1 // RUN: %clang_cc1 -std=c++14 -triple x86_64-unknown-unknown -fblocks %s -emit-llvm -o - | FileCheck %s -check-prefixes=CHECK,CHECK-O0
2 // RUN: %clang_cc1 -std=c++14 -triple x86_64-unknown-unknown -fblocks -ftrivial-auto-var-init=pattern %s -emit-llvm -o - | FileCheck %s -check-prefixes=CHECK-O0,PATTERN,PATTERN-O0
3 // RUN: %clang_cc1 -std=c++14 -triple x86_64-unknown-unknown -fblocks -ftrivial-auto-var-init=pattern %s -O1 -fno-experimental-new-pass-manager -emit-llvm -o - | FileCheck %s -check-prefixes=CHECK-O1,PATTERN,PATTERN-O1,PATTERN-O1-LEGACY
4 // RUN: %clang_cc1 -std=c++14 -triple x86_64-unknown-unknown -fblocks -ftrivial-auto-var-init=pattern %s -O1 -fexperimental-new-pass-manager -emit-llvm -o - | FileCheck %s -check-prefixes=CHECK-O1,PATTERN,PATTERN-O1,PATTERN-O1-NEWPM
5 // RUN: %clang_cc1 -std=c++14 -triple x86_64-unknown-unknown -fblocks -ftrivial-auto-var-init=zero %s -emit-llvm -o - | FileCheck %s -check-prefixes=CHECK-O0,ZERO,ZERO-O0
6 // RUN: %clang_cc1 -std=c++14 -triple x86_64-unknown-unknown -fblocks -ftrivial-auto-var-init=zero %s -O1 -fno-experimental-new-pass-manager -emit-llvm -o - | FileCheck %s -check-prefixes=CHECK-O1,ZERO,ZERO-O1,ZERO-O1-LEGACY
7 // RUN: %clang_cc1 -std=c++14 -triple x86_64-unknown-unknown -fblocks -ftrivial-auto-var-init=zero %s -O1 -fexperimental-new-pass-manager -emit-llvm -o - | FileCheck %s -check-prefixes=CHECK-O1,ZERO,ZERO-O1,ZERO-O1-NEWPM
8 // RUN: %clang_cc1 -std=c++14 -triple i386-unknown-unknown -fblocks -ftrivial-auto-var-init=pattern %s -emit-llvm -o - | FileCheck %s -check-prefixes=CHECK-O0,PATTERN,PATTERN-O0
9 
10 #pragma clang diagnostic ignored "-Winaccessible-base"
11 
12 #ifdef __x86_64__
13 char inits[] = {"-86/-21846/-1431655766/i64/-6148914691236517206/-6148914691236517206/i128/-113427455640312821154458202477256070486/i64/-6148914691236517206/AA/"};
14 #else
15 char inits[] = {"-1/-1/-1/i32/-1/-1/i32/-1/i32/-1/FF/"};
16 #define __int128 int;
17 #endif
18 // PATTERN: @inits = {{.*}} c"[[I8:[^/]+]]/[[I16:[^/]+]]/[[I32:[^/]+]]/[[ILONGT:[^/]+]]/[[ILONG:[^/]+]]/[[I64:[^/]+]]/[[I128T:[^/]+]]/[[I128:[^/]+]]/[[IPTRT:[^/]+]]/[[IPTR:[^/]+]]/[[IC:[^/]+]]/\00", align 1
19 
20 template<typename T> void used(T &) noexcept;
21 
22 #define TEST_UNINIT(NAME, TYPE)                 \
23   using type_##NAME = TYPE;                     \
24   void test_##NAME##_uninit() {                 \
25     type_##NAME uninit;                         \
26     used(uninit);                               \
27   }
28 
29 // Value initialization on scalars, aggregate initialization on aggregates.
30 #define TEST_BRACES(NAME, TYPE)                 \
31   using type_##NAME = TYPE;                     \
32   void test_##NAME##_braces() {                 \
33     type_##NAME braces = {};                    \
34     used(braces);                               \
35   }
36 
37 #define TEST_CUSTOM(NAME, TYPE, ...)            \
38   using type_##NAME = TYPE;                     \
39   void test_##NAME##_custom() {                 \
40     type_##NAME custom __VA_ARGS__;             \
41     used(custom);                               \
42   }
43 
44 // None of the synthesized globals should contain `undef`.
45 // PATTERN-NOT: undef
46 // ZERO-NOT: undef
47 
48 // PATTERN-O0: @__const.test_empty_uninit.uninit = private unnamed_addr constant %struct.empty { i8 [[I8]] }, align 1
49 // PATTERN-O1-NOT: @__const.test_empty_uninit.uninit
50 struct empty {};
51 // PATTERN-O0: @__const.test_small_uninit.uninit = private unnamed_addr constant %struct.small { i8 [[I8]] }, align 1
52 // PATTERN-O0: @__const.test_small_custom.custom = private unnamed_addr constant %struct.small { i8 42 }, align 1
53 // ZERO-O0: @__const.test_small_custom.custom = private unnamed_addr constant %struct.small { i8 42 }, align 1
54 // PATTERN-O1-NOT: @__const.test_small_uninit.uninit
55 // PATTERN-O1-NOT: @__const.test_small_custom.custom
56 // ZERO-O1-NOT: @__const.test_small_custom.custom
57 struct small { char c; };
58 // PATTERN-O0: @__const.test_smallinit_uninit.uninit = private unnamed_addr constant %struct.smallinit { i8 [[I8]] }, align 1
59 // PATTERN-O0: @__const.test_smallinit_braces.braces = private unnamed_addr constant %struct.smallinit { i8 [[I8]] }, align 1
60 // PATTERN-O0: @__const.test_smallinit_custom.custom = private unnamed_addr constant %struct.smallinit { i8 [[I8]] }, align 1
61 // PATTERN-O1-NOT: @__const.test_smallinit_uninit.uninit
62 // PATTERN-O1-NOT: @__const.test_smallinit_braces.braces
63 // PATTERN-O1-NOT: @__const.test_smallinit_custom.custom
64 struct smallinit { char c = 42; };
65 // PATTERN-O0: @__const.test_smallpartinit_uninit.uninit = private unnamed_addr constant %struct.smallpartinit { i8 [[I8]], i8 [[I8]] }, align 1
66 // PATTERN-O0: @__const.test_smallpartinit_braces.braces = private unnamed_addr constant %struct.smallpartinit { i8 [[I8]], i8 [[I8]] }, align 1
67 // PATTERN-O0: @__const.test_smallpartinit_custom.custom = private unnamed_addr constant %struct.smallpartinit { i8 [[I8]], i8 [[I8]] }, align 1
68 // PATTERN-O1-NOT: @__const.test_smallpartinit_uninit.uninit
69 // PATTERN-O1-NOT: @__const.test_smallpartinit_braces.braces
70 // PATTERN-O1-NOT: @__const.test_smallpartinit_custom.custom
71 struct smallpartinit { char c = 42, d; };
72 // PATTERN-O0: @__const.test_nullinit_uninit.uninit = private unnamed_addr constant %struct.nullinit { i8* inttoptr ([[IPTRT]] [[IPTR]] to i8*) }, align
73 // PATTERN-O0: @__const.test_nullinit_braces.braces = private unnamed_addr constant %struct.nullinit { i8* inttoptr ([[IPTRT]] [[IPTR]] to i8*) }, align
74 // PATTERN-O0: @__const.test_nullinit_custom.custom = private unnamed_addr constant %struct.nullinit { i8* inttoptr ([[IPTRT]] [[IPTR]] to i8*) }, align
75 // PATTERN-O1-NOT: @__const.test_nullinit_uninit.uninit
76 // PATTERN-O1-NOT: @__const.test_nullinit_braces.braces
77 // PATTERN-O1-NOT: @__const.test_nullinit_custom.custom
78 struct nullinit { char* null = nullptr; };
79 // PATTERN-O0: @__const.test_padded_uninit.uninit = private unnamed_addr constant { i8, [3 x i8], i32 } { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i32 [[I32]] }, align 4
80 // PATTERN-O0: @__const.test_padded_custom.custom = private unnamed_addr constant { i8, [3 x i8], i32 } { i8 42, [3 x i8] zeroinitializer, i32 13371337 }, align 4
81 // ZERO-O0: @__const.test_padded_custom.custom = private unnamed_addr constant { i8, [3 x i8], i32 } { i8 42, [3 x i8] zeroinitializer, i32 13371337 }, align 4
82 // PATTERN-O1-NOT: @__const.test_padded_uninit.uninit
83 // PATTERN-O1-NOT: @__const.test_padded_custom.custom
84 // ZERO-O1-NOT: @__const.test_padded_custom.custom
85 struct padded { char c; int i; };
86 // PATTERN-O0: @__const.test_paddednullinit_uninit.uninit = private unnamed_addr constant { i8, [3 x i8], i32 } { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i32 [[I32]] }, align 4
87 // PATTERN-O0: @__const.test_paddednullinit_braces.braces = private unnamed_addr constant { i8, [3 x i8], i32 } { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i32 [[I32]] }, align 4
88 // PATTERN-O0: @__const.test_paddednullinit_custom.custom = private unnamed_addr constant { i8, [3 x i8], i32 } { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i32 [[I32]] }, align 4
89 // PATTERN-O1-NOT: @__const.test_paddednullinit_uninit.uninit
90 // PATTERN-O1-NOT: @__const.test_paddednullinit_braces.braces
91 // PATTERN-O1-NOT: @__const.test_paddednullinit_custom.custom
92 struct paddednullinit { char c = 0; int i = 0; };
93 // PATTERN-O0: @__const.test_paddedpacked_uninit.uninit = private unnamed_addr constant %struct.paddedpacked <{ i8 [[I8]], i32 [[I32]] }>, align 1
94 // PATTERN: @__const.test_paddedpacked_custom.custom = private unnamed_addr constant %struct.paddedpacked <{ i8 42, i32 13371337 }>, align 1
95 // ZERO: @__const.test_paddedpacked_custom.custom = private unnamed_addr constant %struct.paddedpacked <{ i8 42, i32 13371337 }>, align 1
96 struct paddedpacked { char c; int i; } __attribute__((packed));
97 // PATTERN-O0: @__const.test_paddedpackedarray_uninit.uninit = private unnamed_addr constant %struct.paddedpackedarray { [2 x %struct.paddedpacked] [%struct.paddedpacked <{ i8 [[I8]], i32 [[I32]] }>, %struct.paddedpacked <{ i8 [[I8]], i32 [[I32]] }>] }, align 1
98 // PATTERN: @__const.test_paddedpackedarray_custom.custom = private unnamed_addr constant %struct.paddedpackedarray { [2 x %struct.paddedpacked] [%struct.paddedpacked <{ i8 42, i32 13371337 }>, %struct.paddedpacked <{ i8 43, i32 13371338 }>] }, align 1
99 // ZERO: @__const.test_paddedpackedarray_custom.custom = private unnamed_addr constant %struct.paddedpackedarray { [2 x %struct.paddedpacked] [%struct.paddedpacked <{ i8 42, i32 13371337 }>, %struct.paddedpacked <{ i8 43, i32 13371338 }>] }, align 1
100 struct paddedpackedarray { struct paddedpacked p[2]; };
101 // PATTERN-O0: @__const.test_unpackedinpacked_uninit.uninit = private unnamed_addr constant <{ { i8, [3 x i8], i32 }, i8 }> <{ { i8, [3 x i8], i32 } { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i32 [[I32]] }, i8 [[I8]] }>, align 1
102 struct unpackedinpacked { padded a; char b; } __attribute__((packed));
103 // PATTERN-O0: @__const.test_paddednested_uninit.uninit = private unnamed_addr constant { { i8, [3 x i8], i32 }, { i8, [3 x i8], i32 } } { { i8, [3 x i8], i32 } { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i32 [[I32]] }, { i8, [3 x i8], i32 } { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i32 [[I32]] } }, align 4
104 // PATTERN: @__const.test_paddednested_custom.custom = private unnamed_addr constant { { i8, [3 x i8], i32 }, { i8, [3 x i8], i32 } } { { i8, [3 x i8], i32 } { i8 42, [3 x i8] zeroinitializer, i32 13371337 }, { i8, [3 x i8], i32 } { i8 43, [3 x i8] zeroinitializer, i32 13371338 } }, align 4
105 // ZERO: @__const.test_paddednested_custom.custom = private unnamed_addr constant { { i8, [3 x i8], i32 }, { i8, [3 x i8], i32 } } { { i8, [3 x i8], i32 } { i8 42, [3 x i8] zeroinitializer, i32 13371337 }, { i8, [3 x i8], i32 } { i8 43, [3 x i8] zeroinitializer, i32 13371338 } }, align 4
106 struct paddednested { struct padded p1, p2; };
107 // PATTERN-O0: @__const.test_paddedpackednested_uninit.uninit = private unnamed_addr constant %struct.paddedpackednested { %struct.paddedpacked <{ i8 [[I8]], i32 [[I32]] }>, %struct.paddedpacked <{ i8 [[I8]], i32 [[I32]] }> }, align 1
108 // PATTERN: @__const.test_paddedpackednested_custom.custom = private unnamed_addr constant %struct.paddedpackednested { %struct.paddedpacked <{ i8 42, i32 13371337 }>, %struct.paddedpacked <{ i8 43, i32 13371338 }> }, align 1
109 // ZERO: @__const.test_paddedpackednested_custom.custom = private unnamed_addr constant %struct.paddedpackednested { %struct.paddedpacked <{ i8 42, i32 13371337 }>, %struct.paddedpacked <{ i8 43, i32 13371338 }> }, align 1
110 struct paddedpackednested { struct paddedpacked p1, p2; };
111 // PATTERN-O0: @__const.test_bitfield_uninit.uninit = private unnamed_addr constant %struct.bitfield { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]" }, align 4
112 // PATTERN-O0: @__const.test_bitfield_custom.custom = private unnamed_addr constant %struct.bitfield { i8 20, [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]" }, align 4
113 // ZERO-O0: @__const.test_bitfield_custom.custom = private unnamed_addr constant %struct.bitfield { i8 20, [3 x i8] zeroinitializer }, align 4
114 // PATTERN-O1-NOT: @__const.test_bitfield_uninit.uninit
115 // PATTERN-O1-NOT: @__const.test_bitfield_custom.custom
116 // ZERO-O1-NOT: @__const.test_bitfield_custom.custom
117 struct bitfield { int i : 4; int j : 2; };
118 // PATTERN-O0: @__const.test_bitfieldaligned_uninit.uninit = private unnamed_addr constant %struct.bitfieldaligned { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]" }, align 4
