1; Bitcode compatibility test for llvm
2;
3; Please update this file when making any IR changes. Information on the
4; release process for this file is available here:
5;
6;     http://llvm.org/docs/DeveloperPolicy.html#ir-backwards-compatibility
7
8; RUN: llvm-as < %s | llvm-dis | llvm-as | llvm-dis | FileCheck %s
9; RUN: verify-uselistorder < %s
10
11target datalayout = "E"
12; CHECK: target datalayout = "E"
13
14target triple = "x86_64-apple-macosx10.10.0"
15; CHECK: target triple = "x86_64-apple-macosx10.10.0"
16
17;; Module-level assembly
18module asm "beep boop"
19; CHECK: module asm "beep boop"
20
21;; Comdats
22$comdat.any = comdat any
23; CHECK: $comdat.any = comdat any
24$comdat.exactmatch = comdat exactmatch
25; CHECK: $comdat.exactmatch = comdat exactmatch
26$comdat.largest = comdat largest
27; CHECK: $comdat.largest = comdat largest
28$comdat.noduplicates = comdat nodeduplicate
29; CHECK: $comdat.noduplicates = comdat nodeduplicate
30$comdat.samesize = comdat samesize
31; CHECK: $comdat.samesize = comdat samesize
32
33;; Constants
34@const.true = constant i1 true
35; CHECK: @const.true = constant i1 true
36@const.false = constant i1 false
37; CHECK: @const.false = constant i1 false
38@const.int = constant i32 zeroinitializer
39; CHECK: @const.int = constant i32 0
40@const.float = constant double 0.0
41; CHECK: @const.float = constant double 0.0
42@const.null = constant i8* null
43; CHECK: @const.null = constant i8* null
44%const.struct.type = type { i32, i8, i64 }
45%const.struct.type.packed = type <{ i32, i8 }>
46@const.struct = constant %const.struct.type { i32 -1, i8 undef, i64 poison }
47; CHECK: @const.struct = constant %const.struct.type { i32 -1, i8 undef, i64 poison }
48@const.struct.packed = constant %const.struct.type.packed <{ i32 -1, i8 1 }>
49; CHECK: @const.struct.packed = constant %const.struct.type.packed <{ i32 -1, i8 1 }>
50
51; CHECK: @constant.array.i8  = constant [3 x i8] c"\00\01\00"
52@constant.array.i8  = constant [3 x i8] [i8 -0, i8 1, i8 0]
53; CHECK: @constant.array.i16 = constant [3 x i16] [i16 0, i16 1, i16 0]
54@constant.array.i16 = constant [3 x i16] [i16 -0, i16 1, i16 0]
55; CHECK: @constant.array.i32 = constant [3 x i32] [i32 0, i32 1, i32 0]
56@constant.array.i32 = constant [3 x i32] [i32 -0, i32 1, i32 0]
57; CHECK: @constant.array.i64 = constant [3 x i64] [i64 0, i64 1, i64 0]
58@constant.array.i64 = constant [3 x i64] [i64 -0, i64 1, i64 0]
59; CHECK: @constant.array.f16 = constant [3 x half] [half 0xH8000, half 0xH3C00, half 0xH0000]
60@constant.array.f16 = constant [3 x half] [half -0.0, half 1.0, half 0.0]
61; CHECK: @constant.array.f32 = constant [3 x float] [float -0.000000e+00, float 1.000000e+00, float 0.000000e+00]
62@constant.array.f32 = constant [3 x float] [float -0.0, float 1.0, float 0.0]
63; CHECK: @constant.array.f64 = constant [3 x double] [double -0.000000e+00, double 1.000000e+00, double 0.000000e+00]
64@constant.array.f64 = constant [3 x double] [double -0.0, double 1.0, double 0.0]
65
66; CHECK: @constant.vector.i8  = constant <3 x i8>  <i8 0, i8 1, i8 0>
67@constant.vector.i8  = constant <3 x i8>  <i8 -0, i8 1, i8 0>
68; CHECK: @constant.vector.i16 = constant <3 x i16> <i16 0, i16 1, i16 0>
69@constant.vector.i16 = constant <3 x i16> <i16 -0, i16 1, i16 0>
70; CHECK: @constant.vector.i32 = constant <3 x i32> <i32 0, i32 1, i32 0>
71@constant.vector.i32 = constant <3 x i32> <i32 -0, i32 1, i32 0>
72; CHECK: @constant.vector.i64 = constant <3 x i64> <i64 0, i64 1, i64 0>
73@constant.vector.i64 = constant <3 x i64> <i64 -0, i64 1, i64 0>
74; CHECK: @constant.vector.f16 = constant <3 x half> <half 0xH8000, half 0xH3C00, half 0xH0000>
75@constant.vector.f16 = constant <3 x half> <half -0.0, half 1.0, half 0.0>
76; CHECK: @constant.vector.f32 = constant <3 x float> <float -0.000000e+00, float 1.000000e+00, float 0.000000e+00>
77@constant.vector.f32 = constant <3 x float> <float -0.0, float 1.0, float 0.0>
78; CHECK: @constant.vector.f64 = constant <3 x double> <double -0.000000e+00, double 1.000000e+00, double 0.000000e+00>
79@constant.vector.f64 = constant <3 x double> <double -0.0, double 1.0, double 0.0>
80
81;; Global Variables
82; Format: [@<GlobalVarName> =] [Linkage] [Visibility] [DLLStorageClass]
83;         [ThreadLocal] [(unnamed_addr|local_unnamed_addr)] [AddrSpace] [ExternallyInitialized]
84;         <global | constant> <Type> [<InitializerConstant>]
85;         [, section "name"] [, comdat [($name)]] [, align <Alignment>]
86
87; Global Variables -- Simple
88@g1 = global i32 0
89; CHECK: @g1 = global i32 0
90@g2 = constant i32 0
91; CHECK: @g2 = constant i32 0
92
93; Global Variables -- Linkage
94@g.private = private global i32 0
95; CHECK: @g.private = private global i32 0
96@g.internal = internal global i32 0
97; CHECK: @g.internal = internal global i32 0
98@g.available_externally = available_externally global i32 0
99; CHECK: @g.available_externally = available_externally global i32 0
100@g.linkonce = linkonce global i32 0
101; CHECK: @g.linkonce = linkonce global i32 0
102@g.weak = weak global i32 0
103; CHECK: @g.weak = weak global i32 0
104@g.common = common global i32 0
105; CHECK: @g.common = common global i32 0
106@g.appending = appending global [4 x i8] c"test"
107; CHECK: @g.appending = appending global [4 x i8] c"test"
108@g.extern_weak = extern_weak global i32
109; CHECK: @g.extern_weak = extern_weak global i32
110@g.linkonce_odr = linkonce_odr global i32 0
111; CHECK: @g.linkonce_odr = linkonce_odr global i32 0
112@g.weak_odr = weak_odr global i32 0
113; CHECK: @g.weak_odr = weak_odr global i32 0
114@g.external = external global i32
115; CHECK: @g.external = external global i32
116
117; Global Variables -- Visibility
118@g.default = default global i32 0
119; CHECK: @g.default = global i32 0
120@g.hidden = hidden global i32 0
121; CHECK: @g.hidden = hidden global i32 0
122@g.protected = protected global i32 0
123; CHECK: @g.protected = protected global i32 0
124
125; Global Variables -- DLLStorageClass
126@g.dlldefault = default global i32 0
127; CHECK: @g.dlldefault = global i32 0
128@g.dllimport = external dllimport global i32
129; CHECK: @g.dllimport = external dllimport global i32
130@g.dllexport = dllexport global i32 0
131; CHECK: @g.dllexport = dllexport global i32 0
132
133; Global Variables -- ThreadLocal
134@g.notthreadlocal = global i32 0
135; CHECK: @g.notthreadlocal = global i32 0
136@g.generaldynamic = thread_local global i32 0
137; CHECK: @g.generaldynamic = thread_local global i32 0
138@g.localdynamic = thread_local(localdynamic) global i32 0
139; CHECK: @g.localdynamic = thread_local(localdynamic) global i32 0
140@g.initialexec = thread_local(initialexec) global i32 0
141; CHECK: @g.initialexec = thread_local(initialexec) global i32 0
142@g.localexec = thread_local(localexec) global i32 0
143; CHECK: @g.localexec = thread_local(localexec) global i32 0
144
145; Global Variables -- unnamed_addr and local_unnamed_addr
146@g.unnamed_addr = unnamed_addr global i32 0
147; CHECK: @g.unnamed_addr = unnamed_addr global i32 0
148@g.local_unnamed_addr = local_unnamed_addr global i32 0
149; CHECK: @g.local_unnamed_addr = local_unnamed_addr global i32 0
150
151; Global Variables -- AddrSpace
152@g.addrspace = addrspace(1) global i32 0
153; CHECK: @g.addrspace = addrspace(1) global i32 0
154
155; Global Variables -- ExternallyInitialized
156@g.externally_initialized = external externally_initialized global i32
157; CHECK: @g.externally_initialized = external externally_initialized global i32
158
159; Global Variables -- section
160@g.section = global i32 0, section "_DATA"
161; CHECK: @g.section = global i32 0, section "_DATA"
162
163; Global Variables -- partition
164@g.partition = global i32 0, partition "part"
165; CHECK: @g.partition = global i32 0, partition "part"
166
167; Global Variables -- comdat
168@comdat.any = global i32 0, comdat
169; CHECK: @comdat.any = global i32 0, comdat
170@comdat.exactmatch = global i32 0, comdat
171; CHECK: @comdat.exactmatch = global i32 0, comdat
172@comdat.largest = global i32 0, comdat
173; CHECK: @comdat.largest = global i32 0, comdat
174@comdat.noduplicates = global i32 0, comdat
175; CHECK: @comdat.noduplicates = global i32 0, comdat
176@comdat.samesize = global i32 0, comdat
177; CHECK: @comdat.samesize = global i32 0, comdat
178
179; Force two globals from different comdats into sections with the same name.
