Compiler.cpp 122 KB

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  1. /*
  2. * Copyright (c) 2023, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2023, Simon Wanner <simon@skyrising.xyz>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/OwnPtr.h>
  8. #include <AK/Platform.h>
  9. #include <LibJS/Bytecode/CommonImplementations.h>
  10. #include <LibJS/Bytecode/Instruction.h>
  11. #include <LibJS/Bytecode/Interpreter.h>
  12. #include <LibJS/Bytecode/RegexTable.h>
  13. #include <LibJS/JIT/Compiler.h>
  14. #include <LibJS/Runtime/AbstractOperations.h>
  15. #include <LibJS/Runtime/Array.h>
  16. #include <LibJS/Runtime/DeclarativeEnvironment.h>
  17. #include <LibJS/Runtime/ECMAScriptFunctionObject.h>
  18. #include <LibJS/Runtime/FunctionEnvironment.h>
  19. #include <LibJS/Runtime/GlobalEnvironment.h>
  20. #include <LibJS/Runtime/ObjectEnvironment.h>
  21. #include <LibJS/Runtime/VM.h>
  22. #include <LibJS/Runtime/ValueInlines.h>
  23. #include <sys/mman.h>
  24. #include <unistd.h>
  25. #ifdef JIT_ARCH_SUPPORTED
  26. # define LOG_JIT_SUCCESS 0
  27. # define LOG_JIT_FAILURE 1
  28. # define DUMP_JIT_MACHINE_CODE_TO_STDOUT 0
  29. # define DUMP_JIT_DISASSEMBLY 0
  30. # define TRY_OR_SET_EXCEPTION(expression) \
  31. ({ \
  32. /* Ignore -Wshadow to allow nesting the macro. */ \
  33. AK_IGNORE_DIAGNOSTIC("-Wshadow", \
  34. auto&& _temporary_result = (expression)); \
  35. static_assert(!::AK::Detail::IsLvalueReference<decltype(_temporary_result.release_value())>, \
  36. "Do not return a reference from a fallible expression"); \
  37. if (_temporary_result.is_error()) [[unlikely]] { \
  38. vm.bytecode_interpreter().reg(Bytecode::Register::exception()) = _temporary_result.release_error().value().value(); \
  39. return {}; \
  40. } \
  41. _temporary_result.release_value(); \
  42. })
  43. namespace JS::JIT {
  44. void Compiler::store_vm_register(Bytecode::Register dst, Assembler::Reg src)
  45. {
  46. m_assembler.mov(
  47. Assembler::Operand::Mem64BaseAndOffset(REGISTER_ARRAY_BASE, dst.index() * sizeof(Value)),
  48. Assembler::Operand::Register(src));
  49. }
  50. void Compiler::load_vm_register(Assembler::Reg dst, Bytecode::Register src)
  51. {
  52. m_assembler.mov(
  53. Assembler::Operand::Register(dst),
  54. Assembler::Operand::Mem64BaseAndOffset(REGISTER_ARRAY_BASE, src.index() * sizeof(Value)));
  55. }
  56. void Compiler::load_accumulator(Assembler::Reg dst)
  57. {
  58. m_assembler.mov(
  59. Assembler::Operand::Register(dst),
  60. Assembler::Operand::Register(CACHED_ACCUMULATOR));
  61. }
  62. void Compiler::store_accumulator(Assembler::Reg src)
  63. {
  64. m_assembler.mov(
  65. Assembler::Operand::Register(CACHED_ACCUMULATOR),
  66. Assembler::Operand::Register(src));
  67. }
  68. void Compiler::reload_cached_accumulator()
  69. {
  70. m_assembler.mov(
  71. Assembler::Operand::Register(CACHED_ACCUMULATOR),
  72. Assembler::Operand::Mem64BaseAndOffset(REGISTER_ARRAY_BASE, Bytecode::Register::accumulator_index * sizeof(Value)));
  73. }
  74. void Compiler::flush_cached_accumulator()
  75. {
  76. m_assembler.mov(
  77. Assembler::Operand::Mem64BaseAndOffset(REGISTER_ARRAY_BASE, Bytecode::Register::accumulator_index * sizeof(Value)),
  78. Assembler::Operand::Register(CACHED_ACCUMULATOR));
  79. }
  80. void Compiler::store_vm_local(size_t dst, Assembler::Reg src)
  81. {
  82. m_assembler.mov(
  83. Assembler::Operand::Mem64BaseAndOffset(LOCALS_ARRAY_BASE, dst * sizeof(Value)),
  84. Assembler::Operand::Register(src));
  85. }
  86. void Compiler::load_vm_local(Assembler::Reg dst, size_t src)
  87. {
  88. m_assembler.mov(
  89. Assembler::Operand::Register(dst),
  90. Assembler::Operand::Mem64BaseAndOffset(LOCALS_ARRAY_BASE, src * sizeof(Value)));
  91. }
  92. void Compiler::compile_load_immediate(Bytecode::Op::LoadImmediate const& op)
  93. {
  94. m_assembler.mov(
  95. Assembler::Operand::Register(GPR0),
  96. Assembler::Operand::Imm(op.value().encoded()));
  97. store_accumulator(GPR0);
  98. }
  99. void Compiler::compile_load(Bytecode::Op::Load const& op)
  100. {
  101. load_vm_register(GPR0, op.src());
  102. store_accumulator(GPR0);
  103. }
  104. void Compiler::compile_store(Bytecode::Op::Store const& op)
  105. {
  106. load_accumulator(GPR0);
  107. store_vm_register(op.dst(), GPR0);
  108. }
  109. static Value cxx_throw_binding_not_initialized(VM& vm, size_t index)
  110. {
  111. auto const& variable_name = vm.running_execution_context().function->local_variables_names()[index];
  112. TRY_OR_SET_EXCEPTION(vm.throw_completion<ReferenceError>(ErrorType::BindingNotInitialized, variable_name));
  113. return {};
  114. }
  115. void Compiler::compile_get_local(Bytecode::Op::GetLocal const& op)
  116. {
  117. load_vm_local(GPR0, op.index());
  118. // if (GPR0 == <empty>) throw ReferenceError(BindingNotInitialized)
  119. Assembler::Label not_empty {};
  120. m_assembler.mov(
  121. Assembler::Operand::Register(GPR1),
  122. Assembler::Operand::Imm(Value().encoded()));
  123. m_assembler.jump_if(
  124. Assembler::Operand::Register(GPR0),
  125. Assembler::Condition::NotEqualTo,
  126. Assembler::Operand::Register(GPR1),
  127. not_empty);
  128. m_assembler.mov(Assembler::Operand::Register(ARG1), Assembler::Operand::Imm(op.index()));
  129. native_call((void*)cxx_throw_binding_not_initialized);
  130. check_exception();
  131. not_empty.link(m_assembler);
  132. store_accumulator(GPR0);
  133. }
  134. void Compiler::compile_set_local(Bytecode::Op::SetLocal const& op)
  135. {
  136. load_accumulator(GPR0);
  137. store_vm_local(op.index(), GPR0);
  138. }
  139. static Value cxx_typeof_local(VM& vm, Value value)
  140. {
  141. return PrimitiveString::create(vm, value.typeof());
  142. }
  143. void Compiler::compile_typeof_local(Bytecode::Op::TypeofLocal const& op)
  144. {
  145. load_vm_local(ARG1, op.index());
  146. native_call((void*)cxx_typeof_local);
  147. store_accumulator(GPR0);
  148. }
  149. void Compiler::compile_jump(Bytecode::Op::Jump const& op)
  150. {
  151. m_assembler.jump(label_for(op.true_target()->block()));
  152. }
  153. static bool cxx_to_boolean(VM&, Value value)
  154. {
  155. return value.to_boolean_slow_case();
  156. }
  157. void Compiler::compile_to_boolean(Assembler::Reg dst, Assembler::Reg src)
  158. {
  159. // dst = src;
  160. m_assembler.mov(
  161. Assembler::Operand::Register(dst),
  162. Assembler::Operand::Register(src));
  163. // dst >>= 48;
  164. m_assembler.shift_right(
  165. Assembler::Operand::Register(dst),
  166. Assembler::Operand::Imm(48));
  167. // if (dst != BOOLEAN_TAG) goto slow_case;
  168. Assembler::Label slow_case {};
  169. m_assembler.jump_if(
  170. Assembler::Operand::Register(dst),
  171. Assembler::Condition::NotEqualTo,
  172. Assembler::Operand::Imm(BOOLEAN_TAG),
  173. slow_case);
  174. // Fast path for JS::Value booleans.
  175. // dst = src;
  176. m_assembler.mov(
  177. Assembler::Operand::Register(dst),
  178. Assembler::Operand::Register(src));
  179. // goto end;
  180. auto end = m_assembler.jump();
  181. // slow_case: // call C++ helper
  182. slow_case.link(m_assembler);
  183. m_assembler.mov(
  184. Assembler::Operand::Register(ARG1),
  185. Assembler::Operand::Register(src));
  186. native_call((void*)cxx_to_boolean);
  187. m_assembler.mov(
  188. Assembler::Operand::Register(dst),
  189. Assembler::Operand::Register(RET));
  190. // end:
  191. end.link(m_assembler);
  192. // dst &= 1;
  193. m_assembler.bitwise_and(
  194. Assembler::Operand::Register(dst),
  195. Assembler::Operand::Imm(1));
  196. }
  197. void Compiler::compile_jump_conditional(Bytecode::Op::JumpConditional const& op)
  198. {
  199. load_accumulator(GPR1);
  200. compile_to_boolean(GPR0, GPR1);
  201. m_assembler.jump_if(
  202. Assembler::Operand::Register(GPR0),
  203. Assembler::Condition::EqualTo,
  204. Assembler::Operand::Imm(0),
  205. label_for(op.false_target()->block()));
  206. m_assembler.jump(label_for(op.true_target()->block()));
  207. }
  208. void Compiler::compile_jump_nullish(Bytecode::Op::JumpNullish const& op)
  209. {
  210. load_accumulator(GPR0);
  211. m_assembler.shift_right(
  212. Assembler::Operand::Register(GPR0),
  213. Assembler::Operand::Imm(48));
  214. m_assembler.bitwise_and(
  215. Assembler::Operand::Register(GPR0),
  216. Assembler::Operand::Imm(IS_NULLISH_EXTRACT_PATTERN));
  217. m_assembler.jump_if(
  218. Assembler::Operand::Register(GPR0),
  219. Assembler::Condition::EqualTo,
  220. Assembler::Operand::Imm(IS_NULLISH_PATTERN),
  221. label_for(op.true_target()->block()));
  222. m_assembler.jump(label_for(op.false_target()->block()));
  223. }
  224. void Compiler::compile_jump_undefined(Bytecode::Op::JumpUndefined const& op)
  225. {
  226. load_accumulator(GPR0);
  227. m_assembler.shift_right(
  228. Assembler::Operand::Register(GPR0),
  229. Assembler::Operand::Imm(48));
  230. m_assembler.jump_if(
  231. Assembler::Operand::Register(GPR0),
  232. Assembler::Condition::EqualTo,
  233. Assembler::Operand::Imm(UNDEFINED_TAG),
  234. label_for(op.true_target()->block()));
  235. m_assembler.jump(label_for(op.false_target()->block()));
  236. }
  237. [[maybe_unused]] static Value cxx_increment(VM& vm, Value value)
  238. {
  239. auto old_value = TRY_OR_SET_EXCEPTION(value.to_numeric(vm));
  240. if (old_value.is_number())
  241. return Value(old_value.as_double() + 1);
  242. return BigInt::create(vm, old_value.as_bigint().big_integer().plus(Crypto::SignedBigInteger { 1 }));
  243. }
  244. void Compiler::jump_if_int32(Assembler::Reg reg, Assembler::Label& label)
  245. {
  246. // GPR0 = reg >> 48;
  247. m_assembler.mov(Assembler::Operand::Register(GPR0), Assembler::Operand::Register(reg));
  248. m_assembler.shift_right(Assembler::Operand::Register(GPR0), Assembler::Operand::Imm(48));
  249. m_assembler.jump_if(
  250. Assembler::Operand::Register(GPR0),
  251. Assembler::Condition::EqualTo,
  252. Assembler::Operand::Imm(INT32_TAG),
  253. label);
  254. }
  255. template<typename Codegen>
  256. void Compiler::branch_if_type(Assembler::Reg reg, u16 type_tag, Codegen codegen)
  257. {
  258. // GPR0 = reg >> 48;
  259. m_assembler.mov(Assembler::Operand::Register(GPR0), Assembler::Operand::Register(reg));
  260. m_assembler.shift_right(Assembler::Operand::Register(GPR0), Assembler::Operand::Imm(48));
  261. Assembler::Label not_type_case {};
  262. m_assembler.jump_if(
  263. Assembler::Operand::Register(GPR0),
  264. Assembler::Condition::NotEqualTo,
  265. Assembler::Operand::Imm(type_tag),
  266. not_type_case);
  267. codegen();
  268. not_type_case.link(m_assembler);
  269. }
  270. template<typename Codegen>
  271. void Compiler::branch_if_both_int32(Assembler::Reg lhs, Assembler::Reg rhs, Codegen codegen)
  272. {
  273. // GPR0 = lhs >> 48;
  274. m_assembler.mov(Assembler::Operand::Register(GPR0), Assembler::Operand::Register(lhs));
  275. m_assembler.shift_right(Assembler::Operand::Register(GPR0), Assembler::Operand::Imm(48));
  276. // GPR1 = rhs >> 48;
  277. m_assembler.mov(Assembler::Operand::Register(GPR1), Assembler::Operand::Register(rhs));
  278. m_assembler.shift_right(Assembler::Operand::Register(GPR1), Assembler::Operand::Imm(48));
  279. Assembler::Label not_int32_case {};
  280. m_assembler.jump_if(
  281. Assembler::Operand::Register(GPR0),
  282. Assembler::Condition::NotEqualTo,
  283. Assembler::Operand::Imm(INT32_TAG),
  284. not_int32_case);
  285. m_assembler.jump_if(
  286. Assembler::Operand::Register(GPR1),
  287. Assembler::Condition::NotEqualTo,
  288. Assembler::Operand::Imm(INT32_TAG),
  289. not_int32_case);
  290. codegen();
  291. not_int32_case.link(m_assembler);
  292. }
  293. void Compiler::jump_if_not_double(Assembler::Reg reg, Assembler::Reg nan, Assembler::Reg temp, Assembler::Label& label)
  294. {
  295. Assembler::Label is_double {};
  296. // if (reg == nan) goto is_double
  297. m_assembler.jump_if(
  298. Assembler::Operand::Register(reg),
  299. Assembler::Condition::EqualTo,
  300. Assembler::Operand::Register(nan),
  301. is_double);
  302. // temp = reg
  303. m_assembler.mov(Assembler::Operand::Register(temp), Assembler::Operand::Register(reg));
  304. // if (temp & CANON_NAN_BITS == CANON_NAN_BITS) goto label
  305. m_assembler.bitwise_and(
  306. Assembler::Operand::Register(temp),
  307. Assembler::Operand::Register(nan));
  308. m_assembler.jump_if(
  309. Assembler::Operand::Register(temp),
  310. Assembler::Condition::EqualTo,
  311. Assembler::Operand::Register(nan),
  312. label);
  313. is_double.link(m_assembler);
  314. }
  315. void Compiler::convert_to_double(Assembler::Reg dst, Assembler::Reg src, Assembler::Reg nan, Assembler::Reg temp, Assembler::Label& not_number)
  316. {
  317. Assembler::Label is_i32;
  318. Assembler::Label end;
  319. jump_if_int32(src, is_i32);
  320. jump_if_not_double(src, nan, temp, not_number);
  321. m_assembler.mov(
  322. Assembler::Operand::FloatRegister(dst),
  323. Assembler::Operand::Register(src));
  324. m_assembler.jump(end);
  325. is_i32.link(m_assembler);
  326. m_assembler.convert_i32_to_double(
  327. Assembler::Operand::FloatRegister(dst),
  328. Assembler::Operand::Register(src));
  329. end.link(m_assembler);
  330. }
  331. template<typename CodegenI32, typename CodegenDouble, typename CodegenValue>
  332. void Compiler::branch_if_both_numbers(Assembler::Reg lhs, Assembler::Reg rhs, CodegenI32 codegen_i32, CodegenDouble codegen_double, CodegenValue codegen_value)
  333. {
  334. Assembler::Label end {};
  335. Assembler::Label slow_case {};
  336. // The only case where we can take the int32 fastpath
  337. branch_if_both_int32(lhs, rhs, [&] {
  338. // use GPR0 to preserve lhs for the slow case
  339. m_assembler.mov32(
  340. Assembler::Operand::Register(GPR0),
  341. Assembler::Operand::Register(lhs));
  342. store_accumulator(codegen_i32(GPR0, rhs, slow_case));
  343. // accumulator |= SHIFTED_INT32_TAG;
  344. m_assembler.mov(
  345. Assembler::Operand::Register(GPR0),
  346. Assembler::Operand::Imm(SHIFTED_INT32_TAG));
  347. m_assembler.bitwise_or(
  348. Assembler::Operand::Register(CACHED_ACCUMULATOR),
  349. Assembler::Operand::Register(GPR0));
  350. m_assembler.jump(end);
  351. });
  352. // accumulator = op_double(lhs.to_double(), rhs.to_double()) [if not numeric goto slow_case]
  353. auto temp_register = GPR0;
  354. auto nan_register = GPR1;
  355. m_assembler.mov(Assembler::Operand::Register(nan_register), Assembler::Operand::Imm(CANON_NAN_BITS));
  356. convert_to_double(FPR0, ARG1, nan_register, temp_register, slow_case);
  357. convert_to_double(FPR1, ARG2, nan_register, temp_register, slow_case);
  358. auto result_fp_register = codegen_double(FPR0, FPR1);
  359. // if result != result then result = nan (canonical)
  360. Assembler::Label nan_case;
  361. m_assembler.jump_if(
  362. Assembler::Operand::FloatRegister(result_fp_register),
  363. Assembler::Condition::Unordered,
  364. Assembler::Operand::FloatRegister(result_fp_register),
  365. nan_case);
  366. m_assembler.mov(
  367. Assembler::Operand::Register(CACHED_ACCUMULATOR),
  368. Assembler::Operand::FloatRegister(result_fp_register));
  369. m_assembler.jump(end);
  370. nan_case.link(m_assembler);
