X86ISelLowering.h revision 2db39b865e689681d39948691e06531dc4f3356c
1dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//===-- X86ISelLowering.h - X86 DAG Lowering Interface ----------*- C++ -*-===//
2dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//
3dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//                     The LLVM Compiler Infrastructure
4dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//
5dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner// This file was developed by Chris Lattner and is distributed under
6dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner// the University of Illinois Open Source License. See LICENSE.TXT for details.
7dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//
8dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//===----------------------------------------------------------------------===//
9dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//
10dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner// This file defines the interfaces that X86 uses to lower LLVM code into a
11dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner// selection DAG.
12dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//
13dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner//===----------------------------------------------------------------------===//
14dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
15dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner#ifndef X86ISELLOWERING_H
16dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner#define X86ISELLOWERING_H
17dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
18559806f575297866609c7bef0e5c1084dcdda9a5Evan Cheng#include "X86Subtarget.h"
19dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner#include "llvm/Target/TargetLowering.h"
20dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner#include "llvm/CodeGen/SelectionDAG.h"
21dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
22dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattnernamespace llvm {
23dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner  namespace X86ISD {
24d9558e0ba6ddcf2798cfb88cc56e5f1c8135eb0dEvan Cheng    // X86 Specific DAG Nodes
25dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    enum NodeType {
26dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      // Start the numbering where the builtin ops leave off.
277df96d66729d1f33934de7b52553e5f071686041Evan Cheng      FIRST_NUMBER = ISD::BUILTIN_OP_END+X86::INSTRUCTION_LIST_END,
28dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
29e3413160ca2fb42854b2a23be6b2114c1da2778cEvan Cheng      /// SHLD, SHRD - Double shift instructions. These correspond to
30e3413160ca2fb42854b2a23be6b2114c1da2778cEvan Cheng      /// X86::SHLDxx and X86::SHRDxx instructions.
31e3413160ca2fb42854b2a23be6b2114c1da2778cEvan Cheng      SHLD,
32e3413160ca2fb42854b2a23be6b2114c1da2778cEvan Cheng      SHRD,
33e3413160ca2fb42854b2a23be6b2114c1da2778cEvan Cheng
34ef6ffb17c71232af5962f9926b31508eb942cddcEvan Cheng      /// FAND - Bitwise logical AND of floating point values. This corresponds
35ef6ffb17c71232af5962f9926b31508eb942cddcEvan Cheng      /// to X86::ANDPS or X86::ANDPD.
36ef6ffb17c71232af5962f9926b31508eb942cddcEvan Cheng      FAND,
37ef6ffb17c71232af5962f9926b31508eb942cddcEvan Cheng
3868c47cba3589b2fc079bab0836d1ae6fc3a6278dEvan Cheng      /// FOR - Bitwise logical OR of floating point values. This corresponds
3968c47cba3589b2fc079bab0836d1ae6fc3a6278dEvan Cheng      /// to X86::ORPS or X86::ORPD.
4068c47cba3589b2fc079bab0836d1ae6fc3a6278dEvan Cheng      FOR,
4168c47cba3589b2fc079bab0836d1ae6fc3a6278dEvan Cheng
42223547ab3101f32252cb704a67bd757e00fdbd16Evan Cheng      /// FXOR - Bitwise logical XOR of floating point values. This corresponds
43223547ab3101f32252cb704a67bd757e00fdbd16Evan Cheng      /// to X86::XORPS or X86::XORPD.
44223547ab3101f32252cb704a67bd757e00fdbd16Evan Cheng      FXOR,
45223547ab3101f32252cb704a67bd757e00fdbd16Evan Cheng
4673d6cf12adfd915897cce7e1ba9de00f962502d5Evan Cheng      /// FSRL - Bitwise logical right shift of floating point values. These
4773d6cf12adfd915897cce7e1ba9de00f962502d5Evan Cheng      /// corresponds to X86::PSRLDQ.
4868c47cba3589b2fc079bab0836d1ae6fc3a6278dEvan Cheng      FSRL,
4968c47cba3589b2fc079bab0836d1ae6fc3a6278dEvan Cheng
50e3de85b447b0a94c82f147159a0c903ea47e0069Evan Cheng      /// FILD, FILD_FLAG - This instruction implements SINT_TO_FP with the
51e3de85b447b0a94c82f147159a0c903ea47e0069Evan Cheng      /// integer source in memory and FP reg result.  This corresponds to the
52e3de85b447b0a94c82f147159a0c903ea47e0069Evan Cheng      /// X86::FILD*m instructions. It has three inputs (token chain, address,
53e3de85b447b0a94c82f147159a0c903ea47e0069Evan Cheng      /// and source type) and two outputs (FP value and token chain). FILD_FLAG
54e3de85b447b0a94c82f147159a0c903ea47e0069Evan Cheng      /// also produces a flag).
55a3195e86439896ecba9b3f2afce40919b20a987aEvan Cheng      FILD,
56e3de85b447b0a94c82f147159a0c903ea47e0069Evan Cheng      FILD_FLAG,
57dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
58dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// FP_TO_INT*_IN_MEM - This instruction implements FP_TO_SINT with the
59dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// integer destination in memory and a FP reg source.  This corresponds
60dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// to the X86::FIST*m instructions and the rounding mode change stuff. It
6191897778690a7d683497ba3f4040ebf09345f08aChris Lattner      /// has two inputs (token chain and address) and two outputs (int value
6291897778690a7d683497ba3f4040ebf09345f08aChris Lattner      /// and token chain).
63dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      FP_TO_INT16_IN_MEM,
64dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      FP_TO_INT32_IN_MEM,
65dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      FP_TO_INT64_IN_MEM,
66dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
67b077b842b64af39c8e2e9aaad327b3be446790ddEvan Cheng      /// FLD - This instruction implements an extending load to FP stack slots.
68b077b842b64af39c8e2e9aaad327b3be446790ddEvan Cheng      /// This corresponds to the X86::FLD32m / X86::FLD64m. It takes a chain
6938bcbaf23e8836c8f64e7fd66ebebc44a2b921a1Evan Cheng      /// operand, ptr to load from, and a ValueType node indicating the type
7038bcbaf23e8836c8f64e7fd66ebebc44a2b921a1Evan Cheng      /// to load to.
71b077b842b64af39c8e2e9aaad327b3be446790ddEvan Cheng      FLD,
72b077b842b64af39c8e2e9aaad327b3be446790ddEvan Cheng
73d90eb7fb2435e2abedb4694edc44fa45642edbe9Evan Cheng      /// FST - This instruction implements a truncating store to FP stack
74d90eb7fb2435e2abedb4694edc44fa45642edbe9Evan Cheng      /// slots. This corresponds to the X86::FST32m / X86::FST64m. It takes a
75d90eb7fb2435e2abedb4694edc44fa45642edbe9Evan Cheng      /// chain operand, value to store, address, and a ValueType to store it
76d90eb7fb2435e2abedb4694edc44fa45642edbe9Evan Cheng      /// as.
77d90eb7fb2435e2abedb4694edc44fa45642edbe9Evan Cheng      FST,
78d90eb7fb2435e2abedb4694edc44fa45642edbe9Evan Cheng
79cb18656734c374737f27c10750a3b532ac41ab26Chris Lattner      /// FP_GET_RESULT - This corresponds to FpGETRESULT pseudo instruction
80cb18656734c374737f27c10750a3b532ac41ab26Chris Lattner      /// which copies from ST(0) to the destination. It takes a chain and
81cb18656734c374737f27c10750a3b532ac41ab26Chris Lattner      /// writes a RFP result and a chain.
82d90eb7fb2435e2abedb4694edc44fa45642edbe9Evan Cheng      FP_GET_RESULT,
83d90eb7fb2435e2abedb4694edc44fa45642edbe9Evan Cheng
84cb18656734c374737f27c10750a3b532ac41ab26Chris Lattner      /// FP_SET_RESULT - This corresponds to FpSETRESULT pseudo instruction
85cb18656734c374737f27c10750a3b532ac41ab26Chris Lattner      /// which copies the source operand to ST(0). It takes a chain+value and
86cb18656734c374737f27c10750a3b532ac41ab26Chris Lattner      /// returns a chain and a flag.
87b077b842b64af39c8e2e9aaad327b3be446790ddEvan Cheng      FP_SET_RESULT,
88b077b842b64af39c8e2e9aaad327b3be446790ddEvan Cheng
89dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// CALL/TAILCALL - These operations represent an abstract X86 call
90dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// instruction, which includes a bunch of information.  In particular the
91dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// operands of these node are:
92dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///
93dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #0 - The incoming token chain
94dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #1 - The callee
95dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #2 - The number of arg bytes the caller pushes on the stack.
96dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #3 - The number of arg bytes the callee pops off the stack.
97dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #4 - The value to pass in AL/AX/EAX (optional)
98dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #5 - The value to pass in DL/DX/EDX (optional)
99dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///
100dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// The result values of these nodes are:
101dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///
102dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #0 - The outgoing token chain
103dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #1 - The first register result value (optional)
104dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///     #2 - The second register result value (optional)
105dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      ///
106dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// The CALL vs TAILCALL distinction boils down to whether the callee is
107dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// known not to modify the caller's stack frame, as is standard with
108dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      /// LLVM.
109dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      CALL,
110dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner      TAILCALL,
111b873ff322c28ce097762355921100b677c71238dAndrew Lenharth
112b873ff322c28ce097762355921100b677c71238dAndrew Lenharth      /// RDTSC_DAG - This operation implements the lowering for
113b873ff322c28ce097762355921100b677c71238dAndrew Lenharth      /// readcyclecounter
114b873ff322c28ce097762355921100b677c71238dAndrew Lenharth      RDTSC_DAG,
1157df96d66729d1f33934de7b52553e5f071686041Evan Cheng
1167df96d66729d1f33934de7b52553e5f071686041Evan Cheng      /// X86 compare and logical compare instructions.
1176be2c58c8c4d2b8dede9e3d6920a18f04164388bEvan Cheng      CMP, TEST, COMI, UCOMI,
1187df96d66729d1f33934de7b52553e5f071686041Evan Cheng
119d5781fca4f8f98863560338d4f8d017389428119Evan Cheng      /// X86 SetCC. Operand 1 is condition code, and operand 2 is the flag
120d5781fca4f8f98863560338d4f8d017389428119Evan Cheng      /// operand produced by a CMP instruction.