180$comdat1 = comdat any
181$comdat2 = comdat any
182@g.comdat1 = global i32 0, section "SharedSection", comdat($comdat1)
183; CHECK: @g.comdat1 = global i32 0, section "SharedSection", comdat($comdat1)
184@g.comdat2 = global i32 0, section "SharedSection", comdat($comdat2)
185; CHECK: @g.comdat2 = global i32 0, section "SharedSection", comdat($comdat2)
186
187; Global Variables -- align
188@g.align = global i32 0, align 4
189; CHECK: @g.align = global i32 0, align 4
190
191; Global Variables -- Intrinsics
192%pri.func.data = type { i32, void ()*, i8* }
193@g.used1 = global i32 0
194@g.used2 = global i32 0
195@g.used3 = global i8 0
196declare void @g.f1()
197@llvm.used = appending global [1 x i32*] [i32* @g.used1], section "llvm.metadata"
198; CHECK: @llvm.used = appending global [1 x i32*] [i32* @g.used1], section "llvm.metadata"
199@llvm.compiler.used = appending global [1 x i32*] [i32* @g.used2], section "llvm.metadata"
200; CHECK: @llvm.compiler.used = appending global [1 x i32*] [i32* @g.used2], section "llvm.metadata"
201@llvm.global_ctors = appending global [1 x %pri.func.data] [%pri.func.data { i32 0, void ()* @g.f1, i8* @g.used3 }], section "llvm.metadata"
202; CHECK: @llvm.global_ctors = appending global [1 x %pri.func.data] [%pri.func.data { i32 0, void ()* @g.f1, i8* @g.used3 }], section "llvm.metadata"
203@llvm.global_dtors = appending global [1 x %pri.func.data] [%pri.func.data { i32 0, void ()* @g.f1, i8* @g.used3 }], section "llvm.metadata"
204; CHECK: @llvm.global_dtors = appending global [1 x %pri.func.data] [%pri.func.data { i32 0, void ()* @g.f1, i8* @g.used3 }], section "llvm.metadata"
205
206; Global Variables -- sanitizers
207@g.no_sanitize_address = global i32 0, no_sanitize_address
208@g.no_sanitize_hwaddress = global i32 0, no_sanitize_hwaddress
209@g.sanitize_memtag = global i32 0, sanitize_memtag
210@g.no_sanitize_multiple = global i32 0, no_sanitize_address, no_sanitize_hwaddress
211@g.sanitize_address_dyninit = global i32 0, sanitize_address_dyninit
212@g.sanitize_multiple = global i32 0, sanitize_memtag, sanitize_address_dyninit
213; CHECK: @g.no_sanitize_address = global i32 0, no_sanitize_address
214; CHECK: @g.no_sanitize_hwaddress = global i32 0, no_sanitize_hwaddress
215; CHECK: @g.sanitize_memtag = global i32 0, sanitize_memtag
216; CHECK: @g.no_sanitize_multiple = global i32 0, no_sanitize_address, no_sanitize_hwaddress
217; CHECK: @g.sanitize_address_dyninit = global i32 0, sanitize_address_dyninit
218; CHECK: @g.sanitize_multiple = global i32 0, sanitize_memtag, sanitize_address_dyninit
219
220;; Aliases
221; Format: @<Name> = [Linkage] [Visibility] [DLLStorageClass] [ThreadLocal]
222;                   [unnamed_addr] alias <AliaseeTy> @<Aliasee>
223
224; Aliases -- Linkage
225@a.private = private alias i32, i32* @g.private
226; CHECK: @a.private = private alias i32, i32* @g.private
227@a.internal = internal alias i32, i32* @g.internal
228; CHECK: @a.internal = internal alias i32, i32* @g.internal
229@a.linkonce = linkonce alias i32, i32* @g.linkonce
230; CHECK: @a.linkonce = linkonce alias i32, i32* @g.linkonce
231@a.weak = weak alias i32, i32* @g.weak
232; CHECK: @a.weak = weak alias i32, i32* @g.weak
233@a.linkonce_odr = linkonce_odr alias i32, i32* @g.linkonce_odr
234; CHECK: @a.linkonce_odr = linkonce_odr alias i32, i32* @g.linkonce_odr
235@a.weak_odr = weak_odr alias i32, i32* @g.weak_odr
236; CHECK: @a.weak_odr = weak_odr alias i32, i32* @g.weak_odr
237@a.external = external alias i32, i32* @g1
238; CHECK: @a.external = alias i32, i32* @g1
239
240; Aliases -- Visibility
241@a.default = default alias i32, i32* @g.default
242; CHECK: @a.default = alias i32, i32* @g.default
243@a.hidden = hidden alias i32, i32* @g.hidden
244; CHECK: @a.hidden = hidden alias i32, i32* @g.hidden
245@a.protected = protected alias i32, i32* @g.protected
246; CHECK: @a.protected = protected alias i32, i32* @g.protected
247
248; Aliases -- DLLStorageClass
249@a.dlldefault = default alias i32, i32* @g.dlldefault
250; CHECK: @a.dlldefault = alias i32, i32* @g.dlldefault
251@a.dllexport = dllexport alias i32, i32* @g.dllexport
252; CHECK: @a.dllexport = dllexport alias i32, i32* @g.dllexport
253
254; Aliases -- ThreadLocal
255@a.notthreadlocal = alias i32, i32* @g.notthreadlocal
256; CHECK: @a.notthreadlocal = alias i32, i32* @g.notthreadlocal
257@a.generaldynamic = thread_local alias i32, i32* @g.generaldynamic
258; CHECK: @a.generaldynamic = thread_local alias i32, i32* @g.generaldynamic
259@a.localdynamic = thread_local(localdynamic) alias i32, i32* @g.localdynamic
260; CHECK: @a.localdynamic = thread_local(localdynamic) alias i32, i32* @g.localdynamic
261@a.initialexec = thread_local(initialexec) alias i32, i32* @g.initialexec
262; CHECK: @a.initialexec = thread_local(initialexec) alias i32, i32* @g.initialexec
263@a.localexec = thread_local(localexec) alias i32, i32* @g.localexec
264; CHECK: @a.localexec = thread_local(localexec) alias i32, i32* @g.localexec
265
266; Aliases -- unnamed_addr and local_unnamed_addr
267@a.unnamed_addr = unnamed_addr alias i32, i32* @g.unnamed_addr
268; CHECK: @a.unnamed_addr = unnamed_addr alias i32, i32* @g.unnamed_addr
269@a.local_unnamed_addr = local_unnamed_addr alias i32, i32* @g.local_unnamed_addr
270; CHECK: @a.local_unnamed_addr = local_unnamed_addr alias i32, i32* @g.local_unnamed_addr
271
272; Aliases -- partition
273; CHECK: @alias.partition = alias i32, i32* @g.partition, partition "part"
274@alias.partition = alias i32, i32* @g.partition, partition "part"
275
276;; IFunc
277; Format @<Name> = [Linkage] [Visibility] ifunc <IFuncTy>,
278;                  <ResolverTy>* @<Resolver>
279
280; IFunc -- Linkage
281@ifunc.external = external ifunc void (), void ()* ()* @ifunc_resolver
282; CHECK: @ifunc.external = ifunc void (), void ()* ()* @ifunc_resolver
283@ifunc.private = private ifunc void (), void ()* ()* @ifunc_resolver
284; CHECK: @ifunc.private = private ifunc void (), void ()* ()* @ifunc_resolver
285@ifunc.internal = internal ifunc void (), void ()* ()* @ifunc_resolver
286; CHECK: @ifunc.internal = internal ifunc void (), void ()* ()* @ifunc_resolver
287
288; IFunc -- Visibility
289@ifunc.default = default ifunc void (), void ()* ()* @ifunc_resolver
290; CHECK: @ifunc.default = ifunc void (), void ()* ()* @ifunc_resolver
291@ifunc.hidden = hidden ifunc void (), void ()* ()* @ifunc_resolver
292; CHECK: @ifunc.hidden = hidden ifunc void (), void ()* ()* @ifunc_resolver
293@ifunc.protected = protected ifunc void (), void ()* ()* @ifunc_resolver
294; CHECK: @ifunc.protected = protected ifunc void (), void ()* ()* @ifunc_resolver
295
296; IFunc -- partition
297; CHECK: @ifunc.partition = ifunc void (), void ()* ()* @ifunc_resolver, partition "part"
298@ifunc.partition = ifunc void (), void ()* ()* @ifunc_resolver, partition "part"
299
300define void ()* @ifunc_resolver() {
301entry:
302  ret void ()* null
303}
304
305;; Functions
306; Format: define [linkage] [visibility] [DLLStorageClass]
307;         [cconv] [ret attrs]
308;         <ResultType> @<FunctionName> ([argument list])
309;         [(unnamed_addr|local_unnamed_addr)] [fn Attrs] [section "name"] [comdat [($name)]]
310;         [align N] [gc] [prefix Constant] [prologue Constant]
311;         [personality Constant] { ... }
312
313; Functions -- Simple
314declare void @f1 ()
315; CHECK: declare void @f1()
316
317define void @f2 () {
318; CHECK: define void @f2()
319entry:
320  ret void
321}
322
323; Functions -- linkage
324define private void @f.private() {
325; CHECK: define private void @f.private()
326entry:
327  ret void
328}
329define internal void @f.internal() {
330; CHECK: define internal void @f.internal()
331entry:
332  ret void
333}
334define available_externally void @f.available_externally() {
335; CHECK: define available_externally void @f.available_externally()
336entry:
337  ret void
338}
339define linkonce void @f.linkonce() {
340; CHECK: define linkonce void @f.linkonce()
341entry:
342  ret void
343}
344define weak void @f.weak() {
345; CHECK: define weak void @f.weak()
346entry:
347  ret void
348}
349define linkonce_odr void @f.linkonce_odr() {
350; CHECK: define linkonce_odr void @f.linkonce_odr()
351entry:
352  ret void
353}
354define weak_odr void @f.weak_odr() {
355; CHECK: define weak_odr void @f.weak_odr()
356entry:
357  ret void
358}
359declare external void @f.external()
360; CHECK: declare void @f.external()
361declare extern_weak void @f.extern_weak()
362; CHECK: declare extern_weak void @f.extern_weak()
363
364; Functions -- visibility
365declare default void @f.default()
366; CHECK: declare void @f.default()
367declare hidden void @f.hidden()
368; CHECK: declare hidden void @f.hidden()
369declare protected void @f.protected()
370; CHECK: declare protected void @f.protected()
371
372; Functions -- DLLStorageClass
373declare dllimport void @f.dllimport()
374; CHECK: declare dllimport void @f.dllimport()
375declare dllexport void @f.dllexport()
376; CHECK: declare dllexport void @f.dllexport()
377
378; Functions -- cconv (Calling conventions)
379declare ccc void @f.ccc()
380; CHECK: declare void @f.ccc()
381declare fastcc void @f.fastcc()
382; CHECK: declare fastcc void @f.fastcc()
383declare coldcc void @f.coldcc()
384; CHECK: declare coldcc void @f.coldcc()
385declare cc10 void @f.cc10()
386; CHECK: declare ghccc void @f.cc10()
387declare ghccc void @f.ghccc()
388; CHECK: declare ghccc void @f.ghccc()
389declare cc11 void @f.cc11()
390; CHECK: declare cc11 void @f.cc11()
391declare webkit_jscc void @f.webkit_jscc()
392; CHECK: declare webkit_jscc void @f.webkit_jscc()
393declare anyregcc void @f.anyregcc()
394; CHECK: declare anyregcc void @f.anyregcc()
395declare preserve_mostcc void @f.preserve_mostcc()
396; CHECK: declare preserve_mostcc void @f.preserve_mostcc()
397declare preserve_allcc void @f.preserve_allcc()
398; CHECK: declare preserve_allcc void @f.preserve_allcc()
399declare swifttailcc void @f.swifttailcc()
400; CHECK: declare swifttailcc void @f.swifttailcc()
401declare cc64 void @f.cc64()
402; CHECK: declare x86_stdcallcc void @f.cc64()
403declare x86_stdcallcc void @f.x86_stdcallcc()
404; CHECK: declare x86_stdcallcc void @f.x86_stdcallcc()
405declare cc65 void @f.cc65()
406; CHECK: declare x86_fastcallcc void @f.cc65()
407declare x86_fastcallcc void @f.x86_fastcallcc()
408; CHECK: declare x86_fastcallcc void @f.x86_fastcallcc()
409declare cc66 void @f.cc66()
410; CHECK: declare arm_apcscc void @f.cc66()
411declare arm_apcscc void @f.arm_apcscc()
412; CHECK: declare arm_apcscc void @f.arm_apcscc()
413declare cc67 void @f.cc67()
414; CHECK: declare arm_aapcscc void @f.cc67()
415declare arm_aapcscc void @f.arm_aapcscc()
416; CHECK: declare arm_aapcscc void @f.arm_aapcscc()
417declare cc68 void @f.cc68()
418; CHECK: declare arm_aapcs_vfpcc void @f.cc68()
419declare arm_aapcs_vfpcc void @f.arm_aapcs_vfpcc()
420; CHECK: declare arm_aapcs_vfpcc void @f.arm_aapcs_vfpcc()
421declare cc69 void @f.cc69()
422; CHECK: declare msp430_intrcc void @f.cc69()
