pocketpy.h 57 KB

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  1. #pragma once
  2. #include "ceval.h"
  3. #include "compiler.h"
  4. #include "obj.h"
  5. #include "repl.h"
  6. #include "iter.h"
  7. #include "base64.h"
  8. #include "cffi.h"
  9. #include "linalg.h"
  10. #include "easing.h"
  11. #include "requests.h"
  12. #include "io.h"
  13. #include "_generated.h"
  14. #include "export.h"
  15. #include "vm.h"
  16. #include "re.h"
  17. #include "random.h"
  18. namespace pkpy {
  19. inline CodeObject_ VM::compile(Str source, Str filename, CompileMode mode, bool unknown_global_scope) {
  20. Compiler compiler(this, source, filename, mode, unknown_global_scope);
  21. try{
  22. return compiler.compile();
  23. }catch(Exception& e){
  24. #if PK_DEBUG_FULL_EXCEPTION
  25. std::cerr << e.summary() << std::endl;
  26. #endif
  27. _error(e);
  28. return nullptr;
  29. }
  30. }
  31. inline void init_builtins(VM* _vm) {
  32. #define BIND_NUM_ARITH_OPT(name, op) \
  33. _vm->bind##name(_vm->tp_int, [](VM* vm, PyObject* lhs, PyObject* rhs) { \
  34. if(is_int(rhs)) return VAR(_CAST(i64, lhs) op _CAST(i64, rhs)); \
  35. if(is_float(rhs)) return VAR(_CAST(i64, lhs) op _CAST(f64, rhs)); \
  36. return vm->NotImplemented; \
  37. }); \
  38. _vm->bind##name(_vm->tp_float, [](VM* vm, PyObject* lhs, PyObject* rhs) { \
  39. if(is_float(rhs)) return VAR(_CAST(f64, lhs) op _CAST(f64, rhs)); \
  40. if(is_int(rhs)) return VAR(_CAST(f64, lhs) op _CAST(i64, rhs)); \
  41. return vm->NotImplemented; \
  42. });
  43. BIND_NUM_ARITH_OPT(__add__, +)
  44. BIND_NUM_ARITH_OPT(__sub__, -)
  45. BIND_NUM_ARITH_OPT(__mul__, *)
  46. #undef BIND_NUM_ARITH_OPT
  47. #define BIND_NUM_LOGICAL_OPT(name, op) \
  48. _vm->bind##name(_vm->tp_int, [](VM* vm, PyObject* lhs, PyObject* rhs) { \
  49. if(is_int(rhs)) return VAR(_CAST(i64, lhs) op _CAST(i64, rhs)); \
  50. if(is_float(rhs)) return VAR(_CAST(i64, lhs) op _CAST(f64, rhs)); \
  51. return vm->NotImplemented; \
  52. }); \
  53. _vm->bind##name(_vm->tp_float, [](VM* vm, PyObject* lhs, PyObject* rhs) { \
  54. if(is_int(rhs)) return VAR(_CAST(f64, lhs) op _CAST(i64, rhs)); \
  55. if(is_float(rhs)) return VAR(_CAST(f64, lhs) op _CAST(f64, rhs)); \
  56. return vm->NotImplemented; \
  57. });
  58. BIND_NUM_LOGICAL_OPT(__eq__, ==)
  59. BIND_NUM_LOGICAL_OPT(__lt__, <)
  60. BIND_NUM_LOGICAL_OPT(__le__, <=)
  61. BIND_NUM_LOGICAL_OPT(__gt__, >)
  62. BIND_NUM_LOGICAL_OPT(__ge__, >=)
  63. #undef BIND_NUM_ARITH_OPT
  64. #undef BIND_NUM_LOGICAL_OPT
  65. _vm->bind_builtin_func<2>("super", [](VM* vm, ArgsView args) {
  66. vm->check_non_tagged_type(args[0], vm->tp_type);
  67. Type type = PK_OBJ_GET(Type, args[0]);
  68. if(!vm->isinstance(args[1], type)){
  69. Str _0 = obj_type_name(vm, PK_OBJ_GET(Type, vm->_t(args[1])));
  70. Str _1 = obj_type_name(vm, type);
  71. vm->TypeError("super(): " + _0.escape() + " is not an instance of " + _1.escape());
  72. }
  73. Type base = vm->_all_types[type].base;
  74. return vm->heap.gcnew(vm->tp_super, Super(args[1], base));
  75. });
  76. _vm->bind_builtin_func<2>("isinstance", [](VM* vm, ArgsView args) {
  77. vm->check_non_tagged_type(args[1], vm->tp_type);
  78. Type type = PK_OBJ_GET(Type, args[1]);
  79. return VAR(vm->isinstance(args[0], type));
  80. });
  81. _vm->bind_builtin_func<0>("globals", [](VM* vm, ArgsView args) {
  82. PyObject* mod = vm->top_frame()->_module;
  83. return VAR(MappingProxy(mod));
  84. });
  85. _vm->bind_builtin_func<3>("pow", [](VM* vm, ArgsView args) {
  86. i64 lhs = CAST(i64, args[0]); // assume lhs>=0
  87. i64 rhs = CAST(i64, args[1]); // assume rhs>=0
  88. i64 mod = CAST(i64, args[2]); // assume mod>0, mod*mod should not overflow
  89. if(rhs <= 0){
  90. vm->ValueError("pow(): rhs should be positive");
  91. }
  92. static const auto _mul = [](i64 a, i64 b, i64 c){
  93. if(c < 16384) return (a%c) * (b%c) % c;
  94. i64 res = 0;
  95. while(b > 0){
  96. if(b & 1) res = (res + a) % c;
  97. a = (a << 1) % c;
  98. b >>= 1;
  99. }
  100. return res;
  101. };
  102. i64 res = 1;
  103. lhs %= mod;
  104. while(rhs){
  105. if(rhs & 1) res = _mul(res, lhs, mod);
  106. lhs = _mul(lhs, lhs, mod);
  107. rhs >>= 1;
  108. }
  109. return VAR(res);
  110. });
  111. _vm->bind_builtin_func<1>("id", [](VM* vm, ArgsView args) {
  112. PyObject* obj = args[0];
  113. if(is_tagged(obj)) return vm->None;
  114. return VAR_T(VoidP, obj);
  115. });
  116. _vm->bind_builtin_func<1>("staticmethod", [](VM* vm, ArgsView args) {
  117. return args[0];
  118. });
  119. _vm->bind_builtin_func<1>("__import__", [](VM* vm, ArgsView args) {
  120. return vm->py_import(CAST(Str&, args[0]));
  121. });
  122. _vm->bind_builtin_func<2>("divmod", [](VM* vm, ArgsView args) {
  123. if(is_int(args[0])){
  124. i64 lhs = _CAST(i64, args[0]);
  125. i64 rhs = CAST(i64, args[1]);
  126. auto res = std::div(lhs, rhs);
  127. return VAR(Tuple({VAR(res.quot), VAR(res.rem)}));
  128. }else{
  129. DEF_SNAME(__divmod__);
  130. return vm->call_method(args[0], __divmod__, args[1]);
  131. }
  132. });
  133. _vm->bind_builtin_func<1>("eval", [](VM* vm, ArgsView args) {
  134. CodeObject_ code = vm->compile(CAST(Str&, args[0]), "<eval>", EVAL_MODE, true);
  135. FrameId frame = vm->top_frame();
  136. return vm->_exec(code.get(), frame->_module, frame->_callable, frame->_locals);
  137. });
  138. _vm->bind_builtin_func<1>("exec", [](VM* vm, ArgsView args) {
  139. CodeObject_ code = vm->compile(CAST(Str&, args[0]), "<exec>", EXEC_MODE, true);
  140. FrameId frame = vm->top_frame();
  141. vm->_exec(code.get(), frame->_module, frame->_callable, frame->_locals);
  142. return vm->None;
  143. });
  144. _vm->bind_builtin_func<-1>("exit", [](VM* vm, ArgsView args) {
  145. if(args.size() == 0) std::exit(0);
  146. else if(args.size() == 1) std::exit(CAST(int, args[0]));
  147. else vm->TypeError("exit() takes at most 1 argument");
  148. return vm->None;
  149. });
  150. _vm->bind_builtin_func<1>("repr", PK_LAMBDA(vm->py_repr(args[0])));
  151. _vm->bind_builtin_func<1>("len", [](VM* vm, ArgsView args){
  152. const PyTypeInfo* ti = vm->_inst_type_info(args[0]);
  153. if(ti->m__len__) return VAR(ti->m__len__(vm, args[0]));
  154. return vm->call_method(args[0], __len__);
  155. });
  156. _vm->bind_builtin_func<1>("hash", [](VM* vm, ArgsView args){
  157. i64 value = vm->py_hash(args[0]);
  158. if(((value << 2) >> 2) != value) value >>= 2;
  159. return VAR(value);
  160. });
  161. _vm->bind_builtin_func<1>("chr", [](VM* vm, ArgsView args) {
  162. i64 i = CAST(i64, args[0]);
  163. if (i < 0 || i > 128) vm->ValueError("chr() arg not in range(128)");
  164. return VAR(std::string(1, (char)i));
  165. });
  166. _vm->bind_builtin_func<1>("ord", [](VM* vm, ArgsView args) {
  167. const Str& s = CAST(Str&, args[0]);
  168. if (s.length()!=1) vm->TypeError("ord() expected an ASCII character");
  169. return VAR((i64)(s[0]));
  170. });
  171. _vm->bind_builtin_func<2>("hasattr", [](VM* vm, ArgsView args) {
  172. return VAR(vm->getattr(args[0], CAST(Str&, args[1]), false) != nullptr);
  173. });
  174. _vm->bind_builtin_func<3>("setattr", [](VM* vm, ArgsView args) {
  175. vm->setattr(args[0], CAST(Str&, args[1]), args[2]);
  176. return vm->None;
  177. });