119 // PATTERN-O0: @__const.test_bitfieldaligned_custom.custom = private unnamed_addr constant %struct.bitfieldaligned { i8 4, [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i8 1, [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]" }, align 4
120 // ZERO-O0: @__const.test_bitfieldaligned_custom.custom = private unnamed_addr constant %struct.bitfieldaligned { i8 4, [3 x i8] zeroinitializer, i8 1, [3 x i8] zeroinitializer }, align 4
121 // PATTERN-O1-NOT: @__const.test_bitfieldaligned_uninit.uninit
122 // PATTERN-O1-NOT: @__const.test_bitfieldaligned_custom.custom
123 // ZERO-O1-NOT: @__const.test_bitfieldaligned_custom.custom
124 struct bitfieldaligned { int i : 4; int : 0; int j : 2; };
125 struct big { unsigned a, b, c, d, e, f, g, h, i, j, k, l, m, n, o, p, q, r, s, t, u, v, w, x, y, z; };
126 // PATTERN-O0: @__const.test_arraytail_uninit.uninit = private unnamed_addr constant %struct.arraytail { i32 [[I32]], [0 x i32] zeroinitializer }, align 4
127 // PATTERN-O0: @__const.test_arraytail_custom.custom = private unnamed_addr constant %struct.arraytail { i32 57005, [0 x i32] zeroinitializer }, align 4
128 // ZERO-O0: @__const.test_arraytail_custom.custom = private unnamed_addr constant %struct.arraytail { i32 57005, [0 x i32] zeroinitializer }, align 4
129 // PATTERN-O1-NOT: @__const.test_arraytail_uninit.uninit
130 // PATTERN-O1-NOT: @__const.test_arraytail_custom.custom
131 // ZERO-O1-NOT: @__const.test_arraytail_custom.custom
132 struct arraytail { int i; int arr[]; };
133 // PATTERN-O0: @__const.test_int1_uninit.uninit = private unnamed_addr constant [1 x i32] {{\[}}i32 [[I32]]], align 4
134 // PATTERN-O0: @__const.test_int1_custom.custom = private unnamed_addr constant [1 x i32] [i32 858993459], align 4
135 // ZERO-O0: @__const.test_int1_custom.custom = private unnamed_addr constant [1 x i32] [i32 858993459], align 4
136 // PATTERN-O1-NOT: @__const.test_int1_uninit.uninit
137 // PATTERN-O1-NOT: @__const.test_int1_custom.custom
138 // ZERO-O1-NOT: @__const.test_int1_custom.custom
139 
140 // PATTERN-O0: @__const.test_bool4_uninit.uninit = private unnamed_addr constant [4 x i8] c"\[[IC]]\[[IC]]\[[IC]]\[[IC]]", align 1
141 // PATTERN-O0: @__const.test_bool4_custom.custom = private unnamed_addr constant [4 x i8] c"\01\01\01\01", align 1
142 // ZERO-O0: @__const.test_bool4_custom.custom = private unnamed_addr constant [4 x i8] c"\01\01\01\01", align 1
143 // PATTERN-O1-NOT: @__const.test_bool4_uninit.uninit
144 // PATTERN-O1-NOT: @__const.test_bool4_custom.custom
145 // ZERO-O1-NOT: @__const.test_bool4_custom.custom
146 
147 // PATTERN: @__const.test_intptr4_custom.custom = private unnamed_addr constant [4 x i32*] [i32* inttoptr ([[IPTRT]] 572662306 to i32*), i32* inttoptr ([[IPTRT]] 572662306 to i32*), i32* inttoptr ([[IPTRT]] 572662306 to i32*), i32* inttoptr ([[IPTRT]] 572662306 to i32*)], align
148 // ZERO: @__const.test_intptr4_custom.custom = private unnamed_addr constant [4 x i32*] [i32* inttoptr (i64 572662306 to i32*), i32* inttoptr (i64 572662306 to i32*), i32* inttoptr (i64 572662306 to i32*), i32* inttoptr (i64 572662306 to i32*)], align 16
149 // PATTERN-O0: @__const.test_tailpad4_uninit.uninit = private unnamed_addr constant [4 x { i16, i8, [1 x i8] }] [{ i16, i8, [1 x i8] } { i16 [[I16]], i8 [[I8]], [1 x i8] c"\[[IC]]" }, { i16, i8, [1 x i8] } { i16 [[I16]], i8 [[I8]], [1 x i8] c"\[[IC]]" }, { i16, i8, [1 x i8] } { i16 [[I16]], i8 [[I8]], [1 x i8] c"\[[IC]]" }, { i16, i8, [1 x i8] } { i16 [[I16]], i8 [[I8]], [1 x i8] c"\[[IC]]" }], align
150 // PATTERN-O1-NOT: @__const.test_tailpad4_uninit.uninit
151 // PATTERN:   @__const.test_tailpad4_custom.custom = private unnamed_addr constant [4 x { i16, i8, [1 x i8] }] [{ i16, i8, [1 x i8] } { i16 257, i8 1, [1 x i8] zeroinitializer }, { i16, i8, [1 x i8] } { i16 257, i8 1, [1 x i8] zeroinitializer }, { i16, i8, [1 x i8] } { i16 257, i8 1, [1 x i8] zeroinitializer }, { i16, i8, [1 x i8] } { i16 257, i8 1, [1 x i8] zeroinitializer }], align
152 // ZERO: @__const.test_tailpad4_custom.custom = private unnamed_addr constant [4 x { i16, i8, [1 x i8] }] [{ i16, i8, [1 x i8] } { i16 257, i8 1, [1 x i8] zeroinitializer }, { i16, i8, [1 x i8] } { i16 257, i8 1, [1 x i8] zeroinitializer }, { i16, i8, [1 x i8] } { i16 257, i8 1, [1 x i8] zeroinitializer }, { i16, i8, [1 x i8] } { i16 257, i8 1, [1 x i8] zeroinitializer }], align 16
153 struct tailpad { short s; char c; };
154 // PATTERN-O0: @__const.test_atomicnotlockfree_uninit.uninit = private unnamed_addr constant %struct.notlockfree { [4 x i64] {{\[}}i64 [[I64]], i64 [[I64]], i64 [[I64]], i64 [[I64]]] }, align
155 // PATTERN-O1-NOT: @__const.test_atomicnotlockfree_uninit.uninit
156 struct notlockfree { long long a[4]; };
157 // PATTERN-O0: @__const.test_atomicpadded_uninit.uninit = private unnamed_addr constant { i8, [3 x i8], i32 } { i8 [[I8]], [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]", i32 [[I32]] }, align 8
158 // PATTERN-O1-NOT: @__const.test_atomicpadded_uninit.uninit
159 // PATTERN-O0: @__const.test_atomictailpad_uninit.uninit = private unnamed_addr constant { i16, i8, [1 x i8] } { i16 [[I16]], i8 [[I8]], [1 x i8] c"\[[IC]]" }, align 4
160 // PATTERN-O1-NOT: @__const.test_atomictailpad_uninit.uninit
161 // PATTERN-O0: @__const.test_complexfloat_uninit.uninit = private unnamed_addr constant { float, float } { float 0xFFFFFFFFE0000000, float 0xFFFFFFFFE0000000 }, align 4
162 // PATTERN-O1-NOT: @__const.test_complexfloat_uninit.uninit
163 // PATTERN-O0: @__const.test_complexfloat_braces.braces = private unnamed_addr constant { float, float } { float 0xFFFFFFFFE0000000, float 0xFFFFFFFFE0000000 }, align 4
164 // PATTERN-O1-NOT: @__const.test_complexfloat_braces.braces
165 // PATTERN-O0: @__const.test_complexfloat_custom.custom = private unnamed_addr constant { float, float } { float 0xFFFFFFFFE0000000, float 0xFFFFFFFFE0000000 }, align 4
166 // PATTERN-O1-NOT: @__const.test_complexfloat_custom.custom
167 // PATTERN-O0: @__const.test_complexdouble_uninit.uninit = private unnamed_addr constant { double, double } { double 0xFFFFFFFFFFFFFFFF, double 0xFFFFFFFFFFFFFFFF }, align 8
168 // PATTERN-O1-NOT: @__const.test_complexdouble_uninit.uninit
169 // PATTERN-O0: @__const.test_complexdouble_braces.braces = private unnamed_addr constant { double, double } { double 0xFFFFFFFFFFFFFFFF, double 0xFFFFFFFFFFFFFFFF }, align 8
170 // PATTERN-O1-NOT: @__const.test_complexdouble_braces.braces
171 // PATTERN-O0: @__const.test_complexdouble_custom.custom = private unnamed_addr constant { double, double } { double 0xFFFFFFFFFFFFFFFF, double 0xFFFFFFFFFFFFFFFF }, align 8
172 // PATTERN-O1-NOT: @__const.test_complexdouble_custom.custom
173 // PATTERN-O0: @__const.test_semivolatile_uninit.uninit = private unnamed_addr constant %struct.semivolatile { i32 [[I32]], i32 [[I32]] }, align 4
174 // PATTERN-O0: @__const.test_semivolatile_custom.custom = private unnamed_addr constant %struct.semivolatile { i32 1145324612, i32 1145324612 }, align 4
175 // PATTERN-O1-NOT: @__const.test_semivolatile_custom.custom
176 struct semivolatile { int i; volatile int vi; };
177 // PATTERN-O0: @__const.test_semivolatileinit_uninit.uninit = private unnamed_addr constant %struct.semivolatileinit { i32 [[I32]], i32 [[I32]] }, align 4
178 // PATTERN-O1-NOT: @__const.test_semivolatileinit_uninit.uninit
179 // PATTERN-O0: @__const.test_semivolatileinit_braces.braces = private unnamed_addr constant %struct.semivolatileinit { i32 [[I32]], i32 [[I32]] }, align 4
180 // PATTERN-O1-NOT: @__const.test_semivolatileinit_braces.braces
181 // PATTERN-O0: @__const.test_semivolatileinit_custom.custom = private unnamed_addr constant %struct.semivolatileinit { i32 [[I32]], i32 [[I32]] }, align 4
182 // PATTERN-O1-NOT: @__const.test_semivolatileinit_custom.custom = private unnamed_addr constant %struct.semivolatileinit { i32 [[I32]], i32 [[I32]] }, align 4
183 // ZERO-O0: @__const.test_semivolatile_custom.custom = private unnamed_addr constant %struct.semivolatile { i32 1145324612, i32 1145324612 }, align 4
184 // ZERO-O1-NOT: @__const.test_semivolatile_custom.custom
185 struct semivolatileinit { int i = 0x11111111; volatile int vi = 0x11111111; };
186 // PATTERN-O0: @__const.test_base_uninit.uninit = private unnamed_addr constant %struct.base { i32 (...)** inttoptr ([[IPTRT]] [[IPTR]] to i32 (...)**) }, align
187 // PATTERN-O1-NOT: @__const.test_base_uninit.uninit
188 // PATTERN-O0: @__const.test_base_braces.braces = private unnamed_addr constant %struct.base { i32 (...)** inttoptr ([[IPTRT]] [[IPTR]] to i32 (...)**) }, align
189 // PATTERN-O1-NOT: @__const.test_base_braces.braces
190 struct base { virtual ~base(); };
191 // PATTERN-O0: @__const.test_derived_uninit.uninit = private unnamed_addr constant %struct.derived { %struct.base { i32 (...)** inttoptr ([[IPTRT]] [[IPTR]] to i32 (...)**) } }, align
192 // PATTERN-O1-NOT: @__const.test_derived_uninit.uninit
193 // PATTERN-O0: @__const.test_derived_braces.braces = private unnamed_addr constant %struct.derived { %struct.base { i32 (...)** inttoptr ([[IPTRT]] [[IPTR]] to i32 (...)**) } }, align
194 // PATTERN-O1-NOT: @__const.test_derived_braces.braces
195 struct derived : public base {};
196 // PATTERN-O0: @__const.test_virtualderived_uninit.uninit = private unnamed_addr constant %struct.virtualderived { %struct.base { i32 (...)** inttoptr ([[IPTRT]] [[IPTR]] to i32 (...)**) }, %struct.derived { %struct.base { i32 (...)** inttoptr ([[IPTRT]] [[IPTR]] to i32 (...)**) } } }, align
197 // PATTERN-O1-NOT: @__const.test_virtualderived_uninit.uninit
198 // PATTERN-O0: @__const.test_virtualderived_braces.braces = private unnamed_addr constant %struct.virtualderived { %struct.base { i32 (...)** inttoptr ([[IPTRT]] [[IPTR]] to i32 (...)**) }, %struct.derived { %struct.base { i32 (...)** inttoptr ([[IPTRT]] [[IPTR]] to i32 (...)**) } } }, align
199 // PATTERN-O1-NOT: @__const.test_virtualderived_braces.braces
200 struct virtualderived : public virtual base, public virtual derived {};
201 // PATTERN-O0: @__const.test_matching_uninit.uninit = private unnamed_addr constant %union.matching { i32 [[I32]] }, align 4
202 // PATTERN-O1-NOT: @__const.test_matching_uninit.uninit
203 // PATTERN-O0: @__const.test_matching_custom.custom = private unnamed_addr constant { float } { float 6.145500e+04 }, align 4
204 // PATTERN-O1-NOT: @__const.test_matching_custom.custom
205 // ZERO-O0: @__const.test_matching_custom.custom = private unnamed_addr constant { float } { float 6.145500e+04 }, align 4
206 // ZERO-O1-NOT: @__const.test_matching_custom.custom
207 union matching { int i; float f; };
208 // PATTERN-O0: @__const.test_matchingreverse_uninit.uninit = private unnamed_addr constant %union.matchingreverse { float 0xFFFFFFFFE0000000 }, align 4
209 // PATTERN-O1-NOT: @__const.test_matchingreverse_uninit.uninit
210 // PATTERN-O0: @__const.test_matchingreverse_custom.custom = private unnamed_addr constant { i32 } { i32 61455 }, align 4
211 // PATTERN-O1-NOT: @__const.test_matchingreverse_custom.custom
212 // ZERO-O0: @__const.test_matchingreverse_custom.custom = private unnamed_addr constant { i32 } { i32 61455 }, align 4
213 // ZERO-O1-NOT: @__const.test_matchingreverse_custom.custom
214 union matchingreverse { float f; int i; };
215 // PATTERN-O0: @__const.test_unmatched_uninit.uninit = private unnamed_addr constant %union.unmatched { i32 [[I32]] }, align 4
216 // PATTERN-O1-NOT: @__const.test_unmatched_uninit.uninit
217 // PATTERN-O0: @__const.test_unmatched_custom.custom = private unnamed_addr constant %union.unmatched { i32 1001242351 }, align 4
218 // PATTERN-O1-NOT: @__const.test_unmatched_custom.custom
219 // ZERO-O0: @__const.test_unmatched_custom.custom = private unnamed_addr constant %union.unmatched { i32 1001242351 }, align 4
220 // ZERO-O1-NOT: @__const.test_unmatched_custom.custom
221 union unmatched { char c; int i; };