423declare msp430_intrcc void @f.msp430_intrcc()
424; CHECK: declare msp430_intrcc void @f.msp430_intrcc()
425declare cc70 void @f.cc70()
426; CHECK: declare x86_thiscallcc void @f.cc70()
427declare x86_thiscallcc void @f.x86_thiscallcc()
428; CHECK: declare x86_thiscallcc void @f.x86_thiscallcc()
429declare cc71 void @f.cc71()
430; CHECK: declare ptx_kernel void @f.cc71()
431declare ptx_kernel void @f.ptx_kernel()
432; CHECK: declare ptx_kernel void @f.ptx_kernel()
433declare cc72 void @f.cc72()
434; CHECK: declare ptx_device void @f.cc72()
435declare ptx_device void @f.ptx_device()
436; CHECK: declare ptx_device void @f.ptx_device()
437declare cc75 void @f.cc75()
438; CHECK: declare spir_func void @f.cc75()
439declare spir_func void @f.spir_func()
440; CHECK: declare spir_func void @f.spir_func()
441declare cc76 void @f.cc76()
442; CHECK: declare spir_kernel void @f.cc76()
443declare spir_kernel void @f.spir_kernel()
444; CHECK: declare spir_kernel void @f.spir_kernel()
445declare cc77 void @f.cc77()
446; CHECK: declare intel_ocl_bicc void @f.cc77()
447declare intel_ocl_bicc void @f.intel_ocl_bicc()
448; CHECK: declare intel_ocl_bicc void @f.intel_ocl_bicc()
449declare cc78 void @f.cc78()
450; CHECK: declare x86_64_sysvcc void @f.cc78()
451declare x86_64_sysvcc void @f.x86_64_sysvcc()
452; CHECK: declare x86_64_sysvcc void @f.x86_64_sysvcc()
453declare cc79 void @f.cc79()
454; CHECK: declare win64cc void @f.cc79()
455declare win64cc void @f.win64cc()
456; CHECK: declare win64cc void @f.win64cc()
457declare cc80 void @f.cc80()
458; CHECK: declare x86_vectorcallcc void @f.cc80()
459declare x86_vectorcallcc void @f.x86_vectorcallcc()
460; CHECK: declare x86_vectorcallcc void @f.x86_vectorcallcc()
461declare cc81 void @f.cc81()
462; CHECK: declare hhvmcc void @f.cc81()
463declare hhvmcc void @f.hhvmcc()
464; CHECK: declare hhvmcc void @f.hhvmcc()
465declare cc82 void @f.cc82()
466; CHECK: declare hhvm_ccc void @f.cc82()
467declare hhvm_ccc void @f.hhvm_ccc()
468; CHECK: declare hhvm_ccc void @f.hhvm_ccc()
469declare cc83 void @f.cc83(i8* byval(i8))
470; CHECK: declare x86_intrcc void @f.cc83(i8* byval(i8))
471declare x86_intrcc void @f.x86_intrcc(i8* byval(i8))
472; CHECK: declare x86_intrcc void @f.x86_intrcc(i8* byval(i8))
473declare cc84 void @f.cc84()
474; CHECK: declare avr_intrcc void @f.cc84()
475declare avr_intrcc void @f.avr_intrcc()
476; CHECK: declare avr_intrcc void @f.avr_intrcc()
477declare cc85 void @f.cc85()
478; CHECK: declare avr_signalcc void @f.cc85()
479declare avr_signalcc void @f.avr_signalcc()
480; CHECK: declare avr_signalcc void @f.avr_signalcc()
481declare cc87 void @f.cc87()
482; CHECK: declare amdgpu_vs void @f.cc87()
483declare amdgpu_vs void @f.amdgpu_vs()
484; CHECK: declare amdgpu_vs void @f.amdgpu_vs()
485declare cc88 void @f.cc88()
486; CHECK: declare amdgpu_gs void @f.cc88()
487declare amdgpu_gs void @f.amdgpu_gs()
488; CHECK: declare amdgpu_gs void @f.amdgpu_gs()
489declare cc89 void @f.cc89()
490; CHECK: declare amdgpu_ps void @f.cc89()
491declare amdgpu_ps void @f.amdgpu_ps()
492; CHECK: declare amdgpu_ps void @f.amdgpu_ps()
493declare cc90 void @f.cc90()
494; CHECK: declare amdgpu_cs void @f.cc90()
495declare amdgpu_cs void @f.amdgpu_cs()
496; CHECK: declare amdgpu_cs void @f.amdgpu_cs()
497declare amdgpu_gfx void @f.amdgpu_gfx()
498; CHECK: declare amdgpu_gfx void @f.amdgpu_gfx()
499declare cc91 void @f.cc91()
500; CHECK: declare amdgpu_kernel void @f.cc91()
501declare amdgpu_kernel void @f.amdgpu_kernel()
502; CHECK: declare amdgpu_kernel void @f.amdgpu_kernel()
503declare cc93 void @f.cc93()
504; CHECK: declare amdgpu_hs void @f.cc93()
505declare amdgpu_hs void @f.amdgpu_hs()
506; CHECK: declare amdgpu_hs void @f.amdgpu_hs()
507declare cc95 void @f.cc95()
508; CHECK: declare amdgpu_ls void @f.cc95()
509declare amdgpu_ls void @f.amdgpu_ls()
510; CHECK: declare amdgpu_ls void @f.amdgpu_ls()
511declare cc96 void @f.cc96()
512; CHECK: declare amdgpu_es void @f.cc96()
513declare amdgpu_es void @f.amdgpu_es()
514; CHECK: declare amdgpu_es void @f.amdgpu_es()
515declare cc1023 void @f.cc1023()
516; CHECK: declare cc1023 void @f.cc1023()
517
518; Functions -- ret attrs (Return attributes)
519declare zeroext i64 @f.zeroext()
520; CHECK: declare zeroext i64 @f.zeroext()
521declare signext i64 @f.signext()
522; CHECK: declare signext i64 @f.signext()
523declare inreg i32* @f.inreg()
524; CHECK: declare inreg i32* @f.inreg()
525declare noalias i32* @f.noalias()
526; CHECK: declare noalias i32* @f.noalias()
527declare nonnull i32* @f.nonnull()
528; CHECK: declare nonnull i32* @f.nonnull()
529declare dereferenceable(4) i32* @f.dereferenceable4()
530; CHECK: declare dereferenceable(4) i32* @f.dereferenceable4()
531declare dereferenceable(8) i32* @f.dereferenceable8()
532; CHECK: declare dereferenceable(8) i32* @f.dereferenceable8()
533declare dereferenceable(16) i32* @f.dereferenceable16()
534; CHECK: declare dereferenceable(16) i32* @f.dereferenceable16()
535declare dereferenceable_or_null(4) i32* @f.dereferenceable4_or_null()
536; CHECK: declare dereferenceable_or_null(4) i32* @f.dereferenceable4_or_null()
537declare dereferenceable_or_null(8) i32* @f.dereferenceable8_or_null()
538; CHECK: declare dereferenceable_or_null(8) i32* @f.dereferenceable8_or_null()
539declare dereferenceable_or_null(16) i32* @f.dereferenceable16_or_null()
540; CHECK: declare dereferenceable_or_null(16) i32* @f.dereferenceable16_or_null()
541
542; Functions -- Parameter attributes
543declare void @f.param.zeroext(i8 zeroext)
544; CHECK: declare void @f.param.zeroext(i8 zeroext)
545declare void @f.param.signext(i8 signext)
546; CHECK: declare void @f.param.signext(i8 signext)
547declare void @f.param.inreg(i8 inreg)
548; CHECK: declare void @f.param.inreg(i8 inreg)
549declare void @f.param.byval({ i8, i8 }* byval({ i8, i8 }))
550; CHECK: declare void @f.param.byval({ i8, i8 }* byval({ i8, i8 }))
551declare void @f.param.inalloca(i8* inalloca(i8))
552; CHECK: declare void @f.param.inalloca(i8* inalloca(i8))
553declare void @f.param.sret(i8* sret(i8))
554; CHECK: declare void @f.param.sret(i8* sret(i8))
555declare void @f.param.noalias(i8* noalias)
556; CHECK: declare void @f.param.noalias(i8* noalias)
557declare void @f.param.nocapture(i8* nocapture)
558; CHECK: declare void @f.param.nocapture(i8* nocapture)
559declare void @f.param.nest(i8* nest)
560; CHECK: declare void @f.param.nest(i8* nest)
561declare i8* @f.param.returned(i8* returned)
562; CHECK: declare i8* @f.param.returned(i8* returned)
563declare void @f.param.nonnull(i8* nonnull)
564; CHECK: declare void @f.param.nonnull(i8* nonnull)
565declare void @f.param.dereferenceable(i8* dereferenceable(4))
566; CHECK: declare void @f.param.dereferenceable(i8* dereferenceable(4))
567declare void @f.param.dereferenceable_or_null(i8* dereferenceable_or_null(4))
568; CHECK: declare void @f.param.dereferenceable_or_null(i8* dereferenceable_or_null(4))
569declare void @f.param.stack_align([2 x double] alignstack(16))
570; CHECK: declare void @f.param.stack_align([2 x double] alignstack(16))
571declare void @f.param.swiftself(i8* swiftself)
572; CHECK: declare void @f.param.swiftself(i8* swiftself)
573declare void @f.param.swiftasync(i8* swiftasync)
574; CHECK: declare void @f.param.swiftasync(i8* swiftasync)
575declare void @f.param.swifterror(i8** swifterror)
576; CHECK: declare void @f.param.swifterror(i8** swifterror)
577declare void @f.param.allocalign(i32 allocalign)
578; CHECK: declare void @f.param.allocalign(i32 allocalign)
579declare void @f.param.allocptr(i32* allocptr)
580; CHECK: declare void @f.param.allocptr(i32* allocptr)
581
582; Functions -- unnamed_addr and local_unnamed_addr
583declare void @f.unnamed_addr() unnamed_addr
584; CHECK: declare void @f.unnamed_addr() unnamed_addr
585declare void @f.local_unnamed_addr() local_unnamed_addr
586; CHECK: declare void @f.local_unnamed_addr() local_unnamed_addr
587
588; Functions -- fn Attrs (Function attributes)
589declare void @f.alignstack4() alignstack(4)
590; CHECK: declare void @f.alignstack4() #0
591declare void @f.alignstack8() alignstack(8)
592; CHECK: declare void @f.alignstack8() #1
593declare void @f.alwaysinline() alwaysinline
594; CHECK: declare void @f.alwaysinline() #2
595declare void @f.cold() cold
596; CHECK: declare void @f.cold() #3
597declare void @f.convergent() convergent
598; CHECK: declare void @f.convergent() #4
599declare void @f.inlinehint() inlinehint
600; CHECK: declare void @f.inlinehint() #5
601declare void @f.jumptable() unnamed_addr jumptable
602; CHECK: declare void @f.jumptable() unnamed_addr #6
603declare void @f.minsize() minsize
604; CHECK: declare void @f.minsize() #7
605declare void @f.naked() naked
606; CHECK: declare void @f.naked() #8
607declare void @f.nobuiltin() nobuiltin
608; CHECK: declare void @f.nobuiltin() #9
609declare void @f.noduplicate() noduplicate
610; CHECK: declare void @f.noduplicate() #10
611declare void @f.noimplicitfloat() noimplicitfloat
612; CHECK: declare void @f.noimplicitfloat() #11
613declare void @f.noinline() noinline
614; CHECK: declare void @f.noinline() #12
615declare void @f.nonlazybind() nonlazybind
616; CHECK: declare void @f.nonlazybind() #13
617declare void @f.noredzone() noredzone
618; CHECK: declare void @f.noredzone() #14
619declare void @f.noreturn() noreturn
620; CHECK: declare void @f.noreturn() #15
621declare void @f.nounwind() nounwind
622; CHECK: declare void @f.nounwind() #16
623declare void @f.optnone() noinline optnone
624; CHECK: declare void @f.optnone() #17
625declare void @f.optsize() optsize
626; CHECK: declare void @f.optsize() #18
627declare void @f.readnone() readnone
628; CHECK: declare void @f.readnone() #19
629declare void @f.readonly() readonly
630; CHECK: declare void @f.readonly() #20
631declare void @f.returns_twice() returns_twice
632; CHECK: declare void @f.returns_twice() #21
633declare void @f.safestack() safestack
634; CHECK: declare void @f.safestack() #22
635declare void @f.sanitize_address() sanitize_address
636; CHECK: declare void @f.sanitize_address() #23
637declare void @f.sanitize_memory() sanitize_memory
638; CHECK: declare void @f.sanitize_memory() #24
639declare void @f.sanitize_thread() sanitize_thread
640; CHECK: declare void @f.sanitize_thread() #25
641declare void @f.ssp() ssp
642; CHECK: declare void @f.ssp() #26
643declare void @f.sspreq() sspreq
644; CHECK: declare void @f.sspreq() #27
645declare void @f.sspstrong() sspstrong
646; CHECK: declare void @f.sspstrong() #28
647declare void @f.thunk() "thunk"
648; CHECK: declare void @f.thunk() #29
649declare void @f.uwtable() uwtable
650; CHECK: declare void @f.uwtable() #30
651declare void @f.kvpair() "cpu"="cortex-a8"
652; CHECK:declare void @f.kvpair() #31
653declare void @f.norecurse() norecurse
654; CHECK: declare void @f.norecurse() #32
655declare void @f.inaccessiblememonly() inaccessiblememonly
656; CHECK: declare void @f.inaccessiblememonly() #33
657declare void @f.inaccessiblemem_or_argmemonly() inaccessiblemem_or_argmemonly
