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Issue 7024047: [Arguments] Port fast arguments creation stubs to X64 and ARM. (Closed) Base URL: https://v8.googlecode.com/svn/branches/experimental/arguments
Patch Set: Address comments. Created 9 years, 6 months ago
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1 // Copyright 2011 the V8 project authors. All rights reserved. 1 // Copyright 2011 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without 2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are 3 // modification, are permitted provided that the following conditions are
4 // met: 4 // met:
5 // 5 //
6 // * Redistributions of source code must retain the above copyright 6 // * Redistributions of source code must retain the above copyright
7 // notice, this list of conditions and the following disclaimer. 7 // notice, this list of conditions and the following disclaimer.
8 // * Redistributions in binary form must reproduce the above 8 // * Redistributions in binary form must reproduce the above
9 // copyright notice, this list of conditions and the following 9 // copyright notice, this list of conditions and the following
10 // disclaimer in the documentation and/or other materials provided 10 // disclaimer in the documentation and/or other materials provided
(...skipping 1941 matching lines...) Expand 10 before | Expand all | Expand 10 after
1952 // Slow-case: Handle non-smi or out-of-bounds access to arguments 1952 // Slow-case: Handle non-smi or out-of-bounds access to arguments
1953 // by calling the runtime system. 1953 // by calling the runtime system.
1954 __ bind(&slow); 1954 __ bind(&slow);
1955 __ pop(rbx); // Return address. 1955 __ pop(rbx); // Return address.
1956 __ push(rdx); 1956 __ push(rdx);
1957 __ push(rbx); 1957 __ push(rbx);
1958 __ TailCallRuntime(Runtime::kGetArgumentsProperty, 1, 1); 1958 __ TailCallRuntime(Runtime::kGetArgumentsProperty, 1, 1);
1959 } 1959 }
1960 1960
1961 1961
1962 void ArgumentsAccessStub::GenerateNewNonStrictFast(MacroAssembler* masm) {
1963 // rsp[0] : return address
1964 // rsp[8] : number of parameters (tagged)
1965 // rsp[16] : receiver displacement
1966 // rsp[24] : function
1967
1968 Factory* factory = masm->isolate()->factory();
1969
1970 __ SmiToInteger64(rbx, Operand(rsp, 1 * kPointerSize));
1971 // rbx = parameter count (untagged)
1972
1973 // Check if the calling frame is an arguments adaptor frame.
1974 Label runtime;
1975 Label adaptor_frame, try_allocate;
1976 __ movq(rdx, Operand(rbp, StandardFrameConstants::kCallerFPOffset));
1977 __ movq(rcx, Operand(rdx, StandardFrameConstants::kContextOffset));
1978 __ Cmp(rcx, Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR));
1979 __ j(equal, &adaptor_frame);
1980
1981 // No adaptor, parameter count = argument count.
1982 __ movq(rcx, rbx);
1983 __ jmp(&try_allocate, Label::kNear);
1984
1985 // We have an adaptor frame. Patch the parameters pointer.
1986 __ bind(&adaptor_frame);
1987 __ SmiToInteger64(rcx,
1988 Operand(rdx,
1989 ArgumentsAdaptorFrameConstants::kLengthOffset));
1990 __ lea(rdx, Operand(rdx, rcx, times_pointer_size,
1991 StandardFrameConstants::kCallerSPOffset));
1992 __ movq(Operand(rsp, 2 * kPointerSize), rdx);
1993
1994 // rbx = parameter count (untagged)
1995 // rcx = argument count (untagged)
1996 // rsp[8] = parameter count (tagged)
1997 // rsp[16] = address of receiver argument
1998 // Compute the mapped parameter count = min(rbx, rcx) in rbx.
1999 __ cmpq(rbx, rcx);
2000 __ j(less_equal, &try_allocate, Label::kNear);
2001 __ movq(rbx, rcx);
2002
2003 __ bind(&try_allocate);
2004
2005 // Save mapped parameter count.
2006 __ push(rbx);
Kevin Millikin (Chromium) 2011/06/10 11:51:52 I don't know what the register story on x64 is (Bi
Lasse Reichstein 2011/06/10 12:15:23 Unless the stub uses them for something else (and
Karl Klose 2011/06/14 12:56:28 I have removed the push instructions, the code is
2007
2008 // Compute the sizes of backing store, parameter map, and arguments object.
