Interpreter.cpp 32 KB

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  1. /*
  2. * Copyright (c) 2021, Ali Mohammad Pur <mpfard@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/Debug.h>
  7. #include <LibWasm/AbstractMachine/AbstractMachine.h>
  8. #include <LibWasm/AbstractMachine/Configuration.h>
  9. #include <LibWasm/AbstractMachine/Interpreter.h>
  10. #include <LibWasm/Opcode.h>
  11. #include <LibWasm/Printer/Printer.h>
  12. #include <math.h>
  13. namespace Wasm {
  14. void Interpreter::interpret(Configuration& configuration)
  15. {
  16. auto& instructions = configuration.frame()->expression().instructions();
  17. auto max_ip_value = InstructionPointer { instructions.size() };
  18. auto& current_ip_value = configuration.ip();
  19. while (current_ip_value < max_ip_value) {
  20. auto& instruction = instructions[current_ip_value.value()];
  21. interpret(configuration, current_ip_value, instruction);
  22. ++current_ip_value;
  23. }
  24. }
  25. void Interpreter::branch_to_label(Configuration& configuration, LabelIndex index)
  26. {
  27. auto label = configuration.nth_label(index.value());
  28. VERIFY(label.has_value());
  29. NonnullOwnPtrVector<Value> results;
  30. // Pop results in order
  31. for (size_t i = 0; i < label->arity(); ++i)
  32. results.append(move(configuration.stack().pop().get<NonnullOwnPtr<Value>>()));
  33. size_t drop_count = index.value() + 1;
  34. if (label->continuation() < configuration.ip())
  35. --drop_count;
  36. for (; !configuration.stack().is_empty();) {
  37. auto entry = configuration.stack().pop();
  38. if (entry.has<NonnullOwnPtr<Label>>()) {
  39. if (drop_count-- == 0)
  40. break;
  41. }
  42. }
  43. // Push results in reverse
  44. for (size_t i = results.size(); i > 0; --i)
  45. configuration.stack().push(move(static_cast<Vector<NonnullOwnPtr<Value>>&>(results)[i - 1]));
  46. configuration.ip() = label->continuation() + 1;
  47. }
  48. ReadonlyBytes Interpreter::load_from_memory(Configuration& configuration, const Instruction& instruction, size_t size)
  49. {
  50. auto& address = configuration.frame()->module().memories().first();
  51. auto memory = configuration.store().get(address);
  52. VERIFY(memory);
  53. auto& arg = instruction.arguments().get<Instruction::MemoryArgument>();
  54. auto base = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<i32>();
  55. VERIFY(base.has_value());
  56. auto instance_address = base.value() + static_cast<i64>(arg.offset);
  57. if (instance_address < 0 || static_cast<u64>(instance_address + size) > memory->size()) {
  58. dbgln("LibWasm: Memory access out of bounds (expected 0 > {} and {} > {})", instance_address, instance_address + size, memory->size());
  59. return {};
  60. }
  61. dbgln_if(WASM_TRACE_DEBUG, "load({} : {}) -> stack", instance_address, size);
  62. return memory->data().bytes().slice(instance_address, size);
  63. }
  64. void Interpreter::store_to_memory(Configuration& configuration, const Instruction& instruction, ReadonlyBytes data)
  65. {
  66. auto& address = configuration.frame()->module().memories().first();
  67. auto memory = configuration.store().get(address);
  68. VERIFY(memory);
  69. auto& arg = instruction.arguments().get<Instruction::MemoryArgument>();
  70. auto base = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<i32>();
  71. VERIFY(base.has_value());
  72. auto instance_address = base.value() + static_cast<i64>(arg.offset);
  73. if (instance_address < 0 || static_cast<u64>(instance_address + data.size()) > memory->size()) {
  74. dbgln("LibWasm: Memory access out of bounds (expected 0 > {} and {} > {})", instance_address, instance_address + data.size(), memory->size());
  75. return;
  76. }
  77. dbgln_if(WASM_TRACE_DEBUG, "tempoaray({}b) -> store({})", data.size(), instance_address);
  78. data.copy_to(memory->data().bytes().slice(instance_address, data.size()));
  79. }
  80. void Interpreter::call_address(Configuration& configuration, FunctionAddress address)
