fd6eaa1184
FossilOrigin-Name: ca237279132ca7557f6bf8a469be6c5be116b6c684b792f8155c6d8bfd2cb5fc
295 lines
4.8 KiB
C
295 lines
4.8 KiB
C
/* Nga ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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Copyright (c) 2008 - 2020, Charles Childers
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Copyright (c) 2009 - 2010, Luke Parrish
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Copyright (c) 2010, Marc Simpson
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Copyright (c) 2010, Jay Skeer
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Copyright (c) 2011, Kenneth Keating
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ */
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#ifndef NUM_DEVICES
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#define NUM_DEVICES 0
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#endif
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CELL load_image(char *imageFile) {
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FILE *fp;
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CELL imageSize;
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long fileLen;
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CELL i;
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if ((fp = fopen(imageFile, "rb")) != NULL) {
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/* Determine length (in cells) */
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fseek(fp, 0, SEEK_END);
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fileLen = ftell(fp) / sizeof(CELL);
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if (fileLen > IMAGE_SIZE) {
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fclose(fp);
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printf("\nERROR (nga/ngaLoadImage): Image is larger than alloted space!\n");
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exit(1);
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}
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rewind(fp);
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/* Read the file into memory */
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imageSize = fread(&memory, sizeof(CELL), fileLen, fp);
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fclose(fp);
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}
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else {
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for (i = 0; i < ngaImageCells; i++)
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memory[i] = ngaImage[i];
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imageSize = i;
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}
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return imageSize;
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}
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void prepare_vm() {
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ip = sp = rp = 0;
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for (ip = 0; ip < IMAGE_SIZE; ip++)
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memory[ip] = 0; /* NO - nop instruction */
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for (ip = 0; ip < STACK_DEPTH; ip++)
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data[ip] = 0;
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for (ip = 0; ip < ADDRESSES; ip++)
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address[ip] = 0;
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}
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void inst_no() {
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}
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void inst_li() {
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sp++;
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ip++;
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TOS = memory[ip];
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}
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void inst_du() {
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sp++;
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data[sp] = NOS;
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}
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void inst_dr() {
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data[sp] = 0;
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if (--sp < 0)
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ip = IMAGE_SIZE;
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}
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void inst_sw() {
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CELL a;
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a = TOS;
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TOS = NOS;
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NOS = a;
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}
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void inst_pu() {
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rp++;
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TORS = TOS;
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inst_dr();
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}
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void inst_po() {
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sp++;
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TOS = TORS;
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rp--;
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}
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void inst_ju() {
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ip = TOS - 1;
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inst_dr();
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}
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void inst_ca() {
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rp++;
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TORS = ip;
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ip = TOS - 1;
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inst_dr();
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}
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void inst_cc() {
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CELL a, b;
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a = TOS; inst_dr(); /* Target */
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b = TOS; 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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void inst_re() {
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ip = TORS;
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rp--;
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}
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void inst_eq() {
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NOS = (NOS == TOS) ? -1 : 0;
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inst_dr();
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}
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void inst_ne() {
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NOS = (NOS != TOS) ? -1 : 0;
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inst_dr();
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}
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void inst_lt() {
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NOS = (NOS < TOS) ? -1 : 0;
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inst_dr();
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}
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void inst_gt() {
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NOS = (NOS > TOS) ? -1 : 0;
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inst_dr();
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}
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void inst_fe() {
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#ifndef NOCHECKS
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if (TOS >= IMAGE_SIZE || TOS < -5) {
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ip = IMAGE_SIZE;
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printf("\nERROR (nga/inst_fe): Fetch beyond valid memory range\n");
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exit(1);
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} else {
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#endif
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switch (TOS) {
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case -1: TOS = sp - 1; break;
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case -2: TOS = rp; break;
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case -3: TOS = IMAGE_SIZE; break;
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case -4: TOS = CELL_MIN; break;
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case -5: TOS = CELL_MAX; break;
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default: TOS = memory[TOS]; break;
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}
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#ifndef NOCHECKS
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}
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#endif
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}
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void inst_st() {
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#ifndef NOCHECKS
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if (TOS <= IMAGE_SIZE && TOS >= 0) {
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#endif
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memory[TOS] = NOS;
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inst_dr();
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inst_dr();
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#ifndef NOCHECKS
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} else {
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ip = IMAGE_SIZE;
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printf("\nERROR (nga/inst_st): Store beyond valid memory range\n");
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exit(1);
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}
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#endif
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}
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void inst_ad() {
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NOS += TOS;
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inst_dr();
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}
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void inst_su() {
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NOS -= TOS;
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inst_dr();
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}
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void inst_mu() {
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NOS *= TOS;
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inst_dr();
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}
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void inst_di() {
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CELL a, b;
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a = TOS;
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b = NOS;
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#ifndef NOCHECKS
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if (a == 0) {
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printf("\nERROR (nga/inst_di): Division by zero\n");
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exit(1);
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}
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#endif
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TOS = b / a;
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NOS = b % a;
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}
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void inst_an() {
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NOS = TOS & NOS;
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inst_dr();
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}
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void inst_or() {
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NOS = TOS | NOS;
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inst_dr();
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}
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void inst_xo() {
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NOS = TOS ^ NOS;
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inst_dr();
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}
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void inst_sh() {
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CELL y = TOS;
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CELL x = NOS;
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if (TOS < 0)
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NOS = NOS << (TOS * -1);
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else {
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if (x < 0 && y > 0)
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NOS = x >> y | ~(~0U >> y);
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else
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NOS = x >> y;
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}
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inst_dr();
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}
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void inst_zr() {
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if (TOS == 0) {
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inst_dr();
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ip = TORS;
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rp--;
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}
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}
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void inst_ha() {
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ip = IMAGE_SIZE;
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}
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void inst_ie() {
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sp++;
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TOS = NUM_DEVICES;
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}
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void inst_iq() {
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CELL Device = TOS;
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inst_dr();
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IO_queryHandlers[Device]();
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}
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void inst_ii() {
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CELL Device = TOS;
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inst_dr();
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IO_deviceHandlers[Device]();
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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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void process_opcode(CELL opcode) {
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if (opcode != 0)
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instructions[opcode]();
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}
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int validate_opcode_bundle(CELL opcode) {
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CELL raw = opcode;
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CELL current;
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int valid = -1;
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int i;
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for (i = 0; i < 4; i++) {
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current = raw & 0xFF;
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if (!(current >= 0 && current <= 29))
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valid = 0;
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raw = raw >> 8;
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}
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return valid;
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}
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void process_opcode_bundle(CELL opcode) {
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CELL raw = opcode;
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int i;
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for (i = 0; i < 4; i++) {
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process_opcode(raw & 0xFF);
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raw = raw >> 8;
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}
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}
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