280 lines
5.9 KiB
C++
280 lines
5.9 KiB
C++
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// SpringStats.cpp
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// Implements the cSpringStats class representing a cCallback descendant that collects statistics on lava and water springs
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#include "Globals.h"
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#include "SpringStats.h"
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///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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// cSpringStats::cStats
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cSpringStats::cStats::cStats(void) :
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m_TotalChunks(0)
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{
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memset(m_LavaSprings, 0, sizeof(m_LavaSprings));
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memset(m_WaterSprings, 0, sizeof(m_WaterSprings));
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}
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void cSpringStats::cStats::Add(const cSpringStats::cStats & a_Other)
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{
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m_TotalChunks += a_Other.m_TotalChunks;
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for (int Biome = 0; Biome < 256; Biome++)
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{
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for (int Height = 0; Height < 256; Height++)
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{
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m_LavaSprings[Biome][Height] += a_Other.m_LavaSprings[Biome][Height];
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m_WaterSprings[Biome][Height] += a_Other.m_WaterSprings[Biome][Height];
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}
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}
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}
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///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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// cSpringStats:
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cSpringStats::cSpringStats(void) :
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m_AreBiomesValid(false)
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{
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}
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bool cSpringStats::OnNewChunk(int a_ChunkX, int a_ChunkZ)
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{
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memset(m_BlockTypes, 0, sizeof(m_BlockTypes));
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m_AreBiomesValid = false;
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return false;
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}
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bool cSpringStats::OnBiomes(const unsigned char * a_BiomeData)
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{
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memcpy(m_Biomes, a_BiomeData, sizeof(m_Biomes));
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m_AreBiomesValid = true;
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return false;
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}
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bool cSpringStats::OnSection(
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unsigned char a_Y,
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const BLOCKTYPE * a_BlockTypes,
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const NIBBLETYPE * a_BlockAdditional,
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const NIBBLETYPE * a_BlockMeta,
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const NIBBLETYPE * a_BlockLight,
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const NIBBLETYPE * a_BlockSkyLight
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)
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{
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memcpy(m_BlockTypes + ((int)a_Y) * 16 * 16 * 16, a_BlockTypes, 16 * 16 * 16);
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memcpy(m_BlockMetas + ((int)a_Y) * 16 * 16 * 16 / 2, a_BlockMeta, 16 * 16 * 16 / 2);
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return false;
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}
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bool cSpringStats::OnSectionsFinished(void)
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{
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if (!m_AreBiomesValid)
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{
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return true;
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}
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// Calc the spring stats:
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for (int y = 1; y < 255; y++)
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{
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int BaseY = y * 16 * 16;
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for (int z = 1; z < 15; z++)
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{
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int Base = BaseY + z * 16;
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for (int x = 1; x < 15; x++)
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{
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if (cChunkDef::GetNibble(m_BlockMetas, x, y, z) != 0)
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{
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// Not a source block
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continue;
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}
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switch (m_BlockTypes[Base + x])
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{
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case E_BLOCK_WATER:
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case E_BLOCK_STATIONARY_WATER:
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{
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TestSpring(x, y, z, m_Stats.m_WaterSprings);
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break;
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}
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case E_BLOCK_LAVA:
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case E_BLOCK_STATIONARY_LAVA:
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{
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TestSpring(x, y, z, m_Stats.m_LavaSprings);
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break;
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}
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} // switch (BlockType)
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} // for x
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} // for z
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} // for y
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m_Stats.m_TotalChunks += 1;
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return true;
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}
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void cSpringStats::TestSpring(int a_RelX, int a_RelY, int a_RelZ, cSpringStats::cStats::SpringStats & a_Stats)
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{
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static const struct
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{
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int x, y, z;
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} Coords[] =
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{
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{-1, 0, 0},
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{ 1, 0, 0},
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{ 0, -1, 0},
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{ 0, 1, 0},
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{ 0, 0, -1},
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{ 0, 0, 1},
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} ;
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bool HasFluidNextToIt = false;
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for (int i = 0; i < ARRAYCOUNT(Coords); i++)
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{
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switch (cChunkDef::GetBlock(m_BlockTypes, a_RelX + Coords[i].x, a_RelY + Coords[i].y, a_RelZ + Coords[i].z))
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{
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case E_BLOCK_WATER:
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case E_BLOCK_STATIONARY_WATER:
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case E_BLOCK_LAVA:
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case E_BLOCK_STATIONARY_LAVA:
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{
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if (cChunkDef::GetNibble(m_BlockMetas, a_RelX + Coords[i].x, a_RelY + Coords[i].y, a_RelZ + Coords[i].z) == 0)
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{
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// There is another source block next to this, so this is not a spring
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return;
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}
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HasFluidNextToIt = true;
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}
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} // switch (BlockType)
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} // for i - Coords[]
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if (!HasFluidNextToIt)
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{
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// Surrounded by solids on all sides, this is probably not a spring,
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// but rather a bedrocked lake or something similar. Dont want.
