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https://github.com/sockspls/badfish
synced 2025-07-11 19:49:14 +00:00
Retire TTCluster and simplify TT
Also some renaming while there. No functional change.
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parent
3f44be9baa
commit
fe3352665b
3 changed files with 38 additions and 71 deletions
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@ -594,8 +594,8 @@ namespace {
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else if (tte)
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{
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// Never assume anything on values stored in TT
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if ( (ss->staticEval = eval = tte->static_value()) == VALUE_NONE
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||(ss->evalMargin = tte->static_value_margin()) == VALUE_NONE)
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if ( (ss->staticEval = eval = tte->eval_value()) == VALUE_NONE
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||(ss->evalMargin = tte->eval_margin()) == VALUE_NONE)
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eval = ss->staticEval = evaluate(pos, ss->evalMargin);
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// Can ttValue be used as a better position evaluation?
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@ -1164,8 +1164,8 @@ split_point_start: // At split points actual search starts from here
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if (tte)
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{
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// Never assume anything on values stored in TT
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if ( (ss->staticEval = bestValue = tte->static_value()) == VALUE_NONE
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||(ss->evalMargin = tte->static_value_margin()) == VALUE_NONE)
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if ( (ss->staticEval = bestValue = tte->eval_value()) == VALUE_NONE
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||(ss->evalMargin = tte->eval_margin()) == VALUE_NONE)
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ss->staticEval = bestValue = evaluate(pos, ss->evalMargin);
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}
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else
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36
src/tt.cpp
36
src/tt.cpp
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@ -25,33 +25,21 @@
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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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size_t newSize = 1ULL << msb((mbSize << 20) / sizeof(TTEntry[ClusterSize]));
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if (newSize == size)
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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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entries = new (std::nothrow) TTEntry[size * ClusterSize];
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if (!entries)
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{
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@ -70,7 +58,7 @@ 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(entries, 0, size * sizeof(TTEntry[ClusterSize]));
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}
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@ -90,7 +78,7 @@ void TranspositionTable::store(const Key key, Value v, Bound t, Depth d, Move m,
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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() == key32) // Empty or overwrite old
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{
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@ -123,19 +111,9 @@ TTEntry* TranspositionTable::probe(const Key key) const {
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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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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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65
src/tt.h
65
src/tt.h
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@ -44,7 +44,7 @@
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class TTEntry {
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public:
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void save(uint32_t k, Value v, Bound b, Depth d, Move m, int g, Value statV, Value statM) {
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void save(uint32_t k, Value v, Bound b, Depth d, Move m, int g, Value ev, Value em) {
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key32 = (uint32_t)k;
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move16 = (uint16_t)m;
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@ -52,63 +52,52 @@ public:
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generation8 = (uint8_t)g;
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value16 = (int16_t)v;
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depth16 = (int16_t)d;
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staticValue = (int16_t)statV;
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staticMargin = (int16_t)statM;
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evalValue = (int16_t)ev;
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evalMargin = (int16_t)em;
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}
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void set_generation(int g) { generation8 = (uint8_t)g; }
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uint32_t key() const { return key32; }
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Depth depth() const { return (Depth)depth16; }
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Move move() const { return (Move)move16; }
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Value value() const { return (Value)value16; }
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Bound type() const { return (Bound)bound; }
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int generation() const { return (int)generation8; }
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Value static_value() const { return (Value)staticValue; }
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Value static_value_margin() const { return (Value)staticMargin; }
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uint32_t key() const { return key32; }
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Depth depth() const { return (Depth)depth16; }
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Move move() const { return (Move)move16; }
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Value value() const { return (Value)value16; }
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Bound type() const { return (Bound)bound; }
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int generation() const { return (int)generation8; }
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Value eval_value() const { return (Value)evalValue; }
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Value eval_margin() const { return (Value)evalMargin; }
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private:
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uint32_t key32;
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uint16_t move16;
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uint8_t bound, generation8;
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int16_t value16, depth16, staticValue, staticMargin;
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int16_t value16, depth16, evalValue, evalMargin;
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};
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/// This is the number of TTEntry slots for each cluster
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const int ClusterSize = 4;
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/// TTCluster consists of ClusterSize number of TTEntries. Size of TTCluster
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/// must not be bigger than a cache line size. In case it is less, it should
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/// be padded to guarantee always aligned accesses.
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struct TTCluster {
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TTEntry data[ClusterSize];
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};
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/// The transposition table class. This is basically just a huge array containing
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/// TTCluster objects, and a few methods for writing and reading entries.
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/// A TranspositionTable consists of a power of 2 number of clusters and each
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/// cluster consists of ClusterSize number of TTEntry. Each non-empty entry
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/// contains information of exactly one position. Size of a cluster shall not be
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/// bigger than a cache line size. In case it is less, it should be padded to
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/// guarantee always aligned accesses.
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class TranspositionTable {
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TranspositionTable(const TranspositionTable&);
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TranspositionTable& operator=(const TranspositionTable&);
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static const unsigned ClusterSize = 4; // A cluster is 64 Bytes
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public:
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TranspositionTable();
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~TranspositionTable();
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~TranspositionTable() { delete [] entries; }
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void new_search() { generation++; }
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TTEntry* probe(const Key key) const;
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TTEntry* first_entry(const Key key) const;
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void refresh(const TTEntry* tte) const;
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void set_size(size_t mbSize);
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void clear();
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void store(const Key key, Value v, Bound type, Depth d, Move m, Value statV, Value kingD);
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TTEntry* probe(const Key key) const;
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void new_search();
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TTEntry* first_entry(const Key posKey) const;
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void refresh(const TTEntry* tte) const;
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private:
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size_t size;
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TTCluster* entries;
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TTEntry* entries;
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uint8_t generation; // Size must be not bigger then TTEntry::generation8
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};
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@ -119,9 +108,9 @@ extern TranspositionTable TT;
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/// a cluster given a position. The lowest order bits of the key are used to
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/// get the index of the cluster.
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inline TTEntry* TranspositionTable::first_entry(const Key posKey) const {
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inline TTEntry* TranspositionTable::first_entry(const Key key) const {
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return entries[((uint32_t)posKey) & (size - 1)].data;
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return entries + ((uint32_t)key & (size - 1)) * ClusterSize;
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}
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