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388 lines
12 KiB
C++
388 lines
12 KiB
C++
#include "loadland.hpp"
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#include <utility>
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#include "esmreader.hpp"
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#include "esmwriter.hpp"
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#include "defs.hpp"
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namespace ESM
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{
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unsigned int Land::sRecordId = REC_LAND;
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Land::Land()
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: mFlags(0)
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, mX(0)
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, mY(0)
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, mPlugin(0)
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, mDataTypes(0)
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, mLandData(NULL)
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{
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}
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void transposeTextureData(const uint16_t *in, uint16_t *out)
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{
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int readPos = 0; //bit ugly, but it works
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for ( int y1 = 0; y1 < 4; y1++ )
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for ( int x1 = 0; x1 < 4; x1++ )
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for ( int y2 = 0; y2 < 4; y2++)
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for ( int 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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Land::~Land()
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{
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delete mLandData;
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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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mPlugin = esm.getIndex();
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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().intval)
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{
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case ESM::FourCC<'I','N','T','V'>::value:
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esm.getSubHeaderIs(8);
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esm.getT<int>(mX);
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esm.getT<int>(mY);
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hasLocation = true;
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break;
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case ESM::FourCC<'D','A','T','A'>::value:
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esm.getHT(mFlags);
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break;
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case ESM::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 = NULL;
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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().intval)
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{
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case ESM::FourCC<'V','N','M','L'>::value:
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esm.skipHSub();
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mDataTypes |= DATA_VNML;
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break;
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case ESM::FourCC<'V','H','G','T'>::value:
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esm.skipHSub();
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mDataTypes |= DATA_VHGT;
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break;
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case ESM::FourCC<'W','N','A','M'>::value:
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esm.getHExact(mWnam, sizeof(mWnam));
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mDataTypes |= DATA_WNAM;
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break;
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case ESM::FourCC<'V','C','L','R'>::value:
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esm.skipHSub();
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mDataTypes |= DATA_VCLR;
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break;
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case ESM::FourCC<'V','T','E','X'>::value:
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esm.skipHSub();
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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.writeHNCString("DELE", "");
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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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esm.writeHNT("VNML", mLandData->mNormals, sizeof(mLandData->mNormals));
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}
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if (mDataTypes & Land::DATA_VHGT) {
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VHGT offsets;
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offsets.mHeightOffset = mLandData->mHeights[0] / HEIGHT_SCALE;
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offsets.mUnk1 = mLandData->mUnk1;
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offsets.mUnk2 = mLandData->mUnk2;
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float prevY = mLandData->mHeights[0];
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int number = 0; // avoid multiplication
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for (int i = 0; i < LAND_SIZE; ++i) {
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float diff = (mLandData->mHeights[number] - prevY) / HEIGHT_SCALE;
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offsets.mHeightData[number] =
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(diff >= 0) ? (int8_t) (diff + 0.5) : (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 (int j = 1; j < LAND_SIZE; ++j) {
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diff = (mLandData->mHeights[number] - prevX) / HEIGHT_SCALE;
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offsets.mHeightData[number] =
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(diff >= 0) ? (int8_t) (diff + 0.5) : (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.writeHNT("VHGT", offsets, sizeof(VHGT));
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}
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}
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if (mDataTypes & Land::DATA_WNAM) {
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esm.writeHNT("WNAM", mWnam, 81);
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}
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if (mLandData)
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{
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if (mDataTypes & Land::DATA_VCLR) {
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esm.writeHNT("VCLR", mLandData->mColours, 3*LAND_NUM_VERTS);
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}
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if (mDataTypes & Land::DATA_VTEX) {
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uint16_t vtex[LAND_NUM_TEXTURES];
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transposeTextureData(mLandData->mTextures, vtex);
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esm.writeHNT("VTEX", vtex, sizeof(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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mPlugin = 0;
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for (int i = 0; i < LAND_GLOBAL_MAP_LOD_SIZE; ++i)
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mWnam[0] = 0;
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if (!mLandData)
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mLandData = new LandData;
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mLandData->mHeightOffset = 0;
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for (int i = 0; i < LAND_NUM_VERTS; ++i)
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mLandData->mHeights[i] = 0;
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mLandData->mMinHeight = 0;
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mLandData->mMaxHeight = 0;
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for (int i = 0; i < LAND_NUM_VERTS; ++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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for (int i = 0; i < LAND_NUM_TEXTURES; ++i)
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mLandData->mTextures[i] = 0;
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for (int i = 0; i < LAND_NUM_VERTS; ++i)
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{
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mLandData->mColours[i*3+0] = -1;
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mLandData->mColours[i*3+1] = -1;
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mLandData->mColours[i*3+2] = -1;
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}
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mLandData->mUnk1 = 0;
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mLandData->mUnk2 = 0;
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mLandData->mDataLoaded = Land::DATA_VNML | Land::DATA_VHGT | Land::DATA_WNAM |
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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 flags, LandData* target) const
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{
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// Create storage if nothing is loaded
