pass.c 13 KB

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  1. #include "l.h"
  2. void
  3. dodata(void)
  4. {
  5. int i;
  6. Sym *s;
  7. Prog *p;
  8. long t, u;
  9. if(debug['v'])
  10. Bprint(&bso, "%5.2f dodata\n", cputime());
  11. Bflush(&bso);
  12. for(p = datap; p != P; p = p->link) {
  13. s = p->from.sym;
  14. if(p->as == ADYNT || p->as == AINIT)
  15. s->value = dtype;
  16. if(s->type == SBSS)
  17. s->type = SDATA;
  18. if(s->type != SDATA)
  19. diag("initialize non-data (%d): %s\n%P",
  20. s->type, s->name, p);
  21. t = p->from.offset + p->width;
  22. if(t > s->value)
  23. diag("initialize bounds (%ld): %s\n%P",
  24. s->value, s->name, p);
  25. }
  26. /* allocate small guys */
  27. datsize = 0;
  28. for(i=0; i<NHASH; i++)
  29. for(s = hash[i]; s != S; s = s->link) {
  30. if(s->type != SDATA)
  31. if(s->type != SBSS)
  32. continue;
  33. t = s->value;
  34. if(t == 0) {
  35. diag("%s: no size", s->name);
  36. t = 1;
  37. }
  38. t = rnd(t, 4);;
  39. s->value = t;
  40. if(t > MINSIZ)
  41. continue;
  42. s->value = datsize;
  43. datsize += t;
  44. s->type = SDATA1;
  45. }
  46. /* allocate the rest of the data */
  47. for(i=0; i<NHASH; i++)
  48. for(s = hash[i]; s != S; s = s->link) {
  49. if(s->type != SDATA) {
  50. if(s->type == SDATA1)
  51. s->type = SDATA;
  52. continue;
  53. }
  54. t = s->value;
  55. s->value = datsize;
  56. datsize += t;
  57. }
  58. if(debug['j']) {
  59. /*
  60. * pad data with bss that fits up to next
  61. * 8k boundary, then push data to 8k
  62. */
  63. u = rnd(datsize, 8192);
  64. u -= datsize;
  65. for(i=0; i<NHASH; i++)
  66. for(s = hash[i]; s != S; s = s->link) {
  67. if(s->type != SBSS)
  68. continue;
  69. t = s->value;
  70. if(t > u)
  71. continue;
  72. u -= t;
  73. s->value = datsize;
  74. s->type = SDATA;
  75. datsize += t;
  76. }
  77. datsize += u;
  78. }
  79. /* now the bss */
  80. bsssize = 0;
  81. for(i=0; i<NHASH; i++)
  82. for(s = hash[i]; s != S; s = s->link) {
  83. if(s->type != SBSS)
  84. continue;
  85. t = s->value;
  86. s->value = bsssize + datsize;
  87. bsssize += t;
  88. }
  89. xdefine("edata", SBSS, datsize);
  90. xdefine("end", SBSS, bsssize + datsize);
  91. }
  92. Prog*
  93. brchain(Prog *p)
  94. {
  95. int i;
  96. for(i=0; i<20; i++) {
  97. if(p == P || p->as != AJMP)
  98. return p;
  99. p = p->pcond;
  100. }
  101. return P;
  102. }
  103. void
  104. follow(void)
  105. {
  106. if(debug['v'])
  107. Bprint(&bso, "%5.2f follow\n", cputime());
  108. Bflush(&bso);
  109. firstp = prg();
  110. lastp = firstp;
  111. xfol(textp);
  112. lastp->link = P;
  113. firstp = firstp->link;
  114. }
  115. void
  116. xfol(Prog *p)
  117. {
  118. Prog *q;
  119. int i;
  120. enum as a;
  121. loop:
  122. if(p == P)
  123. return;
  124. if(p->as == ATEXT)
  125. curtext = p;
  126. if(p->as == AJMP)
  127. if((q = p->pcond) != P) {
  128. p->mark = 1;
  129. p = q;
  130. if(p->mark == 0)
  131. goto loop;
  132. }
  133. if(p->mark) {
  134. /* copy up to 4 instructions to avoid branch */
  135. for(i=0,q=p; i<4; i++,q=q->link) {
  136. if(q == P)
  137. break;
  138. if(q == lastp)
  139. break;
  140. a = q->as;
  141. if(a == ANOP) {
  142. i--;
  143. continue;
  144. }
  145. switch(a) {
  146. case AJMP:
  147. case ARET:
  148. case AIRETL:
  149. case APUSHL:
  150. case APUSHFL:
  151. case APUSHW:
