Compiler.c 32 KB

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  1. #include <setjmp.h>
  2. #include <stdarg.h>
  3. #include <stdio.h>
  4. #include <stdlib.h>
  5. #include <string.h>
  6. #include "Compiler.h"
  7. #include "DataType.h"
  8. #include "tokenizer/Tokenizer.h"
  9. #include "utils/Functions.h"
  10. #include "utils/Variables.h"
  11. #include "vm/Operation.h"
  12. #define ERROR_LENGTH 256
  13. #define RETURN_BUFFER 16
  14. #define BREAK_BUFFER 32
  15. static jmp_buf errorJump;
  16. static char error[ERROR_LENGTH] = {'\0'};
  17. static ByteCode* code;
  18. static int16 line = 1;
  19. static Variables vars;
  20. static Functions functions;
  21. static Functions functionQueue;
  22. static Structs structs;
  23. static int returns[RETURN_BUFFER];
  24. static int returnIndex = 0;
  25. static bool hasReturn = false;
  26. static DataType returnType;
  27. static int breaks[BREAK_BUFFER];
  28. static int breakIndex = 0;
  29. static int forWhileStack = 0;
  30. static int continueAt = 0;
  31. typedef struct {
  32. Operation intOp;
  33. Operation floatOp;
  34. Operation boolOp;
  35. const char* name;
  36. } TypedOp;
  37. static const TypedOp TYPED_MUL = {OP_MUL_INT, OP_MUL_FLOAT, OP_NOTHING, "*"};
  38. static const TypedOp TYPED_DIV = {OP_DIV_INT, OP_DIV_FLOAT, OP_NOTHING, "/"};
  39. static const TypedOp TYPED_MOD = {OP_MOD_INT, OP_NOTHING, OP_NOTHING, "%"};
  40. static const TypedOp TYPED_ADD = {OP_ADD_INT, OP_ADD_FLOAT, OP_NOTHING, "+"};
  41. static const TypedOp TYPED_SUB = {OP_SUB_INT, OP_SUB_FLOAT, OP_NOTHING, "-"};
  42. static const TypedOp TYPED_LESS = {OP_LESS_INT, OP_LESS_FLOAT, OP_NOTHING, "<"};
  43. static const TypedOp TYPED_LESS_EQUAL = {OP_GREATER_INT, OP_GREATER_FLOAT,
  44. OP_NOTHING, "<="};
  45. static const TypedOp TYPED_GREATER = {OP_GREATER_INT, OP_GREATER_FLOAT,
  46. OP_NOTHING, ">"};
  47. static const TypedOp TYPED_GREATER_EQUAL = {OP_LESS_INT, OP_LESS_FLOAT,
  48. OP_NOTHING, ">="};
  49. static const TypedOp TYPED_EQUAL = {OP_EQUAL_INT, OP_EQUAL_FLOAT, OP_EQUAL_BOOL,
  50. "=="};
  51. static const TypedOp TYPED_NOT_EQUAL = {OP_EQUAL_INT, OP_EQUAL_FLOAT,
  52. OP_EQUAL_BOOL, "!="};
  53. static const TypedOp TYPED_BIT_OR = {OP_BIT_OR, OP_NOTHING, OP_NOTHING, "|"};
  54. static const TypedOp TYPED_BIT_XOR = {OP_BIT_XOR, OP_NOTHING, OP_NOTHING, "^"};
  55. static const TypedOp TYPED_BIT_AND = {OP_BIT_AND, OP_NOTHING, OP_NOTHING, "&"};
  56. static const TypedOp TYPED_LEFT_SHIFT = {OP_LEFT_SHIFT, OP_NOTHING, OP_NOTHING,
  57. "<<"};
  58. static const TypedOp TYPED_RIGHT_SHIFT = {OP_RIGHT_SHIFT, OP_NOTHING,
  59. OP_NOTHING, ">>"};
  60. static void cError(const char* format, ...) {
  61. va_list args;
  62. va_start(args, format);
  63. vsnprintf(error, ERROR_LENGTH, format, args);
  64. va_end(args);
  65. longjmp(errorJump, 0);
  66. }
  67. static const char* cGetName(DataType dt) {
  68. return dtGetName(&structs, dt);
  69. }
  70. static void cInvalidOperation(DataType a, DataType b, const char* op) {
  71. cError("invalid operation: %s %s %s", cGetName(a), op, cGetName(b));
  72. }
  73. static void cNotDeclared(const char* name) {
  74. cError("variable %s has not been declared", name);
  75. }
  76. static void cDeclared(const char* name) {
  77. cError("%s has already been declared", name);
  78. }
  79. static void cTooMuchArguments() {
  80. cError("too much function arguments");
  81. }
  82. static void cUnexpectedToken(Token t) {
  83. cError("unexpected token on line %d: %s", line, tGetName(t));
  84. }
  85. static void cAddOperation(Operation token) {
  86. unsigned char c = token;
  87. bcAddBytes(code, &c, 1);
  88. }
  89. static int cReserveInt() {
  90. return bcReserveBytes(code, sizeof(int));
  91. }
  92. static void cSetInt(int p, int i) {
  93. bcSetBytes(code, p, &i, sizeof(int));
  94. }
  95. static void cAddInt(int i) {
  96. bcAddBytes(code, &i, sizeof(int));
  97. }
  98. static void cAddInt16(int16 i) {
  99. bcAddBytes(code, &i, sizeof(int16));
  100. }
  101. static Token cReadTokenAndLine() {
  102. Token t = tReadToken();
  103. if(tReadInt16(&line)) {
  104. return t;
  105. }
  106. return T_END;
  107. }
  108. static void cConsumeToken(Token wanted) {
  109. Token t = cReadTokenAndLine();
  110. if(wanted != t) {
