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@@ -89,7 +89,7 @@ namespace {
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void idle_loop(int threadID, SplitPoint* sp);
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template <bool Fake>
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void split(const Position& pos, SearchStack* ss, int ply, Value* alpha, const Value beta, Value* bestValue,
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void split(const Position& pos, SearchStack* ss, Value* alpha, const Value beta, Value* bestValue,
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Depth depth, bool mateThreat, int* moveCount, MovePicker* mp, int master, bool pvNode);
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private:
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@@ -285,10 +285,10 @@ namespace {
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Value root_search(Position& pos, SearchStack* ss, RootMoveList& rml, Value* alphaPtr, Value* betaPtr);
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template <NodeType PvNode>
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Value search(Position& pos, SearchStack* ss, Value alpha, Value beta, Depth depth, int ply, bool allowNullmove, int threadID, Move excludedMove = MOVE_NONE);
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Value search(Position& pos, SearchStack* ss, Value alpha, Value beta, Depth depth, bool allowNullmove, int threadID, Move excludedMove = MOVE_NONE);
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template <NodeType PvNode>
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Value qsearch(Position& pos, SearchStack* ss, Value alpha, Value beta, Depth depth, int ply, int threadID);
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Value qsearch(Position& pos, SearchStack* ss, Value alpha, Value beta, Depth depth, int threadID);
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template <NodeType PvNode>
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void sp_search(SplitPoint* sp, int threadID);
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@@ -637,6 +637,7 @@ namespace {
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H.clear();
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init_ss_array(ss);
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ValueByIteration[1] = rml.get_move_score(0);
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p.reset_ply();
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Iteration = 1;
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// Is one move significantly better than others after initial scoring ?
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@@ -877,7 +878,7 @@ namespace {
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alpha = -VALUE_INFINITE;
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// Full depth PV search, done on first move or after a fail high
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value = -search<PV>(pos, ss+1, -beta, -alpha, newDepth, 1, false, 0);
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value = -search<PV>(pos, ss+1, -beta, -alpha, newDepth, false, 0);
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}
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else
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{
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@@ -894,7 +895,7 @@ namespace {
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if (ss->reduction)
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{
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// Reduced depth non-pv search using alpha as upperbound
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth-ss->reduction, 1, true, 0);
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth-ss->reduction, true, 0);
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doFullDepthSearch = (value > alpha);
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}
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}
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@@ -904,12 +905,12 @@ namespace {
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{
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// Full depth non-pv search using alpha as upperbound
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ss->reduction = Depth(0);
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth, 1, true, 0);
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth, true, 0);
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// If we are above alpha then research at same depth but as PV
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// to get a correct score or eventually a fail high above beta.
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if (value > alpha)
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value = -search<PV>(pos, ss+1, -beta, -alpha, newDepth, 1, false, 0);
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value = -search<PV>(pos, ss+1, -beta, -alpha, newDepth, false, 0);
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}
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}
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@@ -1033,12 +1034,12 @@ namespace {
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template <NodeType PvNode>
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Value search(Position& pos, SearchStack* ss, Value alpha, Value beta, Depth depth,
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int ply, bool allowNullmove, int threadID, Move excludedMove) {
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bool allowNullmove, int threadID, Move excludedMove) {
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assert(alpha >= -VALUE_INFINITE && alpha <= VALUE_INFINITE);
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assert(beta > alpha && beta <= VALUE_INFINITE);
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assert(PvNode || alpha == beta - 1);
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assert(ply >= 0 && ply < PLY_MAX);
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assert(pos.ply() > 0 && pos.ply() < PLY_MAX);
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assert(threadID >= 0 && threadID < TM.active_threads());
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Move movesSearched[256];
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@@ -1052,11 +1053,12 @@ namespace {
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bool isCheck, singleEvasion, moveIsCheck, captureOrPromotion, dangerous;
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bool mateThreat = false;
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int moveCount = 0;
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int ply = pos.ply();
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refinedValue = bestValue = value = -VALUE_INFINITE;
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oldAlpha = alpha;
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if (depth < OnePly)
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return qsearch<PvNode>(pos, ss, alpha, beta, Depth(0), ply, threadID);
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return qsearch<PvNode>(pos, ss, alpha, beta, Depth(0), threadID);
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// Step 1. Initialize node and poll
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// Polling can abort search.
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@@ -1129,7 +1131,7 @@ namespace {
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&& !pos.has_pawn_on_7th(pos.side_to_move()))
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{
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Value rbeta = beta - razor_margin(depth);
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Value v = qsearch<NonPV>(pos, ss, rbeta-1, rbeta, Depth(0), ply, threadID);
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Value v = qsearch<NonPV>(pos, ss, rbeta-1, rbeta, Depth(0), threadID);
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if (v < rbeta)
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// Logically we should return (v + razor_margin(depth)), but
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// surprisingly this did slightly weaker in tests.
