value.cpp 9.5 KB

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  1. // Part of the Carbon Language project, under the Apache License v2.0 with LLVM
  2. // Exceptions. See /LICENSE for license information.
  3. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. #include "executable_semantics/interpreter/value.h"
  5. #include <iostream>
  6. #include "executable_semantics/interpreter/interpreter.h"
  7. namespace Carbon {
  8. auto FindInVarValues(const std::string& field, VarValues* inits)
  9. -> const Value* {
  10. for (auto& i : *inits) {
  11. if (i.first == field) {
  12. return i.second;
  13. }
  14. }
  15. return nullptr;
  16. }
  17. auto FieldsEqual(VarValues* ts1, VarValues* ts2) -> bool {
  18. if (ts1->size() == ts2->size()) {
  19. for (auto& iter1 : *ts1) {
  20. auto t2 = FindInVarValues(iter1.first, ts2);
  21. if (t2 == nullptr) {
  22. return false;
  23. }
  24. if (!TypeEqual(iter1.second, t2)) {
  25. return false;
  26. }
  27. }
  28. return true;
  29. } else {
  30. return false;
  31. }
  32. }
  33. auto MakeIntVal(int i) -> const Value* {
  34. auto* v = new Value();
  35. v->tag = ValKind::IntV;
  36. v->u.integer = i;
  37. return v;
  38. }
  39. auto MakeBoolVal(bool b) -> const Value* {
  40. auto* v = new Value();
  41. v->tag = ValKind::BoolV;
  42. v->u.boolean = b;
  43. return v;
  44. }
  45. auto MakeFunVal(std::string name, const Value* param, Statement* body)
  46. -> const Value* {
  47. auto* v = new Value();
  48. v->tag = ValKind::FunV;
  49. v->u.fun.name = new std::string(std::move(name));
  50. v->u.fun.param = param;
  51. v->u.fun.body = body;
  52. return v;
  53. }
  54. auto MakePtrVal(Address addr) -> const Value* {
  55. auto* v = new Value();
  56. v->tag = ValKind::PtrV;
  57. v->u.ptr = addr;
  58. return v;
  59. }
  60. auto MakeStructVal(const Value* type, const Value* inits) -> const Value* {
  61. auto* v = new Value();
  62. v->tag = ValKind::StructV;
  63. v->u.struct_val.type = type;
  64. v->u.struct_val.inits = inits;
  65. return v;
  66. }
  67. auto MakeTupleVal(std::vector<std::pair<std::string, Address>>* elts)
  68. -> const Value* {
  69. auto* v = new Value();
  70. v->tag = ValKind::TupleV;
  71. v->u.tuple.elts = elts;
  72. return v;
  73. }
  74. auto MakeAltVal(std::string alt_name, std::string choice_name, Address argument)
  75. -> const Value* {
  76. auto* v = new Value();
  77. v->tag = ValKind::AltV;
  78. v->u.alt.alt_name = new std::string(std::move(alt_name));
  79. v->u.alt.choice_name = new std::string(std::move(choice_name));
  80. v->u.alt.argument = argument;
  81. return v;
  82. }
  83. auto MakeAltCons(std::string alt_name, std::string choice_name)
  84. -> const Value* {
  85. auto* v = new Value();
  86. v->tag = ValKind::AltConsV;
  87. v->u.alt.alt_name = new std::string(std::move(alt_name));
  88. v->u.alt.choice_name = new std::string(std::move(choice_name));
  89. return v;
  90. }
  91. auto MakeVarPatVal(std::string name, const Value* type) -> const Value* {
  92. auto* v = new Value();
  93. v->tag = ValKind::VarPatV;
  94. v->u.var_pat.name = new std::string(std::move(name));
  95. v->u.var_pat.type = type;
  96. return v;
  97. }
  98. auto MakeVarTypeVal(std::string name) -> const Value* {
  99. auto* v = new Value();
  100. v->tag = ValKind::VarTV;
  101. v->u.var_type = new std::string(std::move(name));
  102. return v;
  103. }
  104. auto MakeIntTypeVal() -> const Value* {
  105. auto* v = new Value();
  106. v->tag = ValKind::IntTV;
  107. return v;
  108. }
  109. auto MakeBoolTypeVal() -> const Value* {
  110. auto* v = new Value();
