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Arnold Schwaighofer373e8652007-10-12 21:30:57 +00001//===- X86CallingConv.td - Calling Conventions X86 32/64 ---*- tablegen -*-===//
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner081ce942007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This describes the calling conventions for the X86-32 and X86-64
11// architectures.
12//
13//===----------------------------------------------------------------------===//
14
15/// 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>;
18
19//===----------------------------------------------------------------------===//
20// Return Value Calling Conventions
21//===----------------------------------------------------------------------===//
22
23// Return-value conventions common to all X86 CC's.
24def RetCC_X86Common : CallingConv<[
25 // Scalar values are returned in AX first, then DX.
26 CCIfType<[i8] , CCAssignToReg<[AL]>>,
27 CCIfType<[i16], CCAssignToReg<[AX]>>,
28 CCIfType<[i32], CCAssignToReg<[EAX, EDX]>>,
29 CCIfType<[i64], CCAssignToReg<[RAX, RDX]>>,
30
31 // 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]>>,
35
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 Johannesen19f781d2007-08-06 21:31:06 +000038 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToReg<[MM0]>>,
39
40 // Long double types are always returned in ST0 (even with SSE).
Chris Lattner6bac50e2008-03-21 05:57:20 +000041 CCIfType<[f80], CCAssignToReg<[ST0, ST1]>>
Dan Gohmanf17a25c2007-07-18 16:29:46 +000042]>;
43
44// X86-32 C return-value convention.
45def 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 Lattner6bac50e2008-03-21 05:57:20 +000048 CCIfType<[f32], CCAssignToReg<[ST0, ST1]>>,
49 CCIfType<[f64], CCAssignToReg<[ST0, ST1]>>,
Dan Gohmanf17a25c2007-07-18 16:29:46 +000050 CCDelegateTo<RetCC_X86Common>
51]>;
52
53// X86-32 FastCC return-value convention.
54def RetCC_X86_32_Fast : CallingConv<[
Nate Begeman3d83c3f2007-11-27 19:28:48 +000055 // The X86-32 fastcc returns 1, 2, or 3 FP values in XMM0-2 if the target has
56 // SSE2, otherwise it is the the C calling conventions.
57 // This can happen when a float, 2 x float, or 3 x float vector is split by
58 // target lowering, and is returned in 1-3 sse regs.
59 CCIfType<[f32], CCIfSubtarget<"hasSSE2()", CCAssignToReg<[XMM0,XMM1,XMM2]>>>,
60 CCIfType<[f64], CCIfSubtarget<"hasSSE2()", CCAssignToReg<[XMM0,XMM1,XMM2]>>>,
Dan Gohmanf17a25c2007-07-18 16:29:46 +000061 CCDelegateTo<RetCC_X86Common>
62]>;
63
Dale Johannesen51552f62008-02-05 20:46:33 +000064// X86-32 SSEregparm return-value convention.
65def RetCC_X86_32_SSE : CallingConv<[
66 // The X86-32 sseregparm calling convention returns FP values in XMM0 if the
67 // target has SSE2, otherwise it is the C calling convention.
68 CCIfType<[f32], CCIfSubtarget<"hasSSE2()", CCAssignToReg<[XMM0]>>>,
69 CCIfType<[f64], CCIfSubtarget<"hasSSE2()", CCAssignToReg<[XMM0]>>>,
70 CCDelegateTo<RetCC_X86Common>
71]>;
72
Dan Gohmanf17a25c2007-07-18 16:29:46 +000073// X86-64 C return-value convention.
74def RetCC_X86_64_C : CallingConv<[
75 // The X86-64 calling convention always returns FP values in XMM0.
76 CCIfType<[f32], CCAssignToReg<[XMM0]>>,
77 CCIfType<[f64], CCAssignToReg<[XMM0]>>,
78 CCDelegateTo<RetCC_X86Common>
79]>;
80
Anton Korobeynikov99bd1882008-03-22 20:37:30 +000081// X86-Win64 C return-value convention.
82def RetCC_X86_Win64_C : CallingConv<[
83 // The X86-Win64 calling convention always returns __m64 values in RAX
84 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToReg<[RAX]>>,
85
86 // Otherwise, everything is the same as 'norma' X86-64 C CC
87 CCDelegateTo<RetCC_X86_64_C>
88]>;
89
90
Dan Gohmanf17a25c2007-07-18 16:29:46 +000091// This is the root return-value convention for the X86-32 backend.
