vm.h 23 KB

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  1. #pragma once
  2. #include "codeobject.h"
  3. #include "common.h"
  4. #include "frame.h"
  5. #include "error.h"
  6. #include "gc.h"
  7. #include "memory.h"
  8. #include "obj.h"
  9. #include "str.h"
  10. #include "tuplelist.h"
  11. #include "dict.h"
  12. namespace pkpy{
  13. /* Stack manipulation macros */
  14. // https://github.com/python/cpython/blob/3.9/Python/ceval.c#L1123
  15. #define TOP() (s_data.top())
  16. #define SECOND() (s_data.second())
  17. #define THIRD() (s_data.third())
  18. #define PEEK(n) (s_data.peek(n))
  19. #define STACK_SHRINK(n) (s_data.shrink(n))
  20. #define PUSH(v) (s_data.push(v))
  21. #define POP() (s_data.pop())
  22. #define POPX() (s_data.popx())
  23. #define STACK_VIEW(n) (s_data.view(n))
  24. #define DEF_NATIVE_2(ctype, ptype) \
  25. template<> inline ctype py_cast<ctype>(VM* vm, PyObject* obj) { \
  26. vm->check_non_tagged_type(obj, vm->ptype); \
  27. return PK_OBJ_GET(ctype, obj); \
  28. } \
  29. template<> inline ctype _py_cast<ctype>(VM* vm, PyObject* obj) { \
  30. PK_UNUSED(vm); \
  31. return PK_OBJ_GET(ctype, obj); \
  32. } \
  33. template<> inline ctype& py_cast<ctype&>(VM* vm, PyObject* obj) { \
  34. vm->check_non_tagged_type(obj, vm->ptype); \
  35. return PK_OBJ_GET(ctype, obj); \
  36. } \
  37. template<> inline ctype& _py_cast<ctype&>(VM* vm, PyObject* obj) { \
  38. PK_UNUSED(vm); \
  39. return PK_OBJ_GET(ctype, obj); \
  40. } \
  41. inline PyObject* py_var(VM* vm, const ctype& value) { return vm->heap.gcnew<ctype>(vm->ptype, value);} \
  42. inline PyObject* py_var(VM* vm, ctype&& value) { return vm->heap.gcnew<ctype>(vm->ptype, std::move(value));}
  43. typedef PyObject* (*BinaryFuncC)(VM*, PyObject*, PyObject*);
  44. struct PyTypeInfo{
  45. PyObject* obj; // never be garbage collected
  46. Type base;
  47. PyObject* mod; // never be garbage collected
  48. StrName name;
  49. bool subclass_enabled;
  50. std::vector<StrName> annotated_fields;
  51. // cached special methods
  52. // unary operators
  53. PyObject* (*m__repr__)(VM* vm, PyObject*) = nullptr;
  54. PyObject* (*m__str__)(VM* vm, PyObject*) = nullptr;
  55. i64 (*m__hash__)(VM* vm, PyObject*) = nullptr;
  56. i64 (*m__len__)(VM* vm, PyObject*) = nullptr;
  57. PyObject* (*m__iter__)(VM* vm, PyObject*) = nullptr;
  58. PyObject* (*m__next__)(VM* vm, PyObject*) = nullptr;
  59. PyObject* (*m__neg__)(VM* vm, PyObject*) = nullptr;
  60. PyObject* (*m__bool__)(VM* vm, PyObject*) = nullptr;
  61. PyObject* (*m__invert__)(VM* vm, PyObject*) = nullptr;
  62. BinaryFuncC m__eq__ = nullptr;
  63. BinaryFuncC m__lt__ = nullptr;
  64. BinaryFuncC m__le__ = nullptr;
  65. BinaryFuncC m__gt__ = nullptr;
  66. BinaryFuncC m__ge__ = nullptr;
  67. BinaryFuncC m__contains__ = nullptr;
  68. // binary operators
  69. BinaryFuncC m__add__ = nullptr;
  70. BinaryFuncC m__sub__ = nullptr;
  71. BinaryFuncC m__mul__ = nullptr;
  72. BinaryFuncC m__truediv__ = nullptr;
  73. BinaryFuncC m__floordiv__ = nullptr;
  74. BinaryFuncC m__mod__ = nullptr;
  75. BinaryFuncC m__pow__ = nullptr;
  76. BinaryFuncC m__matmul__ = nullptr;
  77. BinaryFuncC m__lshift__ = nullptr;
  78. BinaryFuncC m__rshift__ = nullptr;
  79. BinaryFuncC m__and__ = nullptr;
  80. BinaryFuncC m__or__ = nullptr;
  81. BinaryFuncC m__xor__ = nullptr;
