159 lines
4.2 KiB
Rust
159 lines
4.2 KiB
Rust
// Eryn Wells <eryn@erynwells.me>
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use super::BitScanner;
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use crate::Square;
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use std::fmt;
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use std::ops::{BitAnd, BitOr, Not};
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#[derive(Clone, Copy, Eq, Hash, PartialEq)]
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pub(crate) struct BitBoard(pub(super) u64);
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impl BitBoard {
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pub fn empty() -> BitBoard {
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BitBoard(0)
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}
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pub fn from_bit_field(bits: u64) -> BitBoard {
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BitBoard(bits)
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}
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pub fn rank(rank: u8) -> BitBoard {
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BitBoard(0xFF).shift_north(rank)
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}
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pub fn is_empty(&self) -> bool {
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self.0 == 0
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}
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pub fn has_piece_at(&self, sq: &Square) -> bool {
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(self.0 & (1 << sq.index)) > 0
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}
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pub fn place_piece_at(&mut self, sq: &Square) {
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self.0 |= 1 << sq.index
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}
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fn remove_piece_at(&mut self, sq: &Square) {
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self.0 &= !(1 << sq.index)
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}
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}
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impl BitBoard {
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pub(crate) fn occupied_squares(&self) -> impl Iterator<Item = Square> {
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BitScanner::new(self.0)
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.map(|x| u8::try_from(x))
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.take_while(|x| x.is_ok())
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.map(|x| Square::from_index_unsafe(x.unwrap()))
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}
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}
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impl fmt::Debug for BitBoard {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> Result<(), fmt::Error> {
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let bits = self.0;
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write!(f, "BitBoard({bits:064b})")
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}
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}
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macro_rules! infix_op {
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($trait_type:ident, $func_name:ident, $left_type:ty, $right_type:ty, $op:tt) => {
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impl $trait_type<$right_type> for $left_type {
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type Output = BitBoard;
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#[inline]
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fn $func_name(self, rhs: $right_type) -> Self::Output {
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BitBoard(self.0 $op rhs.0)
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}
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}
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};
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}
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infix_op!(BitAnd, bitand, BitBoard, BitBoard, &);
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infix_op!(BitAnd, bitand, &BitBoard, BitBoard, &);
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infix_op!(BitAnd, bitand, BitBoard, &BitBoard, &);
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infix_op!(BitOr, bitor, BitBoard, BitBoard, |);
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infix_op!(BitOr, bitor, &BitBoard, BitBoard, |);
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infix_op!(BitOr, bitor, BitBoard, &BitBoard, |);
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impl Not for BitBoard {
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type Output = BitBoard;
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#[inline]
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fn not(self) -> Self::Output {
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BitBoard(!self.0)
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}
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}
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impl Not for &BitBoard {
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type Output = BitBoard;
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#[inline]
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fn not(self) -> Self::Output {
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BitBoard(!self.0)
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use crate::Square;
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#[test]
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fn rank() {
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assert_eq!(BitBoard::rank(0).0, 0xFF, "Rank 1");
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assert_eq!(BitBoard::rank(1).0, 0xFF00, "Rank 2");
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assert_eq!(BitBoard::rank(2).0, 0xFF0000, "Rank 3");
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assert_eq!(BitBoard::rank(3).0, 0xFF000000, "Rank 4");
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assert_eq!(BitBoard::rank(4).0, 0xFF00000000, "Rank 5");
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assert_eq!(BitBoard::rank(5).0, 0xFF0000000000, "Rank 6");
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assert_eq!(BitBoard::rank(6).0, 0xFF000000000000, "Rank 7");
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assert_eq!(BitBoard::rank(7).0, 0xFF00000000000000, "Rank 8");
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}
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#[test]
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fn is_empty() {
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assert!(BitBoard(0).is_empty());
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assert!(!BitBoard(0xFF).is_empty());
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}
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#[test]
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fn has_piece_at() {
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let bb = BitBoard(0b1001100);
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let c1 = Square::from_algebraic_str("c1").expect("Unable to get square for 'c1'");
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assert!(bb.has_piece_at(&c1));
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let b1 = Square::from_algebraic_str("b1").expect("Unable to get square for 'b1'");
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assert!(!bb.has_piece_at(&b1));
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}
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#[test]
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fn place_piece_at() {
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let sq = Square::from_index(34).expect("Invalid square index");
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let mut bb = BitBoard(0b1001100);
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bb.place_piece_at(&sq);
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assert!(bb.has_piece_at(&sq));
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}
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#[test]
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fn remove_piece_at() {
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let sq = Square::from_index(2).expect("Invalid square index");
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let mut bb = BitBoard(0b1001100);
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bb.remove_piece_at(&sq);
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assert!(!bb.has_piece_at(&sq));
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}
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#[test]
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fn pieces() {
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let bb = BitBoard(0x1001_1010); // e4
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let mut occupied_squares = bb.occupied_squares();
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assert_eq!(occupied_squares.next(), Some(Square::from_index_unsafe(28)));
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assert_eq!(occupied_squares.next(), Some(Square::from_index_unsafe(16)));
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assert_eq!(occupied_squares.next(), Some(Square::from_index_unsafe(12)));
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assert_eq!(occupied_squares.next(), Some(Square::from_index_unsafe(4)));
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assert_eq!(occupied_squares.next(), None);
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}
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}
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