222 // PATTERN-O0: @__const.test_unmatchedreverse_uninit.uninit = private unnamed_addr constant %union.unmatchedreverse { i32 [[I32]] }, align 4
223 // PATTERN-O1-NOT: @__const.test_unmatchedreverse_uninit.uninit
224 // PATTERN-O0: @__const.test_unmatchedreverse_custom.custom = private unnamed_addr constant { i8, [3 x i8] } { i8 42, [3 x i8] c"\[[IC]]\[[IC]]\[[IC]]" }, align 4
225 // PATTERN-O1-NOT: @__const.test_unmatchedreverse_custom.custom
226 // ZERO-O0: @__const.test_unmatchedreverse_custom.custom = private unnamed_addr constant { i8, [3 x i8] } { i8 42, [3 x i8] zeroinitializer }, align 4
227 // ZERO-O1-NOT: @__const.test_unmatchedreverse_custom.custom
228 union unmatchedreverse { int i; char c; };
229 // PATTERN-O0: @__const.test_unmatchedfp_uninit.uninit = private unnamed_addr constant %union.unmatchedfp { double 0xFFFFFFFFFFFFFFFF }, align
230 // PATTERN-O1-NOT: @__const.test_unmatchedfp_uninit.uninit
231 // PATTERN-O0: @__const.test_unmatchedfp_custom.custom = private unnamed_addr constant %union.unmatchedfp { double 0x400921FB54442D18 }, align
232 // PATTERN-O1-NOT: @__const.test_unmatchedfp_custom.custom
233 // ZERO-O0: @__const.test_unmatchedfp_custom.custom = private unnamed_addr constant %union.unmatchedfp { double 0x400921FB54442D18 }, align 8
234 // ZERO-O1-NOT: @__const.test_unmatchedfp_custom.custom
235 union unmatchedfp { float f; double d; };
236 enum emptyenum {};
237 enum smallenum { VALUE };
238 
239 extern "C" {
240 
241 TEST_UNINIT(char, char);
242 // CHECK-LABEL: @test_char_uninit()
243 // CHECK:       %uninit = alloca i8, align
244 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
245 // PATTERN-LABEL: @test_char_uninit()
246 // PATTERN: store i8 [[I8]], i8* %uninit, align 1
247 // ZERO-LABEL: @test_char_uninit()
248 // ZERO: store i8 0, i8* %uninit, align 1
249 
250 TEST_BRACES(char, char);
251 // CHECK-LABEL: @test_char_braces()
252 // CHECK:       %braces = alloca i8, align [[ALIGN:[0-9]*]]
253 // CHECK-NEXT:  store i8 0, i8* %braces, align [[ALIGN]]
254 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
255 
256 TEST_UNINIT(uchar, unsigned char);
257 // CHECK-LABEL: @test_uchar_uninit()
258 // CHECK:       %uninit = alloca i8, align
259 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
260 // PATTERN-LABEL: @test_uchar_uninit()
261 // PATTERN: store i8 [[I8]], i8* %uninit, align 1
262 // ZERO-LABEL: @test_uchar_uninit()
263 // ZERO: store i8 0, i8* %uninit, align 1
264 
265 TEST_BRACES(uchar, unsigned char);
266 // CHECK-LABEL: @test_uchar_braces()
267 // CHECK:       %braces = alloca i8, align [[ALIGN:[0-9]*]]
268 // CHECK-NEXT:  store i8 0, i8* %braces, align [[ALIGN]]
269 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
270 
271 TEST_UNINIT(schar, signed char);
272 // CHECK-LABEL: @test_schar_uninit()
273 // CHECK:       %uninit = alloca i8, align
274 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
275 // PATTERN-LABEL: @test_schar_uninit()
276 // PATTERN: store i8 [[I8]], i8* %uninit, align 1
277 // ZERO-LABEL: @test_schar_uninit()
278 // ZERO: store i8 0, i8* %uninit, align 1
279 
280 TEST_BRACES(schar, signed char);
281 // CHECK-LABEL: @test_schar_braces()
282 // CHECK:       %braces = alloca i8, align [[ALIGN:[0-9]*]]
283 // CHECK-NEXT:  store i8 0, i8* %braces, align [[ALIGN]]
284 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
285 
286 TEST_UNINIT(wchar_t, wchar_t);
287 // CHECK-LABEL: @test_wchar_t_uninit()
288 // CHECK:       %uninit = alloca i32, align
289 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
290 // PATTERN-LABEL: @test_wchar_t_uninit()
291 // PATTERN: store i32 [[I32]], i32* %uninit, align
292 // ZERO-LABEL: @test_wchar_t_uninit()
293 // ZERO: store i32 0, i32* %uninit, align
294 
295 TEST_BRACES(wchar_t, wchar_t);
296 // CHECK-LABEL: @test_wchar_t_braces()
297 // CHECK:       %braces = alloca i32, align [[ALIGN:[0-9]*]]
298 // CHECK-NEXT:  store i32 0, i32* %braces, align [[ALIGN]]
299 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
300 
301 TEST_UNINIT(short, short);
302 // CHECK-LABEL: @test_short_uninit()
303 // CHECK:       %uninit = alloca i16, align
304 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
305 // PATTERN-LABEL: @test_short_uninit()
306 // PATTERN: store i16 [[I16]], i16* %uninit, align
307 // ZERO-LABEL: @test_short_uninit()
308 // ZERO: store i16 0, i16* %uninit, align
309 
310 TEST_BRACES(short, short);
311 // CHECK-LABEL: @test_short_braces()
312 // CHECK:       %braces = alloca i16, align [[ALIGN:[0-9]*]]
313 // CHECK-NEXT:  store i16 0, i16* %braces, align [[ALIGN]]
314 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
315 
316 TEST_UNINIT(ushort, unsigned short);
317 // CHECK-LABEL: @test_ushort_uninit()
318 // CHECK:       %uninit = alloca i16, align
319 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
320 // PATTERN-LABEL: @test_ushort_uninit()
321 // PATTERN: store i16 [[I16]], i16* %uninit, align
322 // ZERO-LABEL: @test_ushort_uninit()
323 // ZERO: store i16 0, i16* %uninit, align
324 
325 TEST_BRACES(ushort, unsigned short);
326 // CHECK-LABEL: @test_ushort_braces()
327 // CHECK:       %braces = alloca i16, align [[ALIGN:[0-9]*]]
328 // CHECK-NEXT:  store i16 0, i16* %braces, align [[ALIGN]]
329 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
330 
331 TEST_UNINIT(int, int);
332 // CHECK-LABEL: @test_int_uninit()
333 // CHECK:       %uninit = alloca i32, align
334 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
335 // PATTERN-LABEL: @test_int_uninit()
336 // PATTERN: store i32 [[I32]], i32* %uninit, align
337 // ZERO-LABEL: @test_int_uninit()
338 // ZERO: store i32 0, i32* %uninit, align
339 
340 TEST_BRACES(int, int);
341 // CHECK-LABEL: @test_int_braces()
342 // CHECK:       %braces = alloca i32, align [[ALIGN:[0-9]*]]
343 // CHECK-NEXT:  store i32 0, i32* %braces, align [[ALIGN]]
344 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
345 
346 TEST_UNINIT(unsigned, unsigned);
347 // CHECK-LABEL: @test_unsigned_uninit()
348 // CHECK:       %uninit = alloca i32, align
349 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
350 // PATTERN-LABEL: @test_unsigned_uninit()
351 // PATTERN: store i32 [[I32]], i32* %uninit, align
352 // ZERO-LABEL: @test_unsigned_uninit()
353 // ZERO: store i32 0, i32* %uninit, align
354 
355 TEST_BRACES(unsigned, unsigned);
356 // CHECK-LABEL: @test_unsigned_braces()
357 // CHECK:       %braces = alloca i32, align [[ALIGN:[0-9]*]]
358 // CHECK-NEXT:  store i32 0, i32* %braces, align [[ALIGN]]
359 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
360 
361 TEST_UNINIT(long, long);
362 // CHECK-LABEL: @test_long_uninit()
363 // CHECK:       %uninit = alloca i64, align
364 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
365 // PATTERN-LABEL: @test_long_uninit()
366 // PATTERN: store [[ILONGT]] [[ILONG]], [[ILONGT]]* %uninit, align
367 // ZERO-LABEL: @test_long_uninit()
368 // ZERO: store i64 0, i64* %uninit, align
369 
370 TEST_BRACES(long, long);
371 // CHECK-LABEL: @test_long_braces()
372 // CHECK:       %braces = alloca i64, align [[ALIGN:[0-9]*]]
373 // CHECK-NEXT:  store i64 0, i64* %braces, align [[ALIGN]]
374 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
375 
376 TEST_UNINIT(ulong, unsigned long);
377 // CHECK-LABEL: @test_ulong_uninit()
378 // CHECK:       %uninit = alloca i64, align
379 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
380 // PATTERN-LABEL: @test_ulong_uninit()
381 // PATTERN: store [[ILONGT]] [[ILONG]], [[ILONGT]]* %uninit, align
382 // ZERO-LABEL: @test_ulong_uninit()
383 // ZERO: store i64 0, i64* %uninit, align
384 
385 TEST_BRACES(ulong, unsigned long);
386 // CHECK-LABEL: @test_ulong_braces()
387 // CHECK:       %braces = alloca i64, align [[ALIGN:[0-9]*]]
388 // CHECK-NEXT:  store i64 0, i64* %braces, align [[ALIGN]]
389 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
390 
391 TEST_UNINIT(longlong, long long);
392 // CHECK-LABEL: @test_longlong_uninit()
393 // CHECK:       %uninit = alloca i64, align
394 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
395 // PATTERN-LABEL: @test_longlong_uninit()
396 // PATTERN: store i64 [[I64]], i64* %uninit, align
397 // ZERO-LABEL: @test_longlong_uninit()
398 // ZERO: store i64 0, i64* %uninit, align
399 
400 TEST_BRACES(longlong, long long);
401 // CHECK-LABEL: @test_longlong_braces()
402 // CHECK:       %braces = alloca i64, align [[ALIGN:[0-9]*]]
403 // CHECK-NEXT:  store i64 0, i64* %braces, align [[ALIGN]]
404 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
405 
406 TEST_UNINIT(ulonglong, unsigned long long);
407 // CHECK-LABEL: @test_ulonglong_uninit()
408 // CHECK:       %uninit = alloca i64, align
409 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
410 // PATTERN-LABEL: @test_ulonglong_uninit()
411 // PATTERN: store i64 [[I64]], i64* %uninit, align
412 // ZERO-LABEL: @test_ulonglong_uninit()
413 // ZERO: store i64 0, i64* %uninit, align
414 
415 TEST_BRACES(ulonglong, unsigned long long);
416 // CHECK-LABEL: @test_ulonglong_braces()
417 // CHECK:       %braces = alloca i64, align [[ALIGN:[0-9]*]]
418 // CHECK-NEXT:  store i64 0, i64* %braces, align [[ALIGN]]
419 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
420 
421 TEST_UNINIT(int128, __int128);
422 // CHECK-LABEL: @test_int128_uninit()
423 // CHECK:       %uninit = alloca i128, align
424 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
425 // PATTERN-LABEL: @test_int128_uninit()
426 // PATTERN: store [[I128T]] [[I128]], [[I128T]]* %uninit, align
427 // ZERO-LABEL: @test_int128_uninit()
428 // ZERO: store i128 0, i128* %uninit, align
429 
430 TEST_BRACES(int128, __int128);
431 // CHECK-LABEL: @test_int128_braces()
432 // CHECK:       %braces = alloca i128, align [[ALIGN:[0-9]*]]
433 // CHECK-NEXT:  store i128 0, i128* %braces, align [[ALIGN]]
434 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
435 
436 TEST_UNINIT(uint128, unsigned __int128);
437 // CHECK-LABEL: @test_uint128_uninit()
438 // CHECK:       %uninit = alloca i128, align
439 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
440 // PATTERN-LABEL: @test_uint128_uninit()
441 // PATTERN: store [[I128T]] [[I128]], [[I128T]]* %uninit, align
442 // ZERO-LABEL: @test_uint128_uninit()
443 // ZERO: store i128 0, i128* %uninit, align
444 
445 TEST_BRACES(uint128, unsigned __int128);
446 // CHECK-LABEL: @test_uint128_braces()
447 // CHECK:       %braces = alloca i128, align [[ALIGN:[0-9]*]]
448 // CHECK-NEXT:  store i128 0, i128* %braces, align [[ALIGN]]
449 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
450 
451 TEST_UNINIT(fp16, __fp16);
452 // CHECK-LABEL: @test_fp16_uninit()
453 // CHECK:       %uninit = alloca half, align
454 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
455 // PATTERN-LABEL: @test_fp16_uninit()
456 // PATTERN: store half 0xHFFFF, half* %uninit, align
457 // ZERO-LABEL: @test_fp16_uninit()
458 // ZERO: store half 0xH0000, half* %uninit, align
459 
460 TEST_BRACES(fp16, __fp16);
461 // CHECK-LABEL: @test_fp16_braces()
462 // CHECK:       %braces = alloca half, align [[ALIGN:[0-9]*]]
463 // CHECK-NEXT:  store half 0xH0000, half* %braces, align [[ALIGN]]
464 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
465 
466 TEST_UNINIT(float, float);
467 // CHECK-LABEL: @test_float_uninit()
468 // CHECK:       %uninit = alloca float, align
469 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
470 // PATTERN-LABEL: @test_float_uninit()
471 // PATTERN: store float 0xFFFFFFFFE0000000, float* %uninit, align
472 // ZERO-LABEL: @test_float_uninit()
473 // ZERO: store float 0.000000e+00, float* %uninit, align
474 
475 TEST_BRACES(float, float);
476 // CHECK-LABEL: @test_float_braces()
477 // CHECK:       %braces = alloca float, align [[ALIGN:[0-9]*]]
478 // CHECK-NEXT:  store float 0.000000e+00, float* %braces, align [[ALIGN]]
479 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