  82. // indexer
  83. PyObject* (*m__getitem__)(VM* vm, PyObject*, PyObject*) = nullptr;
  84. void (*m__setitem__)(VM* vm, PyObject*, PyObject*, PyObject*) = nullptr;
  85. void (*m__delitem__)(VM* vm, PyObject*, PyObject*) = nullptr;
  86. // attributes
  87. void (*m__setattr__)(VM* vm, PyObject*, StrName, PyObject*) = nullptr;
  88. PyObject* (*m__getattr__)(VM* vm, PyObject*, StrName) = nullptr;
  89. bool (*m__delattr__)(VM* vm, PyObject*, StrName) = nullptr;
  90. };
  91. struct FrameId{
  92. std::vector<pkpy::Frame>* data;
  93. int index;
  94. FrameId(std::vector<pkpy::Frame>* data, int index) : data(data), index(index) {}
  95. Frame* operator->() const { return &data->operator[](index); }
  96. Frame* get() const { return &data->operator[](index); }
  97. };
  98. typedef void(*PrintFunc)(const char*, int);
  99. class VM {
  100. PK_ALWAYS_PASS_BY_POINTER(VM)
  101. VM* vm; // self reference for simplify code
  102. public:
  103. ManagedHeap heap;
  104. ValueStack s_data;
  105. stack< Frame > callstack;
  106. std::vector<PyTypeInfo> _all_types;
  107. NameDict _modules; // loaded modules
  108. std::map<StrName, Str> _lazy_modules; // lazy loaded modules
  109. struct{
  110. PyObject* error;
  111. stack<ArgsView> s_view;
  112. } _c;
  113. PyObject* None;
  114. PyObject* True;
  115. PyObject* False;
  116. PyObject* NotImplemented; // unused
  117. PyObject* Ellipsis;
  118. PyObject* builtins; // builtins module
  119. PyObject* StopIteration;
  120. PyObject* _main; // __main__ module
  121. PyObject* _last_exception; // last exception
  122. PyObject* _curr_class; // current class being defined
  123. // cached code objects for FSTRING_EVAL
  124. std::map<std::string_view, CodeObject_> _cached_codes;
  125. #if PK_ENABLE_CEVAL_CALLBACK
  126. void (*_ceval_on_step)(VM*, Frame*, Bytecode bc) = nullptr;
  127. #endif
  128. PrintFunc _stdout;
  129. PrintFunc _stderr;
  130. unsigned char* (*_import_handler)(const char*, int, int*);
  131. // for quick access
  132. static constexpr Type tp_object=0, tp_type=1;
  133. static constexpr Type tp_int=kTpIntIndex, tp_float=kTpFloatIndex, tp_bool=4, tp_str=5;
  134. static constexpr Type tp_list=6, tp_tuple=7;
  135. static constexpr Type tp_slice=8, tp_range=9, tp_module=10;
  136. static constexpr Type tp_function=11, tp_native_func=12, tp_bound_method=13;
  137. static constexpr Type tp_super=14, tp_exception=15, tp_bytes=16, tp_mappingproxy=17;
  138. static constexpr Type tp_dict=18, tp_property=19, tp_star_wrapper=20;
  139. static constexpr Type tp_staticmethod=21, tp_classmethod=22;
  140. PyObject* cached_object__new__;
  141. const bool enable_os;
  142. VM(bool enable_os=true);
  143. FrameId top_frame();
  144. void _pop_frame();
  145. PyObject* py_str(PyObject* obj);
  146. PyObject* py_repr(PyObject* obj);
  147. PyObject* py_json(PyObject* obj);
  148. PyObject* py_iter(PyObject* obj);
  149. PyObject* find_name_in_mro(Type cls, StrName name);
  150. bool isinstance(PyObject* obj, Type base);
  151. bool issubclass(Type cls, Type base);
  152. PyObject* exec(Str source, Str filename, CompileMode mode, PyObject* _module=nullptr);
  153. PyObject* exec(Str source);
  154. PyObject* eval(Str source);
  155. template<typename ...Args>
  156. PyObject* _exec(Args&&... args){
  157. callstack.emplace(&s_data, s_data._sp, std::forward<Args>(args)...);