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if (!target && !mLandData)
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{
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mLandData = new LandData;
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}
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if (!target)
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target = mLandData;
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// Try to load only available data
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flags = flags & mDataTypes;
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// Return if all required data is loaded
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if ((target->mDataLoaded & flags) == flags) {
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return;
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}
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// Copy data to target if no file
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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 && mLandData != target)
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*target = *mLandData;
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return;
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}
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ESM::ESMReader reader;
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reader.restoreContext(mContext);
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if (reader.isNextSub("VNML")) {
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condLoad(reader, flags, target->mDataLoaded, DATA_VNML, target->mNormals, sizeof(target->mNormals));
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}
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if (reader.isNextSub("VHGT")) {
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VHGT vhgt;
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if (condLoad(reader, flags, target->mDataLoaded, DATA_VHGT, &vhgt, sizeof(vhgt))) {
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target->mMinHeight = FLT_MAX;
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target->mMaxHeight = -FLT_MAX;
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float rowOffset = vhgt.mHeightOffset;
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for (int y = 0; y < LAND_SIZE; y++) {
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rowOffset += vhgt.mHeightData[y * LAND_SIZE];
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target->mHeights[y * LAND_SIZE] = rowOffset * HEIGHT_SCALE;
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if (rowOffset * HEIGHT_SCALE > target->mMaxHeight)
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target->mMaxHeight = rowOffset * HEIGHT_SCALE;
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if (rowOffset * HEIGHT_SCALE < target->mMinHeight)
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target->mMinHeight = rowOffset * HEIGHT_SCALE;
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float colOffset = rowOffset;
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for (int x = 1; x < LAND_SIZE; x++) {
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colOffset += vhgt.mHeightData[y * LAND_SIZE + x];
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target->mHeights[x + y * LAND_SIZE] = colOffset * HEIGHT_SCALE;
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if (colOffset * HEIGHT_SCALE > target->mMaxHeight)
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target->mMaxHeight = colOffset * HEIGHT_SCALE;
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if (colOffset * HEIGHT_SCALE < target->mMinHeight)
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target->mMinHeight = colOffset * HEIGHT_SCALE;
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}
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}
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target->mUnk1 = vhgt.mUnk1;
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target->mUnk2 = vhgt.mUnk2;
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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, flags, target->mDataLoaded, DATA_VCLR, target->mColours, 3 * LAND_NUM_VERTS);
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if (reader.isNextSub("VTEX")) {
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uint16_t vtex[LAND_NUM_TEXTURES];
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if (condLoad(reader, flags, target->mDataLoaded, DATA_VTEX, vtex, sizeof(vtex))) {
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transposeTextureData(vtex, target->mTextures);
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}
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}
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}
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void Land::unloadData() const
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{
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if (mLandData)
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{
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delete mLandData;
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mLandData = NULL;
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}
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}
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bool Land::condLoad(ESM::ESMReader& reader, int flags, int& targetFlags, int dataFlag, void *ptr, unsigned int size) const
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{
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if ((targetFlags & dataFlag) == 0 && (flags & dataFlag) != 0) {
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reader.getHExact(ptr, size);
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targetFlags |= dataFlag;
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return true;
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}
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reader.skipHSubSize(size);
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return false;
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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), mX (land.mX), mY (land.mY), mPlugin (land.mPlugin),
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mContext (land.mContext), mDataTypes (land.mDataTypes),
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mLandData (land.mLandData ? new LandData (*land.mLandData) : 0)
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{}
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Land& Land::operator= (Land land)
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{
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swap (land);
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return *this;
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}
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void Land::swap (Land& land)
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{
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std::swap (mFlags, land.mFlags);
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std::swap (mX, land.mX);
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std::swap (mY, land.mY);
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std::swap (mPlugin, land.mPlugin);
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std::swap (mContext, land.mContext);
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std::swap (mDataTypes, land.mDataTypes);
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std::swap (mLandData, land.mLandData);
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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 0;
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loadData (flags);
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return mLandData;
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}
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const Land::LandData *Land::getLandData() const
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{
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return mLandData;
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}
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Land::LandData *Land::getLandData()
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{
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return mLandData;
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}
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void Land::add (int flags)
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{
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if (!mLandData)
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mLandData = new LandData;
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mDataTypes |= flags;
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mLandData->mDataLoaded |= flags;
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}
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void Land::remove (int flags)
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{
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mDataTypes &= ~flags;
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if (mLandData)
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{
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mLandData->mDataLoaded &= ~flags;
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if (!mLandData->mDataLoaded)
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{
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delete mLandData;
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mLandData = 0;
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}
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}
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}
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}
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