  178. _vm->bind_builtin_func<2>("getattr", [](VM* vm, ArgsView args) {
  179. const Str& name = CAST(Str&, args[1]);
  180. return vm->getattr(args[0], name);
  181. });
  182. _vm->bind_builtin_func<1>("hex", [](VM* vm, ArgsView args) {
  183. std::stringstream ss;
  184. ss << std::hex << CAST(i64, args[0]);
  185. return VAR("0x" + ss.str());
  186. });
  187. _vm->bind_builtin_func<1>("iter", [](VM* vm, ArgsView args) {
  188. return vm->py_iter(args[0]);
  189. });
  190. _vm->bind_builtin_func<1>("next", [](VM* vm, ArgsView args) {
  191. return vm->py_next(args[0]);
  192. });
  193. _vm->bind_builtin_func<1>("bin", [](VM* vm, ArgsView args) {
  194. std::stringstream ss;
  195. i64 x = CAST(i64, args[0]);
  196. if(x < 0){ ss << "-"; x = -x; }
  197. ss << "0b";
  198. std::string bits;
  199. while(x){
  200. bits += (x & 1) ? '1' : '0';
  201. x >>= 1;
  202. }
  203. std::reverse(bits.begin(), bits.end());
  204. if(bits.empty()) bits = "0";
  205. ss << bits;
  206. return VAR(ss.str());
  207. });
  208. _vm->bind_builtin_func<1>("dir", [](VM* vm, ArgsView args) {
  209. std::set<StrName> names;
  210. if(!is_tagged(args[0]) && args[0]->is_attr_valid()){
  211. std::vector<StrName> keys = args[0]->attr().keys();
  212. names.insert(keys.begin(), keys.end());
  213. }
  214. const NameDict& t_attr = vm->_t(args[0])->attr();
  215. std::vector<StrName> keys = t_attr.keys();
  216. names.insert(keys.begin(), keys.end());
  217. List ret;
  218. for (StrName name : names) ret.push_back(VAR(name.sv()));
  219. return VAR(std::move(ret));
  220. });
  221. _vm->bind__repr__(_vm->tp_object, [](VM* vm, PyObject* obj) {
  222. if(is_tagged(obj)) FATAL_ERROR();
  223. std::stringstream ss;
  224. ss << "<" << OBJ_NAME(vm->_t(obj)) << " object at 0x";
  225. ss << std::hex << reinterpret_cast<intptr_t>(obj) << ">";
  226. return VAR(ss.str());
  227. });
  228. _vm->bind__eq__(_vm->tp_object, [](VM* vm, PyObject* lhs, PyObject* rhs) { return VAR(lhs == rhs); });
  229. _vm->bind__hash__(_vm->tp_object, [](VM* vm, PyObject* obj) { return PK_BITS(obj); });
  230. _vm->cached_object__new__ = _vm->bind_constructor<1>("object", [](VM* vm, ArgsView args) {
  231. vm->check_non_tagged_type(args[0], vm->tp_type);
  232. Type t = PK_OBJ_GET(Type, args[0]);
  233. return vm->heap.gcnew<DummyInstance>(t, {});
  234. });
  235. _vm->bind_constructor<2>("type", PK_LAMBDA(vm->_t(args[1])));
  236. _vm->bind_constructor<-1>("range", [](VM* vm, ArgsView args) {
  237. args._begin += 1; // skip cls
  238. Range r;
  239. switch (args.size()) {
  240. case 1: r.stop = CAST(i64, args[0]); break;
  241. case 2: r.start = CAST(i64, args[0]); r.stop = CAST(i64, args[1]); break;
  242. case 3: r.start = CAST(i64, args[0]); r.stop = CAST(i64, args[1]); r.step = CAST(i64, args[2]); break;
  243. default: vm->TypeError("expected 1-3 arguments, got " + std::to_string(args.size()));
  244. }
  245. return VAR(r);
  246. });
  247. _vm->bind__iter__(_vm->tp_range, [](VM* vm, PyObject* obj) { return VAR_T(RangeIter, PK_OBJ_GET(Range, obj)); });
  248. _vm->bind__repr__(_vm->_type("NoneType"), [](VM* vm, PyObject* obj) { return VAR("None"); });
  249. _vm->bind__json__(_vm->_type("NoneType"), [](VM* vm, PyObject* obj) { return VAR("null"); });
  250. _vm->bind__truediv__(_vm->tp_float, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  251. f64 value = CAST_F(rhs);
  252. return VAR(_CAST(f64, lhs) / value);
  253. });
  254. _vm->bind__truediv__(_vm->tp_int, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  255. f64 value = CAST_F(rhs);
  256. return VAR(_CAST(i64, lhs) / value);
  257. });
  258. auto py_number_pow = [](VM* vm, PyObject* lhs_, PyObject* rhs_) {
  259. if(is_both_int(lhs_, rhs_)){
  260. i64 lhs = _CAST(i64, lhs_);
  261. i64 rhs = _CAST(i64, rhs_);
  262. bool flag = false;
  263. if(rhs < 0) {flag = true; rhs = -rhs;}
  264. i64 ret = 1;
  265. while(rhs){
  266. if(rhs & 1) ret *= lhs;
  267. lhs *= lhs;
  268. rhs >>= 1;
  269. }
  270. if(flag) return VAR((f64)(1.0 / ret));
  271. return VAR(ret);
  272. }else{
  273. return VAR((f64)std::pow(CAST_F(lhs_), CAST_F(rhs_)));
  274. }
  275. };
  276. _vm->bind__pow__(_vm->tp_int, py_number_pow);
  277. _vm->bind__pow__(_vm->tp_float, py_number_pow);
  278. /************ int ************/
  279. _vm->bind_constructor<-1>("int", [](VM* vm, ArgsView args) {
  280. if(args.size() == 1+0) return VAR(0);
  281. if(args.size() == 1+1){
  282. if (is_type(args[1], vm->tp_float)) return VAR((i64)CAST(f64, args[1]));
  283. if (is_type(args[1], vm->tp_int)) return args[1];
  284. if (is_type(args[1], vm->tp_bool)) return VAR(_CAST(bool, args[1]) ? 1 : 0);
  285. }
  286. if(args.size() > 1+2) vm->TypeError("int() takes at most 2 arguments");
  287. if (is_type(args[1], vm->tp_str)) {
  288. int base = 10;
  289. if(args.size() == 1+2) base = CAST(i64, args[2]);
  290. const Str& s = CAST(Str&, args[1]);
  291. try{
  292. size_t parsed = 0;
  293. i64 val = Number::stoi(s.str(), &parsed, base);
  294. if(parsed != s.length()) throw std::invalid_argument("<?>");
  295. return VAR(val);
  296. }catch(std::invalid_argument&){
  297. vm->ValueError("invalid literal for int(): " + s.escape());
  298. }
  299. }
  300. vm->TypeError("invalid arguments for int()");
  301. return vm->None;
  302. });
  303. _vm->bind_method<0>("int", "bit_length", [](VM* vm, ArgsView args) {
  304. i64 x = _CAST(i64, args[0]);
  305. if(x < 0) x = -x;
  306. int bits = 0;
  307. while(x){ x >>= 1; bits++; }
  308. return VAR(bits);
  309. });
  310. _vm->bind__floordiv__(_vm->tp_int, [](VM* vm, PyObject* lhs_, PyObject* rhs_) {
  311. i64 rhs = CAST(i64, rhs_);
  312. return VAR(_CAST(i64, lhs_) / rhs);
  313. });
  314. _vm->bind__mod__(_vm->tp_int, [](VM* vm, PyObject* lhs_, PyObject* rhs_) {
  315. i64 rhs = CAST(i64, rhs_);
  316. return VAR(_CAST(i64, lhs_) % rhs);
  317. });
  318. _vm->bind__repr__(_vm->tp_int, [](VM* vm, PyObject* obj) { return VAR(std::to_string(_CAST(i64, obj))); });
  319. _vm->bind__json__(_vm->tp_int, [](VM* vm, PyObject* obj) { return VAR(std::to_string(_CAST(i64, obj))); });
  320. _vm->bind__neg__(_vm->tp_int, [](VM* vm, PyObject* obj) { return VAR(-_CAST(i64, obj)); });
  321. _vm->bind__hash__(_vm->tp_int, [](VM* vm, PyObject* obj) { return _CAST(i64, obj); });
  322. #define INT_BITWISE_OP(name, op) \
  323. _vm->bind##name(_vm->tp_int, [](VM* vm, PyObject* lhs, PyObject* rhs) { \
  324. return VAR(_CAST(i64, lhs) op CAST(i64, rhs)); \
  325. });
  326. INT_BITWISE_OP(__lshift__, <<)
  327. INT_BITWISE_OP(__rshift__, >>)
  328. INT_BITWISE_OP(__and__, &)
  329. INT_BITWISE_OP(__or__, |)
  330. INT_BITWISE_OP(__xor__, ^)
  331. #undef INT_BITWISE_OP
  332. /************ float ************/
  333. _vm->bind_constructor<2>("float", [](VM* vm, ArgsView args) {
  334. if (is_type(args[1], vm->tp_int)) return VAR((f64)CAST(i64, args[1]));
  335. if (is_type(args[1], vm->tp_float)) return args[1];
  336. if (is_type(args[1], vm->tp_bool)) return VAR(_CAST(bool, args[1]) ? 1.0 : 0.0);
  337. if (is_type(args[1], vm->tp_str)) {
  338. const Str& s = CAST(Str&, args[1]);
  339. if(s == "inf") return VAR(INFINITY);
  340. if(s == "-inf") return VAR(-INFINITY);
  341. try{
  342. f64 val = Number::stof(s.str());
  343. return VAR(val);
  344. }catch(std::invalid_argument&){