  111. v->tag = ValKind::BoolTV;
  112. return v;
  113. }
  114. auto MakeTypeTypeVal() -> const Value* {
  115. auto* v = new Value();
  116. v->tag = ValKind::TypeTV;
  117. return v;
  118. }
  119. auto MakeAutoTypeVal() -> const Value* {
  120. auto* v = new Value();
  121. v->tag = ValKind::AutoTV;
  122. return v;
  123. }
  124. auto MakeFunTypeVal(const Value* param, const Value* ret) -> const Value* {
  125. auto* v = new Value();
  126. v->tag = ValKind::FunctionTV;
  127. v->u.fun_type.param = param;
  128. v->u.fun_type.ret = ret;
  129. return v;
  130. }
  131. auto MakePtrTypeVal(const Value* type) -> const Value* {
  132. auto* v = new Value();
  133. v->tag = ValKind::PointerTV;
  134. v->u.ptr_type.type = type;
  135. return v;
  136. }
  137. auto MakeStructTypeVal(std::string name, VarValues* fields, VarValues* methods)
  138. -> const Value* {
  139. auto* v = new Value();
  140. v->tag = ValKind::StructTV;
  141. v->u.struct_type.name = new std::string(std::move(name));
  142. v->u.struct_type.fields = fields;
  143. v->u.struct_type.methods = methods;
  144. return v;
  145. }
  146. auto MakeTupleTypeVal(VarValues* fields) -> const Value* {
  147. auto* v = new Value();
  148. v->tag = ValKind::TupleTV;
  149. v->u.tuple_type.fields = fields;
  150. return v;
  151. }
  152. auto MakeVoidTypeVal() -> const Value* {
  153. auto* v = new Value();
  154. v->tag = ValKind::TupleTV;
  155. v->u.tuple_type.fields = new VarValues();
  156. return v;
  157. }
  158. auto MakeChoiceTypeVal(std::string name,
  159. std::list<std::pair<std::string, const Value*>>* alts)
  160. -> const Value* {
  161. auto* v = new Value();
  162. v->tag = ValKind::ChoiceTV;
  163. // Transitional leak: when we get rid of all pointers, this will disappear.
  164. v->u.choice_type.name = new std::string(name);
  165. v->u.choice_type.alternatives = alts;
  166. return v;
  167. }
  168. void PrintValue(const Value* val, std::ostream& out) {
  169. switch (val->tag) {
  170. case ValKind::AltConsV: {
  171. out << *val->u.alt_cons.choice_name << "." << *val->u.alt_cons.alt_name;
  172. break;
  173. }
  174. case ValKind::VarPatV: {
  175. PrintValue(val->u.var_pat.type, out);
  176. out << ": " << *val->u.var_pat.name;
  177. break;
  178. }
  179. case ValKind::AltV: {
  180. out << "alt " << *val->u.alt.choice_name << "." << *val->u.alt.alt_name
  181. << " ";
  182. PrintValue(state->heap[val->u.alt.argument], out);
  183. break;
  184. }
  185. case ValKind::StructV: {
  186. out << *val->u.struct_val.type->u.struct_type.name;
  187. PrintValue(val->u.struct_val.inits, out);
  188. break;
  189. }
  190. case ValKind::TupleV: {
  191. out << "(";
  192. bool add_commas = false;
  193. for (const auto& elt : *val->u.tuple.elts) {
  194. if (add_commas) {
  195. out << ", ";
  196. } else {
  197. add_commas = true;
  198. }
  199. out << elt.first << " = ";
  200. PrintValue(state->heap[elt.second], out);
  201. out << "@" << elt.second;
  202. }
  203. out << ")";
  204. break;
  205. }
  206. case ValKind::IntV:
  207. out << val->u.integer;
  208. break;
  209. case ValKind::BoolV:
  210. out << std::boolalpha << val->u.boolean;
  211. break;
  212. case ValKind::FunV:
  213. out << "fun<" << *val->u.fun.name << ">";
  214. break;
  215. case ValKind::PtrV:
  216. out << "ptr<" << val->u.ptr << ">";
  217. break;
  218. case ValKind::BoolTV:
  219. out << "Bool";
  220. break;
  221. case ValKind::IntTV:
  222. out << "Int";
  223. break;
  224. case ValKind::TypeTV:
  225. out << "Type";
  226. break;
  227. case ValKind::AutoTV:
  228. out << "auto";
  229. break;
