e975c4acd0
FossilOrigin-Name: d2d57f3a68ce1f093e6b7eac6b0387515d2d9079af881ecbf9d95c41afb72879
498 lines
11 KiB
C
498 lines
11 KiB
C
/* nga.c (c) Charles Childers, Luke Parrish, Marc Simpson
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Jay Skeer, Kenneth Keating */
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/* cc -o nga-11 vm/nga-c/nga-x11.c `pkg-config --cflags x11 --libs` */
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/* Local Configuration */
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#define ROM "ngaImage"
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#define FONT "retro.fnt"
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#define FG 0xFFFFFF
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#define BG 0x000055
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#define CURSOR 0x00FFFF
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#define FW 640
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#define FH 480
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#define FONT_H 16
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#define FONT_W 8
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#include <stdio.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <string.h>
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#include <stdint.h>
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#include <limits.h>
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#include <fcntl.h>
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#include <X11/Xlib.h>
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#include <X11/Xutil.h>
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#define V void
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#define I int
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#define C char
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#define BIT64
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#ifndef BIT64
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#define CELL int32_t
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#define CELL_MIN INT_MIN + 1
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#define CELL_MAX INT_MAX - 1
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#else
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#define CELL int64_t
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#define CELL_MIN LLONG_MIN + 1
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#define CELL_MAX LLONG_MAX - 1
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#endif
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#ifndef IMAGE_SIZE
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#define IMAGE_SIZE 65536 /* Amount of RAM, in cells */
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#endif
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#ifndef ADDRESSES
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#define ADDRESSES 256 /* Depth of address stack */
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#endif
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#ifndef DEPTH
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#define DEPTH 256 /* Depth of data stack */
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#endif
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CELL sp, rp, ip; /* Stack and instruction pointers */
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CELL data[DEPTH]; /* The data stack */
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CELL address[ADDRESSES]; /* The address stack */
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CELL m[IMAGE_SIZE + 1]; /* Image m */
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#define T data[sp] /* Top item on stack */
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#define N data[sp-1] /* Second item on stack */
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#define TORS address[rp] /* Top item on address stack */
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typedef V (*Handler)(V);
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CELL pop();
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V push(CELL value);
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V execute(CELL cell);
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V load_image(char *imageFile);
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V prepare_vm();
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V process_opcode_bundle(CELL opcode);
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V dputc(I);
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V redraw();
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#define TERM_W (FW / FONT_W)
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#define TERM_H (FH / FONT_H)
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I frame[(FW * FH)/32]; /* frame buffer for display */
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I font[8192]; /* font bitmap */
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I tx, ty; /* text cursor location */
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/* variables for Arland's DEC subset */
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I acc[32], acc_i = 0, ground = 0, on = 0;
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/* variables for X11 stuff */
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Display *disp;
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Window win;
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GC gc;
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XEvent event;
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C text[255];
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V cursor() {
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XSetForeground(disp, gc, CURSOR);
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XFillRectangle(disp, win, gc, tx, ty, FONT_W, FONT_H);
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XFlush(disp);
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}
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I wait_key() {
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while (1) {
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XNextEvent(disp, &event);
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if (event.type == KeyPress) {
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KeySym key = XLookupKeysym(&event.xkey, 0);
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XLookupString(&event.xkey, text, 255, &key, 0);
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if (text[0] == 13) text[0] = 10;
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if (text[0] != 0) return (I) text[0];
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}
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if (event.type == Expose) { redraw(); }
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}
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}
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V pixel(I x, I y, I c) {
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I index = y * FW + x;
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if (c == 0) {
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frame[(index / 32)] &= ~(1 << (31 - index % 32));
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XSetForeground(disp, gc, BG);
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} else {
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frame[(index / 32)] |= 1 << (31 - index % 32);
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XSetForeground(disp, gc, FG);
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}
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XDrawPoint(disp, win, gc, x, y);
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}
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I get_pixel(I x, I y) {
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I index = y * FW + x;
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I bit_pos = 31 - index % 32;
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I mask = 1 << bit_pos;
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return (frame[(index / 32)] & mask) >> bit_pos;
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}