  345. vm->ValueError("invalid literal for float(): " + s.escape());
  346. }
  347. }
  348. vm->TypeError("float() argument must be a int, float, bool or str");
  349. return vm->None;
  350. });
  351. _vm->bind__hash__(_vm->tp_float, [](VM* vm, PyObject* obj) {
  352. f64 val = _CAST(f64, obj);
  353. return (i64)std::hash<f64>()(val);
  354. });
  355. _vm->bind__neg__(_vm->tp_float, [](VM* vm, PyObject* obj) { return VAR(-_CAST(f64, obj)); });
  356. _vm->bind__repr__(_vm->tp_float, [](VM* vm, PyObject* obj) {
  357. f64 val = _CAST(f64, obj);
  358. if(std::isinf(val) || std::isnan(val)) return VAR(std::to_string(val));
  359. std::stringstream ss;
  360. ss << std::setprecision(std::numeric_limits<f64>::max_digits10-2) << val;
  361. std::string s = ss.str();
  362. if(std::all_of(s.begin()+1, s.end(), isdigit)) s += ".0";
  363. return VAR(s);
  364. });
  365. _vm->bind__json__(_vm->tp_float, [](VM* vm, PyObject* obj) {
  366. f64 val = _CAST(f64, obj);
  367. if(std::isinf(val) || std::isnan(val)) vm->ValueError("cannot jsonify 'nan' or 'inf'");
  368. return VAR(std::to_string(val));
  369. });
  370. /************ str ************/
  371. _vm->bind_constructor<2>("str", PK_LAMBDA(vm->py_str(args[1])));
  372. _vm->bind__hash__(_vm->tp_str, [](VM* vm, PyObject* obj) {
  373. return (i64)_CAST(Str&, obj).hash();
  374. });
  375. _vm->bind__add__(_vm->tp_str, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  376. return VAR(_CAST(Str&, lhs) + CAST(Str&, rhs));
  377. });
  378. _vm->bind__len__(_vm->tp_str, [](VM* vm, PyObject* obj) {
  379. return (i64)_CAST(Str&, obj).u8_length();
  380. });
  381. _vm->bind__mul__(_vm->tp_str, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  382. const Str& self = _CAST(Str&, lhs);
  383. i64 n = CAST(i64, rhs);
  384. std::stringstream ss;
  385. for(i64 i = 0; i < n; i++) ss << self.sv();
  386. return VAR(ss.str());
  387. });
  388. _vm->bind_method<1>("str", "__rmul__", [](VM* vm, ArgsView args) {
  389. const Str& self = _CAST(Str&, args[0]);
  390. i64 n = CAST(i64, args[1]);
  391. std::stringstream ss;
  392. for(i64 i = 0; i < n; i++) ss << self.sv();
  393. return VAR(ss.str());
  394. });
  395. _vm->bind__contains__(_vm->tp_str, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  396. const Str& self = _CAST(Str&, lhs);
  397. return VAR(self.index(CAST(Str&, rhs)) != -1);
  398. });
  399. _vm->bind__str__(_vm->tp_str, [](VM* vm, PyObject* obj) { return obj; });
  400. _vm->bind__iter__(_vm->tp_str, [](VM* vm, PyObject* obj) { return VAR_T(StringIter, obj); });
  401. _vm->bind__repr__(_vm->tp_str, [](VM* vm, PyObject* obj) {
  402. const Str& self = _CAST(Str&, obj);
  403. return VAR(self.escape(true));
  404. });
  405. _vm->bind__json__(_vm->tp_str, [](VM* vm, PyObject* obj) {
  406. const Str& self = _CAST(Str&, obj);
  407. return VAR(self.escape(false));
  408. });
  409. #define BIND_CMP_STR(name, op) \
  410. _vm->bind##name(_vm->tp_str, [](VM* vm, PyObject* lhs, PyObject* rhs) { \
  411. if(!is_non_tagged_type(rhs, vm->tp_str)) return vm->NotImplemented; \
  412. return VAR(_CAST(Str&, lhs) op _CAST(Str&, rhs)); \
  413. });
  414. BIND_CMP_STR(__eq__, ==)
  415. BIND_CMP_STR(__lt__, <)
  416. BIND_CMP_STR(__le__, <=)
  417. BIND_CMP_STR(__gt__, >)
  418. BIND_CMP_STR(__ge__, >=)
  419. #undef BIND_CMP_STR
  420. _vm->bind__getitem__(_vm->tp_str, [](VM* vm, PyObject* obj, PyObject* index) {
  421. const Str& self = _CAST(Str&, obj);
  422. if(is_non_tagged_type(index, vm->tp_slice)){
  423. const Slice& s = _CAST(Slice&, index);
  424. int start, stop, step;
  425. vm->parse_int_slice(s, self.u8_length(), start, stop, step);
  426. return VAR(self.u8_slice(start, stop, step));
  427. }
  428. int i = CAST(int, index);
  429. i = vm->normalized_index(i, self.u8_length());
  430. return VAR(self.u8_getitem(i));
  431. });
  432. _vm->bind_method<-1>("str", "replace", [](VM* vm, ArgsView args) {
  433. if(args.size() != 1+2 && args.size() != 1+3) vm->TypeError("replace() takes 2 or 3 arguments");
  434. const Str& self = _CAST(Str&, args[0]);
  435. const Str& old = CAST(Str&, args[1]);
  436. if(old.empty()) vm->ValueError("empty substring");
  437. const Str& new_ = CAST(Str&, args[2]);
  438. int count = args.size()==1+3 ? CAST(int, args[3]) : -1;
  439. return VAR(self.replace(old, new_, count));
  440. });
  441. _vm->bind_method<1>("str", "index", [](VM* vm, ArgsView args) {
  442. const Str& self = _CAST(Str&, args[0]);
  443. const Str& sub = CAST(Str&, args[1]);
  444. int index = self.index(sub);
  445. if(index == -1) vm->ValueError("substring not found");
  446. return VAR(index);
  447. });
  448. _vm->bind_method<1>("str", "find", [](VM* vm, ArgsView args) {
  449. const Str& self = _CAST(Str&, args[0]);
  450. const Str& sub = CAST(Str&, args[1]);
  451. return VAR(self.index(sub));
  452. });
  453. _vm->bind_method<1>("str", "startswith", [](VM* vm, ArgsView args) {
  454. const Str& self = _CAST(Str&, args[0]);
  455. const Str& prefix = CAST(Str&, args[1]);
  456. return VAR(self.index(prefix) == 0);
  457. });
  458. _vm->bind_method<1>("str", "endswith", [](VM* vm, ArgsView args) {
  459. const Str& self = _CAST(Str&, args[0]);
  460. const Str& suffix = CAST(Str&, args[1]);
  461. int offset = self.length() - suffix.length();
  462. if(offset < 0) return vm->False;
  463. bool ok = memcmp(self.data+offset, suffix.data, suffix.length()) == 0;
  464. return VAR(ok);
  465. });
  466. _vm->bind_method<0>("str", "encode", [](VM* vm, ArgsView args) {
  467. const Str& self = _CAST(Str&, args[0]);
  468. std::vector<char> buffer(self.length());
  469. memcpy(buffer.data(), self.data, self.length());
  470. return VAR(Bytes(std::move(buffer)));
  471. });
  472. _vm->bind_method<1>("str", "join", [](VM* vm, ArgsView args) {
  473. auto _lock = vm->heap.gc_scope_lock();
  474. const Str& self = _CAST(Str&, args[0]);
  475. FastStrStream ss;
  476. PyObject* it = vm->py_iter(args[1]); // strong ref
  477. PyObject* obj = vm->py_next(it);
  478. while(obj != vm->StopIteration){
  479. if(!ss.empty()) ss << self;
  480. ss << CAST(Str&, obj);
  481. obj = vm->py_next(it);
  482. }
  483. return VAR(ss.str());
  484. });
  485. _vm->bind_method<0>("str", "to_c_str", [](VM* vm, ArgsView args){
  486. const Str& self = _CAST(Str&, args[0]);
  487. return VAR(self.c_str_dup());
  488. });
  489. _vm->bind_func<1>("str", "from_c_str", [](VM* vm, ArgsView args){
  490. char* p = CAST(char*, args[0]);
  491. return VAR(Str(p));
  492. });
  493. _vm->bind_method<0>("str", "lower", [](VM* vm, ArgsView args) {
  494. const Str& self = _CAST(Str&, args[0]);
  495. return VAR(self.lower());
  496. });
  497. _vm->bind_method<0>("str", "upper", [](VM* vm, ArgsView args) {
  498. const Str& self = _CAST(Str&, args[0]);
  499. return VAR(self.upper());
  500. });
  501. /************ list ************/
  502. _vm->bind_constructor<-1>("list", [](VM* vm, ArgsView args) {
  503. if(args.size() == 1+0) return VAR(List());
  504. if(args.size() == 1+1){
  505. return vm->py_list(args[1]);
  506. }
  507. vm->TypeError("list() takes 0 or 1 arguments");
  508. return vm->None;
  509. });
  510. _vm->bind__contains__(_vm->tp_list, [](VM* vm, PyObject* obj, PyObject* item) {
  511. List& self = _CAST(List&, obj);
