Script.c 15 KB

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  1. #include <stdarg.h>
  2. #include <stdbool.h>
  3. #include <stdio.h>
  4. #include <stdlib.h>
  5. #include <string.h>
  6. #include "Operation.h"
  7. #include "Script.h"
  8. static void sError(Script* sc, const char* format, ...) {
  9. va_list args;
  10. va_start(args, format);
  11. vsnprintf(sc->error, SCRIPT_ERROR_SIZE, format, args);
  12. va_end(args);
  13. }
  14. static bool sPrinter(Object* o) {
  15. switch(o->type) {
  16. case OT_INT: printf("%d\n", o->data.intValue); return false;
  17. case OT_FLOAT: printf("%.2f\n", o->data.floatValue); return false;
  18. case OT_NULL: printf("null\n"); return false;
  19. case OT_BOOL: printf(o->data.intValue ? "true\n" : "false\n"); return false;
  20. case OT_VOID: printf("void\n"); return false;
  21. }
  22. return true;
  23. }
  24. static ObjectPrinter printer = sPrinter;
  25. static bool sRead(Script* sc, void* buffer, int length) {
  26. if(sc->readIndex + length > sc->code->length) {
  27. sError(sc, "cannot read expected %d bytes of data from bytecode on line %d", sc->line);
  28. return true;
  29. }
  30. memcpy(buffer, sc->code->code + sc->readIndex, length);
  31. sc->readIndex += length;
  32. return false;
  33. }
  34. static Operation sReadOperation(Script* sc) {
  35. unsigned char c;
  36. if(sRead(sc, &c, 1)) {
  37. return OP_NOTHING;
  38. }
  39. return c;
  40. }
  41. static bool sReadInt(Script* sc, int* i) {
  42. return !sRead(sc, i, sizeof(int));
  43. }
  44. static bool sCheckType(Script* sc, Object* o, ObjectType ot) {
  45. if(o->type == ot) {
  46. return true;
  47. }
  48. sError(sc, "object is not of type %s on line %d", oGetName(ot), sc->line);
  49. return false;
  50. }
  51. static bool sPush(Script* sc, Object* o) {
  52. if(sc->stackIndex >= SCRIPT_STACK_SIZE) {
  53. sError(sc, "stack overflow on line %d", sc->line);
  54. return false;
  55. }
  56. sc->stack[sc->stackIndex++] = *o;
  57. return true;
  58. }
  59. static bool sPop(Script* sc, Object* o) {
  60. if(sc->stackIndex <= 0) {
  61. sError(sc, "stack underflow on line %d", sc->line);
  62. return true;
  63. }
  64. *o = sc->stack[--sc->stackIndex];
  65. return false;
  66. }
  67. static void sPopEmpty(Script* sc) {
  68. Object o;
  69. sPop(sc, &o);
  70. }
  71. static Object* sPeek(Script* sc) {
  72. if(sc->stackIndex <= 0) {
  73. sError(sc, "stack underflow on line %d", sc->line);
  74. return NULL;
  75. }
  76. return sc->stack + (sc->stackIndex - 1);
  77. }
  78. static bool sPushInt(Script* sc, int value) {
  79. Object o = {.type = OT_INT, .data.intValue = value};
  80. return sPush(sc, &o);
  81. }
  82. static void sPushFloat(Script* sc, float value) {
  83. Object o = {.type = OT_FLOAT, .data.floatValue = value};
  84. sPush(sc, &o);
  85. }
  86. static void sPushNull(Script* sc) {
  87. Object o = {.type = OT_NULL};
  88. sPush(sc, &o);
  89. }
  90. static void sPushBool(Script* sc, bool value) {
  91. Object o = {.type = OT_BOOL, .data.intValue = value};
  92. sPush(sc, &o);
  93. }
  94. static void sPushVars(Script* sc) {
  95. int vars = 0;
  96. int offset = 0;
  97. if(sReadInt(sc, &vars) && sReadInt(sc, &offset)) {
