Remove the PTX back-end and all of its artifacts (triple, etc.)
[oota-llvm.git] / include / llvm / Intrinsics.td
1 //===- Intrinsics.td - Defines all LLVM intrinsics ---------*- tablegen -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file defines properties of all LLVM intrinsics.
11 //
12 //===----------------------------------------------------------------------===//
13
14 include "llvm/CodeGen/ValueTypes.td"
15
16 //===----------------------------------------------------------------------===//
17 //  Properties we keep track of for intrinsics.
18 //===----------------------------------------------------------------------===//
19
20 class IntrinsicProperty;
21
22 // Intr*Mem - Memory properties.  An intrinsic is allowed to have at most one of
23 // these properties set.  They are listed from the most aggressive (best to use
24 // if correct) to the least aggressive.  If no property is set, the worst case
25 // is assumed (it may read and write any memory it can get access to and it may
26 // have other side effects).
27
28 // IntrNoMem - The intrinsic does not access memory or have any other side
29 // effects.  It may be CSE'd deleted if dead, etc.
30 def IntrNoMem : IntrinsicProperty;
31
32 // IntrReadArgMem - This intrinsic reads only from memory that one of its
33 // pointer-typed arguments points to, but may read an unspecified amount.
34 def IntrReadArgMem : IntrinsicProperty;
35
36 // IntrReadMem - This intrinsic reads from unspecified memory, so it cannot be
37 // moved across stores.  However, it can be reordered otherwise and can be
38 // deleted if dead.
39 def IntrReadMem : IntrinsicProperty;
40
41 // IntrReadWriteArgMem - This intrinsic reads and writes only from memory that
42 // one of its arguments points to, but may access an unspecified amount.  The
43 // reads and writes may be volatile, but except for this it has no other side
44 // effects.
45 def IntrReadWriteArgMem : IntrinsicProperty;
46
47 // Commutative - This intrinsic is commutative: X op Y == Y op X.
48 def Commutative : IntrinsicProperty;
49
50 // Throws - This intrinsic can throw.
51 def Throws : IntrinsicProperty;
52
53 // NoCapture - The specified argument pointer is not captured by the intrinsic.
54 class NoCapture<int argNo> : IntrinsicProperty {
55   int ArgNo = argNo;
56 }
57
58 //===----------------------------------------------------------------------===//
59 // Types used by intrinsics.
60 //===----------------------------------------------------------------------===//
61
62 class LLVMType<ValueType vt> {
63   ValueType VT = vt;
64 }
65
66 class LLVMQualPointerType<LLVMType elty, int addrspace>
67   : LLVMType<iPTR>{
68   LLVMType ElTy = elty;
69   int AddrSpace = addrspace;
70 }
71
72 class LLVMPointerType<LLVMType elty>
73   : LLVMQualPointerType<elty, 0>;
74
75 class LLVMAnyPointerType<LLVMType elty>
76   : LLVMType<iPTRAny>{
77   LLVMType ElTy = elty;
78 }
79
80 // Match the type of another intrinsic parameter.  Number is an index into the
81 // list of overloaded types for the intrinsic, excluding all the fixed types.
82 // The Number value must refer to a previously listed type.  For example:
83 //   Intrinsic<[llvm_i32_ty], [llvm_i32_ty, llvm_anyfloat_ty, LLVMMatchType<0>]>
84 // has two overloaded types, the 2nd and 3rd arguments.  LLVMMatchType<0>
85 // refers to the first overloaded type, which is the 2nd argument.
86 class LLVMMatchType<int num>
87   : LLVMType<OtherVT>{
88   int Number = num;
89 }
90
91 // Match the type of another intrinsic parameter that is expected to be
92 // an integral vector type, but change the element size to be twice as wide
93 // or half as wide as the other type.  This is only useful when the intrinsic
94 // is overloaded, so the matched type should be declared as iAny.