  81. {
  82. auto instance = configuration.store().get(address);
  83. VERIFY(instance);
  84. const FunctionType* type { nullptr };
  85. instance->visit([&](const auto& function) { type = &function.type(); });
  86. VERIFY(type);
  87. Vector<Value> args;
  88. args.ensure_capacity(type->parameters().size());
  89. for (size_t i = 0; i < type->parameters().size(); ++i) {
  90. args.prepend(move(*configuration.stack().pop().get<NonnullOwnPtr<Value>>()));
  91. }
  92. Configuration function_configuration { configuration.store() };
  93. function_configuration.depth() = configuration.depth() + 1;
  94. auto result = function_configuration.call(address, move(args));
  95. if (result.is_trap())
  96. TODO();
  97. for (auto& entry : result.values())
  98. configuration.stack().push(make<Value>(move(entry)));
  99. }
  100. #define BINARY_NUMERIC_OPERATION(type, operator, ...) \
  101. do { \
  102. auto rhs = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<type>(); \
  103. auto lhs = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<type>(); \
  104. VERIFY(lhs.has_value()); \
  105. VERIFY(rhs.has_value()); \
  106. auto result = lhs.value() operator rhs.value(); \
  107. dbgln_if(WASM_TRACE_DEBUG, "{} {} {} = {}", lhs.value(), #operator, rhs.value(), result); \
  108. configuration.stack().push(make<Value>(__VA_ARGS__(result))); \
  109. return; \
  110. } while (false)
  111. #define BINARY_PREFIX_NUMERIC_OPERATION(type, operation, ...) \
  112. do { \
  113. auto rhs = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<type>(); \
  114. auto lhs = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<type>(); \
  115. VERIFY(lhs.has_value()); \
  116. VERIFY(rhs.has_value()); \
  117. auto result = operation(lhs.value(), rhs.value()); \
  118. dbgln_if(WASM_TRACE_DEBUG, "{}({} {}) = {}", #operation, lhs.value(), rhs.value(), result); \
  119. configuration.stack().push(make<Value>(__VA_ARGS__(result))); \
  120. return; \
  121. } while (false)
  122. #define UNARY_MAP(pop_type, operation, ...) \
  123. do { \
  124. auto value = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<pop_type>(); \
  125. VERIFY(value.has_value()); \
  126. auto result = operation(value.value()); \
  127. dbgln_if(WASM_TRACE_DEBUG, "map({}) {} = {}", #operation, value.value(), result); \
  128. configuration.stack().push(make<Value>(__VA_ARGS__(result))); \
  129. return; \
  130. } while (false)
  131. #define UNARY_NUMERIC_OPERATION(type, operation) \
  132. UNARY_MAP(type, operation, type)
  133. #define LOAD_AND_PUSH(read_type, push_type) \
  134. do { \
  135. auto slice = load_from_memory(configuration, instruction, sizeof(read_type)); \
  136. VERIFY(slice.size() == sizeof(read_type)); \
  137. if constexpr (sizeof(read_type) == 1) \
  138. configuration.stack().push(make<Value>(static_cast<push_type>(slice[0]))); \
  139. else \
  140. configuration.stack().push(make<Value>(read_value<push_type>(slice))); \
  141. return; \
  142. } while (false)
  143. #define POP_AND_STORE(pop_type, store_type) \
  144. do { \
  145. auto value = ConvertToRaw<pop_type> {}(*configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<pop_type>()); \
  146. dbgln_if(WASM_TRACE_DEBUG, "stack({}) -> temporary({}b)", value, sizeof(store_type)); \
  147. store_to_memory(configuration, instruction, { &value, sizeof(store_type) }); \
  148. return; \
  149. } while (false)
  150. template<typename T>
  151. static T read_value(ReadonlyBytes data)
  152. {
  153. T value;
  154. InputMemoryStream stream { data };
  155. auto ok = IsSigned<T> ? LEB128::read_signed(stream, value) : LEB128::read_unsigned(stream, value);
  156. VERIFY(ok);
  157. return value;
  158. }
  159. template<>
  160. float read_value<float>(ReadonlyBytes data)
  161. {
  162. InputMemoryStream stream { data };
  163. LittleEndian<u32> raw_value;
  164. stream >> raw_value;
  165. VERIFY(!stream.has_any_error());
  166. return bit_cast<float>(static_cast<u32>(raw_value));
