pocketpy.h 31 KB

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  1. #pragma once
  2. #include "vm.h"
  3. #include "compiler.h"
  4. #include "repl.h"
  5. _Code VM::compile(_Str source, _Str filename, CompileMode mode) {
  6. Compiler compiler(this, source.c_str(), filename, mode);
  7. try{
  8. return compiler.__fillCode();
  9. }catch(_Error& e){
  10. throw e;
  11. }catch(std::exception& e){
  12. throw CompileError("UnexpectedError", e.what(), compiler.getLineSnapshot());
  13. }
  14. }
  15. #define BIND_NUM_ARITH_OPT(name, op) \
  16. _vm->bindMethodMulti<1>({"int","float"}, #name, [](VM* vm, const pkpy::ArgList& args){ \
  17. if(args[0]->is_type(vm->_tp_int) && args[1]->is_type(vm->_tp_int)){ \
  18. return vm->PyInt(vm->PyInt_AS_C(args[0]) op vm->PyInt_AS_C(args[1])); \
  19. }else{ \
  20. return vm->PyFloat(vm->num_to_float(args[0]) op vm->num_to_float(args[1])); \
  21. } \
  22. });
  23. #define BIND_NUM_LOGICAL_OPT(name, op, is_eq) \
  24. _vm->bindMethodMulti<1>({"int","float"}, #name, [](VM* vm, const pkpy::ArgList& args){ \
  25. bool _0 = args[0]->is_type(vm->_tp_int) || args[0]->is_type(vm->_tp_float); \
  26. bool _1 = args[1]->is_type(vm->_tp_int) || args[1]->is_type(vm->_tp_float); \
  27. if(!_0 || !_1){ \
  28. if constexpr(is_eq) return vm->PyBool(args[0].get() op args[1].get()); \
  29. vm->typeError("unsupported operand type(s) for " #op ); \
  30. } \
  31. return vm->PyBool(vm->num_to_float(args[0]) op vm->num_to_float(args[1])); \
  32. });
  33. void __initializeBuiltinFunctions(VM* _vm) {
  34. BIND_NUM_ARITH_OPT(__add__, +)
  35. BIND_NUM_ARITH_OPT(__sub__, -)
  36. BIND_NUM_ARITH_OPT(__mul__, *)
  37. BIND_NUM_LOGICAL_OPT(__lt__, <, false)
  38. BIND_NUM_LOGICAL_OPT(__le__, <=, false)
  39. BIND_NUM_LOGICAL_OPT(__gt__, >, false)
  40. BIND_NUM_LOGICAL_OPT(__ge__, >=, false)
  41. BIND_NUM_LOGICAL_OPT(__eq__, ==, true)
  42. BIND_NUM_LOGICAL_OPT(__ne__, !=, true)
  43. #undef BIND_NUM_ARITH_OPT
  44. #undef BIND_NUM_LOGICAL_OPT
  45. _vm->bindBuiltinFunc<1>("__sys_stdout_write", [](VM* vm, const pkpy::ArgList& args) {
  46. (*vm->_stdout) << vm->PyStr_AS_C(args[0]);
  47. return vm->None;
  48. });
  49. _vm->bindBuiltinFunc<0>("super", [](VM* vm, const pkpy::ArgList& args) {
  50. auto it = vm->top_frame()->f_locals().find(m_self);
  51. if(it == vm->top_frame()->f_locals().end()) vm->typeError("super() can only be called in a class method");
  52. return vm->new_object(vm->_tp_super, it->second);
  53. });
  54. _vm->bindBuiltinFunc<1>("eval", [](VM* vm, const pkpy::ArgList& args) {
  55. _Code code = vm->compile(vm->PyStr_AS_C(args[0]), "<eval>", EVAL_MODE);
  56. return vm->_exec(code, vm->top_frame()->_module, vm->top_frame()->_locals);
  57. });
  58. _vm->bindBuiltinFunc<1>("exec", [](VM* vm, const pkpy::ArgList& args) {
  59. _Code code = vm->compile(vm->PyStr_AS_C(args[0]), "<exec>", EXEC_MODE);
  60. vm->_exec(code, vm->top_frame()->_module, vm->top_frame()->_locals);
  61. return vm->None;
  62. });
  63. _vm->bindBuiltinFunc<1>("repr", CPP_LAMBDA(vm->asRepr(args[0])));
  64. _vm->bindBuiltinFunc<1>("hash", CPP_LAMBDA(vm->PyInt(vm->hash(args[0]))));
  65. _vm->bindBuiltinFunc<1>("len", CPP_LAMBDA(vm->call(args[0], __len__, pkpy::noArg())));
  66. _vm->bindBuiltinFunc<1>("chr", [](VM* vm, const pkpy::ArgList& args) {
  67. i64 i = vm->PyInt_AS_C(args[0]);
  68. if (i < 0 || i > 128) vm->valueError("chr() arg not in range(128)");
  69. return vm->PyStr(std::string(1, (char)i));
  70. });
  71. _vm->bindBuiltinFunc<1>("ord", [](VM* vm, const pkpy::ArgList& args) {
  72. _Str s = vm->PyStr_AS_C(args[0]);
  73. if (s.size() != 1) vm->typeError("ord() expected an ASCII character");
  74. return vm->PyInt((i64)s[0]);
  75. });
  76. _vm->bindBuiltinFunc<2>("hasattr", [](VM* vm, const pkpy::ArgList& args) {
  77. return vm->PyBool(vm->getattr(args[0], vm->PyStr_AS_C(args[1]), false) != nullptr);
