forked from OSchip/llvm-project
258 lines
8.1 KiB
C
258 lines
8.1 KiB
C
// RUN: %clang_cc1 -triple i386-unknown-unknown -emit-llvm %s -o - | FileCheck %s
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struct I { int k[3]; };
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struct M { struct I o[2]; };
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struct M v1[1] = { [0].o[0 ... 1].k[0 ... 1] = 4, 5 };
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unsigned v2[2][3] = {[0 ... 1][0 ... 1] = 2222, 3333};
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// CHECK-DAG: %struct.M = type { [2 x %struct.I] }
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// CHECK-DAG: %struct.I = type { [3 x i32] }
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// CHECK-DAG: [1 x %struct.M] [%struct.M { [2 x %struct.I] [%struct.I { [3 x i32] [i32 4, i32 4, i32 0] }, %struct.I { [3 x i32] [i32 4, i32 4, i32 5] }] }],
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// CHECK-DAG: [2 x [3 x i32]] {{[[][[]}}3 x i32] [i32 2222, i32 2222, i32 0], [3 x i32] [i32 2222, i32 2222, i32 3333]],
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// CHECK-DAG: [[INIT14:.*]] = private global [16 x i32] [i32 0, i32 0, i32 0, i32 0, i32 0, i32 17, i32 17, i32 17, i32 17, i32 17, i32 17, i32 17, i32 0, i32 0, i32 0, i32 0], align 4
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void f1(void) {
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// Scalars in braces.
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int a = { 1 };
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}
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void f2(void) {
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int a[2][2] = { { 1, 2 }, { 3, 4 } };
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int b[3][3] = { { 1, 2 }, { 3, 4 } };
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int *c[2] = { &a[1][1], &b[2][2] };
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int *d[2][2] = { {&a[1][1], &b[2][2]}, {&a[0][0], &b[1][1]} };
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int *e[3][3] = { {&a[1][1], &b[2][2]}, {&a[0][0], &b[1][1]} };
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char ext[3][3] = {".Y",".U",".V"};
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}
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typedef void (* F)(void);
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extern void foo(void);
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struct S { F f; };
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void f3(void) {
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struct S a[1] = { { foo } };
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}
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// Constants
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// CHECK-DAG: @g3 ={{.*}} constant i32 10
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// CHECK-DAG: @f4.g4 = internal constant i32 12
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const int g3 = 10;
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int f4(void) {
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static const int g4 = 12;
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return g4;
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}
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// PR6537
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typedef union vec3 {
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struct { double x, y, z; };
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double component[3];
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} vec3;
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vec3 f5(vec3 value) {
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return (vec3) {{
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.x = value.x
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}};
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}
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// rdar://problem/8154689
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void f6(void) {
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int x;
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long ids[] = { (long) &x };
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}
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// CHECK-DAG: @test7 ={{.*}} global{{.*}}{ i32 0, [4 x i8] c"bar\00" }
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// PR8217
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struct a7 {
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int b;
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char v[];
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};
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struct a7 test7 = { .b = 0, .v = "bar" };
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// CHECK-DAG: @huge_array ={{.*}} global {{.*}} <{ i32 1, i32 0, i32 2, i32 0, i32 3, [999999995 x i32] zeroinitializer }>
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int huge_array[1000000000] = {1, 0, 2, 0, 3, 0, 0, 0};
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// CHECK-DAG: @huge_struct ={{.*}} global {{.*}} { i32 1, <{ i32, [999999999 x i32] }> <{ i32 2, [999999999 x i32] zeroinitializer }> }
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struct Huge {
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int a;
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int arr[1000 * 1000 * 1000];
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} huge_struct = {1, {2, 0, 0, 0}};
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// CHECK-DAG: @large_array_with_zeroes ={{.*}} constant <{ [21 x i8], [979 x i8] }> <{ [21 x i8] c"abc\01\02\03xyzzy\00\00\00\00\00\00\00\00\00q", [979 x i8] zeroinitializer }>
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const char large_array_with_zeroes[1000] = {
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'a', 'b', 'c', 1, 2, 3, 'x', 'y', 'z', 'z', 'y', [20] = 'q'
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};
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char global;
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// CHECK-DAG: @large_array_with_zeroes_2 ={{.*}} global <{ [10 x i8*], [90 x i8*] }> <{ [10 x i8*] [i8* null, i8* null, i8* null, i8* null, i8* null, i8* null, i8* null, i8* null, i8* null, i8* @global], [90 x i8*] zeroinitializer }>
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const void *large_array_with_zeroes_2[100] = {
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[9] = &global
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};
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// CHECK-DAG: @large_array_with_zeroes_3 ={{.*}} global <{ [10 x i8*], [990 x i8*] }> <{ [10 x i8*] [i8* null, i8* null, i8* null, i8* null, i8* null, i8* null, i8* null, i8* null, i8* null, i8* @global], [990 x i8*] zeroinitializer }>
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const void *large_array_with_zeroes_3[1000] = {
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[9] = &global
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};
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// PR279 comment #3
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char test8(int X) {
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char str[100000] = "abc"; // tail should be memset.
