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| Rev | Author | Line No. | Line |
|---|---|---|---|
| 33 | pmbaty | 1 | #include "chess.h" |
| 2 | #include "data.h" |
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| 3 | /* last modified 02/24/14 */ |
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| 4 | /* |
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| 5 | ******************************************************************************* |
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| 6 | * * |
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| 7 | * OutputMove() is responsible for converting the internal move format to a * |
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| 8 | * string that can be displayed. First, it simply converts the from/to * |
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| 9 | * squares to fully-qualified algebraic (which includes O-O and O-O-O for * |
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| 10 | * castling moves). Next, we try several "shortcut" forms and call * |
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| 11 | * input_move(silent=1) to let it silently check the move for uniqueness. * |
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| 12 | * as soon as we get a non-ambiguous move, we return that text string. * |
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| 13 | * * |
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| 14 | ******************************************************************************* |
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| 15 | */ |
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| 108 | pmbaty | 16 | char *OutputMove(TREE * RESTRICT tree, int ply, int wtm, int move) { |
| 33 | pmbaty | 17 | static char text_move[10], new_text[10]; |
| 108 | pmbaty | 18 | unsigned *mvp; |
| 19 | char *text = text_move; |
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| 33 | pmbaty | 20 | static const char piece_names[7] = { ' ', 'P', 'N', 'B', 'R', 'Q', 'K' }; |
| 21 | /* |
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| 22 | ************************************************************ |
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| 23 | * * |
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| 24 | * Special case for null-move which will only be used in a * |
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| 25 | * search trace which dumps the entire tree. * |
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| 26 | * * |
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| 27 | ************************************************************ |
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| 28 | */ |
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| 29 | if (move == 0) { |
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| 108 | pmbaty | 30 | strcpy(text, "null"); |
| 33 | pmbaty | 31 | return text; |
| 32 | } |
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| 33 | do { |
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| 34 | /* |
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| 35 | ************************************************************ |
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| 36 | * * |
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| 37 | * Check for castling moves first. * |
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| 38 | * * |
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| 39 | ************************************************************ |
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| 40 | */ |
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| 41 | if ((Piece(move) == king) && (Abs(From(move) - To(move)) == 2)) { |
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| 42 | if (wtm) { |
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| 43 | if (To(move) == 2) |
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| 108 | pmbaty | 44 | strcpy(text_move, "O-O-O"); |
| 33 | pmbaty | 45 | else |
| 108 | pmbaty | 46 | strcpy(text_move, "O-O"); |
| 33 | pmbaty | 47 | } else { |
| 48 | if (To(move) == 58) |
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| 108 | pmbaty | 49 | strcpy(text_move, "O-O-O"); |
| 33 | pmbaty | 50 | else |
| 108 | pmbaty | 51 | strcpy(text_move, "O-O"); |
| 33 | pmbaty | 52 | } |
| 53 | break; |
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| 54 | } |
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| 55 | /* |
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| 56 | ************************************************************ |
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| 57 | * * |
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| 58 | * Not a castling move. Convert the move to a fully- * |
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| 59 | * qualified algebraic move as a starting point. * |
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| 60 | * * |
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| 61 | ************************************************************ |
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| 62 | */ |
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| 63 | text = new_text; |
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| 64 | if ((int) Piece(move) > pawn) |
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| 65 | *text++ = piece_names[Piece(move)]; |
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| 66 | *text++ = File(From(move)) + 'a'; |
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| 67 | *text++ = Rank(From(move)) + '1'; |
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| 68 | if (Captured(move)) |
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| 69 | *text++ = 'x'; |
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| 70 | *text++ = File(To(move)) + 'a'; |
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| 71 | *text++ = Rank(To(move)) + '1'; |
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| 72 | if (Promote(move)) { |
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| 73 | *text++ = '='; |
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| 74 | *text++ = piece_names[Promote(move)]; |
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| 75 | } |
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| 76 | *text = '\0'; |
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| 108 | pmbaty | 77 | strcpy(text_move, new_text); |
| 33 | pmbaty | 78 | if (output_format > 0) |
| 79 | break; |
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| 80 | /* |
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| 81 | ************************************************************ |
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| 82 | * * |
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| 83 | * Now we try some short forms. If this is a pawn move * |
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| 84 | * (first character is "P") and the move is not a capture * |
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| 85 | * move, we can try just the destination square (Pe2e4 * |
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| 86 | * becomes e4). * |
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| 87 | * * |
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| 88 | ************************************************************ |
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| 89 | */ |
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| 90 | if (Piece(move) == pawn) { |
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| 91 | if (!Captured(move)) { |
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| 108 | pmbaty | 92 | strcpy(text_move, new_text + 2); |
| 93 | if (InputMove(tree, ply, wtm, 1, 0, text_move)) |
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| 33 | pmbaty | 94 | break; |
| 95 | } |
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| 96 | /* |
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| 97 | ************************************************************ |
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| 98 | * * |
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| 99 | * If this is a pawn and it is capturing something, try * |
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| 100 | * the usual pawn capture format (Pe4xd5 becomes exd5). * |
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| 101 | * * |
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| 102 | ************************************************************ |
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| 103 | */ |
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| 104 | text_move[0] = new_text[0]; |
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| 108 | pmbaty | 105 | strcpy(text_move + 1, new_text + 2); |
| 106 | if (InputMove(tree, ply, wtm, 1, 0, text_move)) |
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| 33 | pmbaty | 107 | break; |
| 108 | /* |
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| 109 | ************************************************************ |
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| 110 | * * |
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| 111 | * It is a pawn move and we can't find a shorter form, so * |
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| 112 | * leave it as a fully-qualified move and go with it as * |