95 class LLVMExtendedElementVectorType<int num> : LLVMMatchType<num>;
96 class LLVMTruncatedElementVectorType<int num> : LLVMMatchType<num>;
97
98 def llvm_void_ty       : LLVMType<isVoid>;
99 def llvm_anyint_ty     : LLVMType<iAny>;
100 def llvm_anyfloat_ty   : LLVMType<fAny>;
101 def llvm_anyvector_ty  : LLVMType<vAny>;
102 def llvm_i1_ty         : LLVMType<i1>;
103 def llvm_i8_ty         : LLVMType<i8>;
104 def llvm_i16_ty        : LLVMType<i16>;
105 def llvm_i32_ty        : LLVMType<i32>;
106 def llvm_i64_ty        : LLVMType<i64>;
107 def llvm_float_ty      : LLVMType<f32>;
108 def llvm_double_ty     : LLVMType<f64>;
109 def llvm_f80_ty        : LLVMType<f80>;
110 def llvm_f128_ty       : LLVMType<f128>;
111 def llvm_ppcf128_ty    : LLVMType<ppcf128>;
112 def llvm_ptr_ty        : LLVMPointerType<llvm_i8_ty>;             // i8*
113 def llvm_ptrptr_ty     : LLVMPointerType<llvm_ptr_ty>;            // i8**
114 def llvm_anyptr_ty     : LLVMAnyPointerType<llvm_i8_ty>;          // (space)i8*
115 def llvm_empty_ty      : LLVMType<OtherVT>;                       // { }
116 def llvm_descriptor_ty : LLVMPointerType<llvm_empty_ty>;          // { }*
117 def llvm_metadata_ty   : LLVMType<MetadataVT>;                    // !{...}
118
119 def llvm_x86mmx_ty     : LLVMType<x86mmx>;
120 def llvm_ptrx86mmx_ty  : LLVMPointerType<llvm_x86mmx_ty>;         // <1 x i64>*
121
122 def llvm_v2i8_ty       : LLVMType<v2i8>;     //  2 x i8
123 def llvm_v4i8_ty       : LLVMType<v4i8>;     //  4 x i8
124 def llvm_v8i8_ty       : LLVMType<v8i8>;     //  8 x i8
125 def llvm_v16i8_ty      : LLVMType<v16i8>;    // 16 x i8
126 def llvm_v32i8_ty      : LLVMType<v32i8>;    // 32 x i8
127 def llvm_v2i16_ty      : LLVMType<v2i16>;    //  2 x i16
128 def llvm_v4i16_ty      : LLVMType<v4i16>;    //  4 x i16
129 def llvm_v8i16_ty      : LLVMType<v8i16>;    //  8 x i16
130 def llvm_v16i16_ty     : LLVMType<v16i16>;   // 16 x i16
131 def llvm_v2i32_ty      : LLVMType<v2i32>;    //  2 x i32
132 def llvm_v4i32_ty      : LLVMType<v4i32>;    //  4 x i32
133 def llvm_v8i32_ty      : LLVMType<v8i32>;    //  8 x i32
134 def llvm_v1i64_ty      : LLVMType<v1i64>;    //  1 x i64
135 def llvm_v2i64_ty      : LLVMType<v2i64>;    //  2 x i64
136 def llvm_v4i64_ty      : LLVMType<v4i64>;    //  4 x i64
137
138 def llvm_v2f32_ty      : LLVMType<v2f32>;    //  2 x float
139 def llvm_v4f32_ty      : LLVMType<v4f32>;    //  4 x float
140 def llvm_v8f32_ty      : LLVMType<v8f32>;    //  8 x float
141 def llvm_v2f64_ty      : LLVMType<v2f64>;    //  2 x double
142 def llvm_v4f64_ty      : LLVMType<v4f64>;    //  4 x double
143
144 def llvm_vararg_ty     : LLVMType<isVoid>;   // this means vararg here
145
146
147 //===----------------------------------------------------------------------===//
148 // Intrinsic Definitions.
149 //===----------------------------------------------------------------------===//
150
151 // Intrinsic class - This is used to define one LLVM intrinsic.  The name of the
152 // intrinsic definition should start with "int_", then match the LLVM intrinsic
153 // name with the "llvm." prefix removed, and all "."s turned into "_"s.  For
154 // example, llvm.bswap.i16 -> int_bswap_i16.
155 //
156 //  * RetTypes is a list containing the return types expected for the
157 //    intrinsic.
158 //  * ParamTypes is a list containing the parameter types expected for the
159 //    intrinsic.