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V redraw() {
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for (I x = 0; x < FW; x++) {
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for (I y = 0; y < FH; y++) {
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XSetForeground(disp, gc, get_pixel(x, y) ? FG : BG);
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XDrawPoint(disp, win, gc, x, y);
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}
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}
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cursor();
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}
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V scroll() {
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I memsize = (FH * FW) / 32;
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I last_row = (FW * FONT_H) / 32;
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for (I i = 0; i < memsize - last_row; i++) {
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frame[i] = frame[i + last_row];
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}
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for (I i = memsize - last_row; i < memsize; i++) {
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frame[i] = 0;
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}
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redraw();
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}
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unsigned C reverse(unsigned C b) {
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b = (b & 0xF0) >> 4 | (b & 0x0F) << 4;
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b = (b & 0xCC) >> 2 | (b & 0x33) << 2;
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b = (b & 0xAA) >> 1 | (b & 0x55) << 1;
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return b;
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}
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V handle_special_character(I c) {
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if (c == 8 || c == 127) { /* BACKSPACE/DELETE */
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if (tx - FONT_W >= 0) {
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tx -= FONT_W ;
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dputc(' ');
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tx -= FONT_W;
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redraw();
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}
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} else if (c == 9) { /* TAB */
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I ts = tx / FONT_W;
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for (I i = ts; i < ((ts + 7) / 8) * 8; i++) { dputc(' '); }
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} else if (c == 10 || c == 13) { /* CR or LF */
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ty += FONT_H;
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tx = 0;
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redraw();
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}
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}
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V handle_regular_character(C *bitmap) {
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I x, y, set;
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for (x = 0; x < FONT_H; x++) {
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for (y = 0; y < FONT_W; y++) {
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set = reverse(bitmap[x]) & 1 << y;
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pixel(tx + y, ty + x, set ? 1 : 0);
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}
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}
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tx += FONT_W;
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}
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V advance_cursor_and_scroll() {
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if (tx >= FW) { tx = 0; ty += FONT_H; }
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if (ty > (FH - FONT_H)) { ty -= FONT_H; scroll(); }
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}
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V dputc(I c) {
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C *bitmap = (C *)font + (c * ((FONT_H * FONT_W) / 8));
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handle_special_character(c);
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if (!(c == 8 || c == 127 || c == 9 || c == 10 || c == 13)) {
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handle_regular_character(bitmap);
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}
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advance_cursor_and_scroll();
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cursor();
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}
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I acc_pop() {
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I k = acc_i;
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if (acc_i > 0) {
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acc_i -= 1;
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if (acc_i == -1) {
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acc_i = 0;
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}
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}
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return acc[k];
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}
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V acc_reset() {
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for (I x = 0; x < 32; x++) { acc[x] = 0; }
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ground = on = 0;
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}
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V gt_up(I n) { ty -= FONT_H; if (ty < 0) ty = 0; }
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V gt_down(I n) { ty += FONT_H; if (ty > 24 * FONT_H) ty = 24 * FONT_H; }
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V gt_left(I n) { tx -= FONT_W; if (tx < 0) tx = 0; }
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V gt_right(I n) { tx += FONT_W; if (tx > 79 * FONT_W) ty = 79 * FONT_W; }
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V gt_move_cursor() {
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if (acc_i >= 1) {
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I a = (acc_pop() - 1) * FONT_W;
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I b = (acc_pop() - 1) * FONT_H;
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ty = b; if (ty < 0) ty = 0; if (ty > FONT_H * 24) ty = FONT_H * 24;
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tx = a; if (tx < 0) tx = 0; if (tx > FONT_W * 79) tx = FONT_W * 79;
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acc_reset();
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return;
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}
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/* home */
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tx = 0; ty = 0;
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acc_reset();
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}
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V gt_reset() { acc_reset(); }
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V gt_next() { acc_i += 1; acc[acc_i] = 0; }
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V gt_clear() {
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acc_reset();
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for (I x = 0; x < (FW * FH) / 32; x++) frame[x] = 0;
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tx = ty = 0;
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redraw();
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}
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V gt_set_attr() { acc_reset(); }
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V term_putc(I c) {
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if (c == 27) {
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on = -2;
