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Arnold Schwaighofer48abc5c2007-10-12 21:30:57 +00001//===- X86CallingConv.td - Calling Conventions X86 32/64 ---*- tablegen -*-===//
Chris Lattner31c8a6d2007-02-26 18:17:14 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattnerbffc1b32007-02-26 18:56:07 +00005// This file was developed by Chris Lattner and is distributed under
Chris Lattner31c8a6d2007-02-26 18:17:14 +00006// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This describes the calling conventions for the X86-32 and X86-64
11// architectures.
12//
13//===----------------------------------------------------------------------===//
14
Chris Lattner370bdda2007-02-28 05:30:29 +000015/// CCIfSubtarget - Match if the current subtarget has a feature F.
16class CCIfSubtarget<string F, CCAction A>
17 : CCIf<!strconcat("State.getTarget().getSubtarget<X86Subtarget>().", F), A>;
Chris Lattner3d559102007-02-28 04:51:41 +000018
Chris Lattner31c8a6d2007-02-26 18:17:14 +000019//===----------------------------------------------------------------------===//
20// Return Value Calling Conventions
21//===----------------------------------------------------------------------===//
22
Chris Lattnerd50110d2007-02-27 05:51:05 +000023// Return-value conventions common to all X86 CC's.
Chris Lattner31c8a6d2007-02-26 18:17:14 +000024def RetCC_X86Common : CallingConv<[
25 // Scalar values are returned in AX first, then DX.
Chris Lattner370bdda2007-02-28 05:30:29 +000026 CCIfType<[i8] , CCAssignToReg<[AL]>>,
27 CCIfType<[i16], CCAssignToReg<[AX]>>,
28 CCIfType<[i32], CCAssignToReg<[EAX, EDX]>>,
29 CCIfType<[i64], CCAssignToReg<[RAX, RDX]>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000030
Dan Gohman1866f6e2007-07-02 16:21:53 +000031 // Vector types are returned in XMM0 and XMM1, when they fit. If the target
32 // doesn't have XMM registers, it won't have vector types.
33 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
34 CCAssignToReg<[XMM0,XMM1]>>,
Bill Wendlinge2501b32007-03-30 00:35:22 +000035
36 // MMX vector types are always returned in MM0. If the target doesn't have
37 // MM0, it doesn't support these vector types.
Dale Johannesen6a308112007-08-06 21:31:06 +000038 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToReg<[MM0]>>,
39
40 // Long double types are always returned in ST0 (even with SSE).
41 CCIfType<[f80], CCAssignToReg<[ST0]>>
Chris Lattner31c8a6d2007-02-26 18:17:14 +000042]>;
43
Chris Lattnerd50110d2007-02-27 05:51:05 +000044// X86-32 C return-value convention.
Chris Lattner31c8a6d2007-02-26 18:17:14 +000045def RetCC_X86_32_C : CallingConv<[
46 // The X86-32 calling convention returns FP values in ST0, otherwise it is the
47 // same as the common X86 calling conv.
Chris Lattner370bdda2007-02-28 05:30:29 +000048 CCIfType<[f32], CCAssignToReg<[ST0]>>,
49 CCIfType<[f64], CCAssignToReg<[ST0]>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000050 CCDelegateTo<RetCC_X86Common>
51]>;
52
Chris Lattnerd50110d2007-02-27 05:51:05 +000053// X86-32 FastCC return-value convention.
Chris Lattner31c8a6d2007-02-26 18:17:14 +000054def RetCC_X86_32_Fast : CallingConv<[
55 // The X86-32 fastcc returns FP values in XMM0 if the target has SSE2,
56 // otherwise it is the the C calling conventions.