  78. });
  79. _vm->bindBuiltinFunc<3>("setattr", [](VM* vm, const pkpy::ArgList& args) {
  80. PyVar obj = args[0];
  81. vm->setattr(obj, vm->PyStr_AS_C(args[1]), args[2]);
  82. return vm->None;
  83. });
  84. _vm->bindBuiltinFunc<2>("getattr", [](VM* vm, const pkpy::ArgList& args) {
  85. _Str name = vm->PyStr_AS_C(args[1]);
  86. return vm->getattr(args[0], name);
  87. });
  88. _vm->bindBuiltinFunc<1>("hex", [](VM* vm, const pkpy::ArgList& args) {
  89. std::stringstream ss;
  90. ss << std::hex << vm->PyInt_AS_C(args[0]);
  91. return vm->PyStr("0x" + ss.str());
  92. });
  93. _vm->bindBuiltinFunc<1>("dir", [](VM* vm, const pkpy::ArgList& args) {
  94. std::vector<_Str> names;
  95. for (auto& [k, _] : args[0]->attribs) names.push_back(k);
  96. for (auto& [k, _] : args[0]->_type->attribs) {
  97. if (k.find("__") == 0) continue;
  98. if (std::find(names.begin(), names.end(), k) == names.end()) names.push_back(k);
  99. }
  100. PyVarList ret;
  101. for (const auto& name : names) ret.push_back(vm->PyStr(name));
  102. std::sort(ret.begin(), ret.end(), [vm](const PyVar& a, const PyVar& b) {
  103. return vm->PyStr_AS_C(a) < vm->PyStr_AS_C(b);
  104. });
  105. return vm->PyList(ret);
  106. });
  107. _vm->bindMethod<0>("object", "__repr__", [](VM* vm, const pkpy::ArgList& args) {
  108. PyVar _self = args[0];
  109. std::stringstream ss;
  110. ss << std::hex << (uintptr_t)_self.get();
  111. _Str s = "<" + UNION_TP_NAME(_self) + " object at 0x" + ss.str() + ">";
  112. return vm->PyStr(s);
  113. });
  114. _vm->bindMethod<1>("object", "__eq__", CPP_LAMBDA(vm->PyBool(args[0] == args[1])));
  115. _vm->bindMethod<1>("object", "__ne__", CPP_LAMBDA(vm->PyBool(args[0] != args[1])));
  116. _vm->bindStaticMethod<1>("type", "__new__", CPP_LAMBDA(args[0]->_type));
  117. _vm->bindStaticMethod<-1>("range", "__new__", [](VM* vm, const pkpy::ArgList& args) {
  118. _Range r;
  119. switch (args.size()) {
  120. case 1: r.stop = vm->PyInt_AS_C(args[0]); break;
  121. case 2: r.start = vm->PyInt_AS_C(args[0]); r.stop = vm->PyInt_AS_C(args[1]); break;
  122. case 3: r.start = vm->PyInt_AS_C(args[0]); r.stop = vm->PyInt_AS_C(args[1]); r.step = vm->PyInt_AS_C(args[2]); break;
  123. default: vm->typeError("expected 1-3 arguments, but got " + std::to_string(args.size()));
  124. }
  125. return vm->PyRange(r);
  126. });
  127. _vm->bindMethod<0>("range", "__iter__", CPP_LAMBDA(
  128. vm->PyIter(pkpy::make_shared<BaseIterator, RangeIterator>(vm, args[0]))
  129. ));
  130. _vm->bindMethod<0>("NoneType", "__repr__", CPP_LAMBDA(vm->PyStr("None")));
  131. _vm->bindMethod<0>("NoneType", "__json__", CPP_LAMBDA(vm->PyStr("null")));
  132. _vm->bindMethodMulti<1>({"int", "float"}, "__truediv__", [](VM* vm, const pkpy::ArgList& args) {
  133. f64 rhs = vm->num_to_float(args[1]);
  134. if (rhs == 0) vm->zeroDivisionError();
  135. return vm->PyFloat(vm->num_to_float(args[0]) / rhs);
  136. });
  137. _vm->bindMethodMulti<1>({"int", "float"}, "__pow__", [](VM* vm, const pkpy::ArgList& args) {
  138. if(args[0]->is_type(vm->_tp_int) && args[1]->is_type(vm->_tp_int)){
  139. return vm->PyInt((i64)round(pow(vm->PyInt_AS_C(args[0]), vm->PyInt_AS_C(args[1]))));
  140. }else{
  141. return vm->PyFloat((f64)pow(vm->num_to_float(args[0]), vm->num_to_float(args[1])));
  142. }
  143. });
  144. /************ PyInt ************/
  145. _vm->bindStaticMethod<1>("int", "__new__", [](VM* vm, const pkpy::ArgList& args) {
  146. if (args[0]->is_type(vm->_tp_int)) return args[0];
  147. if (args[0]->is_type(vm->_tp_float)) return vm->PyInt((i64)vm->PyFloat_AS_C(args[0]));
  148. if (args[0]->is_type(vm->_tp_bool)) return vm->PyInt(vm->PyBool_AS_C(args[0]) ? 1 : 0);
  149. if (args[0]->is_type(vm->_tp_str)) {
  150. const _Str& s = vm->PyStr_AS_C(args[0]);
  151. try{
  152. size_t parsed = 0;
  153. i64 val = std::stoll(s, &parsed, 10);
