pocketpy_c.cpp 14 KB

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  1. #ifndef PK_NO_EXPORT_C_API
  2. #include "pocketpy.h"
  3. #include "pocketpy_c.h"
  4. using namespace pkpy;
  5. typedef int (*LuaStyleFuncC)(VM*);
  6. #define PK_ASSERT_N_EXTRA_ELEMENTS(n) \
  7. int __ex_count = count_extra_elements(vm, n); \
  8. if(__ex_count < n){ \
  9. Str msg = _S("expected at least ", n, " elements, got ", __ex_count); \
  10. pkpy_error(vm_handle, "StackError", pkpy_string(msg.c_str())); \
  11. return false; \
  12. }
  13. #define PK_ASSERT_NO_ERROR() \
  14. if(vm->__c.error != nullptr) \
  15. return false;
  16. static int count_extra_elements(VM* vm, int n){
  17. if(vm->callstack.empty()){
  18. return vm->s_data.size();
  19. }
  20. PK_ASSERT(!vm->__c.s_view.empty());
  21. return vm->s_data._sp - vm->__c.s_view.top().end();
  22. }
  23. static PyObject* stack_item(VM* vm, int index){
  24. PyObject** begin;
  25. PyObject** end = vm->s_data.end();
  26. if(vm->callstack.empty()){
  27. begin = vm->s_data.begin();
  28. }else{
  29. PK_ASSERT(!vm->__c.s_view.empty());
  30. begin = vm->__c.s_view.top().begin();
  31. }
  32. int size = end - begin;
  33. if(index < 0) index += size;
  34. if(index < 0 || index >= size){
  35. throw std::runtime_error("stack_item() => index out of range");
  36. }
  37. return begin[index];
  38. }
  39. #define PK_PROTECTED(__B) \
  40. try{ __B } \
  41. catch(const Exception& e ) { \
  42. vm->__c.error = e.self(); \
  43. return false; \
  44. } catch(const std::exception& re){ \
  45. PyObject* e_t = vm->_t(vm->tp_exception); \
  46. vm->__c.error = vm->call(e_t, VAR(re.what())); \
  47. return false; \
  48. }
  49. pkpy_vm* pkpy_new_vm(bool enable_os){
  50. return (pkpy_vm*)new VM(enable_os);
  51. }
  52. void pkpy_delete_vm(pkpy_vm* vm){
  53. return delete (VM*)vm;
  54. }
  55. bool pkpy_exec(pkpy_vm* vm_handle, const char* source) {
  56. VM* vm = (VM*) vm_handle;
  57. PK_ASSERT_NO_ERROR()
  58. PyObject* res;
  59. PK_PROTECTED(
  60. CodeObject_ code = vm->compile(source, "main.py", EXEC_MODE);
  61. res = vm->_exec(code, vm->_main);
  62. )
  63. return res != nullptr;
  64. }
  65. bool pkpy_exec_2(pkpy_vm* vm_handle, const char* source, const char* filename, int mode, const char* module){
  66. VM* vm = (VM*) vm_handle;
  67. PK_ASSERT_NO_ERROR()
  68. PyObject* res;
  69. PyObject* mod;
  70. PK_PROTECTED(
  71. if(module == nullptr){
  72. mod = vm->_main;
  73. }else{
  74. mod = vm->_modules[module]; // may raise
  75. }
  76. CodeObject_ code = vm->compile(source, filename, (CompileMode)mode);
  77. res = vm->_exec(code, mod);
  78. )
  79. return res != nullptr;
  80. }
  81. void pkpy_set_main_argv(pkpy_vm* vm_handle, int argc, char** argv){
  82. VM* vm = (VM*) vm_handle;
  83. vm->set_main_argv(argc, argv);
  84. }
  85. bool pkpy_dup(pkpy_vm* vm_handle, int n){
  86. VM* vm = (VM*) vm_handle;
  87. PK_ASSERT_NO_ERROR()
  88. PK_PROTECTED(
  89. PyObject* item = stack_item(vm, n);
  90. vm->s_data.push(item);
  91. )
  92. return true;
  93. }
  94. bool pkpy_pop(pkpy_vm* vm_handle, int n){
  95. VM* vm = (VM*) vm_handle;
  96. PK_ASSERT_NO_ERROR()
  97. PK_ASSERT_N_EXTRA_ELEMENTS(n)
  98. vm->s_data.shrink(n);
  99. return true;
  100. }