  167. }
  168. template<>
  169. double read_value<double>(ReadonlyBytes data)
  170. {
  171. InputMemoryStream stream { data };
  172. LittleEndian<u64> raw_value;
  173. stream >> raw_value;
  174. VERIFY(!stream.has_any_error());
  175. return bit_cast<double>(static_cast<u64>(raw_value));
  176. }
  177. template<typename T>
  178. struct ConvertToRaw {
  179. T operator()(T value)
  180. {
  181. return value;
  182. }
  183. };
  184. template<>
  185. struct ConvertToRaw<float> {
  186. u32 operator()(float value)
  187. {
  188. LittleEndian<u32> res;
  189. ReadonlyBytes bytes { &value, sizeof(float) };
  190. InputMemoryStream stream { bytes };
  191. stream >> res;
  192. VERIFY(!stream.has_any_error());
  193. return static_cast<u32>(res);
  194. }
  195. };
  196. template<>
  197. struct ConvertToRaw<double> {
  198. u64 operator()(double value)
  199. {
  200. LittleEndian<u64> res;
  201. ReadonlyBytes bytes { &value, sizeof(double) };
  202. InputMemoryStream stream { bytes };
  203. stream >> res;
  204. VERIFY(!stream.has_any_error());
  205. return static_cast<u64>(res);
  206. }
  207. };
  208. void Interpreter::interpret(Configuration& configuration, InstructionPointer& ip, const Instruction& instruction)
  209. {
  210. dbgln_if(WASM_TRACE_DEBUG, "Executing instruction {} at ip {}", instruction_name(instruction.opcode()), ip.value());
  211. if constexpr (WASM_TRACE_DEBUG)
  212. configuration.dump_stack();
  213. switch (instruction.opcode().value()) {
  214. case Instructions::unreachable.value():
  215. VERIFY_NOT_REACHED(); // FIXME: This is definitely not right :)
  216. case Instructions::nop.value():
  217. return;
  218. case Instructions::local_get.value():
  219. configuration.stack().push(make<Value>(configuration.frame()->locals()[instruction.arguments().get<LocalIndex>().value()]));
  220. return;
  221. case Instructions::local_set.value(): {
  222. auto entry = configuration.stack().pop();
  223. configuration.frame()->locals()[instruction.arguments().get<LocalIndex>().value()] = move(*entry.get<NonnullOwnPtr<Value>>());
  224. return;
  225. }
  226. case Instructions::i32_const.value():
  227. configuration.stack().push(make<Value>(ValueType { ValueType::I32 }, static_cast<i64>(instruction.arguments().get<i32>())));
  228. return;
  229. case Instructions::i64_const.value():
  230. configuration.stack().push(make<Value>(ValueType { ValueType::I64 }, instruction.arguments().get<i64>()));
  231. return;
  232. case Instructions::f32_const.value():
  233. configuration.stack().push(make<Value>(ValueType { ValueType::F32 }, static_cast<double>(instruction.arguments().get<float>())));
  234. return;
  235. case Instructions::f64_const.value():
  236. configuration.stack().push(make<Value>(ValueType { ValueType::F64 }, instruction.arguments().get<double>()));
  237. return;
  238. case Instructions::block.value(): {
  239. size_t arity = 0;
  240. auto& args = instruction.arguments().get<Instruction::StructuredInstructionArgs>();
  241. if (args.block_type.kind() != BlockType::Empty)
  242. arity = 1;
  243. configuration.stack().push(make<Label>(arity, args.end_ip));
  244. return;
  245. }
  246. case Instructions::loop.value(): {
  247. size_t arity = 0;
  248. auto& args = instruction.arguments().get<Instruction::StructuredInstructionArgs>();
  249. if (args.block_type.kind() != BlockType::Empty)
  250. arity = 1;
  251. configuration.stack().push(make<Label>(arity, ip.value() + 1));
  252. return;
  253. }
  254. case Instructions::if_.value(): {
  255. size_t arity = 0;
  256. auto& args = instruction.arguments().get<Instruction::StructuredInstructionArgs>();
  257. if (args.block_type.kind() != BlockType::Empty)
  258. arity = 1;
  259. auto entry = configuration.stack().pop();
  260. auto value = entry.get<NonnullOwnPtr<Value>>()->to<i32>();
  261. VERIFY(value.has_value());
  262. configuration.stack().push(make<Label>(arity, args.end_ip));
  263. if (value.value() == 0) {