  230. case ValKind::PointerTV:
  231. out << "Ptr(";
  232. PrintValue(val->u.ptr_type.type, out);
  233. out << ")";
  234. break;
  235. case ValKind::FunctionTV:
  236. out << "fn ";
  237. PrintValue(val->u.fun_type.param, out);
  238. out << " -> ";
  239. PrintValue(val->u.fun_type.ret, out);
  240. break;
  241. case ValKind::VarTV:
  242. out << *val->u.var_type;
  243. break;
  244. case ValKind::TupleTV: {
  245. out << "Tuple(";
  246. bool add_commas = false;
  247. for (const auto& elt : *val->u.tuple_type.fields) {
  248. if (add_commas) {
  249. out << ", ";
  250. } else {
  251. add_commas = true;
  252. }
  253. out << elt.first << " = ";
  254. PrintValue(elt.second, out);
  255. }
  256. out << ")";
  257. break;
  258. }
  259. case ValKind::StructTV:
  260. out << "struct " << *val->u.struct_type.name;
  261. break;
  262. case ValKind::ChoiceTV:
  263. out << "choice " << *val->u.choice_type.name;
  264. break;
  265. }
  266. }
  267. auto TypeEqual(const Value* t1, const Value* t2) -> bool {
  268. if (t1->tag != t2->tag) {
  269. return false;
  270. }
  271. switch (t1->tag) {
  272. case ValKind::VarTV:
  273. return *t1->u.var_type == *t2->u.var_type;
  274. case ValKind::PointerTV:
  275. return TypeEqual(t1->u.ptr_type.type, t2->u.ptr_type.type);
  276. case ValKind::FunctionTV:
  277. return TypeEqual(t1->u.fun_type.param, t2->u.fun_type.param) &&
  278. TypeEqual(t1->u.fun_type.ret, t2->u.fun_type.ret);
  279. case ValKind::StructTV:
  280. return *t1->u.struct_type.name == *t2->u.struct_type.name;
  281. case ValKind::ChoiceTV:
  282. return *t1->u.choice_type.name == *t2->u.choice_type.name;
  283. case ValKind::TupleTV:
  284. return FieldsEqual(t1->u.tuple_type.fields, t2->u.tuple_type.fields);
  285. case ValKind::IntTV:
  286. case ValKind::BoolTV:
  287. return true;
  288. default:
  289. return false;
  290. }
  291. }
  292. static auto FieldsValueEqual(VarValues* ts1, VarValues* ts2, int line_num)
  293. -> bool {
  294. if (ts1->size() != ts2->size()) {
  295. return false;
  296. }
  297. for (auto& iter1 : *ts1) {
  298. auto t2 = FindInVarValues(iter1.first, ts2);
  299. if (t2 == nullptr) {
  300. return false;
  301. }
  302. if (!ValueEqual(iter1.second, t2, line_num)) {
  303. return false;
  304. }
  305. }
  306. return true;
  307. }
  308. auto ValueEqual(const Value* v1, const Value* v2, int line_num) -> bool {
  309. if (v1->tag != v2->tag) {
  310. return false;
  311. }
  312. switch (v1->tag) {
  313. case ValKind::IntV:
  314. return v1->u.integer == v2->u.integer;
  315. case ValKind::BoolV:
  316. return v1->u.boolean == v2->u.boolean;
  317. case ValKind::PtrV:
  318. CheckAlive(v1->u.ptr, line_num);
  319. CheckAlive(v2->u.ptr, line_num);
  320. return v1->u.ptr == v2->u.ptr;
  321. case ValKind::FunV:
  322. return v1->u.fun.body == v2->u.fun.body;
  323. case ValKind::TupleV:
  324. return FieldsValueEqual(v1->u.tuple_type.fields, v2->u.tuple_type.fields,
  325. line_num);
  326. default:
  327. return TypeEqual(v1, v2);
  328. }
  329. }
  330. auto ToInteger(const Value* v) -> int {
  331. switch (v->tag) {
  332. case ValKind::IntV:
  333. return v->u.integer;
  334. default:
  335. std::cerr << "expected an integer, not ";
  336. PrintValue(v, std::cerr);
  337. exit(-1);
  338. }
  339. }
  340. void CheckAlive(Address address, int line_num) {
  341. if (!state->alive[address]) {
  342. std::cerr << line_num << ": undefined behavior: access to dead value ";
  343. PrintValue(state->heap[address], std::cerr);
  344. std::cerr << std::endl;
  345. exit(-1);
  346. }
  347. }
  348. } // namespace Carbon