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return;
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}
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switch (on) {
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case 0:
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dputc(c);
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return;
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case -2:
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if (c == '[') {
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on = -1;
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return;
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}
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on = 0;
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dputc(c);
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return;
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}
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if (c >= '0' && c <= '9') {
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acc[acc_i] *= 10;
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acc[acc_i] += c - 48;
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if (c == '3') {
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ground = 0;
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}
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if (c == '4') {
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ground = 1;
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}
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} else {
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switch (c) {
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case 'A': gt_up(acc_pop()); break;
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case 'B': gt_down(acc_pop()); break;
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case 'C': gt_left(acc_pop()); break;
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case 'D': gt_right(acc_pop()); break;
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case 'm': gt_set_attr(); break;
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case ';': gt_next(); break;
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case 'H': gt_move_cursor(); break;
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case 'J': gt_clear(); break;
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default: on = 0;
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dputc(c);
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}
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}
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}
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V load_font() {
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I f = open(FONT, O_RDONLY, 0666);
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if (!f) { return; };
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read(f, &font, 4096);
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close(f);
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}
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CELL pop() { sp--; return data[sp + 1]; }
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V push(CELL value) { sp++; data[sp] = value; }
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V execute(CELL cell) {
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CELL opcode;
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rp = 1;
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ip = cell;
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while (ip < IMAGE_SIZE) {
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opcode = m[ip];
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process_opcode_bundle(opcode);
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ip++;
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if (rp == 0)
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ip = IMAGE_SIZE;
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}
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}
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I main(I argc, char **argv) {
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prepare_vm();
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load_image("ngaImage");
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load_font();
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disp = XOpenDisplay(NULL);
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win = XCreateSimpleWindow(disp, RootWindow(disp, 0),
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0, 0, FW, FH, 0, 0x0, 0x0);
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XSelectInput(disp, win, ExposureMask | KeyPressMask | ButtonPressMask | ButtonReleaseMask);
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XStoreName(disp, win, "x/ilo");
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gc = DefaultGC(disp, DefaultScreen(disp));
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XMapWindow(disp, win);
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XFlush(disp);
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XMoveWindow(disp, win, (DisplayWidth(disp, DefaultScreen(disp)) - FW) / 2,
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(DisplayHeight(disp, DefaultScreen(disp)) - FH) / 2);
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execute(0);
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XUnmapWindow(disp, win);
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XDestroyWindow(disp, win);
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XCloseDisplay(disp);
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exit(0);
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}
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V load_image(char *imageFile) {
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FILE *fp;
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long fileLen;
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if ((fp = fopen(imageFile, "rb")) != NULL) {
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fseek(fp, 0, SEEK_END);
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fileLen = ftell(fp) / sizeof(CELL);
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rewind(fp);
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fread(&m, sizeof(CELL), fileLen, fp);
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fclose(fp);
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}
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}
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V prepare_vm() {
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for (ip = 0; ip < IMAGE_SIZE; ip++) m[ip] = 0;
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for (ip = 0; ip < DEPTH; ip++) data[ip] = 0;
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for (ip = 0; ip < ADDRESSES; ip++) address[ip] = 0;
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ip = sp = rp = 0;
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}
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V inst_no() { }
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V inst_li() { ip++; push(m[ip]); }
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V inst_du() { push(T); }
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V inst_dr() { pop(); }
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V inst_sw() { CELL a= T; T = N; N = a; }
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V inst_pu() { rp++; TORS = T; inst_dr(); }
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V inst_po() { push(TORS); rp--; }
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V inst_ju() { ip = T - 1; inst_dr(); }
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V inst_ca() { rp++; TORS = ip; ip = T - 1; inst_dr(); }
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V inst_cc() {
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CELL a, b;
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a = T; inst_dr(); /* Target */
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b = T; inst_dr(); /* Flag */
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if (b != 0) {
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rp++;
