emit.c 13 KB

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  1. #include "all.h"
  2. typedef struct E E;
  3. struct E {
  4. FILE *f;
  5. Fn *fn;
  6. uint64_t frame;
  7. uint padding;
  8. };
  9. #define CMP(X) \
  10. X(Cieq, "eq") \
  11. X(Cine, "ne") \
  12. X(Cisge, "ge") \
  13. X(Cisgt, "gt") \
  14. X(Cisle, "le") \
  15. X(Cislt, "lt") \
  16. X(Ciuge, "cs") \
  17. X(Ciugt, "hi") \
  18. X(Ciule, "ls") \
  19. X(Ciult, "cc") \
  20. X(NCmpI+Cfeq, "eq") \
  21. X(NCmpI+Cfge, "ge") \
  22. X(NCmpI+Cfgt, "gt") \
  23. X(NCmpI+Cfle, "ls") \
  24. X(NCmpI+Cflt, "mi") \
  25. X(NCmpI+Cfne, "ne") \
  26. X(NCmpI+Cfo, "vc") \
  27. X(NCmpI+Cfuo, "vs")
  28. enum {
  29. Ki = -1, /* matches Kw and Kl */
  30. Ka = -2, /* matches all classes */
  31. };
  32. static struct {
  33. short op;
  34. short cls;
  35. char *fmt;
  36. } omap[] = {
  37. { Oadd, Ki, "add %=, %0, %1" },
  38. { Oadd, Ka, "fadd %=, %0, %1" },
  39. { Osub, Ki, "sub %=, %0, %1" },
  40. { Osub, Ka, "fsub %=, %0, %1" },
  41. { Oneg, Ki, "neg %=, %0" },
  42. { Oneg, Ka, "fneg %=, %0" },
  43. { Oand, Ki, "and %=, %0, %1" },
  44. { Oor, Ki, "orr %=, %0, %1" },
  45. { Oxor, Ki, "eor %=, %0, %1" },
  46. { Osar, Ki, "asr %=, %0, %1" },
  47. { Oshr, Ki, "lsr %=, %0, %1" },
  48. { Oshl, Ki, "lsl %=, %0, %1" },
  49. { Omul, Ki, "mul %=, %0, %1" },
  50. { Omul, Ka, "fmul %=, %0, %1" },
  51. { Odiv, Ki, "sdiv %=, %0, %1" },
  52. { Odiv, Ka, "fdiv %=, %0, %1" },
  53. { Oudiv, Ki, "udiv %=, %0, %1" },
  54. { Orem, Ki, "sdiv %?, %0, %1\n\tmsub\t%=, %?, %1, %0" },
  55. { Ourem, Ki, "udiv %?, %0, %1\n\tmsub\t%=, %?, %1, %0" },
  56. { Ocopy, Ki, "mov %=, %0" },
  57. { Ocopy, Ka, "fmov %=, %0" },
  58. { Oswap, Ki, "mov %?, %0\n\tmov\t%0, %1\n\tmov\t%1, %?" },
  59. { Oswap, Ka, "fmov %?, %0\n\tfmov\t%0, %1\n\tfmov\t%1, %?" },
  60. { Ostoreb, Kw, "strb %W0, %M1" },
  61. { Ostoreh, Kw, "strh %W0, %M1" },
  62. { Ostorew, Kw, "str %W0, %M1" },
  63. { Ostorel, Kw, "str %L0, %M1" },
  64. { Ostores, Kw, "str %S0, %M1" },
  65. { Ostored, Kw, "str %D0, %M1" },
  66. { Oloadsb, Ki, "ldrsb %=, %M0" },
  67. { Oloadub, Ki, "ldrb %W=, %M0" },
  68. { Oloadsh, Ki, "ldrsh %=, %M0" },
  69. { Oloaduh, Ki, "ldrh %W=, %M0" },
  70. { Oloadsw, Kw, "ldr %=, %M0" },
  71. { Oloadsw, Kl, "ldrsw %=, %M0" },
  72. { Oloaduw, Ki, "ldr %W=, %M0" },
  73. { Oload, Ka, "ldr %=, %M0" },
  74. { Oextsb, Ki, "sxtb %=, %W0" },
  75. { Oextub, Ki, "uxtb %W=, %W0" },
  76. { Oextsh, Ki, "sxth %=, %W0" },
  77. { Oextuh, Ki, "uxth %W=, %W0" },
  78. { Oextsw, Ki, "sxtw %L=, %W0" },
  79. { Oextuw, Ki, "mov %W=, %W0" },
  80. { Oexts, Kd, "fcvt %=, %S0" },
  81. { Otruncd, Ks, "fcvt %=, %D0" },
