Compiler.cpp 43 KB

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  1. /*
  2. * Copyright (c) 2023, Andreas Kling <kling@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/OwnPtr.h>
  7. #include <AK/Platform.h>
  8. #include <LibJS/Bytecode/CommonImplementations.h>
  9. #include <LibJS/Bytecode/Instruction.h>
  10. #include <LibJS/Bytecode/Interpreter.h>
  11. #include <LibJS/JIT/Compiler.h>
  12. #include <LibJS/Runtime/AbstractOperations.h>
  13. #include <LibJS/Runtime/Array.h>
  14. #include <LibJS/Runtime/DeclarativeEnvironment.h>
  15. #include <LibJS/Runtime/VM.h>
  16. #include <LibJS/Runtime/ValueInlines.h>
  17. #include <sys/mman.h>
  18. #include <unistd.h>
  19. #if ARCH(X86_64)
  20. # define LOG_JIT_SUCCESS 1
  21. # define LOG_JIT_FAILURE 1
  22. # define DUMP_JIT_MACHINE_CODE_TO_STDOUT 0
  23. # define TRY_OR_SET_EXCEPTION(expression) \
  24. ({ \
  25. /* Ignore -Wshadow to allow nesting the macro. */ \
  26. AK_IGNORE_DIAGNOSTIC("-Wshadow", \
  27. auto&& _temporary_result = (expression)); \
  28. static_assert(!::AK::Detail::IsLvalueReference<decltype(_temporary_result.release_value())>, \
  29. "Do not return a reference from a fallible expression"); \
  30. if (_temporary_result.is_error()) [[unlikely]] { \
  31. vm.bytecode_interpreter().reg(Bytecode::Register::exception()) = _temporary_result.release_error().value().value(); \
  32. return {}; \
  33. } \
  34. _temporary_result.release_value(); \
  35. })
  36. namespace JS::JIT {
  37. void Compiler::store_vm_register(Bytecode::Register dst, Assembler::Reg src)
  38. {
  39. m_assembler.mov(
  40. Assembler::Operand::Mem64BaseAndOffset(REGISTER_ARRAY_BASE, dst.index() * sizeof(Value)),
  41. Assembler::Operand::Register(src));
  42. }
  43. void Compiler::load_vm_register(Assembler::Reg dst, Bytecode::Register src)
  44. {
  45. m_assembler.mov(
  46. Assembler::Operand::Register(dst),
  47. Assembler::Operand::Mem64BaseAndOffset(REGISTER_ARRAY_BASE, src.index() * sizeof(Value)));
  48. }
  49. void Compiler::store_vm_local(size_t dst, Assembler::Reg src)
  50. {
  51. m_assembler.mov(
  52. Assembler::Operand::Mem64BaseAndOffset(LOCALS_ARRAY_BASE, dst * sizeof(Value)),
  53. Assembler::Operand::Register(src));
  54. }
  55. void Compiler::load_vm_local(Assembler::Reg dst, size_t src)
  56. {
  57. m_assembler.mov(
  58. Assembler::Operand::Register(dst),
  59. Assembler::Operand::Mem64BaseAndOffset(LOCALS_ARRAY_BASE, src * sizeof(Value)));
  60. }
  61. void Compiler::compile_load_immediate(Bytecode::Op::LoadImmediate const& op)
  62. {
  63. m_assembler.mov(
  64. Assembler::Operand::Register(GPR0),
  65. Assembler::Operand::Imm64(op.value().encoded()));
  66. store_vm_register(Bytecode::Register::accumulator(), GPR0);
  67. }
  68. void Compiler::compile_load(Bytecode::Op::Load const& op)
  69. {
  70. load_vm_register(GPR0, op.src());
  71. store_vm_register(Bytecode::Register::accumulator(), GPR0);
  72. }
  73. void Compiler::compile_store(Bytecode::Op::Store const& op)
  74. {
  75. load_vm_register(GPR0, Bytecode::Register::accumulator());
  76. store_vm_register(op.dst(), GPR0);
  77. }
  78. void Compiler::compile_get_local(Bytecode::Op::GetLocal const& op)
  79. {
  80. load_vm_local(GPR0, op.index());
  81. store_vm_register(Bytecode::Register::accumulator(), GPR0);
  82. }
  83. void Compiler::compile_set_local(Bytecode::Op::SetLocal const& op)
  84. {
  85. load_vm_register(GPR0, Bytecode::Register::accumulator());
  86. store_vm_local(op.index(), GPR0);
  87. }
  88. static Value cxx_typeof_local(VM& vm, Value value)
  89. {
  90. return PrimitiveString::create(vm, value.typeof());
  91. }
  92. void Compiler::compile_typeof_local(Bytecode::Op::TypeofLocal const& op)
  93. {
  94. load_vm_local(ARG1, op.index());
  95. m_assembler.native_call((void*)cxx_typeof_local);
  96. store_vm_register(Bytecode::Register::accumulator(), GPR0);
  97. }
  98. void Compiler::compile_jump(Bytecode::Op::Jump const& op)
  99. {
  100. m_assembler.jump(label_for(op.true_target()->block()));
  101. }
  102. static bool cxx_to_boolean(VM&, Value value)
  103. {
  104. return value.to_boolean();
  105. }
  106. void Compiler::compile_to_boolean(Assembler::Reg dst, Assembler::Reg src)
  107. {
  108. // dst = src;
  109. m_assembler.mov(
  110. Assembler::Operand::Register(dst),
  111. Assembler::Operand::Register(src));
  112. // dst >>= 48;
  113. m_assembler.shift_right(
  114. Assembler::Operand::Register(dst),
  115. Assembler::Operand::Imm8(48));
  116. // if (dst != BOOLEAN_TAG) goto slow_case;
  117. auto slow_case = m_assembler.make_label();
  118. m_assembler.jump_if_not_equal(
  119. Assembler::Operand::Register(dst),
  120. Assembler::Operand::Imm32(BOOLEAN_TAG),
  121. slow_case);
  122. // Fast path for JS::Value booleans.
