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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 Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner31c8a6d2007-02-26 18:17:14 +00007//
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<[
Dan Gohmana96dc142009-03-24 01:04:34 +000025 // Scalar values are returned in AX first, then DX. For i8, the ABI
26 // requires the values to be in AL and AH, however this code uses AL and DL
27 // instead. This is because using AH for the second register conflicts with
28 // the way LLVM does multiple return values -- a return of {i16,i8} would end
29 // up in AX and AH, which overlap. Front-ends wishing to conform to the ABI
30 // for functions that return two i8 values are currently expected to pack the
31 // values into an i16 (which uses AX, and thus AL:AH).
32 CCIfType<[i8] , CCAssignToReg<[AL, DL]>>,
Dan Gohman719e64e2008-04-09 17:53:38 +000033 CCIfType<[i16], CCAssignToReg<[AX, DX]>>,
Chris Lattner370bdda2007-02-28 05:30:29 +000034 CCIfType<[i32], CCAssignToReg<[EAX, EDX]>>,
35 CCIfType<[i64], CCAssignToReg<[RAX, RDX]>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000036
Mon P Wang07239f12008-11-20 07:48:19 +000037 // Vector types are returned in XMM0 and XMM1, when they fit. XMMM2 and XMM3
38 // can only be used by ABI non-compliant code. If the target doesn't have XMM
39 // registers, it won't have vector types.
Dan Gohman1866f6e2007-07-02 16:21:53 +000040 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
Mon P Wang07239f12008-11-20 07:48:19 +000041 CCAssignToReg<[XMM0,XMM1,XMM2,XMM3]>>,
Bill Wendlinge2501b32007-03-30 00:35:22 +000042
43 // MMX vector types are always returned in MM0. If the target doesn't have
44 // MM0, it doesn't support these vector types.
Dale Johannesena68f9012008-06-24 22:01:44 +000045 CCIfType<[v8i8, v4i16, v2i32, v1i64, v2f32], CCAssignToReg<[MM0]>>,
Dale Johannesen6a308112007-08-06 21:31:06 +000046
47 // Long double types are always returned in ST0 (even with SSE).
Chris Lattner03535262008-03-21 05:57:20 +000048 CCIfType<[f80], CCAssignToReg<[ST0, ST1]>>
Chris Lattner31c8a6d2007-02-26 18:17:14 +000049]>;
50
Chris Lattnerd50110d2007-02-27 05:51:05 +000051// X86-32 C return-value convention.
Chris Lattner31c8a6d2007-02-26 18:17:14 +000052def RetCC_X86_32_C : CallingConv<[
Dale Johannesenc9c6da62008-09-25 20:47:45 +000053 // The X86-32 calling convention returns FP values in ST0, unless marked
54 // with "inreg" (used here to distinguish one kind of reg from another,
55 // weirdly; this is really the sse-regparm calling convention) in which
56 // case they use XMM0, otherwise it is the same as the common X86 calling
57 // conv.
Torok Edwin3f142c32009-02-01 18:15:56 +000058 CCIfInReg<CCIfSubtarget<"hasSSE2()",
Dale Johannesenc9c6da62008-09-25 20:47:45 +000059 CCIfType<[f32, f64], CCAssignToReg<[XMM0,XMM1,XMM2]>>>>,
60 CCIfType<[f32,f64], CCAssignToReg<[ST0, ST1]>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000061 CCDelegateTo<RetCC_X86Common>
62]>;
63
Chris Lattnerd50110d2007-02-27 05:51:05 +000064// X86-32 FastCC return-value convention.
Chris Lattner31c8a6d2007-02-26 18:17:14 +000065def RetCC_X86_32_Fast : CallingConv<[
Nate Begemand73ab882007-11-27 19:28:48 +000066 // The X86-32 fastcc returns 1, 2, or 3 FP values in XMM0-2 if the target has
67 // SSE2, otherwise it is the the C calling conventions.
68 // This can happen when a float, 2 x float, or 3 x float vector is split by
69 // target lowering, and is returned in 1-3 sse regs.
70 CCIfType<[f32], CCIfSubtarget<"hasSSE2()", CCAssignToReg<[XMM0,XMM1,XMM2]>>>,
71 CCIfType<[f64], CCIfSubtarget<"hasSSE2()", CCAssignToReg<[XMM0,XMM1,XMM2]>>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000072 CCDelegateTo<RetCC_X86Common>
73]>;
74
Chris Lattnerd50110d2007-02-27 05:51:05 +000075// X86-64 C return-value convention.