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return str[X];
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// CHECK-LABEL: @test8(
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// CHECK: call void @llvm.memset
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// CHECK: store i8 97, i8* %{{[0-9]*}}, align 1
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// CHECK: store i8 98, i8* %{{[0-9]*}}, align 1
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// CHECK: store i8 99, i8* %{{[0-9]*}}, align 1
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// CHECK-NOT: getelementptr
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// CHECK: load
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}
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void bar(void*);
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// PR279
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void test9(int X) {
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int Arr[100] = { X }; // Should use memset
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bar(Arr);
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// CHECK-LABEL: @test9(
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// CHECK: call void @llvm.memset
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// CHECK-NOT: store i32 0
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// CHECK: call void @bar
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}
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struct a {
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int a, b, c, d, e, f, g, h, i, j, k, *p;
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};
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struct b {
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struct a a,b,c,d,e,f,g;
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};
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void test10(int X) {
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struct b S = { .a.a = X, .d.e = X, .f.e = 0, .f.f = 0, .f.p = 0 };
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bar(&S);
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// CHECK-LABEL: @test10(
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// CHECK: call void @llvm.memset
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// CHECK-NOT: store i32 0
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// CHECK: call void @bar
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}
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void nonzeroMemseti8(void) {
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char arr[33] = { 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, };
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// CHECK-LABEL: @nonzeroMemseti8(
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// CHECK-NOT: store
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// CHECK-NOT: memcpy
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// CHECK: call void @llvm.memset.p0i8.i32(i8* {{.*}}, i8 42, i32 33, i1 false)
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}
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void nonzeroMemseti16(void) {
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unsigned short arr[17] = { 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, 0x4242, };
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// CHECK-LABEL: @nonzeroMemseti16(
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// CHECK-NOT: store
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// CHECK-NOT: memcpy
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// CHECK: call void @llvm.memset.p0i8.i32(i8* {{.*}}, i8 66, i32 34, i1 false)
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}
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void nonzeroMemseti32(void) {
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unsigned arr[9] = { 0xF0F0F0F0, 0xF0F0F0F0, 0xF0F0F0F0, 0xF0F0F0F0, 0xF0F0F0F0, 0xF0F0F0F0, 0xF0F0F0F0, 0xF0F0F0F0, 0xF0F0F0F0, };
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// CHECK-LABEL: @nonzeroMemseti32(
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// CHECK-NOT: store
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// CHECK-NOT: memcpy
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// CHECK: call void @llvm.memset.p0i8.i32(i8* {{.*}}, i8 -16, i32 36, i1 false)
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}
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void nonzeroMemseti64(void) {
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unsigned long long arr[7] = { 0xAAAAAAAAAAAAAAAA, 0xAAAAAAAAAAAAAAAA, 0xAAAAAAAAAAAAAAAA, 0xAAAAAAAAAAAAAAAA, 0xAAAAAAAAAAAAAAAA, 0xAAAAAAAAAAAAAAAA, 0xAAAAAAAAAAAAAAAA, };
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// CHECK-LABEL: @nonzeroMemseti64(
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// CHECK-NOT: store
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// CHECK-NOT: memcpy
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// CHECK: call void @llvm.memset.p0i8.i32(i8* {{.*}}, i8 -86, i32 56, i1 false)
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}
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void nonzeroMemsetf32(void) {
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float arr[9] = { 0x1.cacacap+75, 0x1.cacacap+75, 0x1.cacacap+75, 0x1.cacacap+75, 0x1.cacacap+75, 0x1.cacacap+75, 0x1.cacacap+75, 0x1.cacacap+75, 0x1.cacacap+75, };
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// CHECK-LABEL: @nonzeroMemsetf32(
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// CHECK-NOT: store
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// CHECK-NOT: memcpy
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// CHECK: call void @llvm.memset.p0i8.i32(i8* {{.*}}, i8 101, i32 36, i1 false)