  371. m_assembler.mov(
  372. Assembler::Operand::Register(CACHED_ACCUMULATOR),
  373. Assembler::Operand::Register(nan_register));
  374. m_assembler.jump(end);
  375. slow_case.link(m_assembler);
  376. // accumulator = TRY(op_value(lhs, rhs))
  377. store_accumulator(codegen_value(lhs, rhs));
  378. check_exception();
  379. end.link(m_assembler);
  380. }
  381. void Compiler::compile_increment(Bytecode::Op::Increment const&)
  382. {
  383. load_accumulator(ARG1);
  384. Assembler::Label end {};
  385. Assembler::Label slow_case {};
  386. branch_if_int32(ARG1, [&] {
  387. // GPR0 = ARG1
  388. m_assembler.mov(
  389. Assembler::Operand::Register(GPR0),
  390. Assembler::Operand::Register(ARG1));
  391. // GPR0++;
  392. m_assembler.inc32(
  393. Assembler::Operand::Register(GPR0),
  394. slow_case);
  395. // accumulator = GPR0 | SHIFTED_INT32_TAG;
  396. m_assembler.mov(
  397. Assembler::Operand::Register(GPR1),
  398. Assembler::Operand::Imm(SHIFTED_INT32_TAG));
  399. m_assembler.bitwise_or(
  400. Assembler::Operand::Register(GPR0),
  401. Assembler::Operand::Register(GPR1));
  402. store_accumulator(GPR0);
  403. m_assembler.jump(end);
  404. });
  405. slow_case.link(m_assembler);
  406. native_call((void*)cxx_increment);
  407. store_accumulator(RET);
  408. check_exception();
  409. end.link(m_assembler);
  410. }
  411. static Value cxx_decrement(VM& vm, Value value)
  412. {
  413. auto old_value = TRY_OR_SET_EXCEPTION(value.to_numeric(vm));
  414. if (old_value.is_number())
  415. return Value(old_value.as_double() - 1);
  416. return BigInt::create(vm, old_value.as_bigint().big_integer().minus(Crypto::SignedBigInteger { 1 }));
  417. }
  418. void Compiler::compile_decrement(Bytecode::Op::Decrement const&)
  419. {
  420. load_accumulator(ARG1);
  421. Assembler::Label end {};
  422. Assembler::Label slow_case {};
  423. branch_if_int32(ARG1, [&] {
  424. // GPR0 = ARG1;
  425. m_assembler.mov(
  426. Assembler::Operand::Register(GPR0),
  427. Assembler::Operand::Register(ARG1));
  428. // GPR0--;
  429. m_assembler.dec32(
  430. Assembler::Operand::Register(GPR0),
  431. slow_case);
  432. // accumulator = GPR0 | SHIFTED_INT32_TAG;
  433. m_assembler.mov(
  434. Assembler::Operand::Register(GPR1),
  435. Assembler::Operand::Imm(SHIFTED_INT32_TAG));
  436. m_assembler.bitwise_or(
  437. Assembler::Operand::Register(GPR0),
  438. Assembler::Operand::Register(GPR1));
  439. // accumulator = GPR0;
  440. store_accumulator(GPR0);
  441. m_assembler.jump(end);
  442. });
  443. slow_case.link(m_assembler);
  444. native_call((void*)cxx_decrement);
  445. store_accumulator(RET);
  446. check_exception();
  447. end.link(m_assembler);
  448. }
  449. void Compiler::check_exception()
  450. {
  451. load_vm_register(GPR0, Bytecode::Register::exception());
  452. m_assembler.mov(Assembler::Operand::Register(GPR1), Assembler::Operand::Imm(Value().encoded()));
  453. if (auto const* handler = current_block().handler(); handler) {
  454. Assembler::Label no_exception;
  455. m_assembler.jump_if(
  456. Assembler::Operand::Register(GPR0),
  457. Assembler::Condition::EqualTo,
  458. Assembler::Operand::Register(GPR1),
  459. no_exception);
  460. store_accumulator(GPR0);
  461. store_vm_register(Bytecode::Register::exception(), GPR1);
  462. m_assembler.jump(label_for(*handler));
  463. no_exception.link(m_assembler);
  464. } else if (auto const* finalizer = current_block().finalizer(); finalizer) {
  465. store_vm_register(Bytecode::Register::saved_exception(), GPR0);
  466. store_vm_register(Bytecode::Register::exception(), GPR1);
  467. m_assembler.jump_if(Assembler::Operand::Register(GPR0),
  468. Assembler::Condition::NotEqualTo,
  469. Assembler::Operand::Register(GPR1),
  470. label_for(*finalizer));
  471. } else {
  472. m_assembler.jump_if(Assembler::Operand::Register(GPR0),
  473. Assembler::Condition::NotEqualTo,
  474. Assembler::Operand::Register(GPR1),
  475. m_exit_label);
  476. }
  477. }
  478. static void cxx_enter_unwind_context(VM& vm)
  479. {
  480. vm.bytecode_interpreter().enter_unwind_context();
  481. }
  482. void Compiler::compile_enter_unwind_context(Bytecode::Op::EnterUnwindContext const& op)
  483. {
  484. native_call((void*)cxx_enter_unwind_context);
  485. m_assembler.jump(label_for(op.entry_point().block()));
  486. }
  487. static void cxx_leave_unwind_context(VM& vm)
  488. {
  489. vm.bytecode_interpreter().leave_unwind_context();
  490. }
  491. void Compiler::compile_leave_unwind_context(Bytecode::Op::LeaveUnwindContext const&)
  492. {
  493. native_call((void*)cxx_leave_unwind_context);
  494. }
  495. void Compiler::compile_throw(Bytecode::Op::Throw const&)
  496. {
  497. load_accumulator(GPR0);
  498. store_vm_register(Bytecode::Register::exception(), GPR0);
  499. check_exception();
  500. }
  501. static void cxx_catch(VM& vm)
  502. {
  503. vm.bytecode_interpreter().catch_exception();
  504. }
  505. void Compiler::compile_catch(Bytecode::Op::Catch const&)
  506. {
  507. native_call((void*)cxx_catch);
  508. }
  509. static ThrowCompletionOr<Value> loosely_inequals(VM& vm, Value src1, Value src2)
  510. {
  511. return Value(!TRY(is_loosely_equal(vm, src1, src2)));
  512. }
  513. static ThrowCompletionOr<Value> loosely_equals(VM& vm, Value src1, Value src2)
  514. {
  515. return Value(TRY(is_loosely_equal(vm, src1, src2)));
  516. }
  517. static ThrowCompletionOr<Value> strict_inequals(VM&, Value src1, Value src2)
  518. {
  519. return Value(!is_strictly_equal(src1, src2));
  520. }
  521. static ThrowCompletionOr<Value> strict_equals(VM&, Value src1, Value src2)
  522. {
  523. return Value(is_strictly_equal(src1, src2));
  524. }
  525. template<typename Codegen>
  526. void Compiler::branch_if_same_type_for_equality(Assembler::Reg lhs, Assembler::Reg rhs, Codegen codegen)
  527. {
  528. Assembler::Label same_type_case {};
  529. Assembler::Label not_same_type_case {};
  530. // GPR0 = lhs >> TAG_SHIFT
  531. m_assembler.mov(
  532. Assembler::Operand::Register(GPR0),
  533. Assembler::Operand::Register(lhs));
  534. m_assembler.shift_right(
  535. Assembler::Operand::Register(GPR0),
  536. Assembler::Operand::Imm(TAG_SHIFT));
  537. // GPR1 = rhs >> TAG_SHIFT
  538. m_assembler.mov(
  539. Assembler::Operand::Register(GPR1),
  540. Assembler::Operand::Register(rhs));
  541. m_assembler.shift_right(
  542. Assembler::Operand::Register(GPR1),
  543. Assembler::Operand::Imm(TAG_SHIFT));
  544. // if (GPR0 == GPR1) goto same_type_case
  545. m_assembler.jump_if(
  546. Assembler::Operand::Register(GPR0),
  547. Assembler::Condition::EqualTo,
  548. Assembler::Operand::Register(GPR1),
  549. same_type_case);
  550. Assembler::Label lhs_is_number {};
  551. // if (lhs & CANON_NAN_BITS != CANON_NAN_BITS) goto lhs_is_number
  552. m_assembler.mov(
  553. Assembler::Operand::Register(GPR0),
  554. Assembler::Operand::Register(lhs));
  555. m_assembler.mov(
  556. Assembler::Operand::Register(GPR1),
  557. Assembler::Operand::Imm(CANON_NAN_BITS));
  558. m_assembler.bitwise_and(
  559. Assembler::Operand::Register(GPR0),
  560. Assembler::Operand::Register(GPR1));
  561. m_assembler.jump_if(
  562. Assembler::Operand::Register(GPR0),
  563. Assembler::Condition::NotEqualTo,
  564. Assembler::Operand::Register(GPR1),
  565. lhs_is_number);
  566. // if (lhs == CANON_NAN_BITS) goto lhs_is_number
  567. m_assembler.jump_if(
  568. Assembler::Operand::Register(lhs),
  569. Assembler::Condition::EqualTo,
  570. Assembler::Operand::Register(GPR1),
  571. lhs_is_number);
  572. // if (lhs >> TAG_SHIFT == INT32_TAG) goto lhs_is_number
  573. m_assembler.mov(
  574. Assembler::Operand::Register(GPR0),
  575. Assembler::Operand::Register(lhs));
  576. m_assembler.shift_right(
  577. Assembler::Operand::Register(GPR0),
  578. Assembler::Operand::Imm(TAG_SHIFT));
  579. m_assembler.jump_if(
  580. Assembler::Operand::Register(GPR0),
  581. Assembler::Condition::EqualTo,
  582. Assembler::Operand::Imm(INT32_TAG),
  583. lhs_is_number);
  584. m_assembler.jump(not_same_type_case);
  585. lhs_is_number.link(m_assembler);
  586. Assembler::Label rhs_is_number {};
  587. // if (rhs & CANON_NAN_BITS != CANON_NAN_BITS) goto rhs_is_number
  588. m_assembler.mov(
  589. Assembler::Operand::Register(GPR0),
  590. Assembler::Operand::Register(rhs));
  591. m_assembler.bitwise_and(
  592. Assembler::Operand::Register(GPR0),
  593. Assembler::Operand::Register(GPR1));
  594. m_assembler.jump_if(
  595. Assembler::Operand::Register(GPR0),
  596. Assembler::Condition::NotEqualTo,
  597. Assembler::Operand::Register(GPR1),
  598. rhs_is_number);
  599. // if (rhs == CANON_NAN_BITS) goto rhs_is_number
  600. m_assembler.jump_if(
  601. Assembler::Operand::Register(rhs),
  602. Assembler::Condition::EqualTo,
  603. Assembler::Operand::Register(GPR1),
  604. rhs_is_number);
  605. // if (rhs >> TAG_SHIFT == INT32_TAG) goto rhs_is_number
  606. m_assembler.mov(
  607. Assembler::Operand::Register(GPR0),
  608. Assembler::Operand::Register(rhs));
  609. m_assembler.shift_right(
  610. Assembler::Operand::Register(GPR0),
  611. Assembler::Operand::Imm(TAG_SHIFT));
  612. m_assembler.jump_if(
  613. Assembler::Operand::Register(GPR0),
  614. Assembler::Condition::EqualTo,
  615. Assembler::Operand::Imm(INT32_TAG),
  616. rhs_is_number);
  617. m_assembler.jump(not_same_type_case);
  618. same_type_case.link(m_assembler);
  619. rhs_is_number.link(m_assembler);
  620. codegen();
  621. not_same_type_case.link(m_assembler);
  622. }
  623. void Compiler::compile_is_strictly_equal(Assembler::Reg lhs, Assembler::Reg rhs, Assembler::Label& slow_case)
  624. {
  625. Assembler::Label end {};
  626. Assembler::Label general_case {};
  627. Assembler::Label false_case {};
  628. m_assembler.mov(
  629. Assembler::Operand::Register(GPR1),
  630. Assembler::Operand::Imm(CANON_NAN_BITS));
  631. convert_to_double(FPR0, lhs, GPR1, GPR0, general_case);
  632. convert_to_double(FPR1, rhs, GPR1, GPR0, general_case);
  633. // if (FPR0 == nan || FPR1 == nan) goto false_case;
  634. m_assembler.jump_if(
  635. Assembler::Operand::FloatRegister(FPR0),
  636. Assembler::Condition::Unordered,
  637. Assembler::Operand::FloatRegister(FPR1),
  638. false_case);
  639. // if (FPR0 != FPR1) goto false_case;
  640. m_assembler.jump_if(
  641. Assembler::Operand::FloatRegister(FPR0),
  642. Assembler::Condition::NotEqualTo,
  643. Assembler::Operand::FloatRegister(FPR1),
  644. false_case);
  645. m_assembler.mov(
  646. Assembler::Operand::Register(RET),
  647. Assembler::Operand::Imm(1));
  648. m_assembler.jump(end);
  649. general_case.link(m_assembler);
  650. // if (lhs.is_bigint()) goto slow_case;
  651. m_assembler.mov(
  652. Assembler::Operand::Register(GPR0),
  653. Assembler::Operand::Register(lhs));
  654. m_assembler.shift_right(
  655. Assembler::Operand::Register(GPR0),
  656. Assembler::Operand::Imm(TAG_SHIFT));
  657. m_assembler.jump_if(
  658. Assembler::Operand::Register(GPR0),
  659. Assembler::Condition::EqualTo,
  660. Assembler::Operand::Imm(BIGINT_TAG),
  661. slow_case);
  662. // if (lhs.is_string()) goto slow_case;
  663. m_assembler.jump_if(
  664. Assembler::Operand::Register(GPR0),
  665. Assembler::Condition::EqualTo,
  666. Assembler::Operand::Imm(STRING_TAG),
  667. slow_case);
  668. m_assembler.jump_if(
  669. Assembler::Operand::Register(lhs),
  670. Assembler::Condition::NotEqualTo,
  671. Assembler::Operand::Register(rhs),
  672. false_case);
  673. m_assembler.mov(
  674. Assembler::Operand::Register(RET),
  675. Assembler::Operand::Imm(1));
  676. m_assembler.jump(end);
  677. false_case.link(m_assembler);
  678. m_assembler.mov(
  679. Assembler::Operand::Register(RET),
  680. Assembler::Operand::Imm(0));
  681. end.link(m_assembler);
  682. }
  683. static Value cxx_strict_equals(VM& vm, Value lhs, Value rhs)
  684. {
  685. return TRY_OR_SET_EXCEPTION(strict_equals(vm, lhs, rhs));
  686. }
  687. void Compiler::compile_strict_equals(Bytecode::Op::StrictlyEquals const& op)
  688. {
  689. load_vm_register(ARG1, op.lhs());
  690. load_accumulator(ARG2);
  691. Assembler::Label end {};
  692. Assembler::Label slow_case {};
  693. branch_if_same_type_for_equality(ARG1, ARG2, [&] {
  694. compile_is_strictly_equal(ARG1, ARG2, slow_case);
  695. // RET = RET | BOOLEAN_TAG << TAG_SHIFT;
  696. m_assembler.mov(
  697. Assembler::Operand::Register(GPR1),
  698. Assembler::Operand::Imm(BOOLEAN_TAG << TAG_SHIFT));
  699. m_assembler.bitwise_or(
  700. Assembler::Operand::Register(RET),
  701. Assembler::Operand::Register(GPR1));
  702. store_accumulator(RET);
  703. m_assembler.jump(end);
  704. });
  705. // RET = false
  706. m_assembler.mov(
  707. Assembler::Operand::Register(RET),
  708. Assembler::Operand::Imm(Value(false).encoded()));
  709. store_accumulator(RET);
  710. m_assembler.jump(end);
  711. slow_case.link(m_assembler);
  712. native_call((void*)cxx_strict_equals);
  713. store_accumulator(RET);
  714. check_exception();
  715. end.link(m_assembler);
  716. }
  717. static Value cxx_strict_inequals(VM& vm, Value lhs, Value rhs)
  718. {
  719. return TRY_OR_SET_EXCEPTION(strict_inequals(vm, lhs, rhs));
  720. }
  721. void Compiler::compile_strict_inequals(Bytecode::Op::StrictlyInequals const& op)
  722. {
  723. load_vm_register(ARG1, op.lhs());
  724. load_accumulator(ARG2);
  725. Assembler::Label end {};
  726. Assembler::Label slow_case {};
  727. branch_if_same_type_for_equality(ARG1, ARG2, [&] {
  728. compile_is_strictly_equal(ARG1, ARG2, slow_case);
  729. // RET = (RET ^ 1) | BOOLEAN_TAG << TAG_SHIFT;
  730. m_assembler.bitwise_xor32(
  731. Assembler::Operand::Register(RET),
  732. Assembler::Operand::Imm(1));
  733. m_assembler.mov(
  734. Assembler::Operand::Register(GPR1),
  735. Assembler::Operand::Imm(BOOLEAN_TAG << TAG_SHIFT));
  736. m_assembler.bitwise_or(
  737. Assembler::Operand::Register(RET),
  738. Assembler::Operand::Register(GPR1));
  739. store_accumulator(RET);
  740. m_assembler.jump(end);
  741. });
  742. // RET = true
  743. m_assembler.mov(
  744. Assembler::Operand::Register(RET),
  745. Assembler::Operand::Imm(Value(true).encoded()));
  746. store_accumulator(RET);
  747. m_assembler.jump(end);
  748. slow_case.link(m_assembler);
  749. native_call((void*)cxx_strict_inequals);
  750. store_accumulator(RET);
  751. check_exception();
  752. end.link(m_assembler);
  753. }
  754. static Value cxx_loosely_equals(VM& vm, Value lhs, Value rhs)
  755. {
  756. return TRY_OR_SET_EXCEPTION(loosely_equals(vm, lhs, rhs));
  757. }
  758. void Compiler::compile_loosely_equals(Bytecode::Op::LooselyEquals const& op)
  759. {
  760. load_vm_register(ARG1, op.lhs());
  761. load_accumulator(ARG2);
  762. Assembler::Label end {};
  763. Assembler::Label slow_case {};
  764. branch_if_same_type_for_equality(ARG1, ARG2, [&] {
  765. compile_is_strictly_equal(ARG1, ARG2, slow_case);
  766. // RET = RET | BOOLEAN_TAG << TAG_SHIFT;
  767. m_assembler.mov(
  768. Assembler::Operand::Register(GPR1),
  769. Assembler::Operand::Imm(BOOLEAN_TAG << TAG_SHIFT));
  770. m_assembler.bitwise_or(
  771. Assembler::Operand::Register(RET),
  772. Assembler::Operand::Register(GPR1));
  773. store_accumulator(RET);
  774. m_assembler.jump(end);