  98. int stackVarIndex = sc->stackVarIndex;
  99. sc->stackVarIndex = sc->stackIndex - offset;
  100. for(int i = 0; i < vars - offset; i++) {
  101. sPushNull(sc);
  102. }
  103. sPushInt(sc, stackVarIndex);
  104. }
  105. }
  106. static void sPopVars(Script* sc) {
  107. int value = 0;
  108. Object o;
  109. if(sReadInt(sc, &value) && !sPop(sc, &o) && sCheckType(sc, &o, OT_INT)) {
  110. sc->stackVarIndex = o.data.intValue;
  111. if(sc->stackIndex < value) {
  112. sError(sc, "stack underflow on line %d", sc->line);
  113. } else {
  114. sc->stackIndex -= value;
  115. }
  116. }
  117. }
  118. static void sSet(Script* sc) {
  119. int value = 0;
  120. if(sReadInt(sc, &value)) {
  121. sPop(sc, sc->stack + value + sc->stackVarIndex);
  122. }
  123. }
  124. static void sGet(Script* sc) {
  125. int value = 0;
  126. if(sReadInt(sc, &value)) {
  127. sPush(sc, sc->stack + value + sc->stackVarIndex);
  128. }
  129. }
  130. static void sPushCodeInt(Script* sc) {
  131. int value = 0;
  132. if(sReadInt(sc, &value)) {
  133. sPushInt(sc, value);
  134. }
  135. }
  136. static void sPushCodeFloat(Script* sc) {
  137. float value = 0;
  138. if(sRead(sc, &value, sizeof(float))) {
  139. sError(sc, "cannot read a float from the bytecode on line %d", sc->line);
  140. return;
  141. }
  142. sPushFloat(sc, value);
  143. }
  144. static void sNumberBinary(Script* sc, int (*fInt)(int, int), float (*fFloat)(float, float)) {
  145. Object o[2];
  146. if(sPop(sc, o) || sPop(sc, o + 1)) {
  147. return;
  148. } else if(o[0].type == OT_INT && o[1].type == OT_INT) {
  149. sPushInt(sc, fInt(o[0].data.intValue, o[1].data.intValue));
  150. } else if(o[0].type == OT_FLOAT && o[1].type == OT_INT) {
  151. sPushFloat(sc, fFloat(o[0].data.floatValue, o[1].data.intValue));
  152. } else if(o[0].type == OT_INT && o[1].type == OT_FLOAT) {
  153. sPushFloat(sc, fFloat(o[0].data.intValue, o[1].data.floatValue));
  154. } else if(o[0].type == OT_FLOAT && o[1].type == OT_FLOAT) {
  155. sPushFloat(sc, fFloat(o[0].data.floatValue, o[1].data.floatValue));
  156. } else {
  157. sError(sc, "object is not a number on line %d", sc->line);
  158. }
  159. }
  160. static void sIntBinary(Script* sc, int (*f)(int, int)) {
  161. Object o[2];
  162. if(!sPop(sc, o) && !sPop(sc, o + 1) && sCheckType(sc, o, OT_INT) && sCheckType(sc, o + 1, OT_INT)) {
  163. sPushInt(sc, f(o[0].data.intValue, o[1].data.intValue));
  164. }
  165. }
  166. static int sIntAdd(int a, int b) {
  167. return a + b;
  168. }
  169. static int sIntSub(int a, int b) {
  170. return b - a;
  171. }
  172. static int sIntMul(int a, int b) {
  173. return a * b;
  174. }
  175. static int sIntDiv(int a, int b) {
  176. return b / a;
  177. }
  178. static int sMod(int a, int b) {
  179. return b % a;
  180. }
  181. static float sFloatAdd(float a, float b) {
  182. return a + b;
  183. }
  184. static float sFloatSub(float a, float b) {
  185. return b - a;
  186. }
  187. static float sFloatMul(float a, float b) {
  188. return a * b;
  189. }
  190. static float sFloatDiv(float a, float b) {
  191. return b / a;
  192. }
  193. static void sBoolBinary(Script* sc, bool (*fInt)(int, int), bool (*fFloat)(float, float)) {
