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Currently Zobrist::castling[] are not properly zeroed and rely on the compiler to do this at startup, but this makes Position::init() to set different values every time it is called! This is a bit odd, and although not impacting normal usage, can yield to subtle misbehaviour, very difficult to track down, in case we happen to call it more than once for some reason. I found this while developing tuning support and it took me a while to track it down. So properly init Zobrist::castling[] No functional change. Resolves #329
163 lines
5.1 KiB
C++
163 lines
5.1 KiB
C++
/*
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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) 2008-2015 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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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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Stockfish is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <algorithm>
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#include <cassert>
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#include <ostream>
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#include "misc.h"
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#include "thread.h"
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#include "tt.h"
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#include "uci.h"
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#include "syzygy/tbprobe.h"
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using std::string;
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UCI::OptionsMap Options; // Global object
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namespace UCI {
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/// 'On change' actions, triggered by an option's value change
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void on_clear_hash(const Option&) { TT.clear(); }
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void on_hash_size(const Option& o) { TT.resize(o); }
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void on_logger(const Option& o) { start_logger(o); }
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void on_threads(const Option&) { Threads.read_uci_options(); }
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void on_tb_path(const Option& o) { Tablebases::init(o); }
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/// Our case insensitive less() function as required by UCI protocol
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bool CaseInsensitiveLess::operator() (const string& s1, const string& s2) const {
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return std::lexicographical_compare(s1.begin(), s1.end(), s2.begin(), s2.end(),
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[](char c1, char c2) { return tolower(c1) < tolower(c2); });
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}
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/// init() initializes the UCI options to their hard-coded default values
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void init(OptionsMap& o) {
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const int MaxHashMB = Is64Bit ? 1024 * 1024 : 2048;
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o["Write Debug Log"] << Option(false, on_logger);
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o["Contempt"] << Option(0, -100, 100);
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o["Min Split Depth"] << Option(0, 0, 12, on_threads);
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o["Threads"] << Option(1, 1, MAX_THREADS, on_threads);
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o["Hash"] << Option(16, 1, MaxHashMB, on_hash_size);
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o["Clear Hash"] << Option(on_clear_hash);
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o["Ponder"] << Option(true);
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o["MultiPV"] << Option(1, 1, 500);
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o["Skill Level"] << Option(20, 0, 20);
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o["Move Overhead"] << Option(30, 0, 5000);
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o["Minimum Thinking Time"] << Option(20, 0, 5000);
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o["Slow Mover"] << Option(80, 10, 1000);
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o["nodestime"] << Option(0, 0, 10000);
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o["UCI_Chess960"] << Option(false);
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o["SyzygyPath"] << Option("<empty>", on_tb_path);
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o["SyzygyProbeDepth"] << Option(1, 1, 100);
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o["Syzygy50MoveRule"] << Option(true);
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o["SyzygyProbeLimit"] << Option(6, 0, 6);
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}
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/// operator<<() is used to print all the options default values in chronological
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/// insertion order (the idx field) and in the format defined by the UCI protocol.
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std::ostream& operator<<(std::ostream& os, const OptionsMap& om) {
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for (size_t idx = 0; idx < om.size(); ++idx)
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for (const auto& it : om)
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if (it.second.idx == idx)
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{
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const Option& o = it.second;
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os << "\noption name " << it.first << " type " << o.type;
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if (o.type != "button")
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os << " default " << o.defaultValue;
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if (o.type == "spin")
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os << " min " << o.min << " max " << o.max;
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break;
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}
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return os;
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}
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/// Option class constructors and conversion operators
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Option::Option(const char* v, OnChange f) : type("string"), min(0), max(0), on_change(f)
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{ defaultValue = currentValue = v; }
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Option::Option(bool v, OnChange f) : type("check"), min(0), max(0), on_change(f)
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{ defaultValue = currentValue = (v ? "true" : "false"); }
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Option::Option(OnChange f) : type("button"), min(0), max(0), on_change(f)
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{}
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Option::Option(int v, int minv, int maxv, OnChange f) : type("spin"), min(minv), max(maxv), on_change(f)
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{ defaultValue = currentValue = std::to_string(v); }
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Option::operator int() const {
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assert(type == "check" || type == "spin");
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return (type == "spin" ? stoi(currentValue) : currentValue == "true");
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}
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Option::operator std::string() const {
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assert(type == "string");
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return currentValue;
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}
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/// operator<<() inits options and assigns idx in the correct printing order
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void Option::operator<<(const Option& o) {
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static size_t insert_order = 0;
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*this = o;
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idx = insert_order++;
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}
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/// operator=() updates currentValue and triggers on_change() action. It's up to
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/// the GUI to check for option's limits, but we could receive the new value from
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/// the user by console window, so let's check the bounds anyway.
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Option& Option::operator=(const string& v) {
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assert(!type.empty());
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if ( (type != "button" && v.empty())
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|| (type == "check" && v != "true" && v != "false")
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|| (type == "spin" && (stoi(v) < min || stoi(v) > max)))
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return *this;
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if (type != "button")
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currentValue = v;
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if (on_change)
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on_change(*this);
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return *this;
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}
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} // namespace UCI
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