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Issue 2670843002: [stubs] Also port the CallICStub to CSA. (Closed)
Patch Set: Introduce FullCodeGenerator::IntFromSlot. Created 3 years, 10 months ago
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1 // Copyright 2012 the V8 project authors. All rights reserved. 1 // Copyright 2012 the V8 project authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #if V8_TARGET_ARCH_MIPS 5 #if V8_TARGET_ARCH_MIPS
6 6
7 #include "src/code-stubs.h" 7 #include "src/code-stubs.h"
8 #include "src/api-arguments.h" 8 #include "src/api-arguments.h"
9 #include "src/base/bits.h" 9 #include "src/base/bits.h"
10 #include "src/bootstrapper.h" 10 #include "src/bootstrapper.h"
(...skipping 1875 matching lines...) Expand 10 before | Expand all | Expand 10 after
1886 __ lw(t0, FieldMemOperand(a1, JSFunction::kSharedFunctionInfoOffset)); 1886 __ lw(t0, FieldMemOperand(a1, JSFunction::kSharedFunctionInfoOffset));
1887 __ lw(t0, FieldMemOperand(t0, SharedFunctionInfo::kConstructStubOffset)); 1887 __ lw(t0, FieldMemOperand(t0, SharedFunctionInfo::kConstructStubOffset));
1888 __ Addu(at, t0, Operand(Code::kHeaderSize - kHeapObjectTag)); 1888 __ Addu(at, t0, Operand(Code::kHeaderSize - kHeapObjectTag));
1889 __ Jump(at); 1889 __ Jump(at);
1890 1890
1891 __ bind(&non_function); 1891 __ bind(&non_function);
1892 __ mov(a3, a1); 1892 __ mov(a3, a1);
1893 __ Jump(isolate()->builtins()->Construct(), RelocInfo::CODE_TARGET); 1893 __ Jump(isolate()->builtins()->Construct(), RelocInfo::CODE_TARGET);
1894 } 1894 }
1895 1895
1896 // Note: feedback_vector and slot are clobbered after the call.
1897 static void IncrementCallCount(MacroAssembler* masm, Register feedback_vector,
1898 Register slot) {
1899 __ Lsa(at, feedback_vector, slot, kPointerSizeLog2 - kSmiTagSize);
1900 __ lw(slot, FieldMemOperand(at, FixedArray::kHeaderSize + kPointerSize));
1901 __ Addu(slot, slot, Operand(Smi::FromInt(1)));
1902 __ sw(slot, FieldMemOperand(at, FixedArray::kHeaderSize + kPointerSize));
1903 }
1904
1905 void CallICStub::HandleArrayCase(MacroAssembler* masm, Label* miss) {
1906 // a0 - number of arguments
1907 // a1 - function
1908 // a3 - slot id
1909 // a2 - vector
1910 // t0 - loaded from vector[slot]
1911 __ LoadNativeContextSlot(Context::ARRAY_FUNCTION_INDEX, at);
1912 __ Branch(miss, ne, a1, Operand(at));
1913
1914 // Increment the call count for monomorphic function calls.
1915 IncrementCallCount(masm, a2, a3);
1916
1917 __ mov(a2, t0);
1918 __ mov(a3, a1);
1919 ArrayConstructorStub stub(masm->isolate());
1920 __ TailCallStub(&stub);
1921 }
1922
1923
1924 void CallICStub::Generate(MacroAssembler* masm) {
1925 // a0 - number of arguments
1926 // a1 - function
1927 // a3 - slot id (Smi)
1928 // a2 - vector
1929 Label extra_checks_or_miss, call, call_function, call_count_incremented;
1930
1931 // The checks. First, does r1 match the recorded monomorphic target?
1932 __ Lsa(t0, a2, a3, kPointerSizeLog2 - kSmiTagSize);
1933 __ lw(t0, FieldMemOperand(t0, FixedArray::kHeaderSize));
1934
1935 // We don't know that we have a weak cell. We might have a private symbol
1936 // or an AllocationSite, but the memory is safe to examine.