Chris Lattner31c8a6d2007-02-26 18:17:14 +000076def RetCC_X86_64_C : CallingConv<[
77 // The X86-64 calling convention always returns FP values in XMM0.
Dan Gohmanc2ffd4b2008-04-09 17:54:37 +000078 CCIfType<[f32], CCAssignToReg<[XMM0, XMM1]>>,
79 CCIfType<[f64], CCAssignToReg<[XMM0, XMM1]>>,
Dale Johannesena68f9012008-06-24 22:01:44 +000080
Evan Cheng242b38b2009-02-23 09:03:22 +000081 // MMX vector types are always returned in XMM0 except for v1i64 which is
82 // returned in RAX. This disagrees with ABI documentation but is bug
83 // compatible with gcc.
84 CCIfType<[v1i64], CCAssignToReg<[RAX]>>,
85 CCIfType<[v8i8, v4i16, v2i32, v2f32], CCAssignToReg<[XMM0, XMM1]>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +000086 CCDelegateTo<RetCC_X86Common>
87]>;
88
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +000089// X86-Win64 C return-value convention.
90def RetCC_X86_Win64_C : CallingConv<[
Anton Korobeynikov82818eb2008-03-23 20:32:06 +000091 // The X86-Win64 calling convention always returns __m64 values in RAX.
Anton Korobeynikov4ab15532009-08-03 08:13:56 +000092 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCBitConvertToType<i64>>,
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +000093
Anton Korobeynikov2810d672008-04-28 07:40:07 +000094 // And FP in XMM0 only.
95 CCIfType<[f32], CCAssignToReg<[XMM0]>>,
96 CCIfType<[f64], CCAssignToReg<[XMM0]>>,
97
Anton Korobeynikov82818eb2008-03-23 20:32:06 +000098 // Otherwise, everything is the same as 'normal' X86-64 C CC.
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +000099 CCDelegateTo<RetCC_X86_64_C>
100]>;
101
102
Chris Lattnerd50110d2007-02-27 05:51:05 +0000103// This is the root return-value convention for the X86-32 backend.
104def RetCC_X86_32 : CallingConv<[
105 // If FastCC, use RetCC_X86_32_Fast.
Chris Lattner370bdda2007-02-28 05:30:29 +0000106 CCIfCC<"CallingConv::Fast", CCDelegateTo<RetCC_X86_32_Fast>>,
Chris Lattnerd50110d2007-02-27 05:51:05 +0000107 // Otherwise, use RetCC_X86_32_C.
108 CCDelegateTo<RetCC_X86_32_C>
109]>;
110
111// This is the root return-value convention for the X86-64 backend.
112def RetCC_X86_64 : CallingConv<[
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000113 // Mingw64 and native Win64 use Win64 CC
Anton Korobeynikov1a979d92008-03-22 20:57:27 +0000114 CCIfSubtarget<"isTargetWin64()", CCDelegateTo<RetCC_X86_Win64_C>>,
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000115
116 // Otherwise, drop to normal X86-64 CC
Chris Lattnerd50110d2007-02-27 05:51:05 +0000117 CCDelegateTo<RetCC_X86_64_C>
118]>;
119
Chris Lattnerd637a8b2007-02-27 06:59:52 +0000120// This is the return-value convention used for the entire X86 backend.
121def RetCC_X86 : CallingConv<[
Chris Lattner370bdda2007-02-28 05:30:29 +0000122 CCIfSubtarget<"is64Bit()", CCDelegateTo<RetCC_X86_64>>,
Chris Lattnerd637a8b2007-02-27 06:59:52 +0000123 CCDelegateTo<RetCC_X86_32>
124]>;
Chris Lattnerd50110d2007-02-27 05:51:05 +0000125
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000126//===----------------------------------------------------------------------===//
Chris Lattner370bdda2007-02-28 05:30:29 +0000127// X86-64 Argument Calling Conventions
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000128//===----------------------------------------------------------------------===//
129
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000130def CC_X86_64_C : CallingConv<[
Evan Chengbdfd5ef2008-01-15 03:15:41 +0000131 // Handles byval parameters.
Evan Cheng6bfa8a12008-01-15 03:34:58 +0000132 CCIfByVal<CCPassByVal<8, 8>>,
Evan Chengbdfd5ef2008-01-15 03:15:41 +0000133
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000134 // Promote i8/i16 arguments to i32.
