adding the multicache behavior
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@ -208,6 +208,121 @@ void cBioGenCache::InitializeBiomeGen(cIniFile & a_IniFile)
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////////////////////////////////////////////////////////////////////////////////
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// cBioGenMulticache:
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cBioGenMulticache::cBioGenMulticache(cBiomeGen * a_BioGenToCache, int a_CacheSize, int a_CachesLength) :
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m_BioGenToCache(a_BioGenToCache),
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m_CacheSize(a_CacheSize),
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m_CachesLength(a_CachesLength),
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m_CachesOrder(new int*[a_CachesLength * a_CachesLength]),
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m_CachesData(new sCacheData*[a_CachesLength * a_CachesLength]),
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m_NumHits(0),
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m_NumMisses(0),
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m_TotalChain(0)
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{
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for (int i = 0; i < m_CachesLength * m_CachesLength; i++) {
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sCacheData * cacheData = m_CachesData[i] = new sCacheData[m_CacheSize];
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int * cacheOrder = m_CachesOrder[i] = new int[m_CacheSize];
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for (int j = 0; j < m_CacheSize; j++)
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{
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cacheOrder[j] = j;
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cacheData[j].m_ChunkX = 0x7fffffff;
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cacheData[j].m_ChunkZ = 0x7fffffff;
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}
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}
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}
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cBioGenMulticache::~cBioGenMulticache()
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{
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for (int i = 0; i < m_CachesLength * m_CachesLength; i++) {
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delete[] m_CachesData[i];
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delete[] m_CachesOrder[i];
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}
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delete[] m_CachesData;
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m_CachesData = NULL;
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delete[] m_CachesOrder;
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m_CachesOrder = NULL;
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}
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void cBioGenMulticache::GenBiomes(int a_ChunkX, int a_ChunkZ, cChunkDef::BiomeMap & a_BiomeMap)
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{
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if (((m_NumHits + m_NumMisses) % 1024) == 10)
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{
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LOGD("BioGenCache: %d hits, %d misses, saved %.2f %%", m_NumHits, m_NumMisses, 100.0 * m_NumHits / (m_NumHits + m_NumMisses));
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LOGD("BioGenCache: Avg cache chain length: %.2f", (float)m_TotalChain / m_NumHits);
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}
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int cacheIdx = ((unsigned int)a_ChunkX % m_CachesLength) * m_CachesLength + ((unsigned int)a_ChunkZ % m_CachesLength);
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sCacheData * cacheData = m_CachesData[cacheIdx];
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int * cacheOrder = m_CachesOrder[cacheIdx];
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for (int i = 0; i < m_CacheSize; i++)
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{
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if (
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(cacheData[cacheOrder[i]].m_ChunkX != a_ChunkX) ||
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(cacheData[cacheOrder[i]].m_ChunkZ != a_ChunkZ)
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)
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{
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continue;
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}
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// Found it in the cache
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int Idx = cacheOrder[i];
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// Move to front:
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for (int j = i; j > 0; j--)
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{
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cacheOrder[j] = cacheOrder[j - 1];
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}
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cacheOrder[0] = Idx;
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// Use the cached data:
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memcpy(a_BiomeMap, cacheData[Idx].m_BiomeMap, sizeof(a_BiomeMap));
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m_NumHits++;
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m_TotalChain += i;
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return;
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} // for i - cache
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// Not in the cache:
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m_NumMisses++;
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m_BioGenToCache->GenBiomes(a_ChunkX, a_ChunkZ, a_BiomeMap);
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// Insert it as the first item in the MRU order:
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int Idx = cacheOrder[m_CacheSize - 1];
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for (int i = m_CacheSize - 1; i > 0; i--)
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{
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cacheOrder[i] = cacheOrder[i - 1];
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} // for i - m_CacheOrder[]
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cacheOrder[0] = Idx;
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memcpy(cacheData[Idx].m_BiomeMap, a_BiomeMap, sizeof(a_BiomeMap));
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cacheData[Idx].m_ChunkX = a_ChunkX;
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cacheData[Idx].m_ChunkZ = a_ChunkZ;
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}
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void cBioGenMulticache::InitializeBiomeGen(cIniFile & a_IniFile)
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{
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super::InitializeBiomeGen(a_IniFile);
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m_BioGenToCache->InitializeBiomeGen(a_IniFile);
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}
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////////////////////////////////////////////////////////////////////////////////
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// cBiomeGenList:
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@ -84,7 +84,7 @@ class cBioGenMulticache :
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typedef cBiomeGen super;
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public:
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cBioGenMulticache(cBiomeGen * a_BioGenToCache, int a_CacheSize, int a_CacheLength); // Doesn't take ownership of a_BioGenToCache
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cBioGenMulticache(cBiomeGen * a_BioGenToCache, int a_CacheSize, int a_CachesLength); // Doesn't take ownership of a_BioGenToCache
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~cBioGenMulticache();
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protected:
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@ -100,9 +100,9 @@ protected:
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// To avoid moving large amounts of data for the MRU behavior, we MRU-ize indices to an array of the actual data
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int m_CacheSize;
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int m_CacheLength;
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int m_CachesLength;
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int **m_CachesOrder; // MRU-ized order, indices into the multiple m_CachesData array
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int ** m_CachesOrder; // MRU-ized order, indices into the multiple m_CachesData array
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sCacheData ** m_CachesData;
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// Cache statistics
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@ -241,7 +241,7 @@ void cComposableGenerator::InitBiomeGen(cIniFile & a_IniFile)
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}
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LOGD("Using a cache for biomegen of size %d.", CacheSize);
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m_UnderlyingBiomeGen = m_BiomeGen;
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m_BiomeGen = new cBioGenCache(m_UnderlyingBiomeGen, CacheSize);
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m_BiomeGen = new cBioGenMulticache(m_UnderlyingBiomeGen, CacheSize, 4);
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}
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}
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