pocketpy.cpp 62 KB

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  1. #include "pocketpy/pocketpy.h"
  2. namespace pkpy{
  3. #ifdef PK_USE_CJSON
  4. void add_module_cjson(VM* vm);
  5. #endif
  6. template<typename T>
  7. PyVar PyArrayGetItem(VM* vm, PyVar _0, PyVar _1){
  8. static_assert(std::is_same_v<T, List> || std::is_same_v<T, Tuple>);
  9. const T& self = _CAST(T&, _0);
  10. if(is_int(_1)){
  11. i64 index = _1.as<i64>();
  12. index = vm->normalized_index(index, self.size());
  13. return self[index];
  14. }
  15. if(is_type(_1, vm->tp_slice)){
  16. const Slice& s = _CAST(Slice&, _1);
  17. int start, stop, step;
  18. vm->parse_int_slice(s, self.size(), start, stop, step);
  19. List new_list;
  20. PK_SLICE_LOOP(i, start, stop, step) new_list.push_back(self[i]);
  21. if constexpr(std::is_same_v<T, List>)
  22. return VAR(std::move(new_list));
  23. else
  24. return VAR(new_list.to_tuple());
  25. }
  26. vm->TypeError("indices must be integers or slices");
  27. }
  28. void __init_builtins(VM* _vm) {
  29. #define BIND_NUM_ARITH_OPT(name, op) \
  30. _vm->bind##name(VM::tp_int, [](VM* vm, PyVar lhs, PyVar rhs) { \
  31. if(is_int(rhs)) return VAR(_CAST(i64, lhs) op _CAST(i64, rhs)); \
  32. if(is_float(rhs)) return VAR(_CAST(i64, lhs) op _CAST(f64, rhs)); \
  33. return vm->NotImplemented; \
  34. }); \
  35. _vm->bind##name(VM::tp_float, [](VM* vm, PyVar lhs, PyVar rhs) { \
  36. if(is_int(rhs)) return VAR(_CAST(f64, lhs) op _CAST(i64, rhs)); \
  37. if(is_float(rhs)) return VAR(_CAST(f64, lhs) op _CAST(f64, rhs)); \
  38. return vm->NotImplemented; \
  39. });
  40. BIND_NUM_ARITH_OPT(__add__, +)
  41. BIND_NUM_ARITH_OPT(__sub__, -)
  42. BIND_NUM_ARITH_OPT(__mul__, *)
  43. #undef BIND_NUM_ARITH_OPT
  44. #define BIND_NUM_LOGICAL_OPT(name, op) \
  45. _vm->bind##name(VM::tp_int, [](VM* vm, PyVar lhs, PyVar rhs) { \
  46. if(is_int(rhs)) return VAR(_CAST(i64, lhs) op _CAST(i64, rhs)); \
  47. if(is_float(rhs)) return VAR(_CAST(i64, lhs) op _CAST(f64, rhs)); \
  48. return vm->NotImplemented; \
  49. }); \
  50. _vm->bind##name(VM::tp_float, [](VM* vm, PyVar lhs, PyVar rhs) { \
  51. if(is_int(rhs)) return VAR(_CAST(f64, lhs) op _CAST(i64, rhs)); \
  52. if(is_float(rhs)) return VAR(_CAST(f64, lhs) op _CAST(f64, rhs)); \
  53. return vm->NotImplemented; \
  54. });
  55. BIND_NUM_LOGICAL_OPT(__eq__, ==)
  56. BIND_NUM_LOGICAL_OPT(__lt__, <)
  57. BIND_NUM_LOGICAL_OPT(__le__, <=)
  58. BIND_NUM_LOGICAL_OPT(__gt__, >)
  59. BIND_NUM_LOGICAL_OPT(__ge__, >=)
  60. #undef BIND_NUM_ARITH_OPT
  61. #undef BIND_NUM_LOGICAL_OPT
  62. // builtin functions
  63. _vm->bind_func(_vm->builtins, "breakpoint", 0, [](VM* vm, ArgsView args) {
  64. #if PK_ENABLE_PROFILER
  65. vm->_next_breakpoint = NextBreakpoint(vm->callstack.size(), vm->callstack.top().curr_lineno(), false);
  66. #endif
  67. return vm->None;
  68. });
  69. _vm->bind_func(_vm->builtins, "super", -1, [](VM* vm, ArgsView args) {
  70. PyObject* class_arg = nullptr;
  71. PyVar self_arg = nullptr;
  72. if(args.size() == 2){
  73. class_arg = args[0].get();
  74. self_arg = args[1];
  75. }else if(args.size() == 0){
  76. Frame* frame = &vm->callstack.top();
  77. if(frame->_callable != nullptr){
  78. class_arg = frame->_callable->as<Function>()._class;
  79. if(frame->_locals.size() > 0) self_arg = frame->_locals[0];
  80. }
  81. if(class_arg == nullptr || self_arg == nullptr){
  82. vm->TypeError("super(): unable to determine the class context, use super(class, self) instead");
  83. }
  84. }else{
  85. vm->TypeError("super() takes 0 or 2 arguments");
  86. }
  87. vm->check_type(class_arg, vm->tp_type);
  88. Type type = class_arg->as<Type>();
  89. if(!vm->isinstance(self_arg, type)){
  90. StrName _0 = _type_name(vm, vm->_tp(self_arg));
  91. StrName _1 = _type_name(vm, type);
  92. vm->TypeError("super(): " + _0.escape() + " is not an instance of " + _1.escape());
  93. }
  94. return vm->new_object<Super>(vm->tp_super, self_arg, vm->_all_types[type].base);
  95. });
  96. _vm->bind_func(_vm->builtins, "staticmethod", 1, [](VM* vm, ArgsView args) {
  97. PyVar func = args[0];
  98. vm->check_type(func, vm->tp_function);
  99. return vm->new_object<StaticMethod>(vm->tp_staticmethod, args[0]);
  100. });
  101. _vm->bind_func(_vm->builtins, "classmethod", 1, [](VM* vm, ArgsView args) {
  102. PyVar func = args[0];
  103. vm->check_type(func, vm->tp_function);
  104. return vm->new_object<ClassMethod>(vm->tp_classmethod, args[0]);
  105. });
  106. _vm->bind_func(_vm->builtins, "isinstance", 2, [](VM* vm, ArgsView args) {
  107. if(is_type(args[1], vm->tp_tuple)){
  108. Tuple& types = _CAST(Tuple&, args[1]);
  109. for(PyVar type : types){
  110. vm->check_type(type, vm->tp_type);
  111. if(vm->isinstance(args[0], type->as<Type>())) return vm->True;
  112. }
  113. return vm->False;
  114. }
  115. vm->check_type(args[1], vm->tp_type);
  116. Type type = PK_OBJ_GET(Type, args[1]);
  117. return VAR(vm->isinstance(args[0], type));
  118. });
  119. _vm->bind_func(_vm->builtins, "issubclass", 2, [](VM* vm, ArgsView args) {
  120. vm->check_type(args[0], vm->tp_type);
  121. vm->check_type(args[1], vm->tp_type);
  122. return VAR(vm->issubclass(PK_OBJ_GET(Type, args[0]), PK_OBJ_GET(Type, args[1])));
  123. });
  124. _vm->bind_func(_vm->builtins, "globals", 0, [](VM* vm, ArgsView args) {
  125. PyObject* mod = vm->callstack.top()._module;
  126. return VAR(MappingProxy(mod));
  127. });
  128. _vm->bind(_vm->builtins, "round(x, ndigits=None)", [](VM* vm, ArgsView args) {
  129. if(is_int(args[0])) return args[0];
  130. f64 x = CAST(f64, args[0]);
  131. f64 offset = x >= 0 ? 0.5 : -0.5;
  132. if(args[1] == vm->None) return VAR((i64)(x + offset));
  133. int ndigits = CAST(int, args[1]);
  134. if(ndigits < 0) vm->ValueError("ndigits should be non-negative");
  135. // ndigits > 0
  136. return VAR((i64)(x * std::pow(10, ndigits) + offset) / std::pow(10, ndigits));
  137. });
  138. _vm->bind_func(_vm->builtins, "abs", 1, [](VM* vm, ArgsView args) {
  139. if(is_int(args[0])) return VAR(std::abs(_CAST(i64, args[0])));
  140. if(is_float(args[0])) return VAR(std::abs(_CAST(f64, args[0])));
  141. vm->TypeError("bad operand type for abs()");
  142. return vm->None;
  143. });
  144. _vm->bind(_vm->builtins, "max(*args, key=None)", [](VM* vm, ArgsView args){
  145. return vm->__minmax_reduce(&VM::py_gt, args[0], args[1]);
  146. });
  147. _vm->bind(_vm->builtins, "min(*args, key=None)", [](VM* vm, ArgsView args){
  148. return vm->__minmax_reduce(&VM::py_lt, args[0], args[1]);
  149. });
  150. _vm->bind_func(_vm->builtins, "id", 1, [](VM* vm, ArgsView args) {
  151. PyVar obj = args[0];
  152. if(is_tagged(obj)) return vm->None;
  153. return VAR(reinterpret_cast<i64>(obj.get()));
  154. });
  155. _vm->bind_func(_vm->builtins, "callable", 1, [](VM* vm, ArgsView args) {
  156. return VAR(vm->py_callable(args[0]));
  157. });
  158. _vm->bind_func(_vm->builtins, "__import__", 1, [](VM* vm, ArgsView args) {
  159. const Str& name = CAST(Str&, args[0]);
  160. return vm->py_import(name);
  161. });
  162. _vm->bind_func(_vm->builtins, "divmod", 2, [](VM* vm, ArgsView args) {
  163. if(is_int(args[0])){
  164. i64 lhs = _CAST(i64, args[0]);
  165. i64 rhs = CAST(i64, args[1]);
  166. if(rhs == 0) vm->ZeroDivisionError();
  167. auto res = std::div(lhs, rhs);
  168. return VAR(Tuple(VAR(res.quot), VAR(res.rem)));
  169. }else{
  170. return vm->call_method(args[0], __divmod__, args[1]);
  171. }
  172. });
  173. // we use `_0`, `_1` and `_2` here to disable keyword arguments (but with default values)
  174. _vm->bind(_vm->builtins, "eval(_0, _1=None, _2=None)", [](VM* vm, ArgsView args) {
  175. return vm->py_eval(CAST(Str&, args[0]), args[1], args[2]);
  176. });
