a.y 13 KB

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  1. %{
  2. #include "a.h"
  3. %}
  4. %union
  5. {
  6. Sym *sym;
  7. vlong lval;
  8. double dval;
  9. char sval[8];
  10. Gen gen;
  11. }
  12. %left '|'
  13. %left '^'
  14. %left '&'
  15. %left '<' '>'
  16. %left '+' '-'
  17. %left '*' '/' '%'
  18. %token <lval> LMOVW LMOVB LABS LLOGW LSHW LADDW LCMP LCROP
  19. %token <lval> LBRA LFMOV LFCONV LFCMP LFADD LFMA LTRAP LXORW
  20. %token <lval> LNOP LEND LRETT LWORD LTEXT LDATA LRETRN
  21. %token <lval> LCONST LSP LSB LFP LPC LCREG LFLUSH
  22. %token <lval> LREG LFREG LR LCR LF LFPSCR
  23. %token <lval> LLR LCTR LSPR LSPREG LSEG LMSR
  24. %token <lval> LSCHED LXLD LXST LXOP LXMV
  25. %token <lval> LRLWM LMOVMW LMOVEM LMOVFL LMTFSB LMA
  26. %token <dval> LFCONST
  27. %token <sval> LSCONST
  28. %token <sym> LNAME LLAB LVAR
  29. %type <lval> con expr pointer offset sreg
  30. %type <gen> addr rreg regaddr name creg freg xlreg lr ctr
  31. %type <gen> imm ximm fimm rel psr lcr cbit fpscr fpscrf msr mask
  32. %%
  33. prog:
  34. | prog line
  35. line:
  36. LLAB ':'
  37. {
  38. if($1->value != pc)
  39. yyerror("redeclaration of %s", $1->name);
  40. $1->value = pc;
  41. }
  42. line
  43. | LNAME ':'
  44. {
  45. $1->type = LLAB;
  46. $1->value = pc;
  47. }
  48. line
  49. | LNAME '=' expr ';'
  50. {
  51. $1->type = LVAR;
  52. $1->value = $3;
  53. }
  54. | LVAR '=' expr ';'
  55. {
  56. if($1->value != $3)
  57. yyerror("redeclaration of %s", $1->name);
  58. $1->value = $3;
  59. }
  60. | LSCHED ';'
  61. {
  62. nosched = $1;
  63. }
  64. | ';'
  65. | inst ';'
  66. | error ';'
  67. inst:
  68. /*
  69. * load ints and bytes
  70. */
  71. LMOVW rreg ',' rreg
  72. {
  73. outcode($1, &$2, NREG, &$4);
  74. }
  75. | LMOVW addr ',' rreg
  76. {
  77. outcode($1, &$2, NREG, &$4);
  78. }
  79. | LMOVW regaddr ',' rreg
  80. {
  81. outcode($1, &$2, NREG, &$4);
  82. }
  83. | LMOVB rreg ',' rreg
  84. {
  85. outcode($1, &$2, NREG, &$4);
  86. }
  87. | LMOVB addr ',' rreg
  88. {
  89. outcode($1, &$2, NREG, &$4);
  90. }
  91. | LMOVB regaddr ',' rreg
  92. {
  93. outcode($1, &$2, NREG, &$4);
  94. }
  95. /*
  96. * load floats
  97. */
  98. | LFMOV addr ',' freg
  99. {
  100. outcode($1, &$2, NREG, &$4);
  101. }
  102. | LFMOV regaddr ',' freg
  103. {
  104. outcode($1, &$2, NREG, &$4);
  105. }
  106. | LFMOV fimm ',' freg
  107. {
  108. outcode($1, &$2, NREG, &$4);
  109. }
  110. | LFMOV freg ',' freg
  111. {
  112. outcode($1, &$2, NREG, &$4);
  113. }
  114. | LFMOV freg ',' addr
  115. {
  116. outcode($1, &$2, NREG, &$4);
  117. }
  118. | LFMOV freg ',' regaddr
  119. {
  120. outcode($1, &$2, NREG, &$4);
  121. }
  122. /*
  123. * store ints and bytes
  124. */
  125. | LMOVW rreg ',' addr
  126. {
  127. outcode($1, &$2, NREG, &$4);
  128. }
  129. | LMOVW rreg ',' regaddr
  130. {
  131. outcode($1, &$2, NREG, &$4);
  132. }
  133. | LMOVB rreg ',' addr
  134. {
  135. outcode($1, &$2, NREG, &$4);
  136. }
  137. | LMOVB rreg ',' regaddr