480 
481 TEST_UNINIT(double, double);
482 // CHECK-LABEL: @test_double_uninit()
483 // CHECK:       %uninit = alloca double, align
484 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
485 // PATTERN-LABEL: @test_double_uninit()
486 // PATTERN: store double 0xFFFFFFFFFFFFFFFF, double* %uninit, align
487 // ZERO-LABEL: @test_double_uninit()
488 // ZERO: store double 0.000000e+00, double* %uninit, align
489 
490 TEST_BRACES(double, double);
491 // CHECK-LABEL: @test_double_braces()
492 // CHECK:       %braces = alloca double, align [[ALIGN:[0-9]*]]
493 // CHECK-NEXT:  store double 0.000000e+00, double* %braces, align [[ALIGN]]
494 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
495 
496 TEST_UNINIT(longdouble, long double);
497 // CHECK-LABEL: @test_longdouble_uninit()
498 // CHECK:       %uninit = alloca x86_fp80, align
499 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
500 // PATTERN-LABEL: @test_longdouble_uninit()
501 // PATTERN: store x86_fp80 0xKFFFFFFFFFFFFFFFFFFFF, x86_fp80* %uninit, align
502 // ZERO-LABEL: @test_longdouble_uninit()
503 // ZERO: store x86_fp80 0xK00000000000000000000, x86_fp80* %uninit, align
504 
505 TEST_BRACES(longdouble, long double);
506 // CHECK-LABEL: @test_longdouble_braces()
507 // CHECK:       %braces = alloca x86_fp80, align [[ALIGN:[0-9]*]]
508 // CHECK-NEXT:  store x86_fp80 0xK00000000000000000000, x86_fp80* %braces, align [[ALIGN]]
509 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
510 
511 
512 TEST_UNINIT(intptr, int*);
513 // CHECK-LABEL: @test_intptr_uninit()
514 // CHECK:       %uninit = alloca i32*, align
515 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
516 // PATTERN-LABEL: @test_intptr_uninit()
517 // PATTERN: store i32* inttoptr ([[IPTRT]] [[IPTR]] to i32*), i32** %uninit, align
518 // ZERO-LABEL: @test_intptr_uninit()
519 // ZERO: store i32* null, i32** %uninit, align
520 
521 TEST_BRACES(intptr, int*);
522 // CHECK-LABEL: @test_intptr_braces()
523 // CHECK:       %braces = alloca i32*, align [[ALIGN:[0-9]*]]
524 // CHECK-NEXT:  store i32* null, i32** %braces, align [[ALIGN]]
525 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
526 
527 TEST_UNINIT(intptrptr, int**);
528 // CHECK-LABEL: @test_intptrptr_uninit()
529 // CHECK:       %uninit = alloca i32**, align
530 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
531 // PATTERN-LABEL: @test_intptrptr_uninit()
532 // PATTERN: store i32** inttoptr ([[IPTRT]] [[IPTR]] to i32**), i32*** %uninit, align
533 // ZERO-LABEL: @test_intptrptr_uninit()
534 // ZERO: store i32** null, i32*** %uninit, align
535 
536 TEST_BRACES(intptrptr, int**);
537 // CHECK-LABEL: @test_intptrptr_braces()
538 // CHECK:       %braces = alloca i32**, align [[ALIGN:[0-9]*]]
539 // CHECK-NEXT:  store i32** null, i32*** %braces, align [[ALIGN]]
540 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
541 
542 TEST_UNINIT(function, void(*)());
543 // CHECK-LABEL: @test_function_uninit()
544 // CHECK:       %uninit = alloca void ()*, align
545 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
546 // PATTERN-LABEL: @test_function_uninit()
547 // PATTERN: store void ()* inttoptr ([[IPTRT]] [[IPTR]] to void ()*), void ()** %uninit, align
548 // ZERO-LABEL: @test_function_uninit()
549 // ZERO: store void ()* null, void ()** %uninit, align
550 
551 TEST_BRACES(function, void(*)());
552 // CHECK-LABEL: @test_function_braces()
553 // CHECK:       %braces = alloca void ()*, align [[ALIGN:[0-9]*]]
554 // CHECK-NEXT:  store void ()* null, void ()** %braces, align [[ALIGN]]
555 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
556 
557 TEST_UNINIT(bool, bool);
558 // CHECK-LABEL: @test_bool_uninit()
559 // CHECK:       %uninit = alloca i8, align
560 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
561 // PATTERN-LABEL: @test_bool_uninit()
562 // PATTERN: store i8 [[I8]], i8* %uninit, align 1
563 // ZERO-LABEL: @test_bool_uninit()
564 // ZERO: store i8 0, i8* %uninit, align 1
565 
566 TEST_BRACES(bool, bool);
567 // CHECK-LABEL: @test_bool_braces()
568 // CHECK:       %braces = alloca i8, align [[ALIGN:[0-9]*]]
569 // CHECK-NEXT:  store i8 0, i8* %braces, align [[ALIGN]]
570 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
571 
572 
573 TEST_UNINIT(empty, empty);
574 // CHECK-LABEL: @test_empty_uninit()
575 // CHECK:       %uninit = alloca %struct.empty, align
576 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
577 // PATTERN-LABEL: @test_empty_uninit()
578 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_empty_uninit.uninit
579 // PATTERN-O1: store i8 [[I8]], {{.*}} align 1
580 // ZERO-LABEL: @test_empty_uninit()
581 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
582 // ZERO-O1: store i8 0, {{.*}} align 1
583 
584 TEST_BRACES(empty, empty);
585 // CHECK-LABEL: @test_empty_braces()
586 // CHECK:       %braces = alloca %struct.empty, align
587 // CHECK-NEXT:  bitcast
588 // CHECK-NEXT:  call void @llvm.memcpy
589 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
590 
591 TEST_UNINIT(small, small);
592 // CHECK-LABEL: @test_small_uninit()
593 // CHECK:       %uninit = alloca %struct.small, align
594 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
595 // PATTERN-LABEL: @test_small_uninit()
596 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_small_uninit.uninit
597 // PATTERN-O1: store i8 [[I8]], {{.*}} align 1
598 // ZERO-LABEL: @test_small_uninit()
599 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
600 // ZERO-O1: store i8 0, {{.*}} align 1
601 
602 TEST_BRACES(small, small);
603 // CHECK-LABEL: @test_small_braces()
604 // CHECK:       %braces = alloca %struct.small, align [[ALIGN:[0-9]*]]
605 // CHECK-NEXT:  bitcast
606 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 1, i1 false)
607 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
608 
609 TEST_CUSTOM(small, small, { 42 });
610 // CHECK-LABEL: @test_small_custom()
611 // CHECK:       %custom = alloca %struct.small, align
612 // CHECK-NEXT:  bitcast
613 // CHECK-NEXT:  call void @llvm.memcpy
614 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
615 
616 TEST_UNINIT(smallinit, smallinit);
617 // CHECK-LABEL: @test_smallinit_uninit()
618 // CHECK:       %uninit = alloca %struct.smallinit, align
619 // CHECK-NEXT:  call void @{{.*}}smallinit{{.*}}%uninit)
620 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
621 
622 TEST_BRACES(smallinit, smallinit);
623 // CHECK-LABEL: @test_smallinit_braces()
624 // CHECK:       %braces = alloca %struct.smallinit, align [[ALIGN:[0-9]*]]
625 // CHECK-NEXT:  %[[C:[^ ]*]] = getelementptr inbounds %struct.smallinit, %struct.smallinit* %braces, i32 0, i32 0
626 // CHECK-NEXT:  store i8 42, i8* %[[C]], align [[ALIGN]]
627 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
628 
629 TEST_CUSTOM(smallinit, smallinit, { 100 });
630 // CHECK-LABEL: @test_smallinit_custom()
631 // CHECK:       %custom = alloca %struct.smallinit, align [[ALIGN:[0-9]*]]
632 // CHECK-NEXT:  %[[C:[^ ]*]] = getelementptr inbounds %struct.smallinit, %struct.smallinit* %custom, i32 0, i32 0
633 // CHECK-NEXT:  store i8 100, i8* %[[C]], align [[ALIGN]]
634 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
635 
636 TEST_UNINIT(smallpartinit, smallpartinit);
637 // CHECK-LABEL: @test_smallpartinit_uninit()
638 // CHECK:       %uninit = alloca %struct.smallpartinit, align
639 // CHECK-NEXT:  call void @{{.*}}smallpartinit{{.*}}%uninit)
640 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
641 // PATTERN-LABEL: @test_smallpartinit_uninit()
642 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_smallpartinit_uninit.uninit
643 // PATTERN-O1: store i8 [[I8]], {{.*}} align 1
644 // PATTERN-O1: store i8 42, {{.*}} align 1
645 // ZERO-LABEL: @test_smallpartinit_uninit()
646 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
647 // ZERO-O1-LEGACY: store i16 0, i16* %uninit, align 2
648 // ZERO-O1-NEWPM: store i16 0, i16* %uninit, align 2
649 
650 TEST_BRACES(smallpartinit, smallpartinit);
651 // CHECK-LABEL: @test_smallpartinit_braces()
652 // CHECK:       %braces = alloca %struct.smallpartinit, align [[ALIGN:[0-9]*]]
653 // CHECK-NEXT:  %[[C:[^ ]*]] = getelementptr inbounds %struct.smallpartinit, %struct.smallpartinit* %braces, i32 0, i32 0
654 // CHECK-NEXT:  store i8 42, i8* %[[C]], align [[ALIGN]]
655 // CHECK-NEXT:  %[[D:[^ ]*]] = getelementptr inbounds %struct.smallpartinit, %struct.smallpartinit* %braces, i32 0, i32 1
656 // CHECK-NEXT:  store i8 0, i8* %[[D]], align [[ALIGN]]
657 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
658 
659 TEST_CUSTOM(smallpartinit, smallpartinit, { 100, 42 });
660 // CHECK-LABEL: @test_smallpartinit_custom()
661 // CHECK:       %custom = alloca %struct.smallpartinit, align [[ALIGN:[0-9]*]]
662 // CHECK-NEXT:  %[[C:[^ ]*]] = getelementptr inbounds %struct.smallpartinit, %struct.smallpartinit* %custom, i32 0, i32 0
663 // CHECK-NEXT:  store i8 100, i8* %[[C]], align [[ALIGN]]
664 // CHECK-NEXT:  %[[D:[^ ]*]] = getelementptr inbounds %struct.smallpartinit, %struct.smallpartinit* %custom, i32 0, i32 1
665 // CHECK-NEXT:  store i8 42, i8* %[[D]], align [[ALIGN]]
666 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
667 
668 TEST_UNINIT(nullinit, nullinit);
669 // CHECK-LABEL: @test_nullinit_uninit()
670 // CHECK:       %uninit = alloca %struct.nullinit, align
671 // CHECK-NEXT:  call void @{{.*}}nullinit{{.*}}%uninit)
672 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
673 
674 TEST_BRACES(nullinit, nullinit);
675 // CHECK-LABEL: @test_nullinit_braces()
676 // CHECK:       %braces = alloca %struct.nullinit, align [[ALIGN:[0-9]*]]
677 // CHECK-NEXT:  %[[N:[^ ]*]] = getelementptr inbounds %struct.nullinit, %struct.nullinit* %braces, i32 0, i32 0
678 // CHECK-NEXT:  store i8* null, i8** %[[N]], align [[ALIGN]]
679 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
680 
681 TEST_CUSTOM(nullinit, nullinit, { (char*)"derp" });
682 // CHECK-LABEL: @test_nullinit_custom()
683 // CHECK:       %custom = alloca %struct.nullinit, align [[ALIGN:[0-9]*]]
684 // CHECK-NEXT:  %[[N:[^ ]*]] = getelementptr inbounds %struct.nullinit, %struct.nullinit* %custom, i32 0, i32 0
685 // CHECK-NEXT:  store i8* getelementptr inbounds {{.*}}, i8** %[[N]], align [[ALIGN]]
686 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
687 
688 TEST_UNINIT(padded, padded);
689 // CHECK-LABEL: @test_padded_uninit()
690 // CHECK:       %uninit = alloca %struct.padded, align
691 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
692 // PATTERN-LABEL: @test_padded_uninit()
693 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_padded_uninit.uninit
694 // PATTERN-O1: store i64 [[I64]], i64* %uninit, align 8
695 // ZERO-LABEL: @test_padded_uninit()
696 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
697 // ZERO-O1: store i64 0, i64* %uninit, align 8
698 
699 TEST_BRACES(padded, padded);
700 // CHECK-LABEL: @test_padded_braces()
701 // CHECK:       %braces = alloca %struct.padded, align [[ALIGN:[0-9]*]]
702 // CHECK-NEXT:  bitcast
703 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 8, i1 false)
704 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
705 
706 TEST_CUSTOM(padded, padded, { 42, 13371337 });
707 // CHECK-LABEL: @test_padded_custom()
708 // CHECK:       %custom = alloca %struct.padded, align
709 // CHECK-NEXT:  bitcast
710 // CHECK-NEXT:  call void @llvm.memcpy
711 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
712 
713 TEST_UNINIT(paddednullinit, paddednullinit);
714 // CHECK-LABEL: @test_paddednullinit_uninit()
715 // CHECK:       %uninit = alloca %struct.paddednullinit, align
716 // CHECK-NEXT:  call void @{{.*}}paddednullinit{{.*}}%uninit)
717 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
718 // PATTERN-LABEL: @test_paddednullinit_uninit()
719 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_paddednullinit_uninit.uninit