Chris Lattner370bdda2007-02-28 05:30:29 +0000135 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sands4bdad512008-01-19 16:42:10 +0000136
137 // The 'nest' parameter, if any, is passed in R10.
138 CCIfNest<CCAssignToReg<[R10]>>,
139
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +0000140 // The first 6 v1i64 vector arguments are passed in GPRs on Darwin.
141 CCIfType<[v1i64],
142 CCIfSubtarget<"isTargetDarwin()",
143 CCBitConvertToType<i64>>>,
144
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000145 // The first 6 integer arguments are passed in integer registers.
Chris Lattner370bdda2007-02-28 05:30:29 +0000146 CCIfType<[i32], CCAssignToReg<[EDI, ESI, EDX, ECX, R8D, R9D]>>,
147 CCIfType<[i64], CCAssignToReg<[RDI, RSI, RDX, RCX, R8 , R9 ]>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000148
Evan Chengee472b12008-04-25 07:56:45 +0000149 // The first 8 MMX (except for v1i64) vector arguments are passed in XMM
150 // registers on Darwin.
Dale Johannesena68f9012008-06-24 22:01:44 +0000151 CCIfType<[v8i8, v4i16, v2i32, v2f32],
Evan Chengee472b12008-04-25 07:56:45 +0000152 CCIfSubtarget<"isTargetDarwin()",
153 CCIfSubtarget<"hasSSE2()",
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +0000154 CCPromoteToType<v2i64>>>>,
Bill Wendlingdb5c9932007-03-31 01:03:53 +0000155
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +0000156 // The first 8 FP/Vector arguments are passed in XMM registers.
157 CCIfType<[f32, f64, v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
158 CCIfSubtarget<"hasSSE1()",
159 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3, XMM4, XMM5, XMM6, XMM7]>>>,
Evan Chengee472b12008-04-25 07:56:45 +0000160
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000161 // Integer/FP values get stored in stack slots that are 8 bytes in size and
162 // 8-byte aligned if there are no more registers to hold them.
Chris Lattner370bdda2007-02-28 05:30:29 +0000163 CCIfType<[i32, i64, f32, f64], CCAssignToStack<8, 8>>,
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000164
Dale Johannesene3ef7442007-11-10 22:07:15 +0000165 // Long doubles get stack slots whose size and alignment depends on the
166 // subtarget.
Duncan Sands87b665d2007-11-14 08:29:13 +0000167 CCIfType<[f80], CCAssignToStack<0, 0>>,
Dale Johannesene3ef7442007-11-10 22:07:15 +0000168
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000169 // Vectors get 16-byte stack slots that are 16-byte aligned.
Dale Johannesene3ef7442007-11-10 22:07:15 +0000170 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
Bill Wendlinge2501b32007-03-30 00:35:22 +0000171
172 // __m64 vectors get 8-byte stack slots that are 8-byte aligned.
Dale Johannesena68f9012008-06-24 22:01:44 +0000173 CCIfType<[v8i8, v4i16, v2i32, v1i64, v2f32], CCAssignToStack<8, 8>>
Chris Lattner31c8a6d2007-02-26 18:17:14 +0000174]>;
175
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000176// Calling convention used on Win64
177def CC_X86_Win64_C : CallingConv<[
Anton Korobeynikov82818eb2008-03-23 20:32:06 +0000178 // FIXME: Handle byval stuff.
Anton Korobeynikov67073f12008-04-02 05:23:57 +0000179 // FIXME: Handle varargs.
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000180
181 // Promote i8/i16 arguments to i32.
182 CCIfType<[i8, i16], CCPromoteToType<i32>>,
183
Anton Korobeynikov67073f12008-04-02 05:23:57 +0000184 // The 'nest' parameter, if any, is passed in R10.
185 CCIfNest<CCAssignToReg<[R10]>>,
186
Anton Korobeynikov4ab15532009-08-03 08:13:56 +0000187 // 128 bit vectors are passed by pointer
188 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCPassIndirect<i64>>,
189
190 // The first 4 MMX vector arguments are passed in GPRs.
191 CCIfType<[v8i8, v4i16, v2i32, v1i64, v2f32],
192 CCBitConvertToType<i64>>,
193
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000194 // The first 4 integer arguments are passed in integer registers.