  138. {
  139. outcode($1, &$2, NREG, &$4);
  140. }
  141. /*
  142. * store floats
  143. */
  144. | LMOVW freg ',' addr
  145. {
  146. outcode($1, &$2, NREG, &$4);
  147. }
  148. | LMOVW freg ',' regaddr
  149. {
  150. outcode($1, &$2, NREG, &$4);
  151. }
  152. /*
  153. * floating point status
  154. */
  155. | LMOVW fpscr ',' freg
  156. {
  157. outcode($1, &$2, NREG, &$4);
  158. }
  159. | LMOVW freg ',' fpscr
  160. {
  161. outcode($1, &$2, NREG, &$4);
  162. }
  163. | LMOVW freg ',' imm ',' fpscr
  164. {
  165. outgcode($1, &$2, NREG, &$4, &$6);
  166. }
  167. | LMOVW fpscr ',' creg
  168. {
  169. outcode($1, &$2, NREG, &$4);
  170. }
  171. | LMOVW imm ',' fpscrf
  172. {
  173. outcode($1, &$2, NREG, &$4);
  174. }
  175. | LMTFSB imm ',' con
  176. {
  177. outcode($1, &$2, $4, &nullgen);
  178. }
  179. /*
  180. * field moves (mtcrf)
  181. */
  182. | LMOVW rreg ',' imm ',' lcr
  183. {
  184. outgcode($1, &$2, NREG, &$4, &$6);
  185. }
  186. | LMOVW rreg ',' creg
  187. {
  188. outcode($1, &$2, NREG, &$4);
  189. }
  190. | LMOVW rreg ',' lcr
  191. {
  192. outcode($1, &$2, NREG, &$4);
  193. }
  194. /*
  195. * integer operations
  196. * logical instructions
  197. * shift instructions
  198. * unary instructions
  199. */
  200. | LADDW rreg ',' sreg ',' rreg
  201. {
  202. outcode($1, &$2, $4, &$6);
  203. }
  204. | LADDW imm ',' sreg ',' rreg
  205. {
  206. outcode($1, &$2, $4, &$6);
  207. }
  208. | LADDW rreg ',' imm ',' rreg
  209. {
  210. outgcode($1, &$2, NREG, &$4, &$6);
  211. }
  212. | LADDW rreg ',' rreg
  213. {
  214. outcode($1, &$2, NREG, &$4);
  215. }
  216. | LADDW imm ',' rreg
  217. {
  218. outcode($1, &$2, NREG, &$4);
  219. }
  220. | LLOGW rreg ',' sreg ',' rreg
  221. {
  222. outcode($1, &$2, $4, &$6);
  223. }
  224. | LLOGW rreg ',' rreg
  225. {
  226. outcode($1, &$2, NREG, &$4);
  227. }
  228. | LSHW rreg ',' sreg ',' rreg
  229. {
  230. outcode($1, &$2, $4, &$6);
  231. }
  232. | LSHW rreg ',' rreg
  233. {
  234. outcode($1, &$2, NREG, &$4);
  235. }
  236. | LSHW imm ',' sreg ',' rreg
  237. {
  238. outcode($1, &$2, $4, &$6);
  239. }
  240. | LSHW imm ',' rreg
  241. {
  242. outcode($1, &$2, NREG, &$4);
  243. }
  244. | LABS rreg ',' rreg
  245. {
  246. outcode($1, &$2, NREG, &$4);
  247. }
  248. | LABS rreg
  249. {
  250. outcode($1, &$2, NREG, &$2);
  251. }
  252. /*
  253. * multiply-accumulate
  254. */
  255. | LMA rreg ',' sreg ',' rreg
  256. {
  257. outcode($1, &$2, $4, &$6);
  258. }
  259. /*
  260. * move immediate: macro for cau+or, addi, addis, and other combinations
  261. */
  262. | LMOVW imm ',' rreg
  263. {
  264. outcode($1, &$2, NREG, &$4);
  265. }
  266. | LMOVW ximm ',' rreg
  267. {
  268. outcode($1, &$2, NREG, &$4);
  269. }
  270. /*
  271. * condition register operations
  272. */
  273. | LCROP cbit ',' cbit
  274. {
  275. outcode($1, &$2, $4.reg, &$4);
  276. }
  277. | LCROP cbit ',' con ',' cbit
  278. {
  279. outcode($1, &$2, $4, &$6);
  280. }
  281. /*
  282. * condition register moves