  101. bool pkpy_pop_top(pkpy_vm* vm_handle){
  102. VM* vm = (VM*)vm_handle;
  103. PK_ASSERT_NO_ERROR()
  104. PK_ASSERT_N_EXTRA_ELEMENTS(1)
  105. vm->s_data.pop();
  106. return true;
  107. }
  108. bool pkpy_dup_top(pkpy_vm* vm_handle){
  109. VM* vm = (VM*)vm_handle;
  110. PK_ASSERT_NO_ERROR()
  111. PK_ASSERT_N_EXTRA_ELEMENTS(1)
  112. vm->s_data.push(vm->s_data.top());
  113. return true;
  114. }
  115. bool pkpy_rot_two(pkpy_vm* vm_handle){
  116. VM* vm = (VM*)vm_handle;
  117. PK_ASSERT_NO_ERROR()
  118. PK_ASSERT_N_EXTRA_ELEMENTS(2)
  119. std::swap(vm->s_data.top(), vm->s_data.second());
  120. return true;
  121. }
  122. int pkpy_stack_size(pkpy_vm* vm_handle){
  123. VM* vm = (VM*)vm_handle;
  124. PK_ASSERT_NO_ERROR()
  125. if(vm->callstack.empty()){
  126. return vm->s_data.size();
  127. }
  128. if(vm->__c.s_view.empty()) exit(127);
  129. return vm->s_data._sp - vm->__c.s_view.top().begin();
  130. }
  131. // int
  132. bool pkpy_push_int(pkpy_vm* vm_handle, int value) {
  133. VM* vm = (VM*) vm_handle;
  134. PK_ASSERT_NO_ERROR()
  135. PyObject* res;
  136. PK_PROTECTED(
  137. // int may overflow so we should protect it
  138. res = py_var(vm, value);
  139. )
  140. vm->s_data.push(res);
  141. return true;
  142. }
  143. bool pkpy_is_int(pkpy_vm* vm_handle, int i){
  144. VM* vm = (VM*) vm_handle;
  145. PK_ASSERT_NO_ERROR()
  146. PK_PROTECTED(
  147. return is_int(stack_item(vm, i));
  148. )
  149. }
  150. bool pkpy_to_int(pkpy_vm* vm_handle, int i, int* out){
  151. VM* vm = (VM*) vm_handle;
  152. PK_ASSERT_NO_ERROR()
  153. PK_PROTECTED(
  154. PyObject* item = stack_item(vm, i);
  155. *out = py_cast<int>(vm, item);
  156. )
  157. return true;
  158. }
  159. // float
  160. bool pkpy_push_float(pkpy_vm* vm_handle, double value) {
  161. VM* vm = (VM*) vm_handle;
  162. PK_ASSERT_NO_ERROR()
  163. PyObject* res = py_var(vm, value);
  164. vm->s_data.push(res);
  165. return true;
  166. }
  167. bool pkpy_is_float(pkpy_vm* vm_handle, int i){
  168. VM* vm = (VM*) vm_handle;
  169. PK_ASSERT_NO_ERROR()
  170. PK_PROTECTED(
  171. PyObject* item = stack_item(vm, i);
  172. return is_float(item);
  173. )
  174. }
  175. bool pkpy_to_float(pkpy_vm* vm_handle, int i, double* out){
  176. VM* vm = (VM*) vm_handle;
  177. PK_ASSERT_NO_ERROR()
  178. PK_PROTECTED(
  179. PyObject* item = stack_item(vm, i);
  180. *out = py_cast<double>(vm, item);
  181. )
  182. return true;
  183. }
  184. // bool
  185. bool pkpy_push_bool(pkpy_vm* vm_handle, bool value) {
  186. VM* vm = (VM*) vm_handle;
  187. PK_ASSERT_NO_ERROR()
  188. vm->s_data.push(value ? vm->True : vm->False);
  189. return true;
  190. }
  191. bool pkpy_is_bool(pkpy_vm* vm_handle, int i){
  192. VM* vm = (VM*) vm_handle;
  193. PK_ASSERT_NO_ERROR()
  194. PK_PROTECTED(
  195. PyObject* item = stack_item(vm, i);
  196. return is_type(item, vm->tp_bool);
  197. )
  198. }
  199. bool pkpy_to_bool(pkpy_vm* vm_handle, int i, bool* out){
  200. VM* vm = (VM*) vm_handle;
  201. PK_ASSERT_NO_ERROR()
  202. PK_PROTECTED(
  203. PyObject* item = stack_item(vm, i);
  204. *out = py_cast<bool>(vm, item);
  205. )
  206. return true;
  207. }
  208. // string
  209. bool pkpy_push_string(pkpy_vm* vm_handle, pkpy_CString value) {
  210. VM* vm = (VM*) vm_handle;