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@@ -1171,7 +1173,7 @@ namespace {
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pos.do_null_move(st);
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nullValue = -search<NonPV>(pos, ss+1, -beta, -alpha, depth-R*OnePly, ply+1, false, threadID);
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nullValue = -search<NonPV>(pos, ss+1, -beta, -alpha, depth-R*OnePly, false, threadID);
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pos.undo_null_move();
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@@ -1185,7 +1187,7 @@ namespace {
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return nullValue;
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// Do zugzwang verification search
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Value v = search<NonPV>(pos, ss, alpha, beta, depth-5*OnePly, ply, false, threadID);
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Value v = search<NonPV>(pos, ss, alpha, beta, depth-5*OnePly, false, threadID);
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if (v >= beta)
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return nullValue;
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} else {
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@@ -1212,7 +1214,7 @@ namespace {
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&& (PvNode || (!isCheck && ss->eval >= beta - IIDMargin)))
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{
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Depth d = (PvNode ? depth - 2 * OnePly : depth / 2);
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search<PvNode>(pos, ss, alpha, beta, d, ply, false, threadID);
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search<PvNode>(pos, ss, alpha, beta, d, false, threadID);
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ttMove = ss->pv[ply];
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tte = TT.retrieve(posKey);
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}
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@@ -1259,7 +1261,7 @@ namespace {
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if (abs(ttValue) < VALUE_KNOWN_WIN)
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{
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Value b = ttValue - SingularExtensionMargin;
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Value v = search<NonPV>(pos, ss, b - 1, b, depth / 2, ply, false, threadID, move);
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Value v = search<NonPV>(pos, ss, b - 1, b, depth / 2, false, threadID, move);
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if (v < ttValue - SingularExtensionMargin)
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ext = OnePly;
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@@ -1306,7 +1308,7 @@ namespace {
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// Step extra. pv search (only in PV nodes)
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// The first move in list is the expected PV
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if (PvNode && moveCount == 1)
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value = -search<PV>(pos, ss+1, -beta, -alpha, newDepth, ply+1, false, threadID);
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value = -search<PV>(pos, ss+1, -beta, -alpha, newDepth, false, threadID);
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else
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{
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// Step 14. Reduced depth search
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@@ -1322,7 +1324,7 @@ namespace {
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ss->reduction = reduction<PvNode>(depth, moveCount);
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if (ss->reduction)
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{
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth-ss->reduction, ply+1, true, threadID);
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth-ss->reduction, true, threadID);
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doFullDepthSearch = (value > alpha);
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}
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@@ -1332,7 +1334,7 @@ namespace {
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if (doFullDepthSearch && ss->reduction > 2 * OnePly)
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{
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ss->reduction = OnePly;
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth-ss->reduction, ply+1, true, threadID);
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth-ss->reduction, true, threadID);
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doFullDepthSearch = (value > alpha);
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}
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}
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@@ -1341,13 +1343,13 @@ namespace {
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if (doFullDepthSearch)
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{
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ss->reduction = Depth(0);
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth, ply+1, true, threadID);
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value = -search<NonPV>(pos, ss+1, -(alpha+1), -alpha, newDepth, true, threadID);
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// Step extra. pv search (only in PV nodes)
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// Search only for possible new PV nodes, if instead value >= beta then
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// parent node fails low with value <= alpha and tries another move.
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if (PvNode && value > alpha && value < beta)
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value = -search<PV>(pos, ss+1, -beta, -alpha, newDepth, ply+1, false, threadID);
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value = -search<PV>(pos, ss+1, -beta, -alpha, newDepth, false, threadID);
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}
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}
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@@ -1380,7 +1382,7 @@ namespace {
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&& TM.available_thread_exists(threadID)
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&& !AbortSearch
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&& !TM.thread_should_stop(threadID))
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TM.split<FakeSplit>(pos, ss, ply, &alpha, beta, &bestValue, depth,
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TM.split<FakeSplit>(pos, ss, &alpha, beta, &bestValue, depth,
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mateThreat, &moveCount, &mp, threadID, PvNode);
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}
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@@ -1425,14 +1427,13 @@ namespace {
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// less than OnePly).
