}
}
+ // Return the (standard) color+piece notation at a square for a board
+ getSquareOccupation(i, j, mirrorSide)
+ {
+ const piece = this.getPiece(i,j);
+ const V = VariantRules;
+ if (mirrorSide==1 && Object.keys(V.ALICE_CODES).includes(piece))
+ return this.board[i][j];
+ else if (mirrorSide==2 && Object.keys(V.ALICE_PIECES).includes(piece))
+ return this.getColor(i,j) + V.ALICE_PIECES[piece];
+ return "";
+ }
+
// Build board of the given (mirror)side
getSideBoard(mirrorSide)
{
- const V = VariantRules;
// Build corresponding board from complete board
- const [sizeX,sizeY] = V.size;
+ const [sizeX,sizeY] = VariantRules.size;
let sideBoard = doubleArray(sizeX, sizeY, "");
for (let i=0; i<sizeX; i++)
{
for (let j=0; j<sizeY; j++)
- {
- const piece = this.getPiece(i,j);
- if (mirrorSide==1 && Object.keys(V.ALICE_CODES).includes(piece))
- sideBoard[i][j] = this.board[i][j];
- else if (mirrorSide==2 && Object.keys(V.ALICE_PIECES).includes(piece))
- sideBoard[i][j] = this.getColor(i,j) + V.ALICE_PIECES[piece];
- }
+ sideBoard[i][j] = this.getSquareOccupation(i, j, mirrorSide);
}
return sideBoard;
}
let res = moves.filter(m => {
if (m.appear.length == 2) //castle
{
- // If appear[i] not in vanish array, then must be empty square on other board
- m.appear.forEach(psq => {
- if (this.board[psq.x][psq.y] != VariantRules.EMPTY &&
- ![m.vanish[0].y,m.vanish[1].y].includes(psq.y))
- {
+ // appear[i] must be an empty square on the other board
+ for (let psq of m.appear)
+ {
+ if (this.getSquareOccupation(psq.x,psq.y,3-mirrorSide) != VariantRules.EMPTY)
return false;
- }
- });
+ }
}
else if (this.board[m.end.x][m.end.y] != VariantRules.EMPTY)
{