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| 113 | * is. (this will not normally happen). * |
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| 114 | * * |
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| 115 | ************************************************************ |
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| 116 | */ |
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| 108 | pmbaty | 117 | strcpy(text_move, new_text); |
| 33 | pmbaty | 118 | break; |
| 119 | } |
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| 120 | /* |
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| 121 | ************************************************************ |
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| 122 | * * |
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| 123 | * If the move is a normal piece move, and does not * |
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| 124 | * capture anything, we try the piece + destination format * |
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| 125 | * first (Ng1f3 becomes Nf3). * |
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| 126 | * * |
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| 127 | ************************************************************ |
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| 128 | */ |
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| 129 | if (!Captured(move)) { |
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| 130 | text_move[0] = new_text[0]; |
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| 108 | pmbaty | 131 | strcpy(text_move + 1, new_text + 3); |
| 132 | if (InputMove(tree, ply, wtm, 1, 0, text_move)) |
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| 33 | pmbaty | 133 | break; |
| 134 | /* |
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| 135 | ************************************************************ |
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| 136 | * * |
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| 137 | * If that is ambiguous, we will try two alternatives: * |
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| 138 | * (1) add in the origin file; (2) add in the origin rank * |
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| 139 | * (Ng1f3 becomes Ngf3 or N1f3). * |
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| 140 | * * |
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| 141 | ************************************************************ |
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| 142 | */ |
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| 143 | text_move[0] = new_text[0]; |
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| 144 | text_move[1] = new_text[1]; |
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| 108 | pmbaty | 145 | strcpy(text_move + 2, new_text + 3); |
| 146 | if (InputMove(tree, ply, wtm, 1, 0, text_move)) |
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| 33 | pmbaty | 147 | break; |
| 148 | text_move[0] = new_text[0]; |
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| 108 | pmbaty | 149 | strcpy(text_move + 1, new_text + 2); |
| 150 | if (InputMove(tree, ply, wtm, 1, 0, text_move)) |
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| 33 | pmbaty | 151 | break; |
| 152 | /* |
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| 153 | ************************************************************ |
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| 154 | * * |
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| 155 | * Nothing worked, so we go with the fully-qualified move. * |
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| 156 | * * |
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| 157 | ************************************************************ |
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| 158 | */ |
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| 108 | pmbaty | 159 | strcpy(text_move, new_text); |
| 33 | pmbaty | 160 | break; |
| 161 | } else { |
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| 162 | /* |
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| 163 | ************************************************************ |
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| 164 | * * |
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| 165 | * If this is a capture, we try the short form of a * |
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| 166 | * capture move (Ng1xf3 becomes Nxf3) * |
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| 167 | * * |
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| 168 | ************************************************************ |
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| 169 | */ |
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| 170 | text_move[0] = new_text[0]; |
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| 108 | pmbaty | 171 | strcpy(text_move + 1, new_text + 3); |
| 172 | if (InputMove(tree, ply, wtm, 1, 0, text_move)) |
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| 33 | pmbaty | 173 | break; |
| 174 | /* |
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| 175 | ************************************************************ |
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| 176 | * * |
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| 177 | * If that didn't work, we try adding in the origin file * |
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| 178 | * or the origin rank (Ng1xf3 becomes Ngxf3 or N1xf3). * |
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| 179 | * * |
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| 180 | ************************************************************ |
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| 181 | */ |
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| 182 | text_move[0] = new_text[0]; |
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| 183 | text_move[1] = new_text[1]; |
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| 108 | pmbaty | 184 | strcpy(text_move + 2, new_text + 3); |
| 185 | if (InputMove(tree, ply, wtm, 1, 0, text_move)) |
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| 33 | pmbaty | 186 | break; |
| 187 | text_move[0] = new_text[0]; |
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| 108 | pmbaty | 188 | strcpy(text_move + 1, new_text + 2); |
| 189 | if (InputMove(tree, ply, wtm, 1, 0, text_move)) |
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| 33 | pmbaty | 190 | break; |
| 191 | /* |
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| 192 | ************************************************************ |
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| 193 | * * |
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| 194 | * Nothing worked, return the fully-qualified move. * |
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| 195 | * * |
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| 196 | ************************************************************ |
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| 197 | */ |
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| 108 | pmbaty | 198 | strcpy(text_move, new_text); |
| 33 | pmbaty | 199 | break; |
| 200 | } |
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| 201 | } while (0); |
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| 202 | /* |
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| 203 | ************************************************************ |
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| 204 | * * |
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| 205 | * If the move is a check, or mate, append either "+" or * |
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| 206 | * "#" as appropriate. * |
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| 207 | * * |
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| 208 | ************************************************************ |
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| 209 | */ |
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| 210 | if (output_format == 0) { |
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| 211 | text = text_move + strlen(text_move); |
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| 212 | tree->status[MAXPLY] = tree->status[ply]; |
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| 108 | pmbaty | 213 | MakeMove(tree, MAXPLY, wtm, move); |
| 33 | pmbaty | 214 | if (Check(Flip(wtm))) { |
| 215 | mvp = |
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| 216 | GenerateCheckEvasions(tree, MAXPLY + 1, Flip(wtm), |
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| 217 | tree->move_list + 4800); |
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| 218 | if (mvp == (tree->move_list + 4800)) |
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| 219 | *text++ = '#'; |
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| 220 | else |
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| 221 | *text++ = '+'; |
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| 222 | } |
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| 108 | pmbaty | 223 | UnmakeMove(tree, MAXPLY, wtm, move); |
| 33 | pmbaty | 224 | *text = 0; |
| 225 | } |
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| 226 | return text_move; |
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| 227 | } |