  82. { Ocast, Kw, "fmov %=, %S0" },
  83. { Ocast, Kl, "fmov %=, %D0" },
  84. { Ocast, Ks, "fmov %=, %W0" },
  85. { Ocast, Kd, "fmov %=, %L0" },
  86. { Ostosi, Ka, "fcvtzs %=, %S0" },
  87. { Ostoui, Ka, "fcvtzu %=, %S0" },
  88. { Odtosi, Ka, "fcvtzs %=, %D0" },
  89. { Odtoui, Ka, "fcvtzu %=, %D0" },
  90. { Oswtof, Ka, "scvtf %=, %W0" },
  91. { Ouwtof, Ka, "ucvtf %=, %W0" },
  92. { Osltof, Ka, "scvtf %=, %L0" },
  93. { Oultof, Ka, "ucvtf %=, %L0" },
  94. { Ocall, Kw, "blr %L0" },
  95. { Oacmp, Ki, "cmp %0, %1" },
  96. { Oacmn, Ki, "cmn %0, %1" },
  97. { Oafcmp, Ka, "fcmpe %0, %1" },
  98. #define X(c, str) \
  99. { Oflag+c, Ki, "cset %=, " str },
  100. CMP(X)
  101. #undef X
  102. { NOp, 0, 0 }
  103. };
  104. static char *
  105. rname(int r, int k)
  106. {
  107. static char buf[4];
  108. if (r == SP) {
  109. assert(k == Kl);
  110. sprintf(buf, "sp");
  111. }
  112. else if (R0 <= r && r <= LR)
  113. switch (k) {
  114. default: die("invalid class");
  115. case Kw: sprintf(buf, "w%d", r-R0); break;
  116. case Kx:
  117. case Kl: sprintf(buf, "x%d", r-R0); break;
  118. }
  119. else if (V0 <= r && r <= V30)
  120. switch (k) {
  121. default: die("invalid class");
  122. case Ks: sprintf(buf, "s%d", r-V0); break;
  123. case Kx:
  124. case Kd: sprintf(buf, "d%d", r-V0); break;
  125. }
  126. else
  127. die("invalid register");
  128. return buf;
  129. }
  130. static uint64_t
  131. slot(Ref r, E *e)
  132. {
  133. int s;
  134. s = rsval(r);
  135. if (s == -1)
  136. return 16 + e->frame;
  137. if (s < 0) {
  138. if (e->fn->vararg && !T.apple)
  139. return 16 + e->frame + 192 - (s+2);
  140. else
  141. return 16 + e->frame - (s+2);
  142. } else
  143. return 16 + e->padding + 4 * s;
  144. }
  145. static void
  146. emitf(char *s, Ins *i, E *e)
  147. {
  148. Ref r;
  149. int k, c;
  150. Con *pc;
  151. uint64_t n;
  152. uint sp;
  153. fputc('\t', e->f);
  154. sp = 0;
  155. for (;;) {
  156. k = i->cls;
  157. while ((c = *s++) != '%')
  158. if (c == ' ' && !sp) {
  159. fputc('\t', e->f);
  160. sp = 1;
  161. } else if ( !c) {
  162. fputc('\n', e->f);
  163. return;
  164. } else
  165. fputc(c, e->f);
  166. Switch:
  167. switch ((c = *s++)) {
  168. default:
  169. die("invalid escape");
  170. case 'W':
  171. k = Kw;
  172. goto Switch;
  173. case 'L':
  174. k = Kl;
  175. goto Switch;
  176. case 'S':
  177. k = Ks;
  178. goto Switch;
  179. case 'D':
  180. k = Kd;
  181. goto Switch;
  182. case '?':
  183. if (KBASE(k) == 0)
  184. fputs(rname(IP1, k), e->f);
  185. else
  186. fputs(k==Ks ? "s31" : "d31", e->f);
  187. break;
  188. case '=':
  189. case '0':
  190. r = c == '=' ? i->to : i->arg[0];