160 //  * Properties can be set to describe the behavior of the intrinsic.
161 //
162 class Intrinsic<list<LLVMType> ret_types,
163                 list<LLVMType> param_types = [],
164                 list<IntrinsicProperty> properties = [],
165                 string name = ""> {
166   string LLVMName = name;
167   string TargetPrefix = "";   // Set to a prefix for target-specific intrinsics.
168   list<LLVMType> RetTypes = ret_types;
169   list<LLVMType> ParamTypes = param_types;
170   list<IntrinsicProperty> Properties = properties;
171
172   bit isTarget = 0;
173 }
174
175 /// GCCBuiltin - If this intrinsic exactly corresponds to a GCC builtin, this
176 /// specifies the name of the builtin.  This provides automatic CBE and CFE
177 /// support.
178 class GCCBuiltin<string name> {
179   string GCCBuiltinName = name;
180 }
181
182
183 //===--------------- Variable Argument Handling Intrinsics ----------------===//
184 //
185
186 def int_vastart : Intrinsic<[], [llvm_ptr_ty], [], "llvm.va_start">;
187 def int_vacopy  : Intrinsic<[], [llvm_ptr_ty, llvm_ptr_ty], [],
188                             "llvm.va_copy">;
189 def int_vaend   : Intrinsic<[], [llvm_ptr_ty], [], "llvm.va_end">;
190
191 //===------------------- Garbage Collection Intrinsics --------------------===//
192 //
193 def int_gcroot  : Intrinsic<[],
194                             [llvm_ptrptr_ty, llvm_ptr_ty]>;
195 def int_gcread  : Intrinsic<[llvm_ptr_ty],
196                             [llvm_ptr_ty, llvm_ptrptr_ty],
197                             [IntrReadArgMem]>;
198 def int_gcwrite : Intrinsic<[],
199                             [llvm_ptr_ty, llvm_ptr_ty, llvm_ptrptr_ty],
200                             [IntrReadWriteArgMem, NoCapture<1>, NoCapture<2>]>;
201
202 //===--------------------- Code Generator Intrinsics ----------------------===//
203 //
204 def int_returnaddress : Intrinsic<[llvm_ptr_ty], [llvm_i32_ty], [IntrNoMem]>;
205 def int_frameaddress  : Intrinsic<[llvm_ptr_ty], [llvm_i32_ty], [IntrNoMem]>;
206
207 // Note: we treat stacksave/stackrestore as writemem because we don't otherwise
208 // model their dependencies on allocas.
209 def int_stacksave     : Intrinsic<[llvm_ptr_ty]>,
210                         GCCBuiltin<"__builtin_stack_save">;
211 def int_stackrestore  : Intrinsic<[], [llvm_ptr_ty]>,
212                         GCCBuiltin<"__builtin_stack_restore">;
213
214 // IntrReadWriteArgMem is more pessimistic than strictly necessary for prefetch,
215 // however it does conveniently prevent the prefetch from being reordered
216 // with respect to nearby accesses to the same memory.
217 def int_prefetch      : Intrinsic<[],
218                                   [llvm_ptr_ty, llvm_i32_ty, llvm_i32_ty,
219                                    llvm_i32_ty],
220                                   [IntrReadWriteArgMem, NoCapture<0>]>;
221 def int_pcmarker      : Intrinsic<[], [llvm_i32_ty]>;
222
223 def int_readcyclecounter : Intrinsic<[llvm_i64_ty]>;
224
225 // Stack Protector Intrinsic - The stackprotector intrinsic writes the stack
226 // guard to the correct place on the stack frame.