  154. if(parsed != s.size()) throw std::invalid_argument("");
  155. return vm->PyInt(val);
  156. }catch(std::invalid_argument&){
  157. vm->valueError("invalid literal for int(): '" + s + "'");
  158. }
  159. }
  160. vm->typeError("int() argument must be a int, float, bool or str");
  161. return vm->None;
  162. });
  163. _vm->bindMethod<1>("int", "__floordiv__", [](VM* vm, const pkpy::ArgList& args) {
  164. i64 rhs = vm->PyInt_AS_C(args[1]);
  165. if(rhs == 0) vm->zeroDivisionError();
  166. return vm->PyInt(vm->PyInt_AS_C(args[0]) / rhs);
  167. });
  168. _vm->bindMethod<1>("int", "__mod__", [](VM* vm, const pkpy::ArgList& args) {
  169. i64 rhs = vm->PyInt_AS_C(args[1]);
  170. if(rhs == 0) vm->zeroDivisionError();
  171. return vm->PyInt(vm->PyInt_AS_C(args[0]) % rhs);
  172. });
  173. _vm->bindMethod<0>("int", "__repr__", [](VM* vm, const pkpy::ArgList& args) {
  174. return vm->PyStr(std::to_string(vm->PyInt_AS_C(args[0])));
  175. });
  176. _vm->bindMethod<0>("int", "__json__", [](VM* vm, const pkpy::ArgList& args) {
  177. return vm->PyStr(std::to_string((int)vm->PyInt_AS_C(args[0])));
  178. });
  179. #define __INT_BITWISE_OP(name,op) \
  180. _vm->bindMethod<1>("int", #name, [](VM* vm, const pkpy::ArgList& args) { \
  181. return vm->PyInt(vm->PyInt_AS_C(args[0]) op vm->PyInt_AS_C(args[1])); \
  182. });
  183. __INT_BITWISE_OP(__lshift__, <<)
  184. __INT_BITWISE_OP(__rshift__, >>)
  185. __INT_BITWISE_OP(__and__, &)
  186. __INT_BITWISE_OP(__or__, |)
  187. __INT_BITWISE_OP(__xor__, ^)
  188. #undef __INT_BITWISE_OP
  189. /************ PyFloat ************/
  190. _vm->bindStaticMethod<1>("float", "__new__", [](VM* vm, const pkpy::ArgList& args) {
  191. if (args[0]->is_type(vm->_tp_int)) return vm->PyFloat((f64)vm->PyInt_AS_C(args[0]));
  192. if (args[0]->is_type(vm->_tp_float)) return args[0];
  193. if (args[0]->is_type(vm->_tp_bool)) return vm->PyFloat(vm->PyBool_AS_C(args[0]) ? 1.0 : 0.0);
  194. if (args[0]->is_type(vm->_tp_str)) {
  195. const _Str& s = vm->PyStr_AS_C(args[0]);
  196. if(s == "inf") return vm->PyFloat(INFINITY);
  197. if(s == "-inf") return vm->PyFloat(-INFINITY);
  198. try{
  199. f64 val = std::stod(s);
  200. return vm->PyFloat(val);
  201. }catch(std::invalid_argument&){
  202. vm->valueError("invalid literal for float(): '" + s + "'");
  203. }
  204. }
  205. vm->typeError("float() argument must be a int, float, bool or str");
  206. return vm->None;
  207. });
  208. _vm->bindMethod<0>("float", "__repr__", [](VM* vm, const pkpy::ArgList& args) {
  209. f64 val = vm->PyFloat_AS_C(args[0]);
  210. if(std::isinf(val) || std::isnan(val)) return vm->PyStr(std::to_string(val));
  211. _StrStream ss;
  212. ss << std::setprecision(std::numeric_limits<f64>::max_digits10-1) << val;
  213. std::string s = ss.str();
  214. if(std::all_of(s.begin()+1, s.end(), isdigit)) s += ".0";
  215. return vm->PyStr(s);
  216. });
  217. _vm->bindMethod<0>("float", "__json__", [](VM* vm, const pkpy::ArgList& args) {
  218. f64 val = vm->PyFloat_AS_C(args[0]);
  219. if(std::isinf(val) || std::isnan(val)) vm->valueError("cannot jsonify 'nan' or 'inf'");
  220. return vm->PyStr(std::to_string(val));
  221. });
  222. /************ PyString ************/
  223. _vm->bindStaticMethod<1>("str", "__new__", CPP_LAMBDA(vm->asStr(args[0])));
  224. _vm->bindMethod<1>("str", "__add__", [](VM* vm, const pkpy::ArgList& args) {
  225. const _Str& lhs = vm->PyStr_AS_C(args[0]);
  226. const _Str& rhs = vm->PyStr_AS_C(args[1]);
  227. return vm->PyStr(lhs + rhs);
  228. });
  229. _vm->bindMethod<0>("str", "__len__", [](VM* vm, const pkpy::ArgList& args) {
  230. const _Str& _self = vm->PyStr_AS_C(args[0]);
  231. return vm->PyInt(_self.u8_length());
  232. });
  233. _vm->bindMethod<1>("str", "__contains__", [](VM* vm, const pkpy::ArgList& args) {
  234. const _Str& _self = vm->PyStr_AS_C(args[0]);
  235. const _Str& _other = vm->PyStr_AS_C(args[1]);