Anton Korobeynikov67073f12008-04-02 05:23:57 +0000195 CCIfType<[i32], CCAssignToRegWithShadow<[ECX , EDX , R8D , R9D ],
196 [XMM0, XMM1, XMM2, XMM3]>>,
197 CCIfType<[i64], CCAssignToRegWithShadow<[RCX , RDX , R8 , R9 ],
198 [XMM0, XMM1, XMM2, XMM3]>>,
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000199
200 // The first 4 FP/Vector arguments are passed in XMM registers.
201 CCIfType<[f32, f64, v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
Anton Korobeynikov67073f12008-04-02 05:23:57 +0000202 CCAssignToRegWithShadow<[XMM0, XMM1, XMM2, XMM3],
203 [RCX , RDX , R8 , R9 ]>>,
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000204
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000205 // Integer/FP values get stored in stack slots that are 8 bytes in size and
Anton Korobeynikovcf6b7392009-08-03 08:12:53 +0000206 // 8-byte aligned if there are no more registers to hold them.
207 CCIfType<[i32, i64, f32, f64], CCAssignToStack<8, 8>>,
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000208
Anton Korobeynikov72551932008-04-27 22:54:09 +0000209 // Long doubles get stack slots whose size and alignment depends on the
210 // subtarget.
211 CCIfType<[f80], CCAssignToStack<0, 0>>,
212
Anton Korobeynikovcf6b7392009-08-03 08:12:53 +0000213 // __m64 vectors get 8-byte stack slots that are 8-byte aligned.
214 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 8>>
Anton Korobeynikov8f88cb02008-03-22 20:37:30 +0000215]>;
216
Chris Lattner423c5f42007-02-28 05:31:48 +0000217//===----------------------------------------------------------------------===//
218// X86 C Calling Convention
219//===----------------------------------------------------------------------===//
220
Chris Lattner011bcc82007-02-28 06:20:01 +0000221/// CC_X86_32_Common - In all X86-32 calling conventions, extra integers and FP
222/// values are spilled on the stack, and the first 4 vector values go in XMM
223/// regs.
224def CC_X86_32_Common : CallingConv<[
Evan Chengbdfd5ef2008-01-15 03:15:41 +0000225 // Handles byval parameters.
Evan Cheng6bfa8a12008-01-15 03:34:58 +0000226 CCIfByVal<CCPassByVal<4, 4>>,
Evan Chengbdfd5ef2008-01-15 03:15:41 +0000227
Dale Johannesene672af12008-02-05 20:46:33 +0000228 // The first 3 float or double arguments, if marked 'inreg' and if the call
229 // is not a vararg call and if SSE2 is available, are passed in SSE registers.
Evan Chengee472b12008-04-25 07:56:45 +0000230 CCIfNotVarArg<CCIfInReg<CCIfType<[f32,f64],
231 CCIfSubtarget<"hasSSE2()",
Dale Johannesene672af12008-02-05 20:46:33 +0000232 CCAssignToReg<[XMM0,XMM1,XMM2]>>>>>,
233
Evan Chengee472b12008-04-25 07:56:45 +0000234 // The first 3 __m64 (except for v1i64) vector arguments are passed in mmx
235 // registers if the call is not a vararg call.
Dale Johannesena68f9012008-06-24 22:01:44 +0000236 CCIfNotVarArg<CCIfType<[v8i8, v4i16, v2i32, v2f32],
Evan Chengee472b12008-04-25 07:56:45 +0000237 CCAssignToReg<[MM0, MM1, MM2]>>>,
238
Chris Lattner011bcc82007-02-28 06:20:01 +0000239 // Integer/Float values get stored in stack slots that are 4 bytes in
240 // size and 4-byte aligned.
241 CCIfType<[i32, f32], CCAssignToStack<4, 4>>,
242
243 // Doubles get 8-byte slots that are 4-byte aligned.
244 CCIfType<[f64], CCAssignToStack<8, 4>>,
Dale Johannesen6a308112007-08-06 21:31:06 +0000245
Duncan Sands30d157512008-01-07 16:36:38 +0000246 // Long doubles get slots whose size depends on the subtarget.
247 CCIfType<[f80], CCAssignToStack<0, 4>>,
Dale Johannesen6a308112007-08-06 21:31:06 +0000248
Dale Johannesen3edd6dc2008-02-22 17:47:28 +0000249 // The first 4 SSE vector arguments are passed in XMM registers.