  775. });
  776. slow_case.link(m_assembler);
  777. native_call((void*)cxx_loosely_equals);
  778. store_accumulator(RET);
  779. check_exception();
  780. end.link(m_assembler);
  781. }
  782. static Value cxx_loosely_inequals(VM& vm, Value lhs, Value rhs)
  783. {
  784. return TRY_OR_SET_EXCEPTION(loosely_inequals(vm, lhs, rhs));
  785. }
  786. void Compiler::compile_loosely_inequals(Bytecode::Op::LooselyInequals const& op)
  787. {
  788. load_vm_register(ARG1, op.lhs());
  789. load_accumulator(ARG2);
  790. Assembler::Label end {};
  791. Assembler::Label slow_case {};
  792. branch_if_same_type_for_equality(ARG1, ARG2, [&] {
  793. compile_is_strictly_equal(ARG1, ARG2, slow_case);
  794. // RET = (RET ^ 1) | BOOLEAN_TAG << TAG_SHIFT;
  795. m_assembler.bitwise_xor32(
  796. Assembler::Operand::Register(RET),
  797. Assembler::Operand::Imm(1));
  798. m_assembler.mov(
  799. Assembler::Operand::Register(GPR1),
  800. Assembler::Operand::Imm(BOOLEAN_TAG << TAG_SHIFT));
  801. m_assembler.bitwise_or(
  802. Assembler::Operand::Register(RET),
  803. Assembler::Operand::Register(GPR1));
  804. store_accumulator(RET);
  805. m_assembler.jump(end);
  806. });
  807. slow_case.link(m_assembler);
  808. native_call((void*)cxx_loosely_inequals);
  809. store_accumulator(RET);
  810. check_exception();
  811. end.link(m_assembler);
  812. }
  813. # define DO_COMPILE_COMMON_BINARY_OP(TitleCaseName, snake_case_name) \
  814. static Value cxx_##snake_case_name(VM& vm, Value lhs, Value rhs) \
  815. { \
  816. return TRY_OR_SET_EXCEPTION(snake_case_name(vm, lhs, rhs)); \
  817. } \
  818. \
  819. void Compiler::compile_##snake_case_name(Bytecode::Op::TitleCaseName const& op) \
  820. { \
  821. load_vm_register(ARG1, op.lhs()); \
  822. load_accumulator(ARG2); \
  823. native_call((void*)cxx_##snake_case_name); \
  824. store_accumulator(RET); \
  825. check_exception(); \
  826. }
  827. JS_ENUMERATE_COMMON_BINARY_OPS_WITHOUT_FAST_PATH(DO_COMPILE_COMMON_BINARY_OP)
  828. # undef DO_COMPILE_COMMON_BINARY_OP
  829. static Value cxx_add(VM& vm, Value lhs, Value rhs)
  830. {
  831. return TRY_OR_SET_EXCEPTION(add(vm, lhs, rhs));
  832. }
  833. void Compiler::compile_add(Bytecode::Op::Add const& op)
  834. {
  835. load_vm_register(ARG1, op.lhs());
  836. load_accumulator(ARG2);
  837. branch_if_both_numbers(
  838. ARG1, ARG2,
  839. [&](auto lhs, auto rhs, auto& slow_case) {
  840. m_assembler.add32(
  841. Assembler::Operand::Register(lhs),
  842. Assembler::Operand::Register(rhs),
  843. slow_case);
  844. return lhs; },
  845. [&](auto lhs, auto rhs) {
  846. m_assembler.add(
  847. Assembler::Operand::FloatRegister(lhs),
  848. Assembler::Operand::FloatRegister(rhs));
  849. return lhs; },
  850. [&](auto lhs, auto rhs) {
  851. m_assembler.mov(
  852. Assembler::Operand::Register(ARG1),
  853. Assembler::Operand::Register(lhs));
  854. m_assembler.mov(
  855. Assembler::Operand::Register(ARG2),
  856. Assembler::Operand::Register(rhs));
  857. native_call((void*)cxx_add);
  858. return RET;
  859. });
  860. }
  861. static Value cxx_sub(VM& vm, Value lhs, Value rhs)
  862. {
  863. return TRY_OR_SET_EXCEPTION(sub(vm, lhs, rhs));
  864. }
  865. void Compiler::compile_sub(Bytecode::Op::Sub const& op)
  866. {
  867. load_vm_register(ARG1, op.lhs());
  868. load_accumulator(ARG2);
  869. branch_if_both_numbers(
  870. ARG1, ARG2,
  871. [&](auto lhs, auto rhs, auto& slow_case) {
  872. m_assembler.sub32(
  873. Assembler::Operand::Register(lhs),
  874. Assembler::Operand::Register(rhs),
  875. slow_case);
  876. return lhs; },
  877. [&](auto lhs, auto rhs) {
  878. m_assembler.sub(
  879. Assembler::Operand::FloatRegister(lhs),
  880. Assembler::Operand::FloatRegister(rhs));
  881. return lhs; },
  882. [&](auto lhs, auto rhs) {
  883. m_assembler.mov(
  884. Assembler::Operand::Register(ARG1),
  885. Assembler::Operand::Register(lhs));
  886. m_assembler.mov(
  887. Assembler::Operand::Register(ARG2),
  888. Assembler::Operand::Register(rhs));
  889. native_call((void*)cxx_sub);
  890. return RET;
  891. });
  892. }
  893. static Value cxx_mul(VM& vm, Value lhs, Value rhs)
  894. {
  895. return TRY_OR_SET_EXCEPTION(mul(vm, lhs, rhs));
  896. }
  897. void Compiler::compile_mul(Bytecode::Op::Mul const& op)
  898. {
  899. load_vm_register(ARG1, op.lhs());
  900. load_accumulator(ARG2);
  901. branch_if_both_numbers(
  902. ARG1, ARG2,
  903. [&](auto lhs, auto rhs, auto& slow_case) {
  904. m_assembler.mul32(
  905. Assembler::Operand::Register(lhs),
  906. Assembler::Operand::Register(rhs),
  907. slow_case);
  908. return lhs; },
  909. [&](auto lhs, auto rhs) {
  910. m_assembler.mul(
  911. Assembler::Operand::FloatRegister(lhs),
  912. Assembler::Operand::FloatRegister(rhs));
  913. return lhs; },
  914. [&](auto lhs, auto rhs) {
  915. m_assembler.mov(
  916. Assembler::Operand::Register(ARG1),
  917. Assembler::Operand::Register(lhs));
  918. m_assembler.mov(
  919. Assembler::Operand::Register(ARG2),
  920. Assembler::Operand::Register(rhs));
  921. native_call((void*)cxx_mul);
  922. return RET;
  923. });
  924. }
  925. # define DO_COMPILE_COMPARISON_OP(TitleCaseName, snake_case_name, AssemblerCondition) \
  926. static Value cxx_##snake_case_name(VM& vm, Value lhs, Value rhs) \
  927. { \
  928. return TRY_OR_SET_EXCEPTION(snake_case_name(vm, lhs, rhs)); \
  929. } \
  930. \
  931. void Compiler::compile_##snake_case_name(Bytecode::Op::TitleCaseName const& op) \
  932. { \
  933. load_vm_register(ARG1, op.lhs()); \
  934. load_accumulator(ARG2); \
  935. \
  936. Assembler::Label end {}; \
  937. \
  938. branch_if_both_int32(ARG1, ARG2, [&] { \
  939. m_assembler.sign_extend_32_to_64_bits(ARG1); \
  940. m_assembler.sign_extend_32_to_64_bits(ARG2); \
  941. \
  942. /* accumulator = SHIFTED_BOOLEAN_TAG | (arg1 condition arg2) */ \
  943. m_assembler.mov( \
  944. Assembler::Operand::Register(GPR0), \
  945. Assembler::Operand::Imm(SHIFTED_BOOLEAN_TAG)); \
  946. m_assembler.cmp( \
  947. Assembler::Operand::Register(ARG1), \
  948. Assembler::Operand::Register(ARG2)); \
  949. m_assembler.set_if( \
  950. Assembler::Condition::AssemblerCondition, \
  951. Assembler::Operand::Register(GPR0)); /* sets only first byte */ \
  952. store_accumulator(GPR0); \
  953. \
  954. m_assembler.jump(end); \
  955. }); \
  956. \
  957. native_call((void*)cxx_##snake_case_name); \
  958. store_accumulator(RET); \
  959. check_exception(); \
  960. end.link(m_assembler); \
  961. }
  962. JS_ENUMERATE_COMPARISON_OPS(DO_COMPILE_COMPARISON_OP)
  963. # undef DO_COMPILE_COMPARISON_OP
  964. static Value cxx_bitwise_and(VM& vm, Value lhs, Value rhs)
  965. {
  966. return TRY_OR_SET_EXCEPTION(bitwise_and(vm, lhs, rhs));
  967. }
  968. void Compiler::compile_bitwise_and(Bytecode::Op::BitwiseAnd const& op)
  969. {
  970. load_vm_register(ARG1, op.lhs());
  971. load_accumulator(ARG2);
  972. Assembler::Label end {};
  973. branch_if_both_int32(ARG1, ARG2, [&] {
  974. // NOTE: Since both sides are Int32, we know that the upper 32 bits are nothing but the INT32_TAG.
  975. // This means we can get away with just a simple 64-bit bitwise and.
  976. m_assembler.bitwise_and(
  977. Assembler::Operand::Register(ARG1),
  978. Assembler::Operand::Register(ARG2));
  979. store_accumulator(ARG1);
  980. m_assembler.jump(end);
  981. });
  982. native_call((void*)cxx_bitwise_and);
  983. store_accumulator(RET);
  984. check_exception();
  985. end.link(m_assembler);
  986. }
  987. static Value cxx_bitwise_or(VM& vm, Value lhs, Value rhs)
  988. {
  989. return TRY_OR_SET_EXCEPTION(bitwise_or(vm, lhs, rhs));
  990. }
  991. void Compiler::compile_bitwise_or(Bytecode::Op::BitwiseOr const& op)
  992. {
  993. load_vm_register(ARG1, op.lhs());
  994. load_accumulator(ARG2);
  995. Assembler::Label end {};
  996. branch_if_both_int32(ARG1, ARG2, [&] {
  997. // NOTE: Since both sides are Int32, we know that the upper 32 bits are nothing but the INT32_TAG.
  998. // This means we can get away with just a simple 64-bit bitwise or.
  999. m_assembler.bitwise_or(
  1000. Assembler::Operand::Register(ARG1),
  1001. Assembler::Operand::Register(ARG2));
  1002. store_accumulator(ARG1);
  1003. m_assembler.jump(end);
  1004. });
  1005. native_call((void*)cxx_bitwise_or);
  1006. store_accumulator(RET);
  1007. check_exception();
  1008. end.link(m_assembler);
  1009. }
  1010. static Value cxx_bitwise_xor(VM& vm, Value lhs, Value rhs)
  1011. {
  1012. return TRY_OR_SET_EXCEPTION(bitwise_xor(vm, lhs, rhs));
  1013. }
  1014. void Compiler::compile_bitwise_xor(Bytecode::Op::BitwiseXor const& op)
  1015. {
  1016. load_vm_register(ARG1, op.lhs());
  1017. load_accumulator(ARG2);
  1018. Assembler::Label end {};
  1019. branch_if_both_int32(ARG1, ARG2, [&] {
  1020. // ARG1 ^= ARG2 (32-bit)
  1021. m_assembler.bitwise_xor32(
  1022. Assembler::Operand::Register(ARG1),
  1023. Assembler::Operand::Register(ARG2));
  1024. // accumulator = ARG1 | SHIFTED_INT32_TAG;
  1025. m_assembler.mov(
  1026. Assembler::Operand::Register(GPR0),
  1027. Assembler::Operand::Imm(SHIFTED_INT32_TAG));
  1028. m_assembler.bitwise_or(
  1029. Assembler::Operand::Register(ARG1),
  1030. Assembler::Operand::Register(GPR0));
  1031. store_accumulator(ARG1);
  1032. m_assembler.jump(end);
  1033. });
  1034. native_call((void*)cxx_bitwise_xor);
  1035. store_accumulator(RET);
  1036. check_exception();
  1037. end.link(m_assembler);
  1038. }
  1039. static Value cxx_left_shift(VM& vm, Value lhs, Value rhs)
  1040. {
  1041. return TRY_OR_SET_EXCEPTION(left_shift(vm, lhs, rhs));
  1042. }
  1043. void Compiler::compile_left_shift(Bytecode::Op::LeftShift const& op)
  1044. {
  1045. load_vm_register(ARG1, op.lhs());
  1046. load_accumulator(ARG2);
  1047. Assembler::Label end {};
  1048. branch_if_both_int32(ARG1, ARG2, [&] {
  1049. // RCX = ARG2
  1050. m_assembler.mov(
  1051. Assembler::Operand::Register(Assembler::Reg::RCX),
  1052. Assembler::Operand::Register(ARG2));
  1053. // ARG1 <<= CL (32-bit)
  1054. m_assembler.shift_left32(Assembler::Operand::Register(ARG1), {});
  1055. // accumulator = ARG1 | SHIFTED_INT32_TAG;
  1056. m_assembler.mov(
  1057. Assembler::Operand::Register(GPR0),
  1058. Assembler::Operand::Imm(SHIFTED_INT32_TAG));
  1059. m_assembler.bitwise_or(
  1060. Assembler::Operand::Register(ARG1),
  1061. Assembler::Operand::Register(GPR0));
  1062. store_accumulator(ARG1);
  1063. m_assembler.jump(end);
  1064. });
  1065. native_call((void*)cxx_left_shift);
  1066. store_accumulator(RET);
  1067. check_exception();
  1068. end.link(m_assembler);
  1069. }
  1070. static Value cxx_right_shift(VM& vm, Value lhs, Value rhs)
  1071. {
  1072. return TRY_OR_SET_EXCEPTION(right_shift(vm, lhs, rhs));
  1073. }
  1074. void Compiler::compile_right_shift(Bytecode::Op::RightShift const& op)
  1075. {
  1076. load_vm_register(ARG1, op.lhs());
  1077. load_accumulator(ARG2);
  1078. Assembler::Label end {};
  1079. branch_if_both_int32(ARG1, ARG2, [&] {
  1080. // RCX = ARG2
  1081. m_assembler.mov(
  1082. Assembler::Operand::Register(Assembler::Reg::RCX),
  1083. Assembler::Operand::Register(ARG2));
  1084. // ARG1 >>= CL (32-bit)
  1085. m_assembler.arithmetic_right_shift32(Assembler::Operand::Register(ARG1), {});
  1086. // accumulator = ARG1 | SHIFTED_INT32_TAG;
  1087. m_assembler.mov(
  1088. Assembler::Operand::Register(GPR0),
  1089. Assembler::Operand::Imm(SHIFTED_INT32_TAG));
  1090. m_assembler.bitwise_or(
  1091. Assembler::Operand::Register(ARG1),
  1092. Assembler::Operand::Register(GPR0));
  1093. store_accumulator(ARG1);
  1094. m_assembler.jump(end);
  1095. });
  1096. native_call((void*)cxx_right_shift);
  1097. store_accumulator(RET);
  1098. check_exception();
  1099. end.link(m_assembler);
  1100. }
  1101. static Value cxx_unsigned_right_shift(VM& vm, Value lhs, Value rhs)
  1102. {
  1103. return TRY_OR_SET_EXCEPTION(unsigned_right_shift(vm, lhs, rhs));
  1104. }
  1105. void Compiler::compile_unsigned_right_shift(Bytecode::Op::UnsignedRightShift const& op)
  1106. {
  1107. load_vm_register(ARG1, op.lhs());
  1108. load_accumulator(ARG2);
  1109. Assembler::Label end {};
  1110. Assembler::Label slow_case {};
  1111. branch_if_both_int32(ARG1, ARG2, [&] {
  1112. // GPR0 = ARG1
  1113. m_assembler.mov(
  1114. Assembler::Operand::Register(GPR0),
  1115. Assembler::Operand::Register(ARG1));
  1116. // RCX = ARG2
  1117. m_assembler.mov(
  1118. Assembler::Operand::Register(Assembler::Reg::RCX),
  1119. Assembler::Operand::Register(ARG2));
  1120. // GPR0 >>>= CL (32-bit)
  1121. m_assembler.shift_right32(Assembler::Operand::Register(GPR0), {});
  1122. // GPR1 = sign_extended(GPR0)
  1123. m_assembler.mov32(
  1124. Assembler::Operand::Register(GPR1),
  1125. Assembler::Operand::Register(GPR0),
  1126. Assembler::Extension::SignExtend);
  1127. // if (GPR1 < 0) goto slow_case;
  1128. m_assembler.jump_if(
  1129. Assembler::Operand::Register(GPR1),
  1130. Assembler::Condition::SignedLessThan,
  1131. Assembler::Operand::Imm(0),
  1132. slow_case);
  1133. // accumulator = GPR0 | SHIFTED_INT32_TAG;
  1134. m_assembler.mov(
  1135. Assembler::Operand::Register(GPR1),
  1136. Assembler::Operand::Imm(SHIFTED_INT32_TAG));
  1137. m_assembler.bitwise_or(
  1138. Assembler::Operand::Register(GPR0),
  1139. Assembler::Operand::Register(GPR1));
  1140. store_accumulator(GPR0);
  1141. m_assembler.jump(end);
  1142. });
  1143. slow_case.link(m_assembler);
  1144. native_call((void*)cxx_unsigned_right_shift);
  1145. store_accumulator(RET);
  1146. check_exception();
  1147. end.link(m_assembler);
  1148. }
  1149. static ThrowCompletionOr<Value> not_(VM&, Value value)
  1150. {
  1151. return Value(!value.to_boolean());
  1152. }
  1153. static ThrowCompletionOr<Value> typeof_(VM& vm, Value value)
  1154. {
  1155. return PrimitiveString::create(vm, value.typeof());
  1156. }
  1157. # define DO_COMPILE_COMMON_UNARY_OP(TitleCaseName, snake_case_name) \
  1158. static Value cxx_##snake_case_name(VM& vm, Value value) \
  1159. { \
  1160. return TRY_OR_SET_EXCEPTION(snake_case_name(vm, value)); \
  1161. } \
  1162. \
  1163. void Compiler::compile_##snake_case_name(Bytecode::Op::TitleCaseName const&) \
  1164. { \
  1165. load_accumulator(ARG1); \
  1166. native_call((void*)cxx_##snake_case_name); \
  1167. store_accumulator(RET); \
  1168. check_exception(); \
  1169. }
  1170. JS_ENUMERATE_COMMON_UNARY_OPS(DO_COMPILE_COMMON_UNARY_OP)
  1171. # undef DO_COMPILE_COMMON_UNARY_OP
  1172. void Compiler::compile_return(Bytecode::Op::Return const&)
  1173. {
  1174. load_accumulator(GPR0);
  1175. if (auto const* finalizer = current_block().finalizer(); finalizer) {
  1176. store_vm_register(Bytecode::Register::saved_return_value(), GPR0);
  1177. m_assembler.jump(label_for(*finalizer));
  1178. } else {
  1179. store_vm_register(Bytecode::Register::return_value(), GPR0);
  1180. jump_to_exit();
  1181. }
  1182. }
  1183. static Value cxx_new_string(VM& vm, DeprecatedString const& string)
  1184. {
  1185. return PrimitiveString::create(vm, string);
  1186. }
  1187. void Compiler::compile_new_string(Bytecode::Op::NewString const& op)
  1188. {
  1189. auto const& string = m_bytecode_executable.string_table->get(op.index());