  236. return vm->PyBool(_self.find(_other) != _Str::npos);
  237. });
  238. _vm->bindMethod<0>("str", "__str__", CPP_LAMBDA(args[0]));
  239. _vm->bindMethod<0>("str", "__iter__", CPP_LAMBDA(
  240. vm->PyIter(pkpy::make_shared<BaseIterator, StringIterator>(vm, args[0]))
  241. ));
  242. _vm->bindMethod<0>("str", "__repr__", [](VM* vm, const pkpy::ArgList& args) {
  243. const _Str& _self = vm->PyStr_AS_C(args[0]);
  244. return vm->PyStr(_self.__escape(true));
  245. });
  246. _vm->bindMethod<0>("str", "__json__", [](VM* vm, const pkpy::ArgList& args) {
  247. const _Str& _self = vm->PyStr_AS_C(args[0]);
  248. return vm->PyStr(_self.__escape(false));
  249. });
  250. _vm->bindMethod<1>("str", "__eq__", [](VM* vm, const pkpy::ArgList& args) {
  251. if(args[0]->is_type(vm->_tp_str) && args[1]->is_type(vm->_tp_str))
  252. return vm->PyBool(vm->PyStr_AS_C(args[0]) == vm->PyStr_AS_C(args[1]));
  253. return vm->PyBool(args[0] == args[1]);
  254. });
  255. _vm->bindMethod<1>("str", "__ne__", [](VM* vm, const pkpy::ArgList& args) {
  256. if(args[0]->is_type(vm->_tp_str) && args[1]->is_type(vm->_tp_str))
  257. return vm->PyBool(vm->PyStr_AS_C(args[0]) != vm->PyStr_AS_C(args[1]));
  258. return vm->PyBool(args[0] != args[1]);
  259. });
  260. _vm->bindMethod<1>("str", "__getitem__", [](VM* vm, const pkpy::ArgList& args) {
  261. const _Str& _self (vm->PyStr_AS_C(args[0]));
  262. if(args[1]->is_type(vm->_tp_slice)){
  263. _Slice s = vm->PySlice_AS_C(args[1]);
  264. s.normalize(_self.u8_length());
  265. return vm->PyStr(_self.u8_substr(s.start, s.stop));
  266. }
  267. int _index = (int)vm->PyInt_AS_C(args[1]);
  268. _index = vm->normalized_index(_index, _self.u8_length());
  269. return vm->PyStr(_self.u8_getitem(_index));
  270. });
  271. _vm->bindMethod<1>("str", "__gt__", [](VM* vm, const pkpy::ArgList& args) {
  272. const _Str& _self (vm->PyStr_AS_C(args[0]));
  273. const _Str& _obj (vm->PyStr_AS_C(args[1]));
  274. return vm->PyBool(_self > _obj);
  275. });
  276. _vm->bindMethod<1>("str", "__lt__", [](VM* vm, const pkpy::ArgList& args) {
  277. const _Str& _self (vm->PyStr_AS_C(args[0]));
  278. const _Str& _obj (vm->PyStr_AS_C(args[1]));
  279. return vm->PyBool(_self < _obj);
  280. });
  281. _vm->bindMethod<2>("str", "replace", [](VM* vm, const pkpy::ArgList& args) {
  282. const _Str& _self = vm->PyStr_AS_C(args[0]);
  283. const _Str& _old = vm->PyStr_AS_C(args[1]);
  284. const _Str& _new = vm->PyStr_AS_C(args[2]);
  285. _Str _copy = _self;
  286. // replace all occurences of _old with _new in _copy
  287. size_t pos = 0;
  288. while ((pos = _copy.find(_old, pos)) != std::string::npos) {
  289. _copy.replace(pos, _old.length(), _new);
  290. pos += _new.length();
  291. }
  292. return vm->PyStr(_copy);
  293. });
  294. _vm->bindMethod<1>("str", "startswith", [](VM* vm, const pkpy::ArgList& args) {
  295. const _Str& _self = vm->PyStr_AS_C(args[0]);
  296. const _Str& _prefix = vm->PyStr_AS_C(args[1]);
  297. return vm->PyBool(_self.find(_prefix) == 0);
  298. });
  299. _vm->bindMethod<1>("str", "endswith", [](VM* vm, const pkpy::ArgList& args) {
  300. const _Str& _self = vm->PyStr_AS_C(args[0]);
  301. const _Str& _suffix = vm->PyStr_AS_C(args[1]);
  302. return vm->PyBool(_self.rfind(_suffix) == _self.length() - _suffix.length());
  303. });
  304. _vm->bindMethod<1>("str", "join", [](VM* vm, const pkpy::ArgList& args) {
  305. const _Str& _self = vm->PyStr_AS_C(args[0]);
  306. PyVarList* _list;
  307. if(args[1]->is_type(vm->_tp_list)){
  308. _list = &vm->PyList_AS_C(args[1]);
  309. }else if(args[1]->is_type(vm->_tp_tuple)){
  310. _list = &vm->PyTuple_AS_C(args[1]);
  311. }else{
  312. vm->typeError("can only join a list or tuple");
  313. }
  314. _StrStream ss;
  315. for(int i = 0; i < _list->size(); i++){
  316. if(i > 0) ss << _self;
  317. ss << vm->PyStr_AS_C(vm->asStr(_list->operator[](i)));