  194. Object o[2];
  195. if(sPop(sc, o) || sPop(sc, o + 1)) {
  196. return;
  197. } else if(o[0].type == OT_INT && o[1].type == OT_INT) {
  198. sPushBool(sc, fInt(o[0].data.intValue, o[1].data.intValue));
  199. } else if(o[0].type == OT_FLOAT && o[1].type == OT_INT) {
  200. sPushBool(sc, fFloat(o[0].data.floatValue, o[1].data.intValue));
  201. } else if(o[0].type == OT_INT && o[1].type == OT_FLOAT) {
  202. sPushBool(sc, fFloat(o[0].data.intValue, o[1].data.floatValue));
  203. } else if(o[0].type == OT_FLOAT && o[1].type == OT_FLOAT) {
  204. sPushBool(sc, fFloat(o[0].data.floatValue, o[1].data.floatValue));
  205. } else {
  206. sError(sc, "object is not a number on line %d", sc->line);
  207. }
  208. }
  209. static bool sIntLess(int a, int b) {
  210. return b < a;
  211. }
  212. static bool sIntGreater(int a, int b) {
  213. return b > a;
  214. }
  215. static bool sFloatLess(float a, float b) {
  216. return b < a;
  217. }
  218. static bool sFloatGreater(float a, float b) {
  219. return b > a;
  220. }
  221. static void sInvertSign(Script* sc) {
  222. Object* o = sPeek(sc);
  223. if(o == NULL) {
  224. return;
  225. } else if(o->type == OT_INT) {
  226. o->data.intValue = -o->data.intValue;
  227. } else if(o->type == OT_FLOAT) {
  228. o->data.floatValue = -o->data.floatValue;
  229. } else {
  230. sError(sc, "object is not a number on line %d", sc->line);
  231. }
  232. }
  233. static void sEqual(Script* sc) {
  234. Object o[2];
  235. if(sPop(sc, o) || sPop(sc, o + 1)) {
  236. return;
  237. } else if(o[0].type == OT_INT && o[1].type == OT_INT) {
  238. sPushBool(sc, o[0].data.intValue == o[1].data.intValue);
  239. } else if(o[0].type == OT_INT && o[1].type == OT_FLOAT) {
  240. sPushBool(sc, o[0].data.intValue == o[1].data.floatValue);
  241. } else if(o[0].type == OT_FLOAT && o[1].type == OT_INT) {
  242. sPushBool(sc, o[0].data.floatValue == o[1].data.intValue);
  243. } else if(o[0].type == OT_FLOAT && o[1].type == OT_FLOAT) {
  244. sPushBool(sc, o[0].data.floatValue == o[1].data.floatValue);
  245. } else if(o[0].type == OT_BOOL && o[1].type == OT_BOOL) {
  246. sPushBool(sc, o[0].data.intValue == o[1].data.intValue);
  247. } else if(o[0].type == OT_NULL && o[1].type == OT_NULL) {
  248. sPushBool(sc, true);
  249. } else {
  250. sError(sc, "object types do not match on line %d", sc->line);
  251. }
  252. }
  253. static void sNot(Script* sc) {
  254. Object* o = sPeek(sc);
  255. if(o != NULL && sCheckType(sc, o, OT_BOOL)) {
  256. o->data.intValue = !o->data.intValue;
  257. }
  258. }
  259. static void sAnd(Script* sc) {
  260. Object o[2];
  261. if(!sPop(sc, o) && !sPop(sc, o + 1) && sCheckType(sc, o, OT_BOOL) && sCheckType(sc, o + 1, OT_BOOL)) {
  262. sPushBool(sc, o[0].data.intValue && o[1].data.intValue);
  263. }
  264. }
  265. static void sOr(Script* sc) {
  266. Object o[2];
  267. if(!sPop(sc, o) && !sPop(sc, o + 1) && sCheckType(sc, o, OT_BOOL) && sCheckType(sc, o + 1, OT_BOOL)) {
  268. sPushBool(sc, o[0].data.intValue || o[1].data.intValue);
  269. }
  270. }
  271. static void sPrint(Script* sc) {
  272. Object o;
  273. if(!sPop(sc, &o) && printer(&o)) {
  274. sError(sc, "cannot print given object on line %d", sc->line);