  158. return _run_top_frame();
  159. }
  160. void _push_varargs(){ }
  161. void _push_varargs(PyObject* _0){ PUSH(_0); }
  162. void _push_varargs(PyObject* _0, PyObject* _1){ PUSH(_0); PUSH(_1); }
  163. void _push_varargs(PyObject* _0, PyObject* _1, PyObject* _2){ PUSH(_0); PUSH(_1); PUSH(_2); }
  164. void _push_varargs(PyObject* _0, PyObject* _1, PyObject* _2, PyObject* _3){ PUSH(_0); PUSH(_1); PUSH(_2); PUSH(_3); }
  165. void stdout_write(const Str& s){
  166. _stdout(s.data, s.size);
  167. }
  168. template<typename... Args>
  169. PyObject* call(PyObject* callable, Args&&... args){
  170. PUSH(callable);
  171. PUSH(PY_NULL);
  172. _push_varargs(args...);
  173. return vectorcall(sizeof...(args));
  174. }
  175. template<typename... Args>
  176. PyObject* call_method(PyObject* self, PyObject* callable, Args&&... args){
  177. PUSH(callable);
  178. PUSH(self);
  179. _push_varargs(args...);
  180. return vectorcall(sizeof...(args));
  181. }
  182. template<typename... Args>
  183. PyObject* call_method(PyObject* self, StrName name, Args&&... args){
  184. PyObject* callable = get_unbound_method(self, name, &self);
  185. return call_method(self, callable, args...);
  186. }
  187. PyObject* new_type_object(PyObject* mod, StrName name, Type base, bool subclass_enabled=true);
  188. Type _new_type_object(StrName name, Type base=0, bool subclass_enabled=false);
  189. const PyTypeInfo* _inst_type_info(PyObject* obj);
  190. #define BIND_UNARY_SPECIAL(name) \
  191. void bind##name(Type type, PyObject* (*f)(VM*, PyObject*)){ \
  192. _all_types[type].m##name = f; \
  193. PyObject* nf = bind_method<0>(_t(type), #name, [](VM* vm, ArgsView args){ \
  194. return lambda_get_userdata<PyObject*(*)(VM*, PyObject*)>(args.begin())(vm, args[0]);\
  195. }); \
  196. PK_OBJ_GET(NativeFunc, nf).set_userdata(f); \
  197. }
  198. BIND_UNARY_SPECIAL(__repr__)
  199. BIND_UNARY_SPECIAL(__str__)
  200. BIND_UNARY_SPECIAL(__iter__)
  201. BIND_UNARY_SPECIAL(__next__)
  202. BIND_UNARY_SPECIAL(__neg__)
  203. BIND_UNARY_SPECIAL(__bool__)
  204. BIND_UNARY_SPECIAL(__invert__)
  205. void bind__hash__(Type type, i64 (*f)(VM* vm, PyObject*));
  206. void bind__len__(Type type, i64 (*f)(VM* vm, PyObject*));
  207. #undef BIND_UNARY_SPECIAL
  208. #define BIND_BINARY_SPECIAL(name) \
  209. void bind##name(Type type, BinaryFuncC f){ \
  210. _all_types[type].m##name = f; \
  211. PyObject* nf = bind_method<1>(type, #name, [](VM* vm, ArgsView args){ \
  212. return lambda_get_userdata<BinaryFuncC>(args.begin())(vm, args[0], args[1]);\
  213. }); \
  214. PK_OBJ_GET(NativeFunc, nf).set_userdata(f); \
  215. }
  216. BIND_BINARY_SPECIAL(__eq__)
  217. BIND_BINARY_SPECIAL(__lt__)
  218. BIND_BINARY_SPECIAL(__le__)
  219. BIND_BINARY_SPECIAL(__gt__)
  220. BIND_BINARY_SPECIAL(__ge__)
  221. BIND_BINARY_SPECIAL(__contains__)
  222. BIND_BINARY_SPECIAL(__add__)
  223. BIND_BINARY_SPECIAL(__sub__)
  224. BIND_BINARY_SPECIAL(__mul__)
  225. BIND_BINARY_SPECIAL(__truediv__)
  226. BIND_BINARY_SPECIAL(__floordiv__)
  227. BIND_BINARY_SPECIAL(__mod__)
  228. BIND_BINARY_SPECIAL(__pow__)
  229. BIND_BINARY_SPECIAL(__matmul__)
  230. BIND_BINARY_SPECIAL(__lshift__)
  231. BIND_BINARY_SPECIAL(__rshift__)
  232. BIND_BINARY_SPECIAL(__and__)
  233. BIND_BINARY_SPECIAL(__or__)
  234. BIND_BINARY_SPECIAL(__xor__)
  235. #undef BIND_BINARY_SPECIAL