92def RetCC_X86_32 : CallingConv<[
93 // If FastCC, use RetCC_X86_32_Fast.
94 CCIfCC<"CallingConv::Fast", CCDelegateTo<RetCC_X86_32_Fast>>,
Dale Johannesen51552f62008-02-05 20:46:33 +000095 // If SSECC, use RetCC_X86_32_SSE.
96 CCIfCC<"CallingConv::X86_SSECall", CCDelegateTo<RetCC_X86_32_SSE>>,
Dan Gohmanf17a25c2007-07-18 16:29:46 +000097 // Otherwise, use RetCC_X86_32_C.
98 CCDelegateTo<RetCC_X86_32_C>
99]>;
100
101// This is the root return-value convention for the X86-64 backend.
102def RetCC_X86_64 : CallingConv<[
Anton Korobeynikov99bd1882008-03-22 20:37:30 +0000103 // Mingw64 and native Win64 use Win64 CC
Anton Korobeynikov06d49b02008-03-22 20:57:27 +0000104 CCIfSubtarget<"isTargetWin64()", CCDelegateTo<RetCC_X86_Win64_C>>,
Anton Korobeynikov99bd1882008-03-22 20:37:30 +0000105
106 // Otherwise, drop to normal X86-64 CC
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000107 CCDelegateTo<RetCC_X86_64_C>
108]>;
109
110// This is the return-value convention used for the entire X86 backend.
111def RetCC_X86 : CallingConv<[
112 CCIfSubtarget<"is64Bit()", CCDelegateTo<RetCC_X86_64>>,
113 CCDelegateTo<RetCC_X86_32>
114]>;
115
116//===----------------------------------------------------------------------===//
117// X86-64 Argument Calling Conventions
118//===----------------------------------------------------------------------===//
119
120def CC_X86_64_C : CallingConv<[
Evan Chengf7e2f7a2008-01-15 03:15:41 +0000121 // Handles byval parameters.
Evan Chengfc149022008-01-15 03:34:58 +0000122 CCIfByVal<CCPassByVal<8, 8>>,
Evan Chengf7e2f7a2008-01-15 03:15:41 +0000123
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000124 // Promote i8/i16 arguments to i32.
125 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sands0705eb52008-01-19 16:42:10 +0000126
127 // The 'nest' parameter, if any, is passed in R10.
128 CCIfNest<CCAssignToReg<[R10]>>,
129
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000130 // The first 6 integer arguments are passed in integer registers.
131 CCIfType<[i32], CCAssignToReg<[EDI, ESI, EDX, ECX, R8D, R9D]>>,
132 CCIfType<[i64], CCAssignToReg<[RDI, RSI, RDX, RCX, R8 , R9 ]>>,
133
134 // The first 8 FP/Vector arguments are passed in XMM registers.
135 CCIfType<[f32, f64, v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
136 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3, XMM4, XMM5, XMM6, XMM7]>>,
137
138 // The first 8 MMX vector arguments are passed in GPRs.
139 CCIfType<[v8i8, v4i16, v2i32, v1i64],
140 CCAssignToReg<[RDI, RSI, RDX, RCX, R8 , R9 ]>>,
141
142 // Integer/FP values get stored in stack slots that are 8 bytes in size and
143 // 8-byte aligned if there are no more registers to hold them.
144 CCIfType<[i32, i64, f32, f64], CCAssignToStack<8, 8>>,
145
Dale Johannesen471b8182007-11-10 22:07:15 +0000146 // Long doubles get stack slots whose size and alignment depends on the
147 // subtarget.
Duncan Sandsa1d516d2007-11-14 08:29:13 +0000148 CCIfType<[f80], CCAssignToStack<0, 0>>,
Dale Johannesen471b8182007-11-10 22:07:15 +0000149
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000150 // Vectors get 16-byte stack slots that are 16-byte aligned.
Dale Johannesen471b8182007-11-10 22:07:15 +0000151 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000152
153 // __m64 vectors get 8-byte stack slots that are 8-byte aligned.
154 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 8>>
155]>;
156
Anton Korobeynikov99bd1882008-03-22 20:37:30 +0000157// Calling convention used on Win64
158def CC_X86_Win64_C : CallingConv<[
159 // FIXME: Handle byval stuff
160 // FIXME: Handle fp80
161 // FIXME: Handle shadowed arguments
162
163 // Promote i8/i16 arguments to i32.
