1 #include "l.h" 2 3 /* can't include a.out.h due to name clashes, but these are taken from it */ 4 #define _MAGIC(f, b) ((f)|((((4*(b))+0)*(b))+7)) 5 #define V_MAGIC _MAGIC(0, 16) /* mips 3000 BE */ 6 #define M_MAGIC _MAGIC(0, 18) /* mips 4000 BE */ 7 #define N_MAGIC _MAGIC(0, 22) /* mips 4000 LE */ 8 #define P_MAGIC _MAGIC(0, 24) /* mips 3000 LE */ 9 10 long OFFSET; 11 /* 12 long BADOFFSET = -1; 13 14 if(OFFSET <= BADOFFSET && OFFSET+4 > BADOFFSET)\ 15 abort();\ 16 OFFSET += 4;\ 17 18 if(OFFSET == BADOFFSET)\ 19 abort();\ 20 OFFSET++;\ 21 */ 22 23 #define LPUT(l) { \ 24 if (little) { \ 25 LLEPUT(l); \ 26 } else { \ 27 LBEPUT(l); \ 28 } \ 29 } 30 31 #define LLEPUT(c)\ 32 {\ 33 cbp[0] = (c);\ 34 cbp[1] = (c)>>8;\ 35 cbp[2] = (c)>>16;\ 36 cbp[3] = (c)>>24;\ 37 cbp += 4;\ 38 cbc -= 4;\ 39 if(cbc <= 0)\ 40 cflush();\ 41 } 42 43 #define LBEPUT(c)\ 44 {\ 45 cbp[0] = (c)>>24;\ 46 cbp[1] = (c)>>16;\ 47 cbp[2] = (c)>>8;\ 48 cbp[3] = (c);\ 49 cbp += 4;\ 50 cbc -= 4;\ 51 if(cbc <= 0)\ 52 cflush();\ 53 } 54 55 #define HPUT(h) { \ 56 if (little) { \ 57 HLEPUT(h); \ 58 } else { \ 59 HBEPUT(h); \ 60 } \ 61 } 62 63 #define HLEPUT(c)\ 64 {\ 65 cbp[0] = (c);\ 66 cbp[1] = (c)>>8;\ 67 cbp += 2;\ 68 cbc -= 2;\ 69 if(cbc <= 0)\ 70 cflush();\ 71 } 72 73 #define HBEPUT(c)\ 74 {\ 75 cbp[0] = (c)>>8;\ 76 cbp[1] = (c);\ 77 cbp += 2;\ 78 cbc -= 2;\ 79 if(cbc <= 0)\ 80 cflush();\ 81 } 82 83 84 #define CPUT(c)\ 85 {\ 86 cbp[0] = (c);\ 87 cbp++;\ 88 cbc--;\ 89 if(cbc <= 0)\ 90 cflush();\ 91 } 92 93 void 94 cput(long l) 95 { 96 CPUT(l); 97 } 98 99 void 100 objput(long l) /* emit long in byte order appropriate to object machine */ 101 { 102 LPUT(l); 103 } 104 105 void 106 objhput(short s) 107 { 108 HPUT(s); 109 } 110 111 void 112 wput(long l) 113 { 114 115 cbp[0] = l>>8; 116 cbp[1] = l; 117 cbp += 2; 118 cbc -= 2; 119 if(cbc <= 0) 120 cflush(); 121 } 122 123 void 124 wputl(long l) 125 { 126 127 cbp[0] = l; 128 cbp[1] = l>>8; 129 cbp += 2; 130 cbc -= 2; 131 if(cbc <= 0) 132 cflush(); 133 } 134 135 void 136 lput(long l) /* emit long in big-endian byte order */ 137 { 138 LBEPUT(l); 139 } 140 141 void 142 lputl(long l) /* emit long in big-endian byte order */ 143 { 144 LLEPUT(l); 145 } 146 147 void 148 llput(vlong v) 149 { 150 lput(v>>32); 151 lput(v); 152 } 153 154 void 155 llputl(vlong v) 156 { 157 lputl(v); 158 lputl(v>>32); 159 } 160 161 long 162 entryvalue(void) 163 { 164 char *a; 165 Sym *s; 166 167 a = INITENTRY; 168 if(*a >= '0' && *a <= '9') 169 return atolwhex(a); 170 s = lookup(a, 0); 171 if(s->type == 0) 172 return INITTEXT; 173 if(s->type != STEXT && s->type != SLEAF) 174 diag("entry not text: %s", s->name); 175 return s->value; 176 } 177 178 static void 179 plan9bootimage(ulong sects, ulong submagicvers, ulong tm, 180 ulong hdrtxtsz, ulong textsz, ulong textva, ulong lcsize) 181 { 182 lput(0x160L<<16|sects); /* magic and sections */ 183 lput(tm); /* time and date */ 184 lput(hdrtxtsz+datsize); /* offset to symbol table */ 185 lput(symsize); /* size of symbol table */ 186 lput((0x38L<<16)|7L); /* size of optional hdr and flags */ 187 lput(submagicvers); /* magic and version */ 188 189 lput(textsz); /* segment sizes */ 190 lput(datsize); 191 lput(bsssize); 192 193 lput(entryvalue()); /* va of entry */ 194 lput(textva); /* va of base of text */ 195 lput(INITDAT); /* va of base of data */ 196 lput(INITDAT+datsize); /* va of base of bss */ 197 198 lput(~0); /* gp reg mask */ 199 lput(lcsize); /* pcsize / cprmask[0] */ 200 lput(0); /* coproc reg masks[1⋯3] */ 201 lput(0); 202 lput(0); 203 lput(~0); /* gp value ?? */ 204 } 205 206 static void 207 symhdrs(ulong hdrtxtsz) 208 { 209 strnput(".text", 8); /* text segment */ 210 lput(INITTEXT); /* address */ 211 lput(INITTEXT); 212 lput(textsize); 213 lput(HEADR); 214 lput(0); 215 lput(HEADR+textsize+datsize+symsize); 216 lput(lcsize); /* line number size */ 217 lput(0x20); /* flags */ 218 219 strnput(".data", 8); /* data segment */ 220 lput(INITDAT); /* address */ 221 lput(INITDAT); 222 lput(datsize); 223 lput(hdrtxtsz); 224 lput(0); 225 lput(0); 226 lput(0); 227 lput(0x40); /* flags */ 228 229 strnput(".bss", 