  264. if (args.else_ip.has_value()) {
  265. configuration.ip() = args.else_ip.value();
  266. } else {
  267. configuration.ip() = args.end_ip;
  268. configuration.stack().pop();
  269. }
  270. }
  271. return;
  272. }
  273. case Instructions::structured_end.value():
  274. return;
  275. case Instructions::structured_else.value(): {
  276. auto label = configuration.nth_label(0);
  277. VERIFY(label.has_value());
  278. NonnullOwnPtrVector<Value> results;
  279. // Pop results in order
  280. for (size_t i = 0; i < label->arity(); ++i)
  281. results.append(move(configuration.stack().pop().get<NonnullOwnPtr<Value>>()));
  282. // drop all locals
  283. for (; !configuration.stack().is_empty();) {
  284. auto entry = configuration.stack().pop();
  285. if (entry.has<NonnullOwnPtr<Label>>())
  286. break;
  287. }
  288. // Push results in reverse
  289. for (size_t i = 1; i < results.size() + 1; ++i)
  290. configuration.stack().push(move(static_cast<Vector<NonnullOwnPtr<Value>>&>(results)[results.size() - i]));
  291. if (instruction.opcode() == Instructions::structured_end)
  292. return;
  293. // Jump to the end label
  294. configuration.ip() = label->continuation();
  295. return;
  296. }
  297. case Instructions::return_.value(): {
  298. Vector<Stack::EntryType> results;
  299. auto& frame = *configuration.frame();
  300. results.ensure_capacity(frame.arity());
  301. for (size_t i = 0; i < frame.arity(); ++i)
  302. results.prepend(configuration.stack().pop());
  303. // drop all locals
  304. OwnPtr<Label> last_label;
  305. for (; !configuration.stack().is_empty();) {
  306. auto entry = configuration.stack().pop();
  307. if (entry.has<NonnullOwnPtr<Label>>()) {
  308. last_label = move(entry.get<NonnullOwnPtr<Label>>());
  309. continue;
  310. }
  311. if (entry.has<NonnullOwnPtr<Frame>>()) {
  312. // Push the frame back
  313. configuration.stack().push(move(entry));
  314. // Push its label back (if there is one)
  315. if (last_label)
  316. configuration.stack().push(last_label.release_nonnull());
  317. break;
  318. }
  319. last_label.clear();
  320. }
  321. // Push the results back
  322. for (auto& result : results)
  323. configuration.stack().push(move(result));
  324. // Jump past the call/indirect instruction
  325. configuration.ip() = configuration.frame()->expression().instructions().size() - 1;
  326. return;
  327. }
  328. case Instructions::br.value():
  329. return branch_to_label(configuration, instruction.arguments().get<LabelIndex>());
  330. case Instructions::br_if.value(): {
  331. if (configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<i32>().value_or(0) == 0)
  332. return;
  333. return branch_to_label(configuration, instruction.arguments().get<LabelIndex>());
  334. }
  335. case Instructions::br_table.value():
  336. goto unimplemented;
  337. case Instructions::call.value(): {
  338. auto index = instruction.arguments().get<FunctionIndex>();
  339. auto address = configuration.frame()->module().functions()[index.value()];
  340. dbgln_if(WASM_TRACE_DEBUG, "call({})", address.value());
  341. call_address(configuration, address);
  342. return;
  343. }
  344. case Instructions::call_indirect.value(): {
  345. auto& args = instruction.arguments().get<Instruction::IndirectCallArgs>();
  346. auto table_address = configuration.frame()->module().tables()[args.table.value()];
  347. auto table_instance = configuration.store().get(table_address);
  348. auto index = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<i32>();
  349. VERIFY(index.has_value());
  350. if (index.value() < 0 || static_cast<size_t>(index.value()) >= table_instance->elements().size()) {
  351. dbgln("LibWasm: Element access out of bounds, expected {0} > 0 and {0} < {1}", index.value(), table_instance->elements().size());
  352. return;
  353. }
  354. auto element = table_instance->elements()[index.value()];
  355. if (!element.has_value() || !element->ref().has<FunctionAddress>()) {