121d5781fca4f8f98863560338d4f8d017389428119Evan Cheng      SETCC,
122d5781fca4f8f98863560338d4f8d017389428119Evan Cheng
123d5781fca4f8f98863560338d4f8d017389428119Evan Cheng      /// X86 conditional moves. Operand 1 and operand 2 are the two values
12491897778690a7d683497ba3f4040ebf09345f08aChris Lattner      /// to select from (operand 1 is a R/W operand). Operand 3 is the
12591897778690a7d683497ba3f4040ebf09345f08aChris Lattner      /// condition code, and operand 4 is the flag operand produced by a CMP
12691897778690a7d683497ba3f4040ebf09345f08aChris Lattner      /// or TEST instruction. It also writes a flag result.
1277df96d66729d1f33934de7b52553e5f071686041Evan Cheng      CMOV,
128898101c15fa11a896deb4e2fcb73b4727e1dcc1fEvan Cheng
129d5781fca4f8f98863560338d4f8d017389428119Evan Cheng      /// X86 conditional branches. Operand 1 is the chain operand, operand 2
130d5781fca4f8f98863560338d4f8d017389428119Evan Cheng      /// is the block to branch if condition is true, operand 3 is the
131d5781fca4f8f98863560338d4f8d017389428119Evan Cheng      /// condition code, and operand 4 is the flag operand produced by a CMP
132d5781fca4f8f98863560338d4f8d017389428119Evan Cheng      /// or TEST instruction.
133898101c15fa11a896deb4e2fcb73b4727e1dcc1fEvan Cheng      BRCOND,
134b077b842b64af39c8e2e9aaad327b3be446790ddEvan Cheng
13567f92a76497d1f50e0dd6279c81b45689bd463f5Evan Cheng      /// Return with a flag operand. Operand 1 is the chain operand, operand
13667f92a76497d1f50e0dd6279c81b45689bd463f5Evan Cheng      /// 2 is the number of bytes of stack to pop.
137b077b842b64af39c8e2e9aaad327b3be446790ddEvan Cheng      RET_FLAG,
13867f92a76497d1f50e0dd6279c81b45689bd463f5Evan Cheng
13967f92a76497d1f50e0dd6279c81b45689bd463f5Evan Cheng      /// REP_STOS - Repeat fill, corresponds to X86::REP_STOSx.
14067f92a76497d1f50e0dd6279c81b45689bd463f5Evan Cheng      REP_STOS,
14167f92a76497d1f50e0dd6279c81b45689bd463f5Evan Cheng
14267f92a76497d1f50e0dd6279c81b45689bd463f5Evan Cheng      /// REP_MOVS - Repeat move, corresponds to X86::REP_MOVSx.
14367f92a76497d1f50e0dd6279c81b45689bd463f5Evan Cheng      REP_MOVS,
144223547ab3101f32252cb704a67bd757e00fdbd16Evan Cheng
145223547ab3101f32252cb704a67bd757e00fdbd16Evan Cheng      /// LOAD_PACK Load a 128-bit packed float / double value. It has the same
146223547ab3101f32252cb704a67bd757e00fdbd16Evan Cheng      /// operands as a normal load.
147223547ab3101f32252cb704a67bd757e00fdbd16Evan Cheng      LOAD_PACK,
1487ccced634ae0ecdc1c4f599fd3abf188c367e231Evan Cheng
149206ee9d86cd4e78176fad6bfa2b016023edf5df7Evan Cheng      /// LOAD_UA Load an unaligned 128-bit value. It has the same operands as
150206ee9d86cd4e78176fad6bfa2b016023edf5df7Evan Cheng      /// a normal load.
151206ee9d86cd4e78176fad6bfa2b016023edf5df7Evan Cheng      LOAD_UA,
152206ee9d86cd4e78176fad6bfa2b016023edf5df7Evan Cheng
1537ccced634ae0ecdc1c4f599fd3abf188c367e231Evan Cheng      /// GlobalBaseReg - On Darwin, this node represents the result of the popl
1547ccced634ae0ecdc1c4f599fd3abf188c367e231Evan Cheng      /// at function entry, used for PIC code.
1557ccced634ae0ecdc1c4f599fd3abf188c367e231Evan Cheng      GlobalBaseReg,
156a0ea0539e359f6d82218e5aa4cdf3b50b17d6fbdEvan Cheng
1576458f1807d32e3625a192526c665a365f5886365Chris Lattner      /// Wrapper - A wrapper node for TargetConstantPool,
158020d2e8e7aa36692af13c1215fdd6248a6d9e950Evan Cheng      /// TargetExternalSymbol, and TargetGlobalAddress.
159020d2e8e7aa36692af13c1215fdd6248a6d9e950Evan Cheng      Wrapper,
16048090aa8145640c023563751a8a1e1bcc09125e5Evan Cheng
1610085a28d13f86b09ba0c83e8dce81de3ba15ca2dEvan Cheng      /// WrapperRIP - Special wrapper used under X86-64 PIC mode for RIP
1620085a28d13f86b09ba0c83e8dce81de3ba15ca2dEvan Cheng      /// relative displacements.
1630085a28d13f86b09ba0c83e8dce81de3ba15ca2dEvan Cheng      WrapperRIP,
1640085a28d13f86b09ba0c83e8dce81de3ba15ca2dEvan Cheng
165bc4832bc648f9cfb99a43e01852e0f2c7632f16cEvan Cheng      /// S2VEC - X86 version of SCALAR_TO_VECTOR. The destination base does not
166bc4832bc648f9cfb99a43e01852e0f2c7632f16cEvan Cheng      /// have to match the operand type.