8); /* bss segment */ 230 lput(INITDAT+datsize); /* address */ 231 lput(INITDAT+datsize); 232 lput(bsssize); 233 lput(0); 234 lput(0); 235 lput(0); 236 lput(0); 237 lput(0x80); /* flags */ 238 } 239 240 void 241 asmb(void) 242 { 243 Prog *p; 244 long tm; 245 ulong rndtxtsz; 246 vlong t, etext; 247 Optab *o; 248 249 if(debug['v']) 250 Bprint(&bso, "%5.2f asm\n", cputime()); 251 Bflush(&bso); 252 OFFSET = HEADR; 253 seek(cout, OFFSET, 0); 254 pc = INITTEXT; 255 for(p = firstp; p != P; p = p->link) { 256 if(p->as == ATEXT) { 257 curtext = p; 258 autosize = p->to.offset + 4; 259 } 260 if(p->pc != pc) { 261 diag("phase error %llux sb %llux", p->pc, pc); 262 if(!debug['a']) 263 prasm(curp); 264 pc = p->pc; 265 } 266 curp = p; 267 o = oplook(p); /* could probably avoid this call */ 268 if(asmout(p, o, 0)) { 269 p = p->link; 270 pc += 4; 271 } 272 pc += o->size; 273 } 274 if(debug['a']) 275 Bprint(&bso, "\n"); 276 Bflush(&bso); 277 cflush(); 278 279 etext = INITTEXT + textsize; 280 for(t = pc; t < etext; t += sizeof(buf)-100) { 281 if(etext-t > sizeof(buf)-100) 282 datblk(t, sizeof(buf)-100, 1); 283 else 284 datblk(t, etext-t, 1); 285 } 286 287 Bflush(&bso); 288 cflush(); 289 290 curtext = P; 291 switch(HEADTYPE) { 292 case 0: 293 case 4: 294 OFFSET = rnd(HEADR+textsize, 4096); 295 seek(cout, OFFSET, 0); 296 break; 297 case 1: 298 case 2: 299 case 3: 300 case 5: 301 case 6: 302 case 7: 303 OFFSET = HEADR+textsize; 304 seek(cout, OFFSET, 0); 305 break; 306 } 307 for(t = 0; t < datsize; t += sizeof(buf)-100) { 308 if(datsize-t > sizeof(buf)-100) 309 datblk(t, sizeof(buf)-100, 0); 310 else 311 datblk(t, datsize-t, 0); 312 } 313 314 symsize = 0; 315 lcsize = 0; 316 if(!debug['s']) { 317 if(debug['v']) 318 Bprint(&bso, "%5.2f sym\n", cputime()); 319 Bflush(&bso); 320 switch(HEADTYPE) { 321 case 0: 322 case 4: 323 OFFSET = rnd(HEADR+textsize, 4096)+datsize; 324 seek(cout, OFFSET, 0); 325 break; 326 case 3: 327 case 2: 328 case 1: 329 case 5: 330 case 6: 331 case 7: 332 OFFSET = HEADR+textsize+datsize; 333 seek(cout, OFFSET, 0); 334 break; 335 } 336 if(!debug['s']) 337 asmsym(); 338 if(debug['v']) 339 Bprint(&bso, "%5.2f pc\n", cputime()); 340 Bflush(&bso); 341 if(!debug['s']) 342 asmlc(); 343 cflush(); 344 } 345 346 if(debug['v']) 347 Bprint(&bso, "%5.2f header\n", cputime()); 348 Bflush(&bso); 349 OFFSET = 0; 350 seek(cout, OFFSET, 0); 351 352 rndtxtsz = rnd(HEADR+textsize, (INITRND > 0? INITRND: 4096)); 353 tm = time(0); 354 switch(HEADTYPE) { 355 case 0: 356 /* 0413: plan 9 boot image, text segment rounded (to 4KB) */ 357 plan9bootimage(0, 0413<<16|0437, 0, rndtxtsz, rndtxtsz, 358 INITTEXT-HEADR, 0); 359 break; 360 case 1: 361 /* 0407: plan 9 boot image, extra word */ 362 plan9bootimage(0, 0407<<16|0437, 0, HEADR+textsize, textsize, 363 INITTEXT, lcsize); 364 lput(0); /* extra; complete mystery */ 365 break; 366 case 2: /* plan 9 format */ 367 if (little) 368 lput(P_MAGIC); /* mips 3000 LE */ 369 else 370 lput(V_MAGIC); /* mips 3000 BE */ 371 lput(textsize); /* sizes */ 372 lput(datsize); 373 lput(bsssize); 374 lput(symsize); /* nsyms */ 375 lput(entryvalue()); /* va of entry */ 376 lput(0L); 377 lput(lcsize); 378 break; 379 case 3: 380 /* 0407: plan 9 mips 4k boot image with symbols */ 381 plan9bootimage(3, 0407<<16|0437, tm, HEADR+textsize, textsize, 382 INITTEXT, lcsize); 383 symhdrs(HEADR+textsize); 384 break; 385 case 4: 386 /* 0413: plan 9 mips 4k boot image with symbols */ 387 plan9bootimage(3, 0413<<16|01012, tm, rndtxtsz, textsize, 388 INITTEXT, lcsize); 389 symhdrs(rndtxtsz); 390 break; 391 case 5: 392 elf32(MIPS, little? ELFDATA2LSB: ELFDATA2MSB, 0, nil); 393 break; 394 case 6: 395 break; 396 case 7: 397 elf64(MIPSR4K, little? ELFDATA2LSB: ELFDATA2MSB, 0, nil); 398 break; 399 } 400 cflush(); 401 } 402 403 void 404 strnput(char *s, int n) 405 { 406 for(; *s; s++){ 407 CPUT(*s); 408 n--; 409 } 410 for(; n > 0; n--) 411 CPUT(0); 412 } 413 414 void 415 cflush(void) 416 { 417 int n; 418 419 n = sizeof(buf.cbuf) - cbc; 420 if(n) 421 write(cout, buf.cbuf, n); 422 cbp = buf.cbuf; 423 cbc = sizeof(buf.cbuf); 424 } 425 426 void 427 nopstat(char *f, Count *c) 428 { 429 if(c->outof) 430 Bprint(&bso, "%s delay %ld/%ld (%.2f)\n", f, 431 c->outof - c->count, c->outof, 432 (double)(c->outof - c->count)/c->outof); 433 } 434 435 void 436 asmsym(void) 437 { 438 Prog *p; 439 Auto *a; 440 Sym *s; 441 int h; 442 443 s = lookup("etext", 0); 444 if(s->type == STEXT) 445 putsymb(s->name, 'T', s->value, s->version); 446 447 for(h=0; h<NHASH; h++) 448 for(s=hash[h]; s!