vm.c 25 KB

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  1. #include "pocketpy/interpreter/vm.h"
  2. #include "pocketpy/common/memorypool.h"
  3. #include "pocketpy/common/sstream.h"
  4. #include "pocketpy/common/utils.h"
  5. #include "pocketpy/interpreter/generator.h"
  6. #include "pocketpy/interpreter/modules.h"
  7. #include "pocketpy/interpreter/typeinfo.h"
  8. #include "pocketpy/objects/base.h"
  9. #include "pocketpy/common/_generated.h"
  10. #include "pocketpy/pocketpy.h"
  11. #include <stdbool.h>
  12. static char* pk_default_importfile(const char* path) {
  13. #if PK_ENABLE_OS
  14. FILE* f = fopen(path, "rb");
  15. if(f == NULL) return NULL;
  16. fseek(f, 0, SEEK_END);
  17. long size = ftell(f);
  18. fseek(f, 0, SEEK_SET);
  19. char* buffer = malloc(size + 1);
  20. size = fread(buffer, 1, size, f);
  21. buffer[size] = 0;
  22. fclose(f);
  23. return buffer;
  24. #else
  25. return NULL;
  26. #endif
  27. }
  28. static void pk_default_print(const char* data) { printf("%s", data); }
  29. static void py_TypeInfo__ctor(py_TypeInfo* self,
  30. py_Name name,
  31. py_Type index,
  32. py_Type base,
  33. py_TypeInfo* base_ti,
  34. py_TValue module) {
  35. memset(self, 0, sizeof(py_TypeInfo));
  36. self->name = name;
  37. self->base = base;
  38. self->base_ti = base_ti;
  39. // create type object with __dict__
  40. ManagedHeap* heap = &pk_current_vm->heap;
  41. PyObject* typeobj = ManagedHeap__new(heap, tp_type, -1, sizeof(py_Type));
  42. *(py_Type*)PyObject__userdata(typeobj) = index;
  43. self->self = (py_TValue){
  44. .type = typeobj->type,
  45. .is_ptr = true,
  46. ._obj = typeobj,
  47. };
  48. self->module = module;
  49. self->annotations = *py_NIL();
  50. }
  51. void VM__ctor(VM* self) {
  52. self->top_frame = NULL;
  53. ModuleDict__ctor(&self->modules, NULL, *py_NIL());
  54. TypeList__ctor(&self->types);
  55. self->builtins = *py_NIL();
  56. self->main = *py_NIL();
  57. self->callbacks.importfile = pk_default_importfile;
  58. self->callbacks.print = pk_default_print;
  59. self->last_retval = *py_NIL();
  60. self->curr_exception = *py_NIL();
  61. self->is_curr_exc_handled = false;
  62. self->ctx = NULL;
  63. self->__curr_class = NULL;
  64. self->__curr_function = NULL;
  65. ManagedHeap__ctor(&self->heap, self);
  66. ValueStack__ctor(&self->stack);
  67. /* Init Builtin Types */
  68. // 0: unused
  69. void* placeholder = TypeList__emplace(&self->types);
  70. memset(placeholder, 0, sizeof(py_TypeInfo));
  71. #define validate(t, expr) \
  72. if(t != (expr)) abort()
  73. validate(tp_object, pk_newtype("object", 0, NULL, NULL, true, false));
  74. validate(tp_type, pk_newtype("type", 1, NULL, NULL, false, true));
  75. pk_object__register();
  76. validate(tp_int, pk_newtype("int", tp_object, NULL, NULL, false, true));
  77. validate(tp_float, pk_newtype("float", tp_object, NULL, NULL, false, true));
  78. validate(tp_bool, pk_newtype("bool", tp_object, NULL, NULL, false, true));
  79. pk_number__register();
  80. validate(tp_str, pk_str__register());
  81. validate(tp_str_iterator, pk_str_iterator__register());
  82. validate(tp_list, pk_list__register());
  83. validate(tp_tuple, pk_tuple__register());
  84. validate(tp_array_iterator, pk_array_iterator__register());
  85. validate(tp_slice, pk_slice__register());
  86. validate(tp_range, pk_range__register());
  87. validate(tp_range_iterator, pk_range_iterator__register());
  88. validate(tp_module, pk_newtype("module", tp_object, NULL, NULL, false, true));
  89. validate(tp_function, pk_function__register());