  236. void bind__getitem__(Type type, PyObject* (*f)(VM*, PyObject*, PyObject*));
  237. void bind__setitem__(Type type, void (*f)(VM*, PyObject*, PyObject*, PyObject*));
  238. void bind__delitem__(Type type, void (*f)(VM*, PyObject*, PyObject*));
  239. bool py_eq(PyObject* lhs, PyObject* rhs);
  240. // new in v1.2.9
  241. bool py_lt(PyObject* lhs, PyObject* rhs);
  242. bool py_le(PyObject* lhs, PyObject* rhs);
  243. bool py_gt(PyObject* lhs, PyObject* rhs);
  244. bool py_ge(PyObject* lhs, PyObject* rhs);
  245. bool py_ne(PyObject* lhs, PyObject* rhs) { return !py_eq(lhs, rhs); }
  246. template<int ARGC, typename __T>
  247. PyObject* bind_constructor(__T&& type, NativeFuncC fn) {
  248. static_assert(ARGC==-1 || ARGC>=1);
  249. return bind_func<ARGC>(std::forward<__T>(type), "__new__", fn);
  250. }
  251. template<typename T, typename __T>
  252. PyObject* bind_default_constructor(__T&& type) {
  253. return bind_constructor<1>(std::forward<__T>(type), [](VM* vm, ArgsView args){
  254. return vm->heap.gcnew<T>(PK_OBJ_GET(Type, args[0]), T());
  255. });
  256. }
  257. template<typename T, typename __T>
  258. PyObject* bind_notimplemented_constructor(__T&& type) {
  259. return bind_constructor<-1>(std::forward<__T>(type), [](VM* vm, ArgsView args){
  260. PK_UNUSED(args);
  261. vm->NotImplementedError();
  262. return vm->None;
  263. });
  264. }
  265. int normalized_index(int index, int size);
  266. PyObject* py_next(PyObject* obj);
  267. /***** Error Reporter *****/
  268. void _raise(bool re_raise=false);
  269. void _builtin_error(StrName type);
  270. void _builtin_error(StrName type, PyObject* arg);
  271. void _builtin_error(StrName type, const Str& msg);
  272. void StackOverflowError() { _builtin_error("StackOverflowError"); }
  273. void IOError(const Str& msg) { _builtin_error("IOError", msg); }
  274. void NotImplementedError(){ _builtin_error("NotImplementedError"); }
  275. void TypeError(const Str& msg){ _builtin_error("TypeError", msg); }
  276. void IndexError(const Str& msg){ _builtin_error("IndexError", msg); }
  277. void ValueError(const Str& msg){ _builtin_error("ValueError", msg); }
  278. void RuntimeError(const Str& msg){ _builtin_error("RuntimeError", msg); }
  279. void ZeroDivisionError(const Str& msg){ _builtin_error("ZeroDivisionError", msg); }
  280. void ZeroDivisionError(){ _builtin_error("ZeroDivisionError", "division by zero"); }
  281. void NameError(StrName name){ _builtin_error("NameError", fmt("name ", name.escape() + " is not defined")); }
  282. void UnboundLocalError(StrName name){ _builtin_error("UnboundLocalError", fmt("local variable ", name.escape() + " referenced before assignment")); }
  283. void KeyError(PyObject* obj){ _builtin_error("KeyError", obj); }
  284. void BinaryOptError(const char* op) { TypeError(fmt("unsupported operand type(s) for ", op)); }
  285. void ImportError(const Str& msg){ _builtin_error("ImportError", msg); }
  286. void AttributeError(PyObject* obj, StrName name){
  287. if(isinstance(obj, vm->tp_type)){
  288. _builtin_error("AttributeError", fmt("type object ", _type_name(vm, PK_OBJ_GET(Type, obj)).escape(), " has no attribute ", name.escape()));
  289. }else{
  290. _builtin_error("AttributeError", fmt(_type_name(vm, _tp(obj)).escape(), " object has no attribute ", name.escape()));
  291. }
  292. }