  1190. m_assembler.mov(
  1191. Assembler::Operand::Register(ARG1),
  1192. Assembler::Operand::Imm(bit_cast<u64>(&string)));
  1193. native_call((void*)cxx_new_string);
  1194. store_accumulator(RET);
  1195. }
  1196. void Compiler::compile_new_regexp(Bytecode::Op::NewRegExp const& op)
  1197. {
  1198. auto const& parsed_regex = m_bytecode_executable.regex_table->get(op.regex_index());
  1199. auto const& pattern = m_bytecode_executable.string_table->get(op.source_index());
  1200. auto const& flags = m_bytecode_executable.string_table->get(op.flags_index());
  1201. m_assembler.mov(
  1202. Assembler::Operand::Register(ARG1),
  1203. Assembler::Operand::Imm(bit_cast<u64>(&parsed_regex)));
  1204. m_assembler.mov(
  1205. Assembler::Operand::Register(ARG2),
  1206. Assembler::Operand::Imm(bit_cast<u64>(&pattern)));
  1207. m_assembler.mov(
  1208. Assembler::Operand::Register(ARG3),
  1209. Assembler::Operand::Imm(bit_cast<u64>(&flags)));
  1210. native_call((void*)Bytecode::new_regexp);
  1211. store_accumulator(RET);
  1212. }
  1213. static Value cxx_new_bigint(VM& vm, Crypto::SignedBigInteger const& bigint)
  1214. {
  1215. return BigInt::create(vm, bigint);
  1216. }
  1217. void Compiler::compile_new_bigint(Bytecode::Op::NewBigInt const& op)
  1218. {
  1219. m_assembler.mov(
  1220. Assembler::Operand::Register(ARG1),
  1221. Assembler::Operand::Imm(bit_cast<u64>(&op.bigint())));
  1222. native_call((void*)cxx_new_bigint);
  1223. store_accumulator(RET);
  1224. }
  1225. static Value cxx_new_object(VM& vm)
  1226. {
  1227. auto& realm = *vm.current_realm();
  1228. return Object::create(realm, realm.intrinsics().object_prototype());
  1229. }
  1230. void Compiler::compile_new_object(Bytecode::Op::NewObject const&)
  1231. {
  1232. native_call((void*)cxx_new_object);
  1233. store_accumulator(RET);
  1234. }
  1235. static Value cxx_new_array(VM& vm, size_t element_count, u32 first_register_index)
  1236. {
  1237. auto& realm = *vm.current_realm();
  1238. auto array = MUST(Array::create(realm, 0));
  1239. for (size_t i = 0; i < element_count; ++i) {
  1240. auto& value = vm.bytecode_interpreter().reg(Bytecode::Register(first_register_index + i));
  1241. array->indexed_properties().put(i, value, default_attributes);
  1242. }
  1243. return array;
  1244. }
  1245. void Compiler::compile_new_array(Bytecode::Op::NewArray const& op)
  1246. {
  1247. m_assembler.mov(
  1248. Assembler::Operand::Register(ARG1),
  1249. Assembler::Operand::Imm(op.element_count()));
  1250. m_assembler.mov(
  1251. Assembler::Operand::Register(ARG2),
  1252. Assembler::Operand::Imm(op.element_count() ? op.start().index() : 0));
  1253. native_call((void*)cxx_new_array);
  1254. store_accumulator(RET);
  1255. }
  1256. void Compiler::compile_new_function(Bytecode::Op::NewFunction const& op)
  1257. {
  1258. m_assembler.mov(
  1259. Assembler::Operand::Register(ARG1),
  1260. Assembler::Operand::Imm(bit_cast<u64>(&op.function_node())));
  1261. m_assembler.mov(
  1262. Assembler::Operand::Register(ARG2),
  1263. Assembler::Operand::Imm(bit_cast<u64>(&op.lhs_name())));
  1264. m_assembler.mov(
  1265. Assembler::Operand::Register(ARG3),
  1266. Assembler::Operand::Imm(bit_cast<u64>(&op.home_object())));
  1267. native_call((void*)Bytecode::new_function);
  1268. store_accumulator(RET);
  1269. }
  1270. static Value cxx_new_class(VM& vm, Value super_class, ClassExpression const& class_expression, Optional<Bytecode::IdentifierTableIndex> const& lhs_name)
  1271. {
  1272. return TRY_OR_SET_EXCEPTION(Bytecode::new_class(vm, super_class, class_expression, lhs_name));
  1273. }
  1274. void Compiler::compile_new_class(Bytecode::Op::NewClass const& op)
  1275. {
  1276. load_accumulator(ARG1);
  1277. m_assembler.mov(
  1278. Assembler::Operand::Register(ARG2),
  1279. Assembler::Operand::Imm(bit_cast<u64>(&op.class_expression())));
  1280. m_assembler.mov(
  1281. Assembler::Operand::Register(ARG3),
  1282. Assembler::Operand::Imm(bit_cast<u64>(&op.lhs_name())));
  1283. native_call((void*)cxx_new_class);
  1284. store_accumulator(RET);
  1285. }
  1286. static Value cxx_get_by_id(VM& vm, Value base, DeprecatedFlyString const& property, Bytecode::PropertyLookupCache& cache)
  1287. {
  1288. return TRY_OR_SET_EXCEPTION(Bytecode::get_by_id(vm, property, base, base, cache));
  1289. }
  1290. void Compiler::compile_get_by_id(Bytecode::Op::GetById const& op)
  1291. {
  1292. auto& cache = m_bytecode_executable.property_lookup_caches[op.cache_index()];
  1293. Assembler::Label end;
  1294. Assembler::Label slow_case;
  1295. m_assembler.mov(
  1296. Assembler::Operand::Register(ARG5),
  1297. Assembler::Operand::Imm(bit_cast<u64>(&cache)));
  1298. load_accumulator(ARG1);
  1299. branch_if_object(ARG1, [&] {
  1300. extract_object_pointer(GPR0, ARG1);
  1301. // NOTE: Fast path for Array.length which magically reflects
  1302. // the "array-like size" of the array object's property storage.
  1303. if (m_bytecode_executable.get_identifier(op.property()) == "length"sv) {
  1304. Assembler::Label no_magical_length_property_case;
  1305. // if (!object.has_magical_length_property) goto no_magical_length_property_case;
  1306. m_assembler.mov8(
  1307. Assembler::Operand::Register(GPR1),
  1308. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::has_magical_length_property_offset()));
  1309. m_assembler.jump_if(
  1310. Assembler::Operand::Register(GPR1),
  1311. Assembler::Condition::EqualTo,
  1312. Assembler::Operand::Imm(0),
  1313. no_magical_length_property_case);
  1314. // NOTE: The base object has a magical "length" property, so now we just need
  1315. // to extract the "array-like size" from the object property storage.
  1316. // If we run into any issues, we'll jump to the slow case and figure things out in C++.
  1317. // GPR0 = object->indexed_properties().storage()
  1318. m_assembler.mov(
  1319. Assembler::Operand::Register(GPR0),
  1320. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::indexed_properties_offset() + IndexedProperties::storage_offset()));
  1321. // if (GPR0 == nullptr) goto slow_case;
  1322. m_assembler.jump_if(
  1323. Assembler::Operand::Register(GPR0),
  1324. Assembler::Condition::EqualTo,
  1325. Assembler::Operand::Imm(0),
  1326. slow_case);
  1327. // if (!GPR0->is_simple_storage()) goto slow_case;
  1328. m_assembler.mov8(
  1329. Assembler::Operand::Register(GPR1),
  1330. Assembler::Operand::Mem64BaseAndOffset(GPR0, IndexedPropertyStorage::is_simple_storage_offset()));
  1331. m_assembler.jump_if(
  1332. Assembler::Operand::Register(GPR1),
  1333. Assembler::Condition::EqualTo,
  1334. Assembler::Operand::Imm(0),
  1335. slow_case);
  1336. // accumulator = GPR0->array_like_size() | SHIFT_INT32_TAG
  1337. // return
  1338. m_assembler.mov(
  1339. Assembler::Operand::Register(GPR1),
  1340. Assembler::Operand::Mem64BaseAndOffset(GPR0, SimpleIndexedPropertyStorage::array_size_offset()));
  1341. m_assembler.mov(
  1342. Assembler::Operand::Register(GPR0),
  1343. Assembler::Operand::Imm(SHIFTED_INT32_TAG));
  1344. m_assembler.bitwise_or(
  1345. Assembler::Operand::Register(GPR1),
  1346. Assembler::Operand::Register(GPR0));
  1347. store_accumulator(GPR1);
  1348. m_assembler.jump(end);
  1349. no_magical_length_property_case.link(m_assembler);
  1350. }
  1351. // if (cache.shape != &object->shape()) goto slow_case;
  1352. m_assembler.mov(
  1353. Assembler::Operand::Register(GPR2),
  1354. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::shape_offset()));
  1355. m_assembler.mov(
  1356. Assembler::Operand::Register(GPR1),
  1357. Assembler::Operand::Mem64BaseAndOffset(ARG5, Bytecode::PropertyLookupCache::shape_offset()));
  1358. m_assembler.jump_if(
  1359. Assembler::Operand::Register(GPR1),
  1360. Assembler::Condition::EqualTo,
  1361. Assembler::Operand::Imm(0),
  1362. slow_case);
  1363. m_assembler.mov(
  1364. Assembler::Operand::Register(GPR1),
  1365. Assembler::Operand::Mem64BaseAndOffset(GPR1, AK::WeakLink::ptr_offset()));
  1366. m_assembler.jump_if(
  1367. Assembler::Operand::Register(GPR2),
  1368. Assembler::Condition::NotEqualTo,
  1369. Assembler::Operand::Register(GPR1),
  1370. slow_case);
  1371. // (!object->shape().is_unique() || object->shape().unique_shape_serial_number() == cache.unique_shape_serial_number)) {
  1372. Assembler::Label fast_case;
  1373. // GPR1 = object->shape().is_unique()
  1374. m_assembler.mov8(
  1375. Assembler::Operand::Register(GPR1),
  1376. Assembler::Operand::Mem64BaseAndOffset(GPR2, Shape::is_unique_offset()));
  1377. m_assembler.jump_if(
  1378. Assembler::Operand::Register(GPR1),
  1379. Assembler::Condition::EqualTo,
  1380. Assembler::Operand::Imm(0),
  1381. fast_case);
  1382. // GPR1 = object->shape().unique_shape_serial_number()
  1383. m_assembler.mov(
  1384. Assembler::Operand::Register(GPR1),
  1385. Assembler::Operand::Mem64BaseAndOffset(GPR2, Shape::unique_shape_serial_number_offset()));
  1386. // GPR2 = cache.unique_shape_serial_number
  1387. m_assembler.mov(
  1388. Assembler::Operand::Register(GPR2),
  1389. Assembler::Operand::Mem64BaseAndOffset(ARG5, Bytecode::PropertyLookupCache::unique_shape_serial_number_offset()));
  1390. // if (GPR1 != GPR2) goto slow_case;
  1391. m_assembler.jump_if(
  1392. Assembler::Operand::Register(GPR1),
  1393. Assembler::Condition::NotEqualTo,
  1394. Assembler::Operand::Register(GPR2),
  1395. slow_case);
  1396. fast_case.link(m_assembler);
  1397. // return object->get_direct(*cache.property_offset);
  1398. // GPR0 = object
  1399. // GPR1 = *cache.property_offset * sizeof(Value)
  1400. m_assembler.mov(
  1401. Assembler::Operand::Register(GPR1),
  1402. Assembler::Operand::Mem64BaseAndOffset(ARG5, Bytecode::PropertyLookupCache::property_offset_offset() + decltype(cache.property_offset)::value_offset()));
  1403. m_assembler.mul32(
  1404. Assembler::Operand::Register(GPR1),
  1405. Assembler::Operand::Imm(sizeof(Value)),
  1406. slow_case);
  1407. // GPR0 = object->m_storage.outline_buffer
  1408. m_assembler.mov(
  1409. Assembler::Operand::Register(GPR0),
  1410. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::storage_offset() + Vector<Value>::outline_buffer_offset()));
  1411. // GPR0 = &object->m_storage.outline_buffer[*cache.property_offset]
  1412. m_assembler.add(
  1413. Assembler::Operand::Register(GPR0),
  1414. Assembler::Operand::Register(GPR1));
  1415. // *GPR0 = value
  1416. m_assembler.mov(
  1417. Assembler::Operand::Register(GPR1),
  1418. Assembler::Operand::Mem64BaseAndOffset(GPR0, 0));
  1419. store_accumulator(GPR1);
  1420. m_assembler.jump(end);
  1421. });
  1422. slow_case.link(m_assembler);
  1423. m_assembler.mov(
  1424. Assembler::Operand::Register(ARG2),
  1425. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  1426. m_assembler.mov(
  1427. Assembler::Operand::Register(ARG3),
  1428. Assembler::Operand::Imm(bit_cast<u64>(&cache)));
  1429. native_call((void*)cxx_get_by_id);
  1430. store_accumulator(RET);
  1431. check_exception();
  1432. end.link(m_assembler);
  1433. }
  1434. static Value cxx_get_by_value(VM& vm, Value base, Value property)
  1435. {
  1436. return TRY_OR_SET_EXCEPTION(Bytecode::get_by_value(vm, base, property));
  1437. }
  1438. void Compiler::compile_get_by_value(Bytecode::Op::GetByValue const& op)
  1439. {
  1440. load_vm_register(ARG1, op.base());
  1441. load_accumulator(ARG2);
  1442. Assembler::Label end {};
  1443. Assembler::Label slow_case {};
  1444. branch_if_object(ARG1, [&] {
  1445. branch_if_int32(ARG2, [&] {
  1446. // if (ARG2 < 0) goto slow_case;
  1447. m_assembler.mov(
  1448. Assembler::Operand::Register(GPR0),
  1449. Assembler::Operand::Register(ARG2));
  1450. m_assembler.sign_extend_32_to_64_bits(GPR0);
  1451. m_assembler.jump_if(
  1452. Assembler::Operand::Register(GPR0),
  1453. Assembler::Condition::SignedLessThan,
  1454. Assembler::Operand::Imm(0),
  1455. slow_case);
  1456. // GPR0 = extract_pointer(ARG1)
  1457. extract_object_pointer(GPR0, ARG1);
  1458. // if (object->may_interfere_with_indexed_property_access()) goto slow_case;
  1459. m_assembler.mov8(
  1460. Assembler::Operand::Register(GPR1),
  1461. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::may_interfere_with_indexed_property_access_offset()));
  1462. m_assembler.jump_if(
  1463. Assembler::Operand::Register(GPR1),
  1464. Assembler::Condition::NotEqualTo,
  1465. Assembler::Operand::Imm(0),
  1466. slow_case);
  1467. // GPR0 = object->indexed_properties().storage()
  1468. m_assembler.mov(
  1469. Assembler::Operand::Register(GPR0),
  1470. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::indexed_properties_offset() + IndexedProperties::storage_offset()));
  1471. // if (GPR0 == nullptr) goto slow_case;
  1472. m_assembler.jump_if(
  1473. Assembler::Operand::Register(GPR0),
  1474. Assembler::Condition::EqualTo,
  1475. Assembler::Operand::Imm(0),
  1476. slow_case);
  1477. // if (!GPR0->is_simple_storage()) goto slow_case;
  1478. m_assembler.mov8(
  1479. Assembler::Operand::Register(GPR1),
  1480. Assembler::Operand::Mem64BaseAndOffset(GPR0, IndexedPropertyStorage::is_simple_storage_offset()));
  1481. m_assembler.jump_if(
  1482. Assembler::Operand::Register(GPR1),
  1483. Assembler::Condition::EqualTo,
  1484. Assembler::Operand::Imm(0),
  1485. slow_case);
  1486. // GPR2 = extract_int32(ARG2)
  1487. m_assembler.mov32(
  1488. Assembler::Operand::Register(GPR2),
  1489. Assembler::Operand::Register(ARG2));
  1490. // if (GPR2 >= GPR0->array_like_size()) goto slow_case;
  1491. m_assembler.mov(
  1492. Assembler::Operand::Register(GPR1),
  1493. Assembler::Operand::Mem64BaseAndOffset(GPR0, SimpleIndexedPropertyStorage::array_size_offset()));
  1494. m_assembler.jump_if(
  1495. Assembler::Operand::Register(GPR2),
  1496. Assembler::Condition::SignedGreaterThanOrEqualTo,
  1497. Assembler::Operand::Register(GPR1),
  1498. slow_case);
  1499. // GPR0 = GPR0->elements().outline_buffer()
  1500. m_assembler.mov(
  1501. Assembler::Operand::Register(GPR0),
  1502. Assembler::Operand::Mem64BaseAndOffset(GPR0, SimpleIndexedPropertyStorage::elements_offset() + Vector<Value>::outline_buffer_offset()));
  1503. // GPR2 *= sizeof(Value)
  1504. m_assembler.mul32(
  1505. Assembler::Operand::Register(GPR2),
  1506. Assembler::Operand::Imm(sizeof(Value)),
  1507. slow_case);
  1508. // GPR0 = GPR0[GPR2]
  1509. m_assembler.add(
  1510. Assembler::Operand::Register(GPR0),
  1511. Assembler::Operand::Register(GPR2));
  1512. m_assembler.mov(
  1513. Assembler::Operand::Register(GPR0),
  1514. Assembler::Operand::Mem64BaseAndOffset(GPR0, 0));
  1515. // if (GPR0.is_empty()) goto slow_case;
  1516. m_assembler.mov(Assembler::Operand::Register(GPR1), Assembler::Operand::Register(GPR0));
  1517. m_assembler.shift_right(Assembler::Operand::Register(GPR1), Assembler::Operand::Imm(TAG_SHIFT));
  1518. m_assembler.jump_if(
  1519. Assembler::Operand::Register(GPR1),
  1520. Assembler::Condition::EqualTo,
  1521. Assembler::Operand::Imm(EMPTY_TAG),
  1522. slow_case);
  1523. // if (GPR0.is_accessor()) goto slow_case;
  1524. m_assembler.mov(Assembler::Operand::Register(GPR1), Assembler::Operand::Register(GPR0));