  512. for(PyObject* i: self) if(vm->py_equals(i, item)) return vm->True;
  513. return vm->False;
  514. });
  515. _vm->bind_method<1>("list", "count", [](VM* vm, ArgsView args) {
  516. List& self = _CAST(List&, args[0]);
  517. int count = 0;
  518. for(PyObject* i: self) if(vm->py_equals(i, args[1])) count++;
  519. return VAR(count);
  520. });
  521. _vm->bind__eq__(_vm->tp_list, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  522. List& a = _CAST(List&, lhs);
  523. if(!is_non_tagged_type(rhs, vm->tp_list)) return vm->NotImplemented;
  524. List& b = _CAST(List&, rhs);
  525. if(a.size() != b.size()) return vm->False;
  526. for(int i=0; i<a.size(); i++){
  527. if(!vm->py_equals(a[i], b[i])) return vm->False;
  528. }
  529. return vm->True;
  530. });
  531. _vm->bind_method<1>("list", "index", [](VM* vm, ArgsView args) {
  532. List& self = _CAST(List&, args[0]);
  533. PyObject* obj = args[1];
  534. for(int i=0; i<self.size(); i++){
  535. if(vm->py_equals(self[i], obj)) return VAR(i);
  536. }
  537. vm->ValueError(_CAST(Str&, vm->py_repr(obj)) + " is not in list");
  538. return vm->None;
  539. });
  540. _vm->bind_method<1>("list", "remove", [](VM* vm, ArgsView args) {
  541. List& self = _CAST(List&, args[0]);
  542. PyObject* obj = args[1];
  543. for(int i=0; i<self.size(); i++){
  544. if(vm->py_equals(self[i], obj)){
  545. self.erase(i);
  546. return vm->None;
  547. }
  548. }
  549. vm->ValueError(_CAST(Str&, vm->py_repr(obj)) + " is not in list");
  550. return vm->None;
  551. });
  552. _vm->bind_method<-1>("list", "pop", [](VM* vm, ArgsView args) {
  553. List& self = _CAST(List&, args[0]);
  554. if(args.size() == 1+0){
  555. if(self.empty()) vm->IndexError("pop from empty list");
  556. return self.popx_back();
  557. }
  558. if(args.size() == 1+1){
  559. int index = CAST(int, args[1]);
  560. index = vm->normalized_index(index, self.size());
  561. PyObject* ret = self[index];
  562. self.erase(index);
  563. return ret;
  564. }
  565. vm->TypeError("pop() takes at most 1 argument");
  566. return vm->None;
  567. });
  568. _vm->bind_method<1>("list", "append", [](VM* vm, ArgsView args) {
  569. List& self = _CAST(List&, args[0]);
  570. self.push_back(args[1]);
  571. return vm->None;
  572. });
  573. _vm->bind_method<1>("list", "extend", [](VM* vm, ArgsView args) {
  574. auto _lock = vm->heap.gc_scope_lock();
  575. List& self = _CAST(List&, args[0]);
  576. PyObject* it = vm->py_iter(args[1]); // strong ref
  577. PyObject* obj = vm->py_next(it);
  578. while(obj != vm->StopIteration){
  579. self.push_back(obj);
  580. obj = vm->py_next(it);
  581. }
  582. return vm->None;
  583. });
  584. _vm->bind_method<0>("list", "reverse", [](VM* vm, ArgsView args) {
  585. List& self = _CAST(List&, args[0]);
  586. std::reverse(self.begin(), self.end());
  587. return vm->None;
  588. });
  589. _vm->bind__mul__(_vm->tp_list, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  590. const List& self = _CAST(List&, lhs);
  591. if(!is_int(rhs)) return vm->NotImplemented;
  592. int n = _CAST(int, rhs);
  593. List result;
  594. result.reserve(self.size() * n);
  595. for(int i = 0; i < n; i++) result.extend(self);
  596. return VAR(std::move(result));
  597. });
  598. _vm->bind_method<1>("list", "__rmul__", [](VM* vm, ArgsView args) {
  599. const List& self = _CAST(List&, args[0]);
  600. if(!is_int(args[1])) return vm->NotImplemented;
  601. int n = _CAST(int, args[1]);
  602. List result;
  603. result.reserve(self.size() * n);
  604. for(int i = 0; i < n; i++) result.extend(self);
  605. return VAR(std::move(result));
  606. });
  607. _vm->bind_method<2>("list", "insert", [](VM* vm, ArgsView args) {
  608. List& self = _CAST(List&, args[0]);
  609. int index = CAST(int, args[1]);
  610. if(index < 0) index += self.size();
  611. if(index < 0) index = 0;
  612. if(index > self.size()) index = self.size();
  613. self.insert(index, args[2]);
  614. return vm->None;
  615. });
  616. _vm->bind_method<0>("list", "clear", [](VM* vm, ArgsView args) {
  617. _CAST(List&, args[0]).clear();
  618. return vm->None;
  619. });
  620. _vm->bind_method<0>("list", "copy", PK_LAMBDA(VAR(_CAST(List, args[0]))));
  621. _vm->bind__hash__(_vm->tp_list, [](VM* vm, PyObject* obj) {
  622. vm->TypeError("unhashable type: 'list'");
  623. return (i64)0;
  624. });
  625. _vm->bind__add__(_vm->tp_list, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  626. const List& self = _CAST(List&, lhs);
  627. const List& other = CAST(List&, rhs);
  628. List new_list(self); // copy construct
  629. new_list.extend(other);
  630. return VAR(std::move(new_list));
  631. });
  632. _vm->bind__len__(_vm->tp_list, [](VM* vm, PyObject* obj) {
  633. return (i64)_CAST(List&, obj).size();
  634. });
  635. _vm->bind__iter__(_vm->tp_list, [](VM* vm, PyObject* obj) {
  636. List& self = _CAST(List&, obj);
  637. return VAR_T(ArrayIter, obj, self.begin(), self.end());
  638. });
  639. _vm->bind__getitem__(_vm->tp_list, PyArrayGetItem<List>);
  640. _vm->bind__setitem__(_vm->tp_list, [](VM* vm, PyObject* obj, PyObject* index, PyObject* value){
  641. List& self = _CAST(List&, obj);
  642. int i = CAST(int, index);
  643. i = vm->normalized_index(i, self.size());
  644. self[i] = value;
  645. });
  646. _vm->bind__delitem__(_vm->tp_list, [](VM* vm, PyObject* obj, PyObject* index){
  647. List& self = _CAST(List&, obj);
  648. int i = CAST(int, index);
  649. i = vm->normalized_index(i, self.size());
  650. self.erase(i);
  651. });
  652. /************ tuple ************/
  653. _vm->bind_constructor<-1>("tuple", [](VM* vm, ArgsView args) {
  654. if(args.size() == 1+0) return VAR(Tuple(0));
  655. if(args.size() == 1+1){
  656. List list = CAST(List, vm->py_list(args[1]));
  657. return VAR(Tuple(std::move(list)));
  658. }
  659. vm->TypeError("tuple() takes at most 1 argument");
  660. return vm->None;
  661. });
  662. _vm->bind__contains__(_vm->tp_tuple, [](VM* vm, PyObject* obj, PyObject* item) {
  663. Tuple& self = _CAST(Tuple&, obj);
  664. for(PyObject* i: self) if(vm->py_equals(i, item)) return vm->True;
  665. return vm->False;
  666. });
  667. _vm->bind_method<1>("tuple", "count", [](VM* vm, ArgsView args) {
  668. Tuple& self = _CAST(Tuple&, args[0]);
  669. int count = 0;
  670. for(PyObject* i: self) if(vm->py_equals(i, args[1])) count++;
  671. return VAR(count);
  672. });
  673. _vm->bind__eq__(_vm->tp_tuple, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  674. const Tuple& self = _CAST(Tuple&, lhs);
  675. if(!is_non_tagged_type(rhs, vm->tp_tuple)) return vm->NotImplemented;
  676. const Tuple& other = _CAST(Tuple&, rhs);
  677. if(self.size() != other.size()) return vm->False;
  678. for(int i = 0; i < self.size(); i++) {
  679. if(!vm->py_equals(self[i], other[i])) return vm->False;
  680. }
  681. return vm->True;
  682. });
  683. _vm->bind__hash__(_vm->tp_tuple, [](VM* vm, PyObject* obj) {
  684. i64 x = 1000003;
  685. const Tuple& items = CAST(Tuple&, obj);
  686. for (int i=0; i<items.size(); i++) {
  687. i64 y = vm->py_hash(items[i]);
  688. // recommended by Github Copilot
  689. x = x ^ (y + 0x9e3779b9 + (x << 6) + (x >> 2));
  690. }
  691. return x;
  692. });
  693. _vm->bind__iter__(_vm->tp_tuple, [](VM* vm, PyObject* obj) {