  318. }
  319. return vm->PyStr(ss.str());
  320. });
  321. /************ PyList ************/
  322. _vm->bindMethod<0>("list", "__iter__", [](VM* vm, const pkpy::ArgList& args) {
  323. return vm->PyIter(
  324. pkpy::make_shared<BaseIterator, VectorIterator>(vm, args[0])
  325. );
  326. });
  327. _vm->bindMethod<1>("list", "append", [](VM* vm, const pkpy::ArgList& args) {
  328. PyVarList& _self = vm->PyList_AS_C(args[0]);
  329. _self.push_back(args[1]);
  330. return vm->None;
  331. });
  332. _vm->bindMethod<2>("list", "insert", [](VM* vm, const pkpy::ArgList& args) {
  333. PyVarList& _self = vm->PyList_AS_C(args[0]);
  334. int _index = (int)vm->PyInt_AS_C(args[1]);
  335. if(_index < 0) _index += _self.size();
  336. if(_index < 0) _index = 0;
  337. if(_index > _self.size()) _index = _self.size();
  338. _self.insert(_self.begin() + _index, args[2]);
  339. return vm->None;
  340. });
  341. _vm->bindMethod<0>("list", "clear", [](VM* vm, const pkpy::ArgList& args) {
  342. vm->PyList_AS_C(args[0]).clear();
  343. return vm->None;
  344. });
  345. _vm->bindMethod<0>("list", "copy", [](VM* vm, const pkpy::ArgList& args) {
  346. return vm->PyList(vm->PyList_AS_C(args[0]));
  347. });
  348. _vm->bindMethod<1>("list", "__add__", [](VM* vm, const pkpy::ArgList& args) {
  349. const PyVarList& _self = vm->PyList_AS_C(args[0]);
  350. const PyVarList& _obj = vm->PyList_AS_C(args[1]);
  351. PyVarList _new_list = _self;
  352. _new_list.insert(_new_list.end(), _obj.begin(), _obj.end());
  353. return vm->PyList(_new_list);
  354. });
  355. _vm->bindMethod<0>("list", "__len__", [](VM* vm, const pkpy::ArgList& args) {
  356. const PyVarList& _self = vm->PyList_AS_C(args[0]);
  357. return vm->PyInt(_self.size());
  358. });
  359. _vm->bindMethod<1>("list", "__getitem__", [](VM* vm, const pkpy::ArgList& args) {
  360. const PyVarList& _self = vm->PyList_AS_C(args[0]);
  361. if(args[1]->is_type(vm->_tp_slice)){
  362. _Slice s = vm->PySlice_AS_C(args[1]);
  363. s.normalize(_self.size());
  364. PyVarList _new_list;
  365. for(size_t i = s.start; i < s.stop; i++)
  366. _new_list.push_back(_self[i]);
  367. return vm->PyList(_new_list);
  368. }
  369. int _index = (int)vm->PyInt_AS_C(args[1]);
  370. _index = vm->normalized_index(_index, _self.size());
  371. return _self[_index];
  372. });
  373. _vm->bindMethod<2>("list", "__setitem__", [](VM* vm, const pkpy::ArgList& args) {
  374. PyVarList& _self = vm->PyList_AS_C(args[0]);
  375. int _index = (int)vm->PyInt_AS_C(args[1]);
  376. _index = vm->normalized_index(_index, _self.size());
  377. _self[_index] = args[2];
  378. return vm->None;
  379. });
  380. _vm->bindMethod<1>("list", "__delitem__", [](VM* vm, const pkpy::ArgList& args) {
  381. PyVarList& _self = vm->PyList_AS_C(args[0]);
  382. int _index = (int)vm->PyInt_AS_C(args[1]);
  383. _index = vm->normalized_index(_index, _self.size());
  384. _self.erase(_self.begin() + _index);
  385. return vm->None;
  386. });
  387. /************ PyTuple ************/
  388. _vm->bindStaticMethod<1>("tuple", "__new__", [](VM* vm, const pkpy::ArgList& args) {
  389. PyVarList _list = vm->PyList_AS_C(vm->call(vm->builtins->attribs["list"], args));
  390. return vm->PyTuple(_list);
  391. });
  392. _vm->bindMethod<0>("tuple", "__iter__", [](VM* vm, const pkpy::ArgList& args) {
  393. return vm->PyIter(pkpy::make_shared<BaseIterator, VectorIterator>(vm, args[0]));
  394. });
  395. _vm->bindMethod<0>("tuple", "__len__", [](VM* vm, const pkpy::ArgList& args) {
  396. const PyVarList& _self = vm->PyTuple_AS_C(args[0]);
  397. return vm->PyInt(_self.size());
  398. });
  399. _vm->bindMethod<1>("tuple", "__getitem__", [](VM* vm, const pkpy::ArgList& args) {
  400. const PyVarList& _self = vm->PyTuple_AS_C(args[0]);
  401. int _index = (int)vm->PyInt_AS_C(args[1]);
  402. _index = vm->normalized_index(_index, _self.size());
  403. return _self[_index];