  211. PK_ASSERT_NO_ERROR()
  212. PyObject* res = py_var(vm, value);
  213. vm->s_data.push(res);
  214. return true;
  215. }
  216. bool pkpy_is_string(pkpy_vm* vm_handle, int i){
  217. VM* vm = (VM*) vm_handle;
  218. PK_ASSERT_NO_ERROR()
  219. PK_PROTECTED(
  220. PyObject* item = stack_item(vm, i);
  221. return is_type(item, vm->tp_str);
  222. )
  223. }
  224. bool pkpy_to_string(pkpy_vm* vm_handle, int i, pkpy_CString* out){
  225. VM* vm = (VM*) vm_handle;
  226. PK_ASSERT_NO_ERROR()
  227. PK_PROTECTED(
  228. PyObject* item = stack_item(vm, i);
  229. const Str& s = py_cast<Str&>(vm, item);
  230. *out = s.c_str();
  231. )
  232. return true;
  233. }
  234. // void_p
  235. bool pkpy_push_voidp(pkpy_vm* vm_handle, void* value) {
  236. VM* vm = (VM*) vm_handle;
  237. PK_ASSERT_NO_ERROR()
  238. PyObject* res = py_var(vm, value);
  239. vm->s_data.push(res);
  240. return true;
  241. }
  242. bool pkpy_is_voidp(pkpy_vm* vm_handle, int i){
  243. VM* vm = (VM*) vm_handle;
  244. PK_ASSERT_NO_ERROR()
  245. PK_PROTECTED(
  246. PyObject* item = stack_item(vm, i);
  247. return vm->is_user_type<VoidP>(item);
  248. )
  249. }
  250. bool pkpy_to_voidp(pkpy_vm* vm_handle, int i, void** out){
  251. VM* vm = (VM*) vm_handle;
  252. PK_ASSERT_NO_ERROR()
  253. PK_PROTECTED(
  254. PyObject* item = stack_item(vm, i);
  255. VoidP& vp = py_cast<VoidP&>(vm, item);
  256. *out = vp.ptr;
  257. )
  258. return true;
  259. }
  260. // none
  261. bool pkpy_push_none(pkpy_vm* vm_handle) {
  262. VM* vm = (VM*) vm_handle;
  263. PK_ASSERT_NO_ERROR()
  264. vm->s_data.push(vm->None);
  265. return true;
  266. }
  267. bool pkpy_is_none(pkpy_vm* vm_handle, int i){
  268. VM* vm = (VM*) vm_handle;
  269. PK_ASSERT_NO_ERROR()
  270. PK_PROTECTED(
  271. PyObject* item = stack_item(vm, i);
  272. return item == vm->None;
  273. )
  274. }
  275. // null
  276. bool pkpy_push_null(pkpy_vm* vm_handle) {
  277. VM* vm = (VM*) vm_handle;
  278. PK_ASSERT_NO_ERROR()
  279. vm->s_data.push(PY_NULL);
  280. return true;
  281. }
  282. struct TempViewPopper{
  283. VM* vm;
  284. bool used;
  285. TempViewPopper(VM* vm): vm(vm), used(false) {}
  286. void restore() noexcept{
  287. if(used) return;
  288. vm->__c.s_view.pop();
  289. used = true;
  290. }
  291. ~TempViewPopper(){ restore(); }
  292. };
  293. // function
  294. static PyObject* c_function_wrapper(VM* vm, ArgsView args) {
  295. LuaStyleFuncC f = lambda_get_userdata<LuaStyleFuncC>(args.begin());
  296. PyObject** curr_sp = vm->s_data._sp;
  297. vm->__c.s_view.push(args);
  298. TempViewPopper _tvp(vm);
  299. int retc = f(vm); // may raise, _tvp will handle this via RAII
  300. _tvp.restore();
  301. // propagate_if_errored
  302. if (vm->__c.error != nullptr){
  303. PyObject* e_obj = PK_OBJ_GET(Exception, vm->__c.error).self();
  304. vm->__c.error = nullptr;
  305. vm->_error(e_obj);
  306. return nullptr;
  307. }
  308. PK_ASSERT(retc == vm->s_data._sp-curr_sp);
  309. if(retc == 0) return vm->None;
  310. if (retc == 1) return vm->s_data.popx();
  311. ArgsView ret_view(curr_sp, vm->s_data._sp);
  312. return py_var(vm, ret_view.to_tuple());
  313. }
  314. bool pkpy_push_function(pkpy_vm* vm_handle, const char* sig, pkpy_CFunction f) {
