MIPS: crankshaft support for api method calls
Port r18946 (a152f5ae) BUG= R=plind44@gmail.com Review URL: https://codereview.chromium.org/150913002 git-svn-id: http://v8.googlecode.com/svn/branches/bleeding_edge@18967 ce2b1a6d-e550-0410-aec6-3dcde31c8c00
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@ -444,6 +444,26 @@ void CallDescriptors::InitializeForIsolate(Isolate* isolate) {
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descriptor->register_params_ = registers;
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descriptor->param_representations_ = representations;
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}
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{
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CallInterfaceDescriptor* descriptor =
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isolate->call_descriptor(Isolate::ApiFunctionCall);
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static Register registers[] = { a0, // callee
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t0, // call_data
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a2, // holder
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a1, // api_function_address
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cp, // context
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};
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static Representation representations[] = {
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Representation::Tagged(), // callee
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Representation::Tagged(), // call_data
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Representation::Tagged(), // holder
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Representation::External(), // api_function_address
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Representation::Tagged(), // context
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};
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descriptor->register_param_count_ = 5;
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descriptor->register_params_ = registers;
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descriptor->param_representations_ = representations;
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}
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}
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@ -5561,8 +5581,7 @@ void CallApiFunctionStub::Generate(MacroAssembler* masm) {
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// -- a0 : callee
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// -- t0 : call_data
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// -- a2 : holder
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// -- a3 : api_function_address
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// -- a1 : thunk_arg
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// -- a1 : api_function_address
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// -- cp : context
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// --
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// -- sp[0] : last argument
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@ -5574,8 +5593,7 @@ void CallApiFunctionStub::Generate(MacroAssembler* masm) {
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Register callee = a0;
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Register call_data = t0;
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Register holder = a2;
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Register api_function_address = a3;
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Register thunk_arg = a1;
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Register api_function_address = a1;
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Register context = cp;
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int argc = ArgumentBits::decode(bit_field_);
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@ -5621,7 +5639,7 @@ void CallApiFunctionStub::Generate(MacroAssembler* masm) {
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FrameScope frame_scope(masm, StackFrame::MANUAL);
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__ EnterExitFrame(false, kApiStackSpace);
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ASSERT(!thunk_arg.is(a0) && !api_function_address.is(a0) && !scratch.is(a0));
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ASSERT(!api_function_address.is(a0) && !scratch.is(a0));
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// a0 = FunctionCallbackInfo&
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// Arguments is after the return address.
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__ Addu(a0, sp, Operand(1 * kPointerSize));
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@ -5651,7 +5669,6 @@ void CallApiFunctionStub::Generate(MacroAssembler* masm) {
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__ CallApiFunctionAndReturn(api_function_address,
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thunk_ref,
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thunk_arg,
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kStackUnwindSpace,
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return_value_operand,
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restore_context ?
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@ -5664,12 +5681,10 @@ void CallApiGetterStub::Generate(MacroAssembler* masm) {
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// -- sp[0] : name
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// -- sp[4 - kArgsLength*4] : PropertyCallbackArguments object
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// -- ...
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// -- a3 : api_function_address
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// -- a2 : thunk_last_arg
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// -- a2 : api_function_address
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// -----------------------------------
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Register api_function_address = a3;
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Register thunk_last_arg = a2;
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Register api_function_address = a2;
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__ mov(a0, sp); // a0 = Handle<Name>
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__ Addu(a1, a0, Operand(1 * kPointerSize)); // a1 = PCA
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@ -5693,7 +5708,6 @@ void CallApiGetterStub::Generate(MacroAssembler* masm) {
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masm->isolate());
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__ CallApiFunctionAndReturn(api_function_address,
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thunk_ref,
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thunk_last_arg,
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kStackUnwindSpace,
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MemOperand(fp, 6 * kPointerSize),
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NULL);
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@ -3874,7 +3874,6 @@ static int AddressOffset(ExternalReference ref0, ExternalReference ref1) {
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void MacroAssembler::CallApiFunctionAndReturn(
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Register function_address,
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ExternalReference thunk_ref,
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Register thunk_last_arg,
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int stack_space,
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MemOperand return_value_operand,
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MemOperand* context_restore_operand) {
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@ -3888,8 +3887,7 @@ void MacroAssembler::CallApiFunctionAndReturn(
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ExternalReference::handle_scope_level_address(isolate()),
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next_address);
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ASSERT(function_address.is(a3));
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ASSERT(thunk_last_arg.is(a1) || thunk_last_arg.is(a2));
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ASSERT(function_address.is(a1) || function_address.is(a2));
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Label profiler_disabled;
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Label end_profiler_check;
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@ -1278,7 +1278,6 @@ const Operand& rt = Operand(zero_reg), BranchDelaySlot bd = PROTECT
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// the additional space allocated for the fast call).