  111. cError("unexpected token on line %d: expected '%s' got '%s'", line,
  112. tGetName(wanted), tGetName(t));
  113. }
  114. }
  115. static bool cConsumeTokenIf(Token t) {
  116. if(tPeekToken() == t) {
  117. cReadTokenAndLine();
  118. return true;
  119. }
  120. return false;
  121. }
  122. static void cConstantInt() {
  123. int value;
  124. if(!tReadInt(&value)) {
  125. cError("int token without an int on line %d", line);
  126. }
  127. cAddOperation(OP_PUSH_INT);
  128. cAddInt(value);
  129. }
  130. static void cConstantFloat() {
  131. float value;
  132. if(!tReadFloat(&value)) {
  133. cError("float token without a float on line %d", line);
  134. }
  135. cAddOperation(OP_PUSH_FLOAT);
  136. bcAddBytes(code, &value, sizeof(float));
  137. }
  138. static const char* cReadString() {
  139. int length;
  140. const char* literal = tReadString(&length);
  141. if(literal == NULL) {
  142. cError("literal without string on line %d", line);
  143. }
  144. return literal;
  145. }
  146. static DataType cExpression();
  147. static void cCallFunctionArguments(Function* f) {
  148. while(!cConsumeTokenIf(T_CLOSE_BRACKET)) {
  149. DataType dt = cExpression();
  150. if(fAddArgument(f, dt, &structs)) {
  151. cTooMuchArguments();
  152. }
  153. if(cConsumeTokenIf(T_COMMA) && tPeekToken() == T_CLOSE_BRACKET) {
  154. cUnexpectedToken(tPeekToken());
  155. }
  156. }
  157. }
  158. static DataType cCallFunction(const char* name) {
  159. cAddOperation(OP_PUSH_INT);
  160. cAddInt(0);
  161. Function f;
  162. fInit(&f, name, line);
  163. cCallFunctionArguments(&f);
  164. cAddOperation(OP_GOSUB);
  165. Function* found = fsSearch(&functions, &f);
  166. if(found == NULL) {
  167. cError("unknown function");
  168. }
  169. if(found->address == -1) {
  170. f.returnType = found->returnType;
  171. f.address = cReserveInt();
  172. fsAdd(&functionQueue, &f);
  173. } else {
  174. cAddInt(found->address);
  175. }
  176. cAddInt(found->size);
  177. return found->returnType;
  178. }
  179. static void cWalkStruct(Variable* v) {
  180. int pointers;
  181. if(cConsumeTokenIf(T_ARROW)) {
  182. pointers = 1;
  183. cAddOperation(OP_REFERENCE);
  184. } else if(cConsumeTokenIf(T_POINT)) {
  185. pointers = 0;
  186. } else {
  187. return;
  188. }
  189. Struct* st = dtGetStruct(&structs, v->type);
  190. if(st == NULL || v->type.pointers != pointers) {
  191. DataType w = v->type;
  192. w.pointers = pointers;
  193. cError("%s is not %s but %s", v->name, cGetName(w), cGetName(v->type));
  194. }
  195. cConsumeToken(T_LITERAL);
  196. const char* name = cReadString();
  197. Variable inner;
  198. if(vSearchStruct(&inner, &structs, st, name)) {
  199. cError("%s has no member %s", v->name, name);
  200. }
  201. v->type = inner.type;
  202. cAddOperation(OP_PUSH_INT);
  203. cAddInt(inner.address);
  204. cAddOperation(OP_ADD_INT);
  205. }
  206. static void cReference(Variable* v, int dimension) {
  207. cAddOperation(OP_DEREFERENCE_VAR);
  208. cAddInt(v->address);
  209. while(dimension > 0) {
  210. if(!dtIsPointer(v->type)) {
  211. cError("too many *");
  212. }
  213. v->type = dtReference(v->type);
  214. dimension--;
  215. cAddOperation(OP_REFERENCE);
  216. }
  217. cWalkStruct(v);
  218. }
  219. static void cLoadRef(Variable* v) {
  220. switch(dtAsInt(v->type)) {
  221. case DT_INT: cAddOperation(OP_REF_LOAD_INT); break;
  222. case DT_BOOL: cAddOperation(OP_REF_LOAD_BOOL); break;
  223. case DT_FLOAT: cAddOperation(OP_REF_LOAD_FLOAT); break;
  224. case DT_STRUCT:
  225. {
  226. Struct* st = dtGetStruct(&structs, v->type);
  227. if(st == NULL) {
  228. cError("compiler struct error");
  229. }
  230. cAddOperation(OP_REF_LOAD);
  231. cAddInt(dtGetSize(v->type, &structs));
  232. break;
  233. }
  234. default:
  235. if(dtIsPointer(v->type)) {
  236. cAddOperation(OP_REF_LOAD_INT);
  237. } else {
  238. cError("cannot load type %s", cGetName(v->type));
  239. }
  240. }
  241. }
  242. static void cStore(Variable* v, DataType dt, const char* name) {
  243. if(!dtCompare(v->type, dt)) {
  244. cInvalidOperation(v->type, dt, name);
  245. }
  246. switch(dtAsInt(v->type)) {
  247. case DT_INT: cAddOperation(OP_STORE_INT); break;
  248. case DT_BOOL: cAddOperation(OP_STORE_BOOL); break;
  249. case DT_FLOAT: cAddOperation(OP_STORE_FLOAT); break;
  250. default:
  251. if(dtIsPointer(v->type)) {
  252. cAddOperation(OP_STORE_ARRAY);
  253. } else {
  254. cError("cannot store type %s", cGetName(v->type));
  255. }
  256. }
  257. }
  258. static DataType cPostChange(Variable* v, int change, const char* name) {
  259. if(!dtCompare(v->type, dtInt())) {
  260. cError("%s needs an int", name);
  261. }
  262. cAddOperation(OP_REF_LOAD_INT);
  263. cReference(v, 0);
  264. cAddOperation(OP_DUPLICATE_REFERENCE);
  265. cAddOperation(OP_REF_LOAD_INT);
  266. cAddOperation(OP_PUSH_INT);
  267. cAddInt(change);
  268. cAddOperation(OP_ADD_INT);
  269. cAddOperation(OP_STORE_INT);
  270. return dtInt();
  271. }
  272. static DataType cLiteral() {
  273. const char* literal = cReadString();
  274. if(cConsumeTokenIf(T_OPEN_BRACKET)) {
  275. DataType dt = cCallFunction(literal);
  276. if(dtCompare(dt, dtVoid())) {
  277. cError("function returns void");
  278. }
  279. return dt;
  280. }
  281. Variable v;
  282. if(vsSearch(&vars, &v, literal)) {
  283. cNotDeclared(literal);
  284. }
  285. cReference(&v, 0);
  286. if(cConsumeTokenIf(T_INCREMENT)) {
  287. return cPostChange(&v, 1, "++");
  288. } else if(cConsumeTokenIf(T_DECREMENT)) {
  289. return cPostChange(&v, -1, "--");
  290. }
  291. cLoadRef(&v);
  292. return v.type;
  293. }
  294. static DataType cBracketPrimary() {
  295. DataType result = cExpression();
  296. cConsumeToken(T_CLOSE_BRACKET);
  297. return result;
  298. }
  299. static DataType cAllocArray(DataType dt, Operation op) {
  300. cConsumeToken(T_OPEN_SQUARE_BRACKET);
  301. DataType index = cExpression();
  302. if(!dtCompare(index, dtInt())) {
  303. cError("array size must be an int");
  304. }
  305. cConsumeToken(T_CLOSE_SQUARE_BRACKET);
  306. cAddOperation(op);
  307. return dtToArray(dt, 1);
  308. }
  309. static DataType cPrimary() {
  310. Token t = cReadTokenAndLine();
  311. switch(t) {
  312. case T_CONST_INT: cConstantInt(); return dtInt();
  313. case T_CONST_FLOAT: cConstantFloat(); return dtFloat();
  314. case T_TRUE: cAddOperation(OP_PUSH_TRUE); return dtBool();
  315. case T_FALSE: cAddOperation(OP_PUSH_FALSE); return dtBool();
  316. case T_OPEN_BRACKET: return cBracketPrimary();
  317. case T_LITERAL: return cLiteral();
  318. case T_INT: return cAllocArray(dtInt(), OP_INT_ARRAY);
  319. default: cUnexpectedToken(t); return dtVoid();
  320. }
  321. }
  322. static DataType cPreChange(int change, const char* name) {
  323. cConsumeToken(T_LITERAL);
  324. const char* literal = cReadString();
  325. Variable v;
  326. if(vsSearch(&vars, &v, literal)) {
  327. cNotDeclared(literal);
  328. }
  329. cReference(&v, 0);
  330. if(!dtCompare(v.type, dtInt())) {
  331. cError("%s needs an int", name);
  332. }
  333. cAddOperation(OP_DUPLICATE_REFERENCE);
  334. cAddOperation(OP_DUPLICATE_REFERENCE);
  335. cAddOperation(OP_REF_LOAD_INT);
  336. cAddOperation(OP_PUSH_INT);
  337. cAddInt(change);
  338. cAddOperation(OP_ADD_INT);
  339. cAddOperation(OP_STORE_INT);
  340. cAddOperation(OP_REF_LOAD_INT);
  341. return dtInt();
  342. }
  343. static DataType cPreUnary() {
  344. if(cConsumeTokenIf(T_SUB)) {
  345. DataType result = cPrimary();
  346. switch(dtAsInt(result)) {
  347. case DT_INT: cAddOperation(OP_INVERT_SIGN_INT); break;
  348. case DT_FLOAT: cAddOperation(OP_INVERT_SIGN_FLOAT); break;
  349. default: cError("cannot invert sign of %s", cGetName(result));
  350. }
  351. return result;
  352. } else if(cConsumeTokenIf(T_INCREMENT)) {
  353. return cPreChange(1, "++");
  354. } else if(cConsumeTokenIf(T_DECREMENT)) {
  355. return cPreChange(-1, "--");
  356. } else if(cConsumeTokenIf(T_NOT)) {
  357. int counter = 1;
  358. while(cConsumeTokenIf(T_NOT)) {
  359. counter++;
  360. }
  361. DataType result = cPrimary();
  362. if(!dtCompare(result, dtBool())) {
  363. cError("! needs a bool not %s", cGetName(result));
  364. }
  365. cAddOperation(OP_NOT);
  366. if((counter & 1) == 0) {
  367. cAddOperation(OP_NOT);
  368. }
  369. return dtBool();
  370. } else if(cConsumeTokenIf(T_BIT_NOT)) {
  371. DataType result = cPrimary();
  372. if(dtCompare(result, dtInt())) {
  373. cAddOperation(OP_BIT_NOT);
  374. } else {
  375. cError("~ needs an int not %s", cGetName(result));
  376. }
  377. return result;
  378. } else if(cConsumeTokenIf(T_BIT_AND)) {