227 def int_stackprotector : Intrinsic<[], [llvm_ptr_ty, llvm_ptrptr_ty], []>;
228
229 //===------------------- Standard C Library Intrinsics --------------------===//
230 //
231
232 def int_memcpy  : Intrinsic<[],
233                              [llvm_anyptr_ty, llvm_anyptr_ty, llvm_anyint_ty,
234                               llvm_i32_ty, llvm_i1_ty],
235                             [IntrReadWriteArgMem, NoCapture<0>, NoCapture<1>]>;
236 def int_memmove : Intrinsic<[],
237                             [llvm_anyptr_ty, llvm_anyptr_ty, llvm_anyint_ty,
238                              llvm_i32_ty, llvm_i1_ty],
239                             [IntrReadWriteArgMem, NoCapture<0>, NoCapture<1>]>;
240 def int_memset  : Intrinsic<[],
241                             [llvm_anyptr_ty, llvm_i8_ty, llvm_anyint_ty,
242                              llvm_i32_ty, llvm_i1_ty],
243                             [IntrReadWriteArgMem, NoCapture<0>]>;
244
245 // These functions do not actually read memory, but they are sensitive to the
246 // rounding mode.  This needs to be modelled separately; in the meantime
247 // declaring them as reading memory is conservatively correct.
248 let Properties = [IntrReadMem] in {
249   def int_sqrt : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
250   def int_powi : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>, llvm_i32_ty]>;
251   def int_sin  : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
252   def int_cos  : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
253   def int_pow  : Intrinsic<[llvm_anyfloat_ty],
254                            [LLVMMatchType<0>, LLVMMatchType<0>]>;
255   def int_log  : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
256   def int_log10: Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
257   def int_log2 : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
258   def int_exp  : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
259   def int_exp2 : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
260 }
261
262 let Properties = [IntrNoMem] in {
263   def int_fma  : Intrinsic<[llvm_anyfloat_ty],
264                          [LLVMMatchType<0>, LLVMMatchType<0>,
265                           LLVMMatchType<0>]>;
266 }
267
268 // NOTE: these are internal interfaces.
269 def int_setjmp     : Intrinsic<[llvm_i32_ty],  [llvm_ptr_ty]>;
270 def int_longjmp    : Intrinsic<[], [llvm_ptr_ty, llvm_i32_ty]>;
271 def int_sigsetjmp  : Intrinsic<[llvm_i32_ty] , [llvm_ptr_ty, llvm_i32_ty]>;
272 def int_siglongjmp : Intrinsic<[], [llvm_ptr_ty, llvm_i32_ty]>;
273
274 // Internal interface for object size checking
275 def int_objectsize : Intrinsic<[llvm_anyint_ty], [llvm_ptr_ty, llvm_i1_ty],
276                                [IntrNoMem]>,
277                                GCCBuiltin<"__builtin_object_size">;
278
279 //===------------------------- Expect Intrinsics --------------------------===//
280 //
281 def int_expect : Intrinsic<[llvm_anyint_ty], [LLVMMatchType<0>,
282                                               LLVMMatchType<0>], [IntrNoMem]>;
283
284 //===-------------------- Bit Manipulation Intrinsics ---------------------===//
285 //
286
287 // None of these intrinsics accesses memory at all.
288 let Properties = [IntrNoMem] in {
289   def int_bswap: Intrinsic<[llvm_anyint_ty], [LLVMMatchType<0>]>;
290   def int_ctpop: Intrinsic<[llvm_anyint_ty], [LLVMMatchType<0>]>;
291   def int_ctlz : Intrinsic<[llvm_anyint_ty], [LLVMMatchType<0>, llvm_i1_ty]>;
292   def int_cttz : Intrinsic<[llvm_anyint_ty], [LLVMMatchType<0>, llvm_i1_ty]>;
293 }
294
295 //===------------------------ Debugger Intrinsics -------------------------===//
296 //
297
298 // None of these intrinsics accesses memory at all...but that doesn't mean the
299 // optimizers can change them aggressively.  Special handling needed in a few
300 // places.
301 let Properties = [IntrNoMem] in {
302   def int_dbg_declare      : Intrinsic<[],
303                                        [llvm_metadata_ty, llvm_metadata_ty]>;
304   def int_dbg_value        : Intrinsic<[],
305                                        [llvm_metadata_ty, llvm_i64_ty,
306                                         llvm_metadata_ty]>;
307 }
308
309 //===------------------ Exception Handling Intrinsics----------------------===//
310 //
311
312 // The result of eh.typeid.for depends on the enclosing function, but inside a
313 // given function it is 'const' and may be CSE'd etc.