=S; s=s->link) 449 switch(s->type) { 450 case SCONST: 451 putsymb(s->name, 'D', s->value, s->version); 452 continue; 453 454 case SSTRING: 455 putsymb(s->name, 'T', s->value, s->version); 456 continue; 457 458 case SDATA: 459 putsymb(s->name, 'D', s->value+INITDAT, s->version); 460 continue; 461 462 case SBSS: 463 putsymb(s->name, 'B', s->value+INITDAT, s->version); 464 continue; 465 466 case SFILE: 467 putsymb(s->name, 'f', s->value, s->version); 468 continue; 469 } 470 471 for(p=textp; p!=P; p=p->cond) { 472 s = p->from.sym; 473 if(s->type != STEXT && s->type != SLEAF) 474 continue; 475 476 /* filenames first */ 477 for(a=p->to.autom; a; a=a->link) 478 if(a->type == D_FILE) 479 putsymb(a->asym->name, 'z', a->aoffset, 0); 480 else 481 if(a->type == D_FILE1) 482 putsymb(a->asym->name, 'Z', a->aoffset, 0); 483 484 if(s->type == STEXT) 485 putsymb(s->name, 'T', s->value, s->version); 486 else 487 putsymb(s->name, 'L', s->value, s->version); 488 489 /* frame, auto and param after */ 490 putsymb(".frame", 'm', p->to.offset+4, 0); 491 for(a=p->to.autom; a; a=a->link) 492 if(a->type == D_AUTO) 493 putsymb(a->asym->name, 'a', -a->aoffset, 0); 494 else 495 if(a->type == D_PARAM) 496 putsymb(a->asym->name, 'p', a->aoffset, 0); 497 } 498 if(debug['v'] || debug['n']) 499 Bprint(&bso, "symsize = %lud\n", symsize); 500 Bflush(&bso); 501 } 502 503 void 504 putsymb(char *s, int t, long v, int ver) 505 { 506 int i, f; 507 508 if(t == 'f') 509 s++; 510 LBEPUT(v); 511 if(ver) 512 t += 'a' - 'A'; 513 CPUT(t+0x80); /* 0x80 is variable length */ 514 515 if(t == 'Z' || t == 'z') { 516 CPUT(s[0]); 517 for(i=1; s[i] != 0 || s[i+1] != 0; i += 2) { 518 CPUT(s[i]); 519 CPUT(s[i+1]); 520 } 521 CPUT(0); 522 CPUT(0); 523 i++; 524 } 525 else { 526 for(i=0; s[i]; i++) 527 CPUT(s[i]); 528 CPUT(0); 529 } 530 symsize += 4 + 1 + i + 1; 531 532 if(debug['n']) { 533 if(t == 'z' || t == 'Z') { 534 Bprint(&bso, "%c %.8lux ", t, v); 535 for(i=1; s[i] != 0 || s[i+1] != 0; i+=2) { 536 f = ((s[i]&0xff) << 8) | (s[i+1]&0xff); 537 Bprint(&bso, "/%x", f); 538 } 539 Bprint(&bso, "\n"); 540 return; 541 } 542 if(ver) 543 Bprint(&bso, "%c %.8lux %s<%d>\n", t, v, s, ver); 544 else 545 Bprint(&bso, "%c %.8lux %s\n", t, v, s); 546 } 547 } 548 549 #define MINLC 4 550 void 551 asmlc(void) 552 { 553 long oldlc, v, s; 554 vlong oldpc; 555 Prog *p; 556 557 oldpc = INITTEXT; 558 oldlc = 0; 559 for(p = firstp; p != P; p = p->link) { 560 if(p->line == oldlc || p->as == ATEXT || p->as == ANOP) { 561 if(p->as == ATEXT) 562 curtext = p; 563 if(debug['V']) 564 Bprint(&bso, "%6llux %P\n", p->pc, p); 565 continue; 566 } 567 if(debug['V']) 568 Bprint(&bso, "\t\t%6ld", lcsize); 569 v = (p->pc - oldpc) / MINLC; 570 while(v) { 571 s = 127; 572 if(v < 127) 573 s = v; 574 CPUT(s+128); /* 129-255 +pc */ 575 if(debug['V']) 576 Bprint(&bso, " pc+%ld*%d(%ld)", s, MINLC, s+128); 577 v -= s; 578 lcsize++; 579 } 580 s = p->line - oldlc; 581 oldlc = p->line; 582 oldpc = p->pc + MINLC; 583 if(s > 64 || s < -64) { 584 CPUT(0); /* 0 vv +lc */ 585 CPUT(s>>24); 586 CPUT(s>>16); 587 CPUT(s>>8); 588 CPUT(s); 589 if(debug['V']) { 590 if(s > 0) 591 Bprint(&bso, " lc+%ld(%d,%ld)\n", 592 s, 0, s); 593 else 594 Bprint(&bso, " lc%ld(%d,%ld)\n", 595 s, 0, s); 596 Bprint(&bso, "%6llux %P\n", p->pc, p); 597 } 598 lcsize += 5; 599 continue; 600 } 601 if(s > 0) { 602 CPUT(0+s); /* 1-64 +lc */ 603 if(debug['V']) { 604 Bprint(&bso, " lc+%ld(%ld)\n", s, 0+s); 605 Bprint(&bso, "%6llux %P\n", p->pc, p); 606 } 607 } else { 608 CPUT(64-s); /* 65-128 -lc */ 609 if(debug['V']) { 610 Bprint(&bso, " lc%ld(%ld)\n", s, 64-s); 611 Bprint(&bso, "%6llux %P\n", p->pc, p); 612 } 613 } 614 lcsize++; 615 } 616 while(lcsize & 1) { 617 s = 