  123. // dst = src;
  124. m_assembler.mov(
  125. Assembler::Operand::Register(dst),
  126. Assembler::Operand::Register(src));
  127. // goto end;
  128. auto end = m_assembler.jump();
  129. // slow_case: // call C++ helper
  130. slow_case.link(m_assembler);
  131. m_assembler.mov(
  132. Assembler::Operand::Register(ARG1),
  133. Assembler::Operand::Register(src));
  134. m_assembler.native_call((void*)cxx_to_boolean);
  135. m_assembler.mov(
  136. Assembler::Operand::Register(dst),
  137. Assembler::Operand::Register(RET));
  138. // end:
  139. end.link(m_assembler);
  140. // dst &= 1;
  141. m_assembler.bitwise_and(
  142. Assembler::Operand::Register(dst),
  143. Assembler::Operand::Imm32(1));
  144. }
  145. void Compiler::compile_jump_conditional(Bytecode::Op::JumpConditional const& op)
  146. {
  147. load_vm_register(GPR1, Bytecode::Register::accumulator());
  148. compile_to_boolean(GPR0, GPR1);
  149. m_assembler.jump_if_zero(
  150. Assembler::Operand::Register(GPR0),
  151. label_for(op.false_target()->block()));
  152. m_assembler.jump(label_for(op.true_target()->block()));
  153. }
  154. void Compiler::compile_jump_nullish(Bytecode::Op::JumpNullish const& op)
  155. {
  156. load_vm_register(GPR0, Bytecode::Register::accumulator());
  157. m_assembler.shift_right(
  158. Assembler::Operand::Register(GPR0),
  159. Assembler::Operand::Imm8(48));
  160. m_assembler.bitwise_and(
  161. Assembler::Operand::Register(GPR0),
  162. Assembler::Operand::Imm32(IS_NULLISH_EXTRACT_PATTERN));
  163. m_assembler.jump_if_equal(
  164. Assembler::Operand::Register(GPR0),
  165. Assembler::Operand::Imm32(IS_NULLISH_PATTERN),
  166. label_for(op.true_target()->block()));
  167. m_assembler.jump(label_for(op.false_target()->block()));
  168. }
  169. [[maybe_unused]] static Value cxx_increment(VM& vm, Value value)
  170. {
  171. auto old_value = TRY_OR_SET_EXCEPTION(value.to_numeric(vm));
  172. if (old_value.is_number())
  173. return Value(old_value.as_double() + 1);
  174. return BigInt::create(vm, old_value.as_bigint().big_integer().plus(Crypto::SignedBigInteger { 1 }));
  175. }
  176. template<typename Codegen>
  177. void Compiler::branch_if_int32(Assembler::Reg reg, Codegen codegen)
  178. {
  179. // GPR0 = reg >> 48;
  180. m_assembler.mov(Assembler::Operand::Register(GPR0), Assembler::Operand::Register(reg));
  181. m_assembler.shift_right(Assembler::Operand::Register(GPR0), Assembler::Operand::Imm8(48));
  182. auto not_int32_case = m_assembler.make_label();
  183. m_assembler.jump_if_not_equal(
  184. Assembler::Operand::Register(GPR0),
  185. Assembler::Operand::Imm32(INT32_TAG),
  186. not_int32_case);
  187. codegen();
  188. not_int32_case.link(m_assembler);
  189. }
  190. template<typename Codegen>
  191. void Compiler::branch_if_both_int32(Assembler::Reg lhs, Assembler::Reg rhs, Codegen codegen)
  192. {
  193. // GPR0 = lhs >> 48;
  194. m_assembler.mov(Assembler::Operand::Register(GPR0), Assembler::Operand::Register(lhs));
  195. m_assembler.shift_right(Assembler::Operand::Register(GPR0), Assembler::Operand::Imm8(48));
  196. // GPR1 = rhs >> 48;
  197. m_assembler.mov(Assembler::Operand::Register(GPR1), Assembler::Operand::Register(rhs));
  198. m_assembler.shift_right(Assembler::Operand::Register(GPR1), Assembler::Operand::Imm8(48));
  199. auto not_int32_case = m_assembler.make_label();
  200. m_assembler.jump_if_not_equal(
  201. Assembler::Operand::Register(GPR0),
  202. Assembler::Operand::Imm32(INT32_TAG),
  203. not_int32_case);
  204. m_assembler.jump_if_not_equal(
  205. Assembler::Operand::Register(GPR1),
  206. Assembler::Operand::Imm32(INT32_TAG),
  207. not_int32_case);
  208. codegen();
  209. not_int32_case.link(m_assembler);
  210. }
  211. void Compiler::compile_increment(Bytecode::Op::Increment const&)
  212. {
  213. load_vm_register(ARG1, Bytecode::Register::accumulator());
  214. auto end = m_assembler.make_label();
  215. auto slow_case = m_assembler.make_label();
  216. branch_if_int32(ARG1, [&] {
  217. // GPR0 = ARG1 & 0xffffffff;
  218. m_assembler.mov(
  219. Assembler::Operand::Register(GPR0),
  220. Assembler::Operand::Register(ARG1));
  221. m_assembler.mov(
  222. Assembler::Operand::Register(GPR1),
  223. Assembler::Operand::Imm64(0xffffffff));
  224. m_assembler.bitwise_and(
  225. Assembler::Operand::Register(GPR0),
  226. Assembler::Operand::Register(GPR1));
  227. // if (GPR0 == 0x7fffffff) goto slow_case;
  228. m_assembler.jump_if_equal(
  229. Assembler::Operand::Register(GPR0),
  230. Assembler::Operand::Imm32(0x7fffffff),
  231. slow_case);
  232. // ARG1 += 1;
  233. m_assembler.add(
  234. Assembler::Operand::Register(ARG1),
  235. Assembler::Operand::Imm32(1));
  236. // accumulator = ARG1;
  237. store_vm_register(Bytecode::Register::accumulator(), ARG1);
  238. m_assembler.jump(end);
  239. });
  240. slow_case.link(m_assembler);
  241. m_assembler.native_call((void*)cxx_increment);
  242. store_vm_register(Bytecode::Register::accumulator(), RET);
  243. check_exception();
  244. end.link(m_assembler);
  245. }
  246. static Value cxx_decrement(VM& vm, Value value)
  247. {
  248. auto old_value = TRY_OR_SET_EXCEPTION(value.to_numeric(vm));
  249. if (old_value.is_number())
  250. return Value(old_value.as_double() - 1);
  251. return BigInt::create(vm, old_value.as_bigint().big_integer().minus(Crypto::SignedBigInteger { 1 }));
  252. }
  253. void Compiler::compile_decrement(Bytecode::Op::Decrement const&)
  254. {
  255. load_vm_register(ARG1, Bytecode::Register::accumulator());
  256. m_assembler.native_call((void*)cxx_decrement);
  257. store_vm_register(Bytecode::Register::accumulator(), RET);
  258. check_exception();
  259. }
  260. void Compiler::check_exception()
  261. {
  262. // if (exception.is_empty()) goto no_exception;
  263. load_vm_register(GPR0, Bytecode::Register::exception());
  264. m_assembler.mov(Assembler::Operand::Register(GPR1), Assembler::Operand::Imm64(Value().encoded()));
  265. auto no_exception = m_assembler.make_label();
  266. m_assembler.jump_if_equal(Assembler::Operand::Register(GPR0), Assembler::Operand::Register(GPR1), no_exception);
  267. // We have an exception!