720 // PATTERN-O1-LEGACY: store i64 [[I64]], i64* %uninit, align 8
721 // PATTERN-O1-NEWPM: store i64 [[I64]], i64* %uninit, align 8
722 // ZERO-LABEL: @test_paddednullinit_uninit()
723 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
724 // ZERO-O1: store i64 0, i64* %uninit, align 8
725 
726 TEST_BRACES(paddednullinit, paddednullinit);
727 // CHECK-LABEL: @test_paddednullinit_braces()
728 // CHECK:       %braces = alloca %struct.paddednullinit, align [[ALIGN:[0-9]*]]
729 // CHECK-NEXT:  %[[C:[^ ]*]] = getelementptr inbounds %struct.paddednullinit, %struct.paddednullinit* %braces, i32 0, i32 0
730 // CHECK-NEXT:  store i8 0, i8* %[[C]], align [[ALIGN]]
731 // CHECK-NEXT:  %[[I:[^ ]*]] = getelementptr inbounds %struct.paddednullinit, %struct.paddednullinit* %braces, i32 0, i32 1
732 // CHECK-NEXT:  store i32 0, i32* %[[I]], align [[ALIGN]]
733 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
734 
735 TEST_CUSTOM(paddednullinit, paddednullinit, { 42, 13371337 });
736 // CHECK-LABEL: @test_paddednullinit_custom()
737 // CHECK:       %custom = alloca %struct.paddednullinit, align [[ALIGN:[0-9]*]]
738 // CHECK-NEXT:  %[[C:[^ ]*]] = getelementptr inbounds %struct.paddednullinit, %struct.paddednullinit* %custom, i32 0, i32 0
739 // CHECK-NEXT:  store i8 42, i8* %[[C]], align [[ALIGN]]
740 // CHECK-NEXT:  %[[I:[^ ]*]] = getelementptr inbounds %struct.paddednullinit, %struct.paddednullinit* %custom, i32 0, i32 1
741 // CHECK-NEXT:  store i32 13371337, i32* %[[I]], align [[ALIGN]]
742 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
743 
744 TEST_UNINIT(paddedpacked, paddedpacked);
745 // CHECK-LABEL: @test_paddedpacked_uninit()
746 // CHECK:       %uninit = alloca %struct.paddedpacked, align
747 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
748 // PATTERN-LABEL: @test_paddedpacked_uninit()
749 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_paddedpacked_uninit.uninit
750 // PATTERN-O1:  %[[C:[^ ]*]] = getelementptr inbounds {{.*}}%uninit, i64 0, i32 0
751 // PATTERN-O1  store i8 [[I8]], i8* %[[C]], align
752 // PATTERN-O1:  %[[I:[^ ]*]] = getelementptr inbounds {{.*}}%uninit, i64 0, i32 1
753 // PATTERN-O1: store i32 [[I32]], i32* %[[I]], align
754 
755 // ZERO-LABEL: @test_paddedpacked_uninit()
756 // ZERO: call void @llvm.memset{{.*}}, i8 0,
757 
758 TEST_BRACES(paddedpacked, paddedpacked);
759 // CHECK-LABEL: @test_paddedpacked_braces()
760 // CHECK:       %braces = alloca %struct.paddedpacked, align [[ALIGN:[0-9]*]]
761 // CHECK-NEXT:  bitcast
762 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 5, i1 false)
763 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
764 
765 TEST_CUSTOM(paddedpacked, paddedpacked, { 42, 13371337 });
766 // CHECK-LABEL: @test_paddedpacked_custom()
767 // CHECK:       %custom = alloca %struct.paddedpacked, align
768 // CHECK-NEXT:  bitcast
769 // CHECK-NEXT:  call void @llvm.memcpy{{.*}}({{.*}}@__const.test_paddedpacked_custom.custom
770 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
771 
772 TEST_UNINIT(paddedpackedarray, paddedpackedarray);
773 // CHECK-LABEL: @test_paddedpackedarray_uninit()
774 // CHECK:       %uninit = alloca %struct.paddedpackedarray, align
775 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
776 // PATTERN-LABEL: @test_paddedpackedarray_uninit()
777 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_paddedpackedarray_uninit.uninit
778 // PATTERN-O1: getelementptr
779 // PATTERN-O1: call void @llvm.memset{{.*}}({{.*}}i8 [[I8]], i64 10
780 // ZERO-LABEL: @test_paddedpackedarray_uninit()
781 // ZERO: call void @llvm.memset{{.*}}, i8 0,
782 
783 TEST_BRACES(paddedpackedarray, paddedpackedarray);
784 // CHECK-LABEL: @test_paddedpackedarray_braces()
785 // CHECK:       %braces = alloca %struct.paddedpackedarray, align [[ALIGN:[0-9]*]]
786 // CHECK-NEXT:  bitcast
787 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 10, i1 false)
788 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
789 
790 TEST_CUSTOM(paddedpackedarray, paddedpackedarray, { {{ 42, 13371337 }, { 43, 13371338 }} });
791 // CHECK-LABEL: @test_paddedpackedarray_custom()
792 // CHECK:       %custom = alloca %struct.paddedpackedarray, align
793 // CHECK-NEXT:  bitcast
794 // CHECK-NEXT:  call void @llvm.memcpy{{.*}}({{.*}}@__const.test_paddedpackedarray_custom.custom
795 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
796 
797 TEST_UNINIT(unpackedinpacked, unpackedinpacked);
798 // PATTERN-LABEL: @test_unpackedinpacked_uninit()
799 // PATTERN-O0: call void @llvm.memcpy{{.*}} 9, i1 false)
800 
801 TEST_UNINIT(paddednested, paddednested);
802 // CHECK-LABEL: @test_paddednested_uninit()
803 // CHECK:       %uninit = alloca %struct.paddednested, align
804 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
805 // PATTERN-LABEL: @test_paddednested_uninit()
806 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_paddednested_uninit.uninit
807 // PATTERN-O1: getelementptr
808 // PATTERN-O1: call void @llvm.memset{{.*}}({{.*}}, i8 [[I8]], i64 16
809 // ZERO-LABEL: @test_paddednested_uninit()
810 // ZERO: call void @llvm.memset{{.*}}, i8 0,
811 
812 TEST_BRACES(paddednested, paddednested);
813 // CHECK-LABEL: @test_paddednested_braces()
814 // CHECK:       %braces = alloca %struct.paddednested, align [[ALIGN:[0-9]*]]
815 // CHECK-NEXT:  bitcast
816 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 16, i1 false)
817 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
818 
819 TEST_CUSTOM(paddednested, paddednested, { { 42, 13371337 }, { 43, 13371338 } });
820 // CHECK-LABEL: @test_paddednested_custom()
821 // CHECK:       %custom = alloca %struct.paddednested, align
822 // CHECK-NEXT:  bitcast
823 // CHECK-NEXT:  call void @llvm.memcpy{{.*}}({{.*}}@__const.test_paddednested_custom.custom
824 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
825 
826 TEST_UNINIT(paddedpackednested, paddedpackednested);
827 // CHECK-LABEL: @test_paddedpackednested_uninit()
828 // CHECK:       %uninit = alloca %struct.paddedpackednested, align
829 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
830 // PATTERN-LABEL: @test_paddedpackednested_uninit()
831 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_paddedpackednested_uninit.uninit
832 // PATTERN-O1: getelementptr
833 // PATTERN-O1: call void @llvm.memset.p0i8.i64(i8* nonnull align 1 dereferenceable(10) %0, i8 [[I8]], i64 10, i1 false
834 // ZERO-LABEL: @test_paddedpackednested_uninit()
835 // ZERO: call void @llvm.memset{{.*}}, i8 0,
836 
837 TEST_BRACES(paddedpackednested, paddedpackednested);
838 // CHECK-LABEL: @test_paddedpackednested_braces()
839 // CHECK:       %braces = alloca %struct.paddedpackednested, align [[ALIGN:[0-9]*]]
840 // CHECK-NEXT:  bitcast
841 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 10, i1 false)
842 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
843 
844 TEST_CUSTOM(paddedpackednested, paddedpackednested, { { 42, 13371337 }, { 43, 13371338 } });
845 // CHECK-LABEL: @test_paddedpackednested_custom()
846 // CHECK:       %custom = alloca %struct.paddedpackednested, align
847 // CHECK-NEXT:  bitcast
848 // CHECK-NEXT:  call void @llvm.memcpy{{.*}}({{.*}}@__const.test_paddedpackednested_custom.custom
849 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
850 
851 TEST_UNINIT(bitfield, bitfield);
852 // CHECK-LABEL: @test_bitfield_uninit()
853 // CHECK:       %uninit = alloca %struct.bitfield, align
854 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
855 // PATTERN-LABEL: @test_bitfield_uninit()
856 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_bitfield_uninit.uninit
857 // PATTERN-O1: store i32 [[I32]], i32* %uninit, align 4
858 // ZERO-LABEL: @test_bitfield_uninit()
859 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
860 // ZERO-O1: store i32 0, i32* %uninit, align 4
861 
862 TEST_BRACES(bitfield, bitfield);
863 // CHECK-LABEL: @test_bitfield_braces()
864 // CHECK:       %braces = alloca %struct.bitfield, align
865 // CHECK-NEXT:  bitcast
866 // CHECK-NEXT:  call void @llvm.memcpy
867 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
868 
869 TEST_CUSTOM(bitfield, bitfield, { 4, 1 });
870 // CHECK-LABEL: @test_bitfield_custom()
871 // CHECK:       %custom = alloca %struct.bitfield, align
872 // CHECK-NEXT:  bitcast
873 // CHECK-NEXT:  call void @llvm.memcpy
874 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
875 
876 TEST_UNINIT(bitfieldaligned, bitfieldaligned);
877 // CHECK-LABEL: @test_bitfieldaligned_uninit()
878 // CHECK:       %uninit = alloca %struct.bitfieldaligned, align
879 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
880 // PATTERN-LABEL: @test_bitfieldaligned_uninit()
881 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_bitfieldaligned_uninit.uninit
882 // PATTERN-O1: store i64 [[IPTR]], i64* %uninit, align 8
883 // ZERO-LABEL: @test_bitfieldaligned_uninit()
884 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
885 // ZERO-O1: store i64 0, i64* %uninit, align 8
886 
887 TEST_BRACES(bitfieldaligned, bitfieldaligned);
888 // CHECK-LABEL: @test_bitfieldaligned_braces()
889 // CHECK:       %braces = alloca %struct.bitfieldaligned, align
890 // CHECK-NEXT:  bitcast
891 // CHECK-NEXT:  call void @llvm.memcpy
892 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
893 
894 TEST_CUSTOM(bitfieldaligned, bitfieldaligned, { 4, 1  });
895 // CHECK-LABEL: @test_bitfieldaligned_custom()
896 // CHECK:       %custom = alloca %struct.bitfieldaligned, align
897 // CHECK-NEXT:  bitcast
898 // CHECK-NEXT:  call void @llvm.memcpy
899 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
900 
901 TEST_UNINIT(big, big);
902 // CHECK-LABEL: @test_big_uninit()
903 // CHECK:       %uninit = alloca %struct.big, align
904 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
905 // PATTERN-LABEL: @test_big_uninit()
906 // PATTERN: call void @llvm.memset{{.*}}, i8 [[I8]],
907 // ZERO-LABEL: @test_big_uninit()
908 // ZERO: call void @llvm.memset{{.*}}, i8 0,
909 
910 TEST_BRACES(big, big);
911 // CHECK-LABEL: @test_big_braces()
912 // CHECK:       %braces = alloca %struct.big, align [[ALIGN:[0-9]*]]
913 // CHECK-NEXT:  bitcast
914 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 104, i1 false)
915 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
916 
917 TEST_CUSTOM(big, big, { 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA, 0xAAAAAAAA });
918 // CHECK-LABEL: @test_big_custom()
919 // CHECK:       %custom = alloca %struct.big, align [[ALIGN:[0-9]*]]
920 // CHECK-NEXT:  bitcast
921 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 -86, i64 104, i1 false)
922 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
923 
924 TEST_UNINIT(arraytail, arraytail);
925 // CHECK-LABEL: @test_arraytail_uninit()
926 // CHECK:       %uninit = alloca %struct.arraytail, align
927 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
928 // PATTERN-LABEL: @test_arraytail_uninit()
929 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_arraytail_uninit.uninit
930 // PATTERN-O1: store i32 [[I32]], {{.*}} align 4
931 // ZERO-LABEL: @test_arraytail_uninit()
932 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
933 // ZERO-O1: store i32 0, {{.*}} align 4
934 
935 TEST_BRACES(arraytail, arraytail);
936 // CHECK-LABEL: @test_arraytail_braces()
937 // CHECK:       %braces = alloca %struct.arraytail, align [[ALIGN:[0-9]*]]
938 // CHECK-NEXT:  bitcast
939 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 4, i1 false)
940 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
941 
942 TEST_CUSTOM(arraytail, arraytail, { 0xdead });
943 // CHECK-LABEL: @test_arraytail_custom()
944 // CHECK:       %custom = alloca %struct.arraytail, align
945 // CHECK-NEXT:  bitcast
946 // CHECK-NEXT:  call void @llvm.memcpy
947 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
948 
949 
950 TEST_UNINIT(int0, int[0]);