314 def int_eh_typeid_for : Intrinsic<[llvm_i32_ty], [llvm_ptr_ty], [IntrNoMem]>;
315
316 def int_eh_return_i32 : Intrinsic<[], [llvm_i32_ty, llvm_ptr_ty]>;
317 def int_eh_return_i64 : Intrinsic<[], [llvm_i64_ty, llvm_ptr_ty]>;
318
319 def int_eh_unwind_init: Intrinsic<[]>,
320                         GCCBuiltin<"__builtin_unwind_init">;
321
322 def int_eh_dwarf_cfa  : Intrinsic<[llvm_ptr_ty], [llvm_i32_ty]>;
323
324 let Properties = [IntrNoMem] in {
325   def int_eh_sjlj_lsda             : Intrinsic<[llvm_ptr_ty]>;
326   def int_eh_sjlj_callsite         : Intrinsic<[], [llvm_i32_ty]>;
327 }
328 def int_eh_sjlj_functioncontext : Intrinsic<[], [llvm_ptr_ty]>;
329 def int_eh_sjlj_setjmp          : Intrinsic<[llvm_i32_ty], [llvm_ptr_ty]>;
330 def int_eh_sjlj_longjmp         : Intrinsic<[], [llvm_ptr_ty]>;
331
332 //===---------------- Generic Variable Attribute Intrinsics----------------===//
333 //
334 def int_var_annotation : Intrinsic<[],
335                                    [llvm_ptr_ty, llvm_ptr_ty,
336                                     llvm_ptr_ty, llvm_i32_ty],
337                                    [], "llvm.var.annotation">;
338 def int_ptr_annotation : Intrinsic<[LLVMAnyPointerType<llvm_anyint_ty>],
339                                    [LLVMMatchType<0>, llvm_ptr_ty, llvm_ptr_ty,
340                                     llvm_i32_ty],
341                                    [], "llvm.ptr.annotation">;
342 def int_annotation : Intrinsic<[llvm_anyint_ty],
343                                [LLVMMatchType<0>, llvm_ptr_ty,
344                                 llvm_ptr_ty, llvm_i32_ty],
345                                [], "llvm.annotation">;
346
347 //===------------------------ Trampoline Intrinsics -----------------------===//
348 //
349 def int_init_trampoline : Intrinsic<[],
350                                     [llvm_ptr_ty, llvm_ptr_ty, llvm_ptr_ty],
351                                     [IntrReadWriteArgMem, NoCapture<0>]>,
352                                    GCCBuiltin<"__builtin_init_trampoline">;
353
354 def int_adjust_trampoline : Intrinsic<[llvm_ptr_ty], [llvm_ptr_ty],
355                                       [IntrReadArgMem]>,
356                                      GCCBuiltin<"__builtin_adjust_trampoline">;
357
358 //===------------------------ Overflow Intrinsics -------------------------===//
359 //
360
361 // Expose the carry flag from add operations on two integrals.
362 def int_sadd_with_overflow : Intrinsic<[llvm_anyint_ty, llvm_i1_ty],
363                                        [LLVMMatchType<0>, LLVMMatchType<0>],
364                                        [IntrNoMem]>;
365 def int_uadd_with_overflow : Intrinsic<[llvm_anyint_ty, llvm_i1_ty],
366                                        [LLVMMatchType<0>, LLVMMatchType<0>],
367                                        [IntrNoMem]>;
368
369 def int_ssub_with_overflow : Intrinsic<[llvm_anyint_ty, llvm_i1_ty],
370                                        [LLVMMatchType<0>, LLVMMatchType<0>],
371                                        [IntrNoMem]>;
372 def int_usub_with_overflow : Intrinsic<[llvm_anyint_ty, llvm_i1_ty],
373                                        [LLVMMatchType<0>, LLVMMatchType<0>],
374                                        [IntrNoMem]>;
375
376 def int_smul_with_overflow : Intrinsic<[llvm_anyint_ty, llvm_i1_ty],
377                                        [LLVMMatchType<0>, LLVMMatchType<0>],
378                                        [IntrNoMem]>;
379 def int_umul_with_overflow : Intrinsic<[llvm_anyint_ty, llvm_i1_ty],
380                                        [LLVMMatchType<0>, LLVMMatchType<0>],
381                                        [IntrNoMem]>;