  1525. m_assembler.shift_right(Assembler::Operand::Register(GPR1), Assembler::Operand::Imm(TAG_SHIFT));
  1526. m_assembler.jump_if(
  1527. Assembler::Operand::Register(GPR1),
  1528. Assembler::Condition::EqualTo,
  1529. Assembler::Operand::Imm(ACCESSOR_TAG),
  1530. slow_case);
  1531. // accumulator = GPR0;
  1532. store_accumulator(GPR0);
  1533. m_assembler.jump(end);
  1534. });
  1535. });
  1536. slow_case.link(m_assembler);
  1537. native_call((void*)cxx_get_by_value);
  1538. store_accumulator(RET);
  1539. check_exception();
  1540. end.link(m_assembler);
  1541. }
  1542. static Value cxx_get_global(VM& vm, DeprecatedFlyString const& identifier, Bytecode::GlobalVariableCache& cache)
  1543. {
  1544. return TRY_OR_SET_EXCEPTION(Bytecode::get_global(vm.bytecode_interpreter(), identifier, cache));
  1545. }
  1546. void Compiler::compile_get_global(Bytecode::Op::GetGlobal const& op)
  1547. {
  1548. auto& cache = m_bytecode_executable.global_variable_caches[op.cache_index()];
  1549. m_assembler.mov(
  1550. Assembler::Operand::Register(ARG1),
  1551. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier()))));
  1552. m_assembler.mov(
  1553. Assembler::Operand::Register(ARG2),
  1554. Assembler::Operand::Imm(bit_cast<u64>(&cache)));
  1555. Assembler::Label end {};
  1556. Assembler::Label slow_case {};
  1557. // GPR0 = vm.running_execution_context().realm;
  1558. m_assembler.mov(
  1559. Assembler::Operand::Register(GPR0),
  1560. Assembler::Operand::Mem64BaseAndOffset(RUNNING_EXECUTION_CONTEXT_BASE, ExecutionContext::realm_offset()));
  1561. // GPR0 = GPR0->global_environment();
  1562. m_assembler.mov(
  1563. Assembler::Operand::Register(GPR0),
  1564. Assembler::Operand::Mem64BaseAndOffset(GPR0, Realm::global_environment_offset()));
  1565. // GPR1 = GPR0->object_record();
  1566. m_assembler.mov(
  1567. Assembler::Operand::Register(GPR1),
  1568. Assembler::Operand::Mem64BaseAndOffset(GPR0, GlobalEnvironment::object_record_offset()));
  1569. // GPR1 = GPR1->binding_object();
  1570. m_assembler.mov(
  1571. Assembler::Operand::Register(GPR1),
  1572. Assembler::Operand::Mem64BaseAndOffset(GPR1, ObjectEnvironment::binding_object_offset()));
  1573. // GPR0 = GPR0->declarative_record();
  1574. m_assembler.mov(
  1575. Assembler::Operand::Register(GPR0),
  1576. Assembler::Operand::Mem64BaseAndOffset(GPR0, GlobalEnvironment::declarative_record_offset()));
  1577. // GPR0 = GPR0->environment_serial_number();
  1578. m_assembler.mov(
  1579. Assembler::Operand::Register(GPR0),
  1580. Assembler::Operand::Mem64BaseAndOffset(GPR0, DeclarativeEnvironment::environment_serial_number_offset()));
  1581. // GPR2 = cache.environment_serial_number
  1582. m_assembler.mov(
  1583. Assembler::Operand::Register(GPR2),
  1584. Assembler::Operand::Mem64BaseAndOffset(ARG2, Bytecode::GlobalVariableCache::environment_serial_number_offset()));
  1585. // if (GPR2 != GPR0) goto slow_case;
  1586. m_assembler.jump_if(
  1587. Assembler::Operand::Register(GPR2),
  1588. Assembler::Condition::NotEqualTo,
  1589. Assembler::Operand::Register(GPR0),
  1590. slow_case);
  1591. // GPR0 = GPR1->shape()
  1592. m_assembler.mov(
  1593. Assembler::Operand::Register(GPR0),
  1594. Assembler::Operand::Mem64BaseAndOffset(GPR1, Object::shape_offset()));
  1595. // GPR2 = cache.shape.ptr()
  1596. m_assembler.mov(
  1597. Assembler::Operand::Register(GPR2),
  1598. Assembler::Operand::Mem64BaseAndOffset(ARG2, Bytecode::PropertyLookupCache::shape_offset()));
  1599. m_assembler.jump_if(
  1600. Assembler::Operand::Register(GPR2),
  1601. Assembler::Condition::EqualTo,
  1602. Assembler::Operand::Imm(0),
  1603. slow_case);
  1604. m_assembler.mov(
  1605. Assembler::Operand::Register(GPR2),
  1606. Assembler::Operand::Mem64BaseAndOffset(GPR2, AK::WeakLink::ptr_offset()));
  1607. // if (GPR2 != GPR0) goto slow_case;
  1608. m_assembler.jump_if(
  1609. Assembler::Operand::Register(GPR2),
  1610. Assembler::Condition::NotEqualTo,
  1611. Assembler::Operand::Register(GPR0),
  1612. slow_case);
  1613. Assembler::Label fast_case {};
  1614. // GPR2 = shape->unique()
  1615. m_assembler.mov8(
  1616. Assembler::Operand::Register(GPR2),
  1617. Assembler::Operand::Mem64BaseAndOffset(GPR0, Shape::is_unique_offset()));
  1618. // if (!GPR2) goto fast_case;
  1619. m_assembler.jump_if(
  1620. Assembler::Operand::Register(GPR2),
  1621. Assembler::Condition::EqualTo,
  1622. Assembler::Operand::Imm(0),
  1623. fast_case);
  1624. // GPR2 = shape->unique_shape_serial_number()
  1625. m_assembler.mov(
  1626. Assembler::Operand::Register(GPR2),
  1627. Assembler::Operand::Mem64BaseAndOffset(GPR0, Shape::unique_shape_serial_number_offset()));
  1628. // GPR0 = cache.unique_shape_serial_number
  1629. m_assembler.mov(
  1630. Assembler::Operand::Register(GPR0),
  1631. Assembler::Operand::Mem64BaseAndOffset(ARG2, Bytecode::PropertyLookupCache::unique_shape_serial_number_offset()));
  1632. // if (GPR2 != GPR0) goto slow_case;
  1633. m_assembler.jump_if(
  1634. Assembler::Operand::Register(GPR2),
  1635. Assembler::Condition::NotEqualTo,
  1636. Assembler::Operand::Register(GPR0),
  1637. slow_case);
  1638. fast_case.link(m_assembler);
  1639. // accumulator = GPR1->get_direct(*cache.property_offset);
  1640. // GPR0 = GPR1
  1641. // GPR1 = *cache.property_offset * sizeof(Value)
  1642. m_assembler.mov(
  1643. Assembler::Operand::Register(GPR0),
  1644. Assembler::Operand::Register(GPR1));
  1645. m_assembler.mov(
  1646. Assembler::Operand::Register(GPR1),
  1647. Assembler::Operand::Mem64BaseAndOffset(ARG2, Bytecode::PropertyLookupCache::property_offset_offset() + decltype(cache.property_offset)::value_offset()));
  1648. m_assembler.mul32(
  1649. Assembler::Operand::Register(GPR1),
  1650. Assembler::Operand::Imm(sizeof(Value)),
  1651. slow_case);
  1652. // GPR0 = GPR0->m_storage.outline_buffer
  1653. m_assembler.mov(
  1654. Assembler::Operand::Register(GPR0),
  1655. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::storage_offset() + Vector<Value>::outline_buffer_offset()));
  1656. // GPR0 = &GPR0[*cache.property_offset]
  1657. m_assembler.add(
  1658. Assembler::Operand::Register(GPR0),
  1659. Assembler::Operand::Register(GPR1));
  1660. // accumulator = *GPR0
  1661. m_assembler.mov(
  1662. Assembler::Operand::Register(GPR0),
  1663. Assembler::Operand::Mem64BaseAndOffset(GPR0, 0));
  1664. store_accumulator(GPR0);
  1665. m_assembler.jump(end);
  1666. slow_case.link(m_assembler);
  1667. native_call((void*)cxx_get_global);
  1668. store_accumulator(RET);
  1669. check_exception();
  1670. end.link(m_assembler);
  1671. }
  1672. static Value cxx_get_variable(VM& vm, DeprecatedFlyString const& name, Bytecode::EnvironmentVariableCache& cache)
  1673. {
  1674. return TRY_OR_SET_EXCEPTION(Bytecode::get_variable(vm.bytecode_interpreter(), name, cache));
  1675. }
  1676. void Compiler::compile_get_variable(Bytecode::Op::GetVariable const& op)
  1677. {
  1678. Assembler::Label slow_case;
  1679. // if (!cache.has_value()) goto slow_case;
  1680. m_assembler.mov(
  1681. Assembler::Operand::Register(ARG2),
  1682. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.environment_variable_caches[op.cache_index()])));
  1683. m_assembler.mov8(
  1684. Assembler::Operand::Register(GPR0),
  1685. Assembler::Operand::Mem64BaseAndOffset(ARG2, Bytecode::EnvironmentVariableCache::has_value_offset()));
  1686. m_assembler.jump_if(
  1687. Assembler::Operand::Register(GPR0),
  1688. Assembler::Condition::EqualTo,
  1689. Assembler::Operand::Imm(0),
  1690. slow_case);
  1691. // auto environment = vm.running_execution_context().lexical_environment;
  1692. // GPR1 = current lexical environment
  1693. m_assembler.mov(
  1694. Assembler::Operand::Register(GPR1),
  1695. Assembler::Operand::Mem64BaseAndOffset(RUNNING_EXECUTION_CONTEXT_BASE, ExecutionContext::lexical_environment_offset()));
  1696. // for (size_t i = 0; i < cache->hops; ++i)
  1697. // environment = environment->outer_environment();
  1698. // GPR0 = hops
  1699. m_assembler.mov32(
  1700. Assembler::Operand::Register(GPR0),
  1701. Assembler::Operand::Mem64BaseAndOffset(ARG2, Bytecode::EnvironmentVariableCache::value_offset() + EnvironmentCoordinate::hops_offset()));
  1702. {
  1703. // while (GPR0--)
  1704. // GPR1 = GPR1->outer_environment()
  1705. Assembler::Label loop_start;
  1706. Assembler::Label loop_end;
  1707. loop_start.link(m_assembler);
  1708. m_assembler.jump_if(
  1709. Assembler::Operand::Register(GPR0),
  1710. Assembler::Condition::EqualTo,
  1711. Assembler::Operand::Imm(0),
  1712. loop_end);
  1713. m_assembler.sub(
  1714. Assembler::Operand::Register(GPR0),
  1715. Assembler::Operand::Imm(1));
  1716. m_assembler.mov(
  1717. Assembler::Operand::Register(GPR1),
  1718. Assembler::Operand::Mem64BaseAndOffset(GPR1, Environment::outer_environment_offset()));
  1719. m_assembler.jump(loop_start);
  1720. loop_end.link(m_assembler);
  1721. }
  1722. // GPR1 now points to the environment holding our binding.
  1723. // if (environment->is_permanently_screwed_by_eval()) goto slow_case;
  1724. m_assembler.mov8(
  1725. Assembler::Operand::Register(GPR0),
  1726. Assembler::Operand::Mem64BaseAndOffset(GPR1, Environment::is_permanently_screwed_by_eval_offset()));
  1727. m_assembler.jump_if(
  1728. Assembler::Operand::Register(GPR0),
  1729. Assembler::Condition::NotEqualTo,
  1730. Assembler::Operand::Imm(0),
  1731. slow_case);
  1732. // GPR1 = environment->m_bindings.outline_buffer()
  1733. m_assembler.mov(
  1734. Assembler::Operand::Register(GPR1),
  1735. Assembler::Operand::Mem64BaseAndOffset(GPR1, DeclarativeEnvironment::bindings_offset() + Vector<DeclarativeEnvironment::Binding>::outline_buffer_offset()));
  1736. // GPR0 = index
  1737. m_assembler.mov32(
  1738. Assembler::Operand::Register(GPR0),
  1739. Assembler::Operand::Mem64BaseAndOffset(ARG2, Bytecode::EnvironmentVariableCache::value_offset() + EnvironmentCoordinate::index_offset()));
  1740. // GPR0 *= sizeof(DeclarativeEnvironment::Binding)
  1741. m_assembler.mul32(
  1742. Assembler::Operand::Register(GPR0),
  1743. Assembler::Operand::Imm(sizeof(DeclarativeEnvironment::Binding)),
  1744. slow_case);
  1745. // GPR1 = &binding
  1746. m_assembler.add(
  1747. Assembler::Operand::Register(GPR1),
  1748. Assembler::Operand::Register(GPR0));
  1749. // if (!binding.initialized) goto slow_case;
  1750. m_assembler.mov(
  1751. Assembler ::Operand::Register(GPR0),
  1752. Assembler::Operand::Mem64BaseAndOffset(GPR1, DeclarativeEnvironment::Binding::initialized_offset()));
  1753. m_assembler.bitwise_and(
  1754. Assembler::Operand::Register(GPR0),
  1755. Assembler::Operand::Imm(0xff));
  1756. m_assembler.jump_if(
  1757. Assembler::Operand::Register(GPR0),
  1758. Assembler::Condition::EqualTo,
  1759. Assembler::Operand::Imm(0),
  1760. slow_case);
  1761. // accumulator = binding.value;
  1762. m_assembler.mov(
  1763. Assembler::Operand::Register(GPR0),
  1764. Assembler::Operand::Mem64BaseAndOffset(GPR1, DeclarativeEnvironment::Binding::value_offset()));
  1765. store_accumulator(GPR0);
  1766. Assembler::Label end;
  1767. m_assembler.jump(end);
  1768. // Slow case: Uncached access. Call C++ helper.
  1769. slow_case.link(m_assembler);
  1770. m_assembler.mov(
  1771. Assembler::Operand::Register(ARG1),
  1772. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier()))));
  1773. native_call((void*)cxx_get_variable);
  1774. store_accumulator(RET);
  1775. check_exception();
  1776. end.link(m_assembler);
  1777. }
  1778. static Value cxx_get_callee_and_this_from_environment(VM& vm, DeprecatedFlyString const& name, Bytecode::Register callee_reg, Bytecode::Register this_reg, Bytecode::EnvironmentVariableCache& cache)
  1779. {
  1780. auto& bytecode_interpreter = vm.bytecode_interpreter();
  1781. auto callee_and_this = TRY_OR_SET_EXCEPTION(Bytecode::get_callee_and_this_from_environment(
  1782. bytecode_interpreter,
  1783. name,
  1784. cache));
  1785. bytecode_interpreter.reg(callee_reg) = callee_and_this.callee;
  1786. bytecode_interpreter.reg(this_reg) = callee_and_this.this_value;
  1787. return {};
  1788. }
  1789. void Compiler::compile_get_callee_and_this_from_environment(Bytecode::Op::GetCalleeAndThisFromEnvironment const& op)
  1790. {
  1791. m_assembler.mov(
  1792. Assembler::Operand::Register(ARG1),
  1793. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier()))));
  1794. m_assembler.mov(
  1795. Assembler::Operand::Register(ARG2),
  1796. Assembler::Operand::Imm(op.callee().index()));
  1797. m_assembler.mov(
  1798. Assembler::Operand::Register(ARG3),
  1799. Assembler::Operand::Imm(op.this_().index()));
  1800. m_assembler.mov(
  1801. Assembler::Operand::Register(ARG4),
  1802. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.environment_variable_caches[op.cache_index()])));
  1803. native_call((void*)cxx_get_callee_and_this_from_environment);
  1804. check_exception();
  1805. }
  1806. static Value cxx_to_numeric(VM& vm, Value value)
  1807. {
  1808. return TRY_OR_SET_EXCEPTION(value.to_numeric(vm));
  1809. }
  1810. void Compiler::compile_to_numeric(Bytecode::Op::ToNumeric const&)
  1811. {
  1812. Assembler::Label fast_case {};
  1813. load_accumulator(ARG1);
  1814. jump_if_int32(ARG1, fast_case);
  1815. native_call((void*)cxx_to_numeric);
  1816. store_accumulator(RET);
  1817. check_exception();
  1818. fast_case.link(m_assembler);
  1819. }
  1820. static Value cxx_resolve_this_binding(VM& vm)
  1821. {
  1822. auto this_value = TRY_OR_SET_EXCEPTION(vm.resolve_this_binding());
  1823. vm.bytecode_interpreter().reg(Bytecode::Register::this_value()) = this_value;
  1824. return this_value;
  1825. }
  1826. void Compiler::compile_resolve_this_binding(Bytecode::Op::ResolveThisBinding const&)
  1827. {
  1828. // OPTIMIZATION: We cache the `this` value in a special VM register.
  1829. // So first we check if the cache is non-empty, and if so,
  1830. // we can avoid calling out to C++ at all. :^)
  1831. load_vm_register(GPR0, Bytecode::Register::this_value());
  1832. m_assembler.mov(
  1833. Assembler::Operand::Register(GPR1),
  1834. Assembler::Operand::Imm(Value().encoded()));
  1835. Assembler::Label slow_case {};
  1836. m_assembler.jump_if(
  1837. Assembler::Operand::Register(GPR0),
  1838. Assembler::Condition::EqualTo,
  1839. Assembler::Operand::Register(GPR1),
  1840. slow_case);
  1841. // Fast case: We have a cached `this` value!
  1842. store_accumulator(GPR0);
  1843. auto end = m_assembler.jump();
  1844. slow_case.link(m_assembler);
  1845. native_call((void*)cxx_resolve_this_binding);
  1846. store_accumulator(RET);
  1847. check_exception();
  1848. end.link(m_assembler);
  1849. }
  1850. static Value cxx_put_by_id(VM& vm, Value base, DeprecatedFlyString const& property, Value value, Bytecode::Op::PropertyKind kind, Bytecode::PropertyLookupCache& cache)
  1851. {
  1852. TRY_OR_SET_EXCEPTION(Bytecode::put_by_property_key(vm, base, base, value, property, kind, &cache));
  1853. return value;
  1854. }
  1855. void Compiler::extract_object_pointer(Assembler::Reg dst_object, Assembler::Reg src_value)
  1856. {
  1857. // This is basically Value::as_object() where src_value is the Value.