  275. }
  276. }
  277. static void sLine(Script* sc) {
  278. if(sRead(sc, &sc->line, 2)) {
  279. sError(sc, "line operation without a line near line %d", sc->line);
  280. }
  281. }
  282. static void sGoTo(Script* sc) {
  283. int gotoIndex;
  284. if(sReadInt(sc, &gotoIndex)) {
  285. sc->readIndex = gotoIndex;
  286. }
  287. }
  288. static void sGoSub(Script* sc) {
  289. int gotoIndex;
  290. int arguments;
  291. if(sReadInt(sc, &gotoIndex) && sReadInt(sc, &arguments)) {
  292. int returnStackIndex = sc->stackIndex - arguments - 1;
  293. if(returnStackIndex < 0 || sc->stack[returnStackIndex].type != OT_INT) {
  294. sError(sc, "cannot find return address entry on stack on line %d", sc->line);
  295. return;
  296. }
  297. sc->stack[returnStackIndex].data.intValue = sc->readIndex;
  298. sc->readIndex = gotoIndex;
  299. }
  300. }
  301. static void sIfGoTo(Script* sc) {
  302. int gotoIndex;
  303. Object o;
  304. if(sReadInt(sc, &gotoIndex) && !sPop(sc, &o) && sCheckType(sc, &o, OT_BOOL) && !o.data.intValue) {
  305. sc->readIndex = gotoIndex;
  306. }
  307. }
  308. static void sSetReturn(Script* sc) {
  309. sPop(sc, &sc->returnValue);
  310. }
  311. static void sReturn(Script* sc) {
  312. Object o;
  313. if(!sPop(sc, &o) && sCheckType(sc, &o, OT_INT)) {
  314. sc->readIndex = o.data.intValue;
  315. if(sc->returnValue.type != OT_VOID) {
  316. sPush(sc, &sc->returnValue);
  317. sc->returnValue.type = OT_VOID;
  318. }
  319. }
  320. }
  321. static void sDuplicate(Script* sc) {
  322. Object* o = sPeek(sc);
  323. if(o != NULL) {
  324. sPush(sc, o);
  325. }
  326. }
  327. static void sConsumeInstruction(Script* sc) {
  328. switch(sReadOperation(sc)) {
  329. case OP_NOTHING: break;
  330. case OP_PUSH_INT: sPushCodeInt(sc); break;
  331. case OP_PUSH_FLOAT: sPushCodeFloat(sc); break;
  332. case OP_PUSH_NULL: sPushNull(sc); break;
  333. case OP_PUSH_TRUE: sPushBool(sc, true); break;
  334. case OP_PUSH_FALSE: sPushBool(sc, false); break;
  335. case OP_PUSH_VARS: sPushVars(sc); break;
  336. case OP_POP_VARS: sPopVars(sc); break;
  337. case OP_POP: sPopEmpty(sc); break;
  338. case OP_SET: sSet(sc); break;
  339. case OP_GET: sGet(sc); break;
  340. case OP_ADD: sNumberBinary(sc, sIntAdd, sFloatAdd); break;
  341. case OP_SUB: sNumberBinary(sc, sIntSub, sFloatSub); break;
  342. case OP_MUL: sNumberBinary(sc, sIntMul, sFloatMul); break;
  343. case OP_DIV: sNumberBinary(sc, sIntDiv, sFloatDiv); break;
  344. case OP_MOD: sIntBinary(sc, sMod); break;
  345. case OP_INVERT_SIGN: sInvertSign(sc); break;
  346. case OP_LESS: sBoolBinary(sc, sIntLess, sFloatLess); break;
  347. case OP_GREATER: sBoolBinary(sc, sIntGreater, sFloatGreater); break;
  348. case OP_EQUAL: sEqual(sc); break;
  349. case OP_NOT: sNot(sc); break;
  350. case OP_AND: sAnd(sc); break;
  351. case OP_OR: sOr(sc); break;
  352. case OP_PRINT: sPrint(sc); break;
  353. case OP_LINE: sLine(sc); break;
  354. case OP_GOTO: sGoTo(sc); break;
  355. case OP_GOSUB: sGoSub(sc); break;
  356. case OP_IF_GOTO: sIfGoTo(sc); break;
  357. case OP_SET_RETURN: sSetReturn(sc); break;
  358. case OP_RETURN: sReturn(sc); break;
  359. case OP_DUPLICATE: sDuplicate(sc); break;
  360. }