1937 // AllocationSite::kTransitionInfoOffset - contains a Smi or pointer to
1938 // FixedArray.
1939 // WeakCell::kValueOffset - contains a JSFunction or Smi(0)
1940 // Symbol::kHashFieldSlot - if the low bit is 1, then the hash is not
1941 // computed, meaning that it can't appear to be a pointer. If the low bit is
1942 // 0, then hash is computed, but the 0 bit prevents the field from appearing
1943 // to be a pointer.
1944 STATIC_ASSERT(WeakCell::kSize >= kPointerSize);
1945 STATIC_ASSERT(AllocationSite::kTransitionInfoOffset ==
1946 WeakCell::kValueOffset &&
1947 WeakCell::kValueOffset == Symbol::kHashFieldSlot);
1948
1949 __ lw(t1, FieldMemOperand(t0, WeakCell::kValueOffset));
1950 __ Branch(&extra_checks_or_miss, ne, a1, Operand(t1));
1951
1952 // The compare above could have been a SMI/SMI comparison. Guard against this
1953 // convincing us that we have a monomorphic JSFunction.
1954 __ JumpIfSmi(a1, &extra_checks_or_miss);
1955
1956 __ bind(&call_function);
1957
1958 // Increment the call count for monomorphic function calls.
1959 IncrementCallCount(masm, a2, a3);
1960
1961 __ Jump(masm->isolate()->builtins()->CallFunction(convert_mode(),
1962 tail_call_mode()),
1963 RelocInfo::CODE_TARGET, al, zero_reg, Operand(zero_reg));
1964
1965 __ bind(&extra_checks_or_miss);
1966 Label uninitialized, miss, not_allocation_site;
1967
1968 __ LoadRoot(at, Heap::kmegamorphic_symbolRootIndex);
1969 __ Branch(&call, eq, t0, Operand(at));
1970
1971 // Verify that t0 contains an AllocationSite
1972 __ lw(t1, FieldMemOperand(t0, HeapObject::kMapOffset));
1973 __ LoadRoot(at, Heap::kAllocationSiteMapRootIndex);
1974 __ Branch(&not_allocation_site, ne, t1, Operand(at));
1975
1976 HandleArrayCase(masm, &miss);
1977
1978 __ bind(&not_allocation_site);
1979
1980 // The following cases attempt to handle MISS cases without going to the
1981 // runtime.
1982 if (FLAG_trace_ic) {
1983 __ Branch(&miss);
1984 }
1985
1986 __ LoadRoot(at, Heap::kuninitialized_symbolRootIndex);
1987 __ Branch(&uninitialized, eq, t0, Operand(at));
1988
1989 // We are going megamorphic. If the feedback is a JSFunction, it is fine
1990 // to handle it here. More complex cases are dealt with in the runtime.
1991 __ AssertNotSmi(t0);
1992 __ GetObjectType(t0, t1, t1);
1993 __ Branch(&miss, ne, t1, Operand(JS_FUNCTION_TYPE));
1994 __ Lsa(t0, a2, a3, kPointerSizeLog2 - kSmiTagSize);
1995 __ LoadRoot(at, Heap::kmegamorphic_symbolRootIndex);
1996 __ sw(at, FieldMemOperand(t0, FixedArray::kHeaderSize));
1997
1998 __ bind(&call);
1999 IncrementCallCount(masm, a2, a3);
2000
2001 __ bind(&call_count_incremented);
2002
2003 __ Jump(masm->isolate()->builtins()->Call(convert_mode(), tail_call_mode()),
2004 RelocInfo::CODE_TARGET, al, zero_reg, Operand(zero_reg));
2005
2006 __ bind(&uninitialized);
2007
2008 // We are going monomorphic, provided we actually have a JSFunction.
2009 __ JumpIfSmi(a1, &miss);
2010
2011 // Goto miss case if we do not have a function.
2012 __ GetObjectType(a1, t0, t0);
2013 __ Branch(&miss, ne, t0, Operand(JS_FUNCTION_TYPE));
2014
2015 // Make sure the function is not the Array() function, which requires special
2016 // behavior on MISS.