  283. * move from machine state register
  284. */
  285. | LMOVW creg ',' creg
  286. {
  287. outcode($1, &$2, NREG, &$4);
  288. }
  289. | LMOVW psr ',' creg
  290. {
  291. outcode($1, &$2, NREG, &$4);
  292. }
  293. | LMOVW lcr ',' rreg
  294. {
  295. outcode($1, &$2, NREG, &$4);
  296. }
  297. | LMOVW psr ',' rreg
  298. {
  299. outcode($1, &$2, NREG, &$4);
  300. }
  301. | LMOVW xlreg ',' rreg
  302. {
  303. outcode($1, &$2, NREG, &$4);
  304. }
  305. | LMOVW rreg ',' xlreg
  306. {
  307. outcode($1, &$2, NREG, &$4);
  308. }
  309. | LMOVW creg ',' psr
  310. {
  311. outcode($1, &$2, NREG, &$4);
  312. }
  313. | LMOVW rreg ',' psr
  314. {
  315. outcode($1, &$2, NREG, &$4);
  316. }
  317. /*
  318. * branch, branch conditional
  319. * branch conditional register
  320. * branch conditional to count register
  321. */
  322. | LBRA rel
  323. {
  324. outcode($1, &nullgen, NREG, &$2);
  325. }
  326. | LBRA addr
  327. {
  328. outcode($1, &nullgen, NREG, &$2);
  329. }
  330. | LBRA '(' xlreg ')'
  331. {
  332. outcode($1, &nullgen, NREG, &$3);
  333. }
  334. | LBRA ',' rel
  335. {
  336. outcode($1, &nullgen, NREG, &$3);
  337. }
  338. | LBRA ',' addr
  339. {
  340. outcode($1, &nullgen, NREG, &$3);
  341. }
  342. | LBRA ',' '(' xlreg ')'
  343. {
  344. outcode($1, &nullgen, NREG, &$4);
  345. }
  346. | LBRA creg ',' rel
  347. {
  348. outcode($1, &$2, NREG, &$4);
  349. }
  350. | LBRA creg ',' addr
  351. {
  352. outcode($1, &$2, NREG, &$4);
  353. }
  354. | LBRA creg ',' '(' xlreg ')'
  355. {
  356. outcode($1, &$2, NREG, &$5);
  357. }
  358. | LBRA con ',' rel
  359. {
  360. outcode($1, &nullgen, $2, &$4);
  361. }
  362. | LBRA con ',' addr
  363. {
  364. outcode($1, &nullgen, $2, &$4);
  365. }
  366. | LBRA con ',' '(' xlreg ')'
  367. {
  368. outcode($1, &nullgen, $2, &$5);
  369. }
  370. | LBRA con ',' con ',' rel
  371. {
  372. Gen g;
  373. g = nullgen;
  374. g.type = D_CONST;
  375. g.offset = $2;
  376. outcode($1, &g, $4, &$6);
  377. }
  378. | LBRA con ',' con ',' addr
  379. {
  380. Gen g;
  381. g = nullgen;
  382. g.type = D_CONST;
  383. g.offset = $2;
  384. outcode($1, &g, $4, &$6);
  385. }
  386. | LBRA con ',' con ',' '(' xlreg ')'
  387. {
  388. Gen g;
  389. g = nullgen;
  390. g.type = D_CONST;
  391. g.offset = $2;
  392. outcode($1, &g, $4, &$7);
  393. }
  394. /*
  395. * conditional trap
  396. */
  397. | LTRAP rreg ',' sreg
  398. {
  399. outcode($1, &$2, $4, &nullgen);
  400. }
  401. | LTRAP imm ',' sreg
  402. {
  403. outcode($1, &$2, $4, &nullgen);
  404. }
  405. | LTRAP rreg comma
  406. {
  407. outcode($1, &$2, NREG, &nullgen);
  408. }
  409. | LTRAP comma
  410. {
  411. outcode($1, &nullgen, NREG, &nullgen);
  412. }
  413. /*
  414. * floating point operate
  415. */
  416. | LFCONV freg ',' freg
  417. {
  418. outcode($1, &$2, NREG, &$4);
  419. }
  420. | LFADD freg ',' freg
  421. {
  422. outcode($1, &$2, NREG, &$4);
  423. }
  424. | LFADD freg ',' freg ',' freg
  425. {
  426. outcode($1, &$2, $4.reg, &$6);
  427. }
