X-Git-Url: https://git.sesse.net/?a=blobdiff_plain;ds=sidebyside;f=src%2Fmove.cpp;h=f915feecc1c5412974f25cf37de4d86f80d8918a;hb=bbfe452f85929a938bda7fce9894f57659987919;hp=221aac60a3aeb3baa0e165de1437d027499e42a9;hpb=b4acf83704c9bab4d78d9ec76ecbdfbfa0b0c88c;p=stockfish
diff --git a/src/move.cpp b/src/move.cpp
index 221aac60..f915feec 100644
--- a/src/move.cpp
+++ b/src/move.cpp
@@ -17,11 +17,6 @@
along with this program. If not, see .
*/
-
-////
-//// Includes
-////
-
#include
#include
#include
@@ -30,39 +25,26 @@
#include "move.h"
#include "movegen.h"
+#include "search.h"
using std::string;
-////
-//// Local definitions
-////
-
namespace {
-
- enum Ambiguity {
- AMBIGUITY_NONE, AMBIGUITY_FILE, AMBIGUITY_RANK, AMBIGUITY_BOTH
- };
-
- Ambiguity move_ambiguity(const Position& pos, Move m);
const string time_string(int milliseconds);
const string score_string(Value v);
}
-////
-//// Functions
-////
-
/// move_to_uci() converts a move to a string in coordinate notation
/// (g1f3, a7a8q, etc.). The only special case is castling moves, where we
/// print in the e1g1 notation in normal chess mode, and in e1h1 notation in
/// Chess960 mode.
-const std::string move_to_uci(Move m, bool chess960) {
+const string move_to_uci(Move m, bool chess960) {
- std::string promotion;
Square from = move_from(m);
Square to = move_to(m);
+ string promotion;
if (m == MOVE_NONE)
return "(none)";
@@ -86,7 +68,7 @@ const std::string move_to_uci(Move m, bool chess960) {
/// move_from_uci() takes a position and a string representing a move in
/// simple coordinate notation and returns an equivalent Move.
-Move move_from_uci(const Position& pos, const std::string& str) {
+Move move_from_uci(const Position& pos, const string& str) {
MoveStack mlist[MOVES_MAX];
MoveStack* last = generate(pos, mlist);
@@ -108,10 +90,11 @@ const string move_to_san(Position& pos, Move m) {
assert(pos.is_ok());
assert(move_is_ok(m));
- string san;
+ MoveStack mlist[MOVES_MAX];
Square from = move_from(m);
Square to = move_to(m);
- PieceType pt = type_of_piece(pos.piece_on(from));
+ PieceType pt = pos.type_of_piece_on(from);
+ string san;
if (m == MOVE_NONE)
return "(none)";
@@ -127,23 +110,32 @@ const string move_to_san(Position& pos, Move m) {
{
if (pt != PAWN)
{
- san += piece_type_to_char(pt);
-
- switch (move_ambiguity(pos, m)) {
- case AMBIGUITY_NONE:
- break;
- case AMBIGUITY_FILE:
- san += file_to_char(square_file(from));
- break;
- case AMBIGUITY_RANK:
- san += rank_to_char(square_rank(from));
- break;
- case AMBIGUITY_BOTH:
- san += square_to_string(from);
- break;
- default:
- assert(false);
- }
+ san = piece_type_to_char(pt);
+
+ // Collect all legal moves of piece type 'pt' with destination 'to'
+ MoveStack* last = generate(pos, mlist);
+ int f = 0, r = 0;
+
+ for (MoveStack* cur = mlist; cur != last; cur++)
+ if ( move_to(cur->move) == to
+ && pos.type_of_piece_on(move_from(cur->move)) == pt)
+ {
+ if (square_file(move_from(cur->move)) == square_file(from))
+ f++;
+
+ if (square_rank(move_from(cur->move)) == square_rank(from))
+ r++;
+ }
+
+ assert(f > 0 && r > 0);
+
+ // Disambiguation if we have more then one piece with destination 'to'
+ if (f == 1 && r > 1)
+ san += file_to_char(square_file(from));
+ else if (f > 1 && r == 1)
+ san += rank_to_char(square_rank(from));
+ else if (f > 1 && r > 1)
+ san += square_to_string(from);
}
if (pos.move_is_capture(m))
@@ -153,6 +145,7 @@ const string move_to_san(Position& pos, Move m) {
san += 'x';
}
+
san += square_to_string(to);
if (move_is_promotion(m))
@@ -162,8 +155,8 @@ const string move_to_san(Position& pos, Move m) {
}
}
- // The move gives check ? We don't use pos.move_is_check() here
- // because we need to test for mate after the move is done.
+ // The move gives check? We don't use pos.move_is_check() here
+ // because we need to test for a mate after the move is done.
StateInfo st;
pos.do_move(m, st);
if (pos.is_check())
@@ -174,132 +167,76 @@ const string move_to_san(Position& pos, Move m) {
}
-/// line_to_san() takes a position and a line (an array of moves representing
-/// a sequence of legal moves from the position) as input, and returns a
-/// string containing the line in short algebraic notation. If the boolean
-/// parameter 'breakLines' is true, line breaks are inserted, with a line
-/// length of 80 characters. After a line break, 'startColumn' spaces are
-/// inserted at the beginning of the new line.