  379. cConsumeToken(T_LITERAL);
  380. const char* literal = cReadString();
  381. Variable v;
  382. if(vsSearch(&vars, &v, literal)) {
  383. cNotDeclared(literal);
  384. }
  385. cReference(&v, 0);
  386. return dtDereference(v.type);
  387. } else if(cConsumeTokenIf(T_MUL)) {
  388. int c = 1;
  389. while(cConsumeTokenIf(T_MUL)) {
  390. c++;
  391. }
  392. cConsumeToken(T_LITERAL);
  393. const char* literal = cReadString();
  394. Variable v;
  395. if(vsSearch(&vars, &v, literal)) {
  396. cNotDeclared(literal);
  397. }
  398. cReference(&v, c);
  399. cLoadRef(&v);
  400. return v.type;
  401. }
  402. return cPrimary();
  403. }
  404. static void cAddTypeOperation(DataType a, DataType b, const TypedOp* op) {
  405. if(dtCompare(a, dtInt()) && dtCompare(b, dtInt()) &&
  406. op->intOp != OP_NOTHING) {
  407. cAddOperation(op->intOp);
  408. } else if(dtCompare(a, dtFloat()) && dtCompare(b, dtFloat()) &&
  409. op->floatOp != OP_NOTHING) {
  410. cAddOperation(op->floatOp);
  411. } else if(dtCompare(a, dtBool()) && dtCompare(b, dtBool()) &&
  412. op->boolOp != OP_NOTHING) {
  413. cAddOperation(op->boolOp);
  414. } else {
  415. cInvalidOperation(a, b, op->name);
  416. }
  417. }
  418. static DataType cMul() {
  419. DataType a = cPreUnary();
  420. while(true) {
  421. if(cConsumeTokenIf(T_MUL)) {
  422. cAddTypeOperation(a, cPreUnary(), &TYPED_MUL);
  423. } else if(cConsumeTokenIf(T_DIV)) {
  424. cAddTypeOperation(a, cPreUnary(), &TYPED_DIV);
  425. } else if(cConsumeTokenIf(T_MOD)) {
  426. cAddTypeOperation(a, cPreUnary(), &TYPED_MOD);
  427. } else {
  428. break;
  429. }
  430. }
  431. return a;
  432. }
  433. static DataType cAdd() {
  434. DataType a = cMul();
  435. while(true) {
  436. if(cConsumeTokenIf(T_ADD)) {
  437. cAddTypeOperation(a, cMul(), &TYPED_ADD);
  438. } else if(cConsumeTokenIf(T_SUB)) {
  439. cAddTypeOperation(a, cMul(), &TYPED_SUB);
  440. } else {
  441. break;
  442. }
  443. }
  444. return a;
  445. }
  446. static DataType cShift() {
  447. DataType a = cAdd();
  448. while(true) {
  449. if(cConsumeTokenIf(T_LEFT_SHIFT)) {
  450. cAddTypeOperation(a, cAdd(), &TYPED_LEFT_SHIFT);
  451. } else if(cConsumeTokenIf(T_RIGHT_SHIFT)) {
  452. cAddTypeOperation(a, cAdd(), &TYPED_RIGHT_SHIFT);
  453. } else {
  454. break;
  455. }
  456. }
  457. return a;
  458. }
  459. static DataType cComparison() {
  460. DataType a = cShift();
  461. while(true) {
  462. if(cConsumeTokenIf(T_LESS)) {
  463. cAddTypeOperation(a, cShift(), &TYPED_LESS);
  464. a = dtBool();
  465. } else if(cConsumeTokenIf(T_LESS_EQUAL)) {
  466. cAddTypeOperation(a, cShift(), &TYPED_LESS_EQUAL);
  467. cAddOperation(OP_NOT);
  468. a = dtBool();
  469. } else if(cConsumeTokenIf(T_GREATER)) {
  470. cAddTypeOperation(a, cShift(), &TYPED_GREATER);
  471. a = dtBool();
  472. } else if(cConsumeTokenIf(T_GREATER_EQUAL)) {
  473. cAddTypeOperation(a, cShift(), &TYPED_GREATER_EQUAL);
  474. cAddOperation(OP_NOT);
  475. a = dtBool();
  476. } else {
  477. break;
  478. }
  479. }
  480. return a;
  481. }
  482. static DataType cEqual() {
  483. DataType a = cComparison();
  484. while(true) {
  485. if(cConsumeTokenIf(T_EQUAL)) {
  486. cAddTypeOperation(a, cComparison(), &TYPED_EQUAL);
  487. a = dtBool();
  488. } else if(cConsumeTokenIf(T_NOT_EQUAL)) {
  489. cAddTypeOperation(a, cComparison(), &TYPED_NOT_EQUAL);
  490. cAddOperation(OP_NOT);
  491. a = dtBool();
  492. } else {
  493. break;
  494. }
  495. }
  496. return a;
  497. }
  498. static DataType cBitAnd() {
  499. DataType a = cEqual();
  500. while(cConsumeTokenIf(T_BIT_AND)) {
  501. DataType b = cEqual();
  502. cAddTypeOperation(a, b, &TYPED_BIT_AND);
  503. }
  504. return a;
  505. }
  506. static DataType cBitXor() {
  507. DataType a = cBitAnd();
  508. while(cConsumeTokenIf(T_BIT_XOR)) {
  509. DataType b = cBitAnd();
  510. cAddTypeOperation(a, b, &TYPED_BIT_XOR);
  511. }
  512. return a;
  513. }
  514. static DataType cBitOr() {
  515. DataType a = cBitXor();
  516. while(cConsumeTokenIf(T_BIT_OR)) {
  517. DataType b = cBitXor();
  518. cAddTypeOperation(a, b, &TYPED_BIT_OR);
  519. }
  520. return a;
  521. }
  522. static DataType cAnd() {
  523. DataType a = cBitOr();
  524. while(cConsumeTokenIf(T_AND)) {
  525. cAddOperation(OP_PEEK_FALSE_GOTO);
  526. int p = cReserveInt();