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TORS = ip;
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ip = a - 1;
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}
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}
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V inst_re() { ip = TORS; rp--; }
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V inst_eq() { N = (N == T) ? -1 : 0; inst_dr(); }
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V inst_ne() { N = (N != T) ? -1 : 0; inst_dr(); }
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V inst_lt() { N = (N < T) ? -1 : 0; inst_dr(); }
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V inst_gt() { N = (N > T) ? -1 : 0; inst_dr(); }
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V inst_fe() {
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switch (T) {
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case -1: T = sp - 1; break;
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case -2: T = rp; break;
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case -3: T = IMAGE_SIZE; break;
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case -4: T = CELL_MIN; break;
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case -5: T = CELL_MAX; break;
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default: T = m[T]; break;
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}
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}
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V inst_st() {
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if (T <= IMAGE_SIZE && T >= 0) { m[T] = N; pop(); pop(); }
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else { ip = IMAGE_SIZE; }
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}
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V inst_ad() { N += T; inst_dr(); }
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V inst_su() { N -= T; inst_dr(); }
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V inst_mu() { N *= T; inst_dr(); }
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V inst_di() { CELL a, b; a = T; b = N; T = b / a; N = b % a; }
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V inst_an() { N = T & N; inst_dr(); }
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V inst_or() { N = T | N; inst_dr(); }
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V inst_xo() { N = T ^ N; inst_dr(); }
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V inst_sh() {
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CELL y = T;
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CELL x = N;
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if (T < 0)
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N = N << (0 - T);
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else {
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if (x < 0 && y > 0)
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N = x >> y | ~(~0U >> y);
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else
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N = x >> y;
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}
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inst_dr();
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}
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V inst_zr() { if (T == 0) { pop(); ip = TORS; rp--; } }
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V inst_ha() { ip = IMAGE_SIZE; exit(0); }
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V inst_ie() { push(5); }
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V inst_iq() {
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switch (pop()) {
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case 0:
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push(0);
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push(0);
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break;
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case 1:
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push(1);
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push(1);
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break;
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case 2:
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push(0);
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push(33);
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break;
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case 3:
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push(0);
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push(34);
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break;
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case 4:
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push(0);
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push(35);
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break;
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}
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}
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V inst_ii() {
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I c, x, y, wx, wy, mask; Window w;
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switch (pop()) {
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case 0:
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dputc((I)pop());
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break;
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case 1:
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c = wait_key();
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dputc((I)c);
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push(c);
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break;
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case 2:
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c = pop();
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y = pop();
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x = pop();
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pixel(x, y, c);
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break;
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case 3:
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y = pop();
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x = pop();
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c = get_pixel(x, y);
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push(c);
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break;
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case 4:
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XQueryPointer(disp, win, &w, &w, &x, &y, &wx, &wy, &mask);
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push(wx); push(wy);
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if (mask & Button1Mask) push(-1); else push(0);
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break;
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}
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}
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Handler instructions[] = {
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inst_no, inst_li, inst_du, inst_dr, inst_sw, inst_pu, inst_po,
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inst_ju, inst_ca, inst_cc, inst_re, inst_eq, inst_ne, inst_lt,
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inst_gt, inst_fe, inst_st, inst_ad, inst_su, inst_mu, inst_di,
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inst_an, inst_or, inst_xo, inst_sh, inst_zr, inst_ha, inst_ie,
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inst_iq, inst_ii
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};
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V process_opcode_bundle(CELL opcode) {
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instructions[opcode & 0xFF]();
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instructions[(opcode >> 8) & 0xFF]();
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instructions[(opcode >> 16) & 0xFF]();
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instructions[(opcode >> 24) & 0xFF]();
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}
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