case fourCC("DATA"):
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esm.getHT(mFlags);
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break;
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case SREC_DELE:
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esm.skipHSub();
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isDeleted = true;
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break;
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default:
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esm.cacheSubName();
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isLoaded = true;
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break;
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}
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}
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if (!hasLocation)
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esm.fail("Missing INTV subrecord");
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mContext = esm.getContext();
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mLandData = nullptr;
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std::fill(std::begin(mWnam), std::end(mWnam), 0);
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// Skip the land data here. Load it when the cell is loaded.
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while (esm.hasMoreSubs())
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{
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esm.getSubName();
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switch (esm.retSubName().toInt())
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{
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case fourCC("VNML"):
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esm.skipHSub();
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if (mFlags & Flag_HeightsNormals)
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mDataTypes |= DATA_VNML;
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break;
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case fourCC("VHGT"):
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esm.skipHSub();
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if (mFlags & Flag_HeightsNormals)
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mDataTypes |= DATA_VHGT;
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break;
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case fourCC("WNAM"):
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esm.getHT(mWnam);
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if (mFlags & Flag_HeightsNormals)
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mDataTypes |= DATA_WNAM;
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break;
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case fourCC("VCLR"):
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esm.skipHSub();
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if (mFlags & Flag_Colors)
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mDataTypes |= DATA_VCLR;
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break;
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case fourCC("VTEX"):
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esm.skipHSub();
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if (mFlags & Flag_Textures)
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mDataTypes |= DATA_VTEX;
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break;
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default:
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esm.fail("Unknown subrecord");
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break;
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}
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}
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}
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void Land::save(ESMWriter& esm, bool isDeleted) const
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{
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esm.startSubRecord("INTV");
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esm.writeT(mX);
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esm.writeT(mY);
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esm.endRecord("INTV");
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esm.writeHNT("DATA", mFlags);
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if (isDeleted)
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{
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esm.writeHNString("DELE", "", 3);
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return;
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}
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if (mLandData)
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{
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if (mDataTypes & Land::DATA_VNML)
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{
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esm.writeHNT("VNML", mLandData->mNormals);
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}
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if (mDataTypes & Land::DATA_VHGT)
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{
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VHGT offsets;
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offsets.mHeightOffset = mLandData->mHeights[0] / sHeightScale;
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float prevY = mLandData->mHeights[0];
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size_t number = 0; // avoid multiplication
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for (unsigned i = 0; i < LandRecordData::sLandSize; ++i)
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{
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float diff = (mLandData->mHeights[number] - prevY) / sHeightScale;
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offsets.mHeightData[number]
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= diff >= 0 ? static_cast<std::int8_t>(diff + 0.5) : static_cast<std::int8_t>(diff - 0.5);
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float prevX = prevY = mLandData->mHeights[number];
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++number;
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for (unsigned j = 1; j < LandRecordData::sLandSize; ++j)
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{
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diff = (mLandData->mHeights[number] - prevX) / sHeightScale;
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offsets.mHeightData[number]
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= diff >= 0 ? static_cast<std::int8_t>(diff + 0.5) : static_cast<std::int8_t>(diff - 0.5);
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prevX = mLandData->mHeights[number];
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++number;
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}
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}
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esm.writeNamedComposite("VHGT", offsets);
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}
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if (mDataTypes & Land::DATA_WNAM)
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{
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// Generate WNAM record
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std::array<std::int8_t, sGlobalMapLodSize> wnam;
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generateWnam(mLandData->mHeights, wnam);
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esm.writeHNT("WNAM", wnam);
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}
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if (mDataTypes & Land::DATA_VCLR)
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{
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esm.writeHNT("VCLR", mLandData->mColours);
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}
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if (mDataTypes & Land::DATA_VTEX)
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{
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uint16_t vtex[LandRecordData::sLandNumTextures];
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transposeTextureData(mLandData->mTextures.data(), vtex);
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esm.writeHNT("VTEX", vtex);
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}
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}
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}
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void Land::blank()
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{
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setPlugin(0);
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mWnam.fill(0);
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if (mLandData == nullptr)
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mLandData = std::make_unique<LandData>();
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mLandData->mHeights.fill(DEFAULT_HEIGHT);
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mLandData->mMinHeight = DEFAULT_HEIGHT;
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mLandData->mMaxHeight = DEFAULT_HEIGHT;
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for (size_t i = 0; i < LandRecordData::sLandNumVerts; ++i)
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{
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mLandData->mNormals[i * 3 + 0] = 0;
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mLandData->mNormals[i * 3 + 1] = 0;
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mLandData->mNormals[i * 3 + 2] = 127;
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}
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mLandData->mTextures.fill(0);
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mLandData->mColours.fill(255);
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mLandData->mDataLoaded
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= Land::DATA_VNML | Land::DATA_VHGT | Land::DATA_WNAM | Land::DATA_VCLR | Land::DATA_VTEX;
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mDataTypes = mLandData->mDataLoaded;
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// No file associated with the land now
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mContext.filename.clear();
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}
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void Land::loadData(int dataTypes) const
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{
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if (mLandData == nullptr)
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mLandData = std::make_unique<LandData>();
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loadData(dataTypes, *mLandData);
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}
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void Land::loadData(int dataTypes, LandData& data) const
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{
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// Try to load only available data
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dataTypes = dataTypes & mDataTypes;
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// Return if all required data is loaded
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if ((data.mDataLoaded & dataTypes) == dataTypes)
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{
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return;
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}
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if (mContext.filename.empty())
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{
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// Make sure there is data, and that it doesn't point to the same object.