2009 // 1. Parameter map, has 2 extra words containing context and backing store.
2010 const int kParameterMapHeaderSize =
2011 FixedArray::kHeaderSize + 2 * kPointerSize;
2012 Label no_parameter_map;
2013 __ testq(rbx, rbx);
2014 __ j(zero, &no_parameter_map, Label::kNear);
2015 __ lea(rbx, Operand(rbx, times_pointer_size, kParameterMapHeaderSize));
2016 __ bind(&no_parameter_map);
2017
2018 // 2. Backing store.
2019 __ lea(rbx, Operand(rbx, rcx, times_pointer_size, FixedArray::kHeaderSize));
2020
2021 // 3. Arguments object.
2022 __ addq(rbx, Immediate(Heap::kArgumentsObjectSize));
2023
2024 // Do the allocation of all three objects in one go.
2025 __ AllocateInNewSpace(rbx, rax, rdx, rdi, &runtime, TAG_OBJECT);
2026
2027 // rax = address of new object(s) (tagged)
2028 // rcx = argument count (untagged)
2029 // rsp[0] = mapped parameter count (tagged)
2030 // rsp[16] = parameter count (tagged)
2031 // rsp[24] = address of receiver argument
2032 // Get the arguments boilerplate from the current (global) context into rdi.
2033 Label has_mapped_parameters, copy;
2034 __ movq(rdi, Operand(rsi, Context::SlotOffset(Context::GLOBAL_INDEX)));
2035 __ movq(rdi, FieldOperand(rdi, GlobalObject::kGlobalContextOffset));
2036 __ SmiToInteger64(rbx, Operand(rsp, 0 * kPointerSize));
2037 __ testq(rbx, rbx);
2038 __ j(not_zero, &has_mapped_parameters, Label::kNear);
2039
2040 const int kIndex = Context::ARGUMENTS_BOILERPLATE_INDEX;
2041 __ movq(rdi, Operand(rdi, Context::SlotOffset(kIndex)));
2042 __ jmp(&copy, Label::kNear);
2043
2044 const int kAliasedIndex = Context::ALIASED_ARGUMENTS_BOILERPLATE_INDEX;
2045 __ bind(&has_mapped_parameters);
2046 __ movq(rdi, Operand(rdi, Context::SlotOffset(kAliasedIndex)));
2047 __ bind(&copy);
2048
2049 // rax = address of new object (tagged)
2050 // rbx = mapped parameter count (untagged)
2051 // rcx = argument count (untagged)
2052 // rdi = address of boilerplate object (tagged)
2053 // rsp[0] = mapped parameter count (tagged)
2054 // rsp[16] = parameter count (tagged)
2055 // rsp[24] = address of receiver argument
2056 // Copy the JS object part.
2057 for (int i = 0; i < JSObject::kHeaderSize; i += kPointerSize) {
2058 __ movq(rdx, FieldOperand(rdi, i));
2059 __ movq(FieldOperand(rax, i), rdx);
2060 }
2061
2062 // Setup the callee in-object property.
2063 STATIC_ASSERT(Heap::kArgumentsCalleeIndex == 1);
2064 __ movq(rdx, Operand(rsp, 4 * kPointerSize));
2065 __ movq(FieldOperand(rax, JSObject::kHeaderSize +
2066 Heap::kArgumentsCalleeIndex * kPointerSize),
2067 rdx);
2068
2069 // Use the length (smi tagged) and set that as an in-object property too.
2070 // Note: rcx is tagged from here on.
2071 STATIC_ASSERT(Heap::kArgumentsLengthIndex == 0);
2072 __ Integer32ToSmi(rcx, rcx);
2073 __ movq(FieldOperand(rax, JSObject::kHeaderSize +
2074 Heap::kArgumentsLengthIndex * kPointerSize),
2075 rcx);
2076
2077 // Setup the elements pointer in the allocated arguments object.
2078 // If we allocated a parameter map, edi will point there, otherwise to the
2079 // backing store.
2080 __ lea(rdi, Operand(rax, Heap::kArgumentsObjectSize));
2081 __ movq(FieldOperand(rax, JSObject::kElementsOffset), rdi);
2082
2083 // rax = address of new object (tagged)
2084 // rbx = mapped parameter count (untagged)
2085 // rcx = argument count (tagged)
2086 // rdi = address of parameter map or backing store (tagged)
2087 // rsp[0] = mapped parameter count (tagged)
2088 // rsp[16] = parameter count (tagged)
2089 // rsp[24] = address of receiver argument
2090 // Free a register.
