X-Git-Url: https://git.wirehaze.ovh/lifeboot.git/blobdiff_plain/54bde802e46da1968ea586e37ffdc9e22e8e5572..2790ad17ff1a7654d28c6ec97f336d85ac8a6b8a:/lifeboot.asm?ds=inline diff --git a/lifeboot.asm b/lifeboot.asm index 6d95c7c..ed03350 100644 --- a/lifeboot.asm +++ b/lifeboot.asm @@ -14,7 +14,7 @@ org 0x7c00 %define COLS 80 %define ROWS 25 -%define VGAPGSZ (COLS * ROWS * 2) +%define VGAPGSZ (COLS * ROWS * 2 + 96) ; why 96 ?????? ; memory layout --------------------------------------------------------------- @@ -57,7 +57,7 @@ int 0x1a ; system time mov [xss], dx ; cx:dx = number of clock ticks since midnight ; initialize currvgapg -mov word [currvgapg], VGAPGSZ +mov word [currvgapg], 0 ; start simulation from random state ------------------------------------------ @@ -69,10 +69,9 @@ call init_grid next_state: -call flip_vga_page ; display current state -call delay ; sleep a little - -call write_next_vga_page ; write the next state to the hidden page +call write_next_vga_page +call wait_keypress +call flip_vga_page jmp next_state @@ -94,6 +93,17 @@ int 0x15 ; wait ret +; wait_keypress() - wait for any keypress ------------------------------------- + +; clobbers: ax + +wait_keypress: + +mov ah, 0x00 ; read key press +int 0x16 ; keyboard services + +ret + ; vsync_wait() - wait for display to enter the next VBlank cycle -------------- ; clobbers ax, dx @@ -177,6 +187,18 @@ call vsync_wait xor word [currvgapg], VGAPGSZ ; flip currvgapg setnz al ; al = !(currvgapg == 0) +mov di, [currvgapg] ; es:di -> current page +mov dh, PRINT_COLOR + +mov dl, 'P' +mov [es:di], dx + +mov dl, al +add dl, 48 +add di, 2 + +mov [es:di], dx + mov ah, 0x05 ; select active display page int 0x10 ; video services @@ -191,12 +213,80 @@ ret ; output: ; ax = # alive neighbours -; clobbers ? +; clobbers ax, bx, dx alive_neighbours: +enter 5, 0 + +; [bp - 1]: row +; [bp - 2]: col +; [bp - 3]: neighbours +; [bp - 4]: i +; [bp - 5]: j + +mov ax, cx ; ax = idx +mov bl, COLS ; bl = COLS +div bl ; al = idx / COLS ; ah = idx % COLS + +mov [bp - 1], al ; row = idx / COLS +mov [bp - 2], ah ; row = idx % COLS +mov byte [bp - 3], 0 ; neighbours = 0 + +mov byte [bp - 4], -1 ; i = -1 +.i: ; do { + + mov byte [bp - 5], -1 ; j = -1 +.j: ; do { + + mov al, [bp - 4] + or al, [bp - 5] + jz .continue ; if (!i && !j) continue + + mov al, [bp - 1] + add al, [bp - 4] ; al = row + i + + cmp al, 0 + jl .continue ; if (row + i < 0) continue + + cmp al, ROWS + jge .continue ; if (row + i >= ROWS) continue + + mov ah, [bp - 2] + add ah, [bp - 5] ; ah = col + j + + cmp ah, 0 + jl .continue ; if (col + j < 0) continue + + cmp ah, COLS + jge .continue ; if (col + j >= COLS) continue + + movzx bx, ah ; bx = col + j + + mov ah, COLS + mul ah ; ax = (row + i) * COLS + + add bx, ax ; bx = cell index + shl bx, 1 ; bx = grid offset + + mov dx, [es:si + bx] ; dl = cell state + + cmp dl, ALIVE ; if (!ALIVE) continue + jne .continue + + inc byte [bp - 3] ; neighbours++ + +.continue: + inc byte [bp - 5] + cmp byte [bp - 5], 1 + jle .j ; } while (++j <= 1) + + inc byte [bp - 4] + cmp byte [bp - 4], 1 + jle .i ; } while (++i <= 1) -; todo +movzx ax, byte [bp - 3] ; ax = # alive neighbours +leave ret ; write_next_cell_state() ----------------------------------------------------- @@ -209,7 +299,7 @@ ret ; output: ; [es:di + cx * 2] = updated cell state -; clobbers ? +; clobbers ax, bx, dx write_next_cell_state: @@ -220,20 +310,20 @@ shl bx, 1 mov dx, [es:si + bx] ; dl = cell current state -test dl, ALIVE ; if (ALIVE) { -jne 1f +cmp dl, ALIVE ; if (ALIVE) { +jne .else -test ax, 2 ; if (n < 2) +cmp ax, 2 ; if (n < 2) jl .dead ; return DEAD -test ax, 3 ; if (n > 3) +cmp ax, 3 ; if (n > 3) jg .dead ; return DEAD jmp .alive ; return ALIVE -1: ; } +.else: ; } -test ax, 3 ; if (n != 3) +cmp ax, 3 ; if (n != 3) jne .dead ; return DEAD .alive: ; return ALIVE @@ -250,7 +340,7 @@ ret ; write_next_vga_page() ------------------------------------------------------- -; clobbers di, si, cx +; clobbers di, si, ax, bx, cx, dx write_next_vga_page: @@ -265,7 +355,7 @@ xor cx, cx ; i = 0 call write_next_cell_state inc cx -test cx, COLS * ROWS +cmp cx, COLS * ROWS jl .update_loop ; for i in [0 .. COLS * ROWS - 1] ret