  404. });
  405. /************ PyBool ************/
  406. _vm->bindStaticMethod<1>("bool", "__new__", CPP_LAMBDA(vm->asBool(args[0])));
  407. _vm->bindMethod<0>("bool", "__repr__", [](VM* vm, const pkpy::ArgList& args) {
  408. bool val = vm->PyBool_AS_C(args[0]);
  409. return vm->PyStr(val ? "True" : "False");
  410. });
  411. _vm->bindMethod<0>("bool", "__json__", [](VM* vm, const pkpy::ArgList& args) {
  412. bool val = vm->PyBool_AS_C(args[0]);
  413. return vm->PyStr(val ? "true" : "false");
  414. });
  415. _vm->bindMethod<1>("bool", "__xor__", [](VM* vm, const pkpy::ArgList& args) {
  416. bool _self = vm->PyBool_AS_C(args[0]);
  417. bool _obj = vm->PyBool_AS_C(args[1]);
  418. return vm->PyBool(_self ^ _obj);
  419. });
  420. _vm->bindMethod<0>("ellipsis", "__repr__", CPP_LAMBDA(vm->PyStr("Ellipsis")));
  421. }
  422. #include "builtins.h"
  423. #ifdef _WIN32
  424. #define __EXPORT __declspec(dllexport)
  425. #elif __APPLE__
  426. #define __EXPORT __attribute__((visibility("default"))) __attribute__((used))
  427. #elif __EMSCRIPTEN__
  428. #define __EXPORT EMSCRIPTEN_KEEPALIVE
  429. #define __NO_MAIN
  430. #else
  431. #define __EXPORT
  432. #endif
  433. void __add_module_time(VM* vm){
  434. PyVar mod = vm->new_module("time");
  435. vm->bindFunc<0>(mod, "time", [](VM* vm, const pkpy::ArgList& args) {
  436. auto now = std::chrono::high_resolution_clock::now();
  437. return vm->PyFloat(std::chrono::duration_cast<std::chrono::microseconds>(now.time_since_epoch()).count() / 1000000.0);
  438. });
  439. }
  440. void __add_module_sys(VM* vm){
  441. PyVar mod = vm->new_module("sys");
  442. vm->bindFunc<1>(mod, "getrefcount", [](VM* vm, const pkpy::ArgList& args) {
  443. return vm->PyInt(args[0].use_count());
  444. });
  445. vm->bindFunc<0>(mod, "getrecursionlimit", [](VM* vm, const pkpy::ArgList& args) {
  446. return vm->PyInt(vm->maxRecursionDepth);
  447. });
  448. vm->bindFunc<1>(mod, "setrecursionlimit", [](VM* vm, const pkpy::ArgList& args) {
  449. vm->maxRecursionDepth = (int)vm->PyInt_AS_C(args[0]);
  450. return vm->None;
  451. });
  452. vm->setattr(mod, "version", vm->PyStr(PK_VERSION));
  453. }
  454. void __add_module_json(VM* vm){
  455. PyVar mod = vm->new_module("json");
  456. vm->bindFunc<1>(mod, "loads", [](VM* vm, const pkpy::ArgList& args) {
  457. const _Str& expr = vm->PyStr_AS_C(args[0]);
  458. _Code code = vm->compile(expr, "<json>", JSON_MODE);
  459. return vm->_exec(code, vm->top_frame()->_module, vm->top_frame()->_locals);
  460. });
  461. vm->bindFunc<1>(mod, "dumps", [](VM* vm, const pkpy::ArgList& args) {
  462. return vm->asJson(args[0]);
  463. });
  464. }
  465. void __add_module_math(VM* vm){
  466. PyVar mod = vm->new_module("math");
  467. vm->setattr(mod, "pi", vm->PyFloat(3.1415926535897932384));
  468. vm->setattr(mod, "e" , vm->PyFloat(2.7182818284590452354));
  469. vm->bindFunc<1>(mod, "log", CPP_LAMBDA(vm->PyFloat(log(vm->num_to_float(args[0])))));
  470. vm->bindFunc<1>(mod, "log10", CPP_LAMBDA(vm->PyFloat(log10(vm->num_to_float(args[0])))));
  471. vm->bindFunc<1>(mod, "log2", CPP_LAMBDA(vm->PyFloat(log2(vm->num_to_float(args[0])))));
  472. vm->bindFunc<1>(mod, "sin", CPP_LAMBDA(vm->PyFloat(sin(vm->num_to_float(args[0])))));
  473. vm->bindFunc<1>(mod, "cos", CPP_LAMBDA(vm->PyFloat(cos(vm->num_to_float(args[0])))));
  474. vm->bindFunc<1>(mod, "tan", CPP_LAMBDA(vm->PyFloat(tan(vm->num_to_float(args[0])))));
  475. vm->bindFunc<1>(mod, "isnan", CPP_LAMBDA(vm->PyBool(std::isnan(vm->num_to_float(args[0])))));
  476. vm->bindFunc<1>(mod, "isinf", CPP_LAMBDA(vm->PyBool(std::isinf(vm->num_to_float(args[0])))));
  477. }
  478. void __add_module_dis(VM* vm){
  479. PyVar mod = vm->new_module("dis");
  480. vm->bindFunc<1>(mod, "dis", [](VM* vm, const pkpy::ArgList& args) {
  481. _Code code = vm->PyFunction_AS_C(args[0])->code;
  482. (*vm->_stdout) << vm->disassemble(code);