  90. validate(tp_nativefunc, pk_nativefunc__register());
  91. validate(tp_boundmethod, pk_boundmethod__register());
  92. validate(tp_super, pk_super__register());
  93. validate(tp_BaseException, pk_BaseException__register());
  94. validate(tp_Exception, pk_Exception__register());
  95. validate(tp_bytes, pk_bytes__register());
  96. validate(tp_namedict, pk_namedict__register());
  97. validate(tp_locals, pk_locals__register());
  98. validate(tp_code, pk_code__register());
  99. validate(tp_dict, pk_dict__register());
  100. validate(tp_dict_items, pk_dict_items__register());
  101. validate(tp_property, pk_property__register());
  102. validate(tp_star_wrapper, pk_newtype("star_wrapper", tp_object, NULL, NULL, false, true));
  103. validate(tp_staticmethod, pk_staticmethod__register());
  104. validate(tp_classmethod, pk_classmethod__register());
  105. validate(tp_NoneType, pk_newtype("NoneType", tp_object, NULL, NULL, false, true));
  106. validate(tp_NotImplementedType,
  107. pk_newtype("NotImplementedType", tp_object, NULL, NULL, false, true));
  108. validate(tp_ellipsis, pk_newtype("ellipsis", tp_object, NULL, NULL, false, true));
  109. validate(tp_generator, pk_generator__register());
  110. self->builtins = pk_builtins__register();
  111. // inject some builtin expections
  112. #define INJECT_BUILTIN_EXC(name, TBase) \
  113. do { \
  114. py_Type type = pk_newtype(#name, TBase, &self->builtins, NULL, false, true); \
  115. py_setdict(&self->builtins, py_name(#name), py_tpobject(type)); \
  116. validate(tp_##name, type); \
  117. } while(0)
  118. INJECT_BUILTIN_EXC(SystemExit, tp_BaseException);
  119. INJECT_BUILTIN_EXC(KeyboardInterrupt, tp_BaseException);
  120. // INJECT_BUILTIN_EXC(StopIteration, tp_Exception);
  121. validate(tp_StopIteration, pk_StopIteration__register());
  122. py_setdict(&self->builtins, py_name("StopIteration"), py_tpobject(tp_StopIteration));
  123. INJECT_BUILTIN_EXC(SyntaxError, tp_Exception);
  124. INJECT_BUILTIN_EXC(StackOverflowError, tp_Exception);
  125. INJECT_BUILTIN_EXC(IOError, tp_Exception);
  126. INJECT_BUILTIN_EXC(OSError, tp_Exception);
  127. INJECT_BUILTIN_EXC(NotImplementedError, tp_Exception);
  128. INJECT_BUILTIN_EXC(TypeError, tp_Exception);
  129. INJECT_BUILTIN_EXC(IndexError, tp_Exception);
  130. INJECT_BUILTIN_EXC(ValueError, tp_Exception);
  131. INJECT_BUILTIN_EXC(RuntimeError, tp_Exception);
  132. INJECT_BUILTIN_EXC(ZeroDivisionError, tp_Exception);
  133. INJECT_BUILTIN_EXC(NameError, tp_Exception);
  134. INJECT_BUILTIN_EXC(UnboundLocalError, tp_Exception);
  135. INJECT_BUILTIN_EXC(AttributeError, tp_Exception);
  136. INJECT_BUILTIN_EXC(ImportError, tp_Exception);
  137. INJECT_BUILTIN_EXC(AssertionError, tp_Exception);
  138. INJECT_BUILTIN_EXC(KeyError, tp_Exception);
  139. #undef INJECT_BUILTIN_EXC
  140. #undef validate
  141. /* Setup Public Builtin Types */
  142. py_Type public_types[] = {
  143. tp_object,
  144. tp_type,
  145. tp_int,
  146. tp_float,
  147. tp_bool,
  148. tp_str,
  149. tp_list,
  150. tp_tuple,
  151. tp_slice,
  152. tp_range,
  153. tp_bytes,
  154. tp_dict,
  155. tp_property,
  156. tp_staticmethod,
  157. tp_classmethod,
  158. tp_super,
  159. tp_BaseException,
  160. tp_Exception,
  161. };
  162. for(int i = 0; i < c11__count_array(public_types); i++) {
  163. py_TypeInfo* ti = pk__type_info(public_types[i]);
  164. py_setdict(&self->builtins, ti->name, &ti->self);
  165. }
  166. py_newnotimplemented(py_emplacedict(&self->builtins, py_name("NotImplemented")));
  167. pk__add_module_linalg();
