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Dan Gohmanf17a25c2007-07-18 16:29:46 +00001//=====---- X86Subtarget.h - Define Subtarget for the X86 -----*- C++ -*--====//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Nate Begeman and is distributed under the
6// University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file declares the X86 specific subclass of TargetSubtarget.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef X86SUBTARGET_H
15#define X86SUBTARGET_H
16
17#include "llvm/Target/TargetSubtarget.h"
18
19#include <string>
20
21namespace llvm {
22class Module;
23class GlobalValue;
24class TargetMachine;
25
26namespace PICStyle {
27enum Style {
28 Stub, GOT, RIPRel, WinPIC, None
29};
30}
31
32class X86Subtarget : public TargetSubtarget {
33public:
34 enum AsmWriterFlavorTy {
35 // Note: This numbering has to match the GCC assembler dialects for inline
36 // asm alternatives to work right.
37 ATT = 0, Intel = 1, Unset
38 };
39protected:
40 enum X86SSEEnum {
41 NoMMXSSE, MMX, SSE1, SSE2, SSE3, SSSE3
42 };
43
44 enum X863DNowEnum {
45 NoThreeDNow, ThreeDNow, ThreeDNowA
46 };
47
48 /// AsmFlavor - Which x86 asm dialect to use.
49 AsmWriterFlavorTy AsmFlavor;
50
51 /// PICStyle - Which PIC style to use
52 PICStyle::Style PICStyle;
53
54 /// X86SSELevel - MMX, SSE1, SSE2, SSE3, SSSE3, or none supported.
55 X86SSEEnum X86SSELevel;
56
57 /// X863DNowLevel - 3DNow or 3DNow Athlon, or none supported.
58 X863DNowEnum X863DNowLevel;
59
60 /// HasX86_64 - True if the processor supports X86-64 instructions.
61 bool HasX86_64;
62
63 /// stackAlignment - The minimum alignment known to hold of the stack frame on
64 /// entry to the function and which must be maintained by every function.
65 unsigned stackAlignment;
66
67 /// Min. memset / memcpy size that is turned into rep/movs, rep/stos ops.
68 unsigned MinRepStrSizeThreshold;
69
70private:
71 /// Is64Bit - True if the processor supports 64-bit instructions and module
72 /// pointer size is 64 bit.
73 bool Is64Bit;
74
75public:
76 enum {
77 isELF, isCygwin, isDarwin, isWindows, isMingw
78 } TargetType;
79
80 /// This constructor initializes the data members to match that
81 /// of the specified module.
82 ///
83 X86Subtarget(const Module &M, const std::string &FS, bool is64Bit);
84
85 /// getStackAlignment - Returns the minimum alignment known to hold of the
86 /// stack frame on entry to the function and which must be maintained by every
87 /// function for this subtarget.
88 unsigned getStackAlignment() const { return stackAlignment; }
89
90 /// getMinRepStrSizeThreshold - Returns the minimum memset / memcpy size
91 /// required to turn the operation into a X86 rep/movs or rep/stos
92 /// instruction. This is only used if the src / dst alignment is not DWORD
93 /// aligned.
94 unsigned getMinRepStrSizeThreshold() const { return MinRepStrSizeThreshold; }
95
96 /// ParseSubtargetFeatures - Parses features string setting specified
97 /// subtarget options. Definition of function is auto generated by tblgen.
98 void ParseSubtargetFeatures(const std::string &FS, const std::string &CPU);
99
100 /// AutoDetectSubtargetFeatures - Auto-detect CPU features using CPUID
101 /// instruction.
102 void AutoDetectSubtargetFeatures();
103
104 bool is64Bit() const { return Is64Bit; }
105
106 PICStyle::Style getPICStyle() const { return PICStyle; }
107 void setPICStyle(PICStyle::Style Style) { PICStyle = Style; }
108
109 bool hasMMX() const { return X86SSELevel >= MMX; }
110 bool hasSSE1() const { return X86SSELevel >= SSE1; }
111 bool hasSSE2() const { return X86SSELevel >= SSE2; }
112 bool hasSSE3() const { return X86SSELevel >= SSE3; }
113 bool hasSSSE3() const { return X86SSELevel >= SSSE3; }
114 bool has3DNow() const { return X863DNowLevel >= ThreeDNow; }
115 bool has3DNowA() const { return X863DNowLevel >= ThreeDNowA; }
116
117 unsigned getAsmFlavor() const {
118 return AsmFlavor != Unset ? unsigned(AsmFlavor) : 0;
119 }
120
121 bool isFlavorAtt() const { return AsmFlavor == ATT; }
122 bool isFlavorIntel() const { return AsmFlavor == Intel; }
123
124 bool isTargetDarwin() const { return TargetType == isDarwin; }
125 bool isTargetELF() const { return TargetType == isELF; }
126 bool isTargetWindows() const { return TargetType == isWindows; }
127 bool isTargetMingw() const { return TargetType == isMingw; }
128 bool isTargetCygMing() const { return (TargetType == isMingw ||
129 TargetType == isCygwin); }
130 bool isTargetCygwin() const { return TargetType == isCygwin; }
131
132 bool isPICStyleSet() const { return PICStyle != PICStyle::None; }
133 bool isPICStyleGOT() const { return PICStyle == PICStyle::GOT; }
134 bool isPICStyleStub() const { return PICStyle == PICStyle::Stub; }
135 bool isPICStyleRIPRel() const { return PICStyle == PICStyle::RIPRel; }
136 bool isPICStyleWinPIC() const { return PICStyle == PICStyle:: WinPIC; }
137
138 /// True if accessing the GV requires an extra load. For Windows, dllimported
139 /// symbols are indirect, loading the value at address GV rather then the
140 /// value of GV itself. This means that the GlobalAddress must be in the base
141 /// or index register of the address, not the GV offset field.
142 bool GVRequiresExtraLoad(const GlobalValue* GV, const TargetMachine& TM,
143 bool isDirectCall) const;
144
145};
146
147namespace X86 {
148 /// GetCpuIDAndInfo - Execute the specified cpuid and return the 4 values in
149 /// the specified arguments. If we can't run cpuid on the host, return true.
150 bool GetCpuIDAndInfo(unsigned value, unsigned *rEAX, unsigned *rEBX,
151 unsigned *rECX, unsigned *rEDX);
152}
153
154} // End llvm namespace
155
156#endif