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https://github.com/minetest/minetestmapper.git
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night rendering
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@ -151,3 +151,10 @@ std::string BlockDecoder::getNode(u8 x, u8 y, u8 z) const
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}
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}
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return it->second;
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return it->second;
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}
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}
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u8 BlockDecoder::getParam1(u8 x, u8 y, u8 z) const
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{
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unsigned int position = x + (y << 4) + (z << 8);
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unsigned int offset = (m_contentWidth == 2) ? 0x2000 : 0x1000;
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return m_mapData.c_str()[offset + position];
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}
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@ -8,6 +8,7 @@
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#include <stdexcept>
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#include <stdexcept>
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#include <cstring>
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#include <cstring>
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#include <vector>
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#include <vector>
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#include <cmath>
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#include "TileGenerator.h"
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#include "TileGenerator.h"
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#include "config.h"
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#include "config.h"
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@ -495,8 +496,6 @@ void TileGenerator::renderMap()
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blk.reset();
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blk.reset();
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blk.decode(it.second);
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blk.decode(it.second);
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if (blk.isEmpty())
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continue;
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renderMapBlock(blk, pos);
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renderMapBlock(blk, pos);
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// Exit out if all pixels for this MapBlock are covered
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// Exit out if all pixels for this MapBlock are covered
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@ -576,6 +575,28 @@ void TileGenerator::renderMap()
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void TileGenerator::renderMapBlock(const BlockDecoder &blk, const BlockPos &pos)
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void TileGenerator::renderMapBlock(const BlockDecoder &blk, const BlockPos &pos)
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{
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{
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/***/
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static bool light_curve_init = false;
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static float light_curve[16];
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if (!light_curve_init) {
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for (u8 i = 0; i < 16; i++)
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light_curve[i] = expf((i - 15) / 12.0f);
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light_curve_init = true;
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}
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/***/
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auto light_at = [blk] (u8 x, u8 y, u8 z) -> u8 {
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return blk.getParam1(x, y, z) >> 4; // night bank
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};
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static u8 m_light[16][16];
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if (blk.isEmpty()) {
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for (int z = 0; z < 16; ++z) {
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for (int x = 0; x < 16; ++x) {
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m_light[z][x] = light_at(x, 0, z);
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}
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}
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return;
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}
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int xBegin = (pos.x - m_xMin) * 16;
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int xBegin = (pos.x - m_xMin) * 16;
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int zBegin = (m_zMax - pos.z) * 16;
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int zBegin = (m_zMax - pos.z) * 16;
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int minY = (pos.y * 16 > m_yMin) ? 0 : m_yMin - pos.y * 16;
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int minY = (pos.y * 16 > m_yMin) ? 0 : m_yMin - pos.y * 16;
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@ -589,14 +610,25 @@ void TileGenerator::renderMapBlock(const BlockDecoder &blk, const BlockPos &pos)
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for (int y = maxY; y >= minY; --y) {
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for (int y = maxY; y >= minY; --y) {
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string name = blk.getNode(x, y, z);
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string name = blk.getNode(x, y, z);
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if (name == "")
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if (name == "") {
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if (y == 0) m_light[z][x] = light_at(x, 0, z);
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continue;
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continue;
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}
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ColorMap::const_iterator it = m_colorMap.find(name);
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ColorMap::const_iterator it = m_colorMap.find(name);
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if (it == m_colorMap.end()) {
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if (it == m_colorMap.end()) {
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m_unknownNodes.insert(name);
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m_unknownNodes.insert(name);
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continue;
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continue;
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}
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}
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const Color c = it->second.to_color();
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Color c = it->second.to_color();
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u8 light = (y == 15) ? m_light[z][x] : light_at(x, y+1, z);
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if (light < 15) light = mymax(light, light_at(x, y, z));
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if (1) {
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float l2 = light_curve[light];
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c.r = colorSafeBounds(c.r * l2);
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c.g = colorSafeBounds(c.g * l2);
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c.b = colorSafeBounds(c.b * l2);
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} else
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c = Color(light * 17, light * 17, light * 17);
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if (m_drawAlpha) {
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if (m_drawAlpha) {
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if (m_color[z][x].a == 0)
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if (m_color[z][x].a == 0)
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m_color[z][x] = c; // first visible time, no color mixing
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m_color[z][x] = c; // first visible time, no color mixing
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@ -13,6 +13,7 @@ public:
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void decode(const ustring &data);
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void decode(const ustring &data);
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bool isEmpty() const;
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bool isEmpty() const;
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std::string getNode(u8 x, u8 y, u8 z) const; // returns "" for air, ignore and invalid nodes
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std::string getNode(u8 x, u8 y, u8 z) const; // returns "" for air, ignore and invalid nodes
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u8 getParam1(u8 x, u8 y, u8 z) const;
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private:
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private:
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typedef std::unordered_map<int, std::string> NameMap;
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typedef std::unordered_map<int, std::string> NameMap;
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