129; 618 CPUT(s); 619 lcsize++; 620 } 621 if(debug['v'] || debug['V']) 622 Bprint(&bso, "lcsize = %ld\n", lcsize); 623 Bflush(&bso); 624 } 625 626 void 627 datblk(long s, long n, int str) 628 { 629 Prog *p; 630 char *cast; 631 long l, fl, j, d; 632 int i, c; 633 634 memset(buf.dbuf, 0, n+100); 635 for(p = datap; p != P; p = p->link) { 636 curp = p; 637 if(str != (p->from.sym->type == SSTRING)) 638 continue; 639 l = p->from.sym->value + p->from.offset - s; 640 c = p->reg; 641 i = 0; 642 if(l < 0) { 643 if(l+c <= 0) 644 continue; 645 while(l < 0) { 646 l++; 647 i++; 648 } 649 } 650 if(l >= n) 651 continue; 652 if(p->as != AINIT && p->as != ADYNT) { 653 for(j=l+(c-i)-1; j>=l; j--) 654 if(buf.dbuf[j]) { 655 print("%P\n", p); 656 diag("multiple initialization"); 657 break; 658 } 659 } 660 switch(p->to.type) { 661 default: 662 diag("unknown mode in initialization\n%P", p); 663 break; 664 665 case D_FCONST: 666 switch(c) { 667 default: 668 case 4: 669 fl = ieeedtof(p->to.ieee); 670 cast = (char*)&fl; 671 for(; i<c; i++) { 672 buf.dbuf[l] = cast[fnuxi8[i+4]]; 673 l++; 674 } 675 break; 676 case 8: 677 cast = (char*)p->to.ieee; 678 for(; i<c; i++) { 679 buf.dbuf[l] = cast[fnuxi8[i]]; 680 l++; 681 } 682 break; 683 } 684 break; 685 686 case D_SCONST: 687 for(; i<c; i++) { 688 buf.dbuf[l] = p->to.sval[i]; 689 l++; 690 } 691 break; 692 693 case D_CONST: 694 d = p->to.offset; 695 if(p->to.sym) { 696 switch(p->to.sym->type) { 697 case STEXT: 698 case SLEAF: 699 case SSTRING: 700 d += p->to.sym->value; 701 break; 702 case SDATA: 703 case SBSS: 704 d += p->to.sym->value + INITDAT; 705 break; 706 } 707 } 708 cast = (char*)&d; 709 switch(c) { 710 default: 711 diag("bad nuxi %d %d\n%P", c, i, curp); 712 break; 713 case 1: 714 for(; i<c; i++) { 715 buf.dbuf[l] = cast[inuxi1[i]]; 716 l++; 717 } 718 break; 719 case 2: 720 for(; i<c; i++) { 721 buf.dbuf[l] = cast[inuxi2[i]]; 722 l++; 723 } 724 break; 725 case 4: 726 for(; i<c; i++) { 727 buf.dbuf[l] = cast[inuxi4[i]]; 728 l++; 729 } 730 break; 731 } 732 break; 733 } 734 } 735 write(cout, buf.dbuf, n); 736 } 737 738 #define OP_RRR(op,r1,r2,r3)\ 739 (op|(((r1)&31L)<<16)|(((r2)&31L)<<21)|(((r3)&31L)<<11)) 740 #define OP_IRR(op,i,r2,r3)\ 741 (op|((i)&0xffffL)|(((r2)&31L)<<21)|(((r3)&31L)<<16)) 742 #define OP_SRR(op,s,r2,r3)\ 743 (op|(((s)&31L)<<6)|(((r2)&31L)<<16)|(((r3)&31L)<<11)) 744 #define OP_FRRR(op,r1,r2,r3)\ 745 (op|(((r1)&31L)<<16)|(((r2)&31L)<<11)|(((r3)&31L)<<6)) 746 #define OP_JMP(op,i)\ 747 ((op)|((i)&0x3ffffffL)) 748 749 #define OP(x,y)\ 750 (((x)<<3)|((y)<<0)) 751 #define SP(x,y)\ 752 (((x)<<29)|((y)<<26)) 753 #define BCOND(x,y)\ 754 (((x)<<19)|((y)<<16)) 755 #define MMU(x,y)\ 756 (SP(2,0)|(16<<21)|((x)<<3)|((y)<<0)) 757 #define FPF(x,y)\ 758 (SP(2,1)|(16<<21)|((x)<<3)|((y)<<0)) 759 #define FPD(x,y)\ 760 (SP(2,1)|(17<<21)|((x)<<3)|((y)<<0)) 761 #define FPW(x,y)\ 762 (SP(2,1)|(20<<21)|((x)<<3)|((y)<<0)) 763 764 int vshift(int); 765 766 int 767 asmout(Prog *p, Optab *o, int aflag) 768 { 769 long o1, o2, o3, o4, o5, o6, o7, v; 770 Prog *ct; 771 int r, a; 772 773 o1 = 0; 774 o2 = 0; 775 o3 = 0; 776 o4 = 0; 777 o5 = 0; 778 o6 = 0; 779 o7 = 0; 780 switch(o->type) { 781 default: 782 diag("unknown type %d", o->type); 783 if(!debug['a']) 784 prasm(p); 785 break; 786 787 case 0: /* pseudo ops */ 788 if(aflag) { 789 if(p->link) { 790 if(p->as == ATEXT) { 791 ct = curtext; 792 o2 = autosize; 793 curtext = p; 794 autosize = p->to.offset + 4; 795 o1 = asmout(p->link, oplook(p->link), aflag); 796 curtext = ct; 797 autosize = o2; 798 } else 799 o1 = asmout(p->link, oplook(p->link), aflag); 800 } 801 return o1; 802 } 803 break; 804 805 case 1: /* mov[v] r1,r2 ==> OR r1,r0,r2 */ 806 o1 = OP_RRR(oprrr(AOR), p->from.reg, REGZERO, p->to.reg); 807 break; 808 809 case 2: /* add/sub r1,[r2],r3 */ 810 r = p->reg; 811 if(r == NREG) 812 r = p->to.reg; 813 o1 = OP_RRR(oprrr(p->as), p->from.reg, r, p->to.reg); 814 break; 815 816 case 3: /* mov $soreg, r ==> or/add $i,o,r */ 817 v = regoff(&p->from); 818 r = p->from.reg; 819 if(r == NREG) 820 r = o->param; 821 a = AADDU; 822 if(o->a1 == C_ANDCON) 823 a = AOR; 824 o1 = OP_IRR(opirr(a), v, r, p->to.reg); 825 break; 826 827 case 4: /* add $scon,[r1],r2 */ 828 v = regoff(&p->from); 829 r = p->reg; 830 if(r == NREG) 831 r = p->to.reg; 832 o1 = OP_IRR(opirr(p->as), v, r, p->to.reg); 833 break; 834 835 case 5: /* syscall */ 836 if(aflag) 837 return 0; 838 o1 = oprrr(p->as); 839 break; 840 841 case 6: /* beq r1,[r2],sbra */ 842 if(aflag) 843 return 0; 844 if(p->cond == P) 845 v = -4 >> 2; 846 else 847 v = (p->cond->pc - pc-4) >> 2; 848 if(((v << 16) >> 16) != v) 849 diag("short branch too far: %ld\n%P", v, p); 850 o1 = OP_IRR(opirr(p->as), v, p->from.reg, p->reg); 851 break; 852 853 case 7: /* mov r, soreg ==> sw o(r) */ 854 r = p->to.reg; 855 if(r == NREG) 856 r = o->param; 857 v = regoff(&p->to); 858 o1 = OP_IRR(opirr(p->as), v, r, p->from.reg); 859 break; 860 861 case 8: /* mov soreg, r ==> lw o(r) */ 862 r = p->from.reg; 863 if(r == NREG) 864 r = o->param; 865 v = regoff(&p->from); 866 o1 = OP_IRR(opirr(p->as+ALAST), v, r, p->to.reg); 867 break; 868 869 case 9: /* asl r1,[r2],r3 */ 870 r = p->reg; 871 if(r == NREG) 872 r = p->to.reg; 873 o1 = OP_RRR(oprrr(p->as), r, p->from.reg, p->to.reg); 874 break; 875 876 case 10: /* add $con,[r1],r2 ==> mov $con,t; add t,[r1],r2 */ 877 v = regoff(&p->from); 878 r = AOR; 879 if(v < 0) 880 r = AADDU; 881 o1 = OP_IRR(opirr(r), v, 0, REGTMP); 882 r = p->reg; 883 if(r == NREG) 884 r = p->to.reg; 885 o2 = OP_RRR(oprrr(p->as), REGTMP, r, p->to.reg); 886 break; 887 888 case 11: /* jmp lbra */ 889 if(aflag) 890 return 0; 891 if(p->cond == P) 892 v = p->pc >> 2; 893 else 894 v = p->cond->pc >> 2; 895 o1 = OP_JMP(opirr(p->as), v); 896 if(!debug['Y'] && p->link && p->cond && isnop(p->link)) { 897 nop.branch.count--; 898 nop.branch.outof--; 899 nop.jump.outof++; 900 o2 = asmout(p->cond, oplook(p->cond), 1); 901 if(o2) { 902 o1 += 1; 903 if(debug['a']) 904 Bprint(&bso, " %.8llux: %.8lux %.8lux%P\n", 905 p->pc, o1, o2, p); 906 LPUT(o1); 907 LPUT(o2); 908 return 1; 909 } 910 } 911 break; 912 913 case 12: /* movbs r,r */ 914 v = 16; 915 if(p->as == AMOVB) 916 v = 24; 917 o1 = OP_SRR(opirr(ASLL), v, p->from.reg, p->to.reg); 918 o2 = OP_SRR(opirr(ASRA), v, p->to.reg, p->to.reg); 919 break; 920 921 case 13: /* movbu r,r */ 922 if(p->as == AMOVBU) 923 o1 = OP_IRR(opirr(AAND), 0xffL, p->from.reg, p->to.reg); 924 else 925 o1 = OP_IRR(opirr(AAND), 0xffffL, p->from.reg, p->to.reg); 926 break; 927 928 case 16: /* sll $c,[r1],r2 */ 929 v = regoff(&p->from); 930 r = p->reg; 931 if(r == NREG) 932 r = p->to.reg; 933 934 /* OP_SRR will use only the low 5 bits of the shift value */ 935 if(v >= 32 && vshift(p->as)) 936 o1 = OP_SRR(opirr(p->as+ALAST), v-32, r, p->to.reg); 937 else 938 o1 = OP_SRR(opirr(p->as), v, r, p->to.reg); 939 break; 940 941 case 18: /* jmp [r1],0(r2) */ 942 if(aflag) 943 return 0; 944 r = p->reg; 945 if(r == NREG) 946 r = o->param; 947 o1 = OP_RRR(oprrr(p->as), 0, p->to.reg, r); 948 break; 949 950 case 19: /* mov $lcon,r ==> lu+or */ 951 v = regoff(&p->from); 952 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, p->to.reg); 953 o2 = OP_IRR(opirr(AOR), v, p->to.reg, p->to.reg); 954 break; 955 956 case 20: /* mov lohi,r */ 957 r = OP(2,0); /* mfhi */ 958 if(p->from.type == D_LO) 959 r = OP(2,2); /* mflo */ 960 o1 = OP_RRR(r, REGZERO, REGZERO, p->to.reg); 961 break; 962 963 case 21: /* mov r,lohi */ 964 r = OP(2,1); /* mthi */ 965 if(p->to.type == D_LO) 966 r = OP(2,3); /* mtlo */ 967 o1 = OP_RRR(r, REGZERO, p->from.reg, REGZERO); 968 break; 969 970 case 22: /* mul r1,r2 */ 971 o1 = OP_RRR(oprrr(p->as), p->from.reg, p->reg, REGZERO); 972 break; 973 974 case 23: /* add $lcon,r1,r2 ==> lu+or+add */ 975 v = regoff(&p->from); 976 if(p->to.reg == REGTMP || p->reg == REGTMP) 977 diag("cant synthesize large constant\n%P", p); 978 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 979 o2 = OP_IRR(opirr(AOR), v, REGTMP, REGTMP); 980 r = p->reg; 981 if(r == NREG) 982 r = p->to.reg; 983 o3 = OP_RRR(oprrr(p->as), REGTMP, r, p->to.reg); 984 break; 985 986 case 24: /* mov $ucon,,r ==> lu r */ 987 v = regoff(&p->from); 988 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, p->to.reg); 