  315. VM* vm = (VM*) vm_handle;
  316. PK_ASSERT_NO_ERROR()
  317. PyObject* f_obj;
  318. PK_PROTECTED(
  319. f_obj = vm->bind(nullptr, sig, c_function_wrapper, f);
  320. )
  321. vm->s_data.push(f_obj);
  322. return true;
  323. }
  324. // special push
  325. bool pkpy_push_module(pkpy_vm* vm_handle, const char* name) {
  326. VM* vm = (VM*) vm_handle;
  327. PK_ASSERT_NO_ERROR()
  328. PK_PROTECTED(
  329. PyObject* module = vm->new_module(name);
  330. vm->s_data.push(module);
  331. )
  332. return true;
  333. }
  334. // some opt
  335. bool pkpy_getattr(pkpy_vm* vm_handle, pkpy_CName name) {
  336. VM* vm = (VM*) vm_handle;
  337. PK_ASSERT_NO_ERROR()
  338. PK_ASSERT_N_EXTRA_ELEMENTS(1)
  339. PyObject* o = vm->s_data.top();
  340. o = vm->getattr(o, StrName(name), false);
  341. if(o == nullptr) return false;
  342. vm->s_data.top() = o;
  343. return true;
  344. }
  345. bool pkpy_setattr(pkpy_vm* vm_handle, pkpy_CName name) {
  346. VM* vm = (VM*) vm_handle;
  347. PK_ASSERT_NO_ERROR()
  348. PK_ASSERT_N_EXTRA_ELEMENTS(2)
  349. PyObject* a = vm->s_data.top();
  350. PyObject* val = vm->s_data.second();
  351. PK_PROTECTED(
  352. vm->setattr(a, StrName(name), val);
  353. )
  354. vm->s_data.shrink(2);
  355. return true;
  356. }
  357. //get global will also get bulitins
  358. bool pkpy_getglobal(pkpy_vm* vm_handle, pkpy_CName name) {
  359. VM* vm = (VM*) vm_handle;
  360. PK_ASSERT_NO_ERROR()
  361. PyObject* o = vm->_main->attr().try_get(StrName(name));
  362. if (o == nullptr) {
  363. o = vm->builtins->attr().try_get(StrName(name));
  364. if (o == nullptr) return false;
  365. }
  366. vm->s_data.push(o);
  367. return true;
  368. }
  369. bool pkpy_setglobal(pkpy_vm* vm_handle, pkpy_CName name) {
  370. VM* vm = (VM*) vm_handle;
  371. PK_ASSERT_NO_ERROR()
  372. PK_ASSERT_N_EXTRA_ELEMENTS(1)
  373. vm->_main->attr().set(StrName(name), vm->s_data.popx());
  374. return true;
  375. }
  376. bool pkpy_eval(pkpy_vm* vm_handle, const char* source) {
  377. VM* vm = (VM*) vm_handle;
  378. PK_ASSERT_NO_ERROR()
  379. PK_PROTECTED(
  380. CodeObject_ co = vm->compile(source, "<eval>", EVAL_MODE);
  381. PyObject* ret = vm->_exec(co, vm->_main);
  382. vm->s_data.push(ret);
  383. )
  384. return true;
  385. }
  386. bool pkpy_unpack_sequence(pkpy_vm* vm_handle, int n) {
  387. VM* vm = (VM*) vm_handle;
  388. PK_ASSERT_NO_ERROR()
  389. PK_ASSERT_N_EXTRA_ELEMENTS(1)
  390. auto _lock = vm->heap.gc_scope_lock();
  391. PK_PROTECTED(
  392. PyObject* _0 = vm->py_iter(vm->s_data.popx());
  393. for(int i=0; i<n; i++){
  394. PyObject* _1 = vm->py_next(_0);
  395. if(_1 == vm->StopIteration) vm->ValueError("not enough values to unpack");
  396. vm->s_data.push(_1);
  397. }
  398. if(vm->py_next(_0) != vm->StopIteration) vm->ValueError("too many values to unpack");
  399. )
  400. return true;
  401. }
  402. bool pkpy_get_unbound_method(pkpy_vm* vm_handle, pkpy_CName name){
  403. VM* vm = (VM*) vm_handle;
  404. PK_ASSERT_NO_ERROR()
  405. PK_ASSERT_N_EXTRA_ELEMENTS(1)
  406. PyObject* o = vm->s_data.top();
  407. PyObject* self;
  408. PK_PROTECTED(
  409. o = vm->get_unbound_method(o, StrName(name), &self);
  410. )
  411. vm->s_data.pop();
  412. vm->s_data.push(o);
  413. vm->s_data.push(self);