  152. case APUSHFW:
  153. case APOPL:
  154. case APOPFL:
  155. case APOPW:
  156. case APOPFW:
  157. goto brk;
  158. }
  159. if(q->pcond == P || q->pcond->mark)
  160. continue;
  161. if(a == ACALL || a == ALOOP)
  162. continue;
  163. for(;;) {
  164. if(p->as == ANOP) {
  165. p = p->link;
  166. continue;
  167. }
  168. q = copyp(p);
  169. p = p->link;
  170. q->mark = 1;
  171. lastp->link = q;
  172. lastp = q;
  173. if(q->as != a || q->pcond == P || q->pcond->mark)
  174. continue;
  175. q->as = relinv(q->as);
  176. p = q->pcond;
  177. q->pcond = q->link;
  178. q->link = p;
  179. xfol(q->link);
  180. p = q->link;
  181. if(p->mark)
  182. return;
  183. goto loop;
  184. }
  185. } /* */
  186. brk:;
  187. q = prg();
  188. q->as = AJMP;
  189. q->line = p->line;
  190. q->to.type = D_BRANCH;
  191. q->to.offset = p->pc;
  192. q->pcond = p;
  193. p = q;
  194. }
  195. p->mark = 1;
  196. lastp->link = p;
  197. lastp = p;
  198. a = p->as;
  199. if(a == AJMP || a == ARET || a == AIRETL)
  200. return;
  201. if(p->pcond != P)
  202. if(a != ACALL) {
  203. q = brchain(p->link);
  204. if(q != P && q->mark)
  205. if(a != ALOOP) {
  206. p->as = relinv(a);
  207. p->link = p->pcond;
  208. p->pcond = q;
  209. }
  210. xfol(p->link);
  211. q = brchain(p->pcond);
  212. if(q->mark) {
  213. p->pcond = q;
  214. return;
  215. }
  216. p = q;
  217. goto loop;
  218. }
  219. p = p->link;
  220. goto loop;
  221. }
  222. int
  223. relinv(int a)
  224. {
  225. switch(a) {
  226. case AJEQ: return AJNE;
  227. case AJNE: return AJEQ;
  228. case AJLE: return AJGT;
  229. case AJLS: return AJHI;
  230. case AJLT: return AJGE;
  231. case AJMI: return AJPL;
  232. case AJGE: return AJLT;
  233. case AJPL: return AJMI;
  234. case AJGT: return AJLE;
  235. case AJHI: return AJLS;
  236. case AJCS: return AJCC;
  237. case AJCC: return AJCS;
  238. case AJPS: return AJPC;
  239. case AJPC: return AJPS;
  240. case AJOS: return AJOC;
  241. case AJOC: return AJOS;
  242. }
  243. diag("unknown relation: %s in %s", anames[a], TNAME);
  244. return a;
  245. }
  246. void
  247. doinit(void)
  248. {
  249. Sym *s;
  250. Prog *p;
  251. int x;
  252. for(p = datap; p != P; p = p->link) {
  253. x = p->to.type;
  254. if(x != D_EXTERN && x != D_STATIC)
  255. continue;
  256. s = p->to.sym;
  257. if(s->type == 0 || s->type == SXREF)
  258. diag("undefined %s initializer of %s",
  259. s->name, p->from.sym->name);
  260. p->to.offset += s->value;
  261. p->to.type = D_CONST;
  262. if(s->type == SDATA || s->type == SBSS)
  263. p->to.offset += INITDAT;
  264. }
  265. }
  266. void
  267. patch(void)
  268. {
  269. long c;
  270. Prog *p, *q;
  271. Sym *s;
  272. long vexit;
  273. if(debug['v'])
  274. Bprint(&bso, "%5.2f mkfwd\n", cputime());
  275. Bflush(&bso);
  276. mkfwd();
  277. if(debug['v'])
  278. Bprint(&bso, "%5.2f patch\n", cputime());
  279. Bflush(&bso);
  280. s = lookup("exit", 0);
  281. vexit = s->value;
  282. for(p = firstp; p != P; p = p->link) {
  283. if(p->as == ATEXT)
  284. curtext = p;
  285. if(p->as == ACALL || p->as == ARET) {
  286. s = p->to.sym;
  287. if(s) {
  288. if(debug['c'])
  289. Bprint(&bso, "%s calls %s\n", TNAME, s->name);
  290. switch(s->type) {
  291. default:
  292. /* diag prints TNAME first */
  293. diag("%s is undefined", s->name);
  294. s->type = STEXT;
  295. s->value = vexit;