  1858. m_assembler.mov(
  1859. Assembler::Operand::Register(dst_object),
  1860. Assembler::Operand::Register(src_value));
  1861. m_assembler.shift_left(
  1862. Assembler::Operand::Register(dst_object),
  1863. Assembler::Operand::Imm(16));
  1864. m_assembler.arithmetic_right_shift(
  1865. Assembler::Operand::Register(dst_object),
  1866. Assembler::Operand::Imm(16));
  1867. }
  1868. void Compiler::compile_put_by_id(Bytecode::Op::PutById const& op)
  1869. {
  1870. auto& cache = m_bytecode_executable.property_lookup_caches[op.cache_index()];
  1871. load_vm_register(ARG1, op.base());
  1872. m_assembler.mov(
  1873. Assembler::Operand::Register(ARG5),
  1874. Assembler::Operand::Imm(bit_cast<u64>(&cache)));
  1875. Assembler::Label end;
  1876. Assembler::Label slow_case;
  1877. if (op.kind() == Bytecode::Op::PropertyKind::KeyValue) {
  1878. branch_if_object(ARG1, [&] {
  1879. extract_object_pointer(GPR0, ARG1);
  1880. // if (cache.shape != &object->shape()) goto slow_case;
  1881. m_assembler.mov(
  1882. Assembler::Operand::Register(GPR2),
  1883. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::shape_offset()));
  1884. m_assembler.mov(
  1885. Assembler::Operand::Register(GPR1),
  1886. Assembler::Operand::Mem64BaseAndOffset(ARG5, Bytecode::PropertyLookupCache::shape_offset()));
  1887. m_assembler.jump_if(
  1888. Assembler::Operand::Register(GPR1),
  1889. Assembler::Condition::EqualTo,
  1890. Assembler::Operand::Imm(0),
  1891. slow_case);
  1892. m_assembler.mov(
  1893. Assembler::Operand::Register(GPR1),
  1894. Assembler::Operand::Mem64BaseAndOffset(GPR1, AK::WeakLink::ptr_offset()));
  1895. m_assembler.jump_if(
  1896. Assembler::Operand::Register(GPR2),
  1897. Assembler::Condition::NotEqualTo,
  1898. Assembler::Operand::Register(GPR1),
  1899. slow_case);
  1900. // (!object->shape().is_unique() || object->shape().unique_shape_serial_number() == cache.unique_shape_serial_number)) {
  1901. Assembler::Label fast_case;
  1902. // GPR1 = object->shape().is_unique()
  1903. m_assembler.mov8(
  1904. Assembler::Operand::Register(GPR1),
  1905. Assembler::Operand::Mem64BaseAndOffset(GPR2, Shape::is_unique_offset()));
  1906. m_assembler.jump_if(
  1907. Assembler::Operand::Register(GPR1),
  1908. Assembler::Condition::EqualTo,
  1909. Assembler::Operand::Imm(0),
  1910. fast_case);
  1911. // GPR1 = object->shape().unique_shape_serial_number()
  1912. m_assembler.mov(
  1913. Assembler::Operand::Register(GPR1),
  1914. Assembler::Operand::Mem64BaseAndOffset(GPR2, Shape::unique_shape_serial_number_offset()));
  1915. // GPR2 = cache.unique_shape_serial_number
  1916. m_assembler.mov(
  1917. Assembler::Operand::Register(GPR2),
  1918. Assembler::Operand::Mem64BaseAndOffset(ARG5, Bytecode::PropertyLookupCache::unique_shape_serial_number_offset()));
  1919. // if (GPR1 != GPR2) goto slow_case;
  1920. m_assembler.jump_if(
  1921. Assembler::Operand::Register(GPR1),
  1922. Assembler::Condition::NotEqualTo,
  1923. Assembler::Operand::Register(GPR2),
  1924. slow_case);
  1925. fast_case.link(m_assembler);
  1926. // object->put_direct(*cache.property_offset, value);
  1927. // GPR0 = object
  1928. // GPR1 = *cache.property_offset * sizeof(Value)
  1929. m_assembler.mov(
  1930. Assembler::Operand::Register(GPR1),
  1931. Assembler::Operand::Mem64BaseAndOffset(ARG5, Bytecode::PropertyLookupCache::property_offset_offset() + decltype(cache.property_offset)::value_offset()));
  1932. m_assembler.mul32(
  1933. Assembler::Operand::Register(GPR1),
  1934. Assembler::Operand::Imm(sizeof(Value)),
  1935. slow_case);
  1936. // GPR0 = object->m_storage.outline_buffer
  1937. m_assembler.mov(
  1938. Assembler::Operand::Register(GPR0),
  1939. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::storage_offset() + Vector<Value>::outline_buffer_offset()));
  1940. // GPR0 = &object->m_storage.outline_buffer[*cache.property_offset]
  1941. m_assembler.add(
  1942. Assembler::Operand::Register(GPR0),
  1943. Assembler::Operand::Register(GPR1));
  1944. // *GPR0 = value
  1945. load_accumulator(GPR1);
  1946. m_assembler.mov(
  1947. Assembler::Operand::Mem64BaseAndOffset(GPR0, 0),
  1948. Assembler::Operand::Register(GPR1));
  1949. m_assembler.jump(end);
  1950. });
  1951. }
  1952. slow_case.link(m_assembler);
  1953. m_assembler.mov(
  1954. Assembler::Operand::Register(ARG2),
  1955. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  1956. load_accumulator(ARG3);
  1957. m_assembler.mov(
  1958. Assembler::Operand::Register(ARG4),
  1959. Assembler::Operand::Imm(to_underlying(op.kind())));
  1960. native_call((void*)cxx_put_by_id);
  1961. store_accumulator(RET);
  1962. check_exception();
  1963. end.link(m_assembler);
  1964. }
  1965. static Value cxx_put_by_value(VM& vm, Value base, Value property, Value value, Bytecode::Op::PropertyKind kind)
  1966. {
  1967. TRY_OR_SET_EXCEPTION(Bytecode::put_by_value(vm, base, property, value, kind));
  1968. return value;
  1969. }
  1970. void Compiler::compile_put_by_value(Bytecode::Op::PutByValue const& op)
  1971. {
  1972. load_vm_register(ARG1, op.base());
  1973. load_vm_register(ARG2, op.property());
  1974. Assembler::Label end {};
  1975. Assembler::Label slow_case {};
  1976. branch_if_object(ARG1, [&] {
  1977. branch_if_int32(ARG2, [&] {
  1978. // if (ARG2 < 0) goto slow_case;
  1979. m_assembler.mov(
  1980. Assembler::Operand::Register(GPR0),
  1981. Assembler::Operand::Register(ARG2));
  1982. m_assembler.sign_extend_32_to_64_bits(GPR0);
  1983. m_assembler.jump_if(
  1984. Assembler::Operand::Register(GPR0),
  1985. Assembler::Condition::SignedLessThan,
  1986. Assembler::Operand::Imm(0),
  1987. slow_case);
  1988. // GPR0 = extract_pointer(ARG1)
  1989. extract_object_pointer(GPR0, ARG1);
  1990. // if (object->may_interfere_with_indexed_property_access()) goto slow_case;
  1991. m_assembler.mov8(
  1992. Assembler::Operand::Register(GPR1),
  1993. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::may_interfere_with_indexed_property_access_offset()));
  1994. m_assembler.jump_if(
  1995. Assembler::Operand::Register(GPR1),
  1996. Assembler::Condition::NotEqualTo,
  1997. Assembler::Operand::Imm(0),
  1998. slow_case);
  1999. // GPR0 = object->indexed_properties().storage()
  2000. m_assembler.mov(
  2001. Assembler::Operand::Register(GPR0),
  2002. Assembler::Operand::Mem64BaseAndOffset(GPR0, Object::indexed_properties_offset() + IndexedProperties::storage_offset()));
  2003. // if (GPR0 == nullptr) goto slow_case;
  2004. m_assembler.jump_if(
  2005. Assembler::Operand::Register(GPR0),
  2006. Assembler::Condition::EqualTo,
  2007. Assembler::Operand::Imm(0),
  2008. slow_case);
  2009. // if (!GPR0->is_simple_storage()) goto slow_case;
  2010. m_assembler.mov8(
  2011. Assembler::Operand::Register(GPR1),
  2012. Assembler::Operand::Mem64BaseAndOffset(GPR0, IndexedPropertyStorage::is_simple_storage_offset()));
  2013. m_assembler.jump_if(
  2014. Assembler::Operand::Register(GPR1),
  2015. Assembler::Condition::EqualTo,
  2016. Assembler::Operand::Imm(0),
  2017. slow_case);
  2018. // GPR2 = extract_int32(ARG2)
  2019. m_assembler.mov32(
  2020. Assembler::Operand::Register(GPR2),
  2021. Assembler::Operand::Register(ARG2));
  2022. // if (GPR2 >= GPR0->array_like_size()) goto slow_case;
  2023. m_assembler.mov(
  2024. Assembler::Operand::Register(GPR1),
  2025. Assembler::Operand::Mem64BaseAndOffset(GPR0, SimpleIndexedPropertyStorage::array_size_offset()));
  2026. m_assembler.jump_if(
  2027. Assembler::Operand::Register(GPR2),
  2028. Assembler::Condition::SignedGreaterThanOrEqualTo,
  2029. Assembler::Operand::Register(GPR1),
  2030. slow_case);
  2031. // GPR0 = GPR0->elements().outline_buffer()
  2032. m_assembler.mov(
  2033. Assembler::Operand::Register(GPR0),
  2034. Assembler::Operand::Mem64BaseAndOffset(GPR0, SimpleIndexedPropertyStorage::elements_offset() + Vector<Value>::outline_buffer_offset()));
  2035. // GPR2 *= sizeof(Value)
  2036. m_assembler.mul32(
  2037. Assembler::Operand::Register(GPR2),
  2038. Assembler::Operand::Imm(sizeof(Value)),
  2039. slow_case);
  2040. // GPR0 = &GRP0[GPR2]
  2041. // GPR2 = *GPR0
  2042. m_assembler.add(
  2043. Assembler::Operand::Register(GPR0),
  2044. Assembler::Operand::Register(GPR2));
  2045. m_assembler.mov(
  2046. Assembler::Operand::Register(GPR2),
  2047. Assembler::Operand::Mem64BaseAndOffset(GPR0, 0));
  2048. // if (GPR2.is_accessor()) goto slow_case;
  2049. m_assembler.mov(Assembler::Operand::Register(GPR1), Assembler::Operand::Register(GPR2));
  2050. m_assembler.shift_right(Assembler::Operand::Register(GPR1), Assembler::Operand::Imm(TAG_SHIFT));
  2051. m_assembler.jump_if(
  2052. Assembler::Operand::Register(GPR1),
  2053. Assembler::Condition::EqualTo,
  2054. Assembler::Operand::Imm(ACCESSOR_TAG),
  2055. slow_case);
  2056. // GRP1 will clobber ARG3 in X86, so load it later.
  2057. load_accumulator(ARG3);
  2058. // *GPR0 = value
  2059. m_assembler.mov(
  2060. Assembler::Operand::Mem64BaseAndOffset(GPR0, 0),
  2061. Assembler::Operand::Register(ARG3));
  2062. // accumulator = ARG3;
  2063. store_accumulator(ARG3);
  2064. m_assembler.jump(end);
  2065. });
  2066. });
  2067. slow_case.link(m_assembler);
  2068. load_accumulator(ARG3);
  2069. m_assembler.mov(
  2070. Assembler::Operand::Register(ARG4),
  2071. Assembler::Operand::Imm(to_underlying(op.kind())));
  2072. native_call((void*)cxx_put_by_value);
  2073. store_accumulator(RET);
  2074. check_exception();
  2075. end.link(m_assembler);
  2076. }
  2077. static Value cxx_call(VM& vm, Value callee, u32 first_argument_index, u32 argument_count, Value this_value, Bytecode::Op::CallType call_type, Optional<Bytecode::StringTableIndex> const& expression_string)
  2078. {
  2079. TRY_OR_SET_EXCEPTION(throw_if_needed_for_call(vm.bytecode_interpreter(), callee, call_type, expression_string));
  2080. MarkedVector<Value> argument_values(vm.heap());
  2081. argument_values.ensure_capacity(argument_count);
  2082. for (u32 i = 0; i < argument_count; ++i) {
  2083. argument_values.unchecked_append(vm.bytecode_interpreter().reg(Bytecode::Register { first_argument_index + i }));
  2084. }
  2085. return TRY_OR_SET_EXCEPTION(perform_call(vm.bytecode_interpreter(), this_value, call_type, callee, move(argument_values)));
  2086. }
  2087. void Compiler::compile_call(Bytecode::Op::Call const& op)
  2088. {
  2089. load_vm_register(ARG1, op.callee());
  2090. m_assembler.mov(
  2091. Assembler::Operand::Register(ARG2),
  2092. Assembler::Operand::Imm(op.first_argument().index()));
  2093. m_assembler.mov(
  2094. Assembler::Operand::Register(ARG3),
  2095. Assembler::Operand::Imm(op.argument_count()));
  2096. load_vm_register(ARG4, op.this_value());
  2097. m_assembler.mov(
  2098. Assembler::Operand::Register(ARG5),
  2099. Assembler::Operand::Imm(to_underlying(op.call_type())));
  2100. m_assembler.mov(
  2101. Assembler::Operand::Register(GPR0),
  2102. Assembler::Operand::Imm(bit_cast<u64>(&op.expression_string())));
  2103. native_call((void*)cxx_call, { Assembler::Operand::Register(GPR0) });
  2104. store_accumulator(RET);
  2105. check_exception();
  2106. }
  2107. static Value cxx_call_with_argument_array(VM& vm, Value arguments, Value callee, Value this_value, Bytecode::Op::CallType call_type, Optional<Bytecode::StringTableIndex> const& expression_string)
  2108. {
  2109. TRY_OR_SET_EXCEPTION(throw_if_needed_for_call(vm.bytecode_interpreter(), callee, call_type, expression_string));
  2110. auto argument_values = Bytecode::argument_list_evaluation(vm, arguments);
  2111. return TRY_OR_SET_EXCEPTION(perform_call(vm.bytecode_interpreter(), this_value, call_type, callee, move(argument_values)));
  2112. }
  2113. void Compiler::compile_call_with_argument_array(Bytecode::Op::CallWithArgumentArray const& op)
  2114. {
  2115. load_accumulator(ARG1);
  2116. load_vm_register(ARG2, op.callee());
  2117. load_vm_register(ARG3, op.this_value());
  2118. m_assembler.mov(
  2119. Assembler::Operand::Register(ARG4),
  2120. Assembler::Operand::Imm(to_underlying(op.call_type())));
  2121. m_assembler.mov(
  2122. Assembler::Operand::Register(ARG5),
  2123. Assembler::Operand::Imm(bit_cast<u64>(&op.expression_string())));
  2124. native_call((void*)cxx_call_with_argument_array);
  2125. store_accumulator(RET);
  2126. check_exception();
  2127. }
  2128. static Value cxx_typeof_variable(VM& vm, DeprecatedFlyString const& identifier)
  2129. {
  2130. return TRY_OR_SET_EXCEPTION(Bytecode::typeof_variable(vm, identifier));
  2131. }
  2132. void Compiler::compile_typeof_variable(Bytecode::Op::TypeofVariable const& op)
  2133. {
  2134. m_assembler.mov(
  2135. Assembler::Operand::Register(ARG1),
  2136. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier().value()))));
  2137. native_call((void*)cxx_typeof_variable);
  2138. store_accumulator(RET);
  2139. check_exception();
  2140. }
  2141. static Value cxx_create_variable(
  2142. VM& vm,
  2143. DeprecatedFlyString const& name,
  2144. Bytecode::Op::EnvironmentMode mode,
  2145. bool is_global,
  2146. bool is_immutable,
  2147. bool is_strict)
  2148. {
  2149. TRY_OR_SET_EXCEPTION(Bytecode::create_variable(vm, name, mode, is_global, is_immutable, is_strict));
  2150. return {};
  2151. }
  2152. void Compiler::compile_create_variable(Bytecode::Op::CreateVariable const& op)
  2153. {
  2154. m_assembler.mov(
  2155. Assembler::Operand::Register(ARG1),
  2156. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier().value()))));
  2157. m_assembler.mov(
  2158. Assembler::Operand::Register(ARG2),
  2159. Assembler::Operand::Imm(to_underlying(op.mode())));
  2160. m_assembler.mov(
  2161. Assembler::Operand::Register(ARG3),
  2162. Assembler::Operand::Imm(static_cast<u64>(op.is_global())));
  2163. m_assembler.mov(
  2164. Assembler::Operand::Register(ARG4),
  2165. Assembler::Operand::Imm(static_cast<u64>(op.is_immutable())));
  2166. m_assembler.mov(
  2167. Assembler::Operand::Register(ARG5),
  2168. Assembler::Operand::Imm(static_cast<u64>(op.is_strict())));