  356. dbgln("LibWasm: call_indirect attempted with invalid address element (not a function)");
  357. return;
  358. }
  359. auto address = element->ref().get<FunctionAddress>();
  360. dbgln_if(WASM_TRACE_DEBUG, "call_indirect({} -> {})", index.value(), address.value());
  361. call_address(configuration, address);
  362. return;
  363. }
  364. case Instructions::i32_load.value():
  365. LOAD_AND_PUSH(i32, i32);
  366. case Instructions::i64_load.value():
  367. LOAD_AND_PUSH(i64, i64);
  368. case Instructions::f32_load.value():
  369. LOAD_AND_PUSH(float, float);
  370. case Instructions::f64_load.value():
  371. LOAD_AND_PUSH(double, double);
  372. case Instructions::i32_load8_s.value():
  373. LOAD_AND_PUSH(i8, i32);
  374. case Instructions::i32_load8_u.value():
  375. LOAD_AND_PUSH(u8, i32);
  376. case Instructions::i32_load16_s.value():
  377. LOAD_AND_PUSH(i16, i32);
  378. case Instructions::i32_load16_u.value():
  379. LOAD_AND_PUSH(u16, i32);
  380. case Instructions::i64_load8_s.value():
  381. LOAD_AND_PUSH(i8, i64);
  382. case Instructions::i64_load8_u.value():
  383. LOAD_AND_PUSH(u8, i64);
  384. case Instructions::i64_load16_s.value():
  385. LOAD_AND_PUSH(i16, i64);
  386. case Instructions::i64_load16_u.value():
  387. LOAD_AND_PUSH(u16, i64);
  388. case Instructions::i64_load32_s.value():
  389. LOAD_AND_PUSH(i32, i64);
  390. case Instructions::i64_load32_u.value():
  391. LOAD_AND_PUSH(u32, i64);
  392. case Instructions::i32_store.value():
  393. POP_AND_STORE(i32, i32);
  394. case Instructions::i64_store.value():
  395. POP_AND_STORE(i64, i64);
  396. case Instructions::f32_store.value():
  397. POP_AND_STORE(float, float);
  398. case Instructions::f64_store.value():
  399. POP_AND_STORE(double, double);
  400. case Instructions::i32_store8.value():
  401. POP_AND_STORE(i32, i8);
  402. case Instructions::i32_store16.value():
  403. POP_AND_STORE(i32, i16);
  404. case Instructions::i64_store8.value():
  405. POP_AND_STORE(i64, i8);
  406. case Instructions::i64_store16.value():
  407. POP_AND_STORE(i64, i16);
  408. case Instructions::i64_store32.value():
  409. POP_AND_STORE(i64, i32);
  410. case Instructions::local_tee.value(): {
  411. auto value = *configuration.stack().peek().get<NonnullOwnPtr<Value>>();
  412. auto local_index = instruction.arguments().get<LocalIndex>();
  413. dbgln_if(WASM_TRACE_DEBUG, "stack:peek -> locals({})", local_index.value());
  414. configuration.frame()->locals()[local_index.value()] = move(value);
  415. return;
  416. }
  417. case Instructions::global_get.value(): {
  418. auto global_index = instruction.arguments().get<GlobalIndex>();
  419. auto address = configuration.frame()->module().globals()[global_index.value()];
  420. dbgln_if(WASM_TRACE_DEBUG, "global({}) -> stack", address.value());
  421. auto global = configuration.store().get(address);
  422. configuration.stack().push(make<Value>(global->value()));
  423. return;
  424. }
  425. case Instructions::global_set.value(): {
  426. auto global_index = instruction.arguments().get<GlobalIndex>();
  427. auto address = configuration.frame()->module().globals()[global_index.value()];
  428. auto value = *configuration.stack().pop().get<NonnullOwnPtr<Value>>();
  429. dbgln_if(WASM_TRACE_DEBUG, "stack -> global({})", address.value());
  430. auto global = configuration.store().get(address);
  431. global->set_value(move(value));
  432. return;
  433. }
  434. case Instructions::memory_size.value():
  435. case Instructions::memory_grow.value():
  436. case Instructions::table_get.value():
  437. case Instructions::table_set.value():
  438. case Instructions::ref_null.value():
  439. case Instructions::ref_func.value():
  440. case Instructions::ref_is_null.value():
  441. case Instructions::drop.value():
  442. goto unimplemented;
  443. case Instructions::select.value():
  444. case Instructions::select_typed.value(): {
  445. // Note: The type seems to only be used for validation.