167bc4832bc648f9cfb99a43e01852e0f2c7632f16cEvan Cheng      S2VEC,
168b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng
169b067a1e7e68c4446d3512c25d3a5ac55c6dd76f8Evan Cheng      /// PEXTRW - Extract a 16-bit value from a vector and zero extend it to
170653159f4aac61a7ad796e406a4899d27ffe5a789Evan Cheng      /// i32, corresponds to X86::PEXTRW.
171b067a1e7e68c4446d3512c25d3a5ac55c6dd76f8Evan Cheng      PEXTRW,
172653159f4aac61a7ad796e406a4899d27ffe5a789Evan Cheng
173653159f4aac61a7ad796e406a4899d27ffe5a789Evan Cheng      /// PINSRW - Insert the lower 16-bits of a 32-bit value to a vector,
174653159f4aac61a7ad796e406a4899d27ffe5a789Evan Cheng      /// corresponds to X86::PINSRW.
1758ca29326e19201075f6dc95781560ea9ad41ececEvan Cheng      PINSRW,
1768ca29326e19201075f6dc95781560ea9ad41ececEvan Cheng
1778ca29326e19201075f6dc95781560ea9ad41ececEvan Cheng      /// FMAX, FMIN - Floating point max and min.
1788ca29326e19201075f6dc95781560ea9ad41ececEvan Cheng      ///
1798ca29326e19201075f6dc95781560ea9ad41ececEvan Cheng      FMAX, FMIN
180dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    };
181dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner  }
182dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
183b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng /// Define some predicates that are used for node matching.
184b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng namespace X86 {
1850188ecba85c7139f237baa4ce5612fdfc83e1b84Evan Cheng   /// isPSHUFDMask - Return true if the specified VECTOR_SHUFFLE operand
1860188ecba85c7139f237baa4ce5612fdfc83e1b84Evan Cheng   /// specifies a shuffle of elements that is suitable for input to PSHUFD.
1870188ecba85c7139f237baa4ce5612fdfc83e1b84Evan Cheng   bool isPSHUFDMask(SDNode *N);
1880188ecba85c7139f237baa4ce5612fdfc83e1b84Evan Cheng
189506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// isPSHUFHWMask - Return true if the specified VECTOR_SHUFFLE operand
190506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// specifies a shuffle of elements that is suitable for input to PSHUFD.
191506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   bool isPSHUFHWMask(SDNode *N);
192506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng
193506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// isPSHUFLWMask - Return true if the specified VECTOR_SHUFFLE operand
194506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// specifies a shuffle of elements that is suitable for input to PSHUFD.
195506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   bool isPSHUFLWMask(SDNode *N);
196506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng
19714aed5e66b606ab3ba39e1effd2a0a17790d6f19Evan Cheng   /// isSHUFPMask - Return true if the specified VECTOR_SHUFFLE operand
19814aed5e66b606ab3ba39e1effd2a0a17790d6f19Evan Cheng   /// specifies a shuffle of elements that is suitable for input to SHUFP*.
19914aed5e66b606ab3ba39e1effd2a0a17790d6f19Evan Cheng   bool isSHUFPMask(SDNode *N);
20014aed5e66b606ab3ba39e1effd2a0a17790d6f19Evan Cheng
2012c0dbd01d240f80e5517773d8e2f77924c69a6ecEvan Cheng   /// isMOVHLPSMask - Return true if the specified VECTOR_SHUFFLE operand
2022c0dbd01d240f80e5517773d8e2f77924c69a6ecEvan Cheng   /// specifies a shuffle of elements that is suitable for input to MOVHLPS.
2032c0dbd01d240f80e5517773d8e2f77924c69a6ecEvan Cheng   bool isMOVHLPSMask(SDNode *N);
2042c0dbd01d240f80e5517773d8e2f77924c69a6ecEvan Cheng
2056e56e2c602084bd7ab4af54e3c1a8700a9320f97Evan Cheng   /// isMOVHLPS_v_undef_Mask - Special case of isMOVHLPSMask for canonical form
2066e56e2c602084bd7ab4af54e3c1a8700a9320f97Evan Cheng   /// of vector_shuffle v, v, <2, 3, 2, 3>, i.e. vector_shuffle v, undef,
2076e56e2c602084bd7ab4af54e3c1a8700a9320f97Evan Cheng   /// <2, 3, 2, 3>
2086e56e2c602084bd7ab4af54e3c1a8700a9320f97Evan Cheng   bool isMOVHLPS_v_undef_Mask(SDNode *N);
2096e56e2c602084bd7ab4af54e3c1a8700a9320f97Evan Cheng
2105ced1d812e1de885b568ddfa6da008895d3f7ce7Evan Cheng   /// isMOVLPMask - Return true if the specified VECTOR_SHUFFLE operand
2115ced1d812e1de885b568ddfa6da008895d3f7ce7Evan Cheng   /// specifies a shuffle of elements that is suitable for input to MOVLP{S|D}.
2125ced1d812e1de885b568ddfa6da008895d3f7ce7Evan Cheng   bool isMOVLPMask(SDNode *N);
2135ced1d812e1de885b568ddfa6da008895d3f7ce7Evan Cheng
2145ced1d812e1de885b568ddfa6da008895d3f7ce7Evan Cheng   /// isMOVHPMask - Return true if the specified VECTOR_SHUFFLE operand
215533a0aa9ba8653e2a0219be442eebae02f371c88Evan Cheng   /// specifies a shuffle of elements that is suitable for input to MOVHP{S|D}
216533a0aa9ba8653e2a0219be442eebae02f371c88Evan Cheng   /// as well as MOVLHPS.