  191. assert(isreg(r));
  192. fputs(rname(r.val, k), e->f);
  193. break;
  194. case '1':
  195. r = i->arg[1];
  196. switch (rtype(r)) {
  197. default:
  198. die("invalid second argument");
  199. case RTmp:
  200. assert(isreg(r));
  201. fputs(rname(r.val, k), e->f);
  202. break;
  203. case RCon:
  204. pc = &e->fn->con[r.val];
  205. n = pc->bits.i;
  206. assert(pc->type == CBits);
  207. if (n >> 24) {
  208. assert(arm64_logimm(n, k));
  209. fprintf(e->f, "#%"PRIu64, n);
  210. } else if (n & 0xfff000) {
  211. assert(!(n & ~0xfff000ull));
  212. fprintf(e->f, "#%"PRIu64", lsl #12",
  213. n>>12);
  214. } else {
  215. assert(!(n & ~0xfffull));
  216. fprintf(e->f, "#%"PRIu64, n);
  217. }
  218. break;
  219. }
  220. break;
  221. case 'M':
  222. c = *s++;
  223. assert(c == '0' || c == '1' || c == '=');
  224. r = c == '=' ? i->to : i->arg[c - '0'];
  225. switch (rtype(r)) {
  226. default:
  227. die("todo (arm emit): unhandled ref");
  228. case RTmp:
  229. assert(isreg(r));
  230. fprintf(e->f, "[%s]", rname(r.val, Kl));
  231. break;
  232. case RSlot:
  233. fprintf(e->f, "[x29, %"PRIu64"]", slot(r, e));
  234. break;
  235. }
  236. break;
  237. }
  238. }
  239. }
  240. static void
  241. loadaddr(Con *c, char *rn, E *e)
  242. {
  243. char *p, *l, *s;
  244. switch (c->sym.type) {
  245. default:
  246. die("unreachable");
  247. case SGlo:
  248. if (T.apple)
  249. s = "\tadrp\tR, S@pageO\n"
  250. "\tadd\tR, R, S@pageoffO\n";
  251. else
  252. s = "\tadrp\tR, SO\n"
  253. "\tadd\tR, R, #:lo12:SO\n";
  254. break;
  255. case SThr:
  256. if (T.apple)
  257. s = "\tadrp\tR, S@tlvppage\n"
  258. "\tldr\tR, [R, S@tlvppageoff]\n";
  259. else
  260. s = "\tmrs\tR, tpidr_el0\n"
  261. "\tadd\tR, R, #:tprel_hi12:SO, lsl #12\n"
  262. "\tadd\tR, R, #:tprel_lo12_nc:SO\n";
  263. break;
  264. }
  265. l = str(c->sym.id);
  266. p = l[0] == '"' ? "" : T.assym;
  267. for (; *s; s++)
  268. switch (*s) {
  269. default:
  270. fputc(*s, e->f);
  271. break;
  272. case 'R':
  273. fputs(rn, e->f);
  274. break;
  275. case 'S':
  276. fputs(p, e->f);
  277. fputs(l, e->f);
  278. break;
  279. case 'O':
  280. if (c->bits.i)
  281. /* todo, handle large offsets */
  282. fprintf(e->f, "+%"PRIi64, c->bits.i);
  283. break;
  284. }
  285. }
  286. static void
  287. loadcon(Con *c, int r, int k, E *e)
  288. {
  289. char *rn;
  290. int64_t n;
  291. int w, sh;
  292. w = KWIDE(k);
  293. rn = rname(r, k);
  294. n = c->bits.i;
  295. if (c->type == CAddr) {
  296. rn = rname(r, Kl);
  297. loadaddr(c, rn, e);
  298. return;
  299. }
  300. assert(c->type == CBits);
  301. if (!w)
  302. n = (int32_t)n;
  303. if ((n | 0xffff) == -1 || arm64_logimm(n, k)) {