  694. Tuple& self = _CAST(Tuple&, obj);
  695. return VAR_T(ArrayIter, obj, self.begin(), self.end());
  696. });
  697. _vm->bind__getitem__(_vm->tp_tuple, PyArrayGetItem<Tuple>);
  698. _vm->bind__len__(_vm->tp_tuple, [](VM* vm, PyObject* obj) {
  699. return (i64)_CAST(Tuple&, obj).size();
  700. });
  701. /************ bool ************/
  702. _vm->bind_constructor<2>("bool", PK_LAMBDA(VAR(vm->py_bool(args[1]))));
  703. _vm->bind__hash__(_vm->tp_bool, [](VM* vm, PyObject* obj) {
  704. return (i64)_CAST(bool, obj);
  705. });
  706. _vm->bind__repr__(_vm->tp_bool, [](VM* vm, PyObject* self) {
  707. bool val = _CAST(bool, self);
  708. return VAR(val ? "True" : "False");
  709. });
  710. _vm->bind__json__(_vm->tp_bool, [](VM* vm, PyObject* self) {
  711. bool val = _CAST(bool, self);
  712. return VAR(val ? "true" : "false");
  713. });
  714. const static auto f_bool_add = [](VM* vm, PyObject* lhs, PyObject* rhs) -> PyObject* {
  715. int x = (int)_CAST(bool, lhs);
  716. if(is_int(rhs)) return VAR(x + _CAST(int, rhs));
  717. if(rhs == vm->True) return VAR(x + 1);
  718. if(rhs == vm->False) return VAR(x);
  719. return vm->NotImplemented;
  720. };
  721. const static auto f_bool_mul = [](VM* vm, PyObject* lhs, PyObject* rhs) -> PyObject* {
  722. int x = (int)_CAST(bool, lhs);
  723. if(is_int(rhs)) return VAR(x * _CAST(int, rhs));
  724. if(rhs == vm->True) return VAR(x);
  725. if(rhs == vm->False) return VAR(0);
  726. return vm->NotImplemented;
  727. };
  728. _vm->bind__add__(_vm->tp_bool, f_bool_add);
  729. _vm->bind_method<1>("bool", "__radd__", [](VM* vm, ArgsView args){
  730. return f_bool_add(vm, args[0], args[1]);
  731. });
  732. _vm->bind__mul__(_vm->tp_bool, f_bool_mul);
  733. _vm->bind_method<1>("bool", "__rmul__", [](VM* vm, ArgsView args){
  734. return f_bool_mul(vm, args[0], args[1]);
  735. });
  736. _vm->bind__and__(_vm->tp_bool, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  737. return VAR(_CAST(bool, lhs) && CAST(bool, rhs));
  738. });
  739. _vm->bind__or__(_vm->tp_bool, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  740. return VAR(_CAST(bool, lhs) || CAST(bool, rhs));
  741. });
  742. _vm->bind__xor__(_vm->tp_bool, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  743. return VAR(_CAST(bool, lhs) != CAST(bool, rhs));
  744. });
  745. _vm->bind__eq__(_vm->tp_bool, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  746. if(is_non_tagged_type(rhs, vm->tp_bool)) return VAR(lhs == rhs);
  747. if(is_int(rhs)) return VAR(_CAST(bool, lhs) == (bool)CAST(i64, rhs));
  748. return vm->NotImplemented;
  749. });
  750. _vm->bind__repr__(_vm->_type("ellipsis"), [](VM* vm, PyObject* self) {
  751. return VAR("...");
  752. });
  753. _vm->bind__repr__(_vm->_type("NotImplementedType"), [](VM* vm, PyObject* self) {
  754. return VAR("NotImplemented");
  755. });
  756. /************ bytes ************/
  757. _vm->bind_constructor<2>("bytes", [](VM* vm, ArgsView args){
  758. List& list = CAST(List&, args[1]);
  759. std::vector<char> buffer(list.size());
  760. for(int i=0; i<list.size(); i++){
  761. i64 b = CAST(i64, list[i]);
  762. if(b<0 || b>255) vm->ValueError("byte must be in range[0, 256)");
  763. buffer[i] = (char)b;
  764. }
  765. return VAR(Bytes(std::move(buffer)));
  766. });
  767. _vm->bind__getitem__(_vm->tp_bytes, [](VM* vm, PyObject* obj, PyObject* index) {
  768. const Bytes& self = _CAST(Bytes&, obj);
  769. int i = CAST(int, index);
  770. i = vm->normalized_index(i, self.size());
  771. return VAR(self[i]);
  772. });
  773. _vm->bind__hash__(_vm->tp_bytes, [](VM* vm, PyObject* obj) {
  774. const Bytes& self = _CAST(Bytes&, obj);
  775. return (i64)std::hash<std::string>()(self.str());
  776. });
  777. _vm->bind__repr__(_vm->tp_bytes, [](VM* vm, PyObject* obj) {
  778. const Bytes& self = _CAST(Bytes&, obj);
  779. std::stringstream ss;
  780. ss << "b'";
  781. for(int i=0; i<self.size(); i++){
  782. ss << "\\x" << std::hex << std::setw(2) << std::setfill('0') << self[i];
  783. }
  784. ss << "'";
  785. return VAR(ss.str());
  786. });
  787. _vm->bind__len__(_vm->tp_bytes, [](VM* vm, PyObject* obj) {
  788. return (i64)_CAST(Bytes&, obj).size();
  789. });
  790. _vm->bind_method<0>("bytes", "decode", [](VM* vm, ArgsView args) {
  791. const Bytes& self = _CAST(Bytes&, args[0]);
  792. // TODO: check encoding is utf-8
  793. return VAR(Str(self.str()));
  794. });
  795. _vm->bind_method<0>("bytes", "to_char_array", [](VM* vm, ArgsView args) {
  796. const Bytes& self = _CAST(Bytes&, args[0]);
  797. void* buffer = malloc(self.size());
  798. memcpy(buffer, self.data(), self.size());
  799. return VAR_T(VoidP, buffer);
  800. });
  801. _vm->bind_func<2>("bytes", "from_char_array", [](VM* vm, ArgsView args) {
  802. const VoidP& data = _CAST(VoidP&, args[0]);
  803. int size = CAST(int, args[1]);
  804. std::vector<char> buffer(size);
  805. memcpy(buffer.data(), data.ptr, size);
  806. return VAR(Bytes(std::move(buffer)));
  807. });
  808. _vm->bind__eq__(_vm->tp_bytes, [](VM* vm, PyObject* lhs, PyObject* rhs) {
  809. if(!is_non_tagged_type(rhs, vm->tp_bytes)) return vm->NotImplemented;
  810. return VAR(_CAST(Bytes&, lhs) == _CAST(Bytes&, rhs));
  811. });
  812. /************ slice ************/
  813. _vm->bind_constructor<4>("slice", [](VM* vm, ArgsView args) {
  814. return VAR(Slice(args[1], args[2], args[3]));
  815. });
  816. _vm->bind__repr__(_vm->tp_slice, [](VM* vm, PyObject* obj) {
  817. const Slice& self = _CAST(Slice&, obj);
  818. std::stringstream ss;
  819. ss << "slice(";
  820. ss << CAST(Str, vm->py_repr(self.start)) << ", ";
  821. ss << CAST(Str, vm->py_repr(self.stop)) << ", ";
  822. ss << CAST(Str, vm->py_repr(self.step)) << ")";
  823. return VAR(ss.str());
  824. });
  825. /************ mappingproxy ************/
  826. _vm->bind_method<0>("mappingproxy", "keys", [](VM* vm, ArgsView args) {
  827. MappingProxy& self = _CAST(MappingProxy&, args[0]);
  828. List keys;
  829. for(StrName name : self.attr().keys()) keys.push_back(VAR(name.sv()));
  830. return VAR(std::move(keys));
  831. });
  832. _vm->bind_method<0>("mappingproxy", "values", [](VM* vm, ArgsView args) {
  833. MappingProxy& self = _CAST(MappingProxy&, args[0]);
  834. List values;
  835. for(auto& item : self.attr().items()) values.push_back(item.second);
  836. return VAR(std::move(values));
  837. });
  838. _vm->bind_method<0>("mappingproxy", "items", [](VM* vm, ArgsView args) {
  839. MappingProxy& self = _CAST(MappingProxy&, args[0]);
  840. List items;
  841. for(auto& item : self.attr().items()){
  842. PyObject* t = VAR(Tuple({VAR(item.first.sv()), item.second}));
  843. items.push_back(std::move(t));
  844. }
  845. return VAR(std::move(items));
  846. });
  847. _vm->bind__len__(_vm->tp_mappingproxy, [](VM* vm, PyObject* obj) {
  848. return (i64)_CAST(MappingProxy&, obj).attr().size();
  849. });
  850. _vm->bind__getitem__(_vm->tp_mappingproxy, [](VM* vm, PyObject* obj, PyObject* index) {
  851. MappingProxy& self = _CAST(MappingProxy&, obj);
  852. StrName key = CAST(Str&, index);
  853. PyObject* ret = self.attr().try_get(key);
  854. if(ret == nullptr) vm->AttributeError(key.sv());
  855. return ret;
  856. });
  857. _vm->bind__repr__(_vm->tp_mappingproxy, [](VM* vm, PyObject* obj) {
