blob: 39e0f468a1b693ab8438fbacf40fa8610fca81a1 [file] [edit]
// RUN: %clang_cc1 -finclude-default-header -triple dxil-pc-shadermodel6.3-compute -fnative-half-type -fnative-int16-type -emit-llvm -disable-llvm-passes -o - %s | FileCheck %s
// CHECK: %__cblayout_CBScalars = type <{
// CHECK-SAME: float, target("dx.Padding", 4), double,
// CHECK-SAME: half, target("dx.Padding", 6), i64,
// CHECK-SAME: i32, i16, target("dx.Padding", 2), i32, target("dx.Padding", 4),
// CHECK-SAME: i64
// CHECK-SAME: }>
// CHECK: %__cblayout_CBVectors = type <{
// CHECK-SAME: <3 x float>, target("dx.Padding", 4),
// CHECK-SAME: <3 x double>, <2 x half>, target("dx.Padding", 4),
// CHECK-SAME: <3 x i64>, target("dx.Padding", 8),
// CHECK-SAME: <4 x i32>,
// CHECK-SAME: <3 x i16>, target("dx.Padding", 10),
// CHECK-SAME: <3 x i64>
// CHECK-SAME: }>
// CHECK: %__cblayout_CBArrays = type <{
// CHECK-SAME: <{ [2 x <{ float, target("dx.Padding", 12) }>], float }>, target("dx.Padding", 12),
// CHECK-SAME: <{ [1 x <{ <3 x double>, target("dx.Padding", 8) }>], <3 x double> }>, target("dx.Padding", 8),
// CHECK-SAME: <{ [1 x <{
// CHECK-SAME: <{ [1 x <{ half, target("dx.Padding", 14) }>], half }>, target("dx.Padding", 14) }>],
// CHECK-SAME: <{ [1 x <{ half, target("dx.Padding", 14) }>], half }>
// CHECK-SAME: }>, target("dx.Padding", 14),
// CHECK-SAME: <{ [2 x <{ i64, target("dx.Padding", 8) }>], i64 }>, target("dx.Padding", 8),
// CHECK-SAME: [2 x [3 x [4 x <4 x i32>]]]
// CHECK-SAME: [1 x i16], target("dx.Padding", 14),
// CHECK-SAME: <{ [1 x <{ i64, target("dx.Padding", 8) }>], i64 }>, target("dx.Padding", 8),
// CHECK-SAME: <{ [3 x <{ i32, target("dx.Padding", 12) }>], i32 }>
// CHECK-SAME: }>
// CHECK: %__cblayout_CBStructs = type <{
// CHECK-SAME: %A, target("dx.Padding", 8),
// TODO: We should have target("dx.Padding", 2) padding after %B, but we don't
// correctly handle 2- and 3-element vectors inside structs yet because of
// DataLayout rules. See https://github.com/llvm/llvm-project/issues/123968.
//
// CHECK-SAME: %B,
// CHECK-SAME: %C, target("dx.Padding", 8),
// CHECK-SAME: <{ [4 x <{ %A, target("dx.Padding", 8) }>], %A }>, target("dx.Padding", 8),
// CHECK-SAME: %__cblayout_D, half,
// CHECK-SAME: <3 x i16>
// CHECK-SAME: }>
// CHECK: %A = type <{ <2 x float> }>
// CHECK: %B = type <{ <2 x float>, <3 x i16> }>
// CHECK: %C = type <{ i32, target("dx.Padding", 12), %A }>
// CHECK: %__cblayout_D = type <{
// CHECK-SAME: <{ [1 x <{
// CHECK-SAME: <{ [2 x <{ %B, target("dx.Padding", 2) }>], %B }>, target("dx.Padding", 2)
// CHECK-SAME: }>],
// CHECK-SAME: <{ [2 x <{ %B, target("dx.Padding", 2) }>], %B }> }>
// CHECK-SAME: }>
// CHECK: %__cblayout_CBClasses = type <{
// CHECK-SAME: %K, target("dx.Padding", 12),
// CHECK-SAME: %L, target("dx.Padding", 8),
// CHECK-SAME: %M, target("dx.Padding", 12),
// CHECK-SAME: <{ [9 x <{ %K, target("dx.Padding", 12) }>], %K }>
// CHECK-SAME: }>
// CHECK: %K = type <{ float }>
// CHECK: %L = type <{ float, float }>