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}
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void nonzeroMemsetf64(void) {
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double arr[7] = { 0x1.4444444444444p+69, 0x1.4444444444444p+69, 0x1.4444444444444p+69, 0x1.4444444444444p+69, 0x1.4444444444444p+69, 0x1.4444444444444p+69, 0x1.4444444444444p+69, };
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// CHECK-LABEL: @nonzeroMemsetf64(
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// CHECK-NOT: store
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// CHECK-NOT: memcpy
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// CHECK: call void @llvm.memset.p0i8.i32(i8* {{.*}}, i8 68, i32 56, i1 false)
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}
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void nonzeroPaddedUnionMemset(void) {
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union U { char c; int i; };
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union U arr[9] = { 0xF0, 0xF0, 0xF0, 0xF0, 0xF0, 0xF0, 0xF0, 0xF0, 0xF0, };
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// CHECK-LABEL: @nonzeroPaddedUnionMemset(
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// CHECK-NOT: store
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// CHECK-NOT: memcpy
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// CHECK: call void @llvm.memset.p0i8.i32(i8* {{.*}}, i8 -16, i32 36, i1 false)
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}
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void nonzeroNestedMemset(void) {
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union U { char c; int i; };
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struct S { union U u; short i; };
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struct S arr[5] = { { {0xF0}, 0xF0F0 }, { {0xF0}, 0xF0F0 }, { {0xF0}, 0xF0F0 }, { {0xF0}, 0xF0F0 }, { {0xF0}, 0xF0F0 }, };
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// CHECK-LABEL: @nonzeroNestedMemset(
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// CHECK-NOT: store
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// CHECK-NOT: memcpy
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// CHECK: call void @llvm.memset.p0i8.i32(i8* {{.*}}, i8 -16, i32 40, i1 false)
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}
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// PR9257
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struct test11S {
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int A[10];
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};
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void test11(struct test11S *P) {
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*P = (struct test11S) { .A = { [0 ... 3] = 4 } };
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// CHECK-LABEL: @test11(
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// CHECK: store i32 4, i32* %{{.*}}, align 4
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// CHECK: store i32 4, i32* %{{.*}}, align 4
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// CHECK: store i32 4, i32* %{{.*}}, align 4
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// CHECK: store i32 4, i32* %{{.*}}, align 4
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// CHECK: ret void
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}
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// Verify that we can convert a recursive struct with a memory that returns
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// an instance of the struct we're converting.
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struct test12 {
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struct test12 (*p)(void);
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} test12g;
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void test13(int x) {
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struct X { int a; int b : 10; int c; };
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struct X y = {.c = x};
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// CHECK-LABEL: @test13(
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// CHECK: and i16 {{.*}}, -1024
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}
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// CHECK-LABEL: @PR20473(
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void PR20473(void) {
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// CHECK: memcpy{{.*}}getelementptr inbounds ([2 x i8], [2 x i8]* @
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bar((char[2]) {""});
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// CHECK: memcpy{{.*}}getelementptr inbounds ([3 x i8], [3 x i8]* @
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bar((char[3]) {""});
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}
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// Test that we initialize large member arrays by copying from a global and not
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// with a series of stores.
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struct S14 { int a[16]; };
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void test14(struct S14 *s14) {
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// CHECK-LABEL: @test14(
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// CHECK: call void @llvm.memcpy.p0i8.p0i8.i32(i8* align 4 {{.*}}, i8* align 4 {{.*}} [[INIT14]] {{.*}}, i32 64, i1 false)
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// CHECK-NOT: store
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// CHECK: ret void
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*s14 = (struct S14) { { [5 ... 11] = 17 } };
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}
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