  858. MappingProxy& self = _CAST(MappingProxy&, obj);
  859. std::stringstream ss;
  860. ss << "mappingproxy({";
  861. bool first = true;
  862. for(auto& item : self.attr().items()){
  863. if(!first) ss << ", ";
  864. first = false;
  865. ss << item.first.escape() << ": " << CAST(Str, vm->py_repr(item.second));
  866. }
  867. ss << "})";
  868. return VAR(ss.str());
  869. });
  870. _vm->bind__contains__(_vm->tp_mappingproxy, [](VM* vm, PyObject* obj, PyObject* key) {
  871. MappingProxy& self = _CAST(MappingProxy&, obj);
  872. return VAR(self.attr().contains(CAST(Str&, key)));
  873. });
  874. /************ dict ************/
  875. _vm->bind_constructor<-1>("dict", [](VM* vm, ArgsView args){
  876. return VAR(Dict(vm));
  877. });
  878. _vm->bind_method<-1>("dict", "__init__", [](VM* vm, ArgsView args){
  879. if(args.size() == 1+0) return vm->None;
  880. if(args.size() == 1+1){
  881. auto _lock = vm->heap.gc_scope_lock();
  882. Dict& self = _CAST(Dict&, args[0]);
  883. List& list = CAST(List&, args[1]);
  884. for(PyObject* item : list){
  885. Tuple& t = CAST(Tuple&, item);
  886. if(t.size() != 2){
  887. vm->ValueError("dict() takes an iterable of tuples (key, value)");
  888. return vm->None;
  889. }
  890. self.set(t[0], t[1]);
  891. }
  892. return vm->None;
  893. }
  894. vm->TypeError("dict() takes at most 1 argument");
  895. return vm->None;
  896. });
  897. _vm->bind__len__(_vm->tp_dict, [](VM* vm, PyObject* obj) {
  898. return (i64)_CAST(Dict&, obj).size();
  899. });
  900. _vm->bind__getitem__(_vm->tp_dict, [](VM* vm, PyObject* obj, PyObject* index) {
  901. Dict& self = _CAST(Dict&, obj);
  902. PyObject* ret = self.try_get(index);
  903. if(ret == nullptr) vm->KeyError(index);
  904. return ret;
  905. });
  906. _vm->bind__setitem__(_vm->tp_dict, [](VM* vm, PyObject* obj, PyObject* key, PyObject* value) {
  907. Dict& self = _CAST(Dict&, obj);
  908. self.set(key, value);
  909. });
  910. _vm->bind__delitem__(_vm->tp_dict, [](VM* vm, PyObject* obj, PyObject* key) {
  911. Dict& self = _CAST(Dict&, obj);
  912. if(!self.contains(key)) vm->KeyError(key);
  913. self.erase(key);
  914. });
  915. _vm->bind_method<1>("dict", "pop", [](VM* vm, ArgsView args) {
  916. Dict& self = _CAST(Dict&, args[0]);
  917. PyObject* value = self.try_get(args[1]);
  918. if(value == nullptr) vm->KeyError(args[1]);
  919. self.erase(args[1]);
  920. return value;
  921. });
  922. _vm->bind__contains__(_vm->tp_dict, [](VM* vm, PyObject* obj, PyObject* key) {
  923. Dict& self = _CAST(Dict&, obj);
  924. return VAR(self.contains(key));
  925. });
  926. _vm->bind__iter__(_vm->tp_dict, [](VM* vm, PyObject* obj) {
  927. const Dict& self = _CAST(Dict&, obj);
  928. return vm->py_iter(VAR(self.keys()));
  929. });
  930. _vm->bind_method<-1>("dict", "get", [](VM* vm, ArgsView args) {
  931. Dict& self = _CAST(Dict&, args[0]);
  932. if(args.size() == 1+1){
  933. PyObject* ret = self.try_get(args[1]);
  934. if(ret != nullptr) return ret;
  935. return vm->None;
  936. }else if(args.size() == 1+2){
  937. PyObject* ret = self.try_get(args[1]);
  938. if(ret != nullptr) return ret;
  939. return args[2];
  940. }
  941. vm->TypeError("get() takes at most 2 arguments");
  942. return vm->None;
  943. });
  944. _vm->bind_method<0>("dict", "keys", [](VM* vm, ArgsView args) {
  945. const Dict& self = _CAST(Dict&, args[0]);
  946. return VAR(self.keys());
  947. });
  948. _vm->bind_method<0>("dict", "values", [](VM* vm, ArgsView args) {
  949. const Dict& self = _CAST(Dict&, args[0]);
  950. return VAR(self.values());
  951. });
  952. _vm->bind_method<0>("dict", "items", [](VM* vm, ArgsView args) {
  953. const Dict& self = _CAST(Dict&, args[0]);
  954. Tuple items(self.size());
  955. int j = 0;
  956. self.apply([&](PyObject* k, PyObject* v){
  957. items[j++] = VAR(Tuple({k, v}));
  958. });
  959. return VAR(std::move(items));
  960. });
  961. _vm->bind_method<1>("dict", "update", [](VM* vm, ArgsView args) {
  962. Dict& self = _CAST(Dict&, args[0]);
  963. const Dict& other = CAST(Dict&, args[1]);
  964. self.update(other);
  965. return vm->None;
  966. });
  967. _vm->bind_method<0>("dict", "copy", [](VM* vm, ArgsView args) {
  968. const Dict& self = _CAST(Dict&, args[0]);
  969. return VAR(self);
  970. });
  971. _vm->bind_method<0>("dict", "clear", [](VM* vm, ArgsView args) {
  972. Dict& self = _CAST(Dict&, args[0]);
  973. self.clear();
  974. return vm->None;
  975. });
  976. _vm->bind__repr__(_vm->tp_dict, [](VM* vm, PyObject* obj) {
  977. Dict& self = _CAST(Dict&, obj);
  978. std::stringstream ss;
  979. ss << "{";
  980. bool first = true;
  981. self.apply([&](PyObject* k, PyObject* v){
  982. if(!first) ss << ", ";
  983. first = false;
  984. Str key = CAST(Str&, vm->py_repr(k));
  985. Str value = CAST(Str&, vm->py_repr(v));
  986. ss << key << ": " << value;
  987. });
  988. ss << "}";
  989. return VAR(ss.str());
  990. });
  991. _vm->bind__json__(_vm->tp_dict, [](VM* vm, PyObject* obj) {
  992. Dict& self = _CAST(Dict&, obj);
  993. std::stringstream ss;
  994. ss << "{";
  995. bool first = true;
  996. self.apply([&](PyObject* k, PyObject* v){
  997. if(!first) ss << ", ";
  998. first = false;
  999. Str key = CAST(Str&, k).escape(false);
  1000. Str value = CAST(Str&, vm->py_json(v));
  1001. ss << key << ": " << value;
  1002. });
  1003. ss << "}";
  1004. return VAR(ss.str());
  1005. });
  1006. _vm->bind__eq__(_vm->tp_dict, [](VM* vm, PyObject* a, PyObject* b) {
  1007. Dict& self = _CAST(Dict&, a);
  1008. if(!is_non_tagged_type(b, vm->tp_dict)) return vm->NotImplemented;
  1009. Dict& other = _CAST(Dict&, b);
  1010. if(self.size() != other.size()) return vm->False;
  1011. for(int i=0; i<self._capacity; i++){
  1012. auto item = self._items[i];
  1013. if(item.first == nullptr) continue;
  1014. PyObject* value = other.try_get(item.first);
  1015. if(value == nullptr) return vm->False;
  1016. if(!vm->py_equals(item.second, value)) return vm->False;
  1017. }
  1018. return vm->True;
  1019. });
  1020. /************ property ************/
  1021. _vm->bind_constructor<-1>("property", [](VM* vm, ArgsView args) {
  1022. if(args.size() == 1+1){
  1023. return VAR(Property(args[1], vm->None));
  1024. }else if(args.size() == 1+2){
  1025. return VAR(Property(args[1], args[2]));
  1026. }
  1027. vm->TypeError("property() takes at most 2 arguments");
  1028. return vm->None;
  1029. });
  1030. RangeIter::register_class(_vm, _vm->builtins);
  1031. ArrayIter::register_class(_vm, _vm->builtins);
  1032. StringIter::register_class(_vm, _vm->builtins);
  1033. Generator::register_class(_vm, _vm->builtins);
  1034. }
  1035. inline void add_module_timeit(VM* vm){
  1036. PyObject* mod = vm->new_module("timeit");
  1037. vm->bind_func<2>(mod, "timeit", [](VM* vm, ArgsView args) {
  1038. PyObject* f = args[0];
  1039. i64 iters = CAST(i64, args[1]);
  1040. auto now = std::chrono::system_clock::now();
  1041. for(i64 i=0; i<iters; i++) vm->call(f);
  1042. auto end = std::chrono::system_clock::now();
  1043. f64 elapsed = std::chrono::duration_cast<std::chrono::milliseconds>(end - now).count() / 1000.0;
  1044. return VAR(elapsed);
  1045. });
  1046. }
  1047. inline void add_module_time(VM* vm){
  1048. PyObject* mod = vm->new_module("time");