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if (mLandData != nullptr && mLandData.get() != &data)
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data = *mLandData;
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return;
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}
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ESMReader reader;
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reader.restoreContext(mContext);
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loadLandRecordData(dataTypes, reader, data);
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}
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void Land::unloadData()
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{
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mLandData = nullptr;
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}
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bool Land::isDataLoaded(int flags) const
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{
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return mLandData && (mLandData->mDataLoaded & flags) == flags;
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}
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Land::Land(const Land& land)
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: mFlags(land.mFlags)
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, mX(land.mX)
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, mY(land.mY)
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, mContext(land.mContext)
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, mDataTypes(land.mDataTypes)
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, mWnam(land.mWnam)
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, mLandData(land.mLandData != nullptr ? std::make_unique<LandData>(*land.mLandData) : nullptr)
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{
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}
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Land& Land::operator=(const Land& land)
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{
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Land copy(land);
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*this = std::move(copy);
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return *this;
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}
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const Land::LandData* Land::getLandData(int flags) const
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{
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if (!(flags & mDataTypes))
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return nullptr;
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loadData(flags);
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return mLandData.get();
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}
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void Land::add(int flags)
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{
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if (mLandData == nullptr)
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mLandData = std::make_unique<LandData>();
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mDataTypes |= flags;
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mLandData->mDataLoaded |= flags;
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}
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void loadLandRecordData(int dataTypes, ESMReader& reader, LandRecordData& data)
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{
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if (reader.isNextSub("VNML"))
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condLoad(reader, dataTypes, data.mDataLoaded, Land::DATA_VNML, data.mNormals);
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if (reader.isNextSub("VHGT"))
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{
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VHGT vhgt;
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if (condLoad(reader, dataTypes, data.mDataLoaded, Land::DATA_VHGT, vhgt))
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{
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data.mMinHeight = std::numeric_limits<float>::max();
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data.mMaxHeight = -std::numeric_limits<float>::max();
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float rowOffset = vhgt.mHeightOffset;
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for (unsigned y = 0; y < LandRecordData::sLandSize; y++)
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{
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rowOffset += vhgt.mHeightData[y * LandRecordData::sLandSize];
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data.mHeights[y * LandRecordData::sLandSize] = rowOffset * Land::sHeightScale;
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if (rowOffset * Land::sHeightScale > data.mMaxHeight)
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data.mMaxHeight = rowOffset * Land::sHeightScale;
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if (rowOffset * Land::sHeightScale < data.mMinHeight)
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data.mMinHeight = rowOffset * Land::sHeightScale;
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float colOffset = rowOffset;
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for (unsigned x = 1; x < LandRecordData::sLandSize; x++)
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{
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colOffset += vhgt.mHeightData[y * LandRecordData::sLandSize + x];
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data.mHeights[x + y * LandRecordData::sLandSize] = colOffset * Land::sHeightScale;
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if (colOffset * Land::sHeightScale > data.mMaxHeight)
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data.mMaxHeight = colOffset * Land::sHeightScale;
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if (colOffset * Land::sHeightScale < data.mMinHeight)
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data.mMinHeight = colOffset * Land::sHeightScale;
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}
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}
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}
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}
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if (reader.isNextSub("WNAM"))
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reader.skipHSub();
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if (reader.isNextSub("VCLR"))
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condLoad(reader, dataTypes, data.mDataLoaded, Land::DATA_VCLR, data.mColours);
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if (reader.isNextSub("VTEX"))
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{
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std::uint16_t vtex[LandRecordData::sLandNumTextures];
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if (condLoad(reader, dataTypes, data.mDataLoaded, Land::DATA_VTEX, vtex))
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transposeTextureData(vtex, data.mTextures.data());
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}
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}
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void generateWnam(const std::array<float, LandRecordData::sLandNumVerts>& heights,
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std::array<std::int8_t, Land::sGlobalMapLodSize>& wnam)
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{
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constexpr float max = std::numeric_limits<std::int8_t>::max();
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constexpr float min = std::numeric_limits<std::int8_t>::min();
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constexpr float vertMult = static_cast<float>(LandRecordData::sLandSize - 1) / Land::sGlobalMapLodSizeSqrt;
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for (std::size_t row = 0; row < Land::sGlobalMapLodSizeSqrt; ++row)
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{
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for (std::size_t col = 0; col < Land::sGlobalMapLodSizeSqrt; ++col)
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{
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float height = heights[static_cast<std::size_t>(row * vertMult) * LandRecordData::sLandSize
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+ static_cast<std::size_t>(col * vertMult)];
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height /= height > 0 ? 128.f : 16.f;
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height = std::clamp(height, min, max);
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wnam[row * Land::sGlobalMapLodSizeSqrt + col] = static_cast<std::int8_t>(height);
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}
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}
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}
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}
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