  293. void AttributeError(const Str& msg){ _builtin_error("AttributeError", msg); }
  294. void check_type(PyObject* obj, Type type){
  295. if(is_type(obj, type)) return;
  296. TypeError("expected " + _type_name(vm, type).escape() + ", got " + _type_name(vm, _tp(obj)).escape());
  297. }
  298. void check_non_tagged_type(PyObject* obj, Type type){
  299. if(is_non_tagged_type(obj, type)) return;
  300. TypeError("expected " + _type_name(vm, type).escape() + ", got " + _type_name(vm, _tp(obj)).escape());
  301. }
  302. PyObject* _t(Type t){
  303. return _all_types[t.index].obj;
  304. }
  305. Type _tp(PyObject* obj){
  306. if(is_int(obj)) return tp_int;
  307. if(is_float(obj)) return tp_float;
  308. return obj->type;
  309. }
  310. PyObject* _t(PyObject* obj){
  311. return _all_types[_tp(obj).index].obj;
  312. }
  313. struct ImportContext{
  314. std::vector<Str> pending;
  315. std::vector<bool> pending_is_init; // a.k.a __init__.py
  316. struct Temp{
  317. ImportContext* ctx;
  318. Temp(ImportContext* ctx, Str name, bool is_init) : ctx(ctx){
  319. ctx->pending.push_back(name);
  320. ctx->pending_is_init.push_back(is_init);
  321. }
  322. ~Temp(){
  323. ctx->pending.pop_back();
  324. ctx->pending_is_init.pop_back();
  325. }
  326. };
  327. Temp scope(Str name, bool is_init){
  328. return {this, name, is_init};
  329. }
  330. };
  331. ImportContext _import_context;
  332. PyObject* py_import(Str path, bool throw_err=true);
  333. ~VM();
  334. #if PK_DEBUG_CEVAL_STEP
  335. void _log_s_data(const char* title = nullptr);
  336. #endif
  337. void _unpack_as_list(ArgsView args, List& list);
  338. void _unpack_as_dict(ArgsView args, Dict& dict);
  339. PyObject* vectorcall(int ARGC, int KWARGC=0, bool op_call=false);
  340. CodeObject_ compile(const Str& source, const Str& filename, CompileMode mode, bool unknown_global_scope=false);
  341. PyObject* py_negate(PyObject* obj);
  342. bool py_bool(PyObject* obj);
  343. i64 py_hash(PyObject* obj);
  344. PyObject* py_list(PyObject*);
  345. PyObject* new_module(Str name, Str package="");
  346. Str disassemble(CodeObject_ co);
  347. void init_builtin_types();
  348. PyObject* getattr(PyObject* obj, StrName name, bool throw_err=true);
  349. void delattr(PyObject* obj, StrName name);
  350. PyObject* get_unbound_method(PyObject* obj, StrName name, PyObject** self, bool throw_err=true, bool fallback=false);
  351. void parse_int_slice(const Slice& s, int length, int& start, int& stop, int& step);
  352. PyObject* _format_string(Str, PyObject*);
  353. void setattr(PyObject* obj, StrName name, PyObject* value);
  354. template<int ARGC>
  355. PyObject* bind_method(Type, Str, NativeFuncC);
  356. template<int ARGC>
  357. PyObject* bind_method(PyObject*, Str, NativeFuncC);
  358. template<int ARGC>
  359. PyObject* bind_func(PyObject*, Str, NativeFuncC, UserData userdata={}, BindType bt=BindType::DEFAULT);
  360. void _error(PyObject*);
  361. PyObject* _run_top_frame();
  362. void post_init();
  363. PyObject* _py_generator(Frame&& frame, ArgsView buffer);
  364. void _prepare_py_call(PyObject**, ArgsView, ArgsView, const FuncDecl_&);
  365. // new style binding api
  366. PyObject* bind(PyObject*, const char*, const char*, NativeFuncC, UserData userdata={}, BindType bt=BindType::DEFAULT);
  367. PyObject* bind(PyObject*, const char*, NativeFuncC, UserData userdata={}, BindType bt=BindType::DEFAULT);