164 CCIfType<[i8, i16], CCPromoteToType<i32>>,
165
166 // The first 4 integer arguments are passed in integer registers.
167 CCIfType<[i32], CCAssignToReg<[ECX, EDX, R8D, R9D]>>,
168 CCIfType<[i64], CCAssignToReg<[RCX, RDX, R8 , R9 ]>>,
169
170 // The first 4 FP/Vector arguments are passed in XMM registers.
171 CCIfType<[f32, f64, v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
172 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3]>>,
173
174 // The first 4 MMX vector arguments are passed in GPRs.
175 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToReg<[RCX, RDX, R8, R9]>>,
176
177 // Integer/FP values get stored in stack slots that are 8 bytes in size and
178 // 16-byte aligned if there are no more registers to hold them.
179 CCIfType<[i32, i64, f32, f64], CCAssignToStack<8, 16>>,
180
181 // Vectors get 16-byte stack slots that are 16-byte aligned.
182 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
183
184 // __m64 vectors get 8-byte stack slots that are 16-byte aligned.
185 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 16>>
186]>;
187
Arnold Schwaighofer373e8652007-10-12 21:30:57 +0000188// Tail call convention (fast): One register is reserved for target address,
Arnold Schwaighofere2d6bbb2007-10-11 19:40:01 +0000189// namely R9
190def CC_X86_64_TailCall : CallingConv<[
Evan Chengf7e2f7a2008-01-15 03:15:41 +0000191 // Handles byval parameters.
Evan Chengfc149022008-01-15 03:34:58 +0000192 CCIfByVal<CCPassByVal<8, 8>>,
Evan Chengf7e2f7a2008-01-15 03:15:41 +0000193
Arnold Schwaighofere2d6bbb2007-10-11 19:40:01 +0000194 // Promote i8/i16 arguments to i32.
195 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sands0705eb52008-01-19 16:42:10 +0000196
197 // The 'nest' parameter, if any, is passed in R10.
198 CCIfNest<CCAssignToReg<[R10]>>,
199
Arnold Schwaighofere2d6bbb2007-10-11 19:40:01 +0000200 // The first 6 integer arguments are passed in integer registers.
201 CCIfType<[i32], CCAssignToReg<[EDI, ESI, EDX, ECX, R8D]>>,
202 CCIfType<[i64], CCAssignToReg<[RDI, RSI, RDX, RCX, R8]>>,
203
204 // The first 8 FP/Vector arguments are passed in XMM registers.
205 CCIfType<[f32, f64, v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
206 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3, XMM4, XMM5, XMM6, XMM7]>>,
207
208 // The first 8 MMX vector arguments are passed in GPRs.
209 CCIfType<[v8i8, v4i16, v2i32, v1i64],
210 CCAssignToReg<[RDI, RSI, RDX, RCX, R8]>>,
211
Arnold Schwaighofere2d6bbb2007-10-11 19:40:01 +0000212 // Integer/FP values get stored in stack slots that are 8 bytes in size and
213 // 8-byte aligned if there are no more registers to hold them.
214 CCIfType<[i32, i64, f32, f64], CCAssignToStack<8, 8>>,
215
216 // Vectors get 16-byte stack slots that are 16-byte aligned.
217 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
218
219 // __m64 vectors get 8-byte stack slots that are 8-byte aligned.
220 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 8>>
221]>;
222
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000223
224//===----------------------------------------------------------------------===//
225// X86 C Calling Convention
226//===----------------------------------------------------------------------===//
227
228/// CC_X86_32_Common - In all X86-32 calling conventions, extra integers and FP
229/// values are spilled on the stack, and the first 4 vector values go in XMM
230/// regs.
231def CC_X86_32_Common : CallingConv<[
Evan Chengf7e2f7a2008-01-15 03:15:41 +0000232 // Handles byval parameters.
Evan Chengfc149022008-01-15 03:34:58 +0000233 CCIfByVal<CCPassByVal<4, 4>>,
Evan Chengf7e2f7a2008-01-15 03:15:41 +0000234
Dale Johannesen51552f62008-02-05 20:46:33 +0000235 // The first 3 float or double arguments, if marked 'inreg' and if the call
236 // is not a vararg call and if SSE2 is available, are passed in SSE registers.
237 CCIfNotVarArg<CCIfInReg<CCIfType<[f32,f64], CCIfSubtarget<"hasSSE2()",
238 CCAssignToReg<[XMM0,XMM1,XMM2]>>>>>,
239
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000240 // Integer/Float values get stored in stack slots that are 4 bytes in
241 // size and 4-byte aligned.