  168. pk__add_module_array2d();
  169. // add modules
  170. pk__add_module_os();
  171. pk__add_module_sys();
  172. pk__add_module_math();
  173. pk__add_module_dis();
  174. pk__add_module_random();
  175. pk__add_module_json();
  176. pk__add_module_gc();
  177. pk__add_module_time();
  178. pk__add_module_easing();
  179. pk__add_module_traceback();
  180. pk__add_module_enum();
  181. pk__add_module_conio();
  182. pk__add_module_pkpy();
  183. // add python builtins
  184. do {
  185. bool ok;
  186. ok = py_exec(kPythonLibs_builtins, "<builtins>", EXEC_MODE, &self->builtins);
  187. if(!ok) goto __ABORT;
  188. break;
  189. __ABORT:
  190. py_printexc();
  191. c11__abort("failed to load python builtins!");
  192. } while(0);
  193. self->main = *py_newmodule("__main__");
  194. }
  195. void VM__dtor(VM* self) {
  196. // destroy all objects
  197. ManagedHeap__dtor(&self->heap);
  198. // clear frames
  199. while(self->top_frame)
  200. VM__pop_frame(self);
  201. ModuleDict__dtor(&self->modules);
  202. TypeList__dtor(&self->types);
  203. ValueStack__clear(&self->stack);
  204. }
  205. void VM__push_frame(VM* self, Frame* frame) {
  206. frame->f_back = self->top_frame;
  207. self->top_frame = frame;
  208. }
  209. void VM__pop_frame(VM* self) {
  210. assert(self->top_frame);
  211. Frame* frame = self->top_frame;
  212. // reset stack pointer
  213. self->stack.sp = frame->p0;
  214. // pop frame and delete
  215. self->top_frame = frame->f_back;
  216. Frame__delete(frame);
  217. }
  218. static void _clip_int(int* value, int min, int max) {
  219. if(*value < min) *value = min;
  220. if(*value > max) *value = max;
  221. }
  222. bool pk__parse_int_slice(py_Ref slice, int length, int* start, int* stop, int* step) {
  223. py_Ref s_start = py_getslot(slice, 0);
  224. py_Ref s_stop = py_getslot(slice, 1);
  225. py_Ref s_step = py_getslot(slice, 2);
  226. if(py_isnone(s_step))
  227. *step = 1;
  228. else {
  229. if(!py_checkint(s_step)) return false;
  230. *step = py_toint(s_step);
  231. }
  232. if(*step == 0) return ValueError("slice step cannot be zero");
  233. if(*step > 0) {
  234. if(py_isnone(s_start))
  235. *start = 0;
  236. else {
  237. if(!py_checkint(s_start)) return false;
  238. *start = py_toint(s_start);
  239. if(*start < 0) *start += length;
  240. _clip_int(start, 0, length);
  241. }
  242. if(py_isnone(s_stop))
  243. *stop = length;
  244. else {
  245. if(!py_checkint(s_stop)) return false;
  246. *stop = py_toint(s_stop);
  247. if(*stop < 0) *stop += length;
  248. _clip_int(stop, 0, length);
  249. }
  250. } else {
  251. if(py_isnone(s_start))
  252. *start = length - 1;
  253. else {
  254. if(!py_checkint(s_start)) return false;
  255. *start = py_toint(s_start);
  256. if(*start < 0) *start += length;
  257. _clip_int(start, -1, length - 1);
  258. }
  259. if(py_isnone(s_stop))
  260. *stop = -1;
  261. else {
  262. if(!py_checkint(s_stop)) return false;
  263. *stop = py_toint(s_stop);
  264. if(*stop < 0) *stop += length;
  265. _clip_int(stop, -1, length - 1);
  266. }
  267. }
  268. return true;
  269. }
  270. bool pk__normalize_index(int* index, int length) {
  271. if(*index < 0) *index += length;
  272. if(*index < 0 || *index >= length) { return IndexError("%d not in [0, %d)", *index, length); }
  273. return true;
  274. }
  275. py_Type pk_newtype(const char* name,
  276. py_Type base,
  277. const py_GlobalRef module,
  278. void (*dtor)(void*),
  279. bool is_python,
  280. bool is_sealed) {
  281. py_Type index = pk_current_vm->types.length;