// CHECK: %M = type <{ <{ [4 x <{ %K, target("dx.Padding", 12) }>], %K }> }>
// CHECK: %__cblayout_CBMix = type <{
// CHECK-SAME: <{ [1 x <{ %Test, target("dx.Padding", 8) }>], %Test }>, float, target("dx.Padding", 4)
// CHECK-SAME: <{ [2 x <{
// CHECK-SAME: <{ [1 x <{ <2 x float>, target("dx.Padding", 8) }>], <2 x float> }>, target("dx.Padding", 8) }>],
// CHECK-SAME: <{ [1 x <{ <2 x float>, target("dx.Padding", 8) }>], <2 x float> }>
// CHECK-SAME: }>, float, target("dx.Padding", 4),
// CHECK-SAME: %anon, target("dx.Padding", 4), double,
// CHECK-SAME: %anon.0, float, target("dx.Padding", 4),
// CHECK-SAME: <1 x double>, i16
// CHECK-SAME: }>
// CHECK: %Test = type <{ float, float }>
// CHECK: %anon = type <{ float }>
// CHECK: %anon.0 = type <{ <2 x i32> }>
// CHECK: %__cblayout_CB_A = type <{
// CHECK-SAME: <{ [1 x <{ double, target("dx.Padding", 8) }>], double }>, target("dx.Padding", 8),
// CHECK-SAME: <{ [2 x <{ <3 x float>, target("dx.Padding", 4) }>], <3 x float> }>, float,
// CHECK-SAME: <{ [2 x <{ double, target("dx.Padding", 8) }>], double }>, half, target("dx.Padding", 6),
// CHECK-SAME: [1 x <2 x double>],
// CHECK-SAME: float, target("dx.Padding", 12),
// CHECK-SAME: <{ [1 x <{ <3 x half>, target("dx.Padding", 10) }>], <3 x half> }>, <3 x half>
// CHECK-SAME: }>
// CHECK: %__cblayout_CB_B = type <{
// CHECK-SAME: <{ [2 x <{ <3 x double>, target("dx.Padding", 8) }>], <3 x double> }>, <3 x half>
// CHECK-SAME: }>
// CHECK: %__cblayout_CB_C = type <{
// CHECK-SAME: i32, target("dx.Padding", 12),
// CHECK-SAME: %F,
// CHECK-SAME: half, target("dx.Padding", 14),
// CHECK-SAME: %G, target("dx.Padding", 6), double
// CHECK-SAME: }>
// CHECK: %F = type <{
// CHECK-SAME: double, target("dx.Padding", 8),
// CHECK-SAME: <3 x float>, float,
// CHECK-SAME: <3 x double>, half, target("dx.Padding", 6),
// CHECK-SAME: <2 x double>,
// CHECK-SAME: float, <3 x half>, <3 x half>
// CHECK-SAME: }>
// CHECK: %G = type <{
// CHECK-SAME: %E, target("dx.Padding", 12),
// CHECK-SAME: [1 x float], target("dx.Padding", 12),
// CHECK-SAME: [2 x %F],
// CHECK-SAME: half
// CHECK-SAME: }>
// CHECK: %E = type <{ float, target("dx.Padding", 4), double, float, half, i16, i64, i32 }>
cbuffer CBScalars : register(b1, space5) {
float a1;
double a2;
float16_t a3;
uint64_t a4;
int a5;
uint16_t a6;
bool a7;
int64_t a8;
}
// CHECK: @CBScalars.cb = internal global target("dx.CBuffer", %__cblayout_CBScalars)
// CHECK: @a1 = external hidden addrspace(2) global float, align 4
// CHECK: @a2 = external hidden addrspace(2) global double, align 8
// CHECK: @a3 = external hidden addrspace(2) global half, align 2
// CHECK: @a4 = external hidden addrspace(2) global i64, align 8
// CHECK: @a5 = external hidden addrspace(2) global i32, align 4
// CHECK: @a6 = external hidden addrspace(2) global i16, align 2
// CHECK: @a7 = external hidden addrspace(2) global i32, align 4
// CHECK: @a8 = external hidden addrspace(2) global i64, align 8
// CHECK: @CBScalars.str = private unnamed_addr constant [10 x i8