242 CCIfType<[i32, f32], CCAssignToStack<4, 4>>,
243
244 // Doubles get 8-byte slots that are 4-byte aligned.
245 CCIfType<[f64], CCAssignToStack<8, 4>>,
Dale Johannesen19f781d2007-08-06 21:31:06 +0000246
Duncan Sands7c44f1a2008-01-07 16:36:38 +0000247 // Long doubles get slots whose size depends on the subtarget.
248 CCIfType<[f80], CCAssignToStack<0, 4>>,
Dale Johannesen19f781d2007-08-06 21:31:06 +0000249
Dale Johannesen8fc3d652008-02-22 17:47:28 +0000250 // The first 4 SSE vector arguments are passed in XMM registers.
Evan Cheng335a6aa2008-01-22 23:26:53 +0000251 CCIfNotVarArg<CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64],
252 CCAssignToReg<[XMM0, XMM1, XMM2, XMM3]>>>,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000253
Dale Johannesen8fc3d652008-02-22 17:47:28 +0000254 // Other SSE vectors get 16-byte stack slots that are 16-byte aligned.
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000255 CCIfType<[v16i8, v8i16, v4i32, v2i64, v4f32, v2f64], CCAssignToStack<16, 16>>,
256
Dale Johannesen8fc3d652008-02-22 17:47:28 +0000257 // __m64 vectors get 8-byte stack slots that are 4-byte aligned. They are
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000258 // passed in the parameter area.
Dale Johannesen8fc3d652008-02-22 17:47:28 +0000259 CCIfType<[v8i8, v4i16, v2i32, v1i64], CCAssignToStack<8, 4>>
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000260]>;
261
262def CC_X86_32_C : CallingConv<[
263 // Promote i8/i16 arguments to i32.
264 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sandsd8455ca2007-07-27 20:02:49 +0000265
266 // The 'nest' parameter, if any, is passed in ECX.
267 CCIfNest<CCAssignToReg<[ECX]>>,
268
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000269 // The first 3 integer arguments, if marked 'inreg' and if the call is not
270 // a vararg call, are passed in integer registers.
271 CCIfNotVarArg<CCIfInReg<CCIfType<[i32], CCAssignToReg<[EAX, EDX, ECX]>>>>,
Duncan Sandsd8455ca2007-07-27 20:02:49 +0000272
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000273 // Otherwise, same as everything else.
274 CCDelegateTo<CC_X86_32_Common>
275]>;
276
Arnold Schwaighofer373e8652007-10-12 21:30:57 +0000277/// Same as C calling convention except for non-free ECX which is used for storing
278/// a potential pointer to the tail called function.
Arnold Schwaighofere2d6bbb2007-10-11 19:40:01 +0000279def CC_X86_32_TailCall : CallingConv<[
280 // Promote i8/i16 arguments to i32.
281 CCIfType<[i8, i16], CCPromoteToType<i32>>,
282
Duncan Sands4dd632b2007-10-13 07:38:37 +0000283 // Nested function trampolines are currently not supported by fastcc.
Arnold Schwaighofer373e8652007-10-12 21:30:57 +0000284
Arnold Schwaighofere2d6bbb2007-10-11 19:40:01 +0000285 // The first 3 integer arguments, if marked 'inreg' and if the call is not
286 // a vararg call, are passed in integer registers.
287 CCIfNotVarArg<CCIfInReg<CCIfType<[i32], CCAssignToReg<[EAX, EDX]>>>>,
288
289 // Otherwise, same as everything else.
290 CCDelegateTo<CC_X86_32_Common>
291]>;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000292
293def CC_X86_32_FastCall : CallingConv<[
294 // Promote i8/i16 arguments to i32.
295 CCIfType<[i8, i16], CCPromoteToType<i32>>,
Duncan Sandsd8455ca2007-07-27 20:02:49 +0000296
297 // The 'nest' parameter, if any, is passed in EAX.
298 CCIfNest<CCAssignToReg<[EAX]>>,
299
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000300 // The first 2 integer arguments are passed in ECX/EDX
301 CCIfType<[i32], CCAssignToReg<[ECX, EDX]>>,
Duncan Sandsd8455ca2007-07-27 20:02:49 +0000302
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000303 // Otherwise, same as everything else.
304 CCDelegateTo<CC_X86_32_Common>
305]>;