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DroidFish: Updated stockfish engine to version 3.
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@@ -1,7 +1,7 @@
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/*
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Stockfish, a UCI chess playing engine derived from Glaurung 2.1
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Copyright (C) 2004-2008 Tord Romstad (Glaurung author)
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Copyright (C) 2008-2012 Marco Costalba, Joona Kiiski, Tord Romstad
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Copyright (C) 2008-2013 Marco Costalba, Joona Kiiski, Tord Romstad
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Stockfish is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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@@ -25,42 +25,32 @@
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TranspositionTable TT; // Our global transposition table
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TranspositionTable::TranspositionTable() {
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size = generation = 0;
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entries = NULL;
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}
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TranspositionTable::~TranspositionTable() {
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delete [] entries;
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}
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/// TranspositionTable::set_size() sets the size of the transposition table,
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/// measured in megabytes. Transposition table consists of a power of 2 number of
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/// TTCluster and each cluster consists of ClusterSize number of TTEntries. Each
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/// non-empty entry contains information of exactly one position.
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/// measured in megabytes. Transposition table consists of a power of 2 number
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/// of clusters and each cluster consists of ClusterSize number of TTEntry.
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void TranspositionTable::set_size(size_t mbSize) {
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size_t newSize = 1ULL << msb((mbSize << 20) / sizeof(TTCluster));
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assert(msb((mbSize << 20) / sizeof(TTEntry)) < 32);
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if (newSize == size)
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uint32_t size = ClusterSize << msb((mbSize << 20) / sizeof(TTEntry[ClusterSize]));
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if (hashMask == size - ClusterSize)
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return;
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size = newSize;
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delete [] entries;
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entries = new (std::nothrow) TTCluster[size];
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if (!entries)
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free(mem);
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mem = malloc(size * sizeof(TTEntry) + (CACHE_LINE_SIZE - 1));
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if (!mem)
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{
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std::cerr << "Failed to allocate " << mbSize
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<< "MB for transposition table." << std::endl;
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exit(EXIT_FAILURE);
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}
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clear(); // Operator new is not guaranteed to initialize memory to zero
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table = (TTEntry*)((size_t(mem) + CACHE_LINE_SIZE - 1) & ~(CACHE_LINE_SIZE - 1));
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hashMask = size - ClusterSize;
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clear(); // Newly allocated block of memory is not initialized
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}
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@@ -70,7 +60,7 @@ void TranspositionTable::set_size(size_t mbSize) {
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void TranspositionTable::clear() {
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memset(entries, 0, size * sizeof(TTCluster));
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memset(table, 0, (hashMask + ClusterSize) * sizeof(TTEntry));
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}
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@@ -82,23 +72,23 @@ void TranspositionTable::clear() {
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/// more valuable than a TTEntry t2 if t1 is from the current search and t2 is from
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/// a previous search, or if the depth of t1 is bigger than the depth of t2.
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void TranspositionTable::store(const Key posKey, Value v, Bound t, Depth d, Move m, Value statV, Value kingD) {
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void TranspositionTable::store(const Key key, Value v, Bound t, Depth d, Move m, Value statV, Value kingD) {
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int c1, c2, c3;
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TTEntry *tte, *replace;
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uint32_t posKey32 = posKey >> 32; // Use the high 32 bits as key inside the cluster
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uint32_t key32 = key >> 32; // Use the high 32 bits as key inside the cluster
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tte = replace = first_entry(posKey);
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tte = replace = first_entry(key);
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for (int i = 0; i < ClusterSize; i++, tte++)
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for (unsigned i = 0; i < ClusterSize; i++, tte++)
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{
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if (!tte->key() || tte->key() == posKey32) // Empty or overwrite old
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if (!tte->key() || tte->key() == key32) // Empty or overwrite old
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{
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// Preserve any existing ttMove
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if (m == MOVE_NONE)
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m = tte->move();
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tte->save(posKey32, v, t, d, m, generation, statV, kingD);
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tte->save(key32, v, t, d, m, generation, statV, kingD);
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return;
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}
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@@ -110,7 +100,7 @@ void TranspositionTable::store(const Key posKey, Value v, Bound t, Depth d, Move
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if (c1 + c2 + c3 > 0)
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replace = tte;
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}
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replace->save(posKey32, v, t, d, m, generation, statV, kingD);
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replace->save(key32, v, t, d, m, generation, statV, kingD);
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}
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@@ -118,24 +108,14 @@ void TranspositionTable::store(const Key posKey, Value v, Bound t, Depth d, Move
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/// transposition table. Returns a pointer to the TTEntry or NULL if
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/// position is not found.
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TTEntry* TranspositionTable::probe(const Key posKey) const {
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TTEntry* TranspositionTable::probe(const Key key) const {
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uint32_t posKey32 = posKey >> 32;
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TTEntry* tte = first_entry(posKey);
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TTEntry* tte = first_entry(key);
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uint32_t key32 = key >> 32;
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for (int i = 0; i < ClusterSize; i++, tte++)
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if (tte->key() == posKey32)
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for (unsigned i = 0; i < ClusterSize; i++, tte++)
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if (tte->key() == key32)
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return tte;
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return NULL;
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}
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/// TranspositionTable::new_search() is called at the beginning of every new
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/// search. It increments the "generation" variable, which is used to
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/// distinguish transposition table entries from previous searches from
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/// entries from the current search.
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void TranspositionTable::new_search() {
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generation++;
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}
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