  361. }
  362. static bool sHasData(Script* sc) {
  363. return sc->readIndex < sc->code->length;
  364. }
  365. Script* sInit(ByteCode* code) {
  366. Script* sc = malloc(sizeof(Script));
  367. sc->error[0] = '\0';
  368. sc->code = code;
  369. sc->readIndex = 0;
  370. sc->returnValue.type = OT_VOID;
  371. sc->stackIndex = 0;
  372. sc->stackVarIndex = 0;
  373. sc->line = 0;
  374. return sc;
  375. }
  376. void sDelete(Script* sc) {
  377. bcDelete(sc->code);
  378. free(sc);
  379. }
  380. void sRun(Script* sc) {
  381. while(sHasData(sc)) {
  382. sConsumeInstruction(sc);
  383. if(sc->error[0] != '\0') {
  384. puts(sc->error);
  385. return;
  386. }
  387. }
  388. }
  389. void sSetPrinter(ObjectPrinter p) {
  390. printer = p;
  391. }
  392. static void sPrintInt(Script* sc, const char* msg) {
  393. int value = 0;
  394. sReadInt(sc, &value);
  395. printf("%s %d\n", msg, value);
  396. }
  397. static void sPrint2Int(Script* sc, const char* msg) {
  398. int a = 0;
  399. sReadInt(sc, &a);
  400. int b = 0;
  401. sReadInt(sc, &b);
  402. printf("%s %d %d\n", msg, a, b);
  403. }
  404. static void sPrintInt16(Script* sc, const char* msg) {
  405. int value = 0;
  406. sRead(sc, &value, 2);
  407. printf("%s %d\n", msg, value);
  408. }
  409. static void sPrintFloat(Script* sc, const char* msg) {
  410. float value = 0;
  411. sRead(sc, &value, sizeof(float));
  412. printf("%s %.2f\n", msg, value);
  413. }
  414. void sPrintCode(Script* sc) {
  415. int oldRead = sc->readIndex;
  416. sc->readIndex = 0;
  417. while(sHasData(sc)) {
  418. printf(" %3d | ", sc->readIndex);
  419. switch(sReadOperation(sc)) {
  420. case OP_NOTHING: puts("Nothing"); break;
  421. case OP_PUSH_INT: sPrintInt(sc, "Push Int"); break;
  422. case OP_PUSH_FLOAT: sPrintFloat(sc, "Push Float"); break;
  423. case OP_PUSH_NULL: puts("Push null"); break;
  424. case OP_PUSH_TRUE: puts("Push true"); break;
  425. case OP_PUSH_FALSE: puts("Push false"); break;
  426. case OP_PUSH_VARS: sPrint2Int(sc, "Push Vars"); break;
  427. case OP_POP_VARS: sPrintInt(sc, "Pop Vars"); break;
  428. case OP_POP: puts("Pop"); break;
  429. case OP_SET: sPrintInt(sc, "Set"); break;
  430. case OP_GET: sPrintInt(sc, "Get"); break;
  431. case OP_ADD: puts("Add"); break;
  432. case OP_SUB: puts("Sub"); break;
  433. case OP_MUL: puts("Mul"); break;
  434. case OP_DIV: puts("Div"); break;
  435. case OP_MOD: puts("Mod"); break;
  436. case OP_INVERT_SIGN: puts("Invert Sign"); break;
  437. case OP_LESS: puts("Less"); break;
  438. case OP_GREATER: puts("Greater"); break;
  439. case OP_EQUAL: puts("Equal"); break;
  440. case OP_NOT: puts("Not"); break;
  441. case OP_AND: puts("And"); break;
  442. case OP_OR: puts("And"); break;
  443. case OP_PRINT: puts("Print"); break;
  444. case OP_LINE: sPrintInt16(sc, "------------ Line"); break;
  445. case OP_GOTO: sPrintInt(sc, "GoTo"); break;
  446. case OP_GOSUB: sPrint2Int(sc, "GoSub"); break;
  447. case OP_IF_GOTO: sPrintInt(sc, "If GoTo"); break;
  448. case OP_SET_RETURN: puts("Set Return"); break;
  449. case OP_RETURN: puts("Return"); break;
  450. case OP_DUPLICATE: puts("Duplicate"); break;
  451. }
  452. }
  453. sc->readIndex = oldRead;
  454. }