  177. _vm->bind(_vm->builtins, "exec(_0, _1=None, _2=None)", [](VM* vm, ArgsView args) {
  178. vm->py_exec(CAST(Str&, args[0]), args[1], args[2]);
  179. return vm->None;
  180. });
  181. _vm->bind(_vm->builtins, "compile(source: str, filename: str, mode: str) -> str", [](VM* vm, ArgsView args) {
  182. const Str& source = CAST(Str&, args[0]);
  183. const Str& filename = CAST(Str&, args[1]);
  184. const Str& mode = CAST(Str&, args[2]);
  185. if(mode == "exec"){
  186. return VAR(vm->precompile(source, filename, EXEC_MODE));
  187. }else if(mode == "eval"){
  188. return VAR(vm->precompile(source, filename, EVAL_MODE));
  189. }else if(mode == "single"){
  190. return VAR(vm->precompile(source, filename, CELL_MODE));
  191. }else{
  192. vm->ValueError("compile() mode must be 'exec', 'eval' or 'single'");
  193. return vm->None;
  194. }
  195. });
  196. _vm->bind(_vm->builtins, "exit(code=0)", [](VM* vm, ArgsView args) {
  197. std::exit(CAST(int, args[0]));
  198. return vm->None;
  199. });
  200. _vm->bind_func(_vm->builtins, "repr", 1, [](VM* vm, ArgsView args){
  201. return VAR(vm->py_repr(args[0]));
  202. });
  203. _vm->bind_func(_vm->builtins, "len", 1, [](VM* vm, ArgsView args){
  204. const PyTypeInfo* ti = vm->_tp_info(args[0]);
  205. if(ti->m__len__) return VAR(ti->m__len__(vm, args[0]));
  206. return vm->call_method(args[0], __len__);
  207. });
  208. _vm->bind_func(_vm->builtins, "hash", 1, [](VM* vm, ArgsView args){
  209. i64 value = vm->py_hash(args[0]);
  210. return VAR(value);
  211. });
  212. _vm->bind_func(_vm->builtins, "chr", 1, [](VM* vm, ArgsView args) {
  213. i64 i = CAST(i64, args[0]);
  214. if (i < 0 || i >= 128) vm->ValueError("chr() arg not in [0, 128)");
  215. return VAR(std::string(1, (char)i));
  216. });
  217. _vm->bind_func(_vm->builtins, "ord", 1, [](VM* vm, ArgsView args) {
  218. const Str& s = CAST(Str&, args[0]);
  219. if (s.length()!=1) vm->TypeError("ord() expected an ASCII character");
  220. return VAR((i64)(s[0]));
  221. });
  222. _vm->bind_func(_vm->builtins, "hasattr", 2, [](VM* vm, ArgsView args) {
  223. return VAR(vm->getattr(args[0], CAST(Str&, args[1]), false) != nullptr);
  224. });
  225. _vm->bind_func(_vm->builtins, "setattr", 3, [](VM* vm, ArgsView args) {
  226. vm->setattr(args[0], CAST(Str&, args[1]), args[2]);
  227. return vm->None;
  228. });
  229. _vm->bind_func(_vm->builtins, "getattr", -1, [](VM* vm, ArgsView args) {
  230. if(args.size()!=2 && args.size()!=3) vm->TypeError("getattr() takes 2 or 3 arguments");
  231. StrName name = CAST(Str&, args[1]);
  232. PyVar val = vm->getattr(args[0], name, false);
  233. if(val == nullptr){
  234. if(args.size()==2) vm->AttributeError(args[0], name);
  235. return args[2];
  236. }
  237. return val;
  238. });
  239. _vm->bind_func(_vm->builtins, "delattr", 2, [](VM* vm, ArgsView args) {
  240. vm->delattr(args[0], CAST(Str&, args[1]));
  241. return vm->None;
  242. });
  243. _vm->bind_func(_vm->builtins, "hex", 1, [](VM* vm, ArgsView args) {
  244. SStream ss;
  245. ss.write_hex(CAST(i64, args[0]));
  246. return VAR(ss.str());
  247. });
  248. _vm->bind_func(_vm->builtins, "iter", 1, [](VM* vm, ArgsView args) {
  249. return vm->py_iter(args[0]);
  250. });
  251. _vm->bind_func(_vm->builtins, "next", 1, [](VM* vm, ArgsView args) {
  252. PyVar retval = vm->py_next(args[0]);
  253. if(retval == vm->StopIteration) vm->_error(vm->call(vm->StopIteration));
  254. return retval;
  255. });
  256. _vm->bind_func(_vm->builtins, "bin", 1, [](VM* vm, ArgsView args) {
  257. SStream ss;
  258. i64 x = CAST(i64, args[0]);
  259. if(x < 0){ ss << "-"; x = -x; }
  260. ss << "0b";
  261. std::string bits;
  262. while(x){
  263. bits += (x & 1) ? '1' : '0';
  264. x >>= 1;
  265. }
  266. std::reverse(bits.begin(), bits.end());
  267. if(bits.empty()) bits = "0";
  268. ss << bits;
  269. return VAR(ss.str());
  270. });
  271. _vm->bind_func(_vm->builtins, "dir", 1, [](VM* vm, ArgsView args) {
  272. vector<StrName> names;
  273. if(!is_tagged(args[0]) && args[0]->is_attr_valid()){
  274. auto keys = args[0]->attr().keys();
  275. names.extend(keys.begin(), keys.end());
  276. }
  277. const NameDict& t_attr = vm->_t(args[0])->attr();
  278. auto keys = t_attr.keys();
  279. names.extend(keys.begin(), keys.end());
  280. std::sort(names.begin(), names.end());
  281. List ret;
  282. for(int i=0; i<names.size(); i++){
  283. // remove duplicates
  284. if(i>0 && names[i] == names[i-1]) continue;
  285. ret.push_back(VAR(names[i].sv()));
  286. }
  287. return VAR(std::move(ret));
  288. });
  289. // tp_object
  290. _vm->bind__repr__(VM::tp_object, [](VM* vm, PyVar obj) -> Str{
  291. if(is_tagged(obj)) PK_FATAL_ERROR();
  292. SStream ss;
  293. ss << "<" << _type_name(vm, vm->_tp(obj)) << " object at ";
  294. ss.write_hex(obj.get());
  295. ss << ">";
  296. return ss.str();
  297. });
  298. _vm->bind__eq__(VM::tp_object, [](VM* vm, PyVar _0, PyVar _1) {
  299. return VAR(_0 == _1);
  300. });
  301. _vm->__cached_object_new = _vm->bind_func(VM::tp_object, __new__, 1, [](VM* vm, ArgsView args) {
  302. vm->check_type(args[0], vm->tp_type);
  303. Type t = PK_OBJ_GET(Type, args[0]);
  304. return vm->new_object<DummyInstance>(t);
  305. });
  306. // tp_type
  307. _vm->bind_func(VM::tp_type, __new__, 2, PK_LAMBDA(vm->_t(args[1])));
  308. // tp_range
  309. _vm->bind_func(VM::tp_range, __new__, -1, [](VM* vm, ArgsView args) {
  310. args._begin += 1; // skip cls
  311. Range r;
  312. switch (args.size()) {
  313. case 1: r.stop = CAST(i64, args[0]); break;
  314. case 2: r.start = CAST(i64, args[0]); r.stop = CAST(i64, args[1]); break;
  315. case 3: r.start = CAST(i64, args[0]); r.stop = CAST(i64, args[1]); r.step = CAST(i64, args[2]); break;
  316. default: vm->TypeError("expected 1-3 arguments, got " + std::to_string(args.size()));
  317. }
  318. if(r.step == 0) vm->ValueError("range() arg 3 must not be zero");
  319. return VAR(r);
  320. });
  321. _vm->bind__iter__(VM::tp_range, [](VM* vm, PyVar _0) {
  322. const Range& r = PK_OBJ_GET(Range, _0);
  323. if(r.step > 0){
  324. return vm->new_user_object<RangeIter>(r);
  325. }else{
  326. return vm->new_user_object<RangeIterR>(r);
  327. }
  328. });
  329. _vm->_all_types[VM::tp_range].op__iter__ = [](VM* vm, PyVar _0){
  330. const Range& r = PK_OBJ_GET(Range, _0);
  331. if(r.step > 0){
  332. vm->new_stack_object<RangeIter>(vm->_tp_user<RangeIter>(), r);
  333. }else{
  334. vm->new_stack_object<RangeIterR>(vm->_tp_user<RangeIterR>(), r);
  335. }
  336. };
  337. // tp_nonetype
  338. _vm->bind__repr__(_vm->_tp(_vm->None), [](VM* vm, PyVar _0) -> Str {
  339. return "None";
  340. });
  341. // tp_float / tp_float
  342. _vm->bind__truediv__(VM::tp_float, [](VM* vm, PyVar _0, PyVar _1) {
  343. f64 value = CAST_F(_1);
  344. return VAR(_CAST(f64, _0) / value);
  345. });
  346. _vm->bind__truediv__(VM::tp_int, [](VM* vm, PyVar _0, PyVar _1) {
  347. f64 value = CAST_F(_1);
  348. return VAR(_CAST(i64, _0) / value);
  349. });
  350. auto py_number_pow = [](VM* vm, PyVar _0, PyVar _1) {
  351. if(is_int(_0) && is_int(_1)){
  352. i64 lhs = _CAST(i64, _0);
  353. i64 rhs = _CAST(i64, _1);
  354. if(rhs < 0) {
  355. if(lhs == 0) vm->ZeroDivisionError("0.0 cannot be raised to a negative power");
  356. return VAR((f64)std::pow(lhs, rhs));
  357. }
  358. i64 ret = 1;
  359. while(rhs){
  360. if(rhs & 1) ret *= lhs;
  361. lhs *= lhs;
  362. rhs >>= 1;
  363. }
  364. return VAR(ret);
  365. }else{
  366. return VAR((f64)std::pow(CAST_F(_0), CAST_F(_1)));
  367. }
  368. };
  369. _vm->bind__pow__(VM::tp_int, py_number_pow);
  370. _vm->bind__pow__(VM::tp_float, py_number_pow);
  371. _vm->bind_func(VM::tp_int, __new__, -1, [](VM* vm, ArgsView args) {