  282. py_TypeInfo* ti = TypeList__emplace(&pk_current_vm->types);
  283. py_TypeInfo* base_ti = base ? pk__type_info(base) : NULL;
  284. if(base_ti && base_ti->is_sealed) {
  285. c11__abort("type '%s' is not an acceptable base type", py_name2str(base_ti->name));
  286. }
  287. py_TypeInfo__ctor(ti, py_name(name), index, base, base_ti, module ? *module : *py_NIL());
  288. if(!dtor && base) dtor = base_ti->dtor;
  289. ti->dtor = dtor;
  290. ti->is_python = is_python;
  291. ti->is_sealed = is_sealed;
  292. return index;
  293. }
  294. py_Type py_newtype(const char* name, py_Type base, const py_GlobalRef module, void (*dtor)(void*)) {
  295. py_Type type = pk_newtype(name, base, module, dtor, false, false);
  296. if(module) py_setdict(module, py_name(name), py_tpobject(type));
  297. return type;
  298. }
  299. static bool
  300. prepare_py_call(py_TValue* buffer, py_Ref argv, py_Ref p1, int kwargc, const FuncDecl* decl) {
  301. const CodeObject* co = &decl->code;
  302. int decl_argc = decl->args.length;
  303. if(p1 - argv < decl_argc) {
  304. return TypeError("%s() takes %d positional arguments but %d were given",
  305. co->name->data,
  306. decl_argc,
  307. (int)(p1 - argv));
  308. }
  309. py_TValue* t = argv;
  310. // prepare args
  311. memset(buffer, 0, co->nlocals * sizeof(py_TValue));
  312. c11__foreach(int, &decl->args, index) buffer[*index] = *t++;
  313. // prepare kwdefaults
  314. c11__foreach(FuncDeclKwArg, &decl->kwargs, kv) buffer[kv->index] = kv->value;
  315. // handle *args
  316. if(decl->starred_arg != -1) {
  317. int exceed_argc = p1 - t;
  318. py_Ref vargs = &buffer[decl->starred_arg];
  319. py_newtuple(vargs, exceed_argc);
  320. for(int j = 0; j < exceed_argc; j++) {
  321. py_tuple_setitem(vargs, j, t++);
  322. }
  323. } else {
  324. // kwdefaults override
  325. // def f(a, b, c=None)
  326. // f(1, 2, 3) -> c=3
  327. c11__foreach(FuncDeclKwArg, &decl->kwargs, kv) {
  328. if(t >= p1) break;
  329. buffer[kv->index] = *t++;
  330. }
  331. // not able to consume all args
  332. if(t < p1) return TypeError("too many arguments (%s)", co->name->data);
  333. }
  334. if(decl->starred_kwarg != -1) py_newdict(&buffer[decl->starred_kwarg]);
  335. for(int j = 0; j < kwargc; j++) {
  336. py_Name key = py_toint(&p1[2 * j]);
  337. int index = c11_smallmap_n2i__get(&decl->kw_to_index, key, -1);
  338. // if key is an explicit key, set as local variable
  339. if(index >= 0) {
  340. buffer[index] = p1[2 * j + 1];
  341. } else {
  342. // otherwise, set as **kwargs if possible
  343. if(decl->starred_kwarg == -1) {
  344. return TypeError("'%n' is an invalid keyword argument for %s()",
  345. key,
  346. co->name->data);
  347. } else {
  348. // add to **kwargs
  349. bool ok = py_dict_setitem_by_str(&buffer[decl->starred_kwarg],
  350. py_name2str(key),
  351. &p1[2 * j + 1]);
  352. if(!ok) return false;
  353. }
  354. }
  355. }
  356. return true;
  357. }
  358. FrameResult VM__vectorcall(VM* self, uint16_t argc, uint16_t kwargc, bool opcall) {
  359. pk_print_stack(self, self->top_frame, (Bytecode){0});
  360. py_Ref p1 = self->stack.sp - kwargc * 2;
  361. py_Ref p0 = p1 - argc - 2;
  362. // [callable, <self>, args..., kwargs...]
  363. // ^p0 ^p1 ^_sp
  364. // handle boundmethod, do a patch
  365. if(p0->type == tp_boundmethod) {
  366. assert(py_isnil(p0 + 1)); // self must be NULL
  367. py_TValue* slots = PyObject__slots(p0->_obj);
  368. p0[0] = slots[1]; // callable
  369. p0[1] = slots[0]; // self
  370. // [unbound, self, args..., kwargs...]