989 break; 990 991 case 25: /* add/and $ucon,[r1],r2 ==> lu $con,t; add t,[r1],r2 */ 992 v = regoff(&p->from); 993 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 994 r = p->reg; 995 if(r == NREG) 996 r = p->to.reg; 997 o2 = OP_RRR(oprrr(p->as), REGTMP, r, p->to.reg); 998 break; 999 1000 case 26: /* mov $lsext/auto/oreg,,r2 ==> lu+or+add */ 1001 v = regoff(&p->from); 1002 if(p->to.reg == REGTMP) 1003 diag("cant synthesize large constant\n%P", p); 1004 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 1005 o2 = OP_IRR(opirr(AOR), v, REGTMP, REGTMP); 1006 r = p->from.reg; 1007 if(r == NREG) 1008 r = o->param; 1009 o3 = OP_RRR(oprrr(AADDU), REGTMP, r, p->to.reg); 1010 break; 1011 1012 case 27: /* mov [sl]ext/auto/oreg,fr ==> lwc1 o(r) */ 1013 r = p->from.reg; 1014 if(r == NREG) 1015 r = o->param; 1016 v = regoff(&p->from); 1017 switch(o->size) { 1018 case 20: 1019 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 1020 o2 = OP_IRR(opirr(AOR), v, REGTMP, REGTMP); 1021 o3 = OP_RRR(oprrr(AADDU), r, REGTMP, REGTMP); 1022 o4 = OP_IRR(opirr(AMOVF+ALAST), 0, REGTMP, p->to.reg+1); 1023 o5 = OP_IRR(opirr(AMOVF+ALAST), 4, REGTMP, p->to.reg); 1024 break; 1025 case 16: 1026 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 1027 o2 = OP_IRR(opirr(AOR), v, REGTMP, REGTMP); 1028 o3 = OP_RRR(oprrr(AADDU), r, REGTMP, REGTMP); 1029 o4 = OP_IRR(opirr(AMOVF+ALAST), 0, REGTMP, p->to.reg); 1030 break; 1031 case 8: 1032 o1 = OP_IRR(opirr(AMOVF+ALAST), v, r, p->to.reg+1); 1033 o2 = OP_IRR(opirr(AMOVF+ALAST), v+4, r, p->to.reg); 1034 break; 1035 case 4: 1036 o1 = OP_IRR(opirr(AMOVF+ALAST), v, r, p->to.reg); 1037 break; 1038 } 1039 break; 1040 1041 case 28: /* mov fr,[sl]ext/auto/oreg ==> swc1 o(r) */ 1042 r = p->to.reg; 1043 if(r == NREG) 1044 r = o->param; 1045 v = regoff(&p->to); 1046 switch(o->size) { 1047 case 20: 1048 if(r == REGTMP) 1049 diag("cant synthesize large constant\n%P", p); 1050 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 1051 o2 = OP_IRR(opirr(AOR), v, REGTMP, REGTMP); 1052 o3 = OP_RRR(oprrr(AADDU), r, REGTMP, REGTMP); 1053 o4 = OP_IRR(opirr(AMOVF), 0, REGTMP, p->from.reg+1); 1054 o5 = OP_IRR(opirr(AMOVF), 4, REGTMP, p->from.reg); 1055 break; 1056 case 16: 1057 if(r == REGTMP) 1058 diag("cant synthesize large constant\n%P", p); 1059 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 1060 o2 = OP_IRR(opirr(AOR), v, REGTMP, REGTMP); 1061 o3 = OP_RRR(oprrr(AADDU), r, REGTMP, REGTMP); 1062 o4 = OP_IRR(opirr(AMOVF), 0, REGTMP, p->from.reg); 1063 break; 1064 case 8: 1065 o1 = OP_IRR(opirr(AMOVF), v, r, p->from.reg+1); 1066 o2 = OP_IRR(opirr(AMOVF), v+4, r, p->from.reg); 1067 break; 1068 case 4: 1069 o1 = OP_IRR(opirr(AMOVF), v, r, p->from.reg); 1070 break; 1071 } 1072 break; 1073 1074 case 30: /* movw r,fr */ 1075 r = SP(2,1)|(4<<21); /* mtc1 */ 1076 o1 = OP_RRR(r, p->from.reg, 0, p->to.reg); 1077 break; 1078 1079 case 31: /* movw fr,r */ 1080 r = SP(2,1)|(0<<21); /* mfc1 */ 1081 o1 = OP_RRR(r, p->to.reg, 0, p->from.reg); 1082 break; 1083 1084 case 32: /* fadd fr1,[fr2],fr3 */ 1085 r = p->reg; 1086 if(r == NREG) 1087 o1 = OP_FRRR(oprrr(p->as), p->from.reg, p->to.reg, p->to.reg); 1088 else 1089 o1 = OP_FRRR(oprrr(p->as), p->from.reg, r, p->to.reg); 1090 break; 1091 1092 case 33: /* fabs fr1,fr3 */ 1093 o1 = OP_FRRR(oprrr(p->as), 0, p->from.reg, p->to.reg); 1094 break; 1095 1096 case 34: /* mov $con,fr ==> or/add $i,r,r2 */ 1097 v = regoff(&p->from); 1098 r = AADDU; 1099 if(o->a1 == C_ANDCON) 1100 r = AOR; 1101 o1 = OP_IRR(opirr(r), v, 0, REGTMP); 1102 o2 = OP_RRR(SP(2,1)|(4<<21), REGTMP, 0, p->to.reg); /* mtc1 */ 1103 break; 1104 1105 case 35: /* mov r,lext/luto/oreg ==> sw o(r) */ 1106 /* 1107 * the lowbits of the constant cannot 1108 * be moved into the offset of the load 1109 * because the mips 4000 in 64-bit mode 1110 * does a 64-bit add and it will screw up. 1111 */ 1112 v = regoff(&p->to); 1113 r = p->to.reg; 1114 if(r == NREG) 1115 r = o->param; 1116 if(r == REGTMP) 1117 diag("cant synthesize large constant\n%P", p); 1118 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 1119 o2 = OP_IRR(opirr(AOR), v, REGTMP, REGTMP); 