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return;
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}
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// No source blocks next to the specified block, so it is a spring. Add it to stats:
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a_Stats[a_RelY][((unsigned char *)m_Biomes)[a_RelX + 16 * a_RelZ]] += 1;
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}
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///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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// cSpringStatsFactory:
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cSpringStatsFactory::~cSpringStatsFactory()
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{
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LOG("cSpringStats:");
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LOG(" Joining results...");
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JoinResults();
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LOG(" Total %llu chunks went through", m_CombinedStats.m_TotalChunks);
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// Save statistics:
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LOG(" Saving statistics into files:");
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LOG(" Springs.xls");
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SaveTotals("Springs.xls");
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LOG(" BiomeWaterSprings.xls");
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SaveStatistics(m_CombinedStats.m_WaterSprings, "BiomeWaterSprings.xls");
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LOG(" BiomeLavaSprings.xls");
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SaveStatistics(m_CombinedStats.m_LavaSprings, "BiomeLavaSprings.xls");
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}
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void cSpringStatsFactory::JoinResults(void)
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{
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for (cCallbacks::iterator itr = m_Callbacks.begin(), end = m_Callbacks.end(); itr != end; ++itr)
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{
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m_CombinedStats.Add(((cSpringStats *)(*itr))->GetStats());
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} // for itr - m_Callbacks[]
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}
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void cSpringStatsFactory::SaveTotals(const AString & a_FileName)
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{
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cFile f(a_FileName, cFile::fmWrite);
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if (!f.IsOpen())
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{
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LOG("Cannot open file \"%s\" for writing!", a_FileName.c_str());
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return;
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}
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f.Printf("Height\tWater\tLava\n");
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for (int Height = 0; Height < 256; Height++)
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{
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UInt64 TotalW = 0;
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UInt64 TotalL = 0;
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for (int Biome = 0; Biome < 256; Biome++)
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{
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TotalW += m_CombinedStats.m_WaterSprings[Height][Biome];
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TotalL += m_CombinedStats.m_LavaSprings[Height][Biome];
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}
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f.Printf("%d\t%llu\t%llu\n", Height, TotalW, TotalL);
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}
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f.Printf("\n# Chunks\t%llu", m_CombinedStats.m_TotalChunks);
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}
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void cSpringStatsFactory::SaveStatistics(const cSpringStats::cStats::SpringStats & a_Stats, const AString & a_FileName)
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{
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cFile f(a_FileName, cFile::fmWrite);
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if (!f.IsOpen())
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{
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LOG("Cannot open file \"%s\" for writing!", a_FileName.c_str());
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return;
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}
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for (int Height = 0; Height < 256; Height++)
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{
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AString Line;
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Line.reserve(2000);
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Printf(Line, "%d\t", Height);
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for (int Biome = 0; Biome < 256; Biome++)
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{
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AppendPrintf(Line, "%llu\t", a_Stats[Height][Biome]);
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}
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Line.append("\n");
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f.Write(Line.c_str(), Line.size());
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}
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}
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