  268. // if (!unwind_context.valid) return;
  269. auto handle_exception = m_assembler.make_label();
  270. m_assembler.mov(
  271. Assembler::Operand::Register(GPR0),
  272. Assembler::Operand::Mem64BaseAndOffset(UNWIND_CONTEXT_BASE, 0));
  273. m_assembler.jump_if_not_equal(
  274. Assembler::Operand::Register(GPR0),
  275. Assembler::Operand::Imm32(0),
  276. handle_exception);
  277. m_assembler.exit();
  278. // handle_exception:
  279. handle_exception.link(m_assembler);
  280. // if (unwind_context.handler) {
  281. // accumulator = exception;
  282. // exception = Value();
  283. // goto handler;
  284. // }
  285. auto no_handler = m_assembler.make_label();
  286. m_assembler.mov(
  287. Assembler::Operand::Register(GPR0),
  288. Assembler::Operand::Mem64BaseAndOffset(UNWIND_CONTEXT_BASE, 8));
  289. m_assembler.jump_if_equal(
  290. Assembler::Operand::Register(GPR0),
  291. Assembler::Operand::Imm32(0),
  292. no_handler);
  293. load_vm_register(GPR1, Bytecode::Register::exception());
  294. store_vm_register(Bytecode::Register::accumulator(), GPR1);
  295. m_assembler.mov(
  296. Assembler::Operand::Register(GPR1),
  297. Assembler::Operand::Imm64(Value().encoded()));
  298. store_vm_register(Bytecode::Register::exception(), GPR1);
  299. m_assembler.jump(Assembler::Operand::Register(GPR0));
  300. // no_handler:
  301. no_handler.link(m_assembler);
  302. // if (unwind_context.finalizer) goto finalizer;
  303. auto no_finalizer = m_assembler.make_label();
  304. m_assembler.mov(
  305. Assembler::Operand::Register(GPR0),
  306. Assembler::Operand::Mem64BaseAndOffset(UNWIND_CONTEXT_BASE, 16));
  307. m_assembler.jump_if_equal(
  308. Assembler::Operand::Register(GPR0),
  309. Assembler::Operand::Imm32(0),
  310. no_finalizer);
  311. m_assembler.jump(Assembler::Operand::Register(GPR0));
  312. // no_finalizer:
  313. // NOTE: No catch and no finally!? Crash.
  314. no_finalizer.link(m_assembler);
  315. m_assembler.verify_not_reached();
  316. // no_exception:
  317. no_exception.link(m_assembler);
  318. }
  319. void Compiler::push_unwind_context(bool valid, Optional<Bytecode::Label> const& handler, Optional<Bytecode::Label> const& finalizer)
  320. {
  321. // Put this on the stack, and then point UNWIND_CONTEXT_BASE at it.
  322. // struct {
  323. // u64 valid;
  324. // u64 handler;
  325. // u64 finalizer;
  326. // };
  327. // push finalizer (patched later)
  328. m_assembler.mov(
  329. Assembler::Operand::Register(GPR0),
  330. Assembler::Operand::Imm64(0),
  331. Assembler::Patchable::Yes);
  332. if (finalizer.has_value())
  333. block_data_for(finalizer.value().block()).absolute_references_to_here.append(m_assembler.m_output.size() - 8);
  334. m_assembler.push(Assembler::Operand::Register(GPR0));
  335. // push handler (patched later)
  336. m_assembler.mov(
  337. Assembler::Operand::Register(GPR0),
  338. Assembler::Operand::Imm64(0),
  339. Assembler::Patchable::Yes);
  340. if (handler.has_value())
  341. block_data_for(handler.value().block()).absolute_references_to_here.append(m_assembler.m_output.size() - 8);
  342. m_assembler.push(Assembler::Operand::Register(GPR0));
  343. // push valid
  344. m_assembler.push(Assembler::Operand::Imm32(valid));
  345. // UNWIND_CONTEXT_BASE = STACK_POINTER
  346. m_assembler.mov(
  347. Assembler::Operand::Register(UNWIND_CONTEXT_BASE),
  348. Assembler::Operand::Register(STACK_POINTER));
  349. // align stack pointer
  350. m_assembler.sub(Assembler::Operand::Register(STACK_POINTER), Assembler::Operand::Imm8(8));
  351. }
  352. void Compiler::pop_unwind_context()
  353. {
  354. m_assembler.add(Assembler::Operand::Register(STACK_POINTER), Assembler::Operand::Imm8(32));
  355. m_assembler.add(Assembler::Operand::Register(UNWIND_CONTEXT_BASE), Assembler::Operand::Imm8(32));
  356. }
  357. void Compiler::compile_enter_unwind_context(Bytecode::Op::EnterUnwindContext const& op)
  358. {
  359. push_unwind_context(true, op.handler_target(), op.finalizer_target());
  360. m_assembler.jump(label_for(op.entry_point().block()));
  361. }
  362. void Compiler::compile_leave_unwind_context(Bytecode::Op::LeaveUnwindContext const&)
  363. {
  364. pop_unwind_context();
  365. }
  366. void Compiler::compile_throw(Bytecode::Op::Throw const&)
  367. {
  368. load_vm_register(GPR0, Bytecode::Register::accumulator());
  369. store_vm_register(Bytecode::Register::exception(), GPR0);
  370. check_exception();
  371. }
  372. static ThrowCompletionOr<Value> abstract_inequals(VM& vm, Value src1, Value src2)
  373. {
  374. return Value(!TRY(is_loosely_equal(vm, src1, src2)));
  375. }
  376. static ThrowCompletionOr<Value> abstract_equals(VM& vm, Value src1, Value src2)
  377. {
  378. return Value(TRY(is_loosely_equal(vm, src1, src2)));
  379. }
  380. static ThrowCompletionOr<Value> typed_inequals(VM&, Value src1, Value src2)
  381. {
  382. return Value(!is_strictly_equal(src1, src2));
  383. }
  384. static ThrowCompletionOr<Value> typed_equals(VM&, Value src1, Value src2)
  385. {
  386. return Value(is_strictly_equal(src1, src2));
  387. }
  388. # define DO_COMPILE_COMMON_BINARY_OP(TitleCaseName, snake_case_name) \
  389. static Value cxx_##snake_case_name(VM& vm, Value lhs, Value rhs) \
  390. { \
  391. return TRY_OR_SET_EXCEPTION(snake_case_name(vm, lhs, rhs)); \
  392. } \
  393. \
  394. void Compiler::compile_##snake_case_name(Bytecode::Op::TitleCaseName const& op) \
  395. { \