  527. DataType b = cBitOr();
  528. if(!dtCompare(a, dtBool()) || !dtCompare(b, dtBool())) {
  529. cInvalidOperation(a, b, "&&");
  530. }
  531. cAddOperation(OP_AND);
  532. cSetInt(p, code->length);
  533. }
  534. return a;
  535. }
  536. static DataType cOr() {
  537. DataType a = cAnd();
  538. while(cConsumeTokenIf(T_OR)) {
  539. cAddOperation(OP_PEEK_TRUE_GOTO);
  540. int p = cReserveInt();
  541. DataType b = cAnd();
  542. if(!dtCompare(a, dtBool()) || !dtCompare(b, dtBool())) {
  543. cInvalidOperation(a, b, "||");
  544. }
  545. cAddOperation(OP_OR);
  546. cSetInt(p, code->length);
  547. }
  548. return a;
  549. }
  550. static DataType cExpression() {
  551. return cOr();
  552. }
  553. static void cOperationSet(Variable* v, const TypedOp* op) {
  554. cAddOperation(OP_DUPLICATE_REFERENCE);
  555. cLoadRef(v);
  556. DataType dt = cExpression();
  557. cAddTypeOperation(v->type, dt, op);
  558. cStore(v, dt, "=");
  559. }
  560. static void cAddPostLineChange(Variable* v, int change, const char* name) {
  561. if(!dtCompare(v->type, dtInt())) {
  562. cError("%s needs an int", name);
  563. }
  564. cAddOperation(OP_DUPLICATE_REFERENCE);
  565. cAddOperation(OP_REF_LOAD_INT);
  566. cAddOperation(OP_PUSH_INT);
  567. cAddInt(change);
  568. cAddOperation(OP_ADD_INT);
  569. cAddOperation(OP_STORE_INT);
  570. }
  571. static DataType cExtendType(DataType dt) {
  572. while(cConsumeTokenIf(T_MUL)) {
  573. dt = dtDereference(dt);
  574. }
  575. return dt;
  576. }
  577. static void cDeclareStruct(Struct* st) {
  578. DataType dt = cExtendType(dtStruct(st));
  579. cConsumeToken(T_LITERAL);
  580. const char* var = cReadString();
  581. if(vsInScope(&vars, var)) {
  582. cDeclared(var);
  583. }
  584. Variable* vp = vsAdd(&vars, var, dt, &structs);
  585. if(dtIsPointer(dt)) {
  586. cConsumeToken(T_SET);
  587. cReference(vp, 0);
  588. cStore(vp, cExpression(), "=");
  589. }
  590. }
  591. static void cLineVariable(const char* name, int dimension) {
  592. Variable v;
  593. if(vsSearch(&vars, &v, name)) {
  594. cNotDeclared(name);
  595. }
  596. cReference(&v, dimension);
  597. Token t = cReadTokenAndLine();
  598. switch(t) {
  599. case T_SET: cStore(&v, cExpression(), "="); break;
  600. case T_ADD_SET: cOperationSet(&v, &TYPED_ADD); break;
  601. case T_SUB_SET: cOperationSet(&v, &TYPED_SUB); break;
  602. case T_MUL_SET: cOperationSet(&v, &TYPED_MUL); break;
  603. case T_DIV_SET: cOperationSet(&v, &TYPED_DIV); break;
  604. case T_MOD_SET: cOperationSet(&v, &TYPED_MOD); break;
  605. case T_BIT_AND_SET: cOperationSet(&v, &TYPED_BIT_AND); break;
  606. case T_BIT_OR_SET: cOperationSet(&v, &TYPED_BIT_OR); break;
  607. case T_BIT_XOR_SET: cOperationSet(&v, &TYPED_BIT_XOR); break;
  608. case T_LEFT_SHIFT_SET: cOperationSet(&v, &TYPED_LEFT_SHIFT); break;
  609. case T_RIGHT_SHIFT_SET: cOperationSet(&v, &TYPED_RIGHT_SHIFT); break;
  610. case T_INCREMENT: cAddPostLineChange(&v, 1, "++"); break;
  611. case T_DECREMENT: cAddPostLineChange(&v, -1, "--"); break;
  612. default: cUnexpectedToken(t);
  613. }
  614. }
  615. static void cLineLiteral() {
  616. const char* literal = cReadString();
  617. if(cConsumeTokenIf(T_OPEN_BRACKET)) {
  618. DataType dt = cCallFunction(literal);
  619. if(!dtCompare(dt, dtVoid())) {
  620. cError("function returns %s not void", cGetName(dt));
  621. }
  622. return;
  623. }
  624. Struct* st = stsSearch(&structs, literal);
  625. if(st != NULL) {
  626. cDeclareStruct(st);
  627. return;
  628. }
  629. cLineVariable(literal, 0);
  630. }
  631. static void cLine(Token t);
  632. static void cConsumeBody() {
  633. int oldLine = line;
  634. while(!cConsumeTokenIf(T_CLOSE_CURVED_BRACKET)) {
  635. Token t = cReadTokenAndLine();
  636. if(t == T_END) {
  637. line = oldLine;
  638. cError("unexpected end of file: non closed curved bracket");
  639. }
  640. cLine(t);
  641. }
  642. }
  643. static void cConsumeScope() {
  644. Scope scope;
  645. vsEnterScope(&vars, &scope);
  646. cConsumeBody();
  647. vsLeaveScope(&vars, &scope);
  648. }
  649. static void cAddReturn(Operation op) {
  650. cAddOperation(op);
  651. returns[returnIndex++] = cReserveInt();
  652. }
  653. static void cReturn() {
  654. if(returnIndex >= RETURN_BUFFER) {
  655. cError("too much returns in function");