  2169. native_call((void*)cxx_create_variable);
  2170. check_exception();
  2171. }
  2172. static Value cxx_set_variable(
  2173. VM& vm,
  2174. DeprecatedFlyString const& identifier,
  2175. Value value,
  2176. Bytecode::Op::EnvironmentMode environment_mode,
  2177. Bytecode::Op::SetVariable::InitializationMode initialization_mode)
  2178. {
  2179. TRY_OR_SET_EXCEPTION(Bytecode::set_variable(vm, identifier, value, environment_mode, initialization_mode));
  2180. return {};
  2181. }
  2182. void Compiler::compile_set_variable(Bytecode::Op::SetVariable const& op)
  2183. {
  2184. m_assembler.mov(
  2185. Assembler::Operand::Register(ARG1),
  2186. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier().value()))));
  2187. load_accumulator(ARG2);
  2188. m_assembler.mov(
  2189. Assembler::Operand::Register(ARG3),
  2190. Assembler::Operand::Imm(to_underlying(op.mode())));
  2191. m_assembler.mov(
  2192. Assembler::Operand::Register(ARG4),
  2193. Assembler::Operand::Imm(to_underlying(op.initialization_mode())));
  2194. native_call((void*)cxx_set_variable);
  2195. check_exception();
  2196. }
  2197. void Compiler::compile_continue_pending_unwind(Bytecode::Op::ContinuePendingUnwind const& op)
  2198. {
  2199. // re-throw the exception if we reached the end of the finally block and there was no catch block to handle it
  2200. load_vm_register(GPR0, Bytecode::Register::saved_exception());
  2201. store_vm_register(Bytecode::Register::exception(), GPR0);
  2202. m_assembler.mov(Assembler::Operand::Register(GPR1), Assembler::Operand::Imm(Value().encoded()));
  2203. store_vm_register(Bytecode::Register::saved_exception(), GPR1);
  2204. check_exception();
  2205. // if (saved_return_value.is_empty()) goto resume_block;
  2206. load_vm_register(GPR0, Bytecode::Register::saved_return_value());
  2207. m_assembler.jump_if(
  2208. Assembler::Operand::Register(GPR0),
  2209. Assembler::Condition::EqualTo,
  2210. Assembler::Operand::Register(GPR1),
  2211. label_for(op.resume_target().block()));
  2212. // finish the pending return from the try block
  2213. store_vm_register(Bytecode::Register::return_value(), GPR0);
  2214. jump_to_exit();
  2215. }
  2216. static void cxx_create_lexical_environment(VM& vm)
  2217. {
  2218. auto make_and_swap_envs = [&](auto& old_environment) {
  2219. GCPtr<Environment> environment = new_declarative_environment(*old_environment).ptr();
  2220. swap(old_environment, environment);
  2221. return environment;
  2222. };
  2223. vm.bytecode_interpreter().saved_lexical_environment_stack().append(make_and_swap_envs(vm.running_execution_context().lexical_environment));
  2224. }
  2225. void Compiler::compile_create_lexical_environment(Bytecode::Op::CreateLexicalEnvironment const&)
  2226. {
  2227. native_call((void*)cxx_create_lexical_environment);
  2228. }
  2229. static void cxx_leave_lexical_environment(VM& vm)
  2230. {
  2231. vm.running_execution_context().lexical_environment = vm.bytecode_interpreter().saved_lexical_environment_stack().take_last();
  2232. }
  2233. void Compiler::compile_leave_lexical_environment(Bytecode::Op::LeaveLexicalEnvironment const&)
  2234. {
  2235. native_call((void*)cxx_leave_lexical_environment);
  2236. }
  2237. static Value cxx_enter_object_environment(VM& vm, Value value)
  2238. {
  2239. auto object = TRY_OR_SET_EXCEPTION(value.to_object(vm));
  2240. vm.bytecode_interpreter().enter_object_environment(*object);
  2241. return {};
  2242. }
  2243. void Compiler::compile_enter_object_environment(Bytecode::Op::EnterObjectEnvironment const&)
  2244. {
  2245. load_accumulator(ARG1);
  2246. native_call((void*)cxx_enter_object_environment);
  2247. check_exception();
  2248. }
  2249. static Value cxx_concat_string(VM& vm, Value lhs, Value rhs)
  2250. {
  2251. auto string = TRY_OR_SET_EXCEPTION(rhs.to_primitive_string(vm));
  2252. return PrimitiveString::create(vm, lhs.as_string(), string);
  2253. }
  2254. void Compiler::compile_concat_string(Bytecode::Op::ConcatString const& op)
  2255. {
  2256. load_vm_register(ARG1, op.lhs());
  2257. load_accumulator(ARG2);
  2258. native_call((void*)cxx_concat_string);
  2259. store_vm_register(op.lhs(), RET);
  2260. check_exception();
  2261. }
  2262. static void cxx_block_declaration_instantiation(VM& vm, ScopeNode const& scope_node)
  2263. {
  2264. auto old_environment = vm.running_execution_context().lexical_environment;
  2265. vm.bytecode_interpreter().saved_lexical_environment_stack().append(old_environment);
  2266. vm.running_execution_context().lexical_environment = new_declarative_environment(*old_environment);
  2267. scope_node.block_declaration_instantiation(vm, vm.running_execution_context().lexical_environment);
  2268. }
  2269. void Compiler::compile_block_declaration_instantiation(Bytecode::Op::BlockDeclarationInstantiation const& op)
  2270. {
  2271. m_assembler.mov(
  2272. Assembler::Operand::Register(ARG1),
  2273. Assembler::Operand::Imm(bit_cast<u64>(&op.scope_node())));
  2274. native_call((void*)cxx_block_declaration_instantiation);
  2275. }
  2276. static Value cxx_super_call_with_argument_array(VM& vm, Value argument_array, bool is_synthetic)
  2277. {
  2278. return TRY_OR_SET_EXCEPTION(Bytecode::super_call_with_argument_array(vm, argument_array, is_synthetic));
  2279. }
  2280. void Compiler::compile_super_call_with_argument_array(Bytecode::Op::SuperCallWithArgumentArray const& op)
  2281. {
  2282. load_accumulator(ARG1);
  2283. m_assembler.mov(
  2284. Assembler::Operand::Register(ARG2),
  2285. Assembler::Operand::Imm(static_cast<u64>(op.is_synthetic())));
  2286. native_call((void*)cxx_super_call_with_argument_array);
  2287. store_accumulator(RET);
  2288. check_exception();
  2289. }
  2290. static Value cxx_get_iterator(VM& vm, Value value, IteratorHint hint)
  2291. {
  2292. auto iterator = TRY_OR_SET_EXCEPTION(get_iterator(vm, value, hint));
  2293. return Bytecode::iterator_to_object(vm, iterator);
  2294. }
  2295. void Compiler::compile_get_iterator(Bytecode::Op::GetIterator const& op)
  2296. {
  2297. load_accumulator(ARG1);
  2298. m_assembler.mov(
  2299. Assembler::Operand::Register(ARG2),
  2300. Assembler::Operand::Imm(to_underlying(op.hint())));
  2301. native_call((void*)cxx_get_iterator);
  2302. store_accumulator(RET);
  2303. check_exception();
  2304. }
  2305. static Value cxx_iterator_next(VM& vm, Value iterator)
  2306. {
  2307. auto iterator_object = TRY_OR_SET_EXCEPTION(iterator.to_object(vm));
  2308. auto iterator_record = Bytecode::object_to_iterator(vm, iterator_object);
  2309. return TRY_OR_SET_EXCEPTION(iterator_next(vm, iterator_record));
  2310. }
  2311. void Compiler::compile_iterator_next(Bytecode::Op::IteratorNext const&)
  2312. {
  2313. load_accumulator(ARG1);
  2314. native_call((void*)cxx_iterator_next);
  2315. store_accumulator(RET);
  2316. check_exception();
  2317. }
  2318. static Value cxx_iterator_result_done(VM& vm, Value iterator)
  2319. {
  2320. auto iterator_result = TRY_OR_SET_EXCEPTION(iterator.to_object(vm));
  2321. return Value(TRY_OR_SET_EXCEPTION(iterator_complete(vm, iterator_result)));
  2322. }
  2323. void Compiler::compile_iterator_result_done(Bytecode::Op::IteratorResultDone const&)
  2324. {
  2325. load_accumulator(ARG1);
  2326. native_call((void*)cxx_iterator_result_done);
  2327. store_accumulator(RET);
  2328. check_exception();
  2329. }
  2330. static Value cxx_throw_if_not_object(VM& vm, Value value)
  2331. {
  2332. if (!value.is_object())
  2333. TRY_OR_SET_EXCEPTION(vm.throw_completion<TypeError>(ErrorType::NotAnObject, value.to_string_without_side_effects()));
  2334. return {};
  2335. }
  2336. void Compiler::compile_throw_if_not_object(Bytecode::Op::ThrowIfNotObject const&)
  2337. {
  2338. load_accumulator(ARG1);
  2339. native_call((void*)cxx_throw_if_not_object);
  2340. check_exception();
  2341. }
  2342. static Value cxx_throw_if_nullish(VM& vm, Value value)
  2343. {
  2344. if (value.is_nullish())
  2345. TRY_OR_SET_EXCEPTION(vm.throw_completion<TypeError>(ErrorType::NotObjectCoercible, value.to_string_without_side_effects()));
  2346. return {};
  2347. }
  2348. void Compiler::compile_throw_if_nullish(Bytecode::Op::ThrowIfNullish const&)
  2349. {
  2350. load_accumulator(ARG1);
  2351. native_call((void*)cxx_throw_if_nullish);
  2352. check_exception();
  2353. }
  2354. static Value cxx_iterator_result_value(VM& vm, Value iterator)
  2355. {
  2356. auto iterator_result = TRY_OR_SET_EXCEPTION(iterator.to_object(vm));
  2357. return TRY_OR_SET_EXCEPTION(iterator_value(vm, iterator_result));
  2358. }
  2359. void Compiler::compile_iterator_result_value(Bytecode::Op::IteratorResultValue const&)
  2360. {
  2361. load_accumulator(ARG1);
  2362. native_call((void*)cxx_iterator_result_value);
  2363. store_accumulator(RET);
  2364. check_exception();
  2365. }
  2366. static Value cxx_iterator_close(VM& vm, Value iterator, Completion::Type completion_type, Optional<Value> const& completion_value)
  2367. {
  2368. auto iterator_object = TRY_OR_SET_EXCEPTION(iterator.to_object(vm));
  2369. auto iterator_record = Bytecode::object_to_iterator(vm, iterator_object);
  2370. // FIXME: Return the value of the resulting completion. (Note that m_completion_value can be empty!)
  2371. TRY_OR_SET_EXCEPTION(iterator_close(vm, iterator_record, Completion { completion_type, completion_value, {} }));
  2372. return {};
  2373. }
  2374. void Compiler::compile_iterator_close(Bytecode::Op::IteratorClose const& op)
  2375. {
  2376. load_accumulator(ARG1);
  2377. m_assembler.mov(
  2378. Assembler::Operand::Register(ARG2),
  2379. Assembler::Operand::Imm(to_underlying(op.completion_type())));
  2380. m_assembler.mov(
  2381. Assembler::Operand::Register(ARG3),
  2382. Assembler::Operand::Imm(bit_cast<u64>(&op.completion_value())));
  2383. native_call((void*)cxx_iterator_close);
  2384. check_exception();
  2385. }
  2386. static Value iterator_to_array(VM& vm, Value iterator)
  2387. {
  2388. return TRY_OR_SET_EXCEPTION(Bytecode::iterator_to_array(vm, iterator));
  2389. }
  2390. void Compiler::compile_iterator_to_array(Bytecode::Op::IteratorToArray const&)
  2391. {
  2392. load_accumulator(ARG1);
  2393. native_call((void*)iterator_to_array);
  2394. store_accumulator(RET);
  2395. check_exception();
  2396. }
  2397. static Value cxx_append(VM& vm, Value lhs, Value rhs, bool is_spread)
  2398. {
  2399. TRY_OR_SET_EXCEPTION(Bytecode::append(vm, lhs, rhs, is_spread));
  2400. return {};
  2401. }
  2402. void Compiler::compile_append(Bytecode::Op::Append const& op)
  2403. {
  2404. load_vm_register(ARG1, op.lhs());
  2405. load_accumulator(ARG2);
  2406. m_assembler.mov(
  2407. Assembler::Operand::Register(ARG3),
  2408. Assembler::Operand::Imm(static_cast<u64>(op.is_spread())));
  2409. native_call((void*)cxx_append);
  2410. check_exception();
  2411. }
  2412. static Value cxx_delete_by_id(VM& vm, Value base, Bytecode::IdentifierTableIndex property)
  2413. {
  2414. return TRY_OR_SET_EXCEPTION(Bytecode::delete_by_id(vm.bytecode_interpreter(), base, property));
  2415. }
  2416. void Compiler::compile_delete_by_id(Bytecode::Op::DeleteById const& op)
  2417. {
  2418. load_accumulator(ARG1);
  2419. m_assembler.mov(
  2420. Assembler::Operand::Register(ARG2),
  2421. Assembler::Operand::Imm(op.property().value()));
  2422. native_call((void*)cxx_delete_by_id);
  2423. store_accumulator(RET);
  2424. check_exception();
  2425. }
  2426. static Value cxx_delete_by_value(VM& vm, Value base_value, Value property_key_value)
  2427. {
  2428. return TRY_OR_SET_EXCEPTION(Bytecode::delete_by_value(vm.bytecode_interpreter(), base_value, property_key_value));
  2429. }
  2430. void Compiler::compile_delete_by_value(Bytecode::Op::DeleteByValue const& op)
  2431. {
  2432. load_vm_register(ARG1, op.base());
  2433. load_accumulator(ARG2);
  2434. native_call((void*)cxx_delete_by_value);
  2435. store_accumulator(RET);
  2436. check_exception();
  2437. }
  2438. static Value cxx_delete_by_value_with_this(VM& vm, Value base_value, Value property_key_value, Value this_value)
  2439. {
  2440. return TRY_OR_SET_EXCEPTION(Bytecode::delete_by_value_with_this(vm.bytecode_interpreter(), base_value, property_key_value, this_value));
  2441. }
  2442. void Compiler::compile_delete_by_value_with_this(Bytecode::Op::DeleteByValueWithThis const& op)
  2443. {
  2444. load_vm_register(ARG1, op.base());
  2445. load_accumulator(ARG2);
  2446. load_vm_register(ARG3, op.this_value());
  2447. native_call((void*)cxx_delete_by_value_with_this);
  2448. store_accumulator(RET);
  2449. check_exception();
  2450. }
  2451. static Value cxx_get_object_property_iterator(VM& vm, Value object)
  2452. {
  2453. return TRY_OR_SET_EXCEPTION(Bytecode::get_object_property_iterator(vm, object));
  2454. }
  2455. void Compiler::compile_get_object_property_iterator(Bytecode::Op::GetObjectPropertyIterator const&)
  2456. {
  2457. load_accumulator(ARG1);
  2458. native_call((void*)cxx_get_object_property_iterator);
  2459. store_accumulator(RET);
  2460. check_exception();
  2461. }
  2462. static Value cxx_get_private_by_id(VM& vm, Value base_value, DeprecatedFlyString& name)
  2463. {
  2464. auto private_reference = make_private_reference(vm, base_value, name);
  2465. return TRY_OR_SET_EXCEPTION(private_reference.get_value(vm));
  2466. }
  2467. void Compiler::compile_get_private_by_id(Bytecode::Op::GetPrivateById const& op)
  2468. {
  2469. load_accumulator(ARG1);
  2470. m_assembler.mov(
  2471. Assembler::Operand::Register(ARG2),
  2472. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  2473. native_call((void*)cxx_get_private_by_id);
  2474. store_accumulator(RET);
  2475. check_exception();
  2476. }
  2477. static Value cxx_resolve_super_base(VM& vm)
  2478. {
  2479. // 1. Let env be GetThisEnvironment().
  2480. auto& env = verify_cast<FunctionEnvironment>(*get_this_environment(vm));
  2481. // 2. Assert: env.HasSuperBinding() is true.
  2482. VERIFY(env.has_super_binding());
  2483. // 3. Let baseValue be ? env.GetSuperBase().