Evan Cheng2cbdd272008-01-22 23:26:53 +0000250 CCIfNotVarArg<CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
251 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3]>>>,
Chris Lattner011bcc82007-02-28 06:20:01 +0000252
Dale Johannesen3edd6dc2008-02-22 17:47:28 +0000253 // Other SSE vectors get 16-byte stack slots that are 16-byte aligned.
Bill Wendlinge2501b32007-03-30 00:35:22 +0000254 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
255
Dale Johannesen3edd6dc2008-02-22 17:47:28 +0000256 // __m64 vectors get 8-byte stack slots that are 4-byte aligned. They are
Bill Wendlinge2501b32007-03-30 00:35:22 +0000257 // passed in the parameter area.
Evan Chengee472b12008-04-25 07:56:45 +0000258 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 4>>]>;
Chris Lattner011bcc82007-02-28 06:20:01 +0000259
Chris Lattner423c5f42007-02-28 05:31:48 +0000260def CC_X86_32_C : CallingConv<[
261 // Promote i8/i16 arguments to i32.
262 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sandsb116fac2007-07-27 20:02:49 +0000263
264 // The 'nest' parameter, if any, is passed in ECX.
265 CCIfNest<CCAssignToReg<[ECX]>>,
266
Chris Lattner52387be2007-06-19 00:13:10 +0000267 // The first 3 integer arguments, if marked 'inreg' and if the call is not
268 // a vararg call, are passed in integer registers.
269 CCIfNotVarArg<CCIfInReg<CCIfType<[i32], CCAssignToReg<[EAX, EDX, ECX]>>>>,
Duncan Sandsb116fac2007-07-27 20:02:49 +0000270
Chris Lattner011bcc82007-02-28 06:20:01 +0000271 // Otherwise, same as everything else.
272 CCDelegateTo<CC_X86_32_Common>
Chris Lattner423c5f42007-02-28 05:31:48 +0000273]>;
274
Chris Lattner011bcc82007-02-28 06:20:01 +0000275def CC_X86_32_FastCall : CallingConv<[
276 // Promote i8/i16 arguments to i32.
277 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sandsb116fac2007-07-27 20:02:49 +0000278
279 // The 'nest' parameter, if any, is passed in EAX.
280 CCIfNest<CCAssignToReg<[EAX]>>,
281
Chris Lattner011bcc82007-02-28 06:20:01 +0000282 // The first 2 integer arguments are passed in ECX/EDX
Chris Lattner70500802007-02-28 18:35:11 +0000283 CCIfType<[i32], CCAssignToReg<[ECX, EDX]>>,
Duncan Sandsb116fac2007-07-27 20:02:49 +0000284
Chris Lattner011bcc82007-02-28 06:20:01 +0000285 // Otherwise, same as everything else.
286 CCDelegateTo<CC_X86_32_Common>
287]>;
Evan Cheng4a037752008-09-04 22:59:58 +0000288
289def CC_X86_32_FastCC : CallingConv<[
Dan Gohmane4300e22008-12-03 01:28:04 +0000290 // Handles byval parameters. Note that we can't rely on the delegation
291 // to CC_X86_32_Common for this because that happens after code that
Dan Gohmanc5a1a222008-12-03 01:39:44 +0000292 // puts arguments in registers.
Dan Gohmane4300e22008-12-03 01:28:04 +0000293 CCIfByVal<CCPassByVal<4, 4>>,
294
Evan Cheng4a037752008-09-04 22:59:58 +0000295 // Promote i8/i16 arguments to i32.
296 CCIfType<[i8, i16], CCPromoteToType<i32>>,
297
298 // The 'nest' parameter, if any, is passed in EAX.
299 CCIfNest<CCAssignToReg<[EAX]>>,
300
301 // The first 2 integer arguments are passed in ECX/EDX
302 CCIfType<[i32], CCAssignToReg<[ECX, EDX]>>,
303
Evan Chenge2471a92008-09-05 17:24:07 +0000304 // The first 3 float or double arguments, if the call is not a vararg
305 // call and if SSE2 is available, are passed in SSE registers.
306 CCIfNotVarArg<CCIfType<[f32,f64],
307 CCIfSubtarget<"hasSSE2()",
308 CCAssignToReg<[XMM0,XMM1,XMM2]>>>>,
309
Evan Cheng4a037752008-09-04 22:59:58 +0000310 // Doubles get 8-byte slots that are 8-byte aligned.
311 CCIfType<[f64], CCAssignToStack<8, 8>>,
312
313 // Otherwise, same as everything else.
314 CCDelegateTo<CC_X86_32_Common>
315]>;