  372. if(args.size() == 1+0) return VAR(0);
  373. // 1 arg
  374. if(args.size() == 1+1){
  375. switch(vm->_tp(args[1])){
  376. case VM::tp_float:
  377. return VAR((i64)_CAST(f64, args[1]));
  378. case VM::tp_int:
  379. return args[1];
  380. case VM::tp_bool:
  381. return VAR(args[1]==vm->True ? 1 : 0);
  382. case VM::tp_str:
  383. break;
  384. default:
  385. vm->TypeError("invalid arguments for int()");
  386. }
  387. }
  388. // 2+ args -> error
  389. if(args.size() > 1+2) vm->TypeError("int() takes at most 2 arguments");
  390. // 1 or 2 args with str
  391. int base = 10;
  392. if(args.size() == 1+2) base = CAST(i64, args[2]);
  393. const Str& s = CAST(Str&, args[1]);
  394. std::string_view sv = s.sv();
  395. bool negative = false;
  396. if(!sv.empty() && (sv[0] == '+' || sv[0] == '-')){
  397. negative = sv[0] == '-';
  398. sv.remove_prefix(1);
  399. }
  400. i64 val;
  401. if(parse_uint(sv, &val, base) != IntParsingResult::Success){
  402. vm->ValueError(_S("invalid literal for int() with base ", base, ": ", s.escape()));
  403. }
  404. if(negative) val = -val;
  405. return VAR(val);
  406. });
  407. _vm->bind__floordiv__(VM::tp_int, [](VM* vm, PyVar _0, PyVar _1) {
  408. i64 rhs = CAST(i64, _1);
  409. if(rhs == 0) vm->ZeroDivisionError();
  410. return VAR(_CAST(i64, _0) / rhs);
  411. });
  412. _vm->bind__mod__(VM::tp_int, [](VM* vm, PyVar _0, PyVar _1) {
  413. i64 rhs = CAST(i64, _1);
  414. if(rhs == 0) vm->ZeroDivisionError();
  415. return VAR(_CAST(i64, _0) % rhs);
  416. });
  417. _vm->bind_func(VM::tp_int, "bit_length", 1, [](VM* vm, ArgsView args) {
  418. i64 x = _CAST(i64, args[0]);
  419. if(x < 0) x = -x;
  420. int bits = 0;
  421. while(x){ x >>= 1; bits++; }
  422. return VAR(bits);
  423. });
  424. _vm->bind__repr__(VM::tp_int, [](VM* vm, PyVar obj) -> Str{
  425. return std::to_string(_CAST(i64, obj));
  426. });
  427. _vm->bind__neg__(VM::tp_int, [](VM* vm, PyVar obj) { return VAR(-_CAST(i64, obj)); });
  428. _vm->bind__hash__(VM::tp_int, [](VM* vm, PyVar obj) { return _CAST(i64, obj); });
  429. _vm->bind__invert__(VM::tp_int, [](VM* vm, PyVar obj) { return VAR(~_CAST(i64, obj)); });
  430. #define INT_BITWISE_OP(name, op) \
  431. _vm->bind##name(VM::tp_int, [](VM* vm, PyVar lhs, PyVar rhs) { \
  432. return VAR(_CAST(i64, lhs) op CAST(i64, rhs)); \
  433. });
  434. INT_BITWISE_OP(__lshift__, <<)
  435. INT_BITWISE_OP(__rshift__, >>)
  436. INT_BITWISE_OP(__and__, &)
  437. INT_BITWISE_OP(__or__, |)
  438. INT_BITWISE_OP(__xor__, ^)
  439. #undef INT_BITWISE_OP
  440. _vm->bind_func(VM::tp_float, __new__, -1, [](VM* vm, ArgsView args) {
  441. if(args.size() == 1+0) return VAR(0.0);
  442. if(args.size() > 1+1) vm->TypeError("float() takes at most 1 argument");
  443. // 1 arg
  444. switch(vm->_tp(args[1])){
  445. case VM::tp_int:
  446. return VAR((f64)CAST(i64, args[1]));
  447. case VM::tp_float:
  448. return args[1];
  449. case VM::tp_bool:
  450. return VAR(args[1]==vm->True ? 1.0 : 0.0);
  451. case VM::tp_str:
  452. break;
  453. default:
  454. vm->TypeError("invalid arguments for float()");
  455. }
  456. // str to float
  457. const Str& s = PK_OBJ_GET(Str, args[1]);
  458. if(s == "inf") return VAR(INFINITY);
  459. if(s == "-inf") return VAR(-INFINITY);
  460. double float_out;
  461. char* p_end;
  462. try{
  463. float_out = std::strtod(s.data, &p_end);
  464. if(p_end != s.end()) throw 1;
  465. }catch(...){
  466. vm->ValueError("invalid literal for float(): " + s.escape());
  467. }
  468. return VAR(float_out);
  469. });
  470. _vm->bind__hash__(VM::tp_float, [](VM* vm, PyVar _0) {
  471. f64 val = _CAST(f64, _0);
  472. return (i64)std::hash<f64>()(val);
  473. });
  474. _vm->bind__neg__(VM::tp_float, [](VM* vm, PyVar _0) { return VAR(-_CAST(f64, _0)); });
  475. _vm->bind__repr__(VM::tp_float, [](VM* vm, PyVar _0) -> Str {
  476. f64 val = _CAST(f64, _0);
  477. SStream ss;
  478. ss << val;
  479. return ss.str();
  480. });
  481. // tp_str
  482. _vm->bind_func(VM::tp_str, __new__, -1, [](VM* vm, ArgsView args) {
  483. if(args.size() == 1) return VAR(Str());
  484. if(args.size() > 2) vm->TypeError("str() takes at most 1 argument");
  485. return VAR(vm->py_str(args[1]));
  486. });
  487. _vm->bind__hash__(VM::tp_str, [](VM* vm, PyVar _0) {
  488. return (i64)_CAST(Str&, _0).hash();
  489. });
  490. _vm->bind__add__(VM::tp_str, [](VM* vm, PyVar _0, PyVar _1) {
  491. return VAR(_CAST(Str&, _0) + CAST(Str&, _1));
  492. });
  493. _vm->bind__len__(VM::tp_str, [](VM* vm, PyVar _0) {
  494. return (i64)_CAST(Str&, _0).u8_length();
  495. });
  496. _vm->bind__mul__(VM::tp_str, [](VM* vm, PyVar _0, PyVar _1) {
  497. const Str& self = _CAST(Str&, _0);
  498. i64 n = CAST(i64, _1);
  499. SStream ss;
  500. for(i64 i = 0; i < n; i++) ss << self.sv();
  501. return VAR(ss.str());
  502. });
  503. _vm->bind_func(VM::tp_str, "__rmul__", 2, [](VM* vm, ArgsView args) {
  504. const Str& self = _CAST(Str&, args[0]);
  505. i64 n = CAST(i64, args[1]);
  506. SStream ss;
  507. for(i64 i = 0; i < n; i++) ss << self.sv();
  508. return VAR(ss.str());
  509. });
  510. _vm->bind__contains__(VM::tp_str, [](VM* vm, PyVar _0, PyVar _1) {
  511. const Str& self = _CAST(Str&, _0);
  512. return VAR(self.index(CAST(Str&, _1)) != -1);
  513. });
  514. _vm->bind_func(VM::tp_str, __str__, 1, [](VM* vm, ArgsView args) { return args[0]; });
  515. _vm->bind__iter__(VM::tp_str, [](VM* vm, PyVar _0) { return vm->new_user_object<StringIter>(_0); });
  516. _vm->bind__repr__(VM::tp_str, [](VM* vm, PyVar _0) -> Str {
  517. const Str& self = _CAST(Str&, _0);
  518. return self.escape();
  519. });
  520. #define BIND_CMP_STR(name, op) \
  521. _vm->bind##name(VM::tp_str, [](VM* vm, PyVar lhs, PyVar rhs) { \
  522. if(!is_type(rhs, vm->tp_str)) return vm->NotImplemented; \
  523. return VAR(_CAST(Str&, lhs) op _CAST(Str&, rhs)); \
  524. });
  525. BIND_CMP_STR(__eq__, ==)
  526. BIND_CMP_STR(__lt__, <)
  527. BIND_CMP_STR(__le__, <=)
  528. BIND_CMP_STR(__gt__, >)
  529. BIND_CMP_STR(__ge__, >=)
  530. #undef BIND_CMP_STR
  531. _vm->bind__getitem__(VM::tp_str, [](VM* vm, PyVar _0, PyVar _1) {
  532. const Str& self = PK_OBJ_GET(Str, _0);
  533. if(is_type(_1, vm->tp_slice)){
  534. const Slice& s = _CAST(Slice&, _1);
  535. int start, stop, step;
  536. vm->parse_int_slice(s, self.u8_length(), start, stop, step);
  537. return VAR(self.u8_slice(start, stop, step));
  538. }
  539. i64 i = CAST(i64, _1);
  540. i = vm->normalized_index(i, self.u8_length());
  541. return VAR(self.u8_getitem(i));
  542. });
  543. _vm->bind(_vm->_t(VM::tp_str), "replace(self, old, new, count=-1)", [](VM* vm, ArgsView args) {
  544. const Str& self = _CAST(Str&, args[0]);
  545. const Str& old = CAST(Str&, args[1]);
  546. if(old.empty()) vm->ValueError("empty substring");
  547. const Str& new_ = CAST(Str&, args[2]);
  548. int count = CAST(int, args[3]);
  549. return VAR(self.replace(old, new_, count));
  550. });
  551. _vm->bind(_vm->_t(VM::tp_str), "split(self, sep=' ')", [](VM* vm, ArgsView args) {
  552. const Str& self = _CAST(Str&, args[0]);
  553. const Str& sep = CAST(Str&, args[1]);
  554. if(sep.empty()) vm->ValueError("empty separator");
  555. vector<std::string_view> parts;
  556. if(sep.size == 1){
  557. parts = self.split(sep[0]);
  558. }else{
  559. parts = self.split(sep);
  560. }
  561. List ret(parts.size());
  562. for(int i=0; i<parts.size(); i++) ret[i] = VAR(Str(parts[i]));
  563. return VAR(std::move(ret));
  564. });
  565. _vm->bind(_vm->_t(VM::tp_str), "splitlines(self)", [](VM* vm, ArgsView args) {
  566. const Str& self = _CAST(Str&, args[0]);
  567. vector<std::string_view> parts = self.split('\n');
  568. List ret(parts.size());
  569. for(int i=0; i<parts.size(); i++) ret[i] = VAR(Str(parts[i]));