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void CallApiFunctionAndReturn(Register function_address,
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ExternalReference thunk_ref,
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Register thunk_last_arg,
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int stack_space,
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MemOperand return_value_operand,
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MemOperand* context_restore_operand);
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@ -972,6 +972,12 @@ class Redirection {
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return reinterpret_cast<Redirection*>(addr_of_redirection);
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}
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static void* ReverseRedirection(int32_t reg) {
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Redirection* redirection = FromSwiInstruction(
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reinterpret_cast<Instruction*>(reinterpret_cast<void*>(reg)));
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return redirection->external_function();
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}
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private:
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void* external_function_;
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uint32_t swi_instruction_;
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@ -1389,12 +1395,12 @@ typedef double (*SimulatorRuntimeFPIntCall)(double darg0, int32_t arg0);
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// This signature supports direct call in to API function native callback
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// (refer to InvocationCallback in v8.h).
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typedef void (*SimulatorRuntimeDirectApiCall)(int32_t arg0);
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typedef void (*SimulatorRuntimeProfilingApiCall)(int32_t arg0, int32_t arg1);
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typedef void (*SimulatorRuntimeProfilingApiCall)(int32_t arg0, void* arg1);
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// This signature supports direct call to accessor getter callback.
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typedef void (*SimulatorRuntimeDirectGetterCall)(int32_t arg0, int32_t arg1);
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typedef void (*SimulatorRuntimeProfilingGetterCall)(
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int32_t arg0, int32_t arg1, int32_t arg2);
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int32_t arg0, int32_t arg1, void* arg2);
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// Software interrupt instructions are used by the simulator to call into the
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// C-based V8 runtime. They are also used for debugging with simulator.
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@ -1555,7 +1561,7 @@ void Simulator::SoftwareInterrupt(Instruction* instr) {
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}
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SimulatorRuntimeProfilingApiCall target =
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reinterpret_cast<SimulatorRuntimeProfilingApiCall>(external);
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target(arg0, arg1);
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target(arg0, Redirection::ReverseRedirection(arg1));
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} else if (
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redirection->type() == ExternalReference::DIRECT_GETTER_CALL) {
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if (::v8::internal::FLAG_trace_sim) {
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@ -1573,7 +1579,7 @@ void Simulator::SoftwareInterrupt(Instruction* instr) {
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}
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SimulatorRuntimeProfilingGetterCall target =
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reinterpret_cast<SimulatorRuntimeProfilingGetterCall>(external);
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target(arg0, arg1, arg2);
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target(arg0, arg1, Redirection::ReverseRedirection(arg2));
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} else {
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SimulatorRuntimeCall target =
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reinterpret_cast<SimulatorRuntimeCall>(external);
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@ -776,8 +776,7 @@ static void GenerateFastApiCallBody(MacroAssembler* masm,
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Register callee = a0;
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Register call_data = t0;
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Register holder = a2;
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Register api_function_address = a3;
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Register thunk_arg = a1;
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Register api_function_address = a1;
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// Put holder in place.
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__ mov(holder, holder_in);
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@ -810,7 +809,6 @@ static void GenerateFastApiCallBody(MacroAssembler* masm,
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type,
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masm->isolate());
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__ li(api_function_address, Operand(ref));
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__ li(thunk_arg, Operand(reinterpret_cast<int32_t>(function_address)));
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// Jump to stub.
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CallApiFunctionStub stub(restore_context, call_data_undefined, argc);
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@ -818,47 +816,6 @@ static void GenerateFastApiCallBody(MacroAssembler* masm,
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}
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// Generates call to API function.
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static void GenerateFastApiCall(MacroAssembler* masm,
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const CallOptimization& optimization,
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int argc,
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Handle<Map> map_to_holder,
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CallOptimization::HolderLookup holder_lookup) {
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Counters* counters = masm->isolate()->counters();
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__ IncrementCounter(counters->call_const_fast_api(), 1, a0, a1);
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// Move holder to a register.
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Register holder_reg = a2;
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switch (holder_lookup) {
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case CallOptimization::kHolderIsReceiver:
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{
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ASSERT(map_to_holder.is_null());
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__ lw(holder_reg, MemOperand(sp, argc * kPointerSize));
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}
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break;
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case CallOptimization::kHolderIsPrototypeOfMap:
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{
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Handle<JSObject> holder(JSObject::cast(map_to_holder->prototype()));
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if (!masm->isolate()->heap()->InNewSpace(*holder)) {
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__ li(holder_reg, holder);
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} else {
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__ li(holder_reg, map_to_holder);
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__ lw(holder_reg,
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FieldMemOperand(holder_reg, Map::kPrototypeOffset));
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}
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}
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break;
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case CallOptimization::kHolderNotFound:
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UNREACHABLE();
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}
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GenerateFastApiCallBody(masm,
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optimization,
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argc,
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holder_reg,
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false);
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}
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// Generate call to api function.