  428. | LFMA freg ',' freg ',' freg ',' freg
  429. {
  430. outgcode($1, &$2, $4.reg, &$6, &$8);
  431. }
  432. | LFCMP freg ',' freg
  433. {
  434. outcode($1, &$2, NREG, &$4);
  435. }
  436. | LFCMP freg ',' freg ',' creg
  437. {
  438. outcode($1, &$2, $6.reg, &$4);
  439. }
  440. /*
  441. * CMP
  442. */
  443. | LCMP rreg ',' rreg
  444. {
  445. outcode($1, &$2, NREG, &$4);
  446. }
  447. | LCMP rreg ',' imm
  448. {
  449. outcode($1, &$2, NREG, &$4);
  450. }
  451. | LCMP rreg ',' rreg ',' creg
  452. {
  453. outcode($1, &$2, $6.reg, &$4);
  454. }
  455. | LCMP rreg ',' imm ',' creg
  456. {
  457. outcode($1, &$2, $6.reg, &$4);
  458. }
  459. /*
  460. * rotate and mask
  461. */
  462. | LRLWM imm ',' rreg ',' imm ',' rreg
  463. {
  464. outgcode($1, &$2, $4.reg, &$6, &$8);
  465. }
  466. | LRLWM imm ',' rreg ',' mask ',' rreg
  467. {
  468. outgcode($1, &$2, $4.reg, &$6, &$8);
  469. }
  470. | LRLWM rreg ',' rreg ',' imm ',' rreg
  471. {
  472. outgcode($1, &$2, $4.reg, &$6, &$8);
  473. }
  474. | LRLWM rreg ',' rreg ',' mask ',' rreg
  475. {
  476. outgcode($1, &$2, $4.reg, &$6, &$8);
  477. }
  478. /*
  479. * load/store multiple
  480. */
  481. | LMOVMW addr ',' rreg
  482. {
  483. outcode($1, &$2, NREG, &$4);
  484. }
  485. | LMOVMW rreg ',' addr
  486. {
  487. outcode($1, &$2, NREG, &$4);
  488. }
  489. /*
  490. * various indexed load/store
  491. * indexed unary (eg, cache clear)
  492. */
  493. | LXLD regaddr ',' rreg
  494. {
  495. outcode($1, &$2, NREG, &$4);
  496. }
  497. | LXLD regaddr ',' imm ',' rreg
  498. {
  499. outgcode($1, &$2, NREG, &$4, &$6);
  500. }
  501. | LXST rreg ',' regaddr
  502. {
  503. outcode($1, &$2, NREG, &$4);
  504. }
  505. | LXST rreg ',' imm ',' regaddr
  506. {
  507. outgcode($1, &$2, NREG, &$4, &$6);
  508. }
  509. | LXMV regaddr ',' rreg
  510. {
  511. outcode($1, &$2, NREG, &$4);
  512. }
  513. | LXMV rreg ',' regaddr
  514. {
  515. outcode($1, &$2, NREG, &$4);
  516. }
  517. | LXOP regaddr
  518. {
  519. outcode($1, &$2, NREG, &nullgen);
  520. }
  521. /*
  522. * NOP
  523. */
  524. | LNOP comma
  525. {
  526. outcode($1, &nullgen, NREG, &nullgen);
  527. }
  528. | LNOP rreg comma
  529. {
  530. outcode($1, &$2, NREG, &nullgen);
  531. }
  532. | LNOP freg comma
  533. {
  534. outcode($1, &$2, NREG, &nullgen);
  535. }
  536. | LNOP ',' rreg
  537. {
  538. outcode($1, &nullgen, NREG, &$3);
  539. }
  540. | LNOP ',' freg
  541. {
  542. outcode($1, &nullgen, NREG, &$3);
  543. }
  544. /*
  545. * word
  546. */
  547. | LWORD imm comma
  548. {
  549. if($1 == ADWORD && $2.type == D_CONST)
  550. $2.type = D_DCONST;
  551. outcode($1, &$2, NREG, &nullgen);
  552. }
  553. | LWORD ximm comma
  554. {
  555. if($1 == ADWORD && $2.type == D_CONST)
  556. $2.type = D_DCONST;
  557. outcode($1, &$2, NREG, &nullgen);
  558. }
  559. /*
  560. * END
  561. */
  562. | LEND comma
  563. {
  564. outcode($1, &nullgen, NREG, &nullgen);
  565. }
  566. /*
  567. * TEXT/GLOBL
  568. */
  569. | LTEXT name ',' imm
  570. {
