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Ben Murdochda12d292016-06-02 14:46:10 +01001// Copyright 2015 the V8 project authors. All rights reserved.
2// Use of this source code is governed by a BSD-style license that can be
3// found in the LICENSE file.
4
5#ifndef V8_COMPILER_S390_INSTRUCTION_CODES_S390_H_
6#define V8_COMPILER_S390_INSTRUCTION_CODES_S390_H_
7
8namespace v8 {
9namespace internal {
10namespace compiler {
11
12// S390-specific opcodes that specify which assembly sequence to emit.
13// Most opcodes specify a single instruction.
14#define TARGET_ARCH_OPCODE_LIST(V) \
15 V(S390_And) \
16 V(S390_AndComplement) \
17 V(S390_Or) \
18 V(S390_OrComplement) \
19 V(S390_Xor) \
20 V(S390_ShiftLeft32) \
21 V(S390_ShiftLeft64) \
22 V(S390_ShiftLeftPair) \
23 V(S390_ShiftRight32) \
24 V(S390_ShiftRight64) \
25 V(S390_ShiftRightPair) \
26 V(S390_ShiftRightArith32) \
27 V(S390_ShiftRightArith64) \
28 V(S390_ShiftRightArithPair) \
29 V(S390_RotRight32) \
30 V(S390_RotRight64) \
31 V(S390_Not) \
32 V(S390_RotLeftAndMask32) \
33 V(S390_RotLeftAndClear64) \
34 V(S390_RotLeftAndClearLeft64) \
35 V(S390_RotLeftAndClearRight64) \
36 V(S390_Add) \
37 V(S390_AddWithOverflow32) \
38 V(S390_AddPair) \
39 V(S390_AddFloat) \
40 V(S390_AddDouble) \
41 V(S390_Sub) \
42 V(S390_SubWithOverflow32) \
43 V(S390_SubFloat) \
44 V(S390_SubDouble) \
45 V(S390_SubPair) \
46 V(S390_MulPair) \
47 V(S390_Mul32) \
48 V(S390_Mul64) \
49 V(S390_MulHigh32) \
50 V(S390_MulHighU32) \
51 V(S390_MulFloat) \
52 V(S390_MulDouble) \
53 V(S390_Div32) \
54 V(S390_Div64) \
55 V(S390_DivU32) \
56 V(S390_DivU64) \
57 V(S390_DivFloat) \
58 V(S390_DivDouble) \
59 V(S390_Mod32) \
60 V(S390_Mod64) \
61 V(S390_ModU32) \
62 V(S390_ModU64) \
63 V(S390_ModDouble) \
64 V(S390_Neg) \
65 V(S390_NegDouble) \
66 V(S390_SqrtFloat) \
67 V(S390_FloorFloat) \
68 V(S390_CeilFloat) \
69 V(S390_TruncateFloat) \
70 V(S390_AbsFloat) \
71 V(S390_SqrtDouble) \
72 V(S390_FloorDouble) \
73 V(S390_CeilDouble) \
74 V(S390_TruncateDouble) \
75 V(S390_RoundDouble) \
76 V(S390_MaxDouble) \
77 V(S390_MinDouble) \
78 V(S390_AbsDouble) \
79 V(S390_Cntlz32) \
80 V(S390_Cntlz64) \
81 V(S390_Popcnt32) \
82 V(S390_Popcnt64) \
83 V(S390_Cmp32) \
84 V(S390_Cmp64) \
85 V(S390_CmpFloat) \
86 V(S390_CmpDouble) \
87 V(S390_Tst32) \
88 V(S390_Tst64) \
89 V(S390_Push) \
90 V(S390_PushFrame) \
91 V(S390_StoreToStackSlot) \
92 V(S390_ExtendSignWord8) \
93 V(S390_ExtendSignWord16) \
94 V(S390_ExtendSignWord32) \
95 V(S390_Uint32ToUint64) \
96 V(S390_Int64ToInt32) \
97 V(S390_Int64ToFloat32) \
98 V(S390_Int64ToDouble) \
99 V(S390_Uint64ToFloat32) \
100 V(S390_Uint64ToDouble) \
101 V(S390_Int32ToFloat32) \
102 V(S390_Int32ToDouble) \
103 V(S390_Uint32ToFloat32) \
104 V(S390_Uint32ToDouble) \
105 V(S390_Float32ToInt64) \
106 V(S390_Float32ToUint64) \
107 V(S390_Float32ToInt32) \
108 V(S390_Float32ToUint32) \
109 V(S390_Float32ToDouble) \
Ben Murdoch61f157c2016-09-16 13:49:30 +0100110 V(S390_Float64SilenceNaN) \
Ben Murdochda12d292016-06-02 14:46:10 +0100111 V(S390_DoubleToInt32) \
112 V(S390_DoubleToUint32) \
113 V(S390_DoubleToInt64) \
114 V(S390_DoubleToUint64) \
115 V(S390_DoubleToFloat32) \
116 V(S390_DoubleExtractLowWord32) \
117 V(S390_DoubleExtractHighWord32) \
118 V(S390_DoubleInsertLowWord32) \
119 V(S390_DoubleInsertHighWord32) \
120 V(S390_DoubleConstruct) \
121 V(S390_BitcastInt32ToFloat32) \
122 V(S390_BitcastFloat32ToInt32) \
123 V(S390_BitcastInt64ToDouble) \
124 V(S390_BitcastDoubleToInt64) \
125 V(S390_LoadWordS8) \
126 V(S390_LoadWordU8) \
127 V(S390_LoadWordS16) \
128 V(S390_LoadWordU16) \
129 V(S390_LoadWordS32) \
Ben Murdochc5610432016-08-08 18:44:38 +0100130 V(S390_LoadWordU32) \
Ben Murdochda12d292016-06-02 14:46:10 +0100131 V(S390_LoadWord64) \
132 V(S390_LoadFloat32) \
133 V(S390_LoadDouble) \
134 V(S390_StoreWord8) \
135 V(S390_StoreWord16) \
136 V(S390_StoreWord32) \
137 V(S390_StoreWord64) \
138 V(S390_StoreFloat32) \
139 V(S390_StoreDouble)
140
141// Addressing modes represent the "shape" of inputs to an instruction.
142// Many instructions support multiple addressing modes. Addressing modes
143// are encoded into the InstructionCode of the instruction and tell the
144// code generator after register allocation which assembler method to call.
145//
146// We use the following local notation for addressing modes:
147//
148// R = register
149// O = register or stack slot
150// D = double register
151// I = immediate (handle, external, int32)
152// MRI = [register + immediate]
153// MRR = [register + register]
154#define TARGET_ADDRESSING_MODE_LIST(V) \
155 V(MRI) /* [%r0 + K] */ \
156 V(MRR) /* [%r0 + %r1] */
157
158} // namespace compiler
159} // namespace internal
160} // namespace v8
161
162#endif // V8_COMPILER_S390_INSTRUCTION_CODES_S390_H_