382
383 //===------------------------- Memory Use Markers -------------------------===//
384 //
385 def int_lifetime_start  : Intrinsic<[],
386                                     [llvm_i64_ty, llvm_ptr_ty],
387                                     [IntrReadWriteArgMem, NoCapture<1>]>;
388 def int_lifetime_end    : Intrinsic<[],
389                                     [llvm_i64_ty, llvm_ptr_ty],
390                                     [IntrReadWriteArgMem, NoCapture<1>]>;
391 def int_invariant_start : Intrinsic<[llvm_descriptor_ty],
392                                     [llvm_i64_ty, llvm_ptr_ty],
393                                     [IntrReadWriteArgMem, NoCapture<1>]>;
394 def int_invariant_end   : Intrinsic<[],
395                                     [llvm_descriptor_ty, llvm_i64_ty,
396                                      llvm_ptr_ty],
397                                     [IntrReadWriteArgMem, NoCapture<2>]>;
398
399 //===-------------------------- Other Intrinsics --------------------------===//
400 //
401 def int_flt_rounds : Intrinsic<[llvm_i32_ty]>,
402                      GCCBuiltin<"__builtin_flt_rounds">;
403 def int_trap : Intrinsic<[]>,
404                GCCBuiltin<"__builtin_trap">;
405 def int_debugtrap : Intrinsic<[]>,
406                     GCCBuiltin<"__builtin_debugtrap">;
407
408 // Intrisics to support half precision floating point format
409 let Properties = [IntrNoMem] in {
410 def int_convert_to_fp16   : Intrinsic<[llvm_i16_ty], [llvm_float_ty]>,
411                             GCCBuiltin<"__gnu_f2h_ieee">;
412 def int_convert_from_fp16 : Intrinsic<[llvm_float_ty], [llvm_i16_ty]>,
413                             GCCBuiltin<"__gnu_h2f_ieee">;
414 }
415
416 // These convert intrinsics are to support various conversions between
417 // various types with rounding and saturation. NOTE: avoid using these
418 // intrinsics as they might be removed sometime in the future and
419 // most targets don't support them.
420 def int_convertff  : Intrinsic<[llvm_anyfloat_ty],
421                                [llvm_anyfloat_ty, llvm_i32_ty, llvm_i32_ty]>;
422 def int_convertfsi : Intrinsic<[llvm_anyfloat_ty],
423                                [llvm_anyint_ty, llvm_i32_ty, llvm_i32_ty]>;
424 def int_convertfui : Intrinsic<[llvm_anyfloat_ty],
425                                [llvm_anyint_ty, llvm_i32_ty, llvm_i32_ty]>;
426 def int_convertsif : Intrinsic<[llvm_anyint_ty],
427                                [llvm_anyfloat_ty, llvm_i32_ty, llvm_i32_ty]>;
428 def int_convertuif : Intrinsic<[llvm_anyint_ty],
429                                [llvm_anyfloat_ty, llvm_i32_ty, llvm_i32_ty]>;
430 def int_convertss  : Intrinsic<[llvm_anyint_ty],
431                                [llvm_anyint_ty, llvm_i32_ty, llvm_i32_ty]>;
432 def int_convertsu  : Intrinsic<[llvm_anyint_ty],
433                                [llvm_anyint_ty, llvm_i32_ty, llvm_i32_ty]>;
434 def int_convertus  : Intrinsic<[llvm_anyint_ty],
435                                [llvm_anyint_ty, llvm_i32_ty, llvm_i32_ty]>;
436 def int_convertuu  : Intrinsic<[llvm_anyint_ty],
437                                [llvm_anyint_ty, llvm_i32_ty, llvm_i32_ty]>;
438
439 //===----------------------------------------------------------------------===//
440 // Target-specific intrinsics
441 //===----------------------------------------------------------------------===//
442
443 include "llvm/IntrinsicsPowerPC.td"
444 include "llvm/IntrinsicsX86.td"
445 include "llvm/IntrinsicsARM.td"
446 include "llvm/IntrinsicsCellSPU.td"
447 include "llvm/IntrinsicsXCore.td"
448 include "llvm/IntrinsicsHexagon.td"
449 include "llvm/IntrinsicsNVVM.td"