  371. }
  372. py_Ref argv = p0 + 1 + (int)py_isnil(p0 + 1);
  373. if(p0->type == tp_function) {
  374. // check stack overflow
  375. if(self->stack.sp > self->stack.end) {
  376. py_exception(tp_StackOverflowError, "");
  377. return RES_ERROR;
  378. }
  379. Function* fn = py_touserdata(p0);
  380. const CodeObject* co = &fn->decl->code;
  381. switch(fn->decl->type) {
  382. case FuncType_NORMAL: {
  383. bool ok = prepare_py_call(self->__vectorcall_buffer, argv, p1, kwargc, fn->decl);
  384. if(!ok) return RES_ERROR;
  385. // copy buffer back to stack
  386. self->stack.sp = argv + co->nlocals;
  387. memcpy(argv, self->__vectorcall_buffer, co->nlocals * sizeof(py_TValue));
  388. // submit the call
  389. if(!fn->cfunc) {
  390. // python function
  391. VM__push_frame(self, Frame__new(co, &fn->module, p0, argv, true));
  392. return opcall ? RES_CALL : VM__run_top_frame(self);
  393. } else {
  394. // decl-based binding
  395. self->__curr_function = p0;
  396. bool ok = py_callcfunc(fn->cfunc, co->nlocals, argv);
  397. self->stack.sp = p0;
  398. self->__curr_function = NULL;
  399. return ok ? RES_RETURN : RES_ERROR;
  400. }
  401. }
  402. case FuncType_SIMPLE:
  403. if(p1 - argv != fn->decl->args.length) {
  404. const char* fmt = "%s() takes %d positional arguments but %d were given";
  405. TypeError(fmt, co->name->data, fn->decl->args.length, (int)(p1 - argv));
  406. return RES_ERROR;
  407. }
  408. if(kwargc) {
  409. TypeError("%s() takes no keyword arguments", co->name->data);
  410. return RES_ERROR;
  411. }
  412. // [callable, <self>, args..., local_vars...]
  413. // ^p0 ^p1 ^_sp
  414. self->stack.sp = argv + co->nlocals;
  415. // initialize local variables to py_NIL
  416. memset(p1, 0, (char*)self->stack.sp - (char*)p1);
  417. // submit the call
  418. if(!fn->cfunc) {
  419. // python function
  420. VM__push_frame(self, Frame__new(co, &fn->module, p0, argv, true));
  421. return opcall ? RES_CALL : VM__run_top_frame(self);
  422. } else {
  423. // decl-based binding
  424. self->__curr_function = p0;
  425. bool ok = py_callcfunc(fn->cfunc, co->nlocals, argv);
  426. self->stack.sp = p0;
  427. self->__curr_function = NULL;
  428. return ok ? RES_RETURN : RES_ERROR;
  429. }
  430. case FuncType_GENERATOR: {
  431. bool ok = prepare_py_call(self->__vectorcall_buffer, argv, p1, kwargc, fn->decl);
  432. if(!ok) return RES_ERROR;
  433. // copy buffer back to stack
  434. self->stack.sp = argv + co->nlocals;
  435. memcpy(argv, self->__vectorcall_buffer, co->nlocals * sizeof(py_TValue));
  436. Frame* frame = Frame__new(co, &fn->module, p0, argv, true);
  437. pk_newgenerator(py_retval(), frame, p0, self->stack.sp);
  438. self->stack.sp = p0; // reset the stack
  439. return RES_RETURN;
  440. }
  441. default: c11__unreachable();
  442. };
  443. c11__unreachable();
  444. /*****************_py_call*****************/
  445. }
  446. if(p0->type == tp_nativefunc) {
  447. if(kwargc && p0->_cfunc != pk__object_new) {
  448. TypeError("nativefunc does not accept keyword arguments");
  449. return RES_ERROR;
  450. }
  451. bool ok = py_callcfunc(p0->_cfunc, p1 - argv, argv);
  452. self->stack.sp = p0;
  453. return ok ? RES_RETURN : RES_ERROR;
  454. }
  455. if(p0->type == tp_type) {
  456. // [cls, NULL, args..., kwargs...]