2091 __ push(rax);
Kevin Millikin (Chromium) 2011/06/10 11:51:52 May be able to avoid this push.
Karl Klose 2011/06/14 12:56:28 Done.
2092
2093 // Initialize parameter map. If there are no mapped arguments, we're done.
2094 Label skip_parameter_map;
2095 __ testq(rbx, rbx);
2096 __ j(zero, &skip_parameter_map);
2097
2098 __ LoadRoot(kScratchRegister, Heap::kNonStrictArgumentsElementsMapRootIndex);
2099 // rbx contains the untagged argument count. Add 2 and tag to write.
2100 __ movq(FieldOperand(rdi, FixedArray::kMapOffset), kScratchRegister);
2101 __ Integer64PlusConstantToSmi(rax, rbx, 2);
2102 __ movq(FieldOperand(rdi, FixedArray::kLengthOffset), rax);
2103 __ movq(FieldOperand(rdi, FixedArray::kHeaderSize + 0 * kPointerSize), rsi);
2104 __ lea(rax, Operand(rdi, rbx, times_pointer_size, kParameterMapHeaderSize));
2105 __ movq(FieldOperand(rdi, FixedArray::kHeaderSize + 1 * kPointerSize), rax);
2106
2107 // Copy the parameter slots and the holes in the arguments.
2108 // We need to fill in mapped_parameter_count slots. They index the context,
2109 // where parameters are stored in reverse order, at
2110 // MIN_CONTEXT_SLOTS .. MIN_CONTEXT_SLOTS+parameter_count-1
2111 // The mapped parameter thus need to get indices
2112 // MIN_CONTEXT_SLOTS+parameter_count-1 ..
2113 // MIN_CONTEXT_SLOTS+parameter_count-mapped_parameter_count
2114 // We loop from right to left.
2115 Label parameters_loop, parameters_test;
2116 __ push(rcx);
Kevin Millikin (Chromium) 2011/06/10 11:51:52 Also here.
Karl Klose 2011/06/14 12:56:28 Done.
2117 // Load tagged parameter count into rax.
2118 __ movq(rax, Operand(rsp, 2 * kPointerSize));
2119 __ Move(rbx, Smi::FromInt(Context::MIN_CONTEXT_SLOTS));
2120 __ addq(rbx, Operand(rsp, 4 * kPointerSize));
2121 __ subq(rbx, rax);
2122 __ Move(rcx, factory->the_hole_value());
2123 __ movq(rdx, rdi);
2124 __ SmiToInteger64(kScratchRegister, rax);
2125 __ lea(rdi, Operand(rdi, kScratchRegister,
2126 times_pointer_size,
2127 kParameterMapHeaderSize));
2128 // rax = loop variable (tagged)
2129 // rbx = mapping index (tagged)
2130 // rcx = the hole value
2131 // rdx = address of parameter map (tagged)
2132 // rdi = address of backing store (tagged)
2133 // rsp[0] = argument count (tagged)
2134 // rsp[8] = address of new object (tagged)
2135 // rsp[16] = mapped parameter count (tagged)
2136 // rsp[32] = parameter count (tagged)
2137 // rsp[40] = address of receiver argument
2138 __ jmp(&parameters_test, Label::kNear);
2139
2140 __ bind(&parameters_loop);
2141 __ SmiSubConstant(rax, rax, Smi::FromInt(1));
2142 __ SmiToInteger64(kScratchRegister, rax);
2143 __ movq(FieldOperand(rdx, kScratchRegister,
2144 times_pointer_size,
2145 kParameterMapHeaderSize),
2146 rbx);
2147 __ movq(FieldOperand(rdi, kScratchRegister,
2148 times_pointer_size,
2149 FixedArray::kHeaderSize),
2150 rcx);
2151 __ SmiAddConstant(rbx, rbx, Smi::FromInt(1));
2152 __ bind(&parameters_test);
2153 __ SmiTest(rax);
2154 __ j(not_zero, &parameters_loop, Label::kNear);
2155 __ pop(rcx);
2156
2157 __ bind(&skip_parameter_map);
2158
2159 // rcx = argument count (tagged)
2160 // rdi = address of backing store (tagged)
2161 // rsp[0] = address of new object (tagged)
2162 // rsp[8] = mapped parameter count (tagged)
2163 // rsp[24] = parameter count (tagged)
2164 // rsp[32] = address of receiver argument
2165 // Copy arguments header and remaining slots (if there are any).