  446. auto value = configuration.stack().pop().get<NonnullOwnPtr<Value>>()->to<i32>();
  447. VERIFY(value.has_value());
  448. dbgln_if(WASM_TRACE_DEBUG, "select({})", value.value());
  449. auto rhs = move(configuration.stack().pop().get<NonnullOwnPtr<Value>>());
  450. auto lhs = move(configuration.stack().pop().get<NonnullOwnPtr<Value>>());
  451. configuration.stack().push(value.value() != 0 ? move(lhs) : move(rhs));
  452. return;
  453. }
  454. case Instructions::i32_eqz.value():
  455. UNARY_NUMERIC_OPERATION(i32, 0 ==);
  456. case Instructions::i32_eq.value():
  457. BINARY_NUMERIC_OPERATION(i32, ==);
  458. case Instructions::i32_ne.value():
  459. BINARY_NUMERIC_OPERATION(i32, !=);
  460. case Instructions::i32_lts.value():
  461. BINARY_NUMERIC_OPERATION(i32, <);
  462. case Instructions::i32_ltu.value():
  463. BINARY_NUMERIC_OPERATION(u32, <);
  464. case Instructions::i32_gts.value():
  465. BINARY_NUMERIC_OPERATION(i32, >);
  466. case Instructions::i32_gtu.value():
  467. BINARY_NUMERIC_OPERATION(u32, >);
  468. case Instructions::i32_les.value():
  469. BINARY_NUMERIC_OPERATION(i32, <=);
  470. case Instructions::i32_leu.value():
  471. BINARY_NUMERIC_OPERATION(u32, <=);
  472. case Instructions::i32_ges.value():
  473. BINARY_NUMERIC_OPERATION(i32, >=);
  474. case Instructions::i32_geu.value():
  475. BINARY_NUMERIC_OPERATION(u32, >=);
  476. case Instructions::i64_eqz.value():
  477. UNARY_NUMERIC_OPERATION(i64, 0ull ==);
  478. case Instructions::i64_eq.value():
  479. BINARY_NUMERIC_OPERATION(i64, ==);
  480. case Instructions::i64_ne.value():
  481. BINARY_NUMERIC_OPERATION(i64, !=);
  482. case Instructions::i64_lts.value():
  483. BINARY_NUMERIC_OPERATION(i64, <);
  484. case Instructions::i64_ltu.value():
  485. BINARY_NUMERIC_OPERATION(u64, <);
  486. case Instructions::i64_gts.value():
  487. BINARY_NUMERIC_OPERATION(i64, >);
  488. case Instructions::i64_gtu.value():
  489. BINARY_NUMERIC_OPERATION(u64, >);
  490. case Instructions::i64_les.value():
  491. BINARY_NUMERIC_OPERATION(i64, <=);
  492. case Instructions::i64_leu.value():
  493. BINARY_NUMERIC_OPERATION(u64, <=);
  494. case Instructions::i64_ges.value():
  495. BINARY_NUMERIC_OPERATION(i64, >=);
  496. case Instructions::i64_geu.value():
  497. BINARY_NUMERIC_OPERATION(u64, >=);
  498. case Instructions::f32_eq.value():
  499. BINARY_NUMERIC_OPERATION(float, ==);
  500. case Instructions::f32_ne.value():
  501. BINARY_NUMERIC_OPERATION(float, !=);
  502. case Instructions::f32_lt.value():
  503. BINARY_NUMERIC_OPERATION(float, <);
  504. case Instructions::f32_gt.value():
  505. BINARY_NUMERIC_OPERATION(float, >);
  506. case Instructions::f32_le.value():
  507. BINARY_NUMERIC_OPERATION(float, <=);
  508. case Instructions::f32_ge.value():
  509. BINARY_NUMERIC_OPERATION(float, >=);
  510. case Instructions::f64_eq.value():
  511. BINARY_NUMERIC_OPERATION(double, ==);
  512. case Instructions::f64_ne.value():
  513. BINARY_NUMERIC_OPERATION(double, !=);
  514. case Instructions::f64_lt.value():
  515. BINARY_NUMERIC_OPERATION(double, <);
  516. case Instructions::f64_gt.value():
  517. BINARY_NUMERIC_OPERATION(double, >);
  518. case Instructions::f64_le.value():
  519. BINARY_NUMERIC_OPERATION(double, <=);
  520. case Instructions::f64_ge.value():
  521. BINARY_NUMERIC_OPERATION(double, >);
  522. case Instructions::i32_clz.value():
  523. case Instructions::i32_ctz.value():
  524. case Instructions::i32_popcnt.value():
  525. goto unimplemented;
  526. case Instructions::i32_add.value():
  527. BINARY_NUMERIC_OPERATION(i32, +, i32);
  528. case Instructions::i32_sub.value():
  529. BINARY_NUMERIC_OPERATION(i32, -, i32);
  530. case Instructions::i32_mul.value():
  531. BINARY_NUMERIC_OPERATION(i32, *, i32);
  532. case Instructions::i32_divs.value():
  533. BINARY_NUMERIC_OPERATION(i32, /, i32);
  534. case Instructions::i32_divu.value():
  535. BINARY_NUMERIC_OPERATION(u32, /, i32);