  296. break; /* or fall through to set offset? */
  297. case STEXT:
  298. p->to.offset = s->value;
  299. break;
  300. case SUNDEF:
  301. p->pcond = UP;
  302. p->to.offset = 0;
  303. break;
  304. }
  305. p->to.type = D_BRANCH;
  306. }
  307. }
  308. if(p->to.type != D_BRANCH || p->pcond == UP)
  309. continue;
  310. c = p->to.offset;
  311. for(q = firstp; q != P;) {
  312. if(q->forwd != P)
  313. if(c >= q->forwd->pc) {
  314. q = q->forwd;
  315. continue;
  316. }
  317. if(c == q->pc)
  318. break;
  319. q = q->link;
  320. }
  321. if(q == P) {
  322. diag("branch out of range in %s\n%P", TNAME, p);
  323. p->to.type = D_NONE;
  324. }
  325. p->pcond = q;
  326. }
  327. for(p = firstp; p != P; p = p->link) {
  328. if(p->as == ATEXT)
  329. curtext = p;
  330. p->mark = 0; /* initialization for follow */
  331. if(p->pcond != P && p->pcond != UP) {
  332. p->pcond = brloop(p->pcond);
  333. if(p->pcond != P)
  334. if(p->to.type == D_BRANCH)
  335. p->to.offset = p->pcond->pc;
  336. }
  337. }
  338. }
  339. #define LOG 5
  340. void
  341. mkfwd(void)
  342. {
  343. Prog *p;
  344. int i;
  345. long dwn[LOG], cnt[LOG];
  346. Prog *lst[LOG];
  347. for(i=0; i<LOG; i++) {
  348. if(i == 0)
  349. cnt[i] = 1; else
  350. cnt[i] = LOG * cnt[i-1];
  351. dwn[i] = 1;
  352. lst[i] = P;
  353. }
  354. i = 0;
  355. for(p = firstp; p != P; p = p->link) {
  356. if(p->as == ATEXT)
  357. curtext = p;
  358. i--;
  359. if(i < 0)
  360. i = LOG-1;
  361. p->forwd = P;
  362. dwn[i]--;
  363. if(dwn[i] <= 0) {
  364. dwn[i] = cnt[i];
  365. if(lst[i] != P)
  366. lst[i]->forwd = p;
  367. lst[i] = p;
  368. }
  369. }
  370. }
  371. Prog*
  372. brloop(Prog *p)
  373. {
  374. int c;
  375. Prog *q;
  376. c = 0;
  377. for(q = p; q != P; q = q->pcond) {
  378. if(q->as != AJMP)
  379. break;
  380. c++;
  381. if(c >= 5000)
  382. return P;
  383. }
  384. return q;
  385. }
  386. void
  387. dostkoff(void)
  388. {
  389. Prog *p, *q;
  390. long autoffset, deltasp;
  391. int a, f, curframe, curbecome, maxbecome;
  392. curframe = 0;
  393. curbecome = 0;
  394. maxbecome = 0;
  395. curtext = 0;
  396. for(p = firstp; p != P; p = p->link) {
  397. /* find out how much arg space is used in this TEXT */
  398. if(p->to.type == (D_INDIR+D_SP))
  399. if(p->to.offset > curframe)
  400. curframe = p->to.offset;
  401. switch(p->as) {
  402. case ATEXT:
  403. if(curtext && curtext->from.sym) {
  404. curtext->from.sym->frame = curframe;
  405. curtext->from.sym->become = curbecome;
  406. if(curbecome > maxbecome)
  407. maxbecome = curbecome;
  408. }
  409. curframe = 0;
  410. curbecome = 0;
  411. curtext = p;
  412. break;
  413. case ARET:
  414. /* special form of RET is BECOME */
  415. if(p->from.type == D_CONST)
  416. if(p->from.offset > curbecome)
  417. curbecome = p->from.offset;
  418. break;
  419. }
  420. }
  421. if(curtext && curtext->from.sym) {
  422. curtext->from.sym->frame = curframe;
  423. curtext->from.sym->become = curbecome;
  424. if(curbecome > maxbecome)
  425. maxbecome = curbecome;
  426. }
  427. if(debug['b'])
  428. print("max become = %d\n", maxbecome);
  429. xdefine("ALEFbecome", STEXT, maxbecome);
  430. curtext = 0;
  431. for(p = firstp; p != P; p = p->link) {
  432. switch(p->as) {
  433. case ATEXT:
  434. curtext = p;
  435. break;
  436. case ACALL:
  437. if(curtext != P && curtext->from.sym != S && curtext->to.offset >= 0) {
  438. f = maxbecome - curtext->from.sym->frame;
  439. if(f <= 0)
  440. break;
  441. /* calling a become or calling a variable */
  442. if(p->to.sym == S || p->to.sym->become) {
  443. curtext->to.offset += f;
  444. if(debug['b']) {
  445. curp = p;
  446. print("%D calling %D increase %d\n",
  447. &curtext->from, &p->to, f);
  448. }
  449. }
  450. }
  451. break;
  452. }
  453. }
  454. autoffset = 0;
  455. deltasp = 0;
  456. for(p = firstp; p != P; p = p->link) {
  457. if(p->as == ATEXT) {
  458. curtext = p;
  459. autoffset = p->to.offset;
  460. if(autoffset < 0)
  461. autoffset = 0;
  462. if(autoffset) {
  463. p = appendp(p);
  464. p->as = AADJSP;
  465. p->from.type = D_CONST;
  466. p->from.offset = autoffset;
  467. }
  468. deltasp = autoffset;
  469. }
  470. a = p->from.type;
  471. if(a == D_AUTO)
  472. p->from.offset += deltasp;
  473. if(a == D_PARAM)
  474. p->from.offset += deltasp + 4;
  475. a = p->to.type;
  476. if(a == D_AUTO)
  477. p->to.offset += deltasp;
  478. if(a == D_PARAM)
  479. p->to.offset += deltasp + 4;
  480. switch(p->as) {
  481. default:
  482. continue;
  483. case APUSHL:
  484. case APUSHFL:
  485. deltasp += 4;
  486. continue;
  487. case APUSHW:
  488. case APUSHFW:
  489. deltasp += 2;
  490. continue;
  491. case APOPL:
  492. case APOPFL:
  493. deltasp -= 4;
  494. continue;
  495. case APOPW:
  496. case APOPFW:
  497. deltasp -= 2;
  498. continue;
  499. case ARET:
  500. break;
  501. }
  502. if(autoffset != deltasp)
  503. diag("unbalanced PUSH/POP");
  504. if(p->from.type == D_CONST)
  505. goto become;
  506. if(autoffset) {
  507. q = p;
  508. p = appendp(p);
  509. p->as = ARET;
  510. q->as = AADJSP;
  511. q->from.type = D_CONST;
  512. q->from.offset = -autoffset;
  513. }
  514. continue;
  515. become:
  516. q = p;
  517. p = appendp(p);
  518. p->as = AJMP;
  519. p->to = q->to;
  520. p->pcond = q->pcond;
  521. q->as = AADJSP;
  522. q->from = zprg.from;
  523. q->from.type = D_CONST;
  524. q->from.offset = -autoffset;
  525. q->to = zprg.to;
  526. continue;
  527. }
  528. }
  529. long
  530. atolwhex(char *s)
  531. {
  532. long n;
  533. int f;
  534. n = 0;
  535. f = 0;
  536. while(*s == ' ' || *s == '\t')
  537. s++;
  538. if(*s == '-' || *s == '+') {
  539. if(*s++ == '-')
  540. f = 1;
  541. while(*s == ' ' || *s == '\t')
  542. s++;
  543. }
  544. if(s[0]=='0' && s[1]){
  545. if(s[1]=='x' || s[1]=='X'){
  546. s += 2;
  547. for(;;){
  548. if(*s >= '0' && *s <= '9')
  549. n = n*16 + *s++ - '0';
  550. else if(*s >= 'a' && *s <= 'f')
  551. n = n*16 + *s++ - 'a' + 10;
  552. else if(*s >= 'A' && *s <= 'F')
  553. n = n*16 + *s++ - 'A' + 10;
  554. else
  555. break;
  556. }
  557. } else
  558. while(*s >= '0' && *s <= '7')
  559. n = n*8 + *s++ - '0';
  560. } else
  561. while(*s >= '0' && *s <= '9')
  562. n = n*10 + *s++ - '0';
  563. if(f)
  564. n = -n;
  565. return n;
  566. }
  567. void
  568. undef(void)
  569. {
  570. int i;
  571. Sym *s;
  572. for(i=0; i<NHASH; i++)
  573. for(s = hash[i]; s != S; s = s->link)
  574. if(s->type == SXREF)
  575. diag("%s: not defined", s->name);
  576. }
  577. void
  578. import(void)
  579. {
  580. int i;
  581. Sym *s;
  582. for(i = 0; i < NHASH; i++)
  583. for(s = hash[i]; s != S; s = s->link)
  584. if(s->sig != 0 && s->type == SXREF && (nimports == 0 || s->subtype == SIMPORT)){