2166 __ Move(FieldOperand(rdi, FixedArray::kMapOffset),
2167 factory->fixed_array_map());
2168 __ movq(FieldOperand(rdi, FixedArray::kLengthOffset), rcx);
2169
2170 Label arguments_loop, arguments_test;
2171 __ movq(rbx, Operand(rsp, 1 * kPointerSize));
2172 __ movq(rdx, Operand(rsp, 4 * kPointerSize));
2173 // Untag rcx and rbx for the loop below.
2174 __ SmiToInteger64(rcx, rcx);
2175 __ SmiToInteger64(rbx, rbx);
2176 __ lea(kScratchRegister, Operand(rbx, times_pointer_size, 0));
2177 __ subq(rdx, kScratchRegister);
2178 __ jmp(&arguments_test, Label::kNear);
2179
2180 __ bind(&arguments_loop);
2181 __ subq(rdx, Immediate(kPointerSize));
2182 __ movq(rax, Operand(rdx, 0));
2183 __ movq(FieldOperand(rdi, rbx,
2184 times_pointer_size,
2185 FixedArray::kHeaderSize),
2186 rax);
2187 __ addq(rbx, Immediate(1));
2188
2189 __ bind(&arguments_test);
2190 __ cmpq(rbx, rcx);
2191 __ j(less, &arguments_loop, Label::kNear);
2192
2193 // Restore.
2194 __ pop(rax); // Address of arguments object.
2195 __ pop(rbx); // Parameter count.
2196
2197 // Return and remove the on-stack parameters.
2198 __ ret(3 * kPointerSize);
2199
2200 // Do the runtime call to allocate the arguments object.
2201 // rcx = argument count (untagged)
2202 __ bind(&runtime);
2203 __ pop(rax); // Remove saved parameter count.
2204 __ Integer32ToSmi(rcx, rcx);
2205 __ movq(Operand(rsp, 1 * kPointerSize), rcx); // Patch argument count.
2206 __ TailCallRuntime(Runtime::kNewStrictArgumentsFast, 3, 1);
2207 }
2208
2209
2210 void ArgumentsAccessStub::GenerateNewNonStrictSlow(MacroAssembler* masm) {
2211 // esp[0] : return address
2212 // esp[8] : number of parameters
2213 // esp[16] : receiver displacement
2214 // esp[24] : function
2215
2216 // Check if the calling frame is an arguments adaptor frame.
2217 Label runtime;
2218 __ movq(rdx, Operand(rbp, StandardFrameConstants::kCallerFPOffset));
2219 __ movq(rcx, Operand(rdx, StandardFrameConstants::kContextOffset));
2220 __ Cmp(rcx, Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR));
2221 __ j(not_equal, &runtime);
2222
2223 // Patch the arguments.length and the parameters pointer.
2224 __ movq(rcx, Operand(rdx, ArgumentsAdaptorFrameConstants::kLengthOffset));
2225 __ movq(Operand(rsp, 1 * kPointerSize), rcx);
2226 __ SmiToInteger64(rcx, rcx);
2227 __ lea(rdx, Operand(rdx, rcx, times_pointer_size,
2228 StandardFrameConstants::kCallerSPOffset));
2229 __ movq(Operand(rsp, 2 * kPointerSize), rdx);
2230
2231 __ bind(&runtime);
2232 __ TailCallRuntime(Runtime::kNewArgumentsFast, 3, 1);
2233 }
2234
2235
1962 void ArgumentsAccessStub::GenerateNewStrict(MacroAssembler* masm) { 2236 void ArgumentsAccessStub::GenerateNewStrict(MacroAssembler* masm) {
1963 UNIMPLEMENTED();
1964 }
1965
1966
1967 void ArgumentsAccessStub::GenerateNewNonStrictFast(MacroAssembler* masm) {
1968 UNIMPLEMENTED();
1969 }
1970
1971
1972 void ArgumentsAccessStub::GenerateNewNonStrictSlow(MacroAssembler* masm) {
1973 // rsp[0] : return address 2237 // rsp[0] : return address
1974 // rsp[8] : number of parameters 2238 // rsp[8] : number of parameters
1975 // rsp[16] : receiver displacement 2239 // rsp[16] : receiver displacement
1976 // rsp[24] : function 2240 // rsp[24] : function
1977 2241
1978 // The displacement is used for skipping the return address and the
1979 // frame pointer on the stack. It is the offset of the last
1980 // parameter (if any) relative to the frame pointer.