  570. return VAR(std::move(ret));
  571. });
  572. _vm->bind(_vm->_t(VM::tp_str), "count(self, s: str)", [](VM* vm, ArgsView args) {
  573. const Str& self = _CAST(Str&, args[0]);
  574. const Str& s = CAST(Str&, args[1]);
  575. return VAR(self.count(s));
  576. });
  577. _vm->bind(_vm->_t(VM::tp_str), "index(self, value, __start=0)", [](VM* vm, ArgsView args) {
  578. const Str& self = _CAST(Str&, args[0]);
  579. const Str& value = CAST(Str&, args[1]);
  580. int start = CAST(int, args[2]);
  581. if (start < 0) vm->ValueError("argument 'start' can't be negative");
  582. int index = self.index(value, start);
  583. if(index < 0) vm->ValueError("substring not found");
  584. return VAR(index);
  585. });
  586. _vm->bind(_vm->_t(VM::tp_str), "find(self, value, __start=0)", [](VM* vm, ArgsView args) {
  587. const Str& self = _CAST(Str&, args[0]);
  588. const Str& value = CAST(Str&, args[1]);
  589. int start = CAST(int, args[2]);
  590. if (start < 0) vm->ValueError("argument 'start' can't be negative");
  591. return VAR(self.index(value, start));
  592. });
  593. _vm->bind_func(VM::tp_str, "startswith", 2, [](VM* vm, ArgsView args) {
  594. const Str& self = _CAST(Str&, args[0]);
  595. const Str& prefix = CAST(Str&, args[1]);
  596. return VAR(self.index(prefix) == 0);
  597. });
  598. _vm->bind_func(VM::tp_str, "endswith", 2, [](VM* vm, ArgsView args) {
  599. const Str& self = _CAST(Str&, args[0]);
  600. const Str& suffix = CAST(Str&, args[1]);
  601. int offset = self.length() - suffix.length();
  602. if(offset < 0) return vm->False;
  603. bool ok = memcmp(self.data+offset, suffix.data, suffix.length()) == 0;
  604. return VAR(ok);
  605. });
  606. _vm->bind_func(VM::tp_str, "encode", 1, [](VM* vm, ArgsView args) {
  607. const Str& self = _CAST(Str&, args[0]);
  608. Bytes retval(self.length());
  609. memcpy(retval.data(), self.data, self.length());
  610. return VAR(std::move(retval));
  611. });
  612. _vm->bind_func(VM::tp_str, "join", 2, [](VM* vm, ArgsView args) {
  613. auto _lock = vm->heap.gc_scope_lock();
  614. const Str& self = _CAST(Str&, args[0]);
  615. SStream ss;
  616. PyVar it = vm->py_iter(args[1]); // strong ref
  617. const PyTypeInfo* info = vm->_tp_info(args[1]);
  618. PyVar obj = vm->_py_next(info, it);
  619. while(obj != vm->StopIteration){
  620. if(!ss.empty()) ss << self;
  621. ss << CAST(Str&, obj);
  622. obj = vm->_py_next(info, it);
  623. }
  624. return VAR(ss.str());
  625. });
  626. _vm->bind_func(VM::tp_str, "lower", 1, [](VM* vm, ArgsView args) {
  627. const Str& self = _CAST(Str&, args[0]);
  628. return VAR(self.lower());
  629. });
  630. _vm->bind_func(VM::tp_str, "upper", 1, [](VM* vm, ArgsView args) {
  631. const Str& self = _CAST(Str&, args[0]);
  632. return VAR(self.upper());
  633. });
  634. _vm->bind(_vm->_t(VM::tp_str), "strip(self, chars=None)", [](VM* vm, ArgsView args) {
  635. const Str& self = _CAST(Str&, args[0]);
  636. if(args[1] == vm->None){
  637. return VAR(self.strip());
  638. }else{
  639. const Str& chars = CAST(Str&, args[1]);
  640. return VAR(self.strip(true, true, chars));
  641. }
  642. });
  643. _vm->bind(_vm->_t(VM::tp_str), "lstrip(self, chars=None)", [](VM* vm, ArgsView args) {
  644. const Str& self = _CAST(Str&, args[0]);
  645. if(args[1] == vm->None){
  646. return VAR(self.lstrip());
  647. }else{
  648. const Str& chars = CAST(Str&, args[1]);
  649. return VAR(self.strip(true, false, chars));
  650. }
  651. });
  652. _vm->bind(_vm->_t(VM::tp_str), "rstrip(self, chars=None)", [](VM* vm, ArgsView args) {
  653. const Str& self = _CAST(Str&, args[0]);
  654. if(args[1] == vm->None){
  655. return VAR(self.rstrip());
  656. }else{
  657. const Str& chars = CAST(Str&, args[1]);
  658. return VAR(self.strip(false, true, chars));
  659. }
  660. });
  661. // zfill
  662. _vm->bind(_vm->_t(VM::tp_str), "zfill(self, width)", [](VM* vm, ArgsView args) {
  663. const Str& self = _CAST(Str&, args[0]);
  664. int width = CAST(int, args[1]);
  665. int delta = width - self.u8_length();
  666. if(delta <= 0) return args[0];
  667. SStream ss;
  668. for(int i=0; i<delta; i++) ss << '0';
  669. ss << self;
  670. return VAR(ss.str());
  671. });
  672. // ljust
  673. _vm->bind(_vm->_t(VM::tp_str), "ljust(self, width, fillchar=' ')", [](VM* vm, ArgsView args) {
  674. const Str& self = _CAST(Str&, args[0]);
  675. int width = CAST(int, args[1]);
  676. int delta = width - self.u8_length();
  677. if(delta <= 0) return args[0];
  678. const Str& fillchar = CAST(Str&, args[2]);
  679. if (fillchar.u8_length() != 1) vm->TypeError("The fill character must be exactly one character long");
  680. SStream ss;
  681. ss << self;
  682. for(int i=0; i<delta; i++) ss << fillchar;
  683. return VAR(ss.str());
  684. });
  685. // rjust
  686. _vm->bind(_vm->_t(VM::tp_str), "rjust(self, width, fillchar=' ')", [](VM* vm, ArgsView args) {
  687. const Str& self = _CAST(Str&, args[0]);
  688. int width = CAST(int, args[1]);
  689. int delta = width - self.u8_length();
  690. if(delta <= 0) return args[0];
  691. const Str& fillchar = CAST(Str&, args[2]);
  692. if (fillchar.u8_length() != 1) vm->TypeError("The fill character must be exactly one character long");
  693. SStream ss;
  694. for(int i=0; i<delta; i++) ss << fillchar;
  695. ss << self;
  696. return VAR(ss.str());
  697. });
  698. // tp_list / tp_tuple
  699. _vm->bind(_vm->_t(VM::tp_list), "sort(self, key=None, reverse=False)", [](VM* vm, ArgsView args) {
  700. List& self = _CAST(List&, args[0]);
  701. PyVar key = args[1];
  702. if(key == vm->None){
  703. std::stable_sort(self.begin(), self.end(), [vm](PyVar a, PyVar b){
  704. return vm->py_lt(a, b);
  705. });
  706. }else{
  707. std::stable_sort(self.begin(), self.end(), [vm, key](PyVar a, PyVar b){
  708. return vm->py_lt(vm->call(key, a), vm->call(key, b));
  709. });
  710. }
  711. bool reverse = CAST(bool, args[2]);
  712. if(reverse){
  713. std::reverse(self.begin(), self.end());
  714. }
  715. return vm->None;
  716. });
  717. _vm->bind__repr__(VM::tp_list, [](VM* vm, PyVar _0) -> Str{
  718. if(vm->_repr_recursion_set.contains(_0)) return "[...]";
  719. List& iterable = _CAST(List&, _0);
  720. SStream ss;
  721. ss << '[';
  722. vm->_repr_recursion_set.push_back(_0);
  723. for(int i=0; i<iterable.size(); i++){
  724. ss << vm->py_repr(iterable[i]);
  725. if(i != iterable.size()-1) ss << ", ";
  726. }
  727. vm->_repr_recursion_set.pop_back();
  728. ss << ']';
  729. return ss.str();
  730. });
  731. _vm->bind__repr__(VM::tp_tuple, [](VM* vm, PyVar _0) -> Str{
  732. Tuple& iterable = _CAST(Tuple&, _0);
  733. SStream ss;
  734. ss << '(';
  735. if(iterable.size() == 1){
  736. ss << vm->py_repr(iterable[0]);
  737. ss << ',';
  738. }else{
  739. for(int i=0; i<iterable.size(); i++){
  740. ss << vm->py_repr(iterable[i]);
  741. if(i != iterable.size()-1) ss << ", ";
  742. }
  743. }
  744. ss << ')';
  745. return ss.str();
  746. });
  747. _vm->bind_func(VM::tp_list, __new__, -1, [](VM* vm, ArgsView args) {
  748. if(args.size() == 1+0) return VAR(List());
  749. if(args.size() == 1+1) return VAR(vm->py_list(args[1]));
  750. vm->TypeError("list() takes 0 or 1 arguments");
  751. return vm->None;
  752. });
  753. _vm->bind__contains__(VM::tp_list, [](VM* vm, PyVar _0, PyVar _1) {
  754. List& self = _CAST(List&, _0);
  755. for(PyVar i: self) if(vm->py_eq(i, _1)) return vm->True;
  756. return vm->False;
  757. });
  758. _vm->bind_func(VM::tp_list, "count", 2, [](VM* vm, ArgsView args) {
  759. List& self = _CAST(List&, args[0]);
  760. int count = 0;
  761. for(PyVar i: self) if(vm->py_eq(i, args[1])) count++;
  762. return VAR(count);
  763. });
  764. _vm->bind__eq__(VM::tp_list, [](VM* vm, PyVar _0, PyVar _1) {