  396. load_vm_register(ARG1, op.lhs()); \
  397. load_vm_register(ARG2, Bytecode::Register::accumulator()); \
  398. m_assembler.native_call((void*)cxx_##snake_case_name); \
  399. store_vm_register(Bytecode::Register::accumulator(), RET); \
  400. check_exception(); \
  401. }
  402. JS_ENUMERATE_COMMON_BINARY_OPS_WITHOUT_FAST_PATH(DO_COMPILE_COMMON_BINARY_OP)
  403. # undef DO_COMPILE_COMMON_BINARY_OP
  404. static Value cxx_less_than(VM& vm, Value lhs, Value rhs)
  405. {
  406. return TRY_OR_SET_EXCEPTION(less_than(vm, lhs, rhs));
  407. }
  408. void Compiler::compile_less_than(Bytecode::Op::LessThan const& op)
  409. {
  410. load_vm_register(ARG1, op.lhs());
  411. load_vm_register(ARG2, Bytecode::Register::accumulator());
  412. auto end = m_assembler.make_label();
  413. branch_if_both_int32(ARG1, ARG2, [&] {
  414. // if (ARG1 < ARG2) return true;
  415. // else return false;
  416. auto true_case = m_assembler.make_label();
  417. m_assembler.sign_extend_32_to_64_bits(ARG1);
  418. m_assembler.sign_extend_32_to_64_bits(ARG2);
  419. m_assembler.jump_if_less_than(
  420. Assembler::Operand::Register(ARG1),
  421. Assembler::Operand::Register(ARG2),
  422. true_case);
  423. m_assembler.mov(
  424. Assembler::Operand::Register(GPR0),
  425. Assembler::Operand::Imm64(Value(false).encoded()));
  426. store_vm_register(Bytecode::Register::accumulator(), GPR0);
  427. m_assembler.jump(end);
  428. true_case.link(m_assembler);
  429. m_assembler.mov(
  430. Assembler::Operand::Register(GPR0),
  431. Assembler::Operand::Imm64(Value(true).encoded()));
  432. store_vm_register(Bytecode::Register::accumulator(), GPR0);
  433. m_assembler.jump(end);
  434. });
  435. m_assembler.native_call((void*)cxx_less_than);
  436. store_vm_register(Bytecode::Register::accumulator(), RET);
  437. check_exception();
  438. end.link(m_assembler);
  439. }
  440. static ThrowCompletionOr<Value> not_(VM&, Value value)
  441. {
  442. return Value(!value.to_boolean());
  443. }
  444. static ThrowCompletionOr<Value> typeof_(VM& vm, Value value)
  445. {
  446. return PrimitiveString::create(vm, value.typeof());
  447. }
  448. # define DO_COMPILE_COMMON_UNARY_OP(TitleCaseName, snake_case_name) \
  449. static Value cxx_##snake_case_name(VM& vm, Value value) \
  450. { \
  451. return TRY_OR_SET_EXCEPTION(snake_case_name(vm, value)); \
  452. } \
  453. \
  454. void Compiler::compile_##snake_case_name(Bytecode::Op::TitleCaseName const&) \
  455. { \
  456. load_vm_register(ARG1, Bytecode::Register::accumulator()); \
  457. m_assembler.native_call((void*)cxx_##snake_case_name); \
  458. store_vm_register(Bytecode::Register::accumulator(), RET); \
  459. check_exception(); \
  460. }
  461. JS_ENUMERATE_COMMON_UNARY_OPS(DO_COMPILE_COMMON_UNARY_OP)
  462. # undef DO_COMPILE_COMMON_UNARY_OP
  463. void Compiler::compile_return(Bytecode::Op::Return const&)
  464. {
  465. load_vm_register(GPR0, Bytecode::Register::accumulator());
  466. store_vm_register(Bytecode::Register::return_value(), GPR0);
  467. m_assembler.exit();
  468. }
  469. static Value cxx_new_string(VM& vm, DeprecatedString const& string)
  470. {
  471. return PrimitiveString::create(vm, string);
  472. }
  473. void Compiler::compile_new_string(Bytecode::Op::NewString const& op)
  474. {
  475. auto const& string = m_bytecode_executable.string_table->get(op.index());
  476. m_assembler.mov(
  477. Assembler::Operand::Register(ARG1),
  478. Assembler::Operand::Imm64(bit_cast<u64>(&string)));
  479. m_assembler.native_call((void*)cxx_new_string);
  480. store_vm_register(Bytecode::Register::accumulator(), RET);
  481. }
  482. static Value cxx_new_object(VM& vm)
  483. {
  484. auto& realm = *vm.current_realm();
  485. return Object::create(realm, realm.intrinsics().object_prototype());
  486. }
  487. void Compiler::compile_new_object(Bytecode::Op::NewObject const&)
  488. {
  489. m_assembler.native_call((void*)cxx_new_object);
  490. store_vm_register(Bytecode::Register::accumulator(), RET);
  491. }
  492. static Value cxx_new_array(VM& vm, size_t element_count, u32 first_register_index)
  493. {
  494. auto& realm = *vm.current_realm();
  495. auto array = MUST(Array::create(realm, 0));
  496. for (size_t i = 0; i < element_count; ++i) {
  497. auto& value = vm.bytecode_interpreter().reg(Bytecode::Register(first_register_index + i));
  498. array->indexed_properties().put(i, value, default_attributes);
  499. }
  500. return array;
  501. }
  502. void Compiler::compile_new_array(Bytecode::Op::NewArray const& op)
  503. {
  504. m_assembler.mov(
  505. Assembler::Operand::Register(ARG1),
  506. Assembler::Operand::Imm64(op.element_count()));
  507. m_assembler.mov(
  508. Assembler::Operand::Register(ARG2),
  509. Assembler::Operand::Imm64(op.element_count() ? op.start().index() : 0));
  510. m_assembler.native_call((void*)cxx_new_array);
  511. store_vm_register(Bytecode::Register::accumulator(), RET);
  512. }
  513. static Value cxx_new_function(
  514. VM& vm,
  515. FunctionExpression const& function_node,
  516. Optional<Bytecode::IdentifierTableIndex> const& lhs_name,
  517. Optional<Bytecode::Register> const& home_object)
  518. {
  519. return Bytecode::new_function(vm, function_node, lhs_name, home_object);
  520. }
  521. void Compiler::compile_new_function(Bytecode::Op::NewFunction const& op)
  522. {
  523. m_assembler.mov(
  524. Assembler::Operand::Register(ARG1),
  525. Assembler::Operand::Imm64(bit_cast<u64>(&op.function_node())));