  304. fprintf(e->f, "\tmov\t%s, #%"PRIi64"\n", rn, n);
  305. } else {
  306. fprintf(e->f, "\tmov\t%s, #%d\n",
  307. rn, (int)(n & 0xffff));
  308. for (sh=16; n>>=16; sh+=16) {
  309. if ((!w && sh == 32) || sh == 64)
  310. break;
  311. fprintf(e->f, "\tmovk\t%s, #0x%x, lsl #%d\n",
  312. rn, (uint)(n & 0xffff), sh);
  313. }
  314. }
  315. }
  316. static void emitins(Ins *, E *);
  317. static void
  318. fixarg(Ref *pr, int sz, E *e)
  319. {
  320. Ins *i;
  321. Ref r;
  322. uint64_t s;
  323. r = *pr;
  324. if (rtype(r) == RSlot) {
  325. s = slot(r, e);
  326. if (s > sz * 4095u) {
  327. i = &(Ins){Oaddr, Kl, TMP(IP1), {r}};
  328. emitins(i, e);
  329. *pr = TMP(IP1);
  330. }
  331. }
  332. }
  333. static void
  334. emitins(Ins *i, E *e)
  335. {
  336. char *l, *p, *rn;
  337. uint64_t s;
  338. int o;
  339. Ref r;
  340. Con *c;
  341. switch (i->op) {
  342. default:
  343. if (isload(i->op))
  344. fixarg(&i->arg[0], loadsz(i), e);
  345. if (isstore(i->op))
  346. fixarg(&i->arg[1], storesz(i), e);
  347. Table:
  348. /* most instructions are just pulled out of
  349. * the table omap[], some special cases are
  350. * detailed below */
  351. for (o=0;; o++) {
  352. /* this linear search should really be a binary
  353. * search */
  354. if (omap[o].op == NOp)
  355. die("no match for %s(%c)",
  356. optab[i->op].name, "wlsd"[i->cls]);
  357. if (omap[o].op == i->op)
  358. if (omap[o].cls == i->cls || omap[o].cls == Ka
  359. || (omap[o].cls == Ki && KBASE(i->cls) == 0))
  360. break;
  361. }
  362. emitf(omap[o].fmt, i, e);
  363. break;
  364. case Onop:
  365. break;
  366. case Ocopy:
  367. if (req(i->to, i->arg[0]))
  368. break;
  369. if (rtype(i->to) == RSlot) {
  370. r = i->to;
  371. if (!isreg(i->arg[0])) {
  372. i->to = TMP(IP1);
  373. emitins(i, e);
  374. i->arg[0] = i->to;
  375. }
  376. i->op = Ostorew + i->cls;
  377. i->cls = Kw;
  378. i->arg[1] = r;
  379. emitins(i, e);
  380. break;
  381. }
  382. assert(isreg(i->to));
  383. switch (rtype(i->arg[0])) {
  384. case RCon:
  385. c = &e->fn->con[i->arg[0].val];
  386. loadcon(c, i->to.val, i->cls, e);
  387. break;
  388. case RSlot:
  389. i->op = Oload;
  390. emitins(i, e);
  391. break;
  392. default:
  393. assert(i->to.val != IP1);
  394. goto Table;
  395. }
  396. break;
  397. case Oaddr:
  398. assert(rtype(i->arg[0]) == RSlot);
  399. rn = rname(i->to.val, Kl);
  400. s = slot(i->arg[0], e);
  401. if (s <= 4095)
  402. fprintf(e->f, "\tadd\t%s, x29, #%"PRIu64"\n", rn, s);
  403. else if (s <= 65535)
  404. fprintf(e->f,
  405. "\tmov\t%s, #%"PRIu64"\n"
  406. "\tadd\t%s, x29, %s\n",
  407. rn, s, rn, rn
  408. );
  409. else