2017 __ LoadNativeContextSlot(Context::ARRAY_FUNCTION_INDEX, t0);
2018 __ Branch(&miss, eq, a1, Operand(t0));
2019
2020 // Make sure the function belongs to the same native context.
2021 __ lw(t0, FieldMemOperand(a1, JSFunction::kContextOffset));
2022 __ lw(t0, ContextMemOperand(t0, Context::NATIVE_CONTEXT_INDEX));
2023 __ lw(t1, NativeContextMemOperand());
2024 __ Branch(&miss, ne, t0, Operand(t1));
2025
2026 // Store the function. Use a stub since we need a frame for allocation.
2027 // a2 - vector
2028 // a3 - slot
2029 // a1 - function
2030 {
2031 FrameScope scope(masm, StackFrame::INTERNAL);
2032 CreateWeakCellStub create_stub(masm->isolate());
2033 __ SmiTag(a0);
2034 __ Push(a0);
2035 __ Push(a2, a3);
2036 __ Push(cp, a1);
2037 __ CallStub(&create_stub);
2038 __ Pop(cp, a1);
2039 __ Pop(a2, a3);
2040 __ Pop(a0);
2041 __ SmiUntag(a0);
2042 }
2043
2044 __ Branch(&call_function);
2045
2046 // We are here because tracing is on or we encountered a MISS case we can't
2047 // handle here.
2048 __ bind(&miss);
2049 GenerateMiss(masm);
2050
2051 __ Branch(&call_count_incremented);
2052 }
2053
2054
2055 void CallICStub::GenerateMiss(MacroAssembler* masm) {
2056 FrameScope scope(masm, StackFrame::INTERNAL);
2057
2058 // Preserve the number of arguments as Smi.
2059 __ SmiTag(a0);
2060 __ Push(a0);
2061
2062 // Push the receiver and the function and feedback info.
2063 __ Push(a1, a2, a3);
2064
2065 // Call the entry.
2066 __ CallRuntime(Runtime::kCallIC_Miss);
2067
2068 // Move result to a1 and exit the internal frame.
2069 __ mov(a1, v0);
2070
2071 // Restore number of arguments.
2072 __ Pop(a0);
2073 __ SmiUntag(a0);
2074 }
2075
2076
2077 // StringCharCodeAtGenerator. 1896 // StringCharCodeAtGenerator.
2078 void StringCharCodeAtGenerator::GenerateFast(MacroAssembler* masm) { 1897 void StringCharCodeAtGenerator::GenerateFast(MacroAssembler* masm) {
2079 DCHECK(!t0.is(index_)); 1898 DCHECK(!t0.is(index_));
2080 DCHECK(!t0.is(result_)); 1899 DCHECK(!t0.is(result_));
2081 DCHECK(!t0.is(object_)); 1900 DCHECK(!t0.is(object_));
2082 if (check_mode_ == RECEIVER_IS_UNKNOWN) { 1901 if (check_mode_ == RECEIVER_IS_UNKNOWN) {
2083 // If the receiver is a smi trigger the non-string case. 1902 // If the receiver is a smi trigger the non-string case.
2084 __ JumpIfSmi(object_, receiver_not_string_); 1903 __ JumpIfSmi(object_, receiver_not_string_);
2085 1904
2086 // Fetch the instance type of the receiver into result register. 1905 // Fetch the instance type of the receiver into result register.
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4286 kStackUnwindSpace, kInvalidStackOffset, 4105 kStackUnwindSpace, kInvalidStackOffset,
4287 return_value_operand, NULL); 4106 return_value_operand, NULL);
4288 } 4107 }
4289 4108
4290 #undef __ 4109 #undef __
4291 4110
4292 } // namespace internal 4111 } // namespace internal
4293 } // namespace v8 4112 } // namespace v8
4294 4113
4295 #endif // V8_TARGET_ARCH_MIPS 4114 #endif // V8_TARGET_ARCH_MIPS
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