951 // CHECK-LABEL: @test_int0_uninit()
952 // CHECK:       %uninit = alloca [0 x i32], align
953 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
954 // PATTERN-LABEL: @test_int0_uninit()
955 // PATTERN:       %uninit = alloca [0 x i32], align
956 // PATTERN-O0-NEXT:  call void @{{.*}}used{{.*}}%uninit)
957 // ZERO-LABEL: @test_int0_uninit()
958 // ZERO:       %uninit = alloca [0 x i32], align
959 // ZERO-O0-NEXT:  call void @{{.*}}used{{.*}}%uninit)
960 
961 TEST_BRACES(int0, int[0]);
962 // CHECK-LABEL: @test_int0_braces()
963 // CHECK:       %braces = alloca [0 x i32], align [[ALIGN:[0-9]*]]
964 // CHECK-NEXT:  bitcast
965 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
966 
967 TEST_UNINIT(int1, int[1]);
968 // CHECK-LABEL: @test_int1_uninit()
969 // CHECK:       %uninit = alloca [1 x i32], align [[ALIGN:[0-9]*]]
970 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
971 // PATTERN-LABEL: @test_int1_uninit()
972 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_int1_uninit.uninit
973 // PATTERN-O1: store i32 [[I32]], {{.*}} align 4
974 // ZERO-LABEL: @test_int1_uninit()
975 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
976 // ZERO-O1: store i32 0, {{.*}} align 4
977 
978 TEST_BRACES(int1, int[1]);
979 // CHECK-LABEL: @test_int1_braces()
980 // CHECK:       %braces = alloca [1 x i32], align [[ALIGN:[0-9]*]]
981 // CHECK-NEXT:  bitcast
982 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 4, i1 false)
983 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
984 
985 TEST_CUSTOM(int1, int[1], { 0x33333333 });
986 // CHECK-LABEL: @test_int1_custom()
987 // CHECK:       %custom = alloca [1 x i32], align
988 // CHECK-NEXT:  bitcast
989 // CHECK-NEXT:  call void @llvm.memcpy
990 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
991 
992 TEST_UNINIT(int64, int[64]);
993 // CHECK-LABEL: @test_int64_uninit()
994 // CHECK:       %uninit = alloca [64 x i32], align
995 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
996 // PATTERN-LABEL: @test_int64_uninit()
997 // PATTERN: call void @llvm.memset{{.*}}, i8 [[I8]],
998 // ZERO-LABEL: @test_int64_uninit()
999 // ZERO: call void @llvm.memset{{.*}}, i8 0,
1000 
1001 TEST_BRACES(int64, int[64]);
1002 // CHECK-LABEL: @test_int64_braces()
1003 // CHECK:       %braces = alloca [64 x i32], align [[ALIGN:[0-9]*]]
1004 // CHECK-NEXT:  bitcast
1005 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 256, i1 false)
1006 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1007 
1008 TEST_CUSTOM(int64, int[64], = { 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111, 0x11111111 });
1009 // CHECK-LABEL: @test_int64_custom()
1010 // CHECK:       %custom = alloca [64 x i32], align [[ALIGN:[0-9]*]]
1011 // CHECK-NEXT:  bitcast
1012 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 17, i64 256, i1 false)
1013 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1014 
1015 TEST_UNINIT(bool4, bool[4]);
1016 // CHECK-LABEL: @test_bool4_uninit()
1017 // CHECK:       %uninit = alloca [4 x i8], align
1018 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1019 // PATTERN-LABEL: @test_bool4_uninit()
1020 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_bool4_uninit.uninit
1021 // PATTERN-O1: store i32 [[I32]], i32* %uninit, align 4
1022 // ZERO-LABEL: @test_bool4_uninit()
1023 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1024 // ZERO-O1: store i32 0, i32* %uninit, align 4
1025 
1026 TEST_BRACES(bool4, bool[4]);
1027 // CHECK-LABEL: @test_bool4_braces()
1028 // CHECK:       %braces = alloca [4 x i8], align [[ALIGN:[0-9]*]]
1029 // CHECK-NEXT:  bitcast
1030 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 4, i1 false)
1031 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1032 
1033 TEST_CUSTOM(bool4, bool[4], { true, true, true, true });
1034 // CHECK-LABEL: @test_bool4_custom()
1035 // CHECK:       %custom = alloca [4 x i8], align
1036 // CHECK-NEXT:  bitcast
1037 // CHECK-NEXT:  call void @llvm.memcpy
1038 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1039 
1040 TEST_UNINIT(intptr4, int*[4]);
1041 // CHECK-LABEL:      @test_intptr4_uninit()
1042 // CHECK:            %uninit = alloca [4 x i32*], align
1043 // CHECK-NEXT:       call void @{{.*}}used{{.*}}%uninit)
1044 // PATTERN-O1-LABEL: @test_intptr4_uninit()
1045 // PATTERN-O1:  call void @llvm.memset.p0i8.i64(i8* nonnull align 16  dereferenceable(32) %{{[0-9*]}}, i8 -86, i64 32, i1 false)
1046 // ZERO-LABEL:       @test_intptr4_uninit()
1047 // ZERO:             call void @llvm.memset{{.*}}, i8 0,
1048 
1049 TEST_BRACES(intptr4, int*[4]);
1050 // CHECK-LABEL: @test_intptr4_braces()
1051 // CHECK:       %braces = alloca [4 x i32*], align [[ALIGN:[0-9]*]]
1052 // CHECK-NEXT:  bitcast
1053 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 32, i1 false)
1054 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1055 
1056   TEST_CUSTOM(intptr4, int*[4], = { (int*)0x22222222, (int*)0x22222222, (int*)0x22222222, (int*)0x22222222 });
1057 // CHECK-LABEL: @test_intptr4_custom()
1058 // CHECK:       %custom = alloca [4 x i32*], align
1059 // CHECK-NEXT:  bitcast
1060 // CHECK-NEXT:  call void @llvm.memcpy
1061 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1062 
1063 TEST_UNINIT(tailpad4, tailpad[4]);
1064 // CHECK-LABEL: @test_tailpad4_uninit()
1065 // CHECK:       %uninit = alloca [4 x %struct.tailpad], align
1066 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1067 // PATTERN-LABEL: @test_tailpad4_uninit()
1068 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_tailpad4_uninit.uninit
1069 // PATTERN-O1: bitcast
1070 // PATTERN-O1: call void @llvm.memset{{.*}}({{.*}}0, i8 [[I8]], i64 16
1071 // ZERO-LABEL: @test_tailpad4_uninit()
1072 // ZERO: call void @llvm.memset{{.*}}, i8 0,
1073 
1074 TEST_BRACES(tailpad4, tailpad[4]);
1075 // CHECK-LABEL: @test_tailpad4_braces()
1076 // CHECK:       %braces = alloca [4 x %struct.tailpad], align [[ALIGN:[0-9]*]]
1077 // CHECK-NEXT:  bitcast
1078 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 16, i1 false)
1079 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1080 
1081 TEST_CUSTOM(tailpad4, tailpad[4], { {257, 1}, {257, 1}, {257, 1}, {257, 1} });
1082 // CHECK-LABEL: @test_tailpad4_custom()
1083 // CHECK:       %custom = alloca [4 x %struct.tailpad], align
1084 // CHECK-NEXT:  bitcast
1085 // CHECK-NEXT:  call void @llvm.memcpy
1086 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1087 
1088 TEST_UNINIT(tailpad9, tailpad[9]);
1089 // CHECK-LABEL: @test_tailpad9_uninit()
1090 // CHECK:       %uninit = alloca [9 x %struct.tailpad], align
1091 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1092 // PATTERN-LABEL: @test_tailpad9_uninit()
1093 // PATTERN-O0: call void @llvm.memset{{.*}}, i8 [[I8]],
1094 // ZERO-LABEL: @test_tailpad9_uninit()
1095 // ZERO: call void @llvm.memset{{.*}}, i8 0,
1096 
1097 TEST_BRACES(tailpad9, tailpad[9]);
1098 // CHECK-LABEL: @test_tailpad9_braces()
1099 // CHECK:       %braces = alloca [9 x %struct.tailpad], align [[ALIGN:[0-9]*]]
1100 // CHECK-NEXT:  bitcast
1101 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 36, i1 false)
1102 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1103 
1104 TEST_CUSTOM(tailpad9, tailpad[9], { {257, 1}, {257, 1}, {257, 1}, {257, 1}, {257, 1}, {257, 1}, {257, 1}, {257, 1}, {257, 1} });
1105 // CHECK-LABEL: @test_tailpad9_custom()
1106 // CHECK:       %custom = alloca [9 x %struct.tailpad], align [[ALIGN:[0-9]*]]
1107 // CHECK-NEXT:  bitcast
1108 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 1, i64 36, i1 false)
1109 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1110 
1111 
1112 TEST_UNINIT(atomicbool, _Atomic(bool));
1113 // CHECK-LABEL: @test_atomicbool_uninit()
1114 // CHECK:       %uninit = alloca i8, align
1115 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1116 // PATTERN-LABEL: @test_atomicbool_uninit()
1117 // PATTERN: store i8 [[I8]], i8* %uninit, align 1
1118 // ZERO-LABEL: @test_atomicbool_uninit()
1119 // ZERO: store i8 0, i8* %uninit, align 1
1120 
1121 TEST_UNINIT(atomicint, _Atomic(int));
1122 // CHECK-LABEL: @test_atomicint_uninit()
1123 // CHECK:       %uninit = alloca i32, align
1124 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1125 // PATTERN-LABEL: @test_atomicint_uninit()
1126 // PATTERN: store i32 [[I32]], i32* %uninit, align 4
1127 // ZERO-LABEL: @test_atomicint_uninit()
1128 // ZERO: store i32 0, i32* %uninit, align 4
1129 
1130 TEST_UNINIT(atomicdouble, _Atomic(double));
1131 // CHECK-LABEL: @test_atomicdouble_uninit()
1132 // CHECK:       %uninit = alloca double, align
1133 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1134 // PATTERN-LABEL: @test_atomicdouble_uninit()
1135 // PATTERN: store double 0xFFFFFFFFFFFFFFFF, double* %uninit, align 8
1136 // ZERO-LABEL: @test_atomicdouble_uninit()
1137 // ZERO: store double 0.000000e+00, double* %uninit, align 8
1138 
1139 TEST_UNINIT(atomicnotlockfree, _Atomic(notlockfree));
1140 // CHECK-LABEL: @test_atomicnotlockfree_uninit()
1141 // CHECK:       %uninit = alloca %struct.notlockfree, align
1142 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1143 // PATTERN-LABEL: @test_atomicnotlockfree_uninit()
1144 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_atomicnotlockfree_uninit.uninit
1145 // PATTERN-O1: bitcast
1146 // PATTERN-O1: call void @llvm.memset{{.*}}({{.*}}, i8 [[I8]], i64 32
1147 // ZERO-LABEL: @test_atomicnotlockfree_uninit()
1148 // ZERO: call void @llvm.memset{{.*}}, i8 0,
1149 
1150 TEST_UNINIT(atomicpadded, _Atomic(padded));
1151 // CHECK-LABEL: @test_atomicpadded_uninit()
1152 // CHECK:       %uninit = alloca %struct.padded, align
1153 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1154 // PATTERN-LABEL: @test_atomicpadded_uninit()
1155 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_atomicpadded_uninit.uninit
1156 // PATTERN-O1: store i64 [[IPTR]], i64* %uninit, align 8
1157 // ZERO-LABEL: @test_atomicpadded_uninit()
1158 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1159 // ZERO-O1: store i64 0, i64* %uninit, align 8
1160 
1161 TEST_UNINIT(atomictailpad, _Atomic(tailpad));
1162 // CHECK-LABEL: @test_atomictailpad_uninit()
1163 // CHECK:       %uninit = alloca %struct.tailpad, align
1164 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1165 // PATTERN-LABEL: @test_atomictailpad_uninit()
1166 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_atomictailpad_uninit.uninit
1167 // ZERO-LABEL: @test_atomictailpad_uninit()
1168 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1169 // ZERO-O1: store i32 0, i32* %uninit, align 4
1170 
1171 TEST_UNINIT(complexfloat, _Complex float);
1172 // CHECK-LABEL: @test_complexfloat_uninit()
1173 // CHECK:       %uninit = alloca { float, float }, align
1174 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1175 // PATTERN-LABEL: @test_complexfloat_uninit()
1176 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_complexfloat_uninit.uninit
1177 // PATTERN-O1:  %[[F1:[^ ]*]] = getelementptr inbounds {{.*}}%uninit, i64 0, i32 0
1178 // PATTERN-O1  store float 0xFFFFFFFFE0000000, float* %[[F1]], align
1179 // PATTERN-O1:  %[[F2:[^ ]*]] = getelementptr inbounds {{.*}}%uninit, i64 0, i32 1
1180 // PATTERN-O1: store float 0xFFFFFFFFE0000000, float* %[[F2]], align
1181 
1182 // ZERO-LABEL: @test_complexfloat_uninit()
1183 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1184 // ZERO-O1: store i64 0, i64* %uninit, align 8
1185 
1186 TEST_BRACES(complexfloat, _Complex float);
1187 // CHECK-LABEL: @test_complexfloat_braces()
1188 // CHECK:       %braces = alloca { float, float }, align [[ALIGN:[0-9]*]]
1189 // CHECK-NEXT:  %[[R:[^ ]*]] = getelementptr inbounds { float, float }, { float, float }* %braces, i32 0, i32 0
1190 // CHECK-NEXT:  %[[I:[^ ]*]] = getelementptr inbounds { float, float }, { float, float }* %braces, i32 0, i32 1