1981 static const int kDisplacement = 2 * kPointerSize;
1982
1983 // Check if the calling frame is an arguments adaptor frame. 2242 // Check if the calling frame is an arguments adaptor frame.
1984 Label adaptor_frame, try_allocate, runtime; 2243 Label adaptor_frame, try_allocate, runtime;
1985 __ movq(rdx, Operand(rbp, StandardFrameConstants::kCallerFPOffset)); 2244 __ movq(rdx, Operand(rbp, StandardFrameConstants::kCallerFPOffset));
1986 __ Cmp(Operand(rdx, StandardFrameConstants::kContextOffset), 2245 __ movq(rcx, Operand(rdx, StandardFrameConstants::kContextOffset));
1987 Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR)); 2246 __ Cmp(rcx, Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR));
1988 __ j(equal, &adaptor_frame); 2247 __ j(equal, &adaptor_frame);
1989 2248
1990 // Get the length from the frame. 2249 // Get the length from the frame.
1991 __ SmiToInteger32(rcx, Operand(rsp, 1 * kPointerSize)); 2250 __ movq(rcx, Operand(rsp, 1 * kPointerSize));
2251 __ SmiToInteger64(rcx, rcx);
1992 __ jmp(&try_allocate); 2252 __ jmp(&try_allocate);
1993 2253
1994 // Patch the arguments.length and the parameters pointer. 2254 // Patch the arguments.length and the parameters pointer.
1995 __ bind(&adaptor_frame); 2255 __ bind(&adaptor_frame);
1996 __ SmiToInteger32(rcx, 2256 __ movq(rcx, Operand(rdx, ArgumentsAdaptorFrameConstants::kLengthOffset));
1997 Operand(rdx, 2257 __ movq(Operand(rsp, 1 * kPointerSize), rcx);
1998 ArgumentsAdaptorFrameConstants::kLengthOffset)); 2258 __ SmiToInteger64(rcx, rcx);
1999 // Space on stack must already hold a smi. 2259 __ lea(rdx, Operand(rdx, rcx, times_pointer_size,
2000 __ Integer32ToSmiField(Operand(rsp, 1 * kPointerSize), rcx); 2260 StandardFrameConstants::kCallerSPOffset));
2001 // Do not clobber the length index for the indexing operation since
2002 // it is used compute the size for allocation later.
2003 __ lea(rdx, Operand(rdx, rcx, times_pointer_size, kDisplacement));
2004 __ movq(Operand(rsp, 2 * kPointerSize), rdx); 2261 __ movq(Operand(rsp, 2 * kPointerSize), rdx);
2005 2262
2006 // Try the new space allocation. Start out with computing the size of 2263 // Try the new space allocation. Start out with computing the size of
2007 // the arguments object and the elements array. 2264 // the arguments object and the elements array.
2008 Label add_arguments_object; 2265 Label add_arguments_object;
2009 __ bind(&try_allocate); 2266 __ bind(&try_allocate);
2010 if (type_ == NEW_NON_STRICT_SLOW || type_ == NEW_NON_STRICT_FAST) { 2267 __ testq(rcx, rcx);
2011 __ TailCallRuntime(Runtime::kNewArgumentsFast, 3, 1); 2268 __ j(zero, &add_arguments_object, Label::kNear);
2012 } else { 2269 __ lea(rcx, Operand(rcx, times_pointer_size, FixedArray::kHeaderSize));
2013 __ testl(rcx, rcx); 2270 __ bind(&add_arguments_object);
2014 __ j(zero, &add_arguments_object); 2271 __ addq(rcx, Immediate(Heap::kArgumentsObjectSizeStrict));
2015 __ leal(rcx, Operand(rcx, times_pointer_size, FixedArray::kHeaderSize)); 2272
2016 __ bind(&add_arguments_object); 2273 // Do the allocation of both objects in one go.
2017 __ addl(rcx, Immediate(Heap::kArgumentsObjectSize)); 2274 __ AllocateInNewSpace(rcx, rax, rdx, rbx, &runtime, TAG_OBJECT);
2018 2275
2019 // Do the allocation of both objects in one go. 2276 // Get the arguments boilerplate from the current (global) context.