2175ced1d812e1de885b568ddfa6da008895d3f7ce7Evan Cheng   bool isMOVHPMask(SDNode *N);
2185ced1d812e1de885b568ddfa6da008895d3f7ce7Evan Cheng
2190038e598037f76c2dce8b55ebb5e9147fd786330Evan Cheng   /// isUNPCKLMask - Return true if the specified VECTOR_SHUFFLE operand
2200038e598037f76c2dce8b55ebb5e9147fd786330Evan Cheng   /// specifies a shuffle of elements that is suitable for input to UNPCKL.
22139623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng   bool isUNPCKLMask(SDNode *N, bool V2IsSplat = false);
2220038e598037f76c2dce8b55ebb5e9147fd786330Evan Cheng
2234fcb922c70b67bbd74ff77a9b831bd3699839b6dEvan Cheng   /// isUNPCKHMask - Return true if the specified VECTOR_SHUFFLE operand
2244fcb922c70b67bbd74ff77a9b831bd3699839b6dEvan Cheng   /// specifies a shuffle of elements that is suitable for input to UNPCKH.
22539623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng   bool isUNPCKHMask(SDNode *N, bool V2IsSplat = false);
2264fcb922c70b67bbd74ff77a9b831bd3699839b6dEvan Cheng
2271d5a8cca004c29d99526b3c327d948f8ab197c90Evan Cheng   /// isUNPCKL_v_undef_Mask - Special case of isUNPCKLMask for canonical form
2281d5a8cca004c29d99526b3c327d948f8ab197c90Evan Cheng   /// of vector_shuffle v, v, <0, 4, 1, 5>, i.e. vector_shuffle v, undef,
2291d5a8cca004c29d99526b3c327d948f8ab197c90Evan Cheng   /// <0, 0, 1, 1>
2301d5a8cca004c29d99526b3c327d948f8ab197c90Evan Cheng   bool isUNPCKL_v_undef_Mask(SDNode *N);
2311d5a8cca004c29d99526b3c327d948f8ab197c90Evan Cheng
232017dcc6e556f3f89dd3e3881696084af694718acEvan Cheng   /// isMOVLMask - Return true if the specified VECTOR_SHUFFLE operand
233017dcc6e556f3f89dd3e3881696084af694718acEvan Cheng   /// specifies a shuffle of elements that is suitable for input to MOVSS,
234017dcc6e556f3f89dd3e3881696084af694718acEvan Cheng   /// MOVSD, and MOVD, i.e. setting the lowest element.
235017dcc6e556f3f89dd3e3881696084af694718acEvan Cheng   bool isMOVLMask(SDNode *N);
236d6d1cbd692dd519263e30d97d6c4c9e453b5c5d5Evan Cheng
237d953947d26da373b3b4e5ff66b60883fb78c0dd5Evan Cheng   /// isMOVSHDUPMask - Return true if the specified VECTOR_SHUFFLE operand
238d953947d26da373b3b4e5ff66b60883fb78c0dd5Evan Cheng   /// specifies a shuffle of elements that is suitable for input to MOVSHDUP.
239d953947d26da373b3b4e5ff66b60883fb78c0dd5Evan Cheng   bool isMOVSHDUPMask(SDNode *N);
240d953947d26da373b3b4e5ff66b60883fb78c0dd5Evan Cheng
241d953947d26da373b3b4e5ff66b60883fb78c0dd5Evan Cheng   /// isMOVSLDUPMask - Return true if the specified VECTOR_SHUFFLE operand
242d953947d26da373b3b4e5ff66b60883fb78c0dd5Evan Cheng   /// specifies a shuffle of elements that is suitable for input to MOVSLDUP.
243d953947d26da373b3b4e5ff66b60883fb78c0dd5Evan Cheng   bool isMOVSLDUPMask(SDNode *N);
244d953947d26da373b3b4e5ff66b60883fb78c0dd5Evan Cheng
245b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng   /// isSplatMask - Return true if the specified VECTOR_SHUFFLE operand
246b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng   /// specifies a splat of a single element.
247b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng   bool isSplatMask(SDNode *N);
248b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng
249f686d9b71f0aa99578dac9a4dd50b57ece6945faEvan Cheng   /// isSplatLoMask - Return true if the specified VECTOR_SHUFFLE operand
250f686d9b71f0aa99578dac9a4dd50b57ece6945faEvan Cheng   /// specifies a splat of zero element.
251f686d9b71f0aa99578dac9a4dd50b57ece6945faEvan Cheng   bool isSplatLoMask(SDNode *N);
252f686d9b71f0aa99578dac9a4dd50b57ece6945faEvan Cheng
25363d3300da1ec6403fbf11f62d6404c7f87bffdbaEvan Cheng   /// getShuffleSHUFImmediate - Return the appropriate immediate to shuffle
25463d3300da1ec6403fbf11f62d6404c7f87bffdbaEvan Cheng   /// the specified isShuffleMask VECTOR_SHUFFLE mask with PSHUF* and SHUFP*
25563d3300da1ec6403fbf11f62d6404c7f87bffdbaEvan Cheng   /// instructions.