658; CHECK: declare void @f.inaccessiblemem_or_argmemonly() #34
659declare void @f.strictfp() #35
660
661; Functions -- section
662declare void @f.section() section "80"
663; CHECK: declare void @f.section() section "80"
664
665; Functions -- partition
666define void @f.partition() partition "part" {
667; CHECK: define void @f.partition() partition "part"
668  ret void
669}
670
671; Functions -- comdat
672define void @f.comdat_any() comdat($comdat.any) {
673; CHECK: define void @f.comdat_any() comdat($comdat.any)
674entry:
675  ret void
676}
677define void @f.comdat_exactmatch() comdat($comdat.exactmatch) {
678; CHECK: define void @f.comdat_exactmatch() comdat($comdat.exactmatch)
679entry:
680  ret void
681}
682define void @f.comdat_largest() comdat($comdat.largest) {
683; CHECK: define void @f.comdat_largest() comdat($comdat.largest)
684entry:
685  ret void
686}
687define void @f.comdat_noduplicates() comdat($comdat.noduplicates) {
688; CHECK: define void @f.comdat_noduplicates() comdat($comdat.noduplicates)
689entry:
690  ret void
691}
692define void @f.comdat_samesize() comdat($comdat.samesize) {
693; CHECK: define void @f.comdat_samesize() comdat($comdat.samesize)
694entry:
695  ret void
696}
697
698; Functions -- align
699declare void @f.align2() align 2
700; CHECK: declare void @f.align2() align 2
701declare void @f.align4() align 4
702; CHECK: declare void @f.align4() align 4
703declare void @f.align8() align 8
704; CHECK: declare void @f.align8() align 8
705
706; Functions -- GC
707declare void @f.gcshadow() gc "shadow-stack"
708; CHECK: declare void @f.gcshadow() gc "shadow-stack"
709
710; Functions -- Prefix data
711declare void @f.prefixi32() prefix i32 1684365668
712; CHECK: declare void @f.prefixi32() prefix i32 1684365668
713declare void @f.prefixarray() prefix [4 x i32] [i32 0, i32 1, i32 2, i32 3]
714; CHECK: declare void @f.prefixarray() prefix [4 x i32] [i32 0, i32 1, i32 2, i32 3]
715
716; Functions -- Prologue data
717declare void @f.prologuei32() prologue i32 1684365669
718; CHECK: declare void @f.prologuei32() prologue i32 1684365669
719declare void @f.prologuearray() prologue [4 x i32] [i32 0, i32 1, i32 2, i32 3]
720; CHECK: declare void @f.prologuearray() prologue [4 x i32] [i32 0, i32 1, i32 2, i32 3]
721
722; Functions -- Personality constant
723declare void @llvm.donothing() nounwind readnone
724; CHECK: declare void @llvm.donothing() #35
725define void @f.no_personality() personality i8 3 {
726; CHECK: define void @f.no_personality() personality i8 3
727  invoke void @llvm.donothing() to label %normal unwind label %exception
728exception:
729  %cleanup = landingpad i8 cleanup
730  br label %normal
731normal:
732  ret void
733}
734
735declare i32 @f.personality_handler()
736; CHECK: declare i32 @f.personality_handler()
737define void @f.personality() personality i32 ()* @f.personality_handler {
738; CHECK: define void @f.personality() personality i32 ()* @f.personality_handler
739  invoke void @llvm.donothing() to label %normal unwind label %exception
740exception:
741  %cleanup = landingpad i32 cleanup
742  br label %normal
743normal:
744  ret void
745}
746
747;; Atomic Memory Ordering Constraints
748define void @atomics(i32* %word) {
749  ;; Atomic Compare And Exchange w/o alignment
750  %cmpxchg_no_align.0 = cmpxchg i32* %word, i32 0, i32 4 monotonic monotonic
751  ; CHECK: %cmpxchg_no_align.0 = cmpxchg i32* %word, i32 0, i32 4 monotonic monotonic
752  %cmpxchg_no_align.1 = cmpxchg i32* %word, i32 0, i32 5 acq_rel monotonic
753  ; CHECK: %cmpxchg_no_align.1 = cmpxchg i32* %word, i32 0, i32 5 acq_rel monotonic
754  %cmpxchg_no_align.2 = cmpxchg i32* %word, i32 0, i32 6 acquire monotonic
755  ; CHECK: %cmpxchg_no_align.2 = cmpxchg i32* %word, i32 0, i32 6 acquire monotonic
756  %cmpxchg_no_align.3 = cmpxchg i32* %word, i32 0, i32 7 release monotonic
757  ; CHECK: %cmpxchg_no_align.3 = cmpxchg i32* %word, i32 0, i32 7 release monotonic
758  %cmpxchg_no_align.4 = cmpxchg i32* %word, i32 0, i32 8 seq_cst monotonic
759  ; CHECK: %cmpxchg_no_align.4 = cmpxchg i32* %word, i32 0, i32 8 seq_cst monotonic
760  %cmpxchg_no_align.5 = cmpxchg weak i32* %word, i32 0, i32 9 seq_cst monotonic
761  ; CHECK: %cmpxchg_no_align.5 = cmpxchg weak i32* %word, i32 0, i32 9 seq_cst monotonic
762  %cmpxchg_no_align.6 = cmpxchg volatile i32* %word, i32 0, i32 10 seq_cst monotonic
763  ; CHECK: %cmpxchg_no_align.6 = cmpxchg volatile i32* %word, i32 0, i32 10 seq_cst monotonic
764  %cmpxchg_no_align.7 = cmpxchg weak volatile i32* %word, i32 0, i32 11 syncscope("singlethread") seq_cst monotonic
765  ; CHECK: %cmpxchg_no_align.7 = cmpxchg weak volatile i32* %word, i32 0, i32 11 syncscope("singlethread") seq_cst monotonic
766
767  ;; Atomic Compare And Exchange w/ alignment
768  %cmpxchg.0 = cmpxchg i32* %word, i32 0, i32 4 monotonic monotonic, align 16
769  ; CHECK: %cmpxchg.0 = cmpxchg i32* %word, i32 0, i32 4 monotonic monotonic, align 16
770  %cmpxchg.1 = cmpxchg i32* %word, i32 0, i32 5 acq_rel monotonic, align 16
771  ; CHECK: %cmpxchg.1 = cmpxchg i32* %word, i32 0, i32 5 acq_rel monotonic, align 16
772  %cmpxchg.2 = cmpxchg i32* %word, i32 0, i32 6 acquire monotonic, align 16
773  ; CHECK: %cmpxchg.2 = cmpxchg i32* %word, i32 0, i32 6 acquire monotonic, align 16
774  %cmpxchg.3 = cmpxchg i32* %word, i32 0, i32 7 release monotonic, align 16
775  ; CHECK: %cmpxchg.3 = cmpxchg i32* %word, i32 0, i32 7 release monotonic, align 16
776  %cmpxchg.4 = cmpxchg i32* %word, i32 0, i32 8 seq_cst monotonic, align 16
777  ; CHECK: %cmpxchg.4 = cmpxchg i32* %word, i32 0, i32 8 seq_cst monotonic, align 16
778  %cmpxchg.5 = cmpxchg weak i32* %word, i32 0, i32 9 seq_cst monotonic, align 16
779  ; CHECK: %cmpxchg.5 = cmpxchg weak i32* %word, i32 0, i32 9 seq_cst monotonic, align 16
780  %cmpxchg.6 = cmpxchg volatile i32* %word, i32 0, i32 10 seq_cst monotonic, align 16
781  ; CHECK: %cmpxchg.6 = cmpxchg volatile i32* %word, i32 0, i32 10 seq_cst monotonic, align 16
782  %cmpxchg.7 = cmpxchg weak volatile i32* %word, i32 0, i32 11 syncscope("singlethread") seq_cst monotonic, align 16
783  ; CHECK: %cmpxchg.7 = cmpxchg weak volatile i32* %word, i32 0, i32 11 syncscope("singlethread") seq_cst monotonic, align 16
784
785  ;; Atomic w/o alignment
786  %atomicrmw_no_align.xchg = atomicrmw xchg i32* %word, i32 12 monotonic
787  ; CHECK: %atomicrmw_no_align.xchg = atomicrmw xchg i32* %word, i32 12 monotonic
788  %atomicrmw_no_align.add = atomicrmw add i32* %word, i32 13 monotonic
789  ; CHECK: %atomicrmw_no_align.add = atomicrmw add i32* %word, i32 13 monotonic
790  %atomicrmw_no_align.sub = atomicrmw sub i32* %word, i32 14 monotonic
791  ; CHECK: %atomicrmw_no_align.sub = atomicrmw sub i32* %word, i32 14 monotonic
792  %atomicrmw_no_align.and = atomicrmw and i32* %word, i32 15 monotonic
793  ; CHECK: %atomicrmw_no_align.and = atomicrmw and i32* %word, i32 15 monotonic
794  %atomicrmw_no_align.nand = atomicrmw nand i32* %word, i32 16 monotonic
795  ; CHECK: %atomicrmw_no_align.nand = atomicrmw nand i32* %word, i32 16 monotonic
796  %atomicrmw_no_align.or = atomicrmw or i32* %word, i32 17 monotonic
797  ; CHECK: %atomicrmw_no_align.or = atomicrmw or i32* %word, i32 17 monotonic
798  %atomicrmw_no_align.xor = atomicrmw xor i32* %word, i32 18 monotonic
799  ; CHECK: %atomicrmw_no_align.xor = atomicrmw xor i32* %word, i32 18 monotonic
800  %atomicrmw_no_align.max = atomicrmw max i32* %word, i32 19 monotonic
801  ; CHECK: %atomicrmw_no_align.max = atomicrmw max i32* %word, i32 19 monotonic
802  %atomicrmw_no_align.min = atomicrmw volatile min i32* %word, i32 20 monotonic
803  ; CHECK: %atomicrmw_no_align.min = atomicrmw volatile min i32* %word, i32 20 monotonic
804  %atomicrmw_no_align.umax = atomicrmw umax i32* %word, i32 21 syncscope("singlethread") monotonic
805  ; CHECK: %atomicrmw_no_align.umax = atomicrmw umax i32* %word, i32 21 syncscope("singlethread") monotonic
806  %atomicrmw_no_align.umin = atomicrmw volatile umin i32* %word, i32 22 syncscope("singlethread") monotonic
807  ; CHECK: %atomicrmw_no_align.umin = atomicrmw volatile umin i32* %word, i32 22 syncscope("singlethread") monotonic
808
809  ;; Atomic w/ alignment
810  %atomicrmw.xchg = atomicrmw xchg i32* %word, i32 12 monotonic, align 16
811  ; CHECK: %atomicrmw.xchg = atomicrmw xchg i32* %word, i32 12 monotonic, align 16
812  %atomicrmw.add = atomicrmw add i32* %word, i32 13 monotonic, align 16
813  ; CHECK: %atomicrmw.add = atomicrmw add i32* %word, i32 13 monotonic, align 16
814  %atomicrmw.sub = atomicrmw sub i32* %word, i32 14 monotonic, align 16
815  ; CHECK: %atomicrmw.sub = atomicrmw sub i32* %word, i32 14 monotonic, align 16
816  %atomicrmw.and = atomicrmw and i32* %word, i32 15 monotonic, align 16
817  ; CHECK: %atomicrmw.and = atomicrmw and i32* %word, i32 15 monotonic, align 16
818  %atomicrmw.nand = atomicrmw nand i32* %word, i32 16 monotonic, align 16
819  ; CHECK: %atomicrmw.nand = atomicrmw nand i32* %word, i32 16 monotonic, align 16
820  %atomicrmw.or = atomicrmw or i32* %word, i32 17 monotonic, align 16
821  ; CHECK: %atomicrmw.or = atomicrmw or i32* %word, i32 17 monotonic, align 16
822  %atomicrmw.xor = atomicrmw xor i32* %word, i32 18 monotonic, align 16
823  ; CHECK: %atomicrmw.xor = atomicrmw xor i32* %word, i32 18 monotonic, align 16
824  %atomicrmw.max = atomicrmw max i32* %word, i32 19 monotonic, align 16
825  ; CHECK: %atomicrmw.max = atomicrmw max i32* %word, i32 19 monotonic, align 16
826  %atomicrmw.min = atomicrmw volatile min i32* %word, i32 20 monotonic, align 16
827  ; CHECK: %atomicrmw.min = atomicrmw volatile min i32* %word, i32 20 monotonic, align 16
828  %atomicrmw.umax = atomicrmw umax i32* %word, i32 21 syncscope("singlethread") monotonic, align 16
829  ; CHECK: %atomicrmw.umax = atomicrmw umax i32* %word, i32 21 syncscope("singlethread") monotonic, align 16
830  %atomicrmw.umin = atomicrmw volatile umin i32* %word, i32 22 syncscope("singlethread") monotonic, align 16
831  ; CHECK: %atomicrmw.umin = atomicrmw volatile umin i32* %word, i32 22 syncscope("singlethread") monotonic, align 16
832
833  fence acquire
834  ; CHECK: fence acquire
835  fence release
836  ; CHECK: fence release
837  fence acq_rel
838  ; CHECK: fence acq_rel
839  fence syncscope("singlethread") seq_cst
840  ; CHECK: fence syncscope("singlethread") seq_cst
841
842  %ld.1 = load atomic i32, i32* %word monotonic, align 4
843  ; CHECK: %ld.1 = load atomic i32, i32* %word monotonic, align 4
844  %ld.2 = load atomic volatile i32, i32* %word acquire, align 8
845  ; CHECK: %ld.2 = load atomic volatile i32, i32* %word acquire, align 8
846  %ld.3 = load atomic volatile i32, i32* %word syncscope("singlethread") seq_cst, align 16
847  ; CHECK: %ld.3 = load atomic volatile i32, i32* %word syncscope("singlethread") seq_cst, align 16
848
849  store atomic i32 23, i32* %word monotonic, align 4
850  ; CHECK: store atomic i32 23, i32* %word monotonic, align 4
851  store atomic volatile i32 24, i32* %word monotonic, align 4
852  ; CHECK: store atomic volatile i32 24, i32* %word monotonic, align 4