  457. py_Ref new_f = py_tpfindmagic(py_totype(p0), __new__);
  458. assert(new_f && py_isnil(p0 + 1));
  459. // prepare a copy of args and kwargs
  460. int span = self->stack.sp - argv;
  461. *self->stack.sp++ = *new_f; // push __new__
  462. *self->stack.sp++ = *p0; // push cls
  463. memcpy(self->stack.sp, argv, span * sizeof(py_TValue));
  464. self->stack.sp += span;
  465. // [new_f, cls, args..., kwargs...]
  466. if(VM__vectorcall(self, argc, kwargc, false) == RES_ERROR) return RES_ERROR;
  467. // by recursively using vectorcall, args and kwargs are consumed
  468. // try __init__
  469. // NOTE: previously we use `get_unbound_method` but here we just use `tpfindmagic`
  470. // >> [cls, NULL, args..., kwargs...]
  471. // >> py_retval() is the new instance
  472. py_Ref init_f = py_tpfindmagic(py_totype(p0), __init__);
  473. if(init_f) {
  474. // do an inplace patch
  475. *p0 = *init_f; // __init__
  476. p0[1] = self->last_retval; // self
  477. // [__init__, self, args..., kwargs...]
  478. if(VM__vectorcall(self, argc, kwargc, false) == RES_ERROR) return RES_ERROR;
  479. *py_retval() = p0[1]; // restore the new instance
  480. }
  481. // reset the stack
  482. self->stack.sp = p0;
  483. return RES_RETURN;
  484. }
  485. // handle `__call__` overload
  486. if(pk_loadmethod(p0, __call__)) {
  487. // [__call__, self, args..., kwargs...]
  488. return VM__vectorcall(self, argc, kwargc, opcall);
  489. }
  490. TypeError("'%t' object is not callable", p0->type);
  491. return RES_ERROR;
  492. }
  493. /****************************************/
  494. void PyObject__delete(PyObject* self) {
  495. py_TypeInfo* ti = pk__type_info(self->type);
  496. if(ti->dtor) ti->dtor(PyObject__userdata(self));
  497. if(self->slots == -1) NameDict__dtor(PyObject__dict(self));
  498. if(self->gc_is_large) {
  499. free(self);
  500. } else {
  501. PoolObject_dealloc(self);
  502. }
  503. }
  504. static void mark_object(PyObject* obj);
  505. void pk__mark_value(py_TValue* val) {
  506. if(val->is_ptr) mark_object(val->_obj);
  507. }
  508. void pk__mark_namedict(NameDict* dict) {
  509. for(int i = 0; i < dict->length; i++) {
  510. NameDict_KV* kv = c11__at(NameDict_KV, dict, i);
  511. pk__mark_value(&kv->value);
  512. }
  513. }
  514. void pk__tp_set_marker(py_Type type, void (*gc_mark)(void*)) {
  515. py_TypeInfo* ti = pk__type_info(type);
  516. assert(ti->gc_mark == NULL);
  517. ti->gc_mark = gc_mark;
  518. }
  519. static void mark_object(PyObject* obj) {
  520. if(obj->gc_marked) return;
  521. obj->gc_marked = true;
  522. if(obj->slots > 0) {
  523. py_TValue* p = PyObject__slots(obj);
  524. for(int i = 0; i < obj->slots; i++)
  525. pk__mark_value(p + i);
  526. } else if(obj->slots == -1) {
  527. NameDict* dict = PyObject__dict(obj);
  528. pk__mark_namedict(dict);
  529. }
  530. py_TypeInfo* ti = pk__type_info(obj->type);
  531. if(ti->gc_mark) ti->gc_mark(PyObject__userdata(obj));
  532. }
  533. void FuncDecl__gc_mark(const FuncDecl* self) {
  534. CodeObject__gc_mark(&self->code);
  535. for(int j = 0; j < self->kwargs.length; j++) {
  536. FuncDeclKwArg* kw = c11__at(FuncDeclKwArg, &self->kwargs, j);
  537. pk__mark_value(&kw->value);
  538. }
  539. }
  540. void CodeObject__gc_mark(const CodeObject* self) {
  541. for(int i = 0; i < self->consts.length; i++) {
  542. py_TValue* p = c11__at(py_TValue, &self->consts, i);
  543. pk__mark_value(p);
  544. }
  545. for(int i = 0; i < self->func_decls.length; i++) {