  536. case Instructions::i32_rems.value():
  537. BINARY_NUMERIC_OPERATION(i32, %, i32);
  538. case Instructions::i32_remu.value():
  539. BINARY_NUMERIC_OPERATION(u32, %, i32);
  540. case Instructions::i32_and.value():
  541. BINARY_NUMERIC_OPERATION(i32, &, i32);
  542. case Instructions::i32_or.value():
  543. BINARY_NUMERIC_OPERATION(i32, |, i32);
  544. case Instructions::i32_xor.value():
  545. BINARY_NUMERIC_OPERATION(i32, ^, i32);
  546. case Instructions::i32_shl.value():
  547. BINARY_NUMERIC_OPERATION(i32, <<, i32);
  548. case Instructions::i32_shrs.value():
  549. BINARY_NUMERIC_OPERATION(i32, >>, i32);
  550. case Instructions::i32_shru.value():
  551. BINARY_NUMERIC_OPERATION(u32, >>, i32);
  552. case Instructions::i32_rotl.value():
  553. case Instructions::i32_rotr.value():
  554. case Instructions::i64_clz.value():
  555. case Instructions::i64_ctz.value():
  556. case Instructions::i64_popcnt.value():
  557. goto unimplemented;
  558. case Instructions::i64_add.value():
  559. BINARY_NUMERIC_OPERATION(i64, +, i64);
  560. case Instructions::i64_sub.value():
  561. BINARY_NUMERIC_OPERATION(i64, -, i64);
  562. case Instructions::i64_mul.value():
  563. BINARY_NUMERIC_OPERATION(i64, *, i64);
  564. case Instructions::i64_divs.value():
  565. BINARY_NUMERIC_OPERATION(i64, /, i64);
  566. case Instructions::i64_divu.value():
  567. BINARY_NUMERIC_OPERATION(u64, /, i64);
  568. case Instructions::i64_rems.value():
  569. BINARY_NUMERIC_OPERATION(i64, %, i64);
  570. case Instructions::i64_remu.value():
  571. BINARY_NUMERIC_OPERATION(u64, %, i64);
  572. case Instructions::i64_and.value():
  573. BINARY_NUMERIC_OPERATION(i64, &, i64);
  574. case Instructions::i64_or.value():
  575. BINARY_NUMERIC_OPERATION(i64, |, i64);
  576. case Instructions::i64_xor.value():
  577. BINARY_NUMERIC_OPERATION(i64, ^, i64);
  578. case Instructions::i64_shl.value():
  579. BINARY_NUMERIC_OPERATION(i64, <<, i64);
  580. case Instructions::i64_shrs.value():
  581. BINARY_NUMERIC_OPERATION(i64, >>, i64);
  582. case Instructions::i64_shru.value():
  583. BINARY_NUMERIC_OPERATION(u64, >>, i64);
  584. case Instructions::i64_rotl.value():
  585. case Instructions::i64_rotr.value():
  586. goto unimplemented;
  587. case Instructions::f32_abs.value():
  588. UNARY_NUMERIC_OPERATION(float, fabsf);
  589. case Instructions::f32_neg.value():
  590. UNARY_NUMERIC_OPERATION(float, -);
  591. case Instructions::f32_ceil.value():
  592. UNARY_NUMERIC_OPERATION(float, ceilf);
  593. case Instructions::f32_floor.value():
  594. UNARY_NUMERIC_OPERATION(float, floorf);
  595. case Instructions::f32_trunc.value():
  596. UNARY_NUMERIC_OPERATION(float, truncf);
  597. case Instructions::f32_nearest.value():
  598. UNARY_NUMERIC_OPERATION(float, roundf);
  599. case Instructions::f32_sqrt.value():
  600. UNARY_NUMERIC_OPERATION(float, sqrtf);
  601. case Instructions::f32_add.value():
  602. UNARY_NUMERIC_OPERATION(float, +);
  603. case Instructions::f32_sub.value():
  604. UNARY_NUMERIC_OPERATION(float, -);
  605. case Instructions::f32_mul.value():
  606. BINARY_NUMERIC_OPERATION(float, *, float);
  607. case Instructions::f32_div.value():
  608. BINARY_NUMERIC_OPERATION(float, /, float);
  609. case Instructions::f32_min.value():
  610. BINARY_PREFIX_NUMERIC_OPERATION(float, min, float);
  611. case Instructions::f32_max.value():
  612. BINARY_PREFIX_NUMERIC_OPERATION(float, max, float);
  613. case Instructions::f32_copysign.value():
  614. BINARY_PREFIX_NUMERIC_OPERATION(float, copysignf, float);
  615. case Instructions::f64_abs.value():
  616. UNARY_NUMERIC_OPERATION(double, fabs);
  617. case Instructions::f64_neg.value():
  618. UNARY_NUMERIC_OPERATION(double, -);
  619. case Instructions::f64_ceil.value():
  620. UNARY_NUMERIC_OPERATION(double, ceil);
  621. case Instructions::f64_floor.value():
  622. UNARY_NUMERIC_OPERATION(double, floor);
  623. case Instructions::f64_trunc.value():
  624. UNARY_NUMERIC_OPERATION(double, trunc);