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template <NodeType PvNode>
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Value qsearch(Position& pos, SearchStack* ss, Value alpha, Value beta,
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Depth depth, int ply, int threadID) {
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Value qsearch(Position& pos, SearchStack* ss, Value alpha, Value beta, Depth depth, int threadID) {
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assert(alpha >= -VALUE_INFINITE && alpha <= VALUE_INFINITE);
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assert(beta >= -VALUE_INFINITE && beta <= VALUE_INFINITE);
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assert(PvNode || alpha == beta - 1);
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assert(depth <= 0);
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assert(ply >= 0 && ply < PLY_MAX);
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assert(pos.ply() > 0 && pos.ply() < PLY_MAX);
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assert(threadID >= 0 && threadID < TM.active_threads());
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EvalInfo ei;
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@@ -1442,6 +1443,7 @@ namespace {
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bool isCheck, enoughMaterial, moveIsCheck, evasionPrunable;
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const TTEntry* tte = NULL;
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int moveCount = 0;
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int ply = pos.ply();
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Value oldAlpha = alpha;
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// Initialize, and make an early exit in case of an aborted search,
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@@ -1563,7 +1565,7 @@ namespace {
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// Make and search the move
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pos.do_move(move, st, ci, moveIsCheck);
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value = -qsearch<PvNode>(pos, ss+1, -beta, -alpha, depth-OnePly, ply+1, threadID);
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value = -qsearch<PvNode>(pos, ss+1, -beta, -alpha, depth-OnePly, threadID);
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pos.undo_move(move);
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assert(value > -VALUE_INFINITE && value < VALUE_INFINITE);
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@@ -1636,6 +1638,7 @@ namespace {
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Position pos(*sp->pos);
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CheckInfo ci(pos);
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int ply = pos.ply();
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SearchStack* ss = sp->sstack[threadID] + 1;
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isCheck = pos.is_check();
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@@ -1709,7 +1712,7 @@ namespace {
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if (ss->reduction)
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{
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Value localAlpha = sp->alpha;
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value = -search<NonPV>(pos, ss+1, -(localAlpha+1), -localAlpha, newDepth-ss->reduction, sp->ply+1, true, threadID);
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value = -search<NonPV>(pos, ss+1, -(localAlpha+1), -localAlpha, newDepth-ss->reduction, true, threadID);
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doFullDepthSearch = (value > localAlpha);
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}
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@@ -1720,7 +1723,7 @@ namespace {
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{
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ss->reduction = OnePly;
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Value localAlpha = sp->alpha;
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value = -search<NonPV>(pos, ss+1, -(localAlpha+1), -localAlpha, newDepth-ss->reduction, sp->ply+1, true, threadID);
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value = -search<NonPV>(pos, ss+1, -(localAlpha+1), -localAlpha, newDepth-ss->reduction, true, threadID);
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doFullDepthSearch = (value > localAlpha);
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}
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}
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@@ -1730,10 +1733,10 @@ namespace {
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{
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ss->reduction = Depth(0);
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Value localAlpha = sp->alpha;
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value = -search<NonPV>(pos, ss+1, -(localAlpha+1), -localAlpha, newDepth, sp->ply+1, true, threadID);
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value = -search<NonPV>(pos, ss+1, -(localAlpha+1), -localAlpha, newDepth, true, threadID);
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if (PvNode && value > localAlpha && value < sp->beta)
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value = -search<PV>(pos, ss+1, -sp->beta, -sp->alpha, newDepth, sp->ply+1, false, threadID);
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value = -search<PV>(pos, ss+1, -sp->beta, -sp->alpha, newDepth, false, threadID);
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}
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// Step 16. Undo move
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@@ -1756,7 +1759,7 @@ namespace {
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if (PvNode && value < sp->beta) // This guarantees that always: sp->alpha < sp->beta
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sp->alpha = value;
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sp_update_pv(sp->parentSstack, ss, sp->ply);
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sp_update_pv(sp->parentSstack, ss, ply);
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}
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}
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}
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@@ -2622,11 +2625,10 @@ namespace {
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// split() returns.
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template <bool Fake>
|
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|
|
|
void ThreadsManager::split(const Position& p, SearchStack* ss, int ply, Value* alpha,
|
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|
|
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const Value beta, Value* bestValue, Depth depth, bool mateThreat,
|
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|
|
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int* moveCount, MovePicker* mp, int master, bool pvNode) {
|
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|
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void ThreadsManager::split(const Position& p, SearchStack* ss, Value* alpha, const Value beta,
|
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|
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Value* bestValue, Depth depth, bool mateThreat, int* moveCount,
|
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MovePicker* mp, int master, bool pvNode) {
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assert(p.is_ok());
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assert(ply > 0 && ply < PLY_MAX);
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assert(*bestValue >= -VALUE_INFINITE);
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assert(*bestValue <= *alpha);
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assert(*alpha < beta);
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@@ -2652,7 +2654,6 @@ namespace {
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// Initialize the split point object
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splitPoint->parent = threads[master].splitPoint;
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splitPoint->stopRequest = false;
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splitPoint->ply = ply;
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splitPoint->depth = depth;
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splitPoint->mateThreat = mateThreat;
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splitPoint->alpha = *alpha;
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@@ -2787,7 +2788,7 @@ namespace {
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init_ss_array(ss);
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pos.do_move(cur->move, st);
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moves[count].move = cur->move;
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moves[count].score = -qsearch<PV>(pos, ss+1, -VALUE_INFINITE, VALUE_INFINITE, Depth(0), 1, 0);
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moves[count].score = -qsearch<PV>(pos, ss+1, -VALUE_INFINITE, VALUE_INFINITE, Depth(0), 0);
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moves[count].pv[0] = cur->move;
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moves[count].pv[1] = MOVE_NONE;
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pos.undo_move(cur->move);
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