Chris Lattner370bdda2007-02-28 05:30:29 +000057 CCIfType<[f32], CCIfSubtarget<"hasSSE2()", CCAssignToReg<[XMM0]>>>,
58 CCIfType<[f64], CCIfSubtarget<"hasSSE2()", CCAssignToReg<[XMM0]>>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000059 CCDelegateTo<RetCC_X86Common>
60]>;
61
Chris Lattnerd50110d2007-02-27 05:51:05 +000062// X86-64 C return-value convention.
Chris Lattner31c8a6d2007-02-26 18:17:14 +000063def RetCC_X86_64_C : CallingConv<[
64 // The X86-64 calling convention always returns FP values in XMM0.
Chris Lattner370bdda2007-02-28 05:30:29 +000065 CCIfType<[f32], CCAssignToReg<[XMM0]>>,
66 CCIfType<[f64], CCAssignToReg<[XMM0]>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000067 CCDelegateTo<RetCC_X86Common>
68]>;
69
70
Chris Lattnerd50110d2007-02-27 05:51:05 +000071
72// This is the root return-value convention for the X86-32 backend.
73def RetCC_X86_32 : CallingConv<[
74 // If FastCC, use RetCC_X86_32_Fast.
Chris Lattner370bdda2007-02-28 05:30:29 +000075 CCIfCC<"CallingConv::Fast", CCDelegateTo<RetCC_X86_32_Fast>>,
Chris Lattnerd50110d2007-02-27 05:51:05 +000076 // Otherwise, use RetCC_X86_32_C.
77 CCDelegateTo<RetCC_X86_32_C>
78]>;
79
80// This is the root return-value convention for the X86-64 backend.
81def RetCC_X86_64 : CallingConv<[
82 // Always just the same as C calling conv for X86-64.
83 CCDelegateTo<RetCC_X86_64_C>
84]>;
85
Chris Lattnerd637a8b2007-02-27 06:59:52 +000086// This is the return-value convention used for the entire X86 backend.
87def RetCC_X86 : CallingConv<[
Chris Lattner370bdda2007-02-28 05:30:29 +000088 CCIfSubtarget<"is64Bit()", CCDelegateTo<RetCC_X86_64>>,
Chris Lattnerd637a8b2007-02-27 06:59:52 +000089 CCDelegateTo<RetCC_X86_32>
90]>;
Chris Lattnerd50110d2007-02-27 05:51:05 +000091
Chris Lattner31c8a6d2007-02-26 18:17:14 +000092//===----------------------------------------------------------------------===//
Chris Lattner370bdda2007-02-28 05:30:29 +000093// X86-64 Argument Calling Conventions
Chris Lattner31c8a6d2007-02-26 18:17:14 +000094//===----------------------------------------------------------------------===//
95
Chris Lattner31c8a6d2007-02-26 18:17:14 +000096def CC_X86_64_C : CallingConv<[
97 // Promote i8/i16 arguments to i32.
Chris Lattner370bdda2007-02-28 05:30:29 +000098 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000099
Rafael Espindola1aa7efb2007-07-06 10:57:03 +0000100 CCIfStruct<CCStructAssign<[RDI, RSI, RDX, RCX, R8, R9 ]>>,
101
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000102 // The first 6 integer arguments are passed in integer registers.
Chris Lattner370bdda2007-02-28 05:30:29 +0000103 CCIfType<[i32], CCAssignToReg<[EDI, ESI, EDX, ECX, R8D, R9D]>>,
104 CCIfType<[i64], CCAssignToReg<[RDI, RSI, RDX, RCX, R8 , R9 ]>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000105
106 // The first 8 FP/Vector arguments are passed in XMM registers.
Chris Lattner370bdda2007-02-28 05:30:29 +0000107 CCIfType<[f32, f64, v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000108 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3, XMM4, XMM5, XMM6, XMM7]>>,
109
Bill Wendling577c7d92007-03-31 09:36:12 +0000110 // The first 8 MMX vector arguments are passed in GPRs.