-
-const string line_to_san(const Position& pos, Move line[], int startColumn, bool breakLines) {
-
- StateInfo st;
- std::stringstream s;
- string moveStr;
- size_t length = 0;
- size_t maxLength = 80 - startColumn;
- Position p(pos, pos.thread());
-
- for (Move* m = line; *m != MOVE_NONE; m++)
- {
- moveStr = move_to_san(p, *m);
- length += moveStr.length() + 1;
- if (breakLines && length > maxLength)
- {
- s << "\n" << std::setw(startColumn) << " ";
- length = moveStr.length() + 1;
- }
- s << moveStr << ' ';
-
- if (*m == MOVE_NULL)
- p.do_null_move(st);
- else
- p.do_move(*m, st);
- }
- return s.str();
-}
-
-
/// pretty_pv() creates a human-readable string from a position and a PV.
/// It is used to write search information to the log file (which is created
/// when the UCI parameter "Use Search Log" is "true").
-const string pretty_pv(const Position& pos, int time, int depth,
- Value score, ValueType type, Move pv[]) {
+const string pretty_pv(Position& pos, int depth, Value score, int time, Move pv[]) {
const int64_t K = 1000;
const int64_t M = 1000000;
+ const int startColumn = 28;
+ const size_t maxLength = 80 - startColumn;
+ const string lf = string("\n") + string(startColumn, ' ');
+ StateInfo state[PLY_MAX_PLUS_2], *st = state;
+ Move* m = pv;
+ string san;
std::stringstream s;
+ size_t length = 0;
- // Depth
- s << std::setw(2) << depth << " ";
-
- // Score
- s << (type == VALUE_TYPE_LOWER ? ">" : type == VALUE_TYPE_UPPER ? "<" : " ")
- << std::setw(7) << score_string(score);
-
- // Time
- s << std::setw(8) << time_string(time) << " ";
+ // First print depth, score, time and searched nodes...
+ s << std::setw(2) << depth
+ << std::setw(8) << score_string(score)
+ << std::setw(8) << time_string(time);
- // Nodes
if (pos.nodes_searched() < M)
- s << std::setw(8) << pos.nodes_searched() / 1 << " ";
+ s << std::setw(8) << pos.nodes_searched() / 1 << " ";
else if (pos.nodes_searched() < K * M)
- s << std::setw(7) << pos.nodes_searched() / K << "K ";
+ s << std::setw(7) << pos.nodes_searched() / K << "K ";
else
- s << std::setw(7) << pos.nodes_searched() / M << "M ";
-
- // PV
- s << line_to_san(pos, pv, 30, true);
-
- return s.str();
-}
-
-
-namespace {
+ s << std::setw(7) << pos.nodes_searched() / M << "M ";
- Ambiguity move_ambiguity(const Position& pos, Move m) {
-
- MoveStack mlist[MOVES_MAX], *last;
- Move candidates[8];
- Square from = move_from(m);
- Square to = move_to(m);
- Piece pc = pos.piece_on(from);
- int matches = 0, f = 0, r = 0;
-
- // If there is only one piece 'pc' then move cannot be ambiguous
- if (pos.piece_count(pos.side_to_move(), type_of_piece(pc)) == 1)
- return AMBIGUITY_NONE;
+ // ...then print the full PV line in short algebraic notation
+ while (*m != MOVE_NONE)
+ {
+ san = move_to_san(pos, *m);
+ length += san.length() + 1;
- // Collect all legal moves of piece 'pc' with destination 'to'
- last = generate(pos, mlist);
- for (MoveStack* cur = mlist; cur != last; cur++)
- if (move_to(cur->move) == to && pos.piece_on(move_from(cur->move)) == pc)
- candidates[matches++] = cur->move;
+ if (length > maxLength)
+ {
+ length = san.length() + 1;
+ s << lf;
+ }
+ s << san << ' ';
- if (matches == 1)
- return AMBIGUITY_NONE;
+ pos.do_move(*m++, *st++);
+ }
- for (int i = 0; i < matches; i++)
- {
- if (square_file(move_from(candidates[i])) == square_file(from))
- f++;
+ // Restore original position before to leave
+ while (m != pv) pos.undo_move(*--m);
- if (square_rank(move_from(candidates[i])) == square_rank(from))
- r++;
- }
+ return s.str();
+}
- return f == 1 ? AMBIGUITY_FILE : r == 1 ? AMBIGUITY_RANK : AMBIGUITY_BOTH;
- }
+namespace {
const string time_string(int millisecs) {
const int MSecMinute = 1000 * 60;
const int MSecHour = 1000 * 60 * 60;
- std::stringstream s;
- s << std::setfill('0');
-
int hours = millisecs / MSecHour;
- int minutes = (millisecs - hours * MSecHour) / MSecMinute;
- int seconds = (millisecs - hours * MSecHour - minutes * MSecMinute) / 1000;
+ int minutes = (millisecs % MSecHour) / MSecMinute;
+ int seconds = ((millisecs % MSecHour) % MSecMinute) / 1000;
+
+ std::stringstream s;
if (hours)
s << hours << ':';
- s << std::setw(2) << minutes << ':' << std::setw(2) << seconds;
+ s << std::setfill('0') << std::setw(2) << minutes << ':' << std::setw(2) << seconds;
return s.str();
}
@@ -313,13 +250,8 @@ namespace {
else if (v <= -VALUE_MATE + 200)
s << "-#" << (VALUE_MATE + v) / 2;
else
- {
- float floatScore = float(v) / float(PawnValueMidgame);
- if (v >= 0)
- s << '+';
+ s << std::setprecision(2) << std::fixed << std::showpos << float(v) / PawnValueMidgame;
- s << std::setprecision(2) << std::fixed << floatScore;
- }
return s.str();
}
}