  571. outcode($1, &$2, NREG, &$4);
  572. }
  573. | LTEXT name ',' con ',' imm
  574. {
  575. outcode($1, &$2, $4, &$6);
  576. }
  577. | LTEXT name ',' imm ':' imm
  578. {
  579. outgcode($1, &$2, NREG, &$6, &$4);
  580. }
  581. | LTEXT name ',' con ',' imm ':' imm
  582. {
  583. outgcode($1, &$2, $4, &$8, &$6);
  584. }
  585. /*
  586. * DATA
  587. */
  588. | LDATA name '/' con ',' imm
  589. {
  590. outcode($1, &$2, $4, &$6);
  591. }
  592. | LDATA name '/' con ',' ximm
  593. {
  594. outcode($1, &$2, $4, &$6);
  595. }
  596. | LDATA name '/' con ',' fimm
  597. {
  598. outcode($1, &$2, $4, &$6);
  599. }
  600. /*
  601. * RETURN
  602. */
  603. | LRETRN comma
  604. {
  605. outcode($1, &nullgen, NREG, &nullgen);
  606. }
  607. rel:
  608. con '(' LPC ')'
  609. {
  610. $$ = nullgen;
  611. $$.type = D_BRANCH;
  612. $$.offset = $1 + pc;
  613. }
  614. | LNAME offset
  615. {
  616. $$ = nullgen;
  617. if(pass == 2)
  618. yyerror("undefined label: %s", $1->name);
  619. $$.type = D_BRANCH;
  620. $$.sym = $1;
  621. $$.offset = $2;
  622. }
  623. | LLAB offset
  624. {
  625. $$ = nullgen;
  626. $$.type = D_BRANCH;
  627. $$.sym = $1;
  628. $$.offset = $1->value + $2;
  629. }
  630. rreg:
  631. sreg
  632. {
  633. $$ = nullgen;
  634. $$.type = D_REG;
  635. $$.reg = $1;
  636. }
  637. xlreg:
  638. lr
  639. | ctr
  640. lr:
  641. LLR
  642. {
  643. $$ = nullgen;
  644. $$.type = D_SPR;
  645. $$.offset = $1;
  646. }
  647. lcr:
  648. LCR
  649. {
  650. $$ = nullgen;
  651. $$.type = D_CREG;
  652. $$.reg = NREG; /* whole register */
  653. }
  654. ctr:
  655. LCTR
  656. {
  657. $$ = nullgen;
  658. $$.type = D_SPR;
  659. $$.offset = $1;
  660. }
  661. msr:
  662. LMSR
  663. {
  664. $$ = nullgen;
  665. $$.type = D_MSR;
  666. }
  667. psr:
  668. LSPREG
  669. {
  670. $$ = nullgen;
  671. $$.type = D_SPR;
  672. $$.offset = $1;
  673. }
  674. | LSPR '(' con ')'
  675. {
  676. $$ = nullgen;
  677. $$.type = $1;
  678. $$.offset = $3;
  679. }
  680. | msr
  681. fpscr:
  682. LFPSCR
  683. {
  684. $$ = nullgen;
  685. $$.type = D_FPSCR;
  686. $$.reg = NREG;
  687. }
  688. fpscrf:
  689. LFPSCR '(' con ')'
  690. {
  691. $$ = nullgen;
  692. $$.type = D_FPSCR;
  693. $$.reg = $3;
  694. }
  695. freg:
  696. LFREG
  697. {
  698. $$ = nullgen;
  699. $$.type = D_FREG;
  700. $$.reg = $1;
  701. }
  702. | LF '(' con ')'
  703. {
  704. $$ = nullgen;
  705. $$.type = D_FREG;
  706. $$.reg = $3;
  707. }
  708. creg:
  709. LCREG
  710. {
  711. $$ = nullgen;
  712. $$.type = D_CREG;
  713. $$.reg = $1;
  714. }
  715. | LCR '(' con ')'
  716. {
  717. $$ = nullgen;
  718. $$.type = D_CREG;
  719. $$.reg = $3;
  720. }
  721. cbit: con
  722. {
  723. $$ = nullgen;
  724. $$.type = D_REG;
  725. $$.reg = $1;
  726. }
  727. mask:
  728. con ',' con
  729. {
  730. int mb, me;
  731. ulong v;
  732. $$ = nullgen;
  733. $$.type = D_CONST;
  734. mb = $1;
  735. me = $3;
  736. if(mb < 0 || mb > 31 || me < 0 || me > 31){
  737. yyerror("illegal mask start/end value(s)");