  410. fprintf(e->f,
  411. "\tmov\t%s, #%"PRIu64"\n"
  412. "\tmovk\t%s, #%"PRIu64", lsl #16\n"
  413. "\tadd\t%s, x29, %s\n",
  414. rn, s & 0xFFFF, rn, s >> 16, rn, rn
  415. );
  416. break;
  417. case Ocall:
  418. if (rtype(i->arg[0]) != RCon)
  419. goto Table;
  420. c = &e->fn->con[i->arg[0].val];
  421. if (c->type != CAddr
  422. || c->sym.type != SGlo
  423. || c->bits.i)
  424. die("invalid call argument");
  425. l = str(c->sym.id);
  426. p = l[0] == '"' ? "" : T.assym;
  427. fprintf(e->f, "\tbl\t%s%s\n", p, l);
  428. break;
  429. case Osalloc:
  430. emitf("sub sp, sp, %0", i, e);
  431. if (!req(i->to, R))
  432. emitf("mov %=, sp", i, e);
  433. break;
  434. case Odbgloc:
  435. emitdbgloc(i->arg[0].val, i->arg[1].val, e->f);
  436. break;
  437. }
  438. }
  439. static void
  440. framelayout(E *e)
  441. {
  442. int *r;
  443. uint o;
  444. uint64_t f;
  445. for (o=0, r=arm64_rclob; *r>=0; r++)
  446. o += 1 & (e->fn->reg >> *r);
  447. f = e->fn->slot;
  448. f = (f + 3) & -4;
  449. o += o & 1;
  450. e->padding = 4*(f-e->fn->slot);
  451. e->frame = 4*f + 8*o;
  452. }
  453. /*
  454. Stack-frame layout:
  455. +=============+
  456. | varargs |
  457. | save area |
  458. +-------------+
  459. | callee-save | ^
  460. | registers | |
  461. +-------------+ |
  462. | ... | |
  463. | spill slots | |
  464. | ... | | e->frame
  465. +-------------+ |
  466. | ... | |
  467. | locals | |
  468. | ... | |
  469. +-------------+ |
  470. | e->padding | v
  471. +-------------+
  472. | saved x29 |
  473. | saved x30 |
  474. +=============+ <- x29
  475. */
  476. void
  477. arm64_emitfn(Fn *fn, FILE *out)
  478. {
  479. static char *ctoa[] = {
  480. #define X(c, s) [c] = s,
  481. CMP(X)
  482. #undef X
  483. };
  484. static int id0;
  485. int s, n, c, lbl, *r;
  486. uint64_t o;
  487. Blk *b, *t;
  488. Ins *i;
  489. E *e;
  490. e = &(E){.f = out, .fn = fn};
  491. if (T.apple)
  492. e->fn->lnk.align = 4;
  493. emitfnlnk(e->fn->name, &e->fn->lnk, e->f);
  494. fputs("\thint\t#34\n", e->f);
  495. framelayout(e);
  496. if (e->fn->vararg && !T.apple) {
  497. for (n=7; n>=0; n--)
  498. fprintf(e->f, "\tstr\tq%d, [sp, -16]!\n", n);
  499. for (n=7; n>=0; n-=2)
  500. fprintf(e->f, "\tstp\tx%d, x%d, [sp, -16]!\n", n-1, n);
  501. }
  502. if (e->frame + 16 <= 512)
  503. fprintf(e->f,
  504. "\tstp\tx29, x30, [sp, -%"PRIu64"]!\n",
  505. e->frame + 16
  506. );
  507. else if (e->frame <= 4095)
  508. fprintf(e->f,
  509. "\tsub\tsp, sp, #%"PRIu64"\n"
  510. "\tstp\tx29, x30, [sp, -16]!\n",
  511. e->frame
  512. );
  513. else if (e->frame <= 65535)
  514. fprintf(e->f,
  515. "\tmov\tx16, #%"PRIu64"\n"