  546. FuncDecl_ decl = c11__getitem(FuncDecl_, &self->func_decls, i);
  547. FuncDecl__gc_mark(decl);
  548. }
  549. }
  550. void ManagedHeap__mark(ManagedHeap* self) {
  551. VM* vm = self->vm;
  552. // mark heap objects
  553. for(int i = 0; i < self->no_gc.length; i++) {
  554. PyObject* obj = c11__getitem(PyObject*, &self->no_gc, i);
  555. mark_object(obj);
  556. }
  557. // mark value stack
  558. for(py_TValue* p = vm->stack.begin; p != vm->stack.end; p++) {
  559. pk__mark_value(p);
  560. }
  561. // mark types
  562. int types_length = vm->types.length;
  563. // 0-th type is placeholder
  564. for(py_Type i = 1; i < types_length; i++) {
  565. py_TypeInfo* ti = TypeList__get(&vm->types, i);
  566. // mark magic slots
  567. for(int j = 0; j <= __missing__; j++) {
  568. py_TValue* slot = ti->magic + j;
  569. if(py_isnil(slot)) continue;
  570. pk__mark_value(slot);
  571. }
  572. // mark type annotations
  573. pk__mark_value(&ti->annotations);
  574. }
  575. // mark frame
  576. for(Frame* frame = vm->top_frame; frame; frame = frame->f_back) {
  577. Frame__gc_mark(frame);
  578. }
  579. // mark vm's registers
  580. pk__mark_value(&vm->last_retval);
  581. pk__mark_value(&vm->curr_exception);
  582. for(int i = 0; i < c11__count_array(vm->reg); i++) {
  583. pk__mark_value(&vm->reg[i]);
  584. }
  585. }
  586. void pk_print_stack(VM* self, Frame* frame, Bytecode byte) {
  587. return;
  588. if(frame == NULL || py_isnil(&self->main)) return;
  589. py_TValue* sp = self->stack.sp;
  590. c11_sbuf buf;
  591. c11_sbuf__ctor(&buf);
  592. for(py_Ref p = self->stack.begin; p != sp; p++) {
  593. switch(p->type) {
  594. case tp_nil: c11_sbuf__write_cstr(&buf, "nil"); break;
  595. case tp_int: c11_sbuf__write_i64(&buf, p->_i64); break;
  596. case tp_float: c11_sbuf__write_f64(&buf, p->_f64, -1); break;
  597. case tp_bool: c11_sbuf__write_cstr(&buf, p->_bool ? "True" : "False"); break;
  598. case tp_NoneType: c11_sbuf__write_cstr(&buf, "None"); break;
  599. case tp_list: {
  600. pk_sprintf(&buf, "list(%d)", py_list_len(p));
  601. break;
  602. }
  603. case tp_tuple: {
  604. pk_sprintf(&buf, "tuple(%d)", py_tuple_len(p));
  605. break;
  606. }
  607. case tp_function: {
  608. Function* ud = py_touserdata(p);
  609. c11_sbuf__write_cstr(&buf, ud->decl->code.name->data);
  610. c11_sbuf__write_cstr(&buf, "()");
  611. break;
  612. }
  613. case tp_type: {
  614. pk_sprintf(&buf, "<class '%t'>", py_totype(p));
  615. break;
  616. }
  617. case tp_str: {
  618. pk_sprintf(&buf, "%q", py_tosv(p));
  619. break;
  620. }
  621. case tp_module: {
  622. py_Ref path = py_getdict(p, __path__);
  623. pk_sprintf(&buf, "<module '%v'>", py_tosv(path));
  624. break;
  625. }
  626. default: {
  627. pk_sprintf(&buf, "(%t)", p->type);
  628. break;
  629. }
  630. }
  631. if(p != &sp[-1]) c11_sbuf__write_cstr(&buf, ", ");
  632. }
  633. c11_string* stack_str = c11_sbuf__submit(&buf);
  634. printf("%s:%-3d: %-25s %-6d [%s]\n",
  635. frame->co->src->filename->data,
  636. Frame__lineno(frame),
  637. pk_opname(byte.op),
  638. byte.arg,
  639. stack_str->data);
  640. c11_string__delete(stack_str);
  641. }
  642. bool pk_wrapper__self(int argc, py_Ref argv) {
  643. PY_CHECK_ARGC(1);
  644. py_assign(py_retval(), argv);
  645. return true;
  646. }
  647. bool pk_wrapper__NotImplementedError(int argc, py_Ref argv) {
  648. return py_exception(tp_NotImplementedError, "");
  649. }
  650. py_TypeInfo* pk__type_info(py_Type type) { return TypeList__get(&pk_current_vm->types, type); }