  656. }
  657. hasReturn = true;
  658. if(dtCompare(returnType, dtVoid())) {
  659. cConsumeToken(T_SEMICOLON);
  660. cAddReturn(OP_RETURN);
  661. return;
  662. }
  663. DataType dt = cExpression();
  664. if(!dtCompare(dt, returnType)) {
  665. cError("wrong return type, should be %s", cGetName(returnType));
  666. }
  667. switch(dtAsInt(dt)) {
  668. case DT_INT: cAddReturn(OP_RETURN_INT); break;
  669. case DT_BOOL: cAddReturn(OP_RETURN_BOOL); break;
  670. case DT_FLOAT: cAddReturn(OP_RETURN_FLOAT); break;
  671. default: cError("cannot return %s", cGetName(dt));
  672. }
  673. cConsumeToken(T_SEMICOLON);
  674. }
  675. static void cPrint() {
  676. DataType dt = cExpression();
  677. switch(dtAsInt(dt)) {
  678. case DT_INT: cAddOperation(OP_PRINT_INT); break;
  679. case DT_FLOAT: cAddOperation(OP_PRINT_FLOAT); break;
  680. case DT_BOOL: cAddOperation(OP_PRINT_BOOL); break;
  681. default: cError("cannot print type %s", cGetName(dt));
  682. }
  683. cConsumeToken(T_SEMICOLON);
  684. }
  685. static void cIf() {
  686. cConsumeToken(T_OPEN_BRACKET);
  687. DataType dt = cExpression();
  688. if(!dtCompare(dt, dtBool())) {
  689. cError("if expects a bool not %s", cGetName(dt));
  690. }
  691. cConsumeToken(T_CLOSE_BRACKET);
  692. cAddOperation(OP_IF_GOTO);
  693. int ifP = cReserveInt();
  694. cConsumeToken(T_OPEN_CURVED_BRACKET);
  695. cConsumeScope();
  696. cSetInt(ifP, code->length);
  697. if(cConsumeTokenIf(T_ELSE)) {
  698. cAddOperation(OP_GOTO);
  699. int elseP = cReserveInt();
  700. cSetInt(ifP, code->length);
  701. if(cConsumeTokenIf(T_IF)) {
  702. cIf();
  703. } else {
  704. cConsumeToken(T_OPEN_CURVED_BRACKET);
  705. cConsumeScope();
  706. }
  707. cSetInt(elseP, code->length);
  708. }
  709. }
  710. static void cConsumeBreaks(int start, int address) {
  711. for(int i = start; i < breakIndex; i++) {
  712. cSetInt(breaks[i], address);
  713. }
  714. breakIndex = start;
  715. }
  716. static void cWhile() {
  717. int start = code->length;
  718. cConsumeToken(T_OPEN_BRACKET);
  719. DataType dt = cExpression();
  720. if(!dtCompare(dt, dtBool())) {
  721. cError("while expects a bool not %s", cGetName(dt));
  722. }
  723. cConsumeToken(T_CLOSE_BRACKET);
  724. cAddOperation(OP_IF_GOTO);
  725. int ifP = cReserveInt();
  726. int breakStart = breakIndex;
  727. forWhileStack++;
  728. int oldContinue = continueAt;
  729. continueAt = start;
  730. cConsumeToken(T_OPEN_CURVED_BRACKET);
  731. cConsumeScope();
  732. continueAt = oldContinue;
  733. forWhileStack--;
  734. cAddOperation(OP_GOTO);
  735. cAddInt(start);
  736. cSetInt(ifP, code->length);
  737. cConsumeBreaks(breakStart, code->length);
  738. }
  739. static void cDeclare(DataType dt) {
  740. dt = cExtendType(dt);
  741. cConsumeToken(T_LITERAL);
  742. const char* var = cReadString();
  743. if(vsInScope(&vars, var)) {
  744. cDeclared(var);
  745. }
  746. Variable* vp = vsAdd(&vars, var, dt, &structs);
  747. cConsumeToken(T_SET);
  748. cReference(vp, 0);
  749. cStore(vp, cExpression(), "=");
  750. }
  751. static void cAddPreLineChange(int change, const char* name) {
  752. cConsumeToken(T_LITERAL);
  753. const char* literal = cReadString();
  754. Variable v;
  755. if(vsSearch(&vars, &v, literal)) {
  756. cNotDeclared(literal);
  757. }
  758. cReference(&v, 0);
  759. cAddPostLineChange(&v, change, name);
  760. }
  761. static void cLineExpression(Token t) {
  762. switch(t) {
  763. case T_LITERAL: cLineLiteral(); break;
  764. case T_INT: cDeclare(dtInt()); break;
  765. case T_BOOL: cDeclare(dtBool()); break;
  766. case T_FLOAT: cDeclare(dtFloat()); break;
  767. case T_INCREMENT: cAddPreLineChange(1, "++"); break;
  768. case T_DECREMENT: cAddPreLineChange(-1, "--"); break;
  769. case T_MUL:
  770. {
  771. int c = 1;
  772. while(cConsumeTokenIf(T_MUL)) {
  773. c++;
  774. }
  775. cConsumeToken(T_LITERAL);
  776. cLineVariable(cReadString(), c);
  777. break;
  778. }
  779. default: cUnexpectedToken(t);
  780. }
  781. }
  782. static void cFor() {
  783. Scope scope;
  784. vsEnterScope(&vars, &scope);
  785. cConsumeToken(T_OPEN_BRACKET);
  786. cLineExpression(cReadTokenAndLine());
  787. cConsumeToken(T_SEMICOLON);
  788. int startCheck = code->length;
  789. DataType dt = cExpression();
  790. if(!dtCompare(dt, dtBool())) {