853  store atomic volatile i32 25, i32* %word syncscope("singlethread") monotonic, align 4
854  ; CHECK: store atomic volatile i32 25, i32* %word syncscope("singlethread") monotonic, align 4
855  ret void
856}
857
858define void @fp_atomics(float* %word) {
859; CHECK: %atomicrmw.xchg = atomicrmw xchg float* %word, float 1.000000e+00 monotonic
860  %atomicrmw.xchg = atomicrmw xchg float* %word, float 1.0 monotonic
861
862; CHECK: %atomicrmw.fadd = atomicrmw fadd float* %word, float 1.000000e+00 monotonic
863  %atomicrmw.fadd = atomicrmw fadd float* %word, float 1.0 monotonic
864
865; CHECK: %atomicrmw.fsub = atomicrmw fsub float* %word, float 1.000000e+00 monotonic
866  %atomicrmw.fsub = atomicrmw fsub float* %word, float 1.0 monotonic
867
868; CHECK: %atomicrmw.fmax = atomicrmw fmax float* %word, float 1.000000e+00 monotonic
869  %atomicrmw.fmax = atomicrmw fmax float* %word, float 1.0 monotonic
870
871; CHECK: %atomicrmw.fmin = atomicrmw fmin float* %word, float 1.000000e+00 monotonic
872  %atomicrmw.fmin = atomicrmw fmin float* %word, float 1.0 monotonic
873
874  ret void
875}
876
877define void @pointer_atomics(i8** %word) {
878; CHECK: %atomicrmw.xchg = atomicrmw xchg i8** %word, i8* null monotonic
879  %atomicrmw.xchg = atomicrmw xchg i8** %word, i8* null monotonic
880  ret void
881}
882
883;; Fast Math Flags
884define void @fastmathflags_unop(float %op1) {
885  %f.nnan = fneg nnan float %op1
886  ; CHECK: %f.nnan = fneg nnan float %op1
887  %f.ninf = fneg ninf float %op1
888  ; CHECK: %f.ninf = fneg ninf float %op1
889  %f.nsz = fneg nsz float %op1
890  ; CHECK: %f.nsz = fneg nsz float %op1
891  %f.arcp = fneg arcp float %op1
892  ; CHECK: %f.arcp = fneg arcp float %op1
893  %f.contract = fneg contract float %op1
894  ; CHECK: %f.contract = fneg contract float %op1
895  %f.afn = fneg afn float %op1
896  ; CHECK: %f.afn = fneg afn float %op1
897  %f.reassoc = fneg reassoc float %op1
898  ; CHECK: %f.reassoc = fneg reassoc float %op1
899  %f.fast = fneg fast float %op1
900  ; CHECK: %f.fast = fneg fast float %op1
901  ret void
902}
903
904define void @fastmathflags_binops(float %op1, float %op2) {
905  %f.nnan = fadd nnan float %op1, %op2
906  ; CHECK: %f.nnan = fadd nnan float %op1, %op2
907  %f.ninf = fadd ninf float %op1, %op2
908  ; CHECK: %f.ninf = fadd ninf float %op1, %op2
909  %f.nsz = fadd nsz float %op1, %op2
910  ; CHECK: %f.nsz = fadd nsz float %op1, %op2
911  %f.arcp = fadd arcp float %op1, %op2
912  ; CHECK: %f.arcp = fadd arcp float %op1, %op2
913  %f.contract = fadd contract float %op1, %op2
914  ; CHECK: %f.contract = fadd contract float %op1, %op2
915  %f.afn = fadd afn float %op1, %op2
916  ; CHECK: %f.afn = fadd afn float %op1, %op2
917  %f.reassoc = fadd reassoc float %op1, %op2
918  ; CHECK: %f.reassoc = fadd reassoc float %op1, %op2
919  %f.fast = fadd fast float %op1, %op2
920  ; CHECK: %f.fast = fadd fast float %op1, %op2
921  ret void
922}
923
924define void @fastmathflags_select(i1 %cond, float %op1, float %op2) {
925  %f.nnan = select nnan i1 %cond, float %op1, float %op2
926  ; CHECK: %f.nnan = select nnan i1 %cond, float %op1, float %op2
927  %f.ninf = select ninf i1 %cond, float %op1, float %op2
928  ; CHECK: %f.ninf = select ninf i1 %cond, float %op1, float %op2
929  %f.nsz = select nsz i1 %cond, float %op1, float %op2
930  ; CHECK: %f.nsz = select nsz i1 %cond, float %op1, float %op2
931  %f.arcp = select arcp i1 %cond, float %op1, float %op2
932  ; CHECK: %f.arcp = select arcp i1 %cond, float %op1, float %op2
933  %f.contract = select contract i1 %cond, float %op1, float %op2
934  ; CHECK: %f.contract = select contract i1 %cond, float %op1, float %op2
935  %f.afn = select afn i1 %cond, float %op1, float %op2
936  ; CHECK: %f.afn = select afn i1 %cond, float %op1, float %op2
937  %f.reassoc = select reassoc i1 %cond, float %op1, float %op2
938  ; CHECK: %f.reassoc = select reassoc i1 %cond, float %op1, float %op2
939  %f.fast = select fast i1 %cond, float %op1, float %op2
940  ; CHECK: %f.fast = select fast i1 %cond, float %op1, float %op2
941  ret void
942}
943
944define void @fastmathflags_vector_select(<2 x i1> %cond, <2 x double> %op1, <2 x double> %op2) {
945  %f.nnan.nsz = select nnan nsz <2 x i1> %cond, <2 x double> %op1, <2 x double> %op2
946  ; CHECK: %f.nnan.nsz = select nnan nsz <2 x i1> %cond, <2 x double> %op1, <2 x double> %op2
947  %f.fast = select fast <2 x i1> %cond, <2 x double> %op1, <2 x double> %op2
948  ; CHECK: %f.fast = select fast <2 x i1> %cond, <2 x double> %op1, <2 x double> %op2
949  ret void
950}
951
952define void @fastmathflags_array_select(i1 %cond, [2 x double] %op1, [2 x double] %op2) {
953  %f.nnan.nsz = select nnan nsz i1 %cond, [2 x double] %op1, [2 x double] %op2
954  ; CHECK: %f.nnan.nsz = select nnan nsz i1 %cond, [2 x double] %op1, [2 x double] %op2
955  %f.fast = select fast i1 %cond, [2 x double] %op1, [2 x double] %op2
956  ; CHECK: %f.fast = select fast i1 %cond, [2 x double] %op1, [2 x double] %op2
957  ret void
958}
959
960define void @fastmathflags_phi(i1 %cond, float %f1, float %f2, double %d1, double %d2, half %h1, half %h2) {
961entry:
962  br i1 %cond, label %L1, label %L2
963L1:
964  br label %exit
965L2:
966  br label %exit
967exit:
968  %p.nnan = phi nnan float [ %f1, %L1 ], [ %f2, %L2 ]
969  ; CHECK: %p.nnan = phi nnan float [ %f1, %L1 ], [ %f2, %L2 ]
970  %p.ninf = phi ninf double [ %d1, %L1 ], [ %d2, %L2 ]
971  ; CHECK: %p.ninf = phi ninf double [ %d1, %L1 ], [ %d2, %L2 ]
972  %p.contract = phi contract half [ %h1, %L1 ], [ %h2, %L2 ]
973  ; CHECK: %p.contract = phi contract half [ %h1, %L1 ], [ %h2, %L2 ]
974  %p.nsz.reassoc = phi reassoc nsz float [ %f1, %L1 ], [ %f2, %L2 ]
975  ; CHECK: %p.nsz.reassoc = phi reassoc nsz float [ %f1, %L1 ], [ %f2, %L2 ]
976  %p.fast = phi fast half [ %h2, %L1 ], [ %h1, %L2 ]
977  ; CHECK: %p.fast = phi fast half [ %h2, %L1 ], [ %h1, %L2 ]
978  ret void
979}
980
981define void @fastmathflags_vector_phi(i1 %cond, <4 x float> %f1, <4 x float> %f2, <2 x double> %d1, <2 x double> %d2, <8 x half> %h1, <8 x half> %h2) {
982entry:
983  br i1 %cond, label %L1, label %L2
984L1:
985  br label %exit
986L2:
987  br label %exit
988exit:
989  %p.nnan = phi nnan <4 x float> [ %f1, %L1 ], [ %f2, %L2 ]
990  ; CHECK: %p.nnan = phi nnan <4 x float> [ %f1, %L1 ], [ %f2, %L2 ]
991  %p.ninf = phi ninf <2 x double> [ %d1, %L1 ], [ %d2, %L2 ]
992  ; CHECK: %p.ninf = phi ninf <2 x double> [ %d1, %L1 ], [ %d2, %L2 ]
993  %p.contract = phi contract <8 x half> [ %h1, %L1 ], [ %h2, %L2 ]
994  ; CHECK: %p.contract = phi contract <8 x half> [ %h1, %L1 ], [ %h2, %L2 ]
995  %p.nsz.reassoc = phi reassoc nsz <4 x float> [ %f1, %L1 ], [ %f2, %L2 ]
996  ; CHECK: %p.nsz.reassoc = phi reassoc nsz <4 x float> [ %f1, %L1 ], [ %f2, %L2 ]
997  %p.fast = phi fast <8 x half> [ %h2, %L1 ], [ %h1, %L2 ]
998  ; CHECK: %p.fast = phi fast <8 x half> [ %h2, %L1 ], [ %h1, %L2 ]
999  ret void
1000}
1001
1002define void @fastmathflags_array_phi(i1 %cond, [4 x float] %f1, [4 x float] %f2, [2 x double] %d1, [2 x double] %d2, [8 x half] %h1, [8 x half] %h2) {
1003entry:
1004  br i1 %cond, label %L1, label %L2
1005L1:
1006  br label %exit
1007L2:
1008  br label %exit
1009exit:
1010  %p.nnan = phi nnan [4 x float] [ %f1, %L1 ], [ %f2, %L2 ]
1011  ; CHECK: %p.nnan = phi nnan [4 x float] [ %f1, %L1 ], [ %f2, %L2 ]
1012  %p.ninf = phi ninf [2 x double] [ %d1, %L1 ], [ %d2, %L2 ]
1013  ; CHECK: %p.ninf = phi ninf [2 x double] [ %d1, %L1 ], [ %d2, %L2 ]
1014  %p.contract = phi contract [8 x half] [ %h1, %L1 ], [ %h2, %L2 ]
1015  ; CHECK: %p.contract = phi contract [8 x half] [ %h1, %L1 ], [ %h2, %L2 ]
1016  %p.nsz.reassoc = phi reassoc nsz [4 x float] [ %f1, %L1 ], [ %f2, %L2 ]
1017  ; CHECK: %p.nsz.reassoc = phi reassoc nsz [4 x float] [ %f1, %L1 ], [ %f2, %L2 ]
1018  %p.fast = phi fast [8 x half] [ %h2, %L1 ], [ %h1, %L2 ]
1019  ; CHECK: %p.fast = phi fast [8 x half] [ %h2, %L1 ], [ %h1, %L2 ]
1020  ret void
1021}
1022
1023; Check various fast math flags and floating-point types on calls.
1024
1025declare float @fmf_f32()
1026declare double @fmf_f64()
1027declare <4 x double> @fmf_v4f64()
1028
1029; CHECK-LABEL: fastMathFlagsForCalls(
1030define void @fastMathFlagsForCalls(float %f, double %d1, <4 x double> %d2) {
1031  %call.fast = call fast float @fmf_f32()
1032  ; CHECK: %call.fast = call fast float @fmf_f32()
1033
1034  ; Throw in some other attributes to make sure those stay in the right places.
1035
1036  %call.nsz.arcp = notail call nsz arcp double @fmf_f64()
1037  ; CHECK: %call.nsz.arcp = notail call nsz arcp double @fmf_f64()
1038
1039  %call.nnan.ninf = tail call nnan ninf fastcc <4 x double> @fmf_v4f64()
1040  ; CHECK: %call.nnan.ninf = tail call nnan ninf fastcc <4 x double> @fmf_v4f64()
1041
1042  ret void
1043}
1044
1045declare [2 x float] @fmf_a2f32()
1046declare [2 x double] @fmf_a2f64()
1047declare [2 x <4 x double>] @fmf_a2v4f64()
1048
1049; CHECK-LABEL: fastMathFlagsForArrayCalls(
1050define void @fastMathFlagsForArrayCalls([2 x float] %f, [2 x double] %d1, [2 x <4 x double>] %d2) {
1051  %call.fast = call fast [2 x float] @fmf_a2f32()
1052  ; CHECK: %call.fast = call fast [2 x float] @fmf_a2f32()
1053
1054  ; Throw in some other attributes to make sure those stay in the right places.
1055
1056  %call.nsz.arcp = notail call nsz arcp [2 x double] @fmf_a2f64()
1057  ; CHECK: %call.nsz.arcp = notail call nsz arcp [2 x double] @fmf_a2f64()
1058
1059  %call.nnan.ninf = tail call nnan ninf fastcc [2 x <4 x double>] @fmf_a2v4f64()
1060  ; CHECK: %call.nnan.ninf = tail call nnan ninf fastcc [2 x <4 x double>] @fmf_a2v4f64()
1061
1062  ret void
1063}
1064
1065;; Type System
1066%opaquety = type opaque
1067define void @typesystem() {
1068  %p0 = bitcast i8* null to i32 (i32)*
1069  ; CHECK: %p0 = bitcast i8* null to i32 (i32)*
1070  %p1 = bitcast i8* null to void (i8*)*
1071  ; CHECK: %p1 = bitcast i8* null to void (i8*)*
1072  %p2 = bitcast i8* null to i32 (i8*, ...)*
1073  ; CHECK: %p2 = bitcast i8* null to i32 (i8*, ...)*
1074  %p3 = bitcast i8* null to { i32, i8 } (i8*, ...)*
1075  ; CHECK: %p3 = bitcast i8* null to { i32, i8 } (i8*, ...)*
1076  %p4 = bitcast i8* null to <{ i32, i8 }> (i8*, ...)*
1077  ; CHECK: %p4 = bitcast i8* null to <{ i32, i8 }> (i8*, ...)*
1078  %p5 = bitcast i8* null to <{ i32, i8 }> (<{ i8*, i64 }>*, ...)*
1079  ; CHECK: %p5 = bitcast i8* null to <{ i32, i8 }> (<{ i8*, i64 }>*, ...)*
1080
1081  %t0 = alloca i1942652
1082  ; CHECK: %t0 = alloca i1942652
1083  %t1 = alloca half
1084  ; CHECK: %t1 = alloca half
1085  %t2 = alloca float
1086  ; CHECK: %t2 = alloca float
1087  %t3 = alloca double
1088  ; CHECK: %t3 = alloca double
1089  %t4 = alloca fp128
1090  ; CHECK: %t4 = alloca fp128
1091  %t5 = alloca x86_fp80
1092  ; CHECK: %t5 = alloca x86_fp80
1093  %t6 = alloca ppc_fp128
1094  ; CHECK: %t6 = alloca ppc_fp128
1095  %t7 = alloca x86_mmx
1096  ; CHECK: %t7 = alloca x86_mmx
1097  %t8 = alloca %opaquety*
1098  ; CHECK: %t8 = alloca %opaquety*
1099  %t9 = alloca <4 x i32>