2020 __ AllocateInNewSpace(rcx, rax, rdx, rbx, &runtime, TAG_OBJECT); 2277 __ movq(rdi, Operand(rsi, Context::SlotOffset(Context::GLOBAL_INDEX)));
2021 2278 __ movq(rdi, FieldOperand(rdi, GlobalObject::kGlobalContextOffset));
2022 // Get the arguments boilerplate from the current (global) context. 2279 const int offset =
2023 __ movq(rdi, Operand(rsi, Context::SlotOffset(Context::GLOBAL_INDEX))); 2280 Context::SlotOffset(Context::STRICT_MODE_ARGUMENTS_BOILERPLATE_INDEX);
2024 __ movq(rdi, FieldOperand(rdi, GlobalObject::kGlobalContextOffset)); 2281 __ movq(rdi, Operand(rdi, offset));
2025 __ movq(rdi, Operand(rdi, Context::SlotOffset( 2282
2026 Context::STRICT_MODE_ARGUMENTS_BOILERPLATE_INDEX))); 2283 // Copy the JS object part.
2027 2284 for (int i = 0; i < JSObject::kHeaderSize; i += kPointerSize) {
2028 // Copy the JS object part. 2285 __ movq(rbx, FieldOperand(rdi, i));
2029 STATIC_ASSERT(JSObject::kHeaderSize == 3 * kPointerSize); 2286 __ movq(FieldOperand(rax, i), rbx);
2030 __ movq(kScratchRegister, FieldOperand(rdi, 0 * kPointerSize));
2031 __ movq(rdx, FieldOperand(rdi, 1 * kPointerSize));
2032 __ movq(rbx, FieldOperand(rdi, 2 * kPointerSize));
2033 __ movq(FieldOperand(rax, 0 * kPointerSize), kScratchRegister);
2034 __ movq(FieldOperand(rax, 1 * kPointerSize), rdx);
2035 __ movq(FieldOperand(rax, 2 * kPointerSize), rbx);
2036
2037 if (type_ == NEW_NON_STRICT_SLOW || type_ == NEW_NON_STRICT_FAST) {
2038 // Setup the callee in-object property.
2039 ASSERT(Heap::kArgumentsCalleeIndex == 1);
2040 __ movq(kScratchRegister, Operand(rsp, 3 * kPointerSize));
2041 __ movq(FieldOperand(rax, JSObject::kHeaderSize +
2042 Heap::kArgumentsCalleeIndex * kPointerSize),
2043 kScratchRegister);
2044 }
2045
2046 // Get the length (smi tagged) and set that as an in-object property too.
2047 ASSERT(Heap::kArgumentsLengthIndex == 0);
2048 __ movq(rcx, Operand(rsp, 1 * kPointerSize));
2049 __ movq(FieldOperand(rax, JSObject::kHeaderSize +
2050 Heap::kArgumentsLengthIndex * kPointerSize),
2051 rcx);
2052
2053 // If there are no actual arguments, we're done.
2054 Label done;
2055 __ SmiTest(rcx);
2056 __ j(zero, &done);
2057
2058 // Get the parameters pointer from the stack and untag the length.
2059 __ movq(rdx, Operand(rsp, 2 * kPointerSize));
2060
2061 // Setup the elements pointer in the allocated arguments object and
2062 // initialize the header in the elements fixed array.
2063 __ lea(rdi, Operand(rax, Heap::kArgumentsObjectSize));
2064 __ movq(FieldOperand(rax, JSObject::kElementsOffset), rdi);
2065 __ LoadRoot(kScratchRegister, Heap::kFixedArrayMapRootIndex);
2066 __ movq(FieldOperand(rdi, FixedArray::kMapOffset), kScratchRegister);
2067 __ movq(FieldOperand(rdi, FixedArray::kLengthOffset), rcx);
2068 __ SmiToInteger32(rcx, rcx); // Untag length for the loop below.
2069
2070 // Copy the fixed array slots.
2071 Label loop;
2072 __ bind(&loop);
2073 // -1 ~ skip the receiver.