  368. PyObject* bind_property(PyObject*, Str, NativeFuncC fget, NativeFuncC fset=nullptr);
  369. };
  370. DEF_NATIVE_2(Str, tp_str)
  371. DEF_NATIVE_2(List, tp_list)
  372. DEF_NATIVE_2(Tuple, tp_tuple)
  373. DEF_NATIVE_2(Function, tp_function)
  374. DEF_NATIVE_2(NativeFunc, tp_native_func)
  375. DEF_NATIVE_2(BoundMethod, tp_bound_method)
  376. DEF_NATIVE_2(Range, tp_range)
  377. DEF_NATIVE_2(Slice, tp_slice)
  378. DEF_NATIVE_2(Exception, tp_exception)
  379. DEF_NATIVE_2(Bytes, tp_bytes)
  380. DEF_NATIVE_2(MappingProxy, tp_mappingproxy)
  381. DEF_NATIVE_2(Dict, tp_dict)
  382. DEF_NATIVE_2(Property, tp_property)
  383. DEF_NATIVE_2(StarWrapper, tp_star_wrapper)
  384. DEF_NATIVE_2(StaticMethod, tp_staticmethod)
  385. DEF_NATIVE_2(ClassMethod, tp_classmethod)
  386. #undef DEF_NATIVE_2
  387. #define PY_CAST_INT(T) \
  388. template<> inline T py_cast<T>(VM* vm, PyObject* obj){ \
  389. if(is_small_int(obj)) return (T)(PK_BITS(obj) >> 2); \
  390. if(is_heap_int(obj)) return (T)PK_OBJ_GET(i64, obj); \
  391. vm->check_type(obj, vm->tp_int); \
  392. return 0; \
  393. } \
  394. template<> inline T _py_cast<T>(VM* vm, PyObject* obj){ \
  395. PK_UNUSED(vm); \
  396. if(is_small_int(obj)) return (T)(PK_BITS(obj) >> 2); \
  397. return (T)PK_OBJ_GET(i64, obj); \
  398. }
  399. PY_CAST_INT(char)
  400. PY_CAST_INT(short)
  401. PY_CAST_INT(int)
  402. PY_CAST_INT(long)
  403. PY_CAST_INT(long long)
  404. PY_CAST_INT(unsigned char)
  405. PY_CAST_INT(unsigned short)
  406. PY_CAST_INT(unsigned int)
  407. PY_CAST_INT(unsigned long)
  408. PY_CAST_INT(unsigned long long)
  409. template<> inline float py_cast<float>(VM* vm, PyObject* obj){
  410. if(is_float(obj)) return untag_float(obj);
  411. i64 bits;
  412. if(try_cast_int(obj, &bits)) return (float)bits;
  413. vm->TypeError("expected 'int' or 'float', got " + _type_name(vm, vm->_tp(obj)).escape());
  414. return 0;
  415. }
  416. template<> inline float _py_cast<float>(VM* vm, PyObject* obj){
  417. return py_cast<float>(vm, obj);
  418. }
  419. template<> inline double py_cast<double>(VM* vm, PyObject* obj){
  420. if(is_float(obj)) return untag_float(obj);
  421. i64 bits;
  422. if(try_cast_int(obj, &bits)) return (float)bits;
  423. vm->TypeError("expected 'int' or 'float', got " + _type_name(vm, vm->_tp(obj)).escape());
  424. return 0;
  425. }
  426. template<> inline double _py_cast<double>(VM* vm, PyObject* obj){
  427. return py_cast<double>(vm, obj);
  428. }
  429. #define PY_VAR_INT(T) \
  430. inline PyObject* py_var(VM* vm, T _val){ \
  431. i64 val = static_cast<i64>(_val); \
  432. if(val >= Number::kMinSmallInt && val <= Number::kMaxSmallInt){ \
  433. val = (val << 2) | 0b10; \
  434. return reinterpret_cast<PyObject*>(val); \
  435. }else{ \
  436. return vm->heap.gcnew<i64>(vm->tp_int, val); \
  437. } \
  438. }
  439. PY_VAR_INT(char)
  440. PY_VAR_INT(short)
  441. PY_VAR_INT(int)
  442. PY_VAR_INT(long)
  443. PY_VAR_INT(long long)
  444. PY_VAR_INT(unsigned char)
  445. PY_VAR_INT(unsigned short)
  446. PY_VAR_INT(unsigned int)
  447. PY_VAR_INT(unsigned long)
  448. PY_VAR_INT(unsigned long long)
  449. #undef PY_VAR_INT
  450. inline PyObject* py_var(VM* vm, float _val){
  451. PK_UNUSED(vm);
  452. return tag_float(static_cast<f64>(_val));
  453. }