Bill Wendlingdb5c9932007-03-31 01:03:53 +0000111 CCIfType<[v8i8, v4i16, v2i32, v1i64],
112 CCAssignToReg<[RDI, RSI, RDX, RCX, R8 , R9 ]>>,
113
Duncan Sandsb116fac2007-07-27 20:02:49 +0000114 // The 'nest' parameter, if any, is passed in R10.
115 CCIfNest<CCAssignToReg<[R10]>>,
116
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000117 // Integer/FP values get stored in stack slots that are 8 bytes in size and
118 // 8-byte aligned if there are no more registers to hold them.
Chris Lattner370bdda2007-02-28 05:30:29 +0000119 CCIfType<[i32, i64, f32, f64], CCAssignToStack<8, 8>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000120
Dale Johannesene3ef7442007-11-10 22:07:15 +0000121 // Long doubles get stack slots whose size and alignment depends on the
122 // subtarget.
123 CCIfType<[f80], CCAssignToStackABISizeAlign<0>>,
124
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000125 // Vectors get 16-byte stack slots that are 16-byte aligned.
Dale Johannesene3ef7442007-11-10 22:07:15 +0000126 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
Bill Wendlinge2501b32007-03-30 00:35:22 +0000127
128 // __m64 vectors get 8-byte stack slots that are 8-byte aligned.
129 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 8>>
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000130]>;
131
Arnold Schwaighofer48abc5c2007-10-12 21:30:57 +0000132// Tail call convention (fast): One register is reserved for target address,
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +0000133// namely R9
134def CC_X86_64_TailCall : CallingConv<[
135 // Promote i8/i16 arguments to i32.
136 CCIfType<[i8, i16], CCPromoteToType<i32>>,
137
138 CCIfStruct<CCStructAssign<[RDI, RSI, RDX, RCX, R8]>>,
139
140 // The first 6 integer arguments are passed in integer registers.
141 CCIfType<[i32], CCAssignToReg<[EDI, ESI, EDX, ECX, R8D]>>,
142 CCIfType<[i64], CCAssignToReg<[RDI, RSI, RDX, RCX, R8]>>,
143
144 // The first 8 FP/Vector arguments are passed in XMM registers.
145 CCIfType<[f32, f64, v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
146 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3, XMM4, XMM5, XMM6, XMM7]>>,
147
148 // The first 8 MMX vector arguments are passed in GPRs.
149 CCIfType<[v8i8, v4i16, v2i32, v1i64],
150 CCAssignToReg<[RDI, RSI, RDX, RCX, R8]>>,
151
152 // The 'nest' parameter, if any, is passed in R10.
153 CCIfNest<CCAssignToReg<[R10]>>,
154
155 // Integer/FP values get stored in stack slots that are 8 bytes in size and
156 // 8-byte aligned if there are no more registers to hold them.
157 CCIfType<[i32, i64, f32, f64], CCAssignToStack<8, 8>>,
158
159 // Vectors get 16-byte stack slots that are 16-byte aligned.
160 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
161
162 // __m64 vectors get 8-byte stack slots that are 8-byte aligned.
163 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 8>>
164]>;
165
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000166
Chris Lattner423c5f42007-02-28 05:31:48 +0000167//===----------------------------------------------------------------------===//
168// X86 C Calling Convention
169//===----------------------------------------------------------------------===//
170
Chris Lattner011bcc82007-02-28 06:20:01 +0000171/// CC_X86_32_Common - In all X86-32 calling conventions, extra integers and FP
172/// values are spilled on the stack, and the first 4 vector values go in XMM
173/// regs.
174def CC_X86_32_Common : CallingConv<[
175 // Integer/Float values get stored in stack slots that are 4 bytes in
176 // size and 4-byte aligned.
177 CCIfType<[i32, f32], CCAssignToStack<4, 4>>,
178
179 // Doubles get 8-byte slots that are 4-byte aligned.