2074 __ movq(kScratchRegister, Operand(rdx, -1 * kPointerSize));
2075 __ movq(FieldOperand(rdi, FixedArray::kHeaderSize), kScratchRegister);
2076 __ addq(rdi, Immediate(kPointerSize));
2077 __ subq(rdx, Immediate(kPointerSize));
2078 __ decl(rcx);
2079 __ j(not_zero, &loop);
2080
2081 // Return and remove the on-stack parameters.
2082 __ bind(&done);
2083 __ ret(3 * kPointerSize);
2084
2085 // Do the runtime call to allocate the arguments object.
2086 __ bind(&runtime);
2087 __ TailCallRuntime(Runtime::kNewStrictArgumentsFast, 3, 1);
2088 } 2287 }
2288
2289 // Get the length (smi tagged) and set that as an in-object property too.
2290 STATIC_ASSERT(Heap::kArgumentsLengthIndex == 0);
2291 __ movq(rcx, Operand(rsp, 1 * kPointerSize));
2292 __ movq(FieldOperand(rax, JSObject::kHeaderSize +
2293 Heap::kArgumentsLengthIndex * kPointerSize),
2294 rcx);
2295
2296 // If there are no actual arguments, we're done.
2297 Label done;
2298 __ testq(rcx, rcx);
2299 __ j(zero, &done);
2300
2301 // Get the parameters pointer from the stack.
2302 __ movq(rdx, Operand(rsp, 2 * kPointerSize));
2303
2304 // Setup the elements pointer in the allocated arguments object and
2305 // initialize the header in the elements fixed array.
2306 __ lea(rdi, Operand(rax, Heap::kArgumentsObjectSizeStrict));
2307 __ movq(FieldOperand(rax, JSObject::kElementsOffset), rdi);
2308 __ LoadRoot(kScratchRegister, Heap::kFixedArrayMapRootIndex);
2309 __ movq(FieldOperand(rdi, FixedArray::kMapOffset), kScratchRegister);
2310
2311
2312 __ movq(FieldOperand(rdi, FixedArray::kLengthOffset), rcx);
2313 // Untag the length for the loop below.
2314 __ SmiToInteger64(rcx, rcx);
2315
2316 // Copy the fixed array slots.
2317 Label loop;
2318 __ bind(&loop);
2319 __ movq(rbx, Operand(rdx, -1 * kPointerSize)); // Skip receiver.
2320 __ movq(FieldOperand(rdi, FixedArray::kHeaderSize), rbx);
2321 __ addq(rdi, Immediate(kPointerSize));
2322 __ subq(rdx, Immediate(kPointerSize));
2323 __ decq(rcx);
2324 __ j(not_zero, &loop);
2325
2326 // Return and remove the on-stack parameters.
2327 __ bind(&done);
2328 __ ret(3 * kPointerSize);
2329
2330 // Do the runtime call to allocate the arguments object.
2331 __ bind(&runtime);
2332 __ TailCallRuntime(Runtime::kNewStrictArgumentsFast, 3, 1);
2089 } 2333 }
2090 2334
2091 2335
2092 void RegExpExecStub::Generate(MacroAssembler* masm) { 2336 void RegExpExecStub::Generate(MacroAssembler* masm) {
2093 // Just jump directly to runtime if native RegExp is not selected at compile 2337 // Just jump directly to runtime if native RegExp is not selected at compile
2094 // time or if regexp entry in generated code is turned off runtime switch or 2338 // time or if regexp entry in generated code is turned off runtime switch or
2095 // at compilation. 2339 // at compilation.
2096 #ifdef V8_INTERPRETED_REGEXP 2340 #ifdef V8_INTERPRETED_REGEXP
2097 __ TailCallRuntime(Runtime::kRegExpExec, 4, 1); 2341 __ TailCallRuntime(Runtime::kRegExpExec, 4, 1);
2098 #else // V8_INTERPRETED_REGEXP 2342 #else // V8_INTERPRETED_REGEXP
(...skipping 3043 matching lines...) Expand 10 before | Expand all | Expand 10 after
5142 __ Drop(1); 5386 __ Drop(1);
5143 __ ret(2 * kPointerSize); 5387 __ ret(2 * kPointerSize);
5144 } 5388 }
5145 5389
5146 5390
5147 #undef __ 5391 #undef __
5148 5392
5149 } } // namespace v8::internal 5393 } } // namespace v8::internal
5150 5394
5151 #endif // V8_TARGET_ARCH_X64 5395 #endif // V8_TARGET_ARCH_X64
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