1100  ; CHECK: %t9 = alloca <4 x i32>
1101  %t10 = alloca <vscale x 4 x i32>
1102  ; CHECK: %t10 = alloca <vscale x 4 x i32>
1103
1104  ret void
1105}
1106
1107declare void @llvm.token(token)
1108; CHECK: declare void @llvm.token(token)
1109
1110;; Inline Assembler Expressions
1111define void @inlineasm(i32 %arg) {
1112  call i32 asm "bswap $0", "=r,r"(i32 %arg)
1113  ; CHECK: call i32 asm "bswap $0", "=r,r"(i32 %arg)
1114  call i32 asm sideeffect "blt $1, $2, $3", "=r,r,rm"(i32 %arg, i32 %arg)
1115  ; CHECK: call i32 asm sideeffect "blt $1, $2, $3", "=r,r,rm"(i32 %arg, i32 %arg)
1116  ret void
1117}
1118
1119;; Instructions
1120
1121; Instructions -- Terminators
1122define void @instructions.terminators(i8 %val) personality i32 -10 {
1123  br i1 false, label %iftrue, label %iffalse
1124  ; CHECK: br i1 false, label %iftrue, label %iffalse
1125  br label %iftrue
1126  ; CHECK: br label %iftrue
1127iftrue:
1128  ret void
1129  ; CHECK: ret void
1130iffalse:
1131
1132  switch i8 %val, label %defaultdest [
1133  ; CHECK: switch i8 %val, label %defaultdest [
1134         i8 0, label %defaultdest.0
1135         ; CHECK: i8 0, label %defaultdest.0
1136         i8 1, label %defaultdest.1
1137         ; CHECK: i8 1, label %defaultdest.1
1138         i8 2, label %defaultdest.2
1139         ; CHECK: i8 2, label %defaultdest.2
1140  ]
1141  ; CHECK: ]
1142defaultdest:
1143  ret void
1144defaultdest.0:
1145  ret void
1146defaultdest.1:
1147  ret void
1148defaultdest.2:
1149
1150  indirectbr i8* blockaddress(@instructions.terminators, %defaultdest.2), [label %defaultdest.2]
1151  ; CHECK: indirectbr i8* blockaddress(@instructions.terminators, %defaultdest.2), [label %defaultdest.2]
1152  indirectbr i8* blockaddress(@instructions.terminators, %defaultdest.2), [label %defaultdest.2, label %defaultdest.2]
1153  ; CHECK: indirectbr i8* blockaddress(@instructions.terminators, %defaultdest.2), [label %defaultdest.2, label %defaultdest.2]
1154
1155  invoke fastcc void @f.fastcc()
1156  ; CHECK: invoke fastcc void @f.fastcc()
1157         to label %defaultdest unwind label %exc
1158         ; CHECK: to label %defaultdest unwind label %exc
1159exc:
1160  %cleanup = landingpad i32 cleanup
1161
1162  resume i32 undef
1163  ; CHECK: resume i32 undef
1164  resume i32 poison
1165  ; CHECK: resume i32 poison
1166  unreachable
1167  ; CHECK: unreachable
1168
1169  ret void
1170}
1171
1172define i32 @instructions.win_eh.1() personality i32 -3 {
1173entry:
1174  %arg1 = alloca i32
1175  %arg2 = alloca i32
1176  invoke void @f.ccc() to label %normal unwind label %catchswitch1
1177  invoke void @f.ccc() to label %normal unwind label %catchswitch2
1178  invoke void @f.ccc() to label %normal unwind label %catchswitch3
1179
1180catchswitch1:
1181  %cs1 = catchswitch within none [label %catchpad1] unwind to caller
1182
1183catchpad1:
1184  catchpad within %cs1 []
1185  br label %normal
1186  ; CHECK: catchpad within %cs1 []
1187  ; CHECK-NEXT: br label %normal
1188
1189catchswitch2:
1190  %cs2 = catchswitch within none [label %catchpad2] unwind to caller
1191
1192catchpad2:
1193  catchpad within %cs2 [i32* %arg1]
1194  br label %normal
1195  ; CHECK: catchpad within %cs2 [i32* %arg1]
1196  ; CHECK-NEXT: br label %normal
1197
1198catchswitch3:
1199  %cs3 = catchswitch within none [label %catchpad3] unwind label %cleanuppad1
1200
1201catchpad3:
1202  catchpad within %cs3 [i32* %arg1, i32* %arg2]
1203  br label %normal
1204  ; CHECK: catchpad within %cs3 [i32* %arg1, i32* %arg2]
1205  ; CHECK-NEXT: br label %normal
1206
1207cleanuppad1:
1208  %clean.1 = cleanuppad within none []
1209  unreachable
1210  ; CHECK: %clean.1 = cleanuppad within none []
1211  ; CHECK-NEXT: unreachable
1212
1213normal:
1214  ret i32 0
1215}
1216;
1217define i32 @instructions.win_eh.2() personality i32 -4 {
1218entry:
1219  invoke void @f.ccc() to label %invoke.cont unwind label %catchswitch
1220
1221invoke.cont:
1222  invoke void @f.ccc() to label %continue unwind label %cleanup
1223
1224cleanup:
1225  %clean = cleanuppad within none []
1226  ; CHECK: %clean = cleanuppad within none []
1227  cleanupret from %clean unwind to caller
1228  ; CHECK: cleanupret from %clean unwind to caller
1229
1230catchswitch:
1231  %cs = catchswitch within none [label %catchpad] unwind label %terminate
1232
1233catchpad:
1234  %catch = catchpad within %cs []
1235  br label %body
1236  ; CHECK: %catch = catchpad within %cs []
1237  ; CHECK-NEXT: br label %body
1238
1239body:
1240  invoke void @f.ccc() [ "funclet"(token %catch) ]
1241    to label %continue unwind label %terminate.inner
1242  catchret from %catch to label %return
1243  ; CHECK: catchret from %catch to label %return
1244
1245return:
1246  ret i32 0
1247
1248terminate.inner:
1249  cleanuppad within %catch []
1250  unreachable
1251  ; CHECK: cleanuppad within %catch []
1252  ; CHECK-NEXT: unreachable
1253
1254terminate:
1255  cleanuppad within none []
1256  unreachable
1257  ; CHECK: cleanuppad within none []
1258  ; CHECK-NEXT: unreachable
1259
1260continue:
1261  ret i32 0
1262}
1263
1264; Instructions -- Unary Operations
1265define void @instructions.unops(double %op1) {
1266  fneg double %op1
1267  ; CHECK: fneg double %op1
1268  ret void
1269}
1270
1271; Instructions -- Binary Operations
1272define void @instructions.binops(i8 %op1, i8 %op2) {
1273  ; nuw x nsw
1274  add i8 %op1, %op2
1275  ; CHECK: add i8 %op1, %op2
1276  add nuw i8 %op1, %op2
1277  ; CHECK: add nuw i8 %op1, %op2
1278  add nsw i8 %op1, %op2
1279  ; CHECK: add nsw i8 %op1, %op2
1280  add nuw nsw i8 %op1, %op2
1281  ; CHECK: add nuw nsw i8 %op1, %op2
1282  sub i8 %op1, %op2
1283  ; CHECK: sub i8 %op1, %op2
1284  sub nuw i8 %op1, %op2
1285  ; CHECK: sub nuw i8 %op1, %op2
1286  sub nsw i8 %op1, %op2
1287  ; CHECK: sub nsw i8 %op1, %op2
1288  sub nuw nsw i8 %op1, %op2
1289  ; CHECK: sub nuw nsw i8 %op1, %op2
1290  mul i8 %op1, %op2
1291  ; CHECK: mul i8 %op1, %op2
1292  mul nuw i8 %op1, %op2
1293  ; CHECK: mul nuw i8 %op1, %op2
1294  mul nsw i8 %op1, %op2
1295  ; CHECK: mul nsw i8 %op1, %op2
1296  mul nuw nsw i8 %op1, %op2
1297  ; CHECK: mul nuw nsw i8 %op1, %op2
1298
1299  ; exact
1300  udiv i8 %op1, %op2
1301  ; CHECK: udiv i8 %op1, %op2
1302  udiv exact i8 %op1, %op2
1303  ; CHECK: udiv exact i8 %op1, %op2
1304  sdiv i8 %op1, %op2
1305  ; CHECK: sdiv i8 %op1, %op2
1306  sdiv exact i8 %op1, %op2
1307  ; CHECK: sdiv exact i8 %op1, %op2
1308
1309  ; none
1310  urem i8 %op1, %op2
1311  ; CHECK: urem i8 %op1, %op2
1312  srem i8 %op1, %op2
1313  ; CHECK: srem i8 %op1, %op2
1314
1315  ret void
1316}
1317
1318; Instructions -- Bitwise Binary Operations
1319define void @instructions.bitwise_binops(i8 %op1, i8 %op2) {
1320  ; nuw x nsw
1321  shl i8 %op1, %op2
1322  ; CHECK: shl i8 %op1, %op2
1323  shl nuw i8 %op1, %op2
1324  ; CHECK: shl nuw i8 %op1, %op2
1325  shl nsw i8 %op1, %op2
1326  ; CHECK: shl nsw i8 %op1, %op2
1327  shl nuw nsw i8 %op1, %op2
1328  ; CHECK: shl nuw nsw i8 %op1, %op2
1329
1330  ; exact
1331  lshr i8 %op1, %op2
1332  ; CHECK: lshr i8 %op1, %op2
1333  lshr exact i8 %op1, %op2
1334  ; CHECK: lshr exact i8 %op1, %op2
1335  ashr i8 %op1, %op2
1336  ; CHECK: ashr i8 %op1, %op2
1337  ashr exact i8 %op1, %op2
1338  ; CHECK: ashr exact i8 %op1, %op2
1339
1340  ; none
1341  and i8 %op1, %op2
1342  ; CHECK: and i8 %op1, %op2
1343  or i8 %op1, %op2
1344  ; CHECK: or i8 %op1, %op2
1345  xor i8 %op1, %op2
1346  ; CHECK: xor i8 %op1, %op2
1347
1348  ret void
1349}
1350
1351; Instructions -- Vector Operations
1352define void @instructions.vectorops(<4 x float> %vec, <4 x float> %vec2) {
1353  extractelement <4 x float> %vec, i8 0
1354  ; CHECK: extractelement <4 x float> %vec, i8 0
1355  insertelement <4 x float> %vec, float 3.500000e+00, i8 0
1356  ; CHECK: insertelement <4 x float> %vec, float 3.500000e+00, i8 0
1357  shufflevector <4 x float> %vec, <4 x float> %vec2, <2 x i32> zeroinitializer
1358  ; CHECK: shufflevector <4 x float> %vec, <4 x float> %vec2, <2 x i32> zeroinitializer
1359
1360  ret void
1361}
1362
1363; Instructions -- Aggregate Operations
1364define void @instructions.aggregateops({ i8, i32 } %up, <{ i8, i32 }> %p,
1365                                       [3 x i8] %arr, { i8, { i32 }} %n,
1366                                       <2 x i8*> %pvec, <2 x i64> %offsets) {
1367  extractvalue { i8, i32 } %up, 0
1368  ; CHECK: extractvalue { i8, i32 } %up, 0
1369  extractvalue <{ i8, i32 }> %p, 1
1370  ; CHECK: extractvalue <{ i8, i32 }> %p, 1
1371  extractvalue [3 x i8] %arr, 2
1372  ; CHECK: extractvalue [3 x i8] %arr, 2
1373  extractvalue { i8, { i32 } } %n, 1, 0
1374  ; CHECK: extractvalue { i8, { i32 } } %n, 1, 0
1375
1376  insertvalue { i8, i32 } %up, i8 1, 0
1377  ; CHECK: insertvalue { i8, i32 } %up, i8 1, 0
1378  insertvalue <{ i8, i32 }> %p, i32 2, 1
1379  ; CHECK: insertvalue <{ i8, i32 }> %p, i32 2, 1
1380  insertvalue [3 x i8] %arr, i8 0, 0
1381  ; CHECK: insertvalue [3 x i8] %arr, i8 0, 0
1382  insertvalue { i8, { i32 } } %n, i32 0, 1, 0
1383  ; CHECK: insertvalue { i8, { i32 } } %n, i32 0, 1, 0
1384
1385  %up.ptr = alloca { i8, i32 }
1386  %p.ptr = alloca <{ i8, i32 }>
1387  %arr.ptr = alloca [3 x i8]
1388  %n.ptr = alloca { i8, { i32 } }
1389
1390  getelementptr { i8, i32 }, { i8, i32 }* %up.ptr, i8 0
1391  ; CHECK: getelementptr { i8, i32 }, { i8, i32 }* %up.ptr, i8 0
1392  getelementptr <{ i8, i32 }>, <{ i8, i32 }>* %p.ptr, i8 1
1393  ; CHECK: getelementptr <{ i8, i32 }>, <{ i8, i32 }>* %p.ptr, i8 1
1394  getelementptr [3 x i8], [3 x i8]* %arr.ptr, i8 2
1395  ; CHECK: getelementptr [3 x i8], [3 x i8]* %arr.ptr, i8 2
1396  getelementptr { i8, { i32 } }, { i8, { i32 } }* %n.ptr, i32 0, i32 1
1397  ; CHECK: getelementptr { i8, { i32 } }, { i8, { i32 } }* %n.ptr, i32 0, i32 1
1398  getelementptr inbounds { i8, { i32 } }, { i8, { i32 } }* %n.ptr, i32 1, i32 0
1399  ; CHECK: getelementptr inbounds { i8, { i32 } }, { i8, { i32 } }* %n.ptr, i32 1, i32 0
1400  getelementptr i8, <2 x i8*> %pvec, <2 x i64> %offsets
1401  ; CHECK: getelementptr i8, <2 x i8*> %pvec, <2 x i64> %offsets
1402
1403  ret void
1404}
1405
1406; Instructions -- Memory Access and Addressing Operations
1407!7 = !{i32 1}
1408!8 = !{}
1409!9 = !{i64 4}
1410define void @instructions.memops(i32** %base) {
1411  alloca i32, i8 4, align 4
1412  ; CHECK: alloca i32, i8 4, align 4
1413  alloca inalloca i32, i8 4, align 4
1414  ; CHECK: alloca inalloca i32, i8 4, align 4
1415
1416  load i32*, i32** %base, align 8, !invariant.load !7, !nontemporal !8, !nonnull !7, !dereferenceable !9, !dereferenceable_or_null !9
1417  ; CHECK: load i32*, i32** %base, align 8, !invariant.load !7, !nontemporal !8, !nonnull !7, !dereferenceable !9, !dereferenceable_or_null !9
1418  load volatile i32*, i32** %base, align 8, !invariant.load !7, !nontemporal !8, !nonnull !7, !dereferenceable !9, !dereferenceable_or_null !9
1419  ; CHECK: load volatile i32*, i32** %base, align 8, !invariant.load !7, !nontemporal !8, !nonnull !7, !dereferenceable !9, !dereferenceable_or_null !9
1420
1421  store i32* null, i32** %base, align 4, !nontemporal !8