180 CCIfType<[f64], CCAssignToStack<8, 4>>,
Dale Johannesen6a308112007-08-06 21:31:06 +0000181
Dale Johannesene3ef7442007-11-10 22:07:15 +0000182 // Long doubles get slots whose size and alignment depends on the
183 // subtarget.
184 CCIfType<[f80], CCAssignToStackABISizeAlign<0>>,
Dale Johannesen6a308112007-08-06 21:31:06 +0000185
Chris Lattner011bcc82007-02-28 06:20:01 +0000186 // The first 4 vector arguments are passed in XMM registers.
187 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
188 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3]>>,
189
190 // Other vectors get 16-byte stack slots that are 16-byte aligned.
Bill Wendlinge2501b32007-03-30 00:35:22 +0000191 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
192
193 // __m64 vectors get 8-byte stack slots that are 8-byte aligned. They are
194 // passed in the parameter area.
195 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 8>>
Chris Lattner011bcc82007-02-28 06:20:01 +0000196]>;
197
Chris Lattner423c5f42007-02-28 05:31:48 +0000198def CC_X86_32_C : CallingConv<[
199 // Promote i8/i16 arguments to i32.
200 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sandsb116fac2007-07-27 20:02:49 +0000201
202 // The 'nest' parameter, if any, is passed in ECX.
203 CCIfNest<CCAssignToReg<[ECX]>>,
204
Chris Lattner52387be2007-06-19 00:13:10 +0000205 // The first 3 integer arguments, if marked 'inreg' and if the call is not
206 // a vararg call, are passed in integer registers.
207 CCIfNotVarArg<CCIfInReg<CCIfType<[i32], CCAssignToReg<[EAX, EDX, ECX]>>>>,
Duncan Sandsb116fac2007-07-27 20:02:49 +0000208
Chris Lattner011bcc82007-02-28 06:20:01 +0000209 // Otherwise, same as everything else.
210 CCDelegateTo<CC_X86_32_Common>
Chris Lattner423c5f42007-02-28 05:31:48 +0000211]>;
212
Arnold Schwaighofer48abc5c2007-10-12 21:30:57 +0000213/// Same as C calling convention except for non-free ECX which is used for storing
214/// a potential pointer to the tail called function.
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +0000215def CC_X86_32_TailCall : CallingConv<[
216 // Promote i8/i16 arguments to i32.
217 CCIfType<[i8, i16], CCPromoteToType<i32>>,
218
Duncan Sands7fef59f2007-10-13 07:38:37 +0000219 // Nested function trampolines are currently not supported by fastcc.
Arnold Schwaighofer48abc5c2007-10-12 21:30:57 +0000220
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +0000221 // The first 3 integer arguments, if marked 'inreg' and if the call is not
222 // a vararg call, are passed in integer registers.
223 CCIfNotVarArg<CCIfInReg<CCIfType<[i32], CCAssignToReg<[EAX, EDX]>>>>,
224
225 // Otherwise, same as everything else.
226 CCDelegateTo<CC_X86_32_Common>
227]>;
Chris Lattner423c5f42007-02-28 05:31:48 +0000228
Chris Lattner011bcc82007-02-28 06:20:01 +0000229def CC_X86_32_FastCall : CallingConv<[
230 // Promote i8/i16 arguments to i32.
231 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sandsb116fac2007-07-27 20:02:49 +0000232
233 // The 'nest' parameter, if any, is passed in EAX.
234 CCIfNest<CCAssignToReg<[EAX]>>,
235
Chris Lattner011bcc82007-02-28 06:20:01 +0000236 // The first 2 integer arguments are passed in ECX/EDX
Chris Lattner70500802007-02-28 18:35:11 +0000237 CCIfType<[i32], CCAssignToReg<[ECX, EDX]>>,
Duncan Sandsb116fac2007-07-27 20:02:49 +0000238
Chris Lattner011bcc82007-02-28 06:20:01 +0000239 // Otherwise, same as everything else.
240 CCDelegateTo<CC_X86_32_Common>
241]>;