  765. List& a = _CAST(List&, _0);
  766. if(!is_type(_1, vm->tp_list)) return vm->NotImplemented;
  767. List& b = _CAST(List&, _1);
  768. if(a.size() != b.size()) return vm->False;
  769. for(int i=0; i<a.size(); i++){
  770. if(!vm->py_eq(a[i], b[i])) return vm->False;
  771. }
  772. return vm->True;
  773. });
  774. _vm->bind(_vm->_t(VM::tp_list), "index(self, value, __start=0)", [](VM* vm, ArgsView args) {
  775. List& self = _CAST(List&, args[0]);
  776. PyVar obj = args[1];
  777. int start = CAST(int, args[2]);
  778. for(int i=start; i<self.size(); i++){
  779. if(vm->py_eq(self[i], obj)) return VAR(i);
  780. }
  781. vm->ValueError(vm->py_repr(obj) + " is not in list");
  782. return vm->None;
  783. });
  784. _vm->bind_func(VM::tp_list, "remove", 2, [](VM* vm, ArgsView args) {
  785. List& self = _CAST(List&, args[0]);
  786. PyVar obj = args[1];
  787. for(int i=0; i<self.size(); i++){
  788. if(vm->py_eq(self[i], obj)){
  789. self.erase(i);
  790. return vm->None;
  791. }
  792. }
  793. vm->ValueError(vm->py_repr(obj) + " is not in list");
  794. return vm->None;
  795. });
  796. _vm->bind_func(VM::tp_list, "pop", -1, [](VM* vm, ArgsView args) {
  797. List& self = _CAST(List&, args[0]);
  798. if(args.size() == 1+0){
  799. if(self.empty()) vm->IndexError("pop from empty list");
  800. PyVar retval = self.back();
  801. self.pop_back();
  802. return retval;
  803. }
  804. if(args.size() == 1+1){
  805. i64 index = CAST(i64, args[1]);
  806. index = vm->normalized_index(index, self.size());
  807. PyVar ret = self[index];
  808. self.erase(index);
  809. return ret;
  810. }
  811. vm->TypeError("pop() takes at most 1 argument");
  812. return vm->None;
  813. });
  814. _vm->bind_func(VM::tp_list, "append", 2, [](VM* vm, ArgsView args) {
  815. List& self = _CAST(List&, args[0]);
  816. self.push_back(args[1]);
  817. return vm->None;
  818. });
  819. _vm->bind_func(VM::tp_list, "extend", 2, [](VM* vm, ArgsView args) {
  820. auto _lock = vm->heap.gc_scope_lock();
  821. List& self = _CAST(List&, args[0]);
  822. PyVar it = vm->py_iter(args[1]); // strong ref
  823. const PyTypeInfo* info = vm->_tp_info(args[1]);
  824. PyVar obj = vm->_py_next(info, it);
  825. while(obj != vm->StopIteration){
  826. self.push_back(obj);
  827. obj = vm->_py_next(info, it);
  828. }
  829. return vm->None;
  830. });
  831. _vm->bind_func(VM::tp_list, "reverse", 1, [](VM* vm, ArgsView args) {
  832. List& self = _CAST(List&, args[0]);
  833. std::reverse(self.begin(), self.end());
  834. return vm->None;
  835. });
  836. _vm->bind__mul__(VM::tp_list, [](VM* vm, PyVar _0, PyVar _1) {
  837. const List& self = _CAST(List&, _0);
  838. if(!is_int(_1)) return vm->NotImplemented;
  839. int n = _CAST(int, _1);
  840. List result;
  841. result.reserve(self.size() * n);
  842. for(int i = 0; i < n; i++) result.extend(self.begin(), self.end());
  843. return VAR(std::move(result));
  844. });
  845. _vm->bind_func(VM::tp_list, "__rmul__", 2, [](VM* vm, ArgsView args) {
  846. const List& self = _CAST(List&, args[0]);
  847. if(!is_int(args[1])) return vm->NotImplemented;
  848. int n = _CAST(int, args[1]);
  849. List result;
  850. result.reserve(self.size() * n);
  851. for(int i = 0; i < n; i++) result.extend(self.begin(), self.end());
  852. return VAR(std::move(result));
  853. });
  854. _vm->bind_func(VM::tp_list, "insert", 3, [](VM* vm, ArgsView args) {
  855. List& self = _CAST(List&, args[0]);
  856. int index = CAST(int, args[1]);
  857. if(index < 0) index += self.size();
  858. if(index < 0) index = 0;
  859. if(index > self.size()) index = self.size();
  860. self.insert(index, args[2]);
  861. return vm->None;
  862. });
  863. _vm->bind_func(VM::tp_list, "clear", 1, [](VM* vm, ArgsView args) {
  864. _CAST(List&, args[0]).clear();
  865. return vm->None;
  866. });
  867. _vm->bind_func(VM::tp_list, "copy", 1, [](VM* vm, ArgsView args){
  868. const List& self = _CAST(List&, args[0]);
  869. return VAR(List(explicit_copy_t(), self));
  870. });
  871. #define BIND_RICH_CMP(name, op, _t, _T) \
  872. _vm->bind__##name##__(_vm->_t, [](VM* vm, PyVar lhs, PyVar rhs){ \
  873. if(!is_type(rhs, vm->_t)) return vm->NotImplemented; \
  874. auto& a = _CAST(_T&, lhs); \
  875. auto& b = _CAST(_T&, rhs); \
  876. for(int i=0; i<a.size() && i<b.size(); i++){ \
  877. if(vm->py_eq(a[i], b[i])) continue; \
  878. return VAR(vm->py_##name(a[i], b[i])); \
  879. } \
  880. return VAR(a.size() op b.size()); \
  881. });
  882. BIND_RICH_CMP(lt, <, tp_list, List)
  883. BIND_RICH_CMP(le, <=, tp_list, List)
  884. BIND_RICH_CMP(gt, >, tp_list, List)
  885. BIND_RICH_CMP(ge, >=, tp_list, List)
  886. BIND_RICH_CMP(lt, <, tp_tuple, Tuple)
  887. BIND_RICH_CMP(le, <=, tp_tuple, Tuple)
  888. BIND_RICH_CMP(gt, >, tp_tuple, Tuple)
  889. BIND_RICH_CMP(ge, >=, tp_tuple, Tuple)
  890. #undef BIND_RICH_CMP
  891. _vm->bind__add__(VM::tp_list, [](VM* vm, PyVar _0, PyVar _1) {
  892. const List& self = _CAST(List&, _0);
  893. const List& other = CAST(List&, _1);
  894. List new_list(explicit_copy_t(), self);
  895. new_list.extend(other.begin(), other.end());
  896. return VAR(std::move(new_list));
  897. });
  898. _vm->bind__len__(VM::tp_list, [](VM* vm, PyVar _0) {
  899. return (i64)_CAST(List&, _0).size();
  900. });
  901. _vm->bind__iter__(VM::tp_list, [](VM* vm, PyVar _0) {
  902. List& self = _CAST(List&, _0);
  903. return vm->new_user_object<ArrayIter>(_0.get(), self.begin(), self.end());
  904. });
  905. _vm->_all_types[VM::tp_list].op__iter__ = [](VM* vm, PyVar _0){
  906. List& self = _CAST(List&, _0);
  907. vm->new_stack_object<ArrayIter>(vm->_tp_user<ArrayIter>(), _0.get(), self.begin(), self.end());
  908. };
  909. _vm->bind__getitem__(VM::tp_list, PyArrayGetItem<List>);
  910. _vm->bind__setitem__(VM::tp_list, [](VM* vm, PyVar _0, PyVar _1, PyVar _2){
  911. List& self = _CAST(List&, _0);
  912. i64 i = CAST(i64, _1);
  913. i = vm->normalized_index(i, self.size());
  914. self[i] = _2;
  915. });
  916. _vm->bind__delitem__(VM::tp_list, [](VM* vm, PyVar _0, PyVar _1){
  917. List& self = _CAST(List&, _0);
  918. i64 i = CAST(i64, _1);
  919. i = vm->normalized_index(i, self.size());
  920. self.erase(i);
  921. });
  922. _vm->bind_func(VM::tp_tuple, __new__, -1, [](VM* vm, ArgsView args) {
  923. if(args.size() == 1+0) return VAR(Tuple(0));
  924. if(args.size() == 1+1){
  925. List list = vm->py_list(args[1]);
  926. return VAR(list.to_tuple());
  927. }
  928. vm->TypeError("tuple() takes at most 1 argument");
  929. return vm->None;
  930. });
  931. _vm->bind__contains__(VM::tp_tuple, [](VM* vm, PyVar obj, PyVar item) {
  932. Tuple& self = _CAST(Tuple&, obj);
  933. for(PyVar i: self) if(vm->py_eq(i, item)) return vm->True;
  934. return vm->False;
  935. });
  936. _vm->bind_func(VM::tp_tuple, "count", 2, [](VM* vm, ArgsView args) {
  937. Tuple& self = _CAST(Tuple&, args[0]);
  938. int count = 0;
  939. for(PyVar i: self) if(vm->py_eq(i, args[1])) count++;
  940. return VAR(count);
  941. });
  942. _vm->bind__eq__(VM::tp_tuple, [](VM* vm, PyVar _0, PyVar _1) {
  943. const Tuple& self = _CAST(Tuple&, _0);
  944. if(!is_type(_1, vm->tp_tuple)) return vm->NotImplemented;
  945. const Tuple& other = _CAST(Tuple&, _1);
  946. if(self.size() != other.size()) return vm->False;
  947. for(int i = 0; i < self.size(); i++) {
  948. if(!vm->py_eq(self[i], other[i])) return vm->False;
  949. }
  950. return vm->True;
  951. });
  952. _vm->bind__hash__(VM::tp_tuple, [](VM* vm, PyVar _0) {
  953. i64 x = 1000003;
  954. for (PyVar item: _CAST(Tuple&, _0)) {
  955. i64 y = vm->py_hash(item);
  956. // recommended by Github Copilot
  957. x = x ^ (y + 0x9e3779b9 + (x << 6) + (x >> 2));
  958. }
  959. return x;
  960. });