  1049. vm->bind_func<0>(mod, "time", [](VM* vm, ArgsView args) {
  1050. auto now = std::chrono::system_clock::now();
  1051. return VAR(std::chrono::duration_cast<std::chrono::milliseconds>(now.time_since_epoch()).count() / 1000.0);
  1052. });
  1053. vm->bind_func<1>(mod, "sleep", [](VM* vm, ArgsView args) {
  1054. f64 seconds = CAST_F(args[0]);
  1055. auto begin = std::chrono::system_clock::now();
  1056. while(true){
  1057. auto now = std::chrono::system_clock::now();
  1058. f64 elapsed = std::chrono::duration_cast<std::chrono::milliseconds>(now - begin).count() / 1000.0;
  1059. if(elapsed >= seconds) break;
  1060. }
  1061. return vm->None;
  1062. });
  1063. vm->bind_func<0>(mod, "localtime", [](VM* vm, ArgsView args) {
  1064. auto now = std::chrono::system_clock::now();
  1065. std::time_t t = std::chrono::system_clock::to_time_t(now);
  1066. std::tm* tm = std::localtime(&t);
  1067. Dict d(vm);
  1068. d.set(VAR("tm_year"), VAR(tm->tm_year + 1900));
  1069. d.set(VAR("tm_mon"), VAR(tm->tm_mon + 1));
  1070. d.set(VAR("tm_mday"), VAR(tm->tm_mday));
  1071. d.set(VAR("tm_hour"), VAR(tm->tm_hour));
  1072. d.set(VAR("tm_min"), VAR(tm->tm_min));
  1073. d.set(VAR("tm_sec"), VAR(tm->tm_sec + 1));
  1074. d.set(VAR("tm_wday"), VAR((tm->tm_wday + 6) % 7));
  1075. d.set(VAR("tm_yday"), VAR(tm->tm_yday + 1));
  1076. d.set(VAR("tm_isdst"), VAR(tm->tm_isdst));
  1077. return VAR(std::move(d));
  1078. });
  1079. }
  1080. struct PyREPL{
  1081. PY_CLASS(PyREPL, sys, _repl)
  1082. REPL* repl;
  1083. PyREPL(VM* vm){ repl = new REPL(vm); }
  1084. ~PyREPL(){ delete repl; }
  1085. PyREPL(const PyREPL&) = delete;
  1086. PyREPL& operator=(const PyREPL&) = delete;
  1087. PyREPL(PyREPL&& other) noexcept{
  1088. repl = other.repl;
  1089. other.repl = nullptr;
  1090. }
  1091. struct TempOut{
  1092. PrintFunc backup;
  1093. VM* vm;
  1094. TempOut(VM* vm, PrintFunc f){
  1095. this->vm = vm;
  1096. this->backup = vm->_stdout;
  1097. vm->_stdout = f;
  1098. }
  1099. ~TempOut(){
  1100. vm->_stdout = backup;
  1101. }
  1102. TempOut(const TempOut&) = delete;
  1103. TempOut& operator=(const TempOut&) = delete;
  1104. TempOut(TempOut&&) = delete;
  1105. TempOut& operator=(TempOut&&) = delete;
  1106. };
  1107. static void _register(VM* vm, PyObject* mod, PyObject* type){
  1108. vm->bind_constructor<1>(type, [](VM* vm, ArgsView args){
  1109. return VAR_T(PyREPL, vm);
  1110. });
  1111. vm->bind_method<1>(type, "input", [](VM* vm, ArgsView args){
  1112. PyREPL& self = _CAST(PyREPL&, args[0]);
  1113. const Str& s = CAST(Str&, args[1]);
  1114. static std::stringstream ss_out;
  1115. ss_out.str("");
  1116. TempOut _(vm, [](VM* vm, const Str& s){ ss_out << s; });
  1117. bool ok = self.repl->input(s.str());
  1118. return VAR(Tuple({VAR(ok), VAR(ss_out.str())}));
  1119. });
  1120. }
  1121. };
  1122. inline void add_module_sys(VM* vm){
  1123. PyObject* mod = vm->new_module("sys");
  1124. PyREPL::register_class(vm, mod);
  1125. vm->setattr(mod, "version", VAR(PK_VERSION));
  1126. PyObject* stdout_ = vm->heap.gcnew<DummyInstance>(vm->tp_object, {});
  1127. PyObject* stderr_ = vm->heap.gcnew<DummyInstance>(vm->tp_object, {});
  1128. PyObject* stdin_ = vm->heap.gcnew<DummyInstance>(vm->tp_object, {});
  1129. vm->setattr(mod, "stdout", stdout_);
  1130. vm->setattr(mod, "stderr", stderr_);
  1131. vm->setattr(mod, "stdin", stdin_);
  1132. vm->bind_func<1>(stdout_, "write", [](VM* vm, ArgsView args) {
  1133. vm->_stdout(vm, CAST(Str&, args[0]));
  1134. return vm->None;
  1135. });
  1136. vm->bind_func<1>(stderr_, "write", [](VM* vm, ArgsView args) {
  1137. vm->_stderr(vm, CAST(Str&, args[0]));
  1138. return vm->None;
  1139. });
  1140. }
  1141. inline void add_module_json(VM* vm){
  1142. PyObject* mod = vm->new_module("json");
  1143. vm->bind_func<1>(mod, "loads", [](VM* vm, ArgsView args) {
  1144. const Str& expr = CAST(Str&, args[0]);
  1145. CodeObject_ code = vm->compile(expr, "<json>", JSON_MODE);
  1146. return vm->_exec(code, vm->top_frame()->_module);
  1147. });
  1148. vm->bind_func<1>(mod, "dumps", [](VM* vm, ArgsView args) {
  1149. return vm->py_json(args[0]);
  1150. });
  1151. }
  1152. // https://docs.python.org/3.5/library/math.html
  1153. inline void add_module_math(VM* vm){
  1154. PyObject* mod = vm->new_module("math");
  1155. mod->attr().set("pi", VAR(3.1415926535897932384));
  1156. mod->attr().set("e" , VAR(2.7182818284590452354));
  1157. mod->attr().set("inf", VAR(std::numeric_limits<double>::infinity()));
  1158. mod->attr().set("nan", VAR(std::numeric_limits<double>::quiet_NaN()));
  1159. vm->bind_func<1>(mod, "ceil", PK_LAMBDA(VAR((i64)std::ceil(CAST_F(args[0])))));
  1160. vm->bind_func<1>(mod, "fabs", PK_LAMBDA(VAR(std::fabs(CAST_F(args[0])))));
  1161. vm->bind_func<1>(mod, "floor", PK_LAMBDA(VAR((i64)std::floor(CAST_F(args[0])))));
  1162. vm->bind_func<1>(mod, "fsum", [](VM* vm, ArgsView args) {
  1163. List& list = CAST(List&, args[0]);
  1164. double sum = 0;
  1165. double c = 0;
  1166. for(PyObject* arg : list){
  1167. double x = CAST_F(arg);
  1168. double y = x - c;
  1169. double t = sum + y;
  1170. c = (t - sum) - y;
  1171. sum = t;
  1172. }
  1173. return VAR(sum);
  1174. });
  1175. vm->bind_func<2>(mod, "gcd", [](VM* vm, ArgsView args) {
  1176. i64 a = CAST(i64, args[0]);
  1177. i64 b = CAST(i64, args[1]);
  1178. if(a < 0) a = -a;
  1179. if(b < 0) b = -b;
  1180. while(b != 0){
  1181. i64 t = b;
  1182. b = a % b;
  1183. a = t;
  1184. }
  1185. return VAR(a);
  1186. });
  1187. vm->bind_func<1>(mod, "isfinite", PK_LAMBDA(VAR(std::isfinite(CAST_F(args[0])))));
  1188. vm->bind_func<1>(mod, "isinf", PK_LAMBDA(VAR(std::isinf(CAST_F(args[0])))));
  1189. vm->bind_func<1>(mod, "isnan", PK_LAMBDA(VAR(std::isnan(CAST_F(args[0])))));
  1190. vm->bind_func<1>(mod, "exp", PK_LAMBDA(VAR(std::exp(CAST_F(args[0])))));
  1191. vm->bind_func<1>(mod, "log", PK_LAMBDA(VAR(std::log(CAST_F(args[0])))));
  1192. vm->bind_func<1>(mod, "log2", PK_LAMBDA(VAR(std::log2(CAST_F(args[0])))));
  1193. vm->bind_func<1>(mod, "log10", PK_LAMBDA(VAR(std::log10(CAST_F(args[0])))));
  1194. vm->bind_func<2>(mod, "pow", PK_LAMBDA(VAR(std::pow(CAST_F(args[0]), CAST_F(args[1])))));
  1195. vm->bind_func<1>(mod, "sqrt", PK_LAMBDA(VAR(std::sqrt(CAST_F(args[0])))));
  1196. vm->bind_func<1>(mod, "acos", PK_LAMBDA(VAR(std::acos(CAST_F(args[0])))));
  1197. vm->bind_func<1>(mod, "asin", PK_LAMBDA(VAR(std::asin(CAST_F(args[0])))));
  1198. vm->bind_func<1>(mod, "atan", PK_LAMBDA(VAR(std::atan(CAST_F(args[0])))));
  1199. vm->bind_func<2>(mod, "atan2", PK_LAMBDA(VAR(std::atan2(CAST_F(args[0]), CAST_F(args[1])))));
  1200. vm->bind_func<1>(mod, "cos", PK_LAMBDA(VAR(std::cos(CAST_F(args[0])))));
  1201. vm->bind_func<1>(mod, "sin", PK_LAMBDA(VAR(std::sin(CAST_F(args[0])))));
  1202. vm->bind_func<1>(mod, "tan", PK_LAMBDA(VAR(std::tan(CAST_F(args[0])))));
  1203. vm->bind_func<1>(mod, "degrees", PK_LAMBDA(VAR(CAST_F(args[0]) * 180 / 3.1415926535897932384)));
  1204. vm->bind_func<1>(mod, "radians", PK_LAMBDA(VAR(CAST_F(args[0]) * 3.1415926535897932384 / 180)));
  1205. vm->bind_func<1>(mod, "modf", [](VM* vm, ArgsView args) {
  1206. f64 i;
  1207. f64 f = std::modf(CAST_F(args[0]), &i);
  1208. return VAR(Tuple({VAR(f), VAR(i)}));
  1209. });