1422  ; CHECK: store i32* null, i32** %base, align 4, !nontemporal !8
1423  store volatile i32* null, i32** %base, align 4, !nontemporal !8
1424  ; CHECK: store volatile i32* null, i32** %base, align 4, !nontemporal !8
1425
1426  ret void
1427}
1428
1429; Instructions -- Conversion Operations
1430define void @instructions.conversions() {
1431  trunc i32 -1 to i1
1432  ; CHECK: trunc i32 -1 to i1
1433  zext i32 -1 to i64
1434  ; CHECK: zext i32 -1 to i64
1435  sext i32 -1 to i64
1436  ; CHECK: sext i32 -1 to i64
1437  fptrunc float undef to half
1438  ; CHECK: fptrunc float undef to half
1439  fpext half undef to float
1440  ; CHECK: fpext half undef to float
1441  fptoui float undef to i32
1442  ; CHECK: fptoui float undef to i32
1443  fptosi float undef to i32
1444  ; CHECK: fptosi float undef to i32
1445  fptrunc float poison to half
1446  ; CHECK: fptrunc float poison to half
1447  fpext half poison to float
1448  ; CHECK: fpext half poison to float
1449  fptoui float poison to i32
1450  ; CHECK: fptoui float poison to i32
1451  fptosi float poison to i32
1452  ; CHECK: fptosi float poison to i32
1453  uitofp i32 1 to float
1454  ; CHECK: uitofp i32 1 to float
1455  sitofp i32 -1 to float
1456  ; CHECK: sitofp i32 -1 to float
1457  ptrtoint i8* null to i64
1458  ; CHECK: ptrtoint i8* null to i64
1459  inttoptr i64 0 to i8*
1460  ; CHECK: inttoptr i64 0 to i8*
1461  bitcast i32 0 to i32
1462  ; CHECK: bitcast i32 0 to i32
1463  addrspacecast i32* null to i32 addrspace(1)*
1464  ; CHECK: addrspacecast i32* null to i32 addrspace(1)*
1465
1466  ret void
1467}
1468
1469; Instructions -- Other Operations
1470define void @instructions.other(i32 %op1, i32 %op2, half %fop1, half %fop2, <2 x i32> %vop, i8* %pop) {
1471entry:
1472  icmp eq  i32 %op1, %op2
1473  ; CHECK: icmp eq  i32 %op1, %op2
1474  icmp ne  i32 %op1, %op2
1475  ; CHECK: icmp ne  i32 %op1, %op2
1476  icmp ugt i32 %op1, %op2
1477  ; CHECK: icmp ugt i32 %op1, %op2
1478  icmp uge i32 %op1, %op2
1479  ; CHECK: icmp uge i32 %op1, %op2
1480  icmp ult i32 %op1, %op2
1481  ; CHECK: icmp ult i32 %op1, %op2
1482  icmp ule i32 %op1, %op2
1483  ; CHECK: icmp ule i32 %op1, %op2
1484  icmp sgt i32 %op1, %op2
1485  ; CHECK: icmp sgt i32 %op1, %op2
1486  icmp sge i32 %op1, %op2
1487  ; CHECK: icmp sge i32 %op1, %op2
1488  icmp slt i32 %op1, %op2
1489  ; CHECK: icmp slt i32 %op1, %op2
1490  icmp sle i32 %op1, %op2
1491  ; CHECK: icmp sle i32 %op1, %op2
1492
1493  fcmp false half %fop1, %fop2
1494  ; CHECK: fcmp false half %fop1, %fop2
1495  fcmp oeq   half %fop1, %fop2
1496  ; CHECK: fcmp oeq   half %fop1, %fop2
1497  fcmp ogt   half %fop1, %fop2
1498  ; CHECK: fcmp ogt   half %fop1, %fop2
1499  fcmp oge   half %fop1, %fop2
1500  ; CHECK: fcmp oge   half %fop1, %fop2
1501  fcmp olt   half %fop1, %fop2
1502  ; CHECK: fcmp olt   half %fop1, %fop2
1503  fcmp ole   half %fop1, %fop2
1504  ; CHECK: fcmp ole   half %fop1, %fop2
1505  fcmp one   half %fop1, %fop2
1506  ; CHECK: fcmp one   half %fop1, %fop2
1507  fcmp ord   half %fop1, %fop2
1508  ; CHECK: fcmp ord   half %fop1, %fop2
1509  fcmp ueq   half %fop1, %fop2
1510  ; CHECK: fcmp ueq   half %fop1, %fop2
1511  fcmp ugt   half %fop1, %fop2
1512  ; CHECK: fcmp ugt   half %fop1, %fop2
1513  fcmp uge   half %fop1, %fop2
1514  ; CHECK: fcmp uge   half %fop1, %fop2
1515  fcmp ult   half %fop1, %fop2
1516  ; CHECK: fcmp ult   half %fop1, %fop2
1517  fcmp ule   half %fop1, %fop2
1518  ; CHECK: fcmp ule   half %fop1, %fop2
1519  fcmp une   half %fop1, %fop2
1520  ; CHECK: fcmp une   half %fop1, %fop2
1521  fcmp uno   half %fop1, %fop2
1522  ; CHECK: fcmp uno   half %fop1, %fop2
1523  fcmp true  half %fop1, %fop2
1524  ; CHECK: fcmp true  half %fop1, %fop2
1525
1526  br label %exit
1527L1:
1528  %v1 = add i32 %op1, %op2
1529  br label %exit
1530L2:
1531  %v2 = add i32 %op1, %op2
1532  br label %exit
1533exit:
1534  phi i32 [ %v1, %L1 ], [ %v2, %L2 ], [ %op1, %entry ]
1535  ; CHECK: phi i32 [ %v1, %L1 ], [ %v2, %L2 ], [ %op1, %entry ]
1536
1537  select i1 true, i32 0, i32 1
1538  ; CHECK: select i1 true, i32 0, i32 1
1539  select <2 x i1> <i1 true, i1 false>, <2 x i8> <i8 2, i8 3>, <2 x i8> <i8 3, i8 2>
1540  ; CHECK: select <2 x i1> <i1 true, i1 false>, <2 x i8> <i8 2, i8 3>, <2 x i8> <i8 3, i8 2>
1541
1542  call void @f.nobuiltin() builtin
1543  ; CHECK: call void @f.nobuiltin() #50
1544
1545  call fastcc noalias i32* @f.noalias() noinline
1546  ; CHECK: call fastcc noalias i32* @f.noalias() #12
1547  tail call ghccc nonnull i32* @f.nonnull() minsize
1548  ; CHECK: tail call ghccc nonnull i32* @f.nonnull() #7
1549
1550  freeze i32 %op1
1551  ; CHECK: freeze i32 %op1
1552  freeze i32 10
1553  ; CHECK: freeze i32 10
1554  freeze half %fop1
1555  ; CHECK: freeze half %fop1
1556  freeze <2 x i32> %vop
1557  ; CHECK: freeze <2 x i32> %vop
1558  freeze i8* %pop
1559  ; CHECK: freeze i8* %pop
1560  ret void
1561}
1562
1563define void @instructions.call_musttail(i8* inalloca(i8) %val) {
1564  musttail call void @f.param.inalloca(i8* inalloca(i8) %val)
1565  ; CHECK: musttail call void @f.param.inalloca(i8* inalloca(i8) %val)
1566
1567  ret void
1568}
1569
1570define void @instructions.call_notail() {
1571  notail call void @f1()
1572  ; CHECK: notail call void @f1()
1573
1574  ret void
1575}
1576
1577define void @instructions.landingpad() personality i32 -2 {
1578  invoke void @llvm.donothing() to label %proceed unwind label %catch1
1579  invoke void @llvm.donothing() to label %proceed unwind label %catch2
1580  invoke void @llvm.donothing() to label %proceed unwind label %catch3
1581  invoke void @llvm.donothing() to label %proceed unwind label %catch4
1582
1583catch1:
1584  landingpad i32
1585  ; CHECK: landingpad i32
1586             cleanup
1587             ; CHECK: cleanup
1588  br label %proceed
1589
1590catch2:
1591  landingpad i32
1592  ; CHECK: landingpad i32
1593             cleanup
1594             ; CHECK: cleanup
1595             catch i32* null
1596             ; CHECK: catch i32* null
1597  br label %proceed
1598
1599catch3:
1600  landingpad i32
1601  ; CHECK: landingpad i32
1602             cleanup
1603             ; CHECK: cleanup
1604             catch i32* null
1605             ; CHECK: catch i32* null
1606             catch i32* null
1607             ; CHECK: catch i32* null
1608  br label %proceed
1609
1610catch4:
1611  landingpad i32
1612  ; CHECK: landingpad i32
1613             filter [2 x i32] zeroinitializer
1614             ; CHECK: filter [2 x i32] zeroinitializer
1615  br label %proceed
1616
1617proceed:
1618  ret void
1619}
1620
1621;; Intrinsic Functions
1622
1623; Intrinsic Functions -- Variable Argument Handling
1624declare void @llvm.va_start(i8*)
1625declare void @llvm.va_copy(i8*, i8*)
1626declare void @llvm.va_end(i8*)
1627define void @instructions.va_arg(i8* %v, ...) {
1628  %ap = alloca i8*
1629  %ap2 = bitcast i8** %ap to i8*
1630
1631  call void @llvm.va_start(i8* %ap2)
1632  ; CHECK: call void @llvm.va_start(i8* %ap2)
1633
1634  va_arg i8* %ap2, i32
1635  ; CHECK: va_arg i8* %ap2, i32
1636
1637  call void @llvm.va_copy(i8* %v, i8* %ap2)
1638  ; CHECK: call void @llvm.va_copy(i8* %v, i8* %ap2)
1639
1640  call void @llvm.va_end(i8* %ap2)
1641  ; CHECK: call void @llvm.va_end(i8* %ap2)
1642
1643  ret void
1644}
1645
1646; Intrinsic Functions -- Accurate Garbage Collection
1647declare void @llvm.gcroot(i8**, i8*)
1648declare i8* @llvm.gcread(i8*, i8**)
1649declare void @llvm.gcwrite(i8*, i8*, i8**)
1650define void @intrinsics.gc() gc "shadow-stack" {
1651  %ptrloc = alloca i8*
1652  call void @llvm.gcroot(i8** %ptrloc, i8* null)
1653  ; CHECK: call void @llvm.gcroot(i8** %ptrloc, i8* null)
1654
1655  call i8* @llvm.gcread(i8* null, i8** %ptrloc)
1656  ; CHECK: call i8* @llvm.gcread(i8* null, i8** %ptrloc)
1657
1658  %ref = alloca i8
1659  call void @llvm.gcwrite(i8* %ref, i8* null, i8** %ptrloc)
1660  ; CHECK: call void @llvm.gcwrite(i8* %ref, i8* null, i8** %ptrloc)
1661
1662  ret void
1663}
1664
1665; Intrinsic Functions -- Code Generation
1666declare i8* @llvm.returnaddress(i32)
1667declare i8* @llvm.frameaddress(i32)
1668declare i32 @llvm.read_register.i32(metadata)
1669declare i64 @llvm.read_register.i64(metadata)
1670declare void @llvm.write_register.i32(metadata, i32)
1671declare void @llvm.write_register.i64(metadata, i64)
1672declare i8* @llvm.stacksave()
1673declare void @llvm.stackrestore(i8*)
1674declare void @llvm.prefetch.p0i8(i8*, i32, i32, i32)
1675declare void @llvm.pcmarker(i32)
1676declare i64 @llvm.readcyclecounter()
1677declare void @llvm.clear_cache(i8*, i8*)
1678declare void @llvm.instrprof_increment(i8*, i64, i32, i32)
1679
1680!10 = !{!"rax"}
1681define void @intrinsics.codegen() {
1682  call i8* @llvm.returnaddress(i32 1)
1683  ; CHECK: call i8* @llvm.returnaddress(i32 1)
1684  call i8* @llvm.frameaddress(i32 1)
1685  ; CHECK: call i8* @llvm.frameaddress.p0i8(i32 1)
1686
1687  call i32 @llvm.read_register.i32(metadata !10)
1688  ; CHECK: call i32 @llvm.read_register.i32(metadata !10)
1689  call i64 @llvm.read_register.i64(metadata !10)
1690  ; CHECK: call i64 @llvm.read_register.i64(metadata !10)
1691  call void @llvm.write_register.i32(metadata !10, i32 0)
1692  ; CHECK: call void @llvm.write_register.i32(metadata !10, i32 0)
1693  call void @llvm.write_register.i64(metadata !10, i64 0)
1694  ; CHECK: call void @llvm.write_register.i64(metadata !10, i64 0)
1695
1696  %stack = call i8* @llvm.stacksave()
1697  ; CHECK: %stack = call i8* @llvm.stacksave()
1698  call void @llvm.stackrestore(i8* %stack)
1699  ; CHECK: call void @llvm.stackrestore(i8* %stack)
1700
1701  call void @llvm.prefetch.p0i8(i8* %stack, i32 0, i32 3, i32 0)
1702  ; CHECK: call void @llvm.prefetch.p0i8(i8* %stack, i32 0, i32 3, i32 0)
1703
1704  call void @llvm.pcmarker(i32 1)
1705  ; CHECK: call void @llvm.pcmarker(i32 1)
1706
1707  call i64 @llvm.readcyclecounter()
1708  ; CHECK: call i64 @llvm.readcyclecounter()
1709
1710  call void @llvm.clear_cache(i8* null, i8* null)
1711  ; CHECK: call void @llvm.clear_cache(i8* null, i8* null)
1712
1713  call void @llvm.instrprof_increment(i8* null, i64 0, i32 0, i32 0)
1714  ; CHECK: call void @llvm.instrprof_increment(i8* null, i64 0, i32 0, i32 0)
1715
1716  ret void
1717}
1718
1719declare void @llvm.localescape(...)
1720declare i8* @llvm.localrecover(i8* %func, i8* %fp, i32 %idx)
1721define void @intrinsics.localescape() {
1722  %static.alloca = alloca i32
1723  call void (...) @llvm.localescape(i32* %static.alloca)
1724  ; CHECK: call void (...) @llvm.localescape(i32* %static.alloca)
1725
1726  call void @intrinsics.localrecover()
1727
1728  ret void
1729}
1730define void @intrinsics.localrecover() {
1731  %func = bitcast void ()* @intrinsics.localescape to i8*
1732  %fp = call i8* @llvm.frameaddress(i32 1)
1733  call i8* @llvm.localrecover(i8* %func, i8* %fp, i32 0)
1734  ; CHECK: call i8* @llvm.localrecover(i8* %func, i8* %fp, i32 0)
1735
1736  ret void
1737}
1738
1739; We need this function to provide `uses' for some metadata tests.