  414. return true;
  415. }
  416. bool pkpy_py_repr(pkpy_vm* vm_handle) {
  417. VM* vm = (VM*) vm_handle;
  418. PK_ASSERT_NO_ERROR()
  419. PK_ASSERT_N_EXTRA_ELEMENTS(1)
  420. PyObject* item = vm->s_data.top();
  421. PK_PROTECTED(
  422. item = vm->py_repr(item);
  423. )
  424. vm->s_data.top() = item;
  425. return true;
  426. }
  427. bool pkpy_py_str(pkpy_vm* vm_handle) {
  428. VM* vm = (VM*) vm_handle;
  429. PK_ASSERT_NO_ERROR()
  430. PK_ASSERT_N_EXTRA_ELEMENTS(1)
  431. PyObject* item = vm->s_data.top();
  432. PK_PROTECTED(
  433. item = vm->py_str(item);
  434. )
  435. vm->s_data.top() = item;
  436. return true;
  437. }
  438. /* Error Handling */
  439. bool pkpy_error(pkpy_vm* vm_handle, const char* name, pkpy_CString message) {
  440. VM* vm = (VM*) vm_handle;
  441. PK_ASSERT_NO_ERROR()
  442. PyObject* e_t = vm->_main->attr().try_get_likely_found(name);
  443. if(e_t == nullptr){
  444. e_t = vm->builtins->attr().try_get_likely_found(name);
  445. if(e_t == nullptr){
  446. e_t = vm->_t(vm->tp_exception);
  447. std::cerr << "[warning] pkpy_error(): " << Str(name).escape() << " not found, fallback to 'Exception'" << std::endl;
  448. }
  449. }
  450. vm->__c.error = vm->call(e_t, VAR(message));
  451. return false;
  452. }
  453. bool pkpy_check_error(pkpy_vm* vm_handle) {
  454. VM* vm = (VM*) vm_handle;
  455. return vm->__c.error != nullptr;
  456. }
  457. bool pkpy_clear_error(pkpy_vm* vm_handle, char** message) {
  458. VM* vm = (VM*) vm_handle;
  459. // no error
  460. if (vm->__c.error == nullptr) return false;
  461. Exception& e = PK_OBJ_GET(Exception, vm->__c.error);
  462. if (message != nullptr)
  463. *message = strdup(e.summary().c_str());
  464. else
  465. std::cout << e.summary() << std::endl;
  466. vm->__c.error = nullptr;
  467. if(vm->callstack.empty()){
  468. vm->s_data.clear();
  469. }else{
  470. if(vm->__c.s_view.empty()) exit(127);
  471. vm->s_data.reset(vm->__c.s_view.top().end());
  472. }
  473. return true;
  474. }
  475. bool pkpy_vectorcall(pkpy_vm* vm_handle, int argc) {
  476. VM* vm = (VM*) vm_handle;
  477. PK_ASSERT_NO_ERROR()
  478. PK_ASSERT_N_EXTRA_ELEMENTS(argc + 2)
  479. PyObject* res;
  480. PK_PROTECTED(
  481. res = vm->vectorcall(argc);
  482. )
  483. vm->s_data.push(res);
  484. return true;
  485. }
  486. /*****************************************************************/
  487. void pkpy_free(void* p){
  488. free(p);
  489. }
  490. pkpy_CName pkpy_name(const char* name){
  491. return StrName(name).index;
  492. }
  493. pkpy_CString pkpy_name_to_string(pkpy_CName name){
  494. return StrName(name).c_str();
  495. }
  496. void pkpy_set_output_handler(pkpy_vm* vm_handle, pkpy_COutputHandler handler){
  497. VM* vm = (VM*) vm_handle;
  498. vm->_stdout = handler;
  499. }
  500. void pkpy_set_import_handler(pkpy_vm* vm_handle, pkpy_CImportHandler handler){
  501. VM* vm = (VM*) vm_handle;
  502. vm->_import_handler = handler;
  503. }
  504. void* pkpy_new_repl(pkpy_vm* vm_handle){
  505. return new REPL((VM*)vm_handle);
  506. }
  507. bool pkpy_repl_input(void* r, const char* line){
  508. return ((REPL*)r)->input(line);
  509. }
  510. void pkpy_delete_repl(void* repl){
  511. delete (REPL*)repl;
  512. }
  513. #endif // PK_NO_EXPORT_C_API