  483. return vm->None;
  484. });
  485. }
  486. #define PY_CLASS(mod, name) inline static PyVar _tp(VM* vm) { return vm->_modules[#mod]->attribs[#name]; }
  487. struct ReMatch {
  488. PY_CLASS(re, Match)
  489. i64 start;
  490. i64 end;
  491. std::smatch m;
  492. ReMatch(i64 start, i64 end, std::smatch m) : start(start), end(end), m(m) {}
  493. static PyVar _bind(VM* vm){
  494. PyVar _tp_match = vm->new_user_type_object(vm->_modules["re"], "Match", vm->_tp_object);
  495. vm->bindMethod<0>(_tp_match, "start", CPP_LAMBDA(vm->PyInt(UNION_GET(ReMatch, args[0]).start)));
  496. vm->bindMethod<0>(_tp_match, "end", CPP_LAMBDA(vm->PyInt(UNION_GET(ReMatch, args[0]).end)));
  497. vm->bindMethod<0>(_tp_match, "span", [](VM* vm, const pkpy::ArgList& args) {
  498. auto& m = UNION_GET(ReMatch, args[0]);
  499. return vm->PyTuple({ vm->PyInt(m.start), vm->PyInt(m.end) });
  500. });
  501. vm->bindMethod<1>(_tp_match, "group", [](VM* vm, const pkpy::ArgList& args) {
  502. auto& m = UNION_GET(ReMatch, args[0]);
  503. int index = (int)vm->PyInt_AS_C(args[1]);
  504. index = vm->normalized_index(index, m.m.size());
  505. return vm->PyStr(m.m[index].str());
  506. });
  507. return _tp_match;
  508. }
  509. };
  510. PyVar __regex_search(const _Str& pattern, const _Str& string, bool fromStart, VM* vm){
  511. std::regex re(pattern);
  512. std::smatch m;
  513. if(std::regex_search(string, m, re)){
  514. if(fromStart && m.position() != 0) return vm->None;
  515. i64 start = string.__to_u8_index(m.position());
  516. i64 end = string.__to_u8_index(m.position() + m.length());
  517. return vm->new_object_c<ReMatch>(start, end, m);
  518. }
  519. return vm->None;
  520. };
  521. void __add_module_re(VM* vm){
  522. PyVar mod = vm->new_module("re");
  523. ReMatch::_bind(vm);
  524. vm->bindFunc<2>(mod, "match", [](VM* vm, const pkpy::ArgList& args) {
  525. const _Str& pattern = vm->PyStr_AS_C(args[0]);
  526. const _Str& string = vm->PyStr_AS_C(args[1]);
  527. return __regex_search(pattern, string, true, vm);
  528. });
  529. vm->bindFunc<2>(mod, "search", [](VM* vm, const pkpy::ArgList& args) {
  530. const _Str& pattern = vm->PyStr_AS_C(args[0]);
  531. const _Str& string = vm->PyStr_AS_C(args[1]);
  532. return __regex_search(pattern, string, false, vm);
  533. });
  534. vm->bindFunc<3>(mod, "sub", [](VM* vm, const pkpy::ArgList& args) {
  535. const _Str& pattern = vm->PyStr_AS_C(args[0]);
  536. const _Str& repl = vm->PyStr_AS_C(args[1]);
  537. const _Str& string = vm->PyStr_AS_C(args[2]);
  538. std::regex re(pattern);
  539. return vm->PyStr(std::regex_replace(string, re, repl));
  540. });
  541. vm->bindFunc<2>(mod, "split", [](VM* vm, const pkpy::ArgList& args) {
  542. const _Str& pattern = vm->PyStr_AS_C(args[0]);
  543. const _Str& string = vm->PyStr_AS_C(args[1]);
  544. std::regex re(pattern);
  545. std::sregex_token_iterator it(string.begin(), string.end(), re, -1);
  546. std::sregex_token_iterator end;
  547. PyVarList vec;
  548. for(; it != end; ++it){
  549. vec.push_back(vm->PyStr(it->str()));
  550. }
  551. return vm->PyList(vec);
  552. });
  553. }
  554. class _PkExported{
  555. public:
  556. virtual ~_PkExported() = default;
  557. virtual void* get() = 0;
  558. };
  559. static std::vector<_PkExported*> _pkLookupTable;
  560. template<typename T>
  561. class PkExported : public _PkExported{
  562. T* _ptr;
  563. public:
  564. template<typename... Args>
  565. PkExported(Args&&... args) {
  566. _ptr = new T(std::forward<Args>(args)...);
  567. _pkLookupTable.push_back(this);
  568. }
  569. ~PkExported() override { delete _ptr; }
  570. void* get() override { return _ptr; }
  571. operator T*() { return _ptr; }
  572. };
  573. #define pkpy_allocate(T, ...) *(new PkExported<T>(__VA_ARGS__))
  574. extern "C" {
  575. __EXPORT
  576. /// Delete a pointer allocated by `pkpy_xxx_xxx`.