  1210. vm->bind_func<1>(mod, "factorial", [](VM* vm, ArgsView args) {
  1211. i64 n = CAST(i64, args[0]);
  1212. if(n < 0) vm->ValueError("factorial() not defined for negative values");
  1213. i64 r = 1;
  1214. for(i64 i=2; i<=n; i++) r *= i;
  1215. return VAR(r);
  1216. });
  1217. }
  1218. inline void add_module_traceback(VM* vm){
  1219. PyObject* mod = vm->new_module("traceback");
  1220. vm->bind_func<0>(mod, "print_exc", [](VM* vm, ArgsView args) {
  1221. if(vm->_last_exception==nullptr) vm->ValueError("no exception");
  1222. Exception& e = CAST(Exception&, vm->_last_exception);
  1223. vm->_stdout(vm, e.summary());
  1224. return vm->None;
  1225. });
  1226. vm->bind_func<0>(mod, "format_exc", [](VM* vm, ArgsView args) {
  1227. if(vm->_last_exception==nullptr) vm->ValueError("no exception");
  1228. Exception& e = CAST(Exception&, vm->_last_exception);
  1229. return VAR(e.summary());
  1230. });
  1231. }
  1232. inline void add_module_dis(VM* vm){
  1233. PyObject* mod = vm->new_module("dis");
  1234. static const auto get_code = [](VM* vm, PyObject* obj)->CodeObject_{
  1235. if(is_type(obj, vm->tp_str)){
  1236. const Str& source = CAST(Str, obj);
  1237. return vm->compile(source, "<dis>", EXEC_MODE);
  1238. }
  1239. PyObject* f = obj;
  1240. if(is_type(f, vm->tp_bound_method)) f = CAST(BoundMethod, obj).func;
  1241. return CAST(Function&, f).decl->code;
  1242. };
  1243. vm->bind_func<1>(mod, "dis", [](VM* vm, ArgsView args) {
  1244. CodeObject_ code = get_code(vm, args[0]);
  1245. vm->_stdout(vm, vm->disassemble(code));
  1246. return vm->None;
  1247. });
  1248. vm->bind_func<1>(mod, "_s", [](VM* vm, ArgsView args) {
  1249. CodeObject_ code = get_code(vm, args[0]);
  1250. return VAR(code->serialize(vm));
  1251. });
  1252. }
  1253. inline void add_module_gc(VM* vm){
  1254. PyObject* mod = vm->new_module("gc");
  1255. vm->bind_func<0>(mod, "collect", PK_LAMBDA(VAR(vm->heap.collect())));
  1256. }
  1257. inline void VM::post_init(){
  1258. init_builtins(this);
  1259. _t(tp_object)->attr().set("__class__", property(PK_LAMBDA(vm->_t(args[0]))));
  1260. _t(tp_type)->attr().set("__base__", property([](VM* vm, ArgsView args){
  1261. const PyTypeInfo& info = vm->_all_types[PK_OBJ_GET(Type, args[0])];
  1262. return info.base.index == -1 ? vm->None : vm->_all_types[info.base].obj;
  1263. }));
  1264. _t(tp_type)->attr().set("__name__", property([](VM* vm, ArgsView args){
  1265. const PyTypeInfo& info = vm->_all_types[PK_OBJ_GET(Type, args[0])];
  1266. return VAR(info.name);
  1267. }));
  1268. _t(tp_bound_method)->attr().set("__self__", property([](VM* vm, ArgsView args){
  1269. return CAST(BoundMethod&, args[0]).self;
  1270. }));
  1271. _t(tp_bound_method)->attr().set("__func__", property([](VM* vm, ArgsView args){
  1272. return CAST(BoundMethod&, args[0]).func;
  1273. }));
  1274. bind__eq__(tp_bound_method, [](VM* vm, PyObject* lhs, PyObject* rhs){
  1275. if(!is_non_tagged_type(rhs, vm->tp_bound_method)) return vm->NotImplemented;
  1276. return VAR(_CAST(BoundMethod&, lhs) == _CAST(BoundMethod&, rhs));
  1277. });
  1278. _t(tp_slice)->attr().set("start", property([](VM* vm, ArgsView args){
  1279. return CAST(Slice&, args[0]).start;
  1280. }));
  1281. _t(tp_slice)->attr().set("stop", property([](VM* vm, ArgsView args){
  1282. return CAST(Slice&, args[0]).stop;
  1283. }));
  1284. _t(tp_slice)->attr().set("step", property([](VM* vm, ArgsView args){
  1285. return CAST(Slice&, args[0]).step;
  1286. }));
  1287. _t(tp_object)->attr().set("__dict__", property([](VM* vm, ArgsView args){
  1288. if(is_tagged(args[0]) || !args[0]->is_attr_valid()) return vm->None;
  1289. return VAR(MappingProxy(args[0]));
  1290. }));
  1291. #if !PK_DEBUG_NO_BUILTINS
  1292. add_module_sys(this);
  1293. add_module_traceback(this);
  1294. add_module_time(this);
  1295. add_module_json(this);
  1296. add_module_math(this);
  1297. add_module_re(this);
  1298. add_module_dis(this);
  1299. add_module_c(this);
  1300. add_module_gc(this);
  1301. add_module_random(this);
  1302. add_module_base64(this);
  1303. add_module_timeit(this);
  1304. for(const char* name: {"this", "functools", "collections", "heapq", "bisect", "pickle", "_long"}){
  1305. _lazy_modules[name] = kPythonLibs[name];
  1306. }
  1307. try{
  1308. CodeObject_ code = compile(kPythonLibs["builtins"], "<builtins>", EXEC_MODE);
  1309. this->_exec(code, this->builtins);
  1310. code = compile(kPythonLibs["_set"], "<set>", EXEC_MODE);
  1311. this->_exec(code, this->builtins);
  1312. }catch(Exception& e){
  1313. std::cerr << e.summary() << std::endl;
  1314. std::cerr << "failed to load builtins module!!" << std::endl;
  1315. exit(1);
  1316. }
  1317. if(enable_os){
  1318. add_module_io(this);
  1319. add_module_os(this);
  1320. add_module_requests(this);
  1321. _import_handler = _default_import_handler;
  1322. }
  1323. add_module_linalg(this);
  1324. add_module_easing(this);
  1325. #endif
  1326. }
  1327. } // namespace pkpy
  1328. /*************************GLOBAL NAMESPACE*************************/
  1329. extern "C" {
  1330. PK_LEGACY_EXPORT
  1331. void pkpy_free(void* p){
  1332. free(p);
  1333. }
  1334. PK_LEGACY_EXPORT
  1335. void pkpy_vm_exec(pkpy::VM* vm, const char* source){
  1336. vm->exec(source, "main.py", pkpy::EXEC_MODE);
  1337. }
  1338. PK_LEGACY_EXPORT
  1339. void pkpy_vm_exec_2(pkpy::VM* vm, const char* source, const char* filename, int mode, const char* module){
  1340. pkpy::PyObject* mod;
  1341. if(module == nullptr) mod = vm->_main;
  1342. else{
  1343. mod = vm->_modules.try_get(module);
  1344. if(mod == nullptr) return;
  1345. }
  1346. vm->exec(source, filename, (pkpy::CompileMode)mode, mod);
  1347. }
  1348. PK_LEGACY_EXPORT
  1349. void pkpy_vm_compile(pkpy::VM* vm, const char* source, const char* filename, int mode, bool* ok, char** res){
  1350. try{
  1351. pkpy::CodeObject_ code = vm->compile(source, filename, (pkpy::CompileMode)mode);
  1352. *res = code->serialize(vm).c_str_dup();
  1353. *ok = true;
  1354. }catch(pkpy::Exception& e){
  1355. *ok = false;
  1356. *res = e.summary().c_str_dup();
  1357. }catch(std::exception& e){
  1358. *ok = false;
  1359. *res = strdup(e.what());
  1360. }catch(...){
  1361. *ok = false;
  1362. *res = strdup("unknown error");
  1363. }
  1364. }
  1365. PK_LEGACY_EXPORT
  1366. pkpy::REPL* pkpy_new_repl(pkpy::VM* vm){
  1367. pkpy::REPL* p = new pkpy::REPL(vm);
  1368. return p;
  1369. }
  1370. PK_LEGACY_EXPORT
  1371. bool pkpy_repl_input(pkpy::REPL* r, const char* line){
  1372. return r->input(line);
  1373. }
  1374. PK_LEGACY_EXPORT
  1375. void pkpy_vm_add_module(pkpy::VM* vm, const char* name, const char* source){
  1376. vm->_lazy_modules[name] = source;
  1377. }
  1378. PK_LEGACY_EXPORT
  1379. pkpy::VM* pkpy_new_vm(bool enable_os=true){
  1380. pkpy::VM* p = new pkpy::VM(enable_os);
  1381. return p;
  1382. }
  1383. PK_LEGACY_EXPORT
  1384. void pkpy_delete_vm(pkpy::VM* vm){
  1385. delete vm;
  1386. }
  1387. PK_LEGACY_EXPORT
  1388. void pkpy_delete_repl(pkpy::REPL* repl){
  1389. delete repl;
  1390. }
  1391. PK_LEGACY_EXPORT
  1392. void pkpy_vm_gc_on_delete(pkpy::VM* vm, void (*f)(pkpy::VM *, pkpy::PyObject *)){
  1393. vm->heap._gc_on_delete = f;
  1394. }
  1395. }