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175 lines (162 loc) · 6.52 KB
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#pragma once
//(c) Michael J Sherwin 2020
//SISSY BOARDS - https://www.chessprogramming.org/SISSY_Bitboards
//Cuda Translation by Daniel Inführ - Jan. 2022
//Contact: daniel.infuehr@live.de
#include <stdint.h>
#include "cu_Common.h"
namespace SISSY
{
uint64_t qss[64][256][8];
uint64_t bss[64][128][6];
uint64_t bob[64];
uint64_t b7e[64];
uint64_t rob[64];
__constant__ uint64_t* cu_qss_atk[1];
__device__ uint64_t cu_qss(int x, int y, int z) {
return (*cu_qss_atk)[x * 256 * 8 + y * 8 + z];
}
void InitializeBSS() {
uint8_t sq, sqr, k, l;
int8_t x, dx, y, dy;
uint64_t b, bb, i, j, ii, jj;
for (sq = 0; sq < 64; sq++) {
y = sq >> 3;
x = sq & 7;
for (i = 0; i < 128; i++) {
for (k = 8, l = 0; k <= 48; k += 8, l++) {
bb = 0;
b = ((uint64_t)i << k) & bob[sq];
for (dx = +1, dy = +1; x + dx < +8 && y + dy < +8; dx++, dy++) {
sqr = (((y + dy) << 3) + x + dx);
bb |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dx = -1, dy = +1; x + dx > -1 && y + dy < +8; dx--, dy++) {
sqr = (((y + dy) << 3) + x + dx);
bb |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dx = +1, dy = -1; x + dx < +8 && y + dy > -1; dx++, dy--) {
sqr = (((y + dy) << 3) + x + dx);
bb |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dx = -1, dy = -1; x + dx > -1 && y + dy > -1; dx--, dy--) {
sqr = (((y + dy) << 3) + x + dx);
bb |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
bss[sq][i][l] = bb;
}
}
}
for (sq = 0; sq <= 63; sq++) {
for (ii = 0; ii <= 127; ii++) {
for (jj = 0; jj <= 127; jj++) {
i = ((ii << 8) & bob[sq]) >> 8;
j = ((jj << 32) & bob[sq]) >> 32;
bss[sq][i | j][0] = bss[sq][i][0] & bss[sq][j][3];
i = ((ii << 16) & bob[sq]) >> 16;
j = ((jj << 40) & bob[sq]) >> 40;
bss[sq][i | j][1] = bss[sq][i][1] & bss[sq][j][4];
i = ((ii << 24) & bob[sq]) >> 24;
j = ((jj << 48) & bob[sq]) >> 48;
bss[sq][i | j][2] = bss[sq][i][2] & bss[sq][j][5];
}
}
}
}
void InitializeQSS() {
uint8_t sq, sqr, k, l;
int8_t x, y, dx, dy;
int32_t i;
uint64_t b, bb;
for (sq = 0; sq < 64; sq++) {
y = sq >> 3;
x = sq & 7;
bob[sq] = 0;
rob[sq] = 0;
for (i = 0; i < 256; i++) {
for (k = 0, l = 0; k <= 56; k += 8, l++) {
bb = 0;
b = (uint64_t)i << k;
for (dx = +1, dy = +1; x + dx < +8 && y + dy < +8; dx++, dy++) {
sqr = (((y + dy) << 3) + x + dx);
bb |= 1ull << sqr;
bob[sq] |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dx = -1, dy = +1; x + dx > -1 && y + dy < +8; dx--, dy++) {
sqr = (((y + dy) << 3) + x + dx);
bb |= 1ull << sqr;
bob[sq] |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dx = +1, dy = -1; x + dx < +8 && y + dy > -1; dx++, dy--) {
sqr = (((y + dy) << 3) + x + dx);
bb |= 1ull << sqr;
bob[sq] |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dx = -1, dy = -1; x + dx > -1 && y + dy > -1; dx--, dy--) {
sqr = (((y + dy) << 3) + x + dx);
bb |= 1ull << sqr;
bob[sq] |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dx = -1; x + dx > -1; dx--) {
sqr = (y << 3) + x + dx;
bb |= 1ull << sqr;
rob[sq] |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dx = +1; x + dx < +8; dx++) {
sqr = (y << 3) + x + dx;
bb |= 1ull << sqr;
rob[sq] |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dy = +1; y + dy < +8; dy++) {
sqr = ((y + dy) << 3) + x;
bb |= 1ull << sqr;
rob[sq] |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
for (dy = -1; y + dy > -1; dy--) {
sqr = ((y + dy) << 3) + x;
bb |= 1ull << sqr;
rob[sq] |= 1ull << sqr;
if ((1ull << sqr) & b) break;
}
qss[sq][i][l] = bb;
}
}
b7e[sq] = bob[sq] & 0x007e7e7e7e7e7e00;
}
}
void Init() {
InitializeQSS();
InitializeBSS();
uint64_t* attacks;
gpuErrchk(cudaMalloc(&attacks, sizeof(qss)));
gpuErrchk(cudaMemcpyToSymbol(cu_qss_atk, &attacks, sizeof(uint64_t*)));
for (int x = 0; x < 64; x++) {
for (int y = 0; y < 256; y++) {
int offset = x * 256 * 8 + y * 8;
int len = 8 * sizeof(uint64_t);
gpuErrchk(cudaMemcpy(attacks + offset, qss[x][y], len, cudaMemcpyKind::cudaMemcpyHostToDevice));
}
}
}
__device__ uint64_t Queen(int sq, uint64_t occ) {
return cu_qss(sq, occ & 255 ,0)
& cu_qss(sq, (occ >> 8) & 255 ,1)
& cu_qss(sq, (occ >> 16) & 255,2)
& cu_qss(sq, (occ >> 24) & 255,3)
& cu_qss(sq, (occ >> 32) & 255,4)
& cu_qss(sq, (occ >> 40) & 255,5)
& cu_qss(sq, (occ >> 48) & 255,6)
& cu_qss(sq, (occ >> 56) & 255,7);
}
}