  577. /// It can be `VM*`, `REPL*`, `char*`, etc.
  578. ///
  579. /// !!!
  580. /// If the pointer is not allocated by `pkpy_xxx_xxx`, the behavior is undefined.
  581. /// For char*, you can also use trivial `delete` in your language.
  582. /// !!!
  583. void pkpy_delete(void* p){
  584. for(int i = 0; i < _pkLookupTable.size(); i++){
  585. if(_pkLookupTable[i]->get() == p){
  586. delete _pkLookupTable[i];
  587. _pkLookupTable.erase(_pkLookupTable.begin() + i);
  588. return;
  589. }
  590. }
  591. free(p);
  592. }
  593. __EXPORT
  594. /// Run a given source on a virtual machine.
  595. void pkpy_vm_exec(VM* vm, const char* source){
  596. vm->exec(source, "main.py", EXEC_MODE);
  597. }
  598. __EXPORT
  599. /// Get a global variable of a virtual machine.
  600. ///
  601. /// Return __repr__ of the result.
  602. /// If the variable is not found, return `nullptr`.
  603. char* pkpy_vm_get_global(VM* vm, const char* name){
  604. auto it = vm->_main->attribs.find(name);
  605. if(it == vm->_main->attribs.end()) return nullptr;
  606. try{
  607. _Str _repr = vm->PyStr_AS_C(vm->asRepr(it->second));
  608. return strdup(_repr.c_str());
  609. }catch(...){
  610. return nullptr;
  611. }
  612. }
  613. __EXPORT
  614. /// Evaluate an expression.
  615. ///
  616. /// Return __repr__ of the result.
  617. /// If there is any error, return `nullptr`.
  618. char* pkpy_vm_eval(VM* vm, const char* source){
  619. PyVarOrNull ret = vm->exec(source, "<eval>", EVAL_MODE);
  620. if(ret == nullptr) return nullptr;
  621. try{
  622. _Str _repr = vm->PyStr_AS_C(vm->asRepr(ret));
  623. return strdup(_repr.c_str());
  624. }catch(...){
  625. return nullptr;
  626. }
  627. }
  628. __EXPORT
  629. /// Create a REPL, using the given virtual machine as the backend.
  630. REPL* pkpy_new_repl(VM* vm){
  631. return pkpy_allocate(REPL, vm);
  632. }
  633. __EXPORT
  634. /// Input a source line to an interactive console.
  635. int pkpy_repl_input(REPL* r, const char* line){
  636. return r->input(line);
  637. }
  638. __EXPORT
  639. /// Add a source module into a virtual machine.
  640. void pkpy_vm_add_module(VM* vm, const char* name, const char* source){
  641. vm->_lazy_modules[name] = source;
  642. }
  643. void __vm_init(VM* vm){
  644. __initializeBuiltinFunctions(vm);
  645. __add_module_sys(vm);
  646. __add_module_time(vm);
  647. __add_module_json(vm);
  648. __add_module_math(vm);
  649. __add_module_re(vm);
  650. __add_module_dis(vm);
  651. // add builtins | no exception handler | must succeed
  652. _Code code = vm->compile(__BUILTINS_CODE, "<builtins>", EXEC_MODE);
  653. vm->_exec(code, vm->builtins, pkpy::make_shared<PyVarDict>());
  654. pkpy_vm_add_module(vm, "random", __RANDOM_CODE);
  655. }
  656. __EXPORT
  657. /// Create a virtual machine.
  658. VM* pkpy_new_vm(bool use_stdio){
  659. VM* vm = pkpy_allocate(VM, use_stdio);
  660. __vm_init(vm);
  661. return vm;
  662. }
  663. __EXPORT
  664. /// Read the standard output and standard error as string of a virtual machine.
  665. /// The `vm->use_stdio` should be `false`.
  666. /// After this operation, both stream will be cleared.
  667. ///
  668. /// Return a json representing the result.
  669. char* pkpy_vm_read_output(VM* vm){
  670. if(vm->use_stdio) return nullptr;
  671. _StrStream* s_out = (_StrStream*)(vm->_stdout);
  672. _StrStream* s_err = (_StrStream*)(vm->_stderr);
  673. _Str _stdout = s_out->str();
  674. _Str _stderr = s_err->str();
  675. _StrStream ss;
  676. ss << '{' << "\"stdout\": " << _stdout.__escape(false);
  677. ss << ", ";
  678. ss << "\"stderr\": " << _stderr.__escape(false) << '}';
  679. s_out->str("");
  680. s_err->str("");
  681. return strdup(ss.str().c_str());
  682. }
  683. }
  684. #include "_bindings.h"