25663d3300da1ec6403fbf11f62d6404c7f87bffdbaEvan Cheng   unsigned getShuffleSHUFImmediate(SDNode *N);
257506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng
258506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// getShufflePSHUFHWImmediate - Return the appropriate immediate to shuffle
259506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// the specified isShuffleMask VECTOR_SHUFFLE mask with PSHUFHW
260506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// instructions.
261506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   unsigned getShufflePSHUFHWImmediate(SDNode *N);
262506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng
263506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// getShufflePSHUFKWImmediate - Return the appropriate immediate to shuffle
264506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// the specified isShuffleMask VECTOR_SHUFFLE mask with PSHUFLW
265506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   /// instructions.
266506d3dfa90cfee6ab4736a6a2c892e9059a7864dEvan Cheng   unsigned getShufflePSHUFLWImmediate(SDNode *N);
267b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng }
268b9df0ca67b9a59c75685a72ee50b1b471aa9d1bfEvan Cheng
26991897778690a7d683497ba3f4040ebf09345f08aChris Lattner  //===--------------------------------------------------------------------===//
270dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner  //  X86TargetLowering - X86 Implementation of the TargetLowering interface
271dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner  class X86TargetLowering : public TargetLowering {
272dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    int VarArgsFrameIndex;            // FrameIndex for start of varargs area.
27325ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng    int RegSaveFrameIndex;            // X86-64 vararg func register save area.
27425ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng    unsigned VarArgsGPOffset;         // X86-64 vararg func int reg offset.
27525ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng    unsigned VarArgsFPOffset;         // X86-64 vararg func fp reg offset.
276dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    int ReturnAddrIndex;              // FrameIndex for return slot.
277dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    int BytesToPopOnReturn;           // Number of arg bytes ret should pop.
278dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    int BytesCallerReserves;          // Number of arg bytes caller makes.
279dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner  public:
280dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    X86TargetLowering(TargetMachine &TM);
281dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
282dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    // Return the number of bytes that a function should pop when it returns (in
283dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    // addition to the space used by the return address).
284dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    //
285dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    unsigned getBytesToPopOnReturn() const { return BytesToPopOnReturn; }
286dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
287dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    // Return the number of bytes that the caller reserves for arguments passed
288dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    // to this function.
289dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    unsigned getBytesCallerReserves() const { return BytesCallerReserves; }
290dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
29154e3efde4636dade74f95ede039091bf52ca1585Chris Lattner    /// getStackPtrReg - Return the stack pointer register we are using: either
29254e3efde4636dade74f95ede039091bf52ca1585Chris Lattner    /// ESP or RSP.
29354e3efde4636dade74f95ede039091bf52ca1585Chris Lattner    unsigned getStackPtrReg() const { return X86StackPtr; }
29454e3efde4636dade74f95ede039091bf52ca1585Chris Lattner
295dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    /// LowerOperation - Provide custom lowering hooks for some operations.
296dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    ///
297dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    virtual SDOperand LowerOperation(SDOperand Op, SelectionDAG &DAG);
298dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
299206ee9d86cd4e78176fad6bfa2b016023edf5df7Evan Cheng    virtual SDOperand PerformDAGCombine(SDNode *N, DAGCombinerInfo &DCI) const;
300206ee9d86cd4e78176fad6bfa2b016023edf5df7Evan Cheng
3014a46080fe0133c71b511805c63abfb158dcd56a5Evan Cheng    virtual MachineBasicBlock *InsertAtEndOfBasicBlock(MachineInstr *MI,
3024a46080fe0133c71b511805c63abfb158dcd56a5Evan Cheng                                                       MachineBasicBlock *MBB);
3034a46080fe0133c71b511805c63abfb158dcd56a5Evan Cheng
3047226158d7e3986e55b58214a749aa4eabb3fb6d5Evan Cheng    /// getTargetNodeName - This method returns the name of a target specific
3057226158d7e3986e55b58214a749aa4eabb3fb6d5Evan Cheng    /// DAG node.
3067226158d7e3986e55b58214a749aa4eabb3fb6d5Evan Cheng    virtual const char *getTargetNodeName(unsigned Opcode) const;
3077226158d7e3986e55b58214a749aa4eabb3fb6d5Evan Cheng
308368e18d56a87308045d341e85584597bfe7426e9Nate Begeman    /// computeMaskedBitsForTargetNode - Determine which of the bits specified
309368e18d56a87308045d341e85584597bfe7426e9Nate Begeman    /// in Mask are known to be either zero or one and return them in the
310368e18d56a87308045d341e85584597bfe7426e9Nate Begeman    /// KnownZero/KnownOne bitsets.