  585. if(s->value != 0)
  586. diag("value != 0 on SXREF");
  587. undefsym(s);
  588. if(debug['X'])
  589. Bprint(&bso, "IMPORT: %s sig=%lux v=%ld\n", s->name, s->sig, s->value);
  590. if(debug['S'])
  591. s->sig = 0;
  592. }
  593. }
  594. void
  595. ckoff(Sym *s, long v)
  596. {
  597. if(v < 0 || v >= 1<<Roffset)
  598. diag("relocation offset %ld for %s out of range", v, s->name);
  599. }
  600. static Prog*
  601. newdata(Sym *s, int o, int w, int t)
  602. {
  603. Prog *p;
  604. p = prg();
  605. if(edatap == P)
  606. datap = p;
  607. else
  608. edatap->link = p;
  609. edatap = p;
  610. p->as = ADATA;
  611. p->width = w;
  612. p->from.scale = w;
  613. p->from.type = t;
  614. p->from.sym = s;
  615. p->from.offset = o;
  616. p->to.type = D_CONST;
  617. return p;
  618. }
  619. void
  620. export(void)
  621. {
  622. int i, j, n, off, nb, sv, ne;
  623. Sym *s, *et, *str, **esyms;
  624. Prog *p;
  625. char buf[NSNAME], *t;
  626. n = 0;
  627. for(i = 0; i < NHASH; i++)
  628. for(s = hash[i]; s != S; s = s->link)
  629. if(s->sig != 0 && s->type != SXREF && s->type != SUNDEF && (nexports == 0 || s->subtype == SEXPORT))
  630. n++;
  631. esyms = malloc(n*sizeof(Sym*));
  632. ne = n;
  633. n = 0;
  634. for(i = 0; i < NHASH; i++)
  635. for(s = hash[i]; s != S; s = s->link)
  636. if(s->sig != 0 && s->type != SXREF && s->type != SUNDEF && (nexports == 0 || s->subtype == SEXPORT))
  637. esyms[n++] = s;
  638. for(i = 0; i < ne-1; i++)
  639. for(j = i+1; j < ne; j++)
  640. if(strcmp(esyms[i]->name, esyms[j]->name) > 0){
  641. s = esyms[i];
  642. esyms[i] = esyms[j];
  643. esyms[j] = s;
  644. }
  645. nb = 0;
  646. off = 0;
  647. et = lookup(EXPTAB, 0);
  648. if(et->type != 0 && et->type != SXREF)
  649. diag("%s already defined", EXPTAB);
  650. et->type = SDATA;
  651. str = lookup(".string", 0);
  652. if(str->type == 0)
  653. str->type = SDATA;
  654. sv = str->value;
  655. for(i = 0; i < ne; i++){
  656. s = esyms[i];
  657. if(debug['S'])
  658. s->sig = 0;
  659. /* Bprint(&bso, "EXPORT: %s sig=%lux t=%d\n", s->name, s->sig, s->type); */
  660. /* signature */
  661. p = newdata(et, off, sizeof(long), D_EXTERN);
  662. off += sizeof(long);
  663. p->to.offset = s->sig;
  664. /* address */
  665. p = newdata(et, off, sizeof(long), D_EXTERN);
  666. off += sizeof(long);
  667. p->to.type = D_ADDR;
  668. p->to.index = D_EXTERN;
  669. p->to.sym = s;
  670. /* string */
  671. t = s->name;
  672. n = strlen(t)+1;
  673. for(;;){
  674. buf[nb++] = *t;
  675. sv++;
  676. if(nb >= NSNAME){
  677. p = newdata(str, sv-NSNAME, NSNAME, D_STATIC);
  678. p->to.type = D_SCONST;
  679. memmove(p->to.scon, buf, NSNAME);
  680. nb = 0;
  681. }
  682. if(*t++ == 0)
  683. break;
  684. }
  685. /* name */
  686. p = newdata(et, off, sizeof(long), D_EXTERN);
  687. off += sizeof(long);
  688. p->to.type = D_ADDR;
  689. p->to.index = D_STATIC;
  690. p->to.sym = str;
  691. p->to.offset = sv-n;
  692. }
  693. if(nb > 0){
  694. p = newdata(str, sv-nb, nb, D_STATIC);
  695. p->to.type = D_SCONST;
  696. memmove(p->to.scon, buf, nb);
  697. }
  698. for(i = 0; i < 3; i++){
  699. newdata(et, off, sizeof(long), D_EXTERN);
  700. off += sizeof(long);
  701. }
  702. et->value = off;
  703. if(sv == 0)
  704. sv = 1;
  705. str->value = sv;
  706. exports = ne;
  707. free(esyms);
  708. }