  526. m_assembler.mov(
  527. Assembler::Operand::Register(ARG2),
  528. Assembler::Operand::Imm64(bit_cast<u64>(&op.lhs_name())));
  529. m_assembler.mov(
  530. Assembler::Operand::Register(ARG3),
  531. Assembler::Operand::Imm64(bit_cast<u64>(&op.home_object())));
  532. m_assembler.native_call((void*)cxx_new_function);
  533. store_vm_register(Bytecode::Register::accumulator(), RET);
  534. }
  535. static Value cxx_get_by_id(VM& vm, Value base, Bytecode::IdentifierTableIndex property, u32 cache_index)
  536. {
  537. return TRY_OR_SET_EXCEPTION(Bytecode::get_by_id(vm.bytecode_interpreter(), property, base, base, cache_index));
  538. }
  539. void Compiler::compile_get_by_id(Bytecode::Op::GetById const& op)
  540. {
  541. load_vm_register(ARG1, Bytecode::Register::accumulator());
  542. m_assembler.mov(
  543. Assembler::Operand::Register(ARG2),
  544. Assembler::Operand::Imm64(op.property().value()));
  545. m_assembler.mov(
  546. Assembler::Operand::Register(ARG3),
  547. Assembler::Operand::Imm64(op.cache_index()));
  548. m_assembler.native_call((void*)cxx_get_by_id);
  549. store_vm_register(Bytecode::Register::accumulator(), RET);
  550. check_exception();
  551. }
  552. static Value cxx_get_by_value(VM& vm, Value base, Value property)
  553. {
  554. return TRY_OR_SET_EXCEPTION(Bytecode::get_by_value(vm.bytecode_interpreter(), base, property));
  555. }
  556. void Compiler::compile_get_by_value(Bytecode::Op::GetByValue const& op)
  557. {
  558. load_vm_register(ARG1, op.base());
  559. load_vm_register(ARG2, Bytecode::Register::accumulator());
  560. m_assembler.native_call((void*)cxx_get_by_value);
  561. store_vm_register(Bytecode::Register::accumulator(), RET);
  562. check_exception();
  563. }
  564. static Value cxx_get_global(VM& vm, Bytecode::IdentifierTableIndex identifier, u32 cache_index)
  565. {
  566. return TRY_OR_SET_EXCEPTION(Bytecode::get_global(vm.bytecode_interpreter(), identifier, cache_index));
  567. }
  568. void Compiler::compile_get_global(Bytecode::Op::GetGlobal const& op)
  569. {
  570. m_assembler.mov(
  571. Assembler::Operand::Register(ARG1),
  572. Assembler::Operand::Imm64(op.identifier().value()));
  573. m_assembler.mov(
  574. Assembler::Operand::Register(ARG2),
  575. Assembler::Operand::Imm64(op.cache_index()));
  576. m_assembler.native_call((void*)cxx_get_global);
  577. store_vm_register(Bytecode::Register::accumulator(), RET);
  578. check_exception();
  579. }
  580. static Value cxx_get_variable(VM& vm, DeprecatedFlyString const& name, u32 cache_index)
  581. {
  582. return TRY_OR_SET_EXCEPTION(Bytecode::get_variable(vm.bytecode_interpreter(), name, cache_index));
  583. }
  584. void Compiler::compile_get_variable(Bytecode::Op::GetVariable const& op)
  585. {
  586. m_assembler.mov(
  587. Assembler::Operand::Register(ARG1),
  588. Assembler::Operand::Imm64(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier()))));
  589. m_assembler.mov(
  590. Assembler::Operand::Register(ARG2),
  591. Assembler::Operand::Imm64(op.cache_index()));
  592. m_assembler.native_call((void*)cxx_get_variable);
  593. store_vm_register(Bytecode::Register::accumulator(), RET);
  594. check_exception();
  595. }
  596. static Value cxx_get_callee_and_this_from_environment(VM& vm, DeprecatedFlyString const& name, u32 cache_index, Bytecode::Register callee_reg, Bytecode::Register this_reg)
  597. {
  598. auto& bytecode_interpreter = vm.bytecode_interpreter();
  599. auto callee_and_this = TRY_OR_SET_EXCEPTION(Bytecode::get_callee_and_this_from_environment(
  600. bytecode_interpreter,
  601. name,
  602. cache_index));
  603. bytecode_interpreter.reg(callee_reg) = callee_and_this.callee;
  604. bytecode_interpreter.reg(this_reg) = callee_and_this.this_value;
  605. return {};
  606. }
  607. void Compiler::compile_get_callee_and_this_from_environment(Bytecode::Op::GetCalleeAndThisFromEnvironment const& op)
  608. {
  609. m_assembler.mov(
  610. Assembler::Operand::Register(ARG1),
  611. Assembler::Operand::Imm64(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier()))));
  612. m_assembler.mov(
  613. Assembler::Operand::Register(ARG2),
  614. Assembler::Operand::Imm64(op.cache_index()));
  615. m_assembler.mov(
  616. Assembler::Operand::Register(ARG3),
  617. Assembler::Operand::Imm64(op.callee().index()));
  618. m_assembler.mov(
  619. Assembler::Operand::Register(ARG4),
  620. Assembler::Operand::Imm64(op.this_().index()));
  621. m_assembler.native_call((void*)cxx_get_callee_and_this_from_environment);
  622. check_exception();
  623. }
  624. static Value cxx_to_numeric(VM& vm, Value value)
  625. {
  626. return TRY_OR_SET_EXCEPTION(value.to_numeric(vm));
  627. }
  628. void Compiler::compile_to_numeric(Bytecode::Op::ToNumeric const&)
  629. {
  630. load_vm_register(ARG1, Bytecode::Register::accumulator());
  631. m_assembler.native_call((void*)cxx_to_numeric);
  632. store_vm_register(Bytecode::Register::accumulator(), RET);
  633. check_exception();
  634. }
  635. static Value cxx_resolve_this_binding(VM& vm)
  636. {
  637. auto this_value = TRY_OR_SET_EXCEPTION(vm.resolve_this_binding());
  638. vm.bytecode_interpreter().reg(Bytecode::Register::this_value()) = this_value;
  639. return this_value;
  640. }
  641. void Compiler::compile_resolve_this_binding(Bytecode::Op::ResolveThisBinding const&)
  642. {
  643. // OPTIMIZATION: We cache the `this` value in a special VM register.