  516. "\tsub\tsp, sp, x16\n"
  517. "\tstp\tx29, x30, [sp, -16]!\n",
  518. e->frame
  519. );
  520. else
  521. fprintf(e->f,
  522. "\tmov\tx16, #%"PRIu64"\n"
  523. "\tmovk\tx16, #%"PRIu64", lsl #16\n"
  524. "\tsub\tsp, sp, x16\n"
  525. "\tstp\tx29, x30, [sp, -16]!\n",
  526. e->frame & 0xFFFF, e->frame >> 16
  527. );
  528. fputs("\tmov\tx29, sp\n", e->f);
  529. s = (e->frame - e->padding) / 4;
  530. for (r=arm64_rclob; *r>=0; r++)
  531. if (e->fn->reg & BIT(*r)) {
  532. s -= 2;
  533. i = &(Ins){.arg = {TMP(*r), SLOT(s)}};
  534. i->op = *r >= V0 ? Ostored : Ostorel;
  535. emitins(i, e);
  536. }
  537. for (lbl=0, b=e->fn->start; b; b=b->link) {
  538. if (lbl || b->npred > 1)
  539. fprintf(e->f, "%s%d:\n", T.asloc, id0+b->id);
  540. for (i=b->ins; i!=&b->ins[b->nins]; i++)
  541. emitins(i, e);
  542. lbl = 1;
  543. switch (b->jmp.type) {
  544. case Jhlt:
  545. fprintf(e->f, "\tbrk\t#1000\n");
  546. break;
  547. case Jret0:
  548. s = (e->frame - e->padding) / 4;
  549. for (r=arm64_rclob; *r>=0; r++)
  550. if (e->fn->reg & BIT(*r)) {
  551. s -= 2;
  552. i = &(Ins){Oload, 0, TMP(*r), {SLOT(s)}};
  553. i->cls = *r >= V0 ? Kd : Kl;
  554. emitins(i, e);
  555. }
  556. if (e->fn->dynalloc)
  557. fputs("\tmov sp, x29\n", e->f);
  558. o = e->frame + 16;
  559. if (e->fn->vararg && !T.apple)
  560. o += 192;
  561. if (o <= 504)
  562. fprintf(e->f,
  563. "\tldp\tx29, x30, [sp], %"PRIu64"\n",
  564. o
  565. );
  566. else if (o - 16 <= 4095)
  567. fprintf(e->f,
  568. "\tldp\tx29, x30, [sp], 16\n"
  569. "\tadd\tsp, sp, #%"PRIu64"\n",
  570. o - 16
  571. );
  572. else if (o - 16 <= 65535)
  573. fprintf(e->f,
  574. "\tldp\tx29, x30, [sp], 16\n"
  575. "\tmov\tx16, #%"PRIu64"\n"
  576. "\tadd\tsp, sp, x16\n",
  577. o - 16
  578. );
  579. else
  580. fprintf(e->f,
  581. "\tldp\tx29, x30, [sp], 16\n"
  582. "\tmov\tx16, #%"PRIu64"\n"
  583. "\tmovk\tx16, #%"PRIu64", lsl #16\n"
  584. "\tadd\tsp, sp, x16\n",
  585. (o - 16) & 0xFFFF, (o - 16) >> 16
  586. );
  587. fprintf(e->f, "\tret\n");
  588. break;
  589. case Jjmp:
  590. Jmp:
  591. if (b->s1 != b->link)
  592. fprintf(e->f,
  593. "\tb\t%s%d\n",
  594. T.asloc, id0+b->s1->id
  595. );
  596. else
  597. lbl = 0;
  598. break;
  599. default:
  600. c = b->jmp.type - Jjf;
  601. if (c < 0 || c > NCmp)
  602. die("unhandled jump %d", b->jmp.type);
  603. if (b->link == b->s2) {
  604. t = b->s1;
  605. b->s1 = b->s2;
  606. b->s2 = t;
  607. } else
  608. c = cmpneg(c);
  609. fprintf(e->f,
  610. "\tb%s\t%s%d\n",
  611. ctoa[c], T.asloc, id0+b->s2->id
  612. );
  613. goto Jmp;
  614. }
  615. }
  616. id0 += e->fn->nblk;
  617. if (!T.apple)
  618. elf_emitfnfin(fn->name, out);
  619. }