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static void GenerateFastApiCall(MacroAssembler* masm,
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const CallOptimization& optimization,
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@ -964,36 +921,9 @@ class CallInterceptorCompiler BASE_EMBEDDED {
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name, miss_label);
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}
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Handle<Map> lookup_map;
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CallOptimization::HolderLookup holder_lookup =
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CallOptimization::kHolderNotFound;
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if (optimization.is_simple_api_call() &&
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!lookup->holder()->IsGlobalObject()) {
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lookup_map = optimization.LookupHolderOfExpectedType(
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object, object, interceptor_holder, &holder_lookup);
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if (holder_lookup == CallOptimization::kHolderNotFound) {
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lookup_map =
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optimization.LookupHolderOfExpectedType(
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object,
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interceptor_holder,
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Handle<JSObject>(lookup->holder()),
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&holder_lookup);
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}
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}
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// Invoke function.
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if (holder_lookup != CallOptimization::kHolderNotFound) {
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int argc = arguments_.immediate();
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GenerateFastApiCall(masm,
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optimization,
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argc,
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lookup_map,
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holder_lookup);
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} else {
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Handle<JSFunction> function = optimization.constant_function();
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__ Move(a0, receiver);
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stub_compiler_->GenerateJumpFunction(object, function);
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}
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Handle<JSFunction> function = optimization.constant_function();
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__ Move(a0, receiver);
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stub_compiler_->GenerateJumpFunction(object, function);
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// Invoke a regular function.
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__ bind(®ular_invoke);
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@ -1314,15 +1244,13 @@ void LoadStubCompiler::GenerateLoadCallback(
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__ mov(a2, scratch2()); // Saved in case scratch2 == a1.
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// Abi for CallApiGetter.
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Register getter_address_reg = a3;
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Register thunk_last_arg = a2;
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Register getter_address_reg = a2;
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Address getter_address = v8::ToCData<Address>(callback->getter());
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ApiFunction fun(getter_address);
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ExternalReference::Type type = ExternalReference::DIRECT_GETTER_CALL;
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ExternalReference ref = ExternalReference(&fun, type, isolate());
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__ li(getter_address_reg, Operand(ref));
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__ li(thunk_last_arg, Operand(reinterpret_cast<int32_t>(getter_address)));
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CallApiGetterStub stub;
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__ TailCallStub(&stub);
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@ -1485,58 +1413,6 @@ Handle<Code> CallStubCompiler::CompileCallField(Handle<JSObject> object,
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}
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Handle<Code> CallStubCompiler::CompileFastApiCall(
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const CallOptimization& optimization,
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Handle<Object> object,
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Handle<JSObject> holder,
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Handle<Cell> cell,
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Handle<JSFunction> function,
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Handle<String> name) {
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Counters* counters = isolate()->counters();
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ASSERT(optimization.is_simple_api_call());
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// Bail out if object is a global object as we don't want to
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// repatch it to global receiver.
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if (object->IsGlobalObject()) return Handle<Code>::null();
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if (!cell.is_null()) return Handle<Code>::null();
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if (!object->IsJSObject()) return Handle<Code>::null();
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Handle<JSObject> receiver = Handle<JSObject>::cast(object);
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CallOptimization::HolderLookup holder_lookup =
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CallOptimization::kHolderNotFound;
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Handle<Map> lookup_map = optimization.LookupHolderOfExpectedType(
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receiver, receiver, holder, &holder_lookup);
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if (holder_lookup == CallOptimization::kHolderNotFound) {
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return Handle<Code>::null();
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}
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Label miss;
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GenerateNameCheck(name, &miss);
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// Get the receiver from the stack.
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const int argc = arguments().immediate();
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__ lw(a1, MemOperand(sp, argc * kPointerSize));
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// Check that the receiver isn't a smi.
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__ JumpIfSmi(a1, &miss);
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__ IncrementCounter(counters->call_const(), 1, a0, a3);
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// Check that the maps haven't changed and find a Holder as a side effect.
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CheckPrototypes(
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IC::CurrentTypeOf(object, isolate()),
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a1, holder, a0, a3, t0, name, &miss);
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GenerateFastApiCall(
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masm(), optimization, argc, lookup_map, holder_lookup);
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HandlerFrontendFooter(&miss);
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// Return the generated code.
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return GetCode(function);
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}
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void StubCompiler::GenerateBooleanCheck(Register object, Label* miss) {
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Label success;
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// Check that the object is a boolean.
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@ -1697,14 +1573,6 @@ Handle<Code> CallStubCompiler::CompileCallGlobal(
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Handle<PropertyCell> cell,
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Handle<JSFunction> function,
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Handle<Name> name) {
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if (HasCustomCallGenerator(function)) {
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Handle<Code> code = CompileCustomCall(
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object, holder, cell, function, Handle<String>::cast(name),
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Code::NORMAL);
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// A null handle means bail out to the regular compiler code below.
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if (!code.is_null()) return code;
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}
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Label miss;
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HandlerFrontendHeader(object, holder, name, RECEIVER_MAP_CHECK, &miss);
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// Potentially loads a closure that matches the shared function info of the
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