311368e18d56a87308045d341e85584597bfe7426e9Nate Begeman    virtual void computeMaskedBitsForTargetNode(const SDOperand Op,
312368e18d56a87308045d341e85584597bfe7426e9Nate Begeman                                                uint64_t Mask,
313368e18d56a87308045d341e85584597bfe7426e9Nate Begeman                                                uint64_t &KnownZero,
314368e18d56a87308045d341e85584597bfe7426e9Nate Begeman                                                uint64_t &KnownOne,
315368e18d56a87308045d341e85584597bfe7426e9Nate Begeman                                                unsigned Depth = 0) const;
316368e18d56a87308045d341e85584597bfe7426e9Nate Begeman
317dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner    SDOperand getReturnAddressFrameIndex(SelectionDAG &DAG);
318dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
319f4dff84c8614fc2106d821e4687c933d8d4b9420Chris Lattner    ConstraintType getConstraintType(char ConstraintLetter) const;
320f4dff84c8614fc2106d821e4687c933d8d4b9420Chris Lattner
321259e97cc725011a3c138563d421a4654b082a64cChris Lattner    std::vector<unsigned>
3221efa40f6a4b561cf8f80fe018684236010645cd0Chris Lattner      getRegClassForInlineAsmConstraint(const std::string &Constraint,
3231efa40f6a4b561cf8f80fe018684236010645cd0Chris Lattner                                        MVT::ValueType VT) const;
32422aaf1d61c6a752d66f7ee10a7a5d99c7160e007Chris Lattner    /// isOperandValidForConstraint - Return the specified operand (possibly
32522aaf1d61c6a752d66f7ee10a7a5d99c7160e007Chris Lattner    /// modified) if the specified SDOperand is valid for the specified target
32622aaf1d61c6a752d66f7ee10a7a5d99c7160e007Chris Lattner    /// constraint letter, otherwise return null.
32722aaf1d61c6a752d66f7ee10a7a5d99c7160e007Chris Lattner    SDOperand isOperandValidForConstraint(SDOperand Op, char ConstraintLetter,
32822aaf1d61c6a752d66f7ee10a7a5d99c7160e007Chris Lattner                                          SelectionDAG &DAG);
32922aaf1d61c6a752d66f7ee10a7a5d99c7160e007Chris Lattner
33091897778690a7d683497ba3f4040ebf09345f08aChris Lattner    /// getRegForInlineAsmConstraint - Given a physical register constraint
33191897778690a7d683497ba3f4040ebf09345f08aChris Lattner    /// (e.g. {edx}), return the register number and the register class for the
33291897778690a7d683497ba3f4040ebf09345f08aChris Lattner    /// register.  This should only be used for C_Register constraints.  On
33391897778690a7d683497ba3f4040ebf09345f08aChris Lattner    /// error, this returns a register number of 0.
334f76d180c9595d34641f4b5d2fbba2f2c175197d8Chris Lattner    std::pair<unsigned, const TargetRegisterClass*>
335f76d180c9595d34641f4b5d2fbba2f2c175197d8Chris Lattner      getRegForInlineAsmConstraint(const std::string &Constraint,
336f76d180c9595d34641f4b5d2fbba2f2c175197d8Chris Lattner                                   MVT::ValueType VT) const;
337f76d180c9595d34641f4b5d2fbba2f2c175197d8Chris Lattner
338c4c6257c1a154279bf10e9498d46d6c1793dbaa7Evan Cheng    /// isLegalAddressImmediate - Return true if the integer value or
339c4c6257c1a154279bf10e9498d46d6c1793dbaa7Evan Cheng    /// GlobalValue can be used as the offset of the target addressing mode.
340c4c6257c1a154279bf10e9498d46d6c1793dbaa7Evan Cheng    virtual bool isLegalAddressImmediate(int64_t V) const;
341c4c6257c1a154279bf10e9498d46d6c1793dbaa7Evan Cheng    virtual bool isLegalAddressImmediate(GlobalValue *GV) const;
342c4c6257c1a154279bf10e9498d46d6c1793dbaa7Evan Cheng
3430188ecba85c7139f237baa4ce5612fdfc83e1b84Evan Cheng    /// isShuffleMaskLegal - Targets can use this to indicate that they only
3440188ecba85c7139f237baa4ce5612fdfc83e1b84Evan Cheng    /// support *some* VECTOR_SHUFFLE operations, those with specific masks.
34591897778690a7d683497ba3f4040ebf09345f08aChris Lattner    /// By default, if a target supports the VECTOR_SHUFFLE node, all mask
34691897778690a7d683497ba3f4040ebf09345f08aChris Lattner    /// values are assumed to be legal.
347ca6e8eafd2dfb13b89875405c54613b9cea1ca2eEvan Cheng    virtual bool isShuffleMaskLegal(SDOperand Mask, MVT::ValueType VT) const;
34839623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng
34939623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng    /// isVectorClearMaskLegal - Similar to isShuffleMaskLegal. This is
35039623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng    /// used by Targets can use this to indicate if there is a suitable
35139623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng    /// VECTOR_SHUFFLE that can be used to replace a VAND with a constant
35239623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng    /// pool entry.
35339623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng    virtual bool isVectorClearMaskLegal(std::vector<SDOperand> &BVOps,
35439623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng                                        MVT::ValueType EVT,
35539623daef67090025be5cd8af7d172fd1c9e6418Evan Cheng                                        SelectionDAG &DAG) const;
356dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner  private:
3570db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    /// Subtarget - Keep a pointer to the X86Subtarget around so that we can
3580db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    /// make the right decision when generating code for different targets.
3590db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    const X86Subtarget *Subtarget;
3600db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng
36125ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng    /// X86StackPtr - X86 physical register used as stack ptr.
36225ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng    unsigned X86StackPtr;
36325ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng
3640db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    /// X86ScalarSSE - Select between SSE2 or x87 floating point ops.