  2484. return TRY_OR_SET_EXCEPTION(env.get_super_base());
  2485. }
  2486. void Compiler::compile_resolve_super_base(Bytecode::Op::ResolveSuperBase const&)
  2487. {
  2488. native_call((void*)cxx_resolve_super_base);
  2489. store_accumulator(RET);
  2490. check_exception();
  2491. }
  2492. static Value cxx_get_by_id_with_this(VM& vm, DeprecatedFlyString const& property, Value base_value, Value this_value, Bytecode::PropertyLookupCache& cache)
  2493. {
  2494. return TRY_OR_SET_EXCEPTION(Bytecode::get_by_id(vm, property, base_value, this_value, cache));
  2495. }
  2496. void Compiler::compile_get_by_id_with_this(Bytecode::Op::GetByIdWithThis const& op)
  2497. {
  2498. m_assembler.mov(
  2499. Assembler::Operand::Register(ARG1),
  2500. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  2501. load_accumulator(ARG2);
  2502. load_vm_register(ARG3, op.this_value());
  2503. m_assembler.mov(
  2504. Assembler::Operand::Register(ARG4),
  2505. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.property_lookup_caches[op.cache_index()])));
  2506. native_call((void*)cxx_get_by_id_with_this);
  2507. store_accumulator(RET);
  2508. check_exception();
  2509. }
  2510. static Value cxx_get_by_value_with_this(VM& vm, Value property_key_value, Value base, Value this_value)
  2511. {
  2512. auto object = TRY_OR_SET_EXCEPTION(base.to_object(vm));
  2513. auto property_key = TRY_OR_SET_EXCEPTION(property_key_value.to_property_key(vm));
  2514. return TRY_OR_SET_EXCEPTION(object->internal_get(property_key, this_value));
  2515. }
  2516. void Compiler::compile_get_by_value_with_this(Bytecode::Op::GetByValueWithThis const& op)
  2517. {
  2518. load_accumulator(ARG1);
  2519. load_vm_register(ARG2, op.base());
  2520. load_vm_register(ARG3, op.this_value());
  2521. native_call((void*)cxx_get_by_value_with_this);
  2522. store_accumulator(RET);
  2523. check_exception();
  2524. }
  2525. static Value cxx_delete_by_id_with_this(VM& vm, Value base_value, DeprecatedFlyString const& identifier, Value this_value)
  2526. {
  2527. auto reference = Reference { base_value, identifier, this_value, vm.in_strict_mode() };
  2528. return Value(TRY_OR_SET_EXCEPTION(reference.delete_(vm)));
  2529. }
  2530. void Compiler::compile_delete_by_id_with_this(Bytecode::Op::DeleteByIdWithThis const& op)
  2531. {
  2532. load_accumulator(ARG1);
  2533. m_assembler.mov(
  2534. Assembler::Operand::Register(ARG2),
  2535. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  2536. load_vm_register(ARG3, op.this_value());
  2537. native_call((void*)cxx_delete_by_id_with_this);
  2538. store_accumulator(RET);
  2539. }
  2540. static Value cxx_put_by_id_with_this(VM& vm, Value base, Value value, DeprecatedFlyString const& name, Value this_value, Bytecode::Op::PropertyKind kind, Bytecode::PropertyLookupCache& cache)
  2541. {
  2542. TRY_OR_SET_EXCEPTION(Bytecode::put_by_property_key(vm, base, this_value, value, name, kind, &cache));
  2543. return {};
  2544. }
  2545. void Compiler::compile_put_by_id_with_this(Bytecode::Op::PutByIdWithThis const& op)
  2546. {
  2547. load_vm_register(ARG1, op.base());
  2548. load_accumulator(ARG2);
  2549. m_assembler.mov(
  2550. Assembler::Operand::Register(ARG3),
  2551. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  2552. load_vm_register(ARG4, op.this_value());
  2553. m_assembler.mov(
  2554. Assembler::Operand::Register(ARG5),
  2555. Assembler::Operand::Imm(to_underlying(op.kind())));
  2556. m_assembler.mov(
  2557. Assembler::Operand::Register(GPR0),
  2558. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.property_lookup_caches[op.cache_index()])));
  2559. native_call((void*)cxx_put_by_id_with_this, { Assembler::Operand::Register(GPR0) });
  2560. check_exception();
  2561. }
  2562. static Value cxx_put_private_by_id(VM& vm, Value base, Value value, DeprecatedFlyString const& name)
  2563. {
  2564. auto object = TRY_OR_SET_EXCEPTION(base.to_object(vm));
  2565. auto private_reference = make_private_reference(vm, object, name);
  2566. TRY_OR_SET_EXCEPTION(private_reference.put_value(vm, value));
  2567. return value;
  2568. }
  2569. void Compiler::compile_put_private_by_id(Bytecode::Op::PutPrivateById const& op)
  2570. {
  2571. load_vm_register(ARG1, op.base());
  2572. load_accumulator(ARG2);
  2573. m_assembler.mov(
  2574. Assembler::Operand::Register(ARG3),
  2575. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  2576. native_call((void*)cxx_put_private_by_id);
  2577. store_accumulator(RET);
  2578. check_exception();
  2579. }
  2580. static Value cxx_import_call(VM& vm, Value specifier, Value options)
  2581. {
  2582. return TRY_OR_SET_EXCEPTION(perform_import_call(vm, specifier, options));
  2583. }
  2584. void Compiler::compile_import_call(Bytecode::Op::ImportCall const& op)
  2585. {
  2586. load_vm_register(ARG1, op.specifier());
  2587. load_vm_register(ARG2, op.options());
  2588. native_call((void*)cxx_import_call);
  2589. store_accumulator(RET);
  2590. check_exception();
  2591. }
  2592. static Value cxx_get_import_meta(VM& vm)
  2593. {
  2594. return vm.get_import_meta();
  2595. }
  2596. void Compiler::compile_get_import_meta(Bytecode::Op::GetImportMeta const&)
  2597. {
  2598. native_call((void*)cxx_get_import_meta);
  2599. store_accumulator(RET);
  2600. }
  2601. static Value cxx_delete_variable(VM& vm, DeprecatedFlyString const& identifier)
  2602. {
  2603. auto reference = TRY_OR_SET_EXCEPTION(vm.resolve_binding(identifier));
  2604. return Value(TRY_OR_SET_EXCEPTION(reference.delete_(vm)));
  2605. }
  2606. void Compiler::compile_delete_variable(Bytecode::Op::DeleteVariable const& op)
  2607. {
  2608. m_assembler.mov(
  2609. Assembler::Operand::Register(ARG1),
  2610. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier().value()))));
  2611. native_call((void*)cxx_delete_variable);
  2612. store_accumulator(RET);
  2613. check_exception();
  2614. }
  2615. static Value cxx_get_method(VM& vm, Value value, DeprecatedFlyString const& identifier)
  2616. {
  2617. auto method = TRY_OR_SET_EXCEPTION(value.get_method(vm, identifier));
  2618. return method ?: js_undefined();
  2619. }
  2620. void Compiler::compile_get_method(Bytecode::Op::GetMethod const& op)
  2621. {
  2622. load_accumulator(ARG1);
  2623. m_assembler.mov(
  2624. Assembler::Operand::Register(ARG2),
  2625. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  2626. native_call((void*)cxx_get_method);
  2627. store_accumulator(RET);
  2628. check_exception();
  2629. }
  2630. static Value cxx_get_new_target(VM& vm)
  2631. {
  2632. return vm.get_new_target();
  2633. }
  2634. void Compiler::compile_get_new_target(Bytecode::Op::GetNewTarget const&)
  2635. {
  2636. native_call((void*)cxx_get_new_target);
  2637. store_accumulator(RET);
  2638. }
  2639. static Value cxx_has_private_id(VM& vm, Value object, DeprecatedFlyString const& identifier)
  2640. {
  2641. if (!object.is_object())
  2642. TRY_OR_SET_EXCEPTION(vm.throw_completion<TypeError>(ErrorType::InOperatorWithObject));
  2643. auto private_environment = vm.running_execution_context().private_environment;
  2644. VERIFY(private_environment);
  2645. auto private_name = private_environment->resolve_private_identifier(identifier);
  2646. return Value(object.as_object().private_element_find(private_name) != nullptr);
  2647. }
  2648. void Compiler::compile_has_private_id(Bytecode::Op::HasPrivateId const& op)
  2649. {
  2650. load_accumulator(ARG1);
  2651. m_assembler.mov(
  2652. Assembler::Operand::Register(ARG2),
  2653. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.property()))));
  2654. native_call((void*)cxx_has_private_id);
  2655. store_accumulator(RET);
  2656. check_exception();
  2657. }
  2658. # define COMPILE_NEW_BUILTIN_ERROR_OP(NewErrorName, new_error_name, ErrorName) \
  2659. static Value cxx_##new_error_name(VM& vm, DeprecatedString const& error_string) \
  2660. { \
  2661. return ErrorName::create(*vm.current_realm(), error_string); \
  2662. } \
  2663. \
  2664. void Compiler::compile_##new_error_name(Bytecode::Op::NewErrorName const& op) \
  2665. { \
  2666. m_assembler.mov( \
  2667. Assembler::Operand::Register(ARG1), \
  2668. Assembler::Operand::Imm(bit_cast<u64>(&m_bytecode_executable.get_string(op.error_string())))); \
  2669. native_call((void*)cxx_##new_error_name); \
  2670. store_accumulator(RET); \
  2671. }
  2672. JS_ENUMERATE_NEW_BUILTIN_ERROR_BYTECODE_OPS(COMPILE_NEW_BUILTIN_ERROR_OP)
  2673. # undef COMPILE_NEW_BUILTIN_ERROR_OP
  2674. static Value cxx_put_by_value_with_this(VM& vm, Value base, Value value, Value name, Value this_value, Bytecode::Op::PropertyKind kind)
  2675. {
  2676. auto property_key = kind != Bytecode::Op::PropertyKind::Spread ? TRY_OR_SET_EXCEPTION(name.to_property_key(vm)) : PropertyKey {};
  2677. TRY_OR_SET_EXCEPTION(Bytecode::put_by_property_key(vm, base, this_value, value, property_key, kind));
  2678. return value;
  2679. }
  2680. void Compiler::compile_put_by_value_with_this(Bytecode::Op::PutByValueWithThis const& op)
  2681. {
  2682. load_vm_register(ARG1, op.base());
  2683. load_accumulator(ARG2);
  2684. if (op.kind() != Bytecode::Op::PropertyKind::Spread) {
  2685. load_vm_register(ARG3, op.property());
  2686. } else {
  2687. m_assembler.mov(
  2688. Assembler::Operand::Register(ARG3),
  2689. Assembler::Operand::Imm(Value().encoded()));
  2690. }
  2691. load_vm_register(ARG4, op.this_value());
  2692. m_assembler.mov(
  2693. Assembler::Operand::Register(ARG5),
  2694. Assembler::Operand::Imm(to_underlying(op.kind())));
  2695. native_call((void*)cxx_put_by_value_with_this);
  2696. store_accumulator(RET);
  2697. check_exception();
  2698. }
  2699. static Value cxx_copy_object_excluding_properties(VM& vm, Value from_object, u64 excluded_names_count, Value* excluded_names)
  2700. {
  2701. auto& realm = *vm.current_realm();
  2702. auto to_object = Object::create(realm, realm.intrinsics().object_prototype());
  2703. HashTable<PropertyKey> excluded_names_table;
  2704. for (size_t i = 0; i < excluded_names_count; ++i) {
  2705. excluded_names_table.set(TRY_OR_SET_EXCEPTION(excluded_names[i].to_property_key(vm)));
  2706. }
  2707. TRY_OR_SET_EXCEPTION(to_object->copy_data_properties(vm, from_object, excluded_names_table));
  2708. return to_object;
  2709. }
  2710. void Compiler::compile_copy_object_excluding_properties(Bytecode::Op::CopyObjectExcludingProperties const& op)
  2711. {
  2712. load_vm_register(ARG1, op.from_object());
  2713. m_assembler.mov(
  2714. Assembler::Operand::Register(ARG2),
  2715. Assembler::Operand::Imm(op.excluded_names_count()));
  2716. // Build `Value arg3[op.excluded_names_count()] {...}` on the stack.
  2717. auto stack_space = align_up_to(op.excluded_names_count() * sizeof(Value), 16);
  2718. m_assembler.sub(Assembler::Operand::Register(STACK_POINTER), Assembler::Operand::Imm(stack_space));
  2719. m_assembler.mov(Assembler::Operand::Register(ARG3), Assembler::Operand::Register(STACK_POINTER));
  2720. for (size_t i = 0; i < op.excluded_names_count(); ++i) {
  2721. load_vm_register(GPR0, op.excluded_names()[i]);
  2722. m_assembler.mov(Assembler::Operand::Mem64BaseAndOffset(ARG3, i * sizeof(Value)), Assembler::Operand::Register(GPR0));
  2723. }
  2724. native_call((void*)cxx_copy_object_excluding_properties);
  2725. // Restore the stack pointer / discard array.
  2726. m_assembler.add(Assembler::Operand::Register(STACK_POINTER), Assembler::Operand::Imm(stack_space));
  2727. store_accumulator(RET);
  2728. check_exception();
  2729. }
  2730. static Value cxx_async_iterator_close(VM& vm, Value iterator, Completion::Type completion_type, Optional<Value> const& completion_value)
  2731. {
  2732. auto iterator_object = TRY_OR_SET_EXCEPTION(iterator.to_object(vm));
  2733. auto iterator_record = Bytecode::object_to_iterator(vm, iterator_object);
  2734. // FIXME: Return the value of the resulting completion. (Note that completion_value can be empty!)
  2735. TRY_OR_SET_EXCEPTION(async_iterator_close(vm, iterator_record, Completion { completion_type, completion_value, {} }));
  2736. return {};
  2737. }
  2738. void Compiler::compile_async_iterator_close(Bytecode::Op::AsyncIteratorClose const& op)
  2739. {
  2740. load_accumulator(ARG1);
  2741. m_assembler.mov(
  2742. Assembler::Operand::Register(ARG2),
  2743. Assembler::Operand::Imm(to_underlying(op.completion_type())));
  2744. m_assembler.mov(
  2745. Assembler::Operand::Register(ARG3),
  2746. Assembler::Operand::Imm(bit_cast<u64>(&op.completion_value())));
  2747. native_call((void*)cxx_async_iterator_close);
  2748. check_exception();
  2749. }
  2750. static Value cxx_continuation(VM& vm, Value value, Value continuation, Value is_await)
  2751. {
  2752. auto object = Object::create(*vm.current_realm(), nullptr);
  2753. object->define_direct_property("result", value.value_or(js_undefined()), JS::default_attributes);
  2754. object->define_direct_property("continuation", continuation, JS::default_attributes);
  2755. object->define_direct_property("isAwait", is_await, JS::default_attributes);
  2756. return object;
  2757. }
  2758. void Compiler::compile_continuation(Optional<Bytecode::Label> continuation, bool is_await)
  2759. {
  2760. load_accumulator(ARG1);
  2761. if (continuation.has_value()) {
  2762. // FIXME: If we get a pointer, which is not accurately representable as a double
  2763. // will cause this to explode
  2764. auto continuation_value = Value(static_cast<double>(bit_cast<u64>(&continuation->block())));
  2765. m_assembler.mov(
  2766. Assembler::Operand::Register(ARG2),
  2767. Assembler::Operand::Imm(continuation_value.encoded()));
  2768. } else {
  2769. m_assembler.mov(
  2770. Assembler::Operand::Register(ARG2),
  2771. Assembler::Operand::Imm(Value(0).encoded()));
  2772. }
  2773. m_assembler.mov(
  2774. Assembler::Operand::Register(ARG3),
  2775. Assembler::Operand::Imm(Value(is_await).encoded()));
  2776. native_call((void*)cxx_continuation);
  2777. store_vm_register(Bytecode::Register::return_value(), RET);
  2778. // FIXME: This should run the finalizer if it is a return
  2779. jump_to_exit();
  2780. }
  2781. void Compiler::compile_yield(Bytecode::Op::Yield const& op)
  2782. {
  2783. compile_continuation(op.continuation(), false);
  2784. }
  2785. void Compiler::compile_await(Bytecode::Op::Await const& op)
  2786. {
  2787. compile_continuation(op.continuation(), true);
  2788. }
  2789. void Compiler::jump_to_exit()
  2790. {
  2791. m_assembler.jump(m_exit_label);
  2792. }
  2793. void Compiler::native_call(void* function_address, Vector<Assembler::Operand> const& stack_arguments)
  2794. {
  2795. // NOTE: We don't preserve caller-saved registers when making a native call.
  2796. // This means that they may have changed after we return from the call.
  2797. m_assembler.native_call(bit_cast<u64>(function_address), { Assembler::Operand::Register(ARG0) }, stack_arguments);
  2798. }
  2799. OwnPtr<NativeExecutable> Compiler::compile(Bytecode::Executable& bytecode_executable)
  2800. {
  2801. if (!getenv("LIBJS_JIT"))
  2802. return nullptr;
  2803. Compiler compiler { bytecode_executable };
  2804. Vector<BytecodeMapping> mapping;
  2805. mapping.append({
  2806. .native_offset = compiler.m_output.size(),
  2807. .block_index = BytecodeMapping::EXECUTABLE,
  2808. .bytecode_offset = 0,
  2809. });
  2810. compiler.m_assembler.enter();
  2811. compiler.m_assembler.mov(
  2812. Assembler::Operand::Register(REGISTER_ARRAY_BASE),
  2813. Assembler::Operand::Register(ARG1));
  2814. compiler.m_assembler.mov(
  2815. Assembler::Operand::Register(LOCALS_ARRAY_BASE),
  2816. Assembler::Operand::Register(ARG2));
  2817. compiler.m_assembler.mov(
  2818. Assembler::Operand::Register(RUNNING_EXECUTION_CONTEXT_BASE),
  2819. Assembler::Operand::Register(ARG4));
  2820. compiler.reload_cached_accumulator();
  2821. Assembler::Label normal_entry {};
  2822. compiler.m_assembler.jump_if(
  2823. Assembler::Operand::Register(ARG3),
  2824. Assembler::Condition::EqualTo,
  2825. Assembler::Operand::Imm(0),
  2826. normal_entry);
  2827. compiler.m_assembler.jump(Assembler::Operand::Register(ARG3));
  2828. normal_entry.link(compiler.m_assembler);
  2829. for (size_t block_index = 0; block_index < bytecode_executable.basic_blocks.size(); block_index++) {
  2830. auto& block = bytecode_executable.basic_blocks[block_index];
  2831. compiler.block_data_for(*block).start_offset = compiler.m_output.size();
  2832. compiler.set_current_block(*block);
  2833. auto it = Bytecode::InstructionStreamIterator(block->instruction_stream());
  2834. if (it.at_end()) {
  2835. mapping.append({
  2836. .native_offset = compiler.m_output.size(),
  2837. .block_index = block_index,
  2838. .bytecode_offset = 0,
  2839. });
  2840. }
  2841. while (!it.at_end()) {
  2842. auto const& op = *it;
  2843. mapping.append({
  2844. .native_offset = compiler.m_output.size(),
  2845. .block_index = block_index,
  2846. .bytecode_offset = it.offset(),
  2847. });
  2848. switch (op.type()) {
  2849. # define CASE_BYTECODE_OP(OpTitleCase, op_snake_case, ...) \
  2850. case Bytecode::Instruction::Type::OpTitleCase: \
  2851. compiler.compile_##op_snake_case(static_cast<Bytecode::Op::OpTitleCase const&>(op)); \
  2852. break;
  2853. JS_ENUMERATE_IMPLEMENTED_JIT_OPS(CASE_BYTECODE_OP)
  2854. # undef CASE_BYTECODE_OP
  2855. default:
  2856. if constexpr (LOG_JIT_FAILURE) {
  2857. dbgln("\033[31;1mJIT compilation failed\033[0m: {}", bytecode_executable.name);
  2858. dbgln("Unsupported bytecode op: {}", op.to_deprecated_string(bytecode_executable));
  2859. }
  2860. return nullptr;
  2861. }
  2862. ++it;
  2863. }
  2864. if (!block->is_terminated())
  2865. compiler.jump_to_exit();
  2866. }
  2867. mapping.append({
  2868. .native_offset = compiler.m_output.size(),
  2869. .block_index = BytecodeMapping::EXECUTABLE,
  2870. .bytecode_offset = 1,
  2871. });
  2872. compiler.m_exit_label.link(compiler.m_assembler);
  2873. compiler.flush_cached_accumulator();
  2874. compiler.m_assembler.exit();
  2875. auto* executable_memory = mmap(nullptr, compiler.m_output.size(), PROT_READ | PROT_WRITE, MAP_ANONYMOUS | MAP_PRIVATE, 0, 0);
  2876. if (executable_memory == MAP_FAILED) {
  2877. dbgln("mmap: {}", strerror(errno));
  2878. return nullptr;
  2879. }
  2880. for (auto& block : bytecode_executable.basic_blocks) {
  2881. auto& block_data = compiler.block_data_for(*block);
  2882. block_data.label.link_to(compiler.m_assembler, block_data.start_offset);
  2883. }
  2884. if constexpr (DUMP_JIT_MACHINE_CODE_TO_STDOUT) {
  2885. (void)write(STDOUT_FILENO, compiler.m_output.data(), compiler.m_output.size());
  2886. }
  2887. memcpy(executable_memory, compiler.m_output.data(), compiler.m_output.size());
  2888. if (mprotect(executable_memory, compiler.m_output.size(), PROT_READ | PROT_EXEC) < 0) {
  2889. dbgln("mprotect: {}", strerror(errno));
  2890. return nullptr;
  2891. }
  2892. if constexpr (LOG_JIT_SUCCESS) {
  2893. dbgln("\033[32;1mJIT compilation succeeded!\033[0m {}", bytecode_executable.name);
  2894. }
  2895. auto executable = make<NativeExecutable>(executable_memory, compiler.m_output.size(), mapping);
  2896. if constexpr (DUMP_JIT_DISASSEMBLY)
  2897. executable->dump_disassembly(bytecode_executable);
  2898. return executable;
  2899. }
  2900. }
  2901. #endif