1191 // CHECK-NEXT:  store float 0.000000e+00, float* %[[R]], align [[ALIGN]]
1192 // CHECK-NEXT:  store float 0.000000e+00, float* %[[I]], align [[ALIGN]]
1193 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1194 
1195 TEST_CUSTOM(complexfloat, _Complex float, { 3.1415926535897932384626433, 3.1415926535897932384626433 });
1196 // CHECK-LABEL: @test_complexfloat_custom()
1197 // CHECK:       %custom = alloca { float, float }, align [[ALIGN:[0-9]*]]
1198 // CHECK-NEXT:  %[[R:[^ ]*]] = getelementptr inbounds { float, float }, { float, float }* %custom, i32 0, i32 0
1199 // CHECK-NEXT:  %[[I:[^ ]*]] = getelementptr inbounds { float, float }, { float, float }* %custom, i32 0, i32 1
1200 // CHECK-NEXT:  store float 0x400921FB60000000, float* %[[R]], align [[ALIGN]]
1201 // CHECK-NEXT:  store float 0x400921FB60000000, float* %[[I]], align [[ALIGN]]
1202 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1203 
1204 TEST_UNINIT(complexdouble, _Complex double);
1205 // CHECK-LABEL: @test_complexdouble_uninit()
1206 // CHECK:       %uninit = alloca { double, double }, align
1207 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1208 // PATTERN-LABEL: @test_complexdouble_uninit()
1209 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_complexdouble_uninit.uninit
1210 // ZERO-LABEL: @test_complexdouble_uninit()
1211 // ZERO: call void @llvm.memset{{.*}}, i8 0,
1212 
1213 TEST_BRACES(complexdouble, _Complex double);
1214 // CHECK-LABEL: @test_complexdouble_braces()
1215 // CHECK:       %braces = alloca { double, double }, align [[ALIGN:[0-9]*]]
1216 // CHECK-NEXT:  %[[R:[^ ]*]] = getelementptr inbounds { double, double }, { double, double }* %braces, i32 0, i32 0
1217 // CHECK-NEXT:  %[[I:[^ ]*]] = getelementptr inbounds { double, double }, { double, double }* %braces, i32 0, i32 1
1218 // CHECK-NEXT:  store double 0.000000e+00, double* %[[R]], align [[ALIGN]]
1219 // CHECK-NEXT:  store double 0.000000e+00, double* %[[I]], align [[ALIGN]]
1220 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1221 
1222 TEST_CUSTOM(complexdouble, _Complex double, { 3.1415926535897932384626433, 3.1415926535897932384626433 });
1223 // CHECK-LABEL: @test_complexdouble_custom()
1224 // CHECK:       %custom = alloca { double, double }, align [[ALIGN:[0-9]*]]
1225 // CHECK-NEXT:  %[[R:[^ ]*]] = getelementptr inbounds { double, double }, { double, double }* %custom, i32 0, i32 0
1226 // CHECK-NEXT:  %[[I:[^ ]*]] = getelementptr inbounds { double, double }, { double, double }* %custom, i32 0, i32 1
1227 // CHECK-NEXT:  store double 0x400921FB54442D18, double* %[[R]], align [[ALIGN]]
1228 // CHECK-NEXT:  store double 0x400921FB54442D18, double* %[[I]], align [[ALIGN]]
1229 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1230 
1231 
1232 TEST_UNINIT(volatileint, volatile int);
1233 // CHECK-LABEL: @test_volatileint_uninit()
1234 // CHECK:       %uninit = alloca i32, align
1235 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1236 // PATTERN-LABEL: @test_volatileint_uninit()
1237 // PATTERN: store volatile i32 [[I32]], i32* %uninit, align 4
1238 // ZERO-LABEL: @test_volatileint_uninit()
1239 // ZERO: store volatile i32 0, i32* %uninit, align 4
1240 
1241 TEST_BRACES(volatileint, volatile int);
1242 // CHECK-LABEL: @test_volatileint_braces()
1243 // CHECK:       %braces = alloca i32, align [[ALIGN:[0-9]*]]
1244 // CHECK-NEXT:  store volatile i32 0, i32* %braces, align [[ALIGN]]
1245 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1246 
1247 TEST_UNINIT(semivolatile, semivolatile);
1248 // CHECK-LABEL: @test_semivolatile_uninit()
1249 // CHECK:       %uninit = alloca %struct.semivolatile, align
1250 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1251 // PATTERN-LABEL: @test_semivolatile_uninit()
1252 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_semivolatile_uninit.uninit
1253 // ZERO-LABEL: @test_semivolatile_uninit()
1254 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1255 // ZERO-O1: store i64 0, i64* %uninit, align 8
1256 
1257 TEST_BRACES(semivolatile, semivolatile);
1258 // CHECK-LABEL: @test_semivolatile_braces()
1259 // CHECK:       %braces = alloca %struct.semivolatile, align [[ALIGN:[0-9]*]]
1260 // CHECK-NEXT:  bitcast
1261 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 8, i1 false)
1262 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1263 
1264 TEST_CUSTOM(semivolatile, semivolatile, { 0x44444444, 0x44444444 });
1265 // CHECK-LABEL: @test_semivolatile_custom()
1266 // CHECK:       %custom = alloca %struct.semivolatile, align
1267 // CHECK-O0:  bitcast
1268 // CHECK-O0:  call void @llvm.memcpy
1269 // CHECK-O0:  call void @{{.*}}used{{.*}}%custom)
1270 // CHECK-O1:  store i64 4919131752989213764, i64* %custom, align 8
1271 
1272 TEST_UNINIT(semivolatileinit, semivolatileinit);
1273 // CHECK-LABEL: @test_semivolatileinit_uninit()
1274 // CHECK:       %uninit = alloca %struct.semivolatileinit, align
1275 // CHECK-NEXT:  call void @{{.*}}semivolatileinit{{.*}}%uninit)
1276 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1277 
1278 TEST_BRACES(semivolatileinit, semivolatileinit);
1279 // CHECK-LABEL: @test_semivolatileinit_braces()
1280 // CHECK:       %braces = alloca %struct.semivolatileinit, align [[ALIGN:[0-9]*]]
1281 // CHECK-NEXT:  %[[I:[^ ]*]] = getelementptr inbounds %struct.semivolatileinit, %struct.semivolatileinit* %braces, i32 0, i32 0
1282 // CHECK-NEXT:  store i32 286331153, i32* %[[I]], align [[ALIGN]]
1283 // CHECK-NEXT:  %[[VI:[^ ]*]] = getelementptr inbounds %struct.semivolatileinit, %struct.semivolatileinit* %braces, i32 0, i32 1
1284 // CHECK-NEXT:  store volatile i32 286331153, i32* %[[VI]], align [[ALIGN]]
1285 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1286 
1287 TEST_CUSTOM(semivolatileinit, semivolatileinit, { 0x44444444, 0x44444444 });
1288 // CHECK-LABEL: @test_semivolatileinit_custom()
1289 // CHECK:       %custom = alloca %struct.semivolatileinit, align [[ALIGN:[0-9]*]]
1290 // CHECK-NEXT:  %[[I:[^ ]*]] = getelementptr inbounds %struct.semivolatileinit, %struct.semivolatileinit* %custom, i32 0, i32 0
1291 // CHECK-NEXT:  store i32 1145324612, i32* %[[I]], align [[ALIGN]]
1292 // CHECK-NEXT:  %[[VI:[^ ]*]] = getelementptr inbounds %struct.semivolatileinit, %struct.semivolatileinit* %custom, i32 0, i32 1
1293 // CHECK-NEXT:  store volatile i32 1145324612, i32* %[[VI]], align [[ALIGN]]
1294 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1295 
1296 
1297 TEST_UNINIT(base, base);
1298 // CHECK-LABEL: @test_base_uninit()
1299 // CHECK:       %uninit = alloca %struct.base, align
1300 // CHECK-NEXT:  call void @{{.*}}base{{.*}}%uninit)
1301 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1302 // PATTERN-LABEL: @test_base_uninit()
1303 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_base_uninit.uninit
1304 // ZERO-LABEL: @test_base_uninit()
1305 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1306 // ZERO-O1-LEGACY: store i64 0, {{.*}} align 8
1307 // ZERO-O1-NEWPM: store i32 (...)** bitcast (i8** getelementptr inbounds ({ [4 x i8*] }, { [4 x i8*] }* @_ZTV4base, i64 0, inrange i32 0, i64 2) to i32 (...)**), {{.*}}, align 8
1308 
1309 TEST_BRACES(base, base);
1310 // CHECK-LABEL: @test_base_braces()
1311 // CHECK:       %braces = alloca %struct.base, align [[ALIGN:[0-9]*]]
1312 // CHECK-NEXT:  bitcast
1313 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 8, i1 false)
1314 // CHECK-NEXT:  call void @{{.*}}base{{.*}}%braces)
1315 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1316 
1317 TEST_UNINIT(derived, derived);
1318 // CHECK-LABEL: @test_derived_uninit()
1319 // CHECK:       %uninit = alloca %struct.derived, align
1320 // CHECK-NEXT:  call void @{{.*}}derived{{.*}}%uninit)
1321 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1322 // PATTERN-LABEL: @test_derived_uninit()
1323 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_derived_uninit.uninit
1324 // ZERO-LABEL: @test_derived_uninit()
1325 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1326 // ZERO-O1-LEGACY: store i64 0, {{.*}} align 8
1327 // ZERO-O1-NEWPM: store i32 (...)** bitcast (i8** getelementptr inbounds ({ [4 x i8*] }, { [4 x i8*] }* @_ZTV7derived, i64 0, inrange i32 0, i64 2) to i32 (...)**), {{.*}} align 8
1328 
1329 TEST_BRACES(derived, derived);
1330 // CHECK-LABEL: @test_derived_braces()
1331 // CHECK:       %braces = alloca %struct.derived, align [[ALIGN:[0-9]*]]
1332 // CHECK-NEXT:  bitcast
1333 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 8, i1 false)
1334 // CHECK-NEXT:  call void @{{.*}}derived{{.*}}%braces)
1335 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1336 
1337 TEST_UNINIT(virtualderived, virtualderived);
1338 // CHECK-LABEL: @test_virtualderived_uninit()
1339 // CHECK:       %uninit = alloca %struct.virtualderived, align
1340 // CHECK-NEXT:  call void @{{.*}}virtualderived{{.*}}%uninit)
1341 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1342 // PATTERN-LABEL: @test_virtualderived_uninit()
1343 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_virtualderived_uninit.uninit
1344 // ZERO-LABEL: @test_virtualderived_uninit()
1345 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1346 // ZERO-O1-LEGACY: call void @llvm.memset{{.*}}, i8 0,
1347 // ZERO-O1-NEWPM: call void @llvm.memset{{.*}}, i8 0,
1348 
1349 TEST_BRACES(virtualderived, virtualderived);
1350 // CHECK-LABEL: @test_virtualderived_braces()
1351 // CHECK:       %braces = alloca %struct.virtualderived, align [[ALIGN:[0-9]*]]
1352 // CHECK-NEXT:  bitcast
1353 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 16, i1 false)
1354 // CHECK-NEXT:  call void @{{.*}}virtualderived{{.*}}%braces)
1355 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1356 
1357 
1358 TEST_UNINIT(matching, matching);
1359 // CHECK-LABEL: @test_matching_uninit()
1360 // CHECK:       %uninit = alloca %union.matching, align
1361 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1362 // PATTERN-LABEL: @test_matching_uninit()
1363 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_matching_uninit.uninit
1364 // ZERO-LABEL: @test_matching_uninit()
1365 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1366 // ZERO-O1: store i32 0, {{.*}} align 4
1367 
1368 TEST_BRACES(matching, matching);
1369 // CHECK-LABEL: @test_matching_braces()
1370 // CHECK:       %braces = alloca %union.matching, align [[ALIGN:[0-9]*]]
1371 // CHECK-NEXT:  bitcast
1372 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 4, i1 false)
1373 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1374 
1375 TEST_CUSTOM(matching, matching, { .f = 0xf00f });
1376 // CHECK-LABEL: @test_matching_custom()
1377 // CHECK:       %custom = alloca %union.matching, align
1378 // CHECK-O0:  bitcast
1379 // CHECK-O0:  call void @llvm.memcpy
1380 // CHECK-O0:  call void @{{.*}}used{{.*}}%custom)
1381 // CHECK-O1:  getelementptr
1382 // CHECK-O1:  store i32 1198526208, i32* {{.*}}, align 4
1383 
1384 TEST_UNINIT(matchingreverse, matchingreverse);
1385 // CHECK-LABEL: @test_matchingreverse_uninit()
1386 // CHECK:       %uninit = alloca %union.matchingreverse, align
1387 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1388 // PATTERN-LABEL: @test_matchingreverse_uninit()
1389 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_matchingreverse_uninit.uninit
1390 // PATTERN-O1: store float 0xFFFFFFFFE0000000
1391 // ZERO-LABEL: @test_matchingreverse_uninit()
1392 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1393 // ZERO-O1: store i32 0, {{.*}} align 4
1394 
1395 TEST_BRACES(matchingreverse, matchingreverse);
1396 // CHECK-LABEL: @test_matchingreverse_braces()
1397 // CHECK:       %braces = alloca %union.matchingreverse, align [[ALIGN:[0-9]*]]
1398 // CHECK-NEXT:  bitcast
1399 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 4, i1 false)
1400 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1401 