  791. cError("for expects a bool not %s", cGetName(dt));
  792. }
  793. cConsumeToken(T_SEMICOLON);
  794. cAddOperation(OP_IF_GOTO);
  795. int end = cReserveInt();
  796. cAddOperation(OP_GOTO);
  797. int beginBody = cReserveInt();
  798. int startPerLoop = code->length;
  799. cLineExpression(cReadTokenAndLine());
  800. cAddOperation(OP_GOTO);
  801. cAddInt(startCheck);
  802. cConsumeToken(T_CLOSE_BRACKET);
  803. cSetInt(beginBody, code->length);
  804. int breakStart = breakIndex;
  805. forWhileStack++;
  806. int oldContinue = continueAt;
  807. continueAt = startPerLoop;
  808. cConsumeToken(T_OPEN_CURVED_BRACKET);
  809. cConsumeBody();
  810. continueAt = oldContinue;
  811. forWhileStack--;
  812. cAddOperation(OP_GOTO);
  813. cAddInt(startPerLoop);
  814. cSetInt(end, code->length);
  815. cConsumeBreaks(breakStart, code->length);
  816. vsLeaveScope(&vars, &scope);
  817. }
  818. static void cBreak() {
  819. if(forWhileStack == 0) {
  820. cError("break without for or while on line %d", line);
  821. } else if(breakIndex >= BREAK_BUFFER) {
  822. cError("too much breaks around line %d", line);
  823. }
  824. cAddOperation(OP_GOTO);
  825. breaks[breakIndex++] = cReserveInt();
  826. cConsumeToken(T_SEMICOLON);
  827. }
  828. static void cContinue() {
  829. if(forWhileStack == 0) {
  830. cError("continue without for or while on line %d", line);
  831. }
  832. cAddOperation(OP_GOTO);
  833. cAddInt(continueAt);
  834. cConsumeToken(T_SEMICOLON);
  835. }
  836. static void cLine(Token t) {
  837. hasReturn = false;
  838. cAddOperation(OP_LINE);
  839. cAddInt16(line);
  840. switch(t) {
  841. case T_OPEN_CURVED_BRACKET: cConsumeScope(); break;
  842. case T_PRINT: cPrint(); break;
  843. case T_RETURN: cReturn(); break;
  844. case T_IF: cIf(); break;
  845. case T_WHILE: cWhile(); break;
  846. case T_FOR: cFor(); break;
  847. case T_BREAK: cBreak(); break;
  848. case T_CONTINUE: cContinue(); break;
  849. default: cLineExpression(t); cConsumeToken(T_SEMICOLON);
  850. }
  851. }
  852. static void cFunctionArgument(Function* f);
  853. static void cFunctionCommaOrEnd(Function* f) {
  854. if(cConsumeTokenIf(T_CLOSE_BRACKET)) {
  855. return;
  856. }
  857. cConsumeToken(T_COMMA);
  858. cFunctionArgument(f);
  859. }
  860. static void cFunctionAddArgument(Function* f, DataType dt) {
  861. dt = cExtendType(dt);
  862. cConsumeToken(T_LITERAL);
  863. const char* name = cReadString();
  864. if(vsInScope(&vars, name)) {
  865. cDeclared(name);
  866. }
  867. vsAdd(&vars, name, dt, &structs);
  868. if(fAddArgument(f, dt, &structs)) {
  869. cTooMuchArguments();
  870. }
  871. cFunctionCommaOrEnd(f);
  872. }
  873. static void cFunctionArgument(Function* f) {
  874. Token t = cReadTokenAndLine();
  875. switch(t) {
  876. case T_INT: cFunctionAddArgument(f, dtInt()); break;
  877. case T_FLOAT: cFunctionAddArgument(f, dtFloat()); break;
  878. case T_BOOL: cFunctionAddArgument(f, dtBool()); break;
  879. case T_LITERAL:
  880. {
  881. const char* structName = cReadString();
  882. Struct* st = stsSearch(&structs, structName);
  883. if(st == NULL) {
  884. cError("struct %s does not exist");
  885. }
  886. cFunctionAddArgument(f, dtStruct(st));
  887. break;
  888. }
  889. default: cUnexpectedToken(t);
  890. }
  891. }
  892. static void cFunctionArguments(Function* f) {
  893. cConsumeToken(T_OPEN_BRACKET);
  894. if(!cConsumeTokenIf(T_CLOSE_BRACKET)) {
  895. cFunctionArgument(f);
  896. }
  897. }
  898. static int cReserve(int offset) {
  899. cAddOperation(OP_RESERVE);
  900. int p = cReserveInt();
  901. cAddInt(offset);
  902. return p;
  903. }
  904. static void cFree(int p, int bytes) {
  905. cAddOperation(OP_RETURN);
  906. cAddInt(bytes);
  907. cSetInt(p, bytes);
  908. }
  909. static void cLinkReturns(int bytes) {
  910. for(int i = 0; i < returnIndex; i++) {
  911. cSetInt(returns[i], bytes);
  912. }
  913. returnIndex = 0;
  914. }
  915. static void cInnerFunction(Function* f) {
  916. cConsumeToken(T_OPEN_CURVED_BRACKET);
  917. int p = cReserve(f->size);
  918. returnIndex = 0;
  919. hasReturn = false;
  920. cConsumeScope();
  921. if(!dtCompare(returnType, dtVoid()) && !hasReturn) {
  922. cError("missing return");
  923. }
  924. cFree(p, vars.maxAddress);
  925. cLinkReturns(vars.maxAddress);