1120 o3 = OP_RRR(oprrr(AADDU), r, REGTMP, REGTMP); 1121 o4 = OP_IRR(opirr(p->as), 0, REGTMP, p->from.reg); 1122 break; 1123 1124 case 36: /* mov lext/lauto/lreg,r ==> lw o(r30) */ 1125 v = regoff(&p->from); 1126 r = p->from.reg; 1127 if(r == NREG) 1128 r = o->param; 1129 if(r == REGTMP) 1130 diag("cant synthesize large constant\n%P", p); 1131 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 1132 o2 = OP_IRR(opirr(AOR), v, REGTMP, REGTMP); 1133 o3 = OP_RRR(oprrr(AADDU), r, REGTMP, REGTMP); 1134 o4 = OP_IRR(opirr(p->as+ALAST), 0, REGTMP, p->to.reg); 1135 break; 1136 1137 case 37: /* movw r,mr */ 1138 r = SP(2,0)|(4<<21); /* mtc0 */ 1139 if(p->as == AMOVV) 1140 r = SP(2,0)|(5<<21); /* dmtc0 */ 1141 o1 = OP_RRR(r, p->from.reg, 0, p->to.reg); 1142 break; 1143 1144 case 38: /* movw mr,r */ 1145 r = SP(2,0)|(0<<21); /* mfc0 */ 1146 if(p->as == AMOVV) 1147 r = SP(2,0)|(1<<21); /* dmfc0 */ 1148 o1 = OP_RRR(r, p->to.reg, 0, p->from.reg); 1149 break; 1150 1151 case 39: /* rfe ==> jmp+rfe */ 1152 if(aflag) 1153 return 0; 1154 o1 = OP_RRR(oprrr(AJMP), 0, p->to.reg, REGZERO); 1155 o2 = oprrr(p->as); 1156 break; 1157 1158 case 40: /* word */ 1159 if(aflag) 1160 return 0; 1161 o1 = regoff(&p->to); 1162 break; 1163 1164 case 41: /* movw r,fcr */ 1165 o1 = OP_RRR(SP(2,1)|(2<<21), REGZERO, 0, p->to.reg); /* mfcc1 */ 1166 o2 = OP_RRR(SP(2,1)|(6<<21), p->from.reg, 0, p->to.reg);/* mtcc1 */ 1167 break; 1168 1169 case 42: /* movw fcr,r */ 1170 o1 = OP_RRR(SP(2,1)|(2<<21), p->to.reg, 0, p->from.reg);/* mfcc1 */ 1171 break; 1172 1173 case 45: /* case r */ 1174 if(p->link == P) 1175 v = p->pc+28; 1176 else 1177 v = p->link->pc; 1178 if(v & (1<<15)) 1179 o1 = OP_IRR(opirr(ALAST), (v>>16)+1, REGZERO, REGTMP); 1180 else 1181 o1 = OP_IRR(opirr(ALAST), v>>16, REGZERO, REGTMP); 1182 o2 = OP_SRR(opirr(ASLL), 2, p->from.reg, p->from.reg); 1183 o3 = OP_RRR(oprrr(AADD), p->from.reg, REGTMP, REGTMP); 1184 o4 = OP_IRR(opirr(AMOVW+ALAST), v, REGTMP, REGTMP); 1185 o5 = OP_RRR(oprrr(ANOR), REGZERO, REGZERO, REGZERO); 1186 o6 = OP_RRR(oprrr(AJMP), 0, REGTMP, REGZERO); 1187 o7 = OP_RRR(oprrr(ANOR), REGZERO, REGZERO, REGZERO); 1188 break; 1189 1190 case 46: /* bcase $con,lbra */ 1191 if(p->cond == P) 1192 v = p->pc; 1193 else 1194 v = p->cond->pc; 1195 o1 = v; 1196 break; 1197 } 1198 if(aflag) 1199 return o1; 1200 v = p->pc; 1201 switch(o->size) { 1202 default: 1203 if(debug['a']) 1204 Bprint(&bso, " %.8lux:\t\t%P\n", v, p); 1205 break; 1206 case 4: 1207 if(debug['a']) 1208 Bprint(&bso, " %.8lux: %.8lux\t%P\n", v, o1, p); 1209 LPUT(o1); 1210 break; 1211 case 8: 1212 if(debug['a']) 1213 Bprint(&bso, " %.8lux: %.8lux %.8lux%P\n", v, o1, o2, p); 1214 LPUT(o1); 1215 LPUT(o2); 1216 break; 1217 case 12: 1218 if(debug['a']) 1219 Bprint(&bso, " %.8lux: %.8lux %.8lux %.8lux%P\n", v, o1, o2, o3, p); 1220 LPUT(o1); 1221 LPUT(o2); 1222 LPUT(o3); 1223 break; 1224 case 16: 1225 if(debug['a']) 1226 Bprint(&bso, " %.8lux: %.8lux %.8lux %.8lux %.8lux%P\n", 1227 v, o1, o2, o3, o4, p); 1228 LPUT(o1); 1229 LPUT(o2); 1230 LPUT(o3); 1231 LPUT(o4); 1232 break; 1233 case 20: 1234 if(debug['a']) 1235 Bprint(&bso, " %.8lux: %.8lux %.8lux %.8lux %.8lux %.8lux%P\n", 1236 v, o1, o2, o3, o4, o5, p); 1237 LPUT(o1); 1238 LPUT(o2); 1239 LPUT(o3); 1240 LPUT(o4); 1241 LPUT(o5); 1242 break; 1243 1244 case 28: 1245 if(debug['a']) 1246 Bprint(&bso, " %.8lux: %.8lux %.8lux %.8lux %.8lux %.8lux %.8lux %.8lux%P\n", 1247 v, o1, o2, o3, o4, o5, o6, o7, p); 1248 LPUT(o1); 1249 LPUT(o2); 1250 LPUT(o3); 1251 LPUT(o4); 1252 LPUT(o5); 1253 LPUT(o6); 1254 LPUT(o7); 1255 break; 1256 } 1257 return 0; 1258 } 1259 1260 int 1261 isnop(Prog *p) 1262 { 1263 if(p->as != ANOR) 1264 return 0; 1265 if(p->reg != REGZERO && p->reg != NREG) 1266 return 0; 1267 if(p->from.type != D_REG || p->from.reg != REGZERO) 1268 return 0; 1269 if(p->to.type != D_REG || p->to.reg != REGZERO) 1270 return 0; 1271 return 1; 1272 } 1273 1274 long 1275 oprrr(int a) 1276 { 1277 switch(a) { 1278 case AADD: return OP(4,0); 1279 case AADDU: return OP(4,1); 1280 case ASGT: return OP(5,2); 1281 case ASGTU: return OP(5,3); 1282 case AAND: return OP(4,4); 1283 case AOR: return OP(4,5); 1284 case AXOR: return OP(4,6); 1285 case ASUB: return OP(4,2); 1286 case ASUBU: return OP(4,3); 1287 case ANOR: return OP(4,7); 1288 case ASLL: return OP(0,4); 1289 case ASRL: return OP(0,6); 1290 case ASRA: return OP(0,7); 1291 1292 case AREM: 1293 case ADIV: return OP(3,2); 1294 case AREMU: 1295 case ADIVU: return OP(3,3); 1296 case AMUL: return OP(3,0); 1297 case AMULU: return OP(3,1); 1298 1299 case AJMP: return OP(1,0); 1300 case AJAL: return OP(1,1); 1301 1302 case ABREAK: return OP(1,5); 1303 case ASYSCALL: return OP(1,4); 1304 case ATLBP: return MMU(1,0); 1305 case ATLBR: return MMU(0,1); 1306 case ATLBWI: return MMU(0,2); 1307 case ATLBWR: return MMU(0,6); 1308 case ARFE: return MMU(2,0); 1309 1310 case ADIVF: return FPF(0,3); 1311 case ADIVD: return FPD(0,3); 1312 case AMULF: return FPF(0,2); 1313 case AMULD: return FPD(0,2); 1314 case ASUBF: return FPF(0,1); 1315 case ASUBD: return FPD(0,1); 1316 case AADDF: return FPF(0,0); 1317 case AADDD: return FPD(0,0); 1318 1319 case AMOVFW: return FPF(4,4); 1320 case AMOVDW: return FPD(4,4); 1321 case AMOVWF: return FPW(4,0); 1322 case AMOVDF: return FPD(4,0); 1323 case AMOVWD: return FPW(4,1); 1324 case AMOVFD: return FPF(4,1); 1325 case AABSF: return FPF(0,5); 1326 case AABSD: return FPD(0,5); 1327 case AMOVF: return FPF(0,6); 1328 case AMOVD: return FPD(0,6); 1329 case ANEGF: return FPF(0,7); 1330 case ANEGD: return FPD(0,7); 1331 1332 case ACMPEQF: return FPF(6,2); 1333 case ACMPEQD: return FPD(6,2); 1334 case ACMPGTF: return FPF(7,4); 1335 case ACMPGTD: return FPD(7,4); 1336 case ACMPGEF: return FPF(7,6); 1337 case ACMPGED: return FPD(7,6); 1338 1339 case ADIVV: return OP(3,6); 1340 case ADIVVU: return OP(3,7); 1341 case AADDV: return OP(5,4); 1342 case AADDVU: return OP(5,5); 1343 } 1344 diag("bad rrr %d", a); 1345 return 0; 1346 } 1347 1348 long 1349 opirr(int a) 1350 { 1351 switch(a) { 1352 case AADD: return SP(1,0); 1353 case AADDU: return SP(1,1); 1354 case ASGT: return SP(1,2); 1355 case ASGTU: return SP(1,3); 1356 case AAND: return SP(1,4); 1357 case AOR: return SP(1,5); 1358 case AXOR: return SP(1,6); 1359 case ALAST: return SP(1,7); 1360 case ASLL: return OP(0,0); 1361 case ASRL: return OP(0,2); 1362 case ASRA: return OP(0,3); 1363 1364 case AJMP: return SP(0,2); 1365 case AJAL: return SP(0,3); 1366 case ABEQ: return SP(0,4); 1367 case ABNE: return SP(0,5); 1368 1369 case ABGEZ: return SP(0,1)|BCOND(0,1); 1370 case ABGEZAL: return SP(0,1)|BCOND(2,1); 1371 case ABGTZ: return SP(0,7); 1372 case ABLEZ: return SP(0,6); 1373 case ABLTZ: return SP(0,1)|BCOND(0,0); 1374 case ABLTZAL: return SP(0,1)|BCOND(2,0); 1375 1376 case ABFPT: return SP(2,1)|(257<<16); 1377 case ABFPF: return SP(2,1)|(256<<16); 1378 1379 case AMOVB: 1380 case AMOVBU: return SP(5,0); 1381 case AMOVH: 1382 case AMOVHU: return SP(5,1); 1383 case AMOVW: return SP(5,3); 1384 case AMOVV: return SP(7,7); 1385 case AMOVF: return SP(7,1); 1386 case AMOVWL: return SP(5,2); 1387 case AMOVWR: return SP(5,6); 1388 case AMOVVL: return SP(5,4); 1389 case AMOVVR: return SP(5,5); 1390 1391 case ABREAK: return SP(5,7); 1392 1393 case AMOVWL+ALAST: return SP(4,2); 1394 case AMOVWR+ALAST: return SP(4,6); 1395 case AMOVVL+ALAST: return SP(3,2); 1396 case AMOVVR+ALAST: return SP(3,3); 1397 case AMOVB+ALAST: return SP(4,0); 1398 case AMOVBU+ALAST: return SP(4,4); 1399 case AMOVH+ALAST: return SP(4,1); 1400 case AMOVHU+ALAST: return SP(4,5); 1401 case AMOVW+ALAST: return SP(4,3); 1402 case AMOVV+ALAST: return SP(6,7); 1403 case AMOVF+ALAST: return SP(6,1); 1404 1405 case ASLLV: return OP(7,0); 1406 case ASRLV: return OP(7,2); 1407 case ASRAV: return OP(7,3); 1408 case ASLLV+ALAST: return OP(7,4); 1409 case ASRLV+ALAST: return OP(7,6); 1410 case ASRAV+ALAST: return OP(7,7); 1411 1412 case AADDV: return SP(3,0); 1413 case AADDVU: return SP(3,1); 1414 } 1415 diag("bad irr %d", a); 1416 abort(); 1417 return 0; 1418 } 1419 1420 int 1421 vshift(int a) 1422 { 1423 switch(a){ 1424 case ASLLV: return 1; 1425 case ASRLV: return 1; 1426 case ASRAV: return 1; 1427 } 1428 return 0; 1429 } 1430