  738. mb = me = 0;
  739. }
  740. if(mb <= me)
  741. v = ((ulong)~0L>>mb) & (~0L<<(31-me));
  742. else
  743. v = ~(((ulong)~0L>>(me+1)) & (~0L<<(31-(mb-1))));
  744. $$.offset = v;
  745. }
  746. ximm:
  747. '$' addr
  748. {
  749. $$ = $2;
  750. $$.type = D_CONST;
  751. }
  752. | '$' LSCONST
  753. {
  754. $$ = nullgen;
  755. $$.type = D_SCONST;
  756. memcpy($$.sval, $2, sizeof($$.sval));
  757. }
  758. fimm:
  759. '$' LFCONST
  760. {
  761. $$ = nullgen;
  762. $$.type = D_FCONST;
  763. $$.dval = $2;
  764. }
  765. | '$' '-' LFCONST
  766. {
  767. $$ = nullgen;
  768. $$.type = D_FCONST;
  769. $$.dval = -$3;
  770. }
  771. imm: '$' con
  772. {
  773. $$ = nullgen;
  774. $$.type = D_CONST;
  775. $$.offset = $2;
  776. }
  777. sreg:
  778. LREG
  779. | LR '(' con ')'
  780. {
  781. if($$ < 0 || $$ >= NREG)
  782. print("register value out of range\n");
  783. $$ = $3;
  784. }
  785. regaddr:
  786. '(' sreg ')'
  787. {
  788. $$ = nullgen;
  789. $$.type = D_OREG;
  790. $$.reg = $2;
  791. $$.offset = 0;
  792. }
  793. | '(' sreg '+' sreg ')'
  794. {
  795. $$ = nullgen;
  796. $$.type = D_OREG;
  797. $$.reg = $2;
  798. $$.xreg = $4;
  799. $$.offset = 0;
  800. }
  801. addr:
  802. name
  803. | con '(' sreg ')'
  804. {
  805. $$ = nullgen;
  806. $$.type = D_OREG;
  807. $$.reg = $3;
  808. $$.offset = $1;
  809. }
  810. name:
  811. con '(' pointer ')'
  812. {
  813. $$ = nullgen;
  814. $$.type = D_OREG;
  815. $$.name = $3;
  816. $$.sym = S;
  817. $$.offset = $1;
  818. }
  819. | LNAME offset '(' pointer ')'
  820. {
  821. $$ = nullgen;
  822. $$.type = D_OREG;
  823. $$.name = $4;
  824. $$.sym = $1;
  825. $$.offset = $2;
  826. }
  827. | LNAME '<' '>' offset '(' LSB ')'
  828. {
  829. $$ = nullgen;
  830. $$.type = D_OREG;
  831. $$.name = D_STATIC;
  832. $$.sym = $1;
  833. $$.offset = $4;
  834. }
  835. comma:
  836. | ','
  837. offset:
  838. {
  839. $$ = 0;
  840. }
  841. | '+' con
  842. {
  843. $$ = $2;
  844. }
  845. | '-' con
  846. {
  847. $$ = -$2;
  848. }
  849. pointer:
  850. LSB
  851. | LSP
  852. | LFP
  853. con:
  854. LCONST
  855. | LVAR
  856. {
  857. $$ = $1->value;
  858. }
  859. | '-' con
  860. {
  861. $$ = -$2;
  862. }
  863. | '+' con
  864. {
  865. $$ = $2;
  866. }
  867. | '~' con
  868. {
  869. $$ = ~$2;
  870. }
  871. | '(' expr ')'
  872. {
  873. $$ = $2;
  874. }
  875. expr:
  876. con
  877. | expr '+' expr
  878. {
  879. $$ = $1 + $3;
  880. }
  881. | expr '-' expr
  882. {
  883. $$ = $1 - $3;
  884. }
  885. | expr '*' expr
  886. {
  887. $$ = $1 * $3;
  888. }
  889. | expr '/' expr
  890. {
  891. $$ = $1 / $3;
  892. }
  893. | expr '%' expr
  894. {
  895. $$ = $1 % $3;
  896. }
  897. | expr '<' '<' expr
  898. {
  899. $$ = $1 << $4;
  900. }
  901. | expr '>' '>' expr
  902. {
  903. $$ = $1 >> $4;
  904. }
  905. | expr '&' expr
  906. {
  907. $$ = $1 & $3;
  908. }
  909. | expr '^' expr
  910. {
  911. $$ = $1 ^ $3;
  912. }
  913. | expr '|' expr
  914. {
  915. $$ = $1 | $3;
  916. }