  926. }
  927. static bool cForwardFunction(Function* found, Function* f) {
  928. if(!cConsumeTokenIf(T_SEMICOLON)) {
  929. return false;
  930. } else if(found != NULL) {
  931. cError("function registered twice");
  932. }
  933. f->address = -1;
  934. fsAdd(&functions, f);
  935. return true;
  936. }
  937. static void cBuildFunction(Function* f, DataType rType) {
  938. cConsumeToken(T_LITERAL);
  939. fInit(f, cReadString(), line);
  940. f->returnType = rType;
  941. vsReset(&vars);
  942. cFunctionArguments(f);
  943. }
  944. static void cFunction(DataType rType) {
  945. Function f;
  946. cBuildFunction(&f, rType);
  947. Function* found = fsSearch(&functions, &f);
  948. if(cForwardFunction(found, &f)) {
  949. return;
  950. }
  951. cAddOperation(OP_LINE);
  952. cAddInt16(line);
  953. cAddOperation(OP_GOTO);
  954. int end = cReserveInt();
  955. f.address = code->length;
  956. if(found != NULL) {
  957. if(found->address == -1) {
  958. found->address = f.address;
  959. } else {
  960. cError("function registered twice");
  961. }
  962. } else {
  963. fsAdd(&functions, &f);
  964. }
  965. returnType = rType;
  966. cInnerFunction(&f);
  967. cSetInt(end, code->length);
  968. }
  969. static void cStruct() {
  970. cConsumeToken(T_LITERAL);
  971. const char* name = cReadString();
  972. if(stsSearch(&structs, name) != NULL) {
  973. cError("struct registered twice");
  974. }
  975. Struct* st = stsAdd(&structs, name);
  976. cConsumeToken(T_OPEN_CURVED_BRACKET);
  977. while(!cConsumeTokenIf(T_CLOSE_CURVED_BRACKET)) {
  978. Token t = cReadTokenAndLine();
  979. DataType dt = dtVoid();
  980. switch(t) {
  981. case T_INT: dt = dtInt(); break;
  982. case T_BOOL: dt = dtBool(); break;
  983. case T_FLOAT: dt = dtFloat(); break;
  984. default: cUnexpectedToken(t);
  985. }
  986. dt = cExtendType(dt);
  987. cConsumeToken(T_LITERAL);
  988. const char* name = cReadString();
  989. stAddVariable(st, name, dt);
  990. cConsumeToken(T_SEMICOLON);
  991. }
  992. cConsumeToken(T_SEMICOLON);
  993. }
  994. static void cGlobalScope(Token t) {
  995. switch(t) {
  996. case T_VOID: cFunction(dtVoid()); break;
  997. case T_INT: cFunction(dtInt()); break;
  998. case T_BOOL: cFunction(dtBool()); break;
  999. case T_FLOAT: cFunction(dtFloat()); break;
  1000. case T_STRUCT: cStruct(); break;
  1001. default: cUnexpectedToken(t);
  1002. }
  1003. }
  1004. static void cCallMain() {
  1005. Function f;
  1006. fInit(&f, "main", line);
  1007. Function* found = fsSearch(&functions, &f);
  1008. if(found != NULL && dtCompare(found->returnType, dtVoid())) {
  1009. cAddOperation(OP_PUSH_INT);
  1010. cAddInt(0);
  1011. cAddOperation(OP_GOSUB);
  1012. cAddInt(found->address);
  1013. cAddInt(found->size);
  1014. }
  1015. }
  1016. static void cForEachLine() {
  1017. Token t = cReadTokenAndLine();
  1018. while(t != T_END) {
  1019. cGlobalScope(t);
  1020. t = cReadTokenAndLine();
  1021. }
  1022. cCallMain();
  1023. }
  1024. static void cLinkQueuedFunctions() {
  1025. for(int i = 0; i < functionQueue.entries; i++) {
  1026. Function* f = functionQueue.data + i;
  1027. Function* found = fsSearch(&functions, f);
  1028. if(found == NULL) {
  1029. line = f->line;
  1030. cError("unknown function");
  1031. } else if(!dtCompare(f->returnType, found->returnType)) {
  1032. line = f->line;
  1033. cError("function return type is not %s", cGetName(f->returnType));
  1034. }
  1035. cSetInt(f->address, found->address);
  1036. }
  1037. }
  1038. static void cAllocAndCompile() {
  1039. forWhileStack = 0;
  1040. breakIndex = 0;
  1041. returnType = dtVoid();
  1042. vsInit(&vars);
  1043. fsInit(&functions);
  1044. fsInit(&functionQueue);
  1045. stsInit(&structs);
  1046. if(!setjmp(errorJump)) {
  1047. cForEachLine();
  1048. cLinkQueuedFunctions();
  1049. }
  1050. stsDelete(&structs);
  1051. fsDelete(&functionQueue);
  1052. fsDelete(&functions);
  1053. vsDelete(&vars);
  1054. }
  1055. ByteCode* cCompile() {
  1056. error[0] = '\0';
  1057. code = bcInit();
  1058. cAllocAndCompile();
  1059. if(error[0] != '\0') {
  1060. bcDelete(code);
  1061. return NULL;
  1062. }
  1063. return code;
  1064. }
  1065. const char* cGetError() {
  1066. return error;
  1067. }
  1068. int cGetLine() {
  1069. return line;
  1070. }