| Index: src/x64/code-stubs-x64.cc
|
| diff --git a/src/x64/code-stubs-x64.cc b/src/x64/code-stubs-x64.cc
|
| index 1d1f9b44246061518278527d50f535606ab89939..60f274d33c265689290a3576cc5ee915863b463b 100644
|
| --- a/src/x64/code-stubs-x64.cc
|
| +++ b/src/x64/code-stubs-x64.cc
|
| @@ -1044,54 +1044,6 @@ void ArgumentsAccessStub::GenerateNewStrict(MacroAssembler* masm) {
|
| }
|
|
|
|
|
| -static void ThrowPendingException(MacroAssembler* masm) {
|
| - Isolate* isolate = masm->isolate();
|
| -
|
| - ExternalReference pending_handler_context_address(
|
| - Isolate::kPendingHandlerContextAddress, isolate);
|
| - ExternalReference pending_handler_code_address(
|
| - Isolate::kPendingHandlerCodeAddress, isolate);
|
| - ExternalReference pending_handler_offset_address(
|
| - Isolate::kPendingHandlerOffsetAddress, isolate);
|
| - ExternalReference pending_handler_fp_address(
|
| - Isolate::kPendingHandlerFPAddress, isolate);
|
| - ExternalReference pending_handler_sp_address(
|
| - Isolate::kPendingHandlerSPAddress, isolate);
|
| -
|
| - // Ask the runtime for help to determine the handler. This will set rax to
|
| - // contain the current pending exception, don't clobber it.
|
| - ExternalReference find_handler(Runtime::kFindExceptionHandler, isolate);
|
| - {
|
| - FrameScope scope(masm, StackFrame::MANUAL);
|
| - __ movp(arg_reg_1, Immediate(0)); // argc.
|
| - __ movp(arg_reg_2, Immediate(0)); // argv.
|
| - __ Move(arg_reg_3, ExternalReference::isolate_address(isolate));
|
| - __ PrepareCallCFunction(3);
|
| - __ CallCFunction(find_handler, 3);
|
| - }
|
| -
|
| - // Retrieve the handler context, SP and FP.
|
| - __ movp(rsi, masm->ExternalOperand(pending_handler_context_address));
|
| - __ movp(rsp, masm->ExternalOperand(pending_handler_sp_address));
|
| - __ movp(rbp, masm->ExternalOperand(pending_handler_fp_address));
|
| -
|
| - // If the handler is a JS frame, restore the context to the frame.
|
| - // (kind == ENTRY) == (rbp == 0) == (rsi == 0), so we could test either
|
| - // rbp or rsi.
|
| - Label skip;
|
| - __ testp(rsi, rsi);
|
| - __ j(zero, &skip, Label::kNear);
|
| - __ movp(Operand(rbp, StandardFrameConstants::kContextOffset), rsi);
|
| - __ bind(&skip);
|
| -
|
| - // Compute the handler entry address and jump to it.
|
| - __ movp(rdi, masm->ExternalOperand(pending_handler_code_address));
|
| - __ movp(rdx, masm->ExternalOperand(pending_handler_offset_address));
|
| - __ leap(rdi, FieldOperand(rdi, rdx, times_1, Code::kHeaderSize));
|
| - __ jmp(rdi);
|
| -}
|
| -
|
| -
|
| void RegExpExecStub::Generate(MacroAssembler* masm) {
|
| // Just jump directly to runtime if native RegExp is not selected at compile
|
| // time or if regexp entry in generated code is turned off runtime switch or
|
| @@ -1480,8 +1432,7 @@ void RegExpExecStub::Generate(MacroAssembler* masm) {
|
| __ j(equal, &runtime);
|
|
|
| // For exception, throw the exception again.
|
| - __ EnterExitFrame(false);
|
| - ThrowPendingException(masm);
|
| + __ TailCallRuntime(Runtime::kRegExpExecReThrow, 4, 1);
|
|
|
| // Do the runtime call to execute the regexp.
|
| __ bind(&runtime);
|
| @@ -2492,7 +2443,49 @@ void CEntryStub::Generate(MacroAssembler* masm) {
|
|
|
| // Handling of exception.
|
| __ bind(&exception_returned);
|
| - ThrowPendingException(masm);
|
| +
|
| + ExternalReference pending_handler_context_address(
|
| + Isolate::kPendingHandlerContextAddress, isolate());
|
| + ExternalReference pending_handler_code_address(
|
| + Isolate::kPendingHandlerCodeAddress, isolate());
|
| + ExternalReference pending_handler_offset_address(
|
| + Isolate::kPendingHandlerOffsetAddress, isolate());
|
| + ExternalReference pending_handler_fp_address(
|
| + Isolate::kPendingHandlerFPAddress, isolate());
|
| + ExternalReference pending_handler_sp_address(
|
| + Isolate::kPendingHandlerSPAddress, isolate());
|
| +
|
| + // Ask the runtime for help to determine the handler. This will set rax to
|
| + // contain the current pending exception, don't clobber it.
|
| + ExternalReference find_handler(Runtime::kFindExceptionHandler, isolate());
|
| + {
|
| + FrameScope scope(masm, StackFrame::MANUAL);
|
| + __ movp(arg_reg_1, Immediate(0)); // argc.
|
| + __ movp(arg_reg_2, Immediate(0)); // argv.
|
| + __ Move(arg_reg_3, ExternalReference::isolate_address(isolate()));
|
| + __ PrepareCallCFunction(3);
|
| + __ CallCFunction(find_handler, 3);
|
| + }
|
| +
|
| + // Retrieve the handler context, SP and FP.
|
| + __ movp(rsi, masm->ExternalOperand(pending_handler_context_address));
|
| + __ movp(rsp, masm->ExternalOperand(pending_handler_sp_address));
|
| + __ movp(rbp, masm->ExternalOperand(pending_handler_fp_address));
|
| +
|
| + // If the handler is a JS frame, restore the context to the frame.
|
| + // (kind == ENTRY) == (rbp == 0) == (rsi == 0), so we could test either
|
| + // rbp or rsi.
|
| + Label skip;
|
| + __ testp(rsi, rsi);
|
| + __ j(zero, &skip, Label::kNear);
|
| + __ movp(Operand(rbp, StandardFrameConstants::kContextOffset), rsi);
|
| + __ bind(&skip);
|
| +
|
| + // Compute the handler entry address and jump to it.
|
| + __ movp(rdi, masm->ExternalOperand(pending_handler_code_address));
|
| + __ movp(rdx, masm->ExternalOperand(pending_handler_offset_address));
|
| + __ leap(rdi, FieldOperand(rdi, rdx, times_1, Code::kHeaderSize));
|
| + __ jmp(rdi);
|
| }
|
|
|
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|