  454. inline PyObject* py_var(VM* vm, double _val){
  455. PK_UNUSED(vm);
  456. return tag_float(static_cast<f64>(_val));
  457. }
  458. inline PyObject* py_var(VM* vm, bool val){
  459. return val ? vm->True : vm->False;
  460. }
  461. template<> inline bool py_cast<bool>(VM* vm, PyObject* obj){
  462. if(obj == vm->True) return true;
  463. if(obj == vm->False) return false;
  464. vm->check_non_tagged_type(obj, vm->tp_bool);
  465. return false;
  466. }
  467. template<> inline bool _py_cast<bool>(VM* vm, PyObject* obj){
  468. return obj == vm->True;
  469. }
  470. template<> inline CString py_cast<CString>(VM* vm, PyObject* obj){
  471. vm->check_non_tagged_type(obj, vm->tp_str);
  472. return PK_OBJ_GET(Str, obj).c_str();
  473. }
  474. template<> inline CString _py_cast<CString>(VM* vm, PyObject* obj){
  475. return PK_OBJ_GET(Str, obj).c_str();
  476. }
  477. inline PyObject* py_var(VM* vm, const char* val){
  478. return VAR(Str(val));
  479. }
  480. template<>
  481. inline const char* py_cast<const char*>(VM* vm, PyObject* obj){
  482. if(obj == vm->None) return nullptr;
  483. vm->check_non_tagged_type(obj, vm->tp_str);
  484. return PK_OBJ_GET(Str, obj).c_str();
  485. }
  486. template<>
  487. inline const char* _py_cast<const char*>(VM* vm, PyObject* obj){
  488. return PK_OBJ_GET(Str, obj).c_str();
  489. }
  490. inline PyObject* py_var(VM* vm, std::string val){
  491. return VAR(Str(std::move(val)));
  492. }
  493. inline PyObject* py_var(VM* vm, std::string_view val){
  494. return VAR(Str(val));
  495. }
  496. inline PyObject* py_var(VM* vm, NoReturn val){
  497. PK_UNUSED(val);
  498. return vm->None;
  499. }
  500. template<int ARGC>
  501. PyObject* VM::bind_method(Type type, Str name, NativeFuncC fn) {
  502. PyObject* nf = VAR(NativeFunc(fn, ARGC, true));
  503. _t(type)->attr().set(name, nf);
  504. return nf;
  505. }
  506. template<int ARGC>
  507. PyObject* VM::bind_method(PyObject* obj, Str name, NativeFuncC fn) {
  508. check_non_tagged_type(obj, tp_type);
  509. return bind_method<ARGC>(PK_OBJ_GET(Type, obj), name, fn);
  510. }
  511. template<int ARGC>
  512. PyObject* VM::bind_func(PyObject* obj, Str name, NativeFuncC fn, UserData userdata, BindType bt) {
  513. PyObject* nf = VAR(NativeFunc(fn, ARGC, false));
  514. PK_OBJ_GET(NativeFunc, nf).set_userdata(userdata);
  515. switch(bt){
  516. case BindType::DEFAULT: break;
  517. case BindType::STATICMETHOD: nf = VAR(StaticMethod(nf)); break;
  518. case BindType::CLASSMETHOD: nf = VAR(ClassMethod(nf)); break;
  519. }
  520. obj->attr().set(name, nf);
  521. return nf;
  522. }
  523. /***************************************************/
  524. template<typename T>
  525. PyObject* PyArrayGetItem(VM* vm, PyObject* obj, PyObject* index){
  526. static_assert(std::is_same_v<T, List> || std::is_same_v<T, Tuple>);
  527. const T& self = _CAST(T&, obj);
  528. if(is_non_tagged_type(index, vm->tp_slice)){
  529. const Slice& s = _CAST(Slice&, index);
  530. int start, stop, step;
  531. vm->parse_int_slice(s, self.size(), start, stop, step);
  532. List new_list;
  533. for(int i=start; step>0?i<stop:i>stop; i+=step) new_list.push_back(self[i]);
  534. return VAR(T(std::move(new_list)));
  535. }
  536. int i = CAST(int, index);
  537. i = vm->normalized_index(i, self.size());
  538. return self[i];
  539. }
  540. } // namespace pkpy