  961. _vm->bind__iter__(VM::tp_tuple, [](VM* vm, PyVar _0) {
  962. Tuple& self = _CAST(Tuple&, _0);
  963. return vm->new_user_object<ArrayIter>(_0.get(), self.begin(), self.end());
  964. });
  965. _vm->_all_types[VM::tp_tuple].op__iter__ = [](VM* vm, PyVar _0){
  966. Tuple& self = _CAST(Tuple&, _0);
  967. vm->new_stack_object<ArrayIter>(vm->_tp_user<ArrayIter>(), _0.get(), self.begin(), self.end());
  968. };
  969. _vm->bind__getitem__(VM::tp_tuple, PyArrayGetItem<Tuple>);
  970. _vm->bind__len__(VM::tp_tuple, [](VM* vm, PyVar obj) {
  971. return (i64)_CAST(Tuple&, obj).size();
  972. });
  973. // tp_bool
  974. _vm->bind_func(VM::tp_bool, __new__, 2, PK_LAMBDA(VAR(vm->py_bool(args[1]))));
  975. _vm->bind__hash__(VM::tp_bool, [](VM* vm, PyVar _0) {
  976. return (i64)_CAST(bool, _0);
  977. });
  978. _vm->bind__repr__(VM::tp_bool, [](VM* vm, PyVar _0) -> Str{
  979. bool val = _CAST(bool, _0);
  980. return val ? "True" : "False";
  981. });
  982. _vm->bind__and__(VM::tp_bool, [](VM* vm, PyVar _0, PyVar _1) {
  983. return VAR(_CAST(bool, _0) && CAST(bool, _1));
  984. });
  985. _vm->bind__or__(VM::tp_bool, [](VM* vm, PyVar _0, PyVar _1) {
  986. return VAR(_CAST(bool, _0) || CAST(bool, _1));
  987. });
  988. _vm->bind__xor__(VM::tp_bool, [](VM* vm, PyVar _0, PyVar _1) {
  989. return VAR(_CAST(bool, _0) != CAST(bool, _1));
  990. });
  991. _vm->bind__eq__(VM::tp_bool, [](VM* vm, PyVar _0, PyVar _1) {
  992. if(is_type(_1, vm->tp_bool)) return VAR(_0 == _1);
  993. if(is_int(_1)) return VAR(_CAST(bool, _0) == (bool)CAST(i64, _1));
  994. return vm->NotImplemented;
  995. });
  996. // tp_ellipsis / tp_NotImplementedType
  997. _vm->bind__repr__(_vm->_tp(_vm->Ellipsis), [](VM* vm, PyVar _0) -> Str{
  998. return "...";
  999. });
  1000. _vm->bind__repr__(_vm->_tp(_vm->NotImplemented), [](VM* vm, PyVar _0) -> Str{
  1001. return "NotImplemented";
  1002. });
  1003. // tp_bytes
  1004. _vm->bind_func(VM::tp_bytes, __new__, 2, [](VM* vm, ArgsView args){
  1005. List& list = CAST(List&, args[1]);
  1006. Bytes retval(list.size());
  1007. for(int i=0; i<list.size(); i++){
  1008. i64 b = CAST(i64, list[i]);
  1009. if(b<0 || b>255) vm->ValueError("byte must be in range[0, 256)");
  1010. retval[i] = (char)b;
  1011. }
  1012. return VAR(std::move(retval));
  1013. });
  1014. _vm->bind__getitem__(VM::tp_bytes, [](VM* vm, PyVar _0, PyVar _1) {
  1015. const Bytes& self = PK_OBJ_GET(Bytes, _0);
  1016. if(is_type(_1, vm->tp_slice)){
  1017. const Slice& s = _CAST(Slice&, _1);
  1018. int start, stop, step;
  1019. vm->parse_int_slice(s, self.size(), start, stop, step);
  1020. int guess_max_size = abs(stop - start) / abs(step) + 1;
  1021. if(guess_max_size > self.size()) guess_max_size = self.size();
  1022. unsigned char* buffer = (unsigned char*)malloc(guess_max_size);
  1023. int j = 0; // actual size
  1024. PK_SLICE_LOOP(i, start, stop, step) buffer[j++] = self[i];
  1025. return VAR(Bytes(buffer, j));
  1026. }
  1027. i64 i = CAST(i64, _1);
  1028. i = vm->normalized_index(i, self.size());
  1029. return VAR(self[i]);
  1030. });
  1031. _vm->bind__add__(VM::tp_bytes, [](VM* vm, PyVar _0, PyVar _1) {
  1032. const Bytes& a = _CAST(Bytes&, _0);
  1033. const Bytes& b = CAST(Bytes&, _1);
  1034. Bytes retval(a.size() + b.size());
  1035. memcpy(retval.data(), a.data(), a.size());
  1036. memcpy(retval.data() + a.size(), b.data(), b.size());
  1037. return VAR(std::move(retval));
  1038. });
  1039. _vm->bind__hash__(VM::tp_bytes, [](VM* vm, PyVar _0) {
  1040. const Bytes& self = _CAST(Bytes&, _0);
  1041. std::string_view view((char*)self.data(), self.size());
  1042. return (i64)std::hash<std::string_view>()(view);
  1043. });
  1044. _vm->bind__repr__(VM::tp_bytes, [](VM* vm, PyVar _0) -> Str {
  1045. const Bytes& self = _CAST(Bytes&, _0);
  1046. SStream ss;
  1047. ss << "b'";
  1048. for(int i=0; i<self.size(); i++){
  1049. ss << "\\x";
  1050. ss.write_hex((unsigned char)self[i]);
  1051. }
  1052. ss << "'";
  1053. return ss.str();
  1054. });
  1055. _vm->bind__len__(VM::tp_bytes, [](VM* vm, PyVar _0) {
  1056. return (i64)_CAST(Bytes&, _0).size();
  1057. });
  1058. _vm->bind_func(VM::tp_bytes, "decode", 1, [](VM* vm, ArgsView args) {
  1059. const Bytes& self = _CAST(Bytes&, args[0]);
  1060. return VAR(Str(std::string_view((char*)self.data(), self.size())));
  1061. });
  1062. _vm->bind__eq__(VM::tp_bytes, [](VM* vm, PyVar _0, PyVar _1) {
  1063. if(!is_type(_1, vm->tp_bytes)) return vm->NotImplemented;
  1064. const Bytes& lhs = _CAST(Bytes&, _0);
  1065. const Bytes& rhs = _CAST(Bytes&, _1);
  1066. if(lhs.size() != rhs.size()) return vm->False;
  1067. return VAR(memcmp(lhs.data(), rhs.data(), lhs.size()) == 0);
  1068. });
  1069. // tp_slice
  1070. _vm->bind_func(VM::tp_slice, __new__, 4, [](VM* vm, ArgsView args) {
  1071. return VAR(Slice(args[1], args[2], args[3]));
  1072. });
  1073. _vm->bind__eq__(VM::tp_slice, [](VM* vm, PyVar _0, PyVar _1){
  1074. const Slice& self = _CAST(Slice&, _0);
  1075. if(!is_type(_1, vm->tp_slice)) return vm->NotImplemented;
  1076. const Slice& other = _CAST(Slice&, _1);
  1077. if(vm->py_ne(self.start, other.start)) return vm->False;
  1078. if(vm->py_ne(self.stop, other.stop)) return vm->False;
  1079. if(vm->py_ne(self.step, other.step)) return vm->False;
  1080. return vm->True;
  1081. });
  1082. _vm->bind__repr__(VM::tp_slice, [](VM* vm, PyVar _0) -> Str {
  1083. const Slice& self = _CAST(Slice&, _0);
  1084. SStream ss;
  1085. ss << "slice(";
  1086. ss << vm->py_repr(self.start) << ", ";
  1087. ss << vm->py_repr(self.stop) << ", ";
  1088. ss << vm->py_repr(self.step) << ")";
  1089. return ss.str();
  1090. });
  1091. // tp_mappingproxy
  1092. _vm->bind_func(VM::tp_mappingproxy, "keys", 1, [](VM* vm, ArgsView args) {
  1093. MappingProxy& self = _CAST(MappingProxy&, args[0]);
  1094. List keys;
  1095. for(StrName name : self.attr().keys()) keys.push_back(VAR(name.sv()));
  1096. return VAR(std::move(keys));
  1097. });
  1098. _vm->bind_func(VM::tp_mappingproxy, "values", 1, [](VM* vm, ArgsView args) {
  1099. MappingProxy& self = _CAST(MappingProxy&, args[0]);
  1100. List values;
  1101. for(auto [k, v] : self.attr().items()) values.push_back(v);
  1102. return VAR(std::move(values));
  1103. });
  1104. _vm->bind_func(VM::tp_mappingproxy, "items", 1, [](VM* vm, ArgsView args) {
  1105. MappingProxy& self = _CAST(MappingProxy&, args[0]);
  1106. List items;
  1107. for(auto [k, v] : self.attr().items()){
  1108. PyVar t = VAR(Tuple(VAR(k.sv()), v));
  1109. items.push_back(std::move(t));
  1110. }
  1111. return VAR(std::move(items));
  1112. });
  1113. _vm->bind__len__(VM::tp_mappingproxy, [](VM* vm, PyVar _0) {
  1114. return (i64)_CAST(MappingProxy&, _0).attr().size();
  1115. });
  1116. _vm->bind__eq__(VM::tp_mappingproxy, [](VM* vm, PyVar _0, PyVar _1){
  1117. const MappingProxy& a = _CAST(MappingProxy&, _0);
  1118. if(!is_type(_1, VM::tp_mappingproxy)) return vm->NotImplemented;
  1119. const MappingProxy& b = _CAST(MappingProxy&, _1);
  1120. return VAR(a.obj == b.obj);
  1121. });
  1122. _vm->bind__getitem__(VM::tp_mappingproxy, [](VM* vm, PyVar _0, PyVar _1) {
  1123. MappingProxy& self = _CAST(MappingProxy&, _0);
  1124. StrName key = CAST(Str&, _1);
  1125. PyVar ret = self.attr().try_get_likely_found(key);
  1126. if(ret == nullptr) vm->KeyError(_1);
  1127. return ret;
  1128. });
  1129. _vm->bind(_vm->_t(VM::tp_mappingproxy), "get(self, key, default=None)", [](VM* vm, ArgsView args) {
  1130. MappingProxy& self = _CAST(MappingProxy&, args[0]);
  1131. StrName key = CAST(Str&, args[1]);
  1132. PyVar ret = self.attr().try_get(key);
  1133. if(ret == nullptr) return args[2];
  1134. return ret;
  1135. });
  1136. _vm->bind__repr__(VM::tp_mappingproxy, [](VM* vm, PyVar _0) -> Str{