  644. // So first we check if the cache is non-empty, and if so,
  645. // we can avoid calling out to C++ at all. :^)
  646. load_vm_register(GPR0, Bytecode::Register::this_value());
  647. m_assembler.mov(
  648. Assembler::Operand::Register(GPR1),
  649. Assembler::Operand::Imm64(Value().encoded()));
  650. auto slow_case = m_assembler.make_label();
  651. m_assembler.jump_if_equal(
  652. Assembler::Operand::Register(GPR0),
  653. Assembler::Operand::Register(GPR1),
  654. slow_case);
  655. // Fast case: We have a cached `this` value!
  656. store_vm_register(Bytecode::Register::accumulator(), GPR0);
  657. auto end = m_assembler.jump();
  658. slow_case.link(m_assembler);
  659. m_assembler.native_call((void*)cxx_resolve_this_binding);
  660. store_vm_register(Bytecode::Register::accumulator(), RET);
  661. check_exception();
  662. end.link(m_assembler);
  663. }
  664. static Value cxx_put_by_id(VM& vm, Value base, Bytecode::IdentifierTableIndex property, Value value, Bytecode::Op::PropertyKind kind)
  665. {
  666. PropertyKey name = vm.bytecode_interpreter().current_executable().get_identifier(property);
  667. TRY_OR_SET_EXCEPTION(Bytecode::put_by_property_key(vm, base, base, value, name, kind));
  668. vm.bytecode_interpreter().accumulator() = value;
  669. return {};
  670. }
  671. void Compiler::compile_put_by_id(Bytecode::Op::PutById const& op)
  672. {
  673. load_vm_register(ARG1, op.base());
  674. m_assembler.mov(
  675. Assembler::Operand::Register(ARG2),
  676. Assembler::Operand::Imm64(op.property().value()));
  677. load_vm_register(ARG3, Bytecode::Register::accumulator());
  678. m_assembler.mov(
  679. Assembler::Operand::Register(ARG4),
  680. Assembler::Operand::Imm64(to_underlying(op.kind())));
  681. m_assembler.native_call((void*)cxx_put_by_id);
  682. check_exception();
  683. }
  684. static Value cxx_put_by_value(VM& vm, Value base, Value property, Value value, Bytecode::Op::PropertyKind kind)
  685. {
  686. TRY_OR_SET_EXCEPTION(Bytecode::put_by_value(vm, base, property, value, kind));
  687. vm.bytecode_interpreter().accumulator() = value;
  688. return {};
  689. }
  690. void Compiler::compile_put_by_value(Bytecode::Op::PutByValue const& op)
  691. {
  692. load_vm_register(ARG1, op.base());
  693. load_vm_register(ARG2, op.property());
  694. load_vm_register(ARG3, Bytecode::Register::accumulator());
  695. m_assembler.mov(
  696. Assembler::Operand::Register(ARG4),
  697. Assembler::Operand::Imm64(to_underlying(op.kind())));
  698. m_assembler.native_call((void*)cxx_put_by_value);
  699. check_exception();
  700. }
  701. static Value cxx_call(VM& vm, Value callee, u32 first_argument_index, u32 argument_count, Value this_value, Bytecode::Op::CallType call_type)
  702. {
  703. // FIXME: Get the expression_string() here as well.
  704. TRY_OR_SET_EXCEPTION(throw_if_needed_for_call(vm.bytecode_interpreter(), callee, call_type, {}));
  705. MarkedVector<Value> argument_values(vm.heap());
  706. argument_values.ensure_capacity(argument_count);
  707. for (u32 i = 0; i < argument_count; ++i) {
  708. argument_values.unchecked_append(vm.bytecode_interpreter().reg(Bytecode::Register { first_argument_index + i }));
  709. }
  710. return TRY_OR_SET_EXCEPTION(perform_call(vm.bytecode_interpreter(), this_value, call_type, callee, move(argument_values)));
  711. }
  712. void Compiler::compile_call(Bytecode::Op::Call const& op)
  713. {
  714. load_vm_register(ARG1, op.callee());
  715. m_assembler.mov(
  716. Assembler::Operand::Register(ARG2),
  717. Assembler::Operand::Imm64(op.first_argument().index()));
  718. m_assembler.mov(
  719. Assembler::Operand::Register(ARG3),
  720. Assembler::Operand::Imm64(op.argument_count()));
  721. load_vm_register(ARG4, op.this_value());
  722. m_assembler.mov(
  723. Assembler::Operand::Register(ARG5),
  724. Assembler::Operand::Imm64(to_underlying(op.call_type())));
  725. m_assembler.native_call((void*)cxx_call);
  726. store_vm_register(Bytecode::Register::accumulator(), RET);
  727. check_exception();
  728. }
  729. static Value cxx_typeof_variable(VM& vm, DeprecatedFlyString const& identifier)
  730. {
  731. return TRY_OR_SET_EXCEPTION(Bytecode::typeof_variable(vm, identifier));
  732. }
  733. void Compiler::compile_typeof_variable(Bytecode::Op::TypeofVariable const& op)
  734. {
  735. m_assembler.mov(
  736. Assembler::Operand::Register(ARG1),
  737. Assembler::Operand::Imm64(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier().value()))));
  738. m_assembler.native_call((void*)cxx_typeof_variable);
  739. store_vm_register(Bytecode::Register::accumulator(), RET);
  740. check_exception();
  741. }
  742. static Value cxx_set_variable(
  743. VM& vm,
  744. DeprecatedFlyString const& identifier,
  745. Value value,
  746. Bytecode::Op::EnvironmentMode environment_mode,
  747. Bytecode::Op::SetVariable::InitializationMode initialization_mode)
  748. {
  749. TRY_OR_SET_EXCEPTION(Bytecode::set_variable(vm, identifier, value, environment_mode, initialization_mode));
  750. return {};
  751. }
  752. void Compiler::compile_set_variable(Bytecode::Op::SetVariable const& op)
  753. {
  754. m_assembler.mov(
  755. Assembler::Operand::Register(ARG1),
  756. Assembler::Operand::Imm64(bit_cast<u64>(&m_bytecode_executable.get_identifier(op.identifier().value()))));