3650db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    bool X86ScalarSSE;
3660db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng
3673085e1511750b7d69bf5f1831696e0d178bdb5b1Chris Lattner    SDNode *LowerCallResult(SDOperand Chain, SDOperand InFlag, SDNode*TheCall,
3683085e1511750b7d69bf5f1831696e0d178bdb5b1Chris Lattner                            unsigned CallingConv, SelectionDAG &DAG);
3693085e1511750b7d69bf5f1831696e0d178bdb5b1Chris Lattner
370b10308e440c80dd6ffb4b478f741ff7e5f30cb48Anton Korobeynikov    // C and StdCall Calling Convention implementation.
371b10308e440c80dd6ffb4b478f741ff7e5f30cb48Anton Korobeynikov    SDOperand LowerCCCArguments(SDOperand Op, SelectionDAG &DAG,
372b10308e440c80dd6ffb4b478f741ff7e5f30cb48Anton Korobeynikov                                bool isStdCall = false);
37309c75a43722e2aa00df4e31af35d97a6f598c28cChris Lattner    SDOperand LowerCCCCallTo(SDOperand Op, SelectionDAG &DAG, unsigned CC);
374dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
37525ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng    // X86-64 C Calling Convention implementation.
37625ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng    SDOperand LowerX86_64CCCArguments(SDOperand Op, SelectionDAG &DAG);
37709c75a43722e2aa00df4e31af35d97a6f598c28cChris Lattner    SDOperand LowerX86_64CCCCallTo(SDOperand Op, SelectionDAG &DAG,unsigned CC);
37825ab690a43cbbb591b76d49e3595b019c32f4b3fEvan Cheng
379b10308e440c80dd6ffb4b478f741ff7e5f30cb48Anton Korobeynikov    // Fast and FastCall Calling Convention implementation.
3802db39b865e689681d39948691e06531dc4f3356cChris Lattner    SDOperand LowerFastCCArguments(SDOperand Op, SelectionDAG &DAG);
38109c75a43722e2aa00df4e31af35d97a6f598c28cChris Lattner    SDOperand LowerFastCCCallTo(SDOperand Op, SelectionDAG &DAG, unsigned CC);
382559806f575297866609c7bef0e5c1084dcdda9a5Evan Cheng
3830db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerBUILD_VECTOR(SDOperand Op, SelectionDAG &DAG);
3840db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerVECTOR_SHUFFLE(SDOperand Op, SelectionDAG &DAG);
3850db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerEXTRACT_VECTOR_ELT(SDOperand Op, SelectionDAG &DAG);
3860db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerINSERT_VECTOR_ELT(SDOperand Op, SelectionDAG &DAG);
3870db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerSCALAR_TO_VECTOR(SDOperand Op, SelectionDAG &DAG);
3880db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerConstantPool(SDOperand Op, SelectionDAG &DAG);
3890db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerGlobalAddress(SDOperand Op, SelectionDAG &DAG);
3900db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerExternalSymbol(SDOperand Op, SelectionDAG &DAG);
3910db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerShift(SDOperand Op, SelectionDAG &DAG);
3920db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerSINT_TO_FP(SDOperand Op, SelectionDAG &DAG);
3930db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerFP_TO_SINT(SDOperand Op, SelectionDAG &DAG);
3940db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerFABS(SDOperand Op, SelectionDAG &DAG);
3950db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerFNEG(SDOperand Op, SelectionDAG &DAG);
39668c47cba3589b2fc079bab0836d1ae6fc3a6278dEvan Cheng    SDOperand LowerFCOPYSIGN(SDOperand Op, SelectionDAG &DAG);
397734503be5965237e7eed978837ff280a9fadf403Evan Cheng    SDOperand LowerSETCC(SDOperand Op, SelectionDAG &DAG, SDOperand Chain);
3980db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerSELECT(SDOperand Op, SelectionDAG &DAG);
3990db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerBRCOND(SDOperand Op, SelectionDAG &DAG);
4000db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerMEMSET(SDOperand Op, SelectionDAG &DAG);
4010db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerMEMCPY(SDOperand Op, SelectionDAG &DAG);
4020db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerJumpTable(SDOperand Op, SelectionDAG &DAG);
40332fe1035a708d16d67e632f21d8ec2d1b437a225Evan Cheng    SDOperand LowerCALL(SDOperand Op, SelectionDAG &DAG);
4040db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerRET(SDOperand Op, SelectionDAG &DAG);
4051bc7804e4c8747fd99b119e8f88686c9610c5d4eEvan Cheng    SDOperand LowerFORMAL_ARGUMENTS(SDOperand Op, SelectionDAG &DAG);
4060db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerREADCYCLCECOUNTER(SDOperand Op, SelectionDAG &DAG);
4070db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerVASTART(SDOperand Op, SelectionDAG &DAG);
4080db9fe6775853d62632ad299dd734b6ba6c6b336Evan Cheng    SDOperand LowerINTRINSIC_WO_CHAIN(SDOperand Op, SelectionDAG &DAG);
409bcc5f36765e8111c13873a0c0dc874c92385d808Nate Begeman    SDOperand LowerRETURNADDR(SDOperand Op, SelectionDAG &DAG);
410bcc5f36765e8111c13873a0c0dc874c92385d808Nate Begeman    SDOperand LowerFRAMEADDR(SDOperand Op, SelectionDAG &DAG);
411dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner  };
412dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner}
413dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner
414dbdbf0ce2eef7b6585397121f56d3845e04866d1Chris Lattner#endif    // X86ISELLOWERING_H
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