  1137. if(vm->_repr_recursion_set.contains(_0)) return "{...}";
  1138. MappingProxy& self = _CAST(MappingProxy&, _0);
  1139. SStream ss;
  1140. ss << "mappingproxy({";
  1141. bool first = true;
  1142. vm->_repr_recursion_set.push_back(_0);
  1143. for(auto [k, v] : self.attr().items()){
  1144. if(!first) ss << ", ";
  1145. first = false;
  1146. ss << k.escape() << ": ";
  1147. ss << vm->py_repr(v);
  1148. }
  1149. vm->_repr_recursion_set.pop_back();
  1150. ss << "})";
  1151. return ss.str();
  1152. });
  1153. _vm->bind__contains__(VM::tp_mappingproxy, [](VM* vm, PyVar _0, PyVar _1) {
  1154. MappingProxy& self = _CAST(MappingProxy&, _0);
  1155. return VAR(self.attr().contains(CAST(Str&, _1)));
  1156. });
  1157. // tp_dict
  1158. _vm->bind_func(VM::tp_dict, __new__, -1, [](VM* vm, ArgsView args){
  1159. Type cls_t = PK_OBJ_GET(Type, args[0]);
  1160. return vm->new_object<Dict>(cls_t);
  1161. });
  1162. _vm->bind_func(VM::tp_dict, __init__, -1, [](VM* vm, ArgsView args){
  1163. if(args.size() == 1+0) return vm->None;
  1164. if(args.size() == 1+1){
  1165. auto _lock = vm->heap.gc_scope_lock();
  1166. Dict& self = PK_OBJ_GET(Dict, args[0]);
  1167. if(is_type(args[1], vm->tp_dict)){
  1168. Dict& other = CAST(Dict&, args[1]);
  1169. self.update(vm, other);
  1170. return vm->None;
  1171. }
  1172. if(is_type(args[1], vm->tp_list)){
  1173. List& list = PK_OBJ_GET(List, args[1]);
  1174. for(PyVar item : list){
  1175. Tuple& t = CAST(Tuple&, item);
  1176. if(t.size() != 2){
  1177. vm->ValueError("dict() takes a list of tuples (key, value)");
  1178. return vm->None;
  1179. }
  1180. self.set(vm, t[0], t[1]);
  1181. }
  1182. return vm->None;
  1183. }
  1184. vm->TypeError("dict() takes a dictionary or a list of tuples");
  1185. }
  1186. vm->TypeError("dict() takes at most 1 argument");
  1187. });
  1188. _vm->bind__len__(VM::tp_dict, [](VM* vm, PyVar _0) {
  1189. return (i64)PK_OBJ_GET(Dict, _0).size();
  1190. });
  1191. _vm->bind__getitem__(VM::tp_dict, [](VM* vm, PyVar _0, PyVar _1) {
  1192. Dict& self = PK_OBJ_GET(Dict, _0);
  1193. PyVar ret = self.try_get(vm, _1);
  1194. if(ret == nullptr){
  1195. // try __missing__
  1196. PyVar self;
  1197. PyVar f_missing = vm->get_unbound_method(_0, __missing__, &self, false);
  1198. if(f_missing != nullptr){
  1199. return vm->call_method(self, f_missing, _1);
  1200. }
  1201. vm->KeyError(_1);
  1202. }
  1203. return ret;
  1204. });
  1205. _vm->bind__setitem__(VM::tp_dict, [](VM* vm, PyVar _0, PyVar _1, PyVar _2) {
  1206. Dict& self = _CAST(Dict&, _0);
  1207. self.set(vm, _1, _2);
  1208. });
  1209. _vm->bind__delitem__(VM::tp_dict, [](VM* vm, PyVar _0, PyVar _1) {
  1210. Dict& self = _CAST(Dict&, _0);
  1211. bool ok = self.del(vm, _1);
  1212. if(!ok) vm->KeyError(_1);
  1213. });
  1214. _vm->bind_func(VM::tp_dict, "pop", -1, [](VM* vm, ArgsView args) {
  1215. if(args.size() != 2 && args.size() != 3){
  1216. vm->TypeError("pop() expected 1 or 2 arguments");
  1217. return vm->None;
  1218. }
  1219. Dict& self = _CAST(Dict&, args[0]);
  1220. PyVar value = self.try_get(vm, args[1]);
  1221. if(value == nullptr){
  1222. if(args.size() == 2) vm->KeyError(args[1]);
  1223. if(args.size() == 3){
  1224. return args[2];
  1225. }
  1226. }
  1227. self.del(vm, args[1]);
  1228. return value;
  1229. });
  1230. _vm->bind__contains__(VM::tp_dict, [](VM* vm, PyVar _0, PyVar _1) {
  1231. Dict& self = _CAST(Dict&, _0);
  1232. return VAR(self.contains(vm, _1));
  1233. });
  1234. _vm->bind__iter__(VM::tp_dict, [](VM* vm, PyVar _0) {
  1235. const Dict& self = _CAST(Dict&, _0);
  1236. return vm->py_iter(VAR(self.keys()));
  1237. });
  1238. _vm->bind_func(VM::tp_dict, "get", -1, [](VM* vm, ArgsView args) {
  1239. Dict& self = _CAST(Dict&, args[0]);
  1240. if(args.size() == 1+1){
  1241. PyVar ret = self.try_get(vm, args[1]);
  1242. if(ret != nullptr) return ret;
  1243. return vm->None;
  1244. }else if(args.size() == 1+2){
  1245. PyVar ret = self.try_get(vm, args[1]);
  1246. if(ret != nullptr) return ret;
  1247. return args[2];
  1248. }
  1249. vm->TypeError("get() takes at most 2 arguments");
  1250. return vm->None;
  1251. });
  1252. _vm->bind_func(VM::tp_dict, "keys", 1, [](VM* vm, ArgsView args) {
  1253. const Dict& self = _CAST(Dict&, args[0]);
  1254. return VAR(self.keys());
  1255. });
  1256. _vm->bind_func(VM::tp_dict, "values", 1, [](VM* vm, ArgsView args) {
  1257. const Dict& self = _CAST(Dict&, args[0]);
  1258. return VAR(self.values());
  1259. });
  1260. _vm->bind_func(VM::tp_dict, "items", 1, [](VM* vm, ArgsView args) {
  1261. return vm->new_user_object<DictItemsIter>(args[0]);
  1262. });
  1263. _vm->bind_func(VM::tp_dict, "update", 2, [](VM* vm, ArgsView args) {
  1264. Dict& self = _CAST(Dict&, args[0]);
  1265. const Dict& other = CAST(Dict&, args[1]);
  1266. self.update(vm, other);
  1267. return vm->None;
  1268. });
  1269. _vm->bind_func(VM::tp_dict, "copy", 1, [](VM* vm, ArgsView args) {
  1270. const Dict& self = _CAST(Dict&, args[0]);
  1271. return VAR(self);
  1272. });
  1273. _vm->bind_func(VM::tp_dict, "clear", 1, [](VM* vm, ArgsView args) {
  1274. Dict& self = _CAST(Dict&, args[0]);
  1275. self.clear();
  1276. return vm->None;
  1277. });
  1278. _vm->bind__repr__(VM::tp_dict, [](VM* vm, PyVar _0) -> Str{
  1279. if(vm->_repr_recursion_set.contains(_0)) return "{...}";
  1280. Dict& self = _CAST(Dict&, _0);
  1281. SStream ss;
  1282. ss << "{";
  1283. bool first = true;
  1284. vm->_repr_recursion_set.push_back(_0);
  1285. self.apply([&](PyVar k, PyVar v){
  1286. if(!first) ss << ", ";
  1287. first = false;
  1288. ss << vm->py_repr(k) << ": " << vm->py_repr(v);
  1289. });
  1290. vm->_repr_recursion_set.pop_back();
  1291. ss << "}";
  1292. return ss.str();
  1293. });
  1294. _vm->bind__eq__(VM::tp_dict, [](VM* vm, PyVar _0, PyVar _1) {
  1295. Dict& self = _CAST(Dict&, _0);
  1296. if(!vm->isinstance(_1, vm->tp_dict)) return vm->NotImplemented;
  1297. Dict& other = _CAST(Dict&, _1);
  1298. if(self.size() != other.size()) return vm->False;
  1299. for(int i=0; i<self._capacity; i++){
  1300. auto item = self._items[i];
  1301. if(item.first == nullptr) continue;
  1302. PyVar value = other.try_get(vm, item.first);
  1303. if(value == nullptr) return vm->False;
  1304. if(!vm->py_eq(item.second, value)) return vm->False;
  1305. }
  1306. return vm->True;
  1307. });
  1308. _vm->bind__repr__(VM::tp_module, [](VM* vm, PyVar _0) -> Str {
  1309. const Str& path = CAST(Str&, _0->attr(__path__));
  1310. return _S("<module ", path.escape(), ">");
  1311. });
  1312. // tp_property
  1313. _vm->bind_func(VM::tp_property, __new__, -1, [](VM* vm, ArgsView args) {
  1314. if(args.size() == 1+1){
  1315. return VAR(Property(args[1], vm->None));
  1316. }else if(args.size() == 1+2){
  1317. return VAR(Property(args[1], args[2]));
  1318. }
  1319. vm->TypeError("property() takes at most 2 arguments");
  1320. return vm->None;
  1321. });
  1322. _vm->bind_property(_vm->_t(VM::tp_function), "__doc__", [](VM* vm, ArgsView args) {
  1323. Function& func = _CAST(Function&, args[0]);
  1324. if(!func.decl->docstring) return vm->None;
  1325. return VAR(func.decl->docstring);
  1326. });
  1327. _vm->bind_property(_vm->_t(VM::tp_native_func), "__doc__", [](VM* vm, ArgsView args) {
  1328. NativeFunc& func = _CAST(NativeFunc&, args[0]);
  1329. if(func.decl == nullptr) return vm->None;
  1330. if(!func.decl->docstring) return vm->None;
  1331. return VAR(func.decl->docstring);
  1332. });
  1333. // tp_exception
  1334. _vm->bind_func(VM::tp_exception, __new__, -1, [](VM* vm, ArgsView args) -> PyVar{
  1335. Type cls = PK_OBJ_GET(Type, args[0]);
  1336. StrName cls_name = _type_name(vm, cls);