  757. load_vm_register(ARG2, Bytecode::Register::accumulator());
  758. m_assembler.mov(
  759. Assembler::Operand::Register(ARG3),
  760. Assembler::Operand::Imm64(to_underlying(op.mode())));
  761. m_assembler.mov(
  762. Assembler::Operand::Register(ARG4),
  763. Assembler::Operand::Imm64(to_underlying(op.initialization_mode())));
  764. m_assembler.native_call((void*)cxx_set_variable);
  765. check_exception();
  766. }
  767. static void cxx_create_lexical_environment(VM& vm)
  768. {
  769. auto make_and_swap_envs = [&](auto& old_environment) {
  770. GCPtr<Environment> environment = new_declarative_environment(*old_environment).ptr();
  771. swap(old_environment, environment);
  772. return environment;
  773. };
  774. vm.bytecode_interpreter().saved_lexical_environment_stack().append(make_and_swap_envs(vm.running_execution_context().lexical_environment));
  775. }
  776. void Compiler::compile_create_lexical_environment(Bytecode::Op::CreateLexicalEnvironment const&)
  777. {
  778. m_assembler.native_call((void*)cxx_create_lexical_environment);
  779. }
  780. static void cxx_leave_lexical_environment(VM& vm)
  781. {
  782. vm.running_execution_context().lexical_environment = vm.bytecode_interpreter().saved_lexical_environment_stack().take_last();
  783. }
  784. void Compiler::compile_leave_lexical_environment(Bytecode::Op::LeaveLexicalEnvironment const&)
  785. {
  786. m_assembler.native_call((void*)cxx_leave_lexical_environment);
  787. }
  788. OwnPtr<NativeExecutable> Compiler::compile(Bytecode::Executable& bytecode_executable)
  789. {
  790. if (!getenv("LIBJS_JIT"))
  791. return nullptr;
  792. Compiler compiler { bytecode_executable };
  793. compiler.m_assembler.enter();
  794. compiler.m_assembler.mov(
  795. Assembler::Operand::Register(REGISTER_ARRAY_BASE),
  796. Assembler::Operand::Register(ARG1));
  797. compiler.m_assembler.mov(
  798. Assembler::Operand::Register(LOCALS_ARRAY_BASE),
  799. Assembler::Operand::Register(ARG2));
  800. compiler.push_unwind_context(false, {}, {});
  801. for (auto& block : bytecode_executable.basic_blocks) {
  802. compiler.block_data_for(*block).start_offset = compiler.m_output.size();
  803. auto it = Bytecode::InstructionStreamIterator(block->instruction_stream());
  804. while (!it.at_end()) {
  805. auto const& op = *it;
  806. switch (op.type()) {
  807. case Bytecode::Instruction::Type::LoadImmediate:
  808. compiler.compile_load_immediate(static_cast<Bytecode::Op::LoadImmediate const&>(op));
  809. break;
  810. case Bytecode::Instruction::Type::Store:
  811. compiler.compile_store(static_cast<Bytecode::Op::Store const&>(op));
  812. break;
  813. case Bytecode::Instruction::Type::Load:
  814. compiler.compile_load(static_cast<Bytecode::Op::Load const&>(op));
  815. break;
  816. case Bytecode::Instruction::Type::GetLocal:
  817. compiler.compile_get_local(static_cast<Bytecode::Op::GetLocal const&>(op));
  818. break;
  819. case Bytecode::Instruction::Type::SetLocal:
  820. compiler.compile_set_local(static_cast<Bytecode::Op::SetLocal const&>(op));
  821. break;
  822. case Bytecode::Instruction::Type::TypeofLocal:
  823. compiler.compile_typeof_local(static_cast<Bytecode::Op::TypeofLocal const&>(op));
  824. break;
  825. case Bytecode::Instruction::Type::Jump:
  826. compiler.compile_jump(static_cast<Bytecode::Op::Jump const&>(op));
  827. break;
  828. case Bytecode::Instruction::Type::JumpConditional:
  829. compiler.compile_jump_conditional(static_cast<Bytecode::Op::JumpConditional const&>(op));
  830. break;
  831. case Bytecode::Instruction::Type::JumpNullish:
  832. compiler.compile_jump_nullish(static_cast<Bytecode::Op::JumpNullish const&>(op));
  833. break;
  834. case Bytecode::Instruction::Type::Increment:
  835. compiler.compile_increment(static_cast<Bytecode::Op::Increment const&>(op));
  836. break;
  837. case Bytecode::Instruction::Type::Decrement:
  838. compiler.compile_decrement(static_cast<Bytecode::Op::Decrement const&>(op));
  839. break;
  840. case Bytecode::Instruction::Type::EnterUnwindContext:
  841. compiler.compile_enter_unwind_context(static_cast<Bytecode::Op::EnterUnwindContext const&>(op));
  842. break;
  843. case Bytecode::Instruction::Type::LeaveUnwindContext:
  844. compiler.compile_leave_unwind_context(static_cast<Bytecode::Op::LeaveUnwindContext const&>(op));
  845. break;
  846. case Bytecode::Instruction::Type::Throw:
  847. compiler.compile_throw(static_cast<Bytecode::Op::Throw const&>(op));
  848. break;
  849. case Bytecode::Instruction::Type::Return:
  850. compiler.compile_return(static_cast<Bytecode::Op::Return const&>(op));
  851. break;
  852. case Bytecode::Instruction::Type::CreateLexicalEnvironment:
  853. compiler.compile_create_lexical_environment(static_cast<Bytecode::Op::CreateLexicalEnvironment const&>(op));
  854. break;
  855. case Bytecode::Instruction::Type::LeaveLexicalEnvironment:
  856. compiler.compile_leave_lexical_environment(static_cast<Bytecode::Op::LeaveLexicalEnvironment const&>(op));
  857. break;
  858. case Bytecode::Instruction::Type::NewString:
  859. compiler.compile_new_string(static_cast<Bytecode::Op::NewString const&>(op));
  860. break;
  861. case Bytecode::Instruction::Type::NewObject:
  862. compiler.compile_new_object(static_cast<Bytecode::Op::NewObject const&>(op));
  863. break;
  864. case Bytecode::Instruction::Type::NewArray:
  865. compiler.compile_new_array(static_cast<Bytecode::Op::NewArray const&>(op));
  866. break;
  867. case Bytecode::Instruction::Type::NewFunction:
  868. compiler.compile_new_function(static_cast<Bytecode::Op::NewFunction const&>(op));
  869. break;
  870. case Bytecode::Instruction::Type::GetById:
  871. compiler.compile_get_by_id(static_cast<Bytecode::Op::GetById const&>(op));
  872. break;
  873. case Bytecode::Instruction::Type::GetByValue:
  874. compiler.compile_get_by_value(static_cast<Bytecode::Op::GetByValue const&>(op));
  875. break;
  876. case Bytecode::Instruction::Type::GetGlobal:
  877. compiler.compile_get_global(static_cast<Bytecode::Op::GetGlobal const&>(op));
  878. break;
  879. case Bytecode::Instruction::Type::GetVariable:
  880. compiler.compile_get_variable(static_cast<Bytecode::Op::GetVariable const&>(op));
  881. break;
  882. case Bytecode::Instruction::Type::GetCalleeAndThisFromEnvironment:
  883. compiler.compile_get_callee_and_this_from_environment(static_cast<Bytecode::Op::GetCalleeAndThisFromEnvironment const&>(op));
  884. break;
  885. case Bytecode::Instruction::Type::PutById:
  886. compiler.compile_put_by_id(static_cast<Bytecode::Op::PutById const&>(op));
  887. break;
  888. case Bytecode::Instruction::Type::PutByValue:
  889. compiler.compile_put_by_value(static_cast<Bytecode::Op::PutByValue const&>(op));
  890. break;
  891. case Bytecode::Instruction::Type::ToNumeric:
  892. compiler.compile_to_numeric(static_cast<Bytecode::Op::ToNumeric const&>(op));
  893. break;
  894. case Bytecode::Instruction::Type::ResolveThisBinding:
  895. compiler.compile_resolve_this_binding(static_cast<Bytecode::Op::ResolveThisBinding const&>(op));
  896. break;
  897. case Bytecode::Instruction::Type::Call:
  898. compiler.compile_call(static_cast<Bytecode::Op::Call const&>(op));
  899. break;
  900. case Bytecode::Instruction::Type::TypeofVariable:
  901. compiler.compile_typeof_variable(static_cast<Bytecode::Op::TypeofVariable const&>(op));
  902. break;
  903. case Bytecode::Instruction::Type::SetVariable:
  904. compiler.compile_set_variable(static_cast<Bytecode::Op::SetVariable const&>(op));
  905. break;
  906. case Bytecode::Instruction::Type::LessThan:
  907. compiler.compile_less_than(static_cast<Bytecode::Op::LessThan const&>(op));
  908. break;
  909. # define DO_COMPILE_COMMON_BINARY_OP(TitleCaseName, snake_case_name) \
  910. case Bytecode::Instruction::Type::TitleCaseName: \
  911. compiler.compile_##snake_case_name(static_cast<Bytecode::Op::TitleCaseName const&>(op)); \
  912. break;
  913. JS_ENUMERATE_COMMON_BINARY_OPS_WITHOUT_FAST_PATH(DO_COMPILE_COMMON_BINARY_OP)
  914. # undef DO_COMPILE_COMMON_BINARY_OP
  915. # define DO_COMPILE_COMMON_UNARY_OP(TitleCaseName, snake_case_name) \
  916. case Bytecode::Instruction::Type::TitleCaseName: \
  917. compiler.compile_##snake_case_name(static_cast<Bytecode::Op::TitleCaseName const&>(op)); \
  918. break;
  919. JS_ENUMERATE_COMMON_UNARY_OPS(DO_COMPILE_COMMON_UNARY_OP)
  920. # undef DO_COMPILE_COMMON_UNARY_OP
  921. default:
  922. if constexpr (LOG_JIT_FAILURE) {
  923. dbgln("\033[31;1mJIT compilation failed\033[0m: {}", bytecode_executable.name);
  924. dbgln("Unsupported bytecode op: {}", op.to_deprecated_string(bytecode_executable));
  925. }
  926. return nullptr;
  927. }
  928. ++it;
  929. }
  930. if (!block->is_terminated())
  931. compiler.m_assembler.exit();
  932. }
  933. auto* executable_memory = mmap(nullptr, compiler.m_output.size(), PROT_READ | PROT_WRITE, MAP_ANONYMOUS | MAP_PRIVATE, 0, 0);
  934. if (executable_memory == MAP_FAILED) {
  935. dbgln("mmap: {}", strerror(errno));
  936. return nullptr;
  937. }
  938. for (auto& block : bytecode_executable.basic_blocks) {
  939. auto& block_data = compiler.block_data_for(*block);
  940. block_data.label.link_to(compiler.m_assembler, block_data.start_offset);
  941. // Patch up all the absolute references
  942. for (auto& absolute_reference : block_data.absolute_references_to_here) {
  943. auto offset = bit_cast<u64>(executable_memory) + block_data.start_offset;
  944. compiler.m_output[absolute_reference + 0] = (offset >> 0) & 0xff;
  945. compiler.m_output[absolute_reference + 1] = (offset >> 8) & 0xff;
  946. compiler.m_output[absolute_reference + 2] = (offset >> 16) & 0xff;
  947. compiler.m_output[absolute_reference + 3] = (offset >> 24) & 0xff;
  948. compiler.m_output[absolute_reference + 4] = (offset >> 32) & 0xff;
  949. compiler.m_output[absolute_reference + 5] = (offset >> 40) & 0xff;
  950. compiler.m_output[absolute_reference + 6] = (offset >> 48) & 0xff;
  951. compiler.m_output[absolute_reference + 7] = (offset >> 56) & 0xff;
  952. }
  953. }
  954. if constexpr (DUMP_JIT_MACHINE_CODE_TO_STDOUT) {
  955. (void)write(STDOUT_FILENO, compiler.m_output.data(), compiler.m_output.size());
  956. }
  957. memcpy(executable_memory, compiler.m_output.data(), compiler.m_output.size());
  958. if (mprotect(executable_memory, compiler.m_output.size(), PROT_READ | PROT_EXEC) < 0) {
  959. dbgln("mprotect: {}", strerror(errno));
  960. return nullptr;
  961. }
  962. if constexpr (LOG_JIT_SUCCESS) {
  963. dbgln("\033[32;1mJIT compilation succeeded!\033[0m {}", bytecode_executable.name);
  964. }
  965. return make<NativeExecutable>(executable_memory, compiler.m_output.size());
  966. }
  967. }
  968. #endif