1402 TEST_CUSTOM(matchingreverse, matchingreverse, { .i = 0xf00f });
1403 // CHECK-LABEL: @test_matchingreverse_custom()
1404 // CHECK:       %custom = alloca %union.matchingreverse, align
1405 // CHECK-O0:    bitcast
1406 // CHECK-O0:    call void @llvm.memcpy
1407 // CHECK-O0:    call void @{{.*}}used{{.*}}%custom)
1408 // CHECK-O1:    store i32 61455, i32* %1, align 4
1409 
1410 TEST_UNINIT(unmatched, unmatched);
1411 // CHECK-LABEL: @test_unmatched_uninit()
1412 // CHECK:       %uninit = alloca %union.unmatched, align
1413 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1414 // PATTERN-LABEL: @test_unmatched_uninit()
1415 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_unmatched_uninit.uninit
1416 // ZERO-LABEL: @test_unmatched_uninit()
1417 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1418 // ZERO-O1: store i32 0, {{.*}} align 4
1419 
1420 TEST_BRACES(unmatched, unmatched);
1421 // CHECK-LABEL: @test_unmatched_braces()
1422 // CHECK:       %braces = alloca %union.unmatched, align
1423 // CHECK-NEXT:  bitcast
1424 // CHECK-NEXT:  call void @llvm.memcpy
1425 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1426 
1427 TEST_CUSTOM(unmatched, unmatched, { .i = 0x3badbeef });
1428 // CHECK-LABEL: @test_unmatched_custom()
1429 // CHECK:       %custom = alloca %union.unmatched, align
1430 // CHECK-O0:    bitcast
1431 // CHECK-O0:    call void @llvm.memcpy
1432 // CHECK-O0:    call void @{{.*}}used{{.*}}%custom)
1433 // CHECK-O1:    store i32 1001242351, i32* {{.*}}, align 4
1434 
1435 TEST_UNINIT(unmatchedreverse, unmatchedreverse);
1436 // CHECK-LABEL: @test_unmatchedreverse_uninit()
1437 // CHECK:       %uninit = alloca %union.unmatchedreverse, align
1438 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1439 // PATTERN-LABEL: @test_unmatchedreverse_uninit()
1440 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_unmatchedreverse_uninit.uninit
1441 // ZERO-LABEL: @test_unmatchedreverse_uninit()
1442 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1443 // ZERO-O1:  store i32 0, {{.*}} align 4
1444 
1445 TEST_BRACES(unmatchedreverse, unmatchedreverse);
1446 // CHECK-LABEL: @test_unmatchedreverse_braces()
1447 // CHECK:       %braces = alloca %union.unmatchedreverse, align [[ALIGN:[0-9]*]]
1448 // CHECK-NEXT:  bitcast
1449 // CHECK-NEXT:  call void @llvm.memset{{.*}}(i8* align [[ALIGN]] %{{.*}}, i8 0, i64 4, i1 false)
1450 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1451 
1452 TEST_CUSTOM(unmatchedreverse, unmatchedreverse, { .c = 42  });
1453 // CHECK-LABEL: @test_unmatchedreverse_custom()
1454 // CHECK:       %custom = alloca %union.unmatchedreverse, align
1455 // CHECK-O0:    bitcast
1456 // CHECK-O0:    call void @llvm.memcpy
1457 // CHECK-O0:    call void @{{.*}}used{{.*}}%custom)
1458 // PATTERN-O1:  store i32 -1431655894, i32* {{.*}}, align 4
1459 // ZERO-O1:     store i32 42, i32* {{.*}}, align 4
1460 
1461 TEST_UNINIT(unmatchedfp, unmatchedfp);
1462 // CHECK-LABEL: @test_unmatchedfp_uninit()
1463 // CHECK:       %uninit = alloca %union.unmatchedfp, align
1464 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1465 // PATTERN-LABEL: @test_unmatchedfp_uninit()
1466 // PATTERN-O0: call void @llvm.memcpy{{.*}} @__const.test_unmatchedfp_uninit.uninit
1467 // ZERO-LABEL: @test_unmatchedfp_uninit()
1468 // ZERO-O0: call void @llvm.memset{{.*}}, i8 0,
1469 // ZERO-O1: store i64 0, {{.*}} align 8
1470 
1471 TEST_BRACES(unmatchedfp, unmatchedfp);
1472 // CHECK-LABEL: @test_unmatchedfp_braces()
1473 // CHECK:       %braces = alloca %union.unmatchedfp, align
1474 // CHECK-NEXT:  bitcast
1475 // CHECK-NEXT:  call void @llvm.memcpy
1476 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1477 
1478 TEST_CUSTOM(unmatchedfp, unmatchedfp, { .d = 3.1415926535897932384626433 });
1479 // CHECK-LABEL: @test_unmatchedfp_custom()
1480 // CHECK:       %custom = alloca %union.unmatchedfp, align
1481 // CHECK-O0:    bitcast
1482 // CHECK-O0:    call void @llvm.memcpy
1483 // CHECK-O0:    call void @{{.*}}used{{.*}}%custom)
1484 // CHECK-O1:    store i64 4614256656552045848, i64* %1, align 8
1485 
1486 TEST_UNINIT(emptyenum, emptyenum);
1487 // CHECK-LABEL: @test_emptyenum_uninit()
1488 // CHECK:       %uninit = alloca i32, align
1489 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1490 // PATTERN-LABEL: @test_emptyenum_uninit()
1491 // PATTERN: store i32 [[I32]], i32* %uninit, align 4
1492 // ZERO-LABEL: @test_emptyenum_uninit()
1493 // ZERO: store i32 0, i32* %uninit, align 4
1494 
1495 TEST_BRACES(emptyenum, emptyenum);
1496 // CHECK-LABEL: @test_emptyenum_braces()
1497 // CHECK:       %braces = alloca i32, align [[ALIGN:[0-9]*]]
1498 // CHECK-NEXT:  store i32 0, i32* %braces, align [[ALIGN]]
1499 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1500 
1501 TEST_CUSTOM(emptyenum, emptyenum, { (emptyenum)42 });
1502 // CHECK-LABEL: @test_emptyenum_custom()
1503 // CHECK:       %custom = alloca i32, align [[ALIGN:[0-9]*]]
1504 // CHECK-NEXT:  store i32 42, i32* %custom, align [[ALIGN]]
1505 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1506 
1507 TEST_UNINIT(smallenum, smallenum);
1508 // CHECK-LABEL: @test_smallenum_uninit()
1509 // CHECK:       %uninit = alloca i32, align
1510 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1511 // PATTERN-LABEL: @test_smallenum_uninit()
1512 // PATTERN: store i32 [[I32]], i32* %uninit, align 4
1513 // ZERO-LABEL: @test_smallenum_uninit()
1514 // ZERO: store i32 0, i32* %uninit, align 4
1515 
1516 TEST_BRACES(smallenum, smallenum);
1517 // CHECK-LABEL: @test_smallenum_braces()
1518 // CHECK:       %braces = alloca i32, align [[ALIGN:[0-9]*]]
1519 // CHECK-NEXT:  store i32 0, i32* %braces, align [[ALIGN]]
1520 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1521 
1522 TEST_CUSTOM(smallenum, smallenum, { (smallenum)42 });
1523 // CHECK-LABEL: @test_smallenum_custom()
1524 // CHECK:       %custom = alloca i32, align [[ALIGN:[0-9]*]]
1525 // CHECK-NEXT:  store i32 42, i32* %custom, align [[ALIGN]]
1526 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1527 
1528 
1529 TEST_UNINIT(intvec16, int  __attribute__((vector_size(16))));
1530 // CHECK-LABEL: @test_intvec16_uninit()
1531 // CHECK:       %uninit = alloca <4 x i32>, align
1532 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1533 // PATTERN-LABEL: @test_intvec16_uninit()
1534 // PATTERN: store <4 x i32> <i32 [[I32]], i32 [[I32]], i32 [[I32]], i32 [[I32]]>, <4 x i32>* %uninit, align 16
1535 // ZERO-LABEL: @test_intvec16_uninit()
1536 // ZERO: store <4 x i32> zeroinitializer, <4 x i32>* %uninit, align 16
1537 
1538 TEST_BRACES(intvec16, int  __attribute__((vector_size(16))));
1539 // CHECK-LABEL: @test_intvec16_braces()
1540 // CHECK:       %braces = alloca <4 x i32>, align [[ALIGN:[0-9]*]]
1541 // CHECK-NEXT:  store <4 x i32> zeroinitializer, <4 x i32>* %braces, align [[ALIGN]]
1542 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1543 
1544 TEST_CUSTOM(intvec16, int  __attribute__((vector_size(16))), { 0x44444444, 0x44444444, 0x44444444, 0x44444444 });
1545 // CHECK-LABEL: @test_intvec16_custom()
1546 // CHECK:       %custom = alloca <4 x i32>, align [[ALIGN:[0-9]*]]
1547 // CHECK-NEXT:  store <4 x i32> <i32 1145324612, i32 1145324612, i32 1145324612, i32 1145324612>, <4 x i32>* %custom, align [[ALIGN]]
1548 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1549 
1550 TEST_UNINIT(longlongvec32, long long  __attribute__((vector_size(32))));
1551 // CHECK-LABEL: @test_longlongvec32_uninit()
1552 // CHECK:       %uninit = alloca <4 x i64>, align
1553 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1554 // PATTERN-LABEL: @test_longlongvec32_uninit()
1555 // PATTERN: store <4 x i64> <i64 [[I64]], i64 [[I64]], i64 [[I64]], i64 [[I64]]>, <4 x i64>* %uninit, align 32
1556 // ZERO-LABEL: @test_longlongvec32_uninit()
1557 // ZERO: store <4 x i64> zeroinitializer, <4 x i64>* %uninit, align 32
1558 
1559 TEST_BRACES(longlongvec32, long long  __attribute__((vector_size(32))));
1560 // CHECK-LABEL: @test_longlongvec32_braces()
1561 // CHECK:       %braces = alloca <4 x i64>, align [[ALIGN:[0-9]*]]
1562 // CHECK-NEXT:  store <4 x i64> zeroinitializer, <4 x i64>* %braces, align [[ALIGN]]
1563 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1564 
1565 TEST_CUSTOM(longlongvec32, long long  __attribute__((vector_size(32))), { 0x3333333333333333, 0x3333333333333333, 0x3333333333333333, 0x3333333333333333 });
1566 // CHECK-LABEL: @test_longlongvec32_custom()
1567 // CHECK:       %custom = alloca <4 x i64>, align [[ALIGN:[0-9]*]]
1568 // CHECK-NEXT:  store <4 x i64> <i64 3689348814741910323, i64 3689348814741910323, i64 3689348814741910323, i64 3689348814741910323>, <4 x i64>* %custom, align [[ALIGN]]
1569 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1570 
1571 TEST_UNINIT(floatvec16, float  __attribute__((vector_size(16))));
1572 // CHECK-LABEL: @test_floatvec16_uninit()
1573 // CHECK:       %uninit = alloca <4 x float>, align
1574 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1575 // PATTERN-LABEL: @test_floatvec16_uninit()
1576 // PATTERN: store <4 x float> <float 0xFFFFFFFFE0000000, float 0xFFFFFFFFE0000000, float 0xFFFFFFFFE0000000, float 0xFFFFFFFFE0000000>, <4 x float>* %uninit, align 16
1577 // ZERO-LABEL: @test_floatvec16_uninit()
1578 // ZERO: store <4 x float> zeroinitializer, <4 x float>* %uninit, align 16
1579 
1580 TEST_BRACES(floatvec16, float  __attribute__((vector_size(16))));
1581 // CHECK-LABEL: @test_floatvec16_braces()
1582 // CHECK:       %braces = alloca <4 x float>, align [[ALIGN:[0-9]*]]
1583 // CHECK-NEXT:  store <4 x float> zeroinitializer, <4 x float>* %braces, align [[ALIGN]]
1584 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1585 
1586 TEST_CUSTOM(floatvec16, float  __attribute__((vector_size(16))), { 3.1415926535897932384626433, 3.1415926535897932384626433, 3.1415926535897932384626433, 3.1415926535897932384626433 });
1587 // CHECK-LABEL: @test_floatvec16_custom()
1588 // CHECK:       %custom = alloca <4 x float>, align [[ALIGN:[0-9]*]]
1589 // CHECK-NEXT:  store <4 x float> <float 0x400921FB60000000, float 0x400921FB60000000, float 0x400921FB60000000, float 0x400921FB60000000>, <4 x float>* %custom, align [[ALIGN]]
1590 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1591 
1592 TEST_UNINIT(doublevec32, double  __attribute__((vector_size(32))));
1593 // CHECK-LABEL: @test_doublevec32_uninit()
1594 // CHECK:       %uninit = alloca <4 x double>, align
1595 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%uninit)
1596 // PATTERN-LABEL: @test_doublevec32_uninit()
1597 // PATTERN: store <4 x double> <double 0xFFFFFFFFFFFFFFFF, double 0xFFFFFFFFFFFFFFFF, double 0xFFFFFFFFFFFFFFFF, double 0xFFFFFFFFFFFFFFFF>, <4 x double>* %uninit, align 32
1598 // ZERO-LABEL: @test_doublevec32_uninit()
1599 // ZERO: store <4 x double> zeroinitializer, <4 x double>* %uninit, align 32
1600 
1601 TEST_BRACES(doublevec32, double  __attribute__((vector_size(32))));
1602 // CHECK-LABEL: @test_doublevec32_braces()
1603 // CHECK:       %braces = alloca <4 x double>, align [[ALIGN:[0-9]*]]
1604 // CHECK-NEXT:  store <4 x double> zeroinitializer, <4 x double>* %braces, align [[ALIGN]]
1605 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%braces)
1606 
1607 TEST_CUSTOM(doublevec32, double  __attribute__((vector_size(32))), { 3.1415926535897932384626433, 3.1415926535897932384626433, 3.1415926535897932384626433, 3.1415926535897932384626433 });
1608 // CHECK-LABEL: @test_doublevec32_custom()
1609 // CHECK:       %custom = alloca <4 x double>, align [[ALIGN:[0-9]*]]
1610 // CHECK-NEXT:  store <4 x double> <double 0x400921FB54442D18, double 0x400921FB54442D18, double 0x400921FB54442D18, double 0x400921FB54442D18>, <4 x double>* %custom, align [[ALIGN]]
1611 // CHECK-NEXT:  call void @{{.*}}used{{.*}}%custom)
1612 
1613 
1614 } // extern "C"
1615