  1337. PyObject* e_obj = vm->heap.gcnew<Exception>(cls, cls_name);
  1338. e_obj->_enable_instance_dict();
  1339. e_obj->as<Exception>()._self = e_obj;
  1340. return e_obj;
  1341. });
  1342. _vm->bind(_vm->_t(VM::tp_exception), "__init__(self, msg=...)", [](VM* vm, ArgsView args){
  1343. Exception& self = _CAST(Exception&, args[0]);
  1344. if(args[1] == vm->Ellipsis){
  1345. self.msg = "";
  1346. }else{
  1347. self.msg = CAST(Str, args[1]);
  1348. }
  1349. return vm->None;
  1350. });
  1351. _vm->bind__repr__(VM::tp_exception, [](VM* vm, PyVar _0) -> Str {
  1352. Exception& self = _CAST(Exception&, _0);
  1353. return _S(_type_name(vm, _0.type), '(', self.msg.escape(), ')');
  1354. });
  1355. _vm->bind__str__(VM::tp_exception, [](VM* vm, PyVar _0) -> Str{
  1356. Exception& self = _CAST(Exception&, _0);
  1357. return self.msg;
  1358. });
  1359. _vm->register_user_class<RangeIter>(_vm->builtins, "_range_iter");
  1360. _vm->register_user_class<RangeIterR>(_vm->builtins, "_range_iter_r");
  1361. _vm->register_user_class<ArrayIter>(_vm->builtins, "_array_iter");
  1362. _vm->register_user_class<StringIter>(_vm->builtins, "_string_iter");
  1363. _vm->register_user_class<Generator>(_vm->builtins, "generator");
  1364. _vm->register_user_class<DictItemsIter>(_vm->builtins, "_dict_items_iter");
  1365. }
  1366. void VM::__post_init_builtin_types(){
  1367. __init_builtins(this);
  1368. bind_func(tp_module, __new__, -1, PK_ACTION(vm->NotImplementedError()));
  1369. _all_types[tp_module].m__getattr__ = [](VM* vm, PyVar obj, StrName name) -> PyVar{
  1370. const Str& path = CAST(Str&, obj->attr(__path__));
  1371. return vm->py_import(_S(path, ".", name.sv()), false);
  1372. };
  1373. bind_func(tp_property, "setter", 2, [](VM* vm, ArgsView args) {
  1374. Property& self = _CAST(Property&, args[0]);
  1375. // The setter's name is not necessary to be the same as the property's name
  1376. // However, for cpython compatibility, we recommend to use the same name
  1377. self.setter = args[1];
  1378. return args[0];
  1379. });
  1380. // type
  1381. bind__getitem__(tp_type, [](VM* vm, PyVar self, PyVar _){
  1382. return self; // for generics
  1383. });
  1384. bind__repr__(tp_type, [](VM* vm, PyVar self) -> Str{
  1385. SStream ss;
  1386. const PyTypeInfo& info = vm->_all_types[PK_OBJ_GET(Type, self)];
  1387. ss << "<class '" << info.name << "'>";
  1388. return ss.str();
  1389. });
  1390. bind_property(_t(tp_object), "__class__", PK_LAMBDA(vm->_t(args[0])));
  1391. bind_property(_t(tp_type), "__base__", [](VM* vm, ArgsView args){
  1392. const PyTypeInfo& info = vm->_all_types[PK_OBJ_GET(Type, args[0])];
  1393. return info.base ? vm->_all_types[info.base].obj : vm->None;
  1394. });
  1395. bind_property(_t(tp_type), "__name__", [](VM* vm, ArgsView args){
  1396. const PyTypeInfo& info = vm->_all_types[PK_OBJ_GET(Type, args[0])];
  1397. return VAR(info.name.sv());
  1398. });
  1399. bind_property(_t(tp_type), "__module__", [](VM* vm, ArgsView args) -> PyVar{
  1400. const PyTypeInfo& info = vm->_all_types[PK_OBJ_GET(Type, args[0])];
  1401. if(info.mod == nullptr) return vm->None;
  1402. return info.mod;
  1403. });
  1404. bind_property(_t(tp_bound_method), "__self__", [](VM* vm, ArgsView args){
  1405. return CAST(BoundMethod&, args[0]).self;
  1406. });
  1407. bind_property(_t(tp_bound_method), "__func__", [](VM* vm, ArgsView args){
  1408. return CAST(BoundMethod&, args[0]).func;
  1409. });
  1410. bind__eq__(tp_bound_method, [](VM* vm, PyVar lhs, PyVar rhs){
  1411. if(!is_type(rhs, vm->tp_bound_method)) return vm->NotImplemented;
  1412. const BoundMethod& _0 = PK_OBJ_GET(BoundMethod, lhs);
  1413. const BoundMethod& _1 = PK_OBJ_GET(BoundMethod, rhs);
  1414. return VAR(_0.self == _1.self && _0.func == _1.func);
  1415. });
  1416. bind_property(_t(tp_slice), "start", [](VM* vm, ArgsView args){
  1417. return CAST(Slice&, args[0]).start;
  1418. });
  1419. bind_property(_t(tp_slice), "stop", [](VM* vm, ArgsView args){
  1420. return CAST(Slice&, args[0]).stop;
  1421. });
  1422. bind_property(_t(tp_slice), "step", [](VM* vm, ArgsView args){
  1423. return CAST(Slice&, args[0]).step;
  1424. });
  1425. bind_property(_t(tp_object), "__dict__", [](VM* vm, ArgsView args){
  1426. if(is_tagged(args[0]) || !args[0]->is_attr_valid()) return vm->None;
  1427. return VAR(MappingProxy(args[0].get()));
  1428. });
  1429. bind(builtins, "print(*args, sep=' ', end='\\n')", [](VM* vm, ArgsView args) {
  1430. const Tuple& _0 = CAST(Tuple&, args[0]);
  1431. const Str& _1 = CAST(Str&, args[1]);
  1432. const Str& _2 = CAST(Str&, args[2]);
  1433. SStream ss;
  1434. for(int i=0; i<_0.size(); i++){
  1435. ss << vm->py_str(_0[i]);
  1436. if(i != _0.size()-1) ss << _1;
  1437. }
  1438. ss << _2;
  1439. vm->stdout_write(ss.str());
  1440. return vm->None;
  1441. });
  1442. add_module___builtins(vm);
  1443. add_module_sys(this);
  1444. add_module_traceback(this);
  1445. add_module_time(this);
  1446. add_module_json(this);
  1447. add_module_math(this);
  1448. add_module_dis(this);
  1449. add_module_c(this);
  1450. add_module_gc(this);
  1451. add_module_random(this);
  1452. add_module_base64(this);
  1453. _lazy_modules["this"] = kPythonLibs_this;
  1454. _lazy_modules["functools"] = kPythonLibs_functools;
  1455. _lazy_modules["heapq"] = kPythonLibs_heapq;
  1456. _lazy_modules["bisect"] = kPythonLibs_bisect;
  1457. _lazy_modules["pickle"] = kPythonLibs_pickle;
  1458. _lazy_modules["_long"] = kPythonLibs__long;
  1459. _lazy_modules["colorsys"] = kPythonLibs_colorsys;
  1460. _lazy_modules["typing"] = kPythonLibs_typing;
  1461. _lazy_modules["datetime"] = kPythonLibs_datetime;
  1462. _lazy_modules["cmath"] = kPythonLibs_cmath;
  1463. _lazy_modules["itertools"] = kPythonLibs_itertools;
  1464. _lazy_modules["operator"] = kPythonLibs_operator;
  1465. _lazy_modules["collections"] = kPythonLibs_collections;
  1466. try{
  1467. // initialize dummy func_decl for exec/eval
  1468. CodeObject_ dynamic_co = compile("def _(): pass", "<dynamic>", EXEC_MODE);
  1469. __dynamic_func_decl = dynamic_co->func_decls[0];
  1470. // initialize builtins
  1471. CodeObject_ code = compile(kPythonLibs_builtins, "<builtins>", EXEC_MODE);
  1472. this->_exec(code, this->builtins);
  1473. code = compile(kPythonLibs__set, "<set>", EXEC_MODE);
  1474. this->_exec(code, this->builtins);
  1475. }catch(TopLevelException e){
  1476. std::cerr << e.summary() << std::endl;
  1477. std::cerr << "failed to load builtins module!!" << std::endl;
  1478. exit(1);
  1479. }
  1480. if(enable_os){
  1481. add_module_io(this);
  1482. add_module_os(this);
  1483. _import_handler = &_default_import_handler;
  1484. }
  1485. add_module_csv(this);
  1486. add_module_dataclasses(this);
  1487. add_module_linalg(this);
  1488. add_module_easing(this);
  1489. add_module_array2d(this);
  1490. add_module_line_profiler(this);
  1491. add_module_enum(this);
  1492. #ifdef PK_USE_CJSON
  1493. add_module_cjson(this);
  1494. #endif
  1495. }
  1496. CodeObject_ VM::compile(std::string_view source, const Str& filename, CompileMode mode, bool unknown_global_scope) {
  1497. Compiler compiler(this, source, filename, mode, unknown_global_scope);
  1498. try{
  1499. return compiler.compile();
  1500. }catch(TopLevelException e){
  1501. _error(e.ptr->self());
  1502. return nullptr;
  1503. }
  1504. }
  1505. Str VM::precompile(std::string_view source, const Str& filename, CompileMode mode){
  1506. Compiler compiler(this, source, filename, mode, false);
  1507. try{
  1508. return compiler.precompile();
  1509. }catch(TopLevelException e){
  1510. _error(e.ptr->self());
  1511. return nullptr;
  1512. }
  1513. }
  1514. } // namespace pkpy