  625. case Instructions::f64_nearest.value():
  626. UNARY_NUMERIC_OPERATION(double, round);
  627. case Instructions::f64_sqrt.value():
  628. UNARY_NUMERIC_OPERATION(double, sqrt);
  629. case Instructions::f64_add.value():
  630. BINARY_NUMERIC_OPERATION(double, +, double);
  631. case Instructions::f64_sub.value():
  632. BINARY_NUMERIC_OPERATION(double, -, double);
  633. case Instructions::f64_mul.value():
  634. BINARY_NUMERIC_OPERATION(double, *, double);
  635. case Instructions::f64_div.value():
  636. BINARY_NUMERIC_OPERATION(double, /, double);
  637. case Instructions::f64_min.value():
  638. BINARY_PREFIX_NUMERIC_OPERATION(double, min, double);
  639. case Instructions::f64_max.value():
  640. BINARY_PREFIX_NUMERIC_OPERATION(double, max, double);
  641. case Instructions::f64_copysign.value():
  642. BINARY_PREFIX_NUMERIC_OPERATION(double, copysign, double);
  643. case Instructions::i32_wrap_i64.value():
  644. UNARY_MAP(i64, i32, i32);
  645. case Instructions::i32_trunc_sf32.value():
  646. case Instructions::i32_trunc_uf32.value():
  647. case Instructions::i32_trunc_sf64.value():
  648. case Instructions::i32_trunc_uf64.value():
  649. goto unimplemented;
  650. case Instructions::i64_extend_si32.value():
  651. UNARY_MAP(i32, i64, i64);
  652. case Instructions::i64_extend_ui32.value():
  653. UNARY_MAP(u32, i64, i64);
  654. case Instructions::i64_trunc_sf32.value():
  655. case Instructions::i64_trunc_uf32.value():
  656. case Instructions::i64_trunc_sf64.value():
  657. case Instructions::i64_trunc_uf64.value():
  658. goto unimplemented;
  659. case Instructions::f32_convert_si32.value():
  660. UNARY_MAP(i32, float, float);
  661. case Instructions::f32_convert_ui32.value():
  662. UNARY_MAP(u32, float, float);
  663. case Instructions::f32_convert_si64.value():
  664. UNARY_MAP(i64, float, float);
  665. case Instructions::f32_convert_ui64.value():
  666. UNARY_MAP(u32, float, float);
  667. case Instructions::f32_demote_f64.value():
  668. UNARY_MAP(double, float, float);
  669. case Instructions::f64_convert_si32.value():
  670. UNARY_MAP(i32, double, double);
  671. case Instructions::f64_convert_ui32.value():
  672. UNARY_MAP(u32, double, double);
  673. case Instructions::f64_convert_si64.value():
  674. UNARY_MAP(i64, double, double);
  675. case Instructions::f64_convert_ui64.value():
  676. UNARY_MAP(u64, double, double);
  677. case Instructions::f64_promote_f32.value():
  678. UNARY_MAP(float, double, double);
  679. case Instructions::i32_reinterpret_f32.value():
  680. UNARY_MAP(float, bit_cast<i32>, i32);
  681. case Instructions::i64_reinterpret_f64.value():
  682. UNARY_MAP(double, bit_cast<i64>, i64);
  683. case Instructions::f32_reinterpret_i32.value():
  684. UNARY_MAP(i32, bit_cast<float>, float);
  685. case Instructions::f64_reinterpret_i64.value():
  686. UNARY_MAP(i64, bit_cast<double>, double);
  687. case Instructions::i32_trunc_sat_f32_s.value():
  688. case Instructions::i32_trunc_sat_f32_u.value():
  689. case Instructions::i32_trunc_sat_f64_s.value():
  690. case Instructions::i32_trunc_sat_f64_u.value():
  691. case Instructions::i64_trunc_sat_f32_s.value():
  692. case Instructions::i64_trunc_sat_f32_u.value():
  693. case Instructions::i64_trunc_sat_f64_s.value():
  694. case Instructions::i64_trunc_sat_f64_u.value():
  695. case Instructions::memory_init.value():
  696. case Instructions::data_drop.value():
  697. case Instructions::memory_copy.value():
  698. case Instructions::memory_fill.value():
  699. case Instructions::table_init.value():
  700. case Instructions::elem_drop.value():
  701. case Instructions::table_copy.value():
  702. case Instructions::table_grow.value():
  703. case Instructions::table_size.value():
  704. case Instructions::table_fill.value():
  705. default:
  706. unimplemented:;
  707. dbgln("Instruction '{}' not implemented", instruction_name(instruction.opcode()));
  708. return;
  709. }
  710. }
  711. }