1740define void @misc.metadata() {
1741  call void @f1(), !srcloc !11
1742  call void @f1(), !srcloc !12
1743  call void @f1(), !srcloc !13
1744  call void @f1(), !srcloc !14
1745  ret void
1746}
1747
1748declare void @op_bundle_callee_0()
1749declare void @op_bundle_callee_1(i32,i32)
1750
1751define void @call_with_operand_bundle0(i32* %ptr) {
1752; CHECK-LABEL: call_with_operand_bundle0(
1753 entry:
1754  %l = load i32, i32* %ptr
1755  %x = add i32 42, 1
1756  call void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "bar"(float  0.000000e+00, i64 100, i32 %l) ]
1757; CHECK: call void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "bar"(float  0.000000e+00, i64 100, i32 %l) ]
1758  ret void
1759}
1760
1761define void @call_with_operand_bundle1(i32* %ptr) {
1762; CHECK-LABEL: call_with_operand_bundle1(
1763 entry:
1764  %l = load i32, i32* %ptr
1765  %x = add i32 42, 1
1766
1767  call void @op_bundle_callee_0()
1768  call void @op_bundle_callee_0() [ "foo"() ]
1769  call void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "bar"(float  0.000000e+00, i64 100, i32 %l) ]
1770; CHECK: @op_bundle_callee_0(){{$}}
1771; CHECK-NEXT: call void @op_bundle_callee_0() [ "foo"() ]
1772; CHECK-NEXT: call void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "bar"(float  0.000000e+00, i64 100, i32 %l) ]
1773  ret void
1774}
1775
1776define void @call_with_operand_bundle2(i32* %ptr) {
1777; CHECK-LABEL: call_with_operand_bundle2(
1778 entry:
1779  call void @op_bundle_callee_0() [ "foo"() ]
1780; CHECK: call void @op_bundle_callee_0() [ "foo"() ]
1781  ret void
1782}
1783
1784define void @call_with_operand_bundle3(i32* %ptr) {
1785; CHECK-LABEL: call_with_operand_bundle3(
1786 entry:
1787  %l = load i32, i32* %ptr
1788  %x = add i32 42, 1
1789  call void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1790; CHECK: call void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1791  ret void
1792}
1793
1794define void @call_with_operand_bundle4(i32* %ptr) {
1795; CHECK-LABEL: call_with_operand_bundle4(
1796 entry:
1797  %l = load i32, i32* %ptr
1798  %x = add i32 42, 1
1799  call void @op_bundle_callee_1(i32 10, i32 %x) [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1800; CHECK: call void @op_bundle_callee_1(i32 10, i32 %x) [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1801  ret void
1802}
1803
1804; Invoke versions of the above tests:
1805
1806
1807define void @invoke_with_operand_bundle0(i32* %ptr) personality i8 3 {
1808; CHECK-LABEL: @invoke_with_operand_bundle0(
1809 entry:
1810  %l = load i32, i32* %ptr
1811  %x = add i32 42, 1
1812  invoke void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "bar"(float  0.000000e+00, i64 100, i32 %l) ] to label %normal unwind label %exception
1813; CHECK: invoke void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "bar"(float  0.000000e+00, i64 100, i32 %l) ]
1814
1815exception:
1816  %cleanup = landingpad i8 cleanup
1817  br label %normal
1818normal:
1819  ret void
1820}
1821
1822define void @invoke_with_operand_bundle1(i32* %ptr) personality i8 3 {
1823; CHECK-LABEL: @invoke_with_operand_bundle1(
1824 entry:
1825  %l = load i32, i32* %ptr
1826  %x = add i32 42, 1
1827
1828  invoke void @op_bundle_callee_0() to label %normal unwind label %exception
1829; CHECK: invoke void @op_bundle_callee_0(){{$}}
1830
1831exception:
1832  %cleanup = landingpad i8 cleanup
1833  br label %normal
1834
1835normal:
1836  invoke void @op_bundle_callee_0() [ "foo"() ] to label %normal1 unwind label %exception1
1837; CHECK: invoke void @op_bundle_callee_0() [ "foo"() ]
1838
1839exception1:
1840  %cleanup1 = landingpad i8 cleanup
1841  br label %normal1
1842
1843normal1:
1844  invoke void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ] to label %normal2 unwind label %exception2
1845; CHECK: invoke void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1846
1847exception2:
1848  %cleanup2 = landingpad i8 cleanup
1849  br label %normal2
1850
1851normal2:
1852  ret void
1853}
1854
1855define void @invoke_with_operand_bundle2(i32* %ptr) personality i8 3 {
1856; CHECK-LABEL: @invoke_with_operand_bundle2(
1857 entry:
1858  invoke void @op_bundle_callee_0() [ "foo"() ] to label %normal unwind label %exception
1859; CHECK: invoke void @op_bundle_callee_0() [ "foo"() ]
1860
1861exception:
1862  %cleanup = landingpad i8 cleanup
1863  br label %normal
1864normal:
1865  ret void
1866}
1867
1868define void @invoke_with_operand_bundle3(i32* %ptr) personality i8 3 {
1869; CHECK-LABEL: @invoke_with_operand_bundle3(
1870 entry:
1871  %l = load i32, i32* %ptr
1872  %x = add i32 42, 1
1873  invoke void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ] to label %normal unwind label %exception
1874; CHECK: invoke void @op_bundle_callee_0() [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1875
1876exception:
1877  %cleanup = landingpad i8 cleanup
1878  br label %normal
1879normal:
1880  ret void
1881}
1882
1883define void @invoke_with_operand_bundle4(i32* %ptr) personality i8 3 {
1884; CHECK-LABEL: @invoke_with_operand_bundle4(
1885 entry:
1886  %l = load i32, i32* %ptr
1887  %x = add i32 42, 1
1888  invoke void @op_bundle_callee_1(i32 10, i32 %x) [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1889        to label %normal unwind label %exception
1890; CHECK: invoke void @op_bundle_callee_1(i32 10, i32 %x) [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1891
1892exception:
1893  %cleanup = landingpad i8 cleanup
1894  br label %normal
1895normal:
1896  ret void
1897}
1898
1899declare void @vaargs_func(...)
1900define void @invoke_with_operand_bundle_vaarg(i32* %ptr) personality i8 3 {
1901; CHECK-LABEL: @invoke_with_operand_bundle_vaarg(
1902 entry:
1903  %l = load i32, i32* %ptr
1904  %x = add i32 42, 1
1905  invoke void (...) @vaargs_func(i32 10, i32 %x) [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1906        to label %normal unwind label %exception
1907; CHECK: invoke void (...) @vaargs_func(i32 10, i32 %x) [ "foo"(i32 42, i64 100, i32 %x), "foo"(i32 42, float  0.000000e+00, i32 %l) ]
1908
1909exception:
1910  %cleanup = landingpad i8 cleanup
1911  br label %normal
1912normal:
1913  ret void
1914}
1915
1916
1917declare void @f.writeonly() writeonly
1918; CHECK: declare void @f.writeonly() #41
1919
1920declare void @f.speculatable() speculatable
1921; CHECK: declare void @f.speculatable() #42
1922
1923;; Constant Expressions
1924
1925define i8** @constexpr() {
1926  ; CHECK: ret i8** getelementptr inbounds ({ [4 x i8*], [4 x i8*] }, { [4 x i8*], [4 x i8*] }* null, i32 0, inrange i32 1, i32 2)
1927  ret i8** getelementptr inbounds ({ [4 x i8*], [4 x i8*] }, { [4 x i8*], [4 x i8*] }* null, i32 0, inrange i32 1, i32 2)
1928}
1929
1930define void @instructions.strictfp() strictfp {
1931  call void @f.strictfp() strictfp
1932  ; CHECK: call void @f.strictfp() #43
1933
1934  ret void
1935}
1936
1937declare void @f.nosanitize_coverage() nosanitize_coverage
1938; CHECK: declare void @f.nosanitize_coverage() #44
1939
1940declare void @f.disable_sanitizer_instrumentation() disable_sanitizer_instrumentation
1941; CHECK: declare void @f.disable_sanitizer_instrumentation() #45
1942
1943; immarg attribute
1944declare void @llvm.test.immarg.intrinsic(i32 immarg)
1945; CHECK: declare void @llvm.test.immarg.intrinsic(i32 immarg)
1946
1947; byval attribute with type
1948%named_type = type [8 x i8]
1949declare void @byval_type(i32* byval(i32) align 2)
1950declare void @byval_type2({ i8, i8* }* byval({ i8, i8* }))
1951declare void @byval_named_type(%named_type* byval(%named_type))
1952; CHECK: declare void @byval_type(i32* byval(i32) align 2)
1953; CHECK: declare void @byval_type2({ i8, i8* }* byval({ i8, i8* }))
1954; CHECK: declare void @byval_named_type([8 x i8]* byval([8 x i8]))
1955
1956declare void @f.allocsize_one(i32) allocsize(0)
1957declare void @f.allocsize_two(i32, i32) allocsize(1, 0)
1958; CHECK: Function Attrs: allocsize(0)
1959; CHECK: declare void @f.allocsize_one(i32)
1960; CHECK: Function Attrs: allocsize(1,0)
1961; CHECK: declare void @f.allocsize_two(i32, i32)
1962
1963declare void @f.nosanitize_bounds() nosanitize_bounds
1964; CHECK: declare void @f.nosanitize_bounds() #48
1965
1966declare void @f.allockind() allockind("alloc,uninitialized")
1967; CHECK: declare void @f.allockind() #49
1968
1969; CHECK: attributes #0 = { alignstack=4 }
1970; CHECK: attributes #1 = { alignstack=8 }
1971; CHECK: attributes #2 = { alwaysinline }
1972; CHECK: attributes #3 = { cold }
1973; CHECK: attributes #4 = { convergent }
1974; CHECK: attributes #5 = { inlinehint }
1975; CHECK: attributes #6 = { jumptable }
1976; CHECK: attributes #7 = { minsize }
1977; CHECK: attributes #8 = { naked }
1978; CHECK: attributes #9 = { nobuiltin }
1979; CHECK: attributes #10 = { noduplicate }
1980; CHECK: attributes #11 = { noimplicitfloat }
1981; CHECK: attributes #12 = { noinline }
1982; CHECK: attributes #13 = { nonlazybind }
1983; CHECK: attributes #14 = { noredzone }
1984; CHECK: attributes #15 = { noreturn }
1985; CHECK: attributes #16 = { nounwind }
1986; CHECK: attributes #17 = { noinline optnone }
1987; CHECK: attributes #18 = { optsize }
1988; CHECK: attributes #19 = { readnone }
1989; CHECK: attributes #20 = { readonly }
1990; CHECK: attributes #21 = { returns_twice }
1991; CHECK: attributes #22 = { safestack }
1992; CHECK: attributes #23 = { sanitize_address }
1993; CHECK: attributes #24 = { sanitize_memory }
1994; CHECK: attributes #25 = { sanitize_thread }
1995; CHECK: attributes #26 = { ssp }
1996; CHECK: attributes #27 = { sspreq }
1997; CHECK: attributes #28 = { sspstrong }
1998; CHECK: attributes #29 = { "thunk" }
1999; CHECK: attributes #30 = { uwtable }
2000; CHECK: attributes #31 = { "cpu"="cortex-a8" }
2001; CHECK: attributes #32 = { norecurse }
2002; CHECK: attributes #33 = { inaccessiblememonly }
2003; CHECK: attributes #34 = { inaccessiblemem_or_argmemonly }
2004; CHECK: attributes #35 = { nocallback nofree nosync nounwind readnone willreturn }
2005; CHECK: attributes #36 = { nocallback nofree nosync nounwind willreturn }
2006; CHECK: attributes #37 = { argmemonly nounwind readonly }
2007; CHECK: attributes #38 = { argmemonly nounwind }
2008; CHECK: attributes #39 = { nounwind readonly }
2009; CHECK: attributes #40 = { inaccessiblemem_or_argmemonly nocallback nofree nosync nounwind willreturn }
2010; CHECK: attributes #41 = { writeonly }
2011; CHECK: attributes #42 = { speculatable }
2012; CHECK: attributes #43 = { strictfp }
2013; CHECK: attributes #44 = { nosanitize_coverage }
2014; CHECK: attributes #45 = { disable_sanitizer_instrumentation }
2015; CHECK: attributes #46 = { allocsize(0) }
2016; CHECK: attributes #47 = { allocsize(1,0) }
2017; CHECK: attributes #48 = { nosanitize_bounds }
2018; CHECK: attributes #49 = { allockind("alloc,uninitialized") }
2019; CHECK: attributes #50 = { builtin }
2020
2021;; Metadata
2022
2023; Metadata -- Module flags
2024!llvm.module.flags = !{!0, !1, !2, !4, !5, !6}
2025; CHECK: !llvm.module.flags = !{!0, !1, !2, !4, !5, !6}
2026
2027!0 = !{i32 1, !"mod1", i32 0}
2028; CHECK: !0 = !{i32 1, !"mod1", i32 0}
2029!1 = !{i32 2, !"mod2", i32 0}
2030; CHECK: !1 = !{i32 2, !"mod2", i32 0}
2031!2 = !{i32 3, !"mod3", !3}
2032; CHECK: !2 = !{i32 3, !"mod3", !3}
2033!3 = !{!"mod6", !0}
2034; CHECK: !3 = !{!"mod6", !0}
2035!4 = !{i32 4, !"mod4", i32 0}
2036; CHECK: !4 = !{i32 4, !"mod4", i32 0}
2037!5 = !{i32 5, !"mod5", !0}
2038; CHECK: !5 = !{i32 5, !"mod5", !0}
2039!6 = !{i32 6, !"mod6", !0}
2040; CHECK: !6 = !{i32 6, !"mod6", !0}
2041
2042; Metadata -- Check `distinct'
2043!11 = distinct !{}
2044; CHECK: !11 = distinct !{}
2045!12 = distinct !{}
2046; CHECK: !12 = distinct !{}
2047!13 = !{!11}
2048; CHECK: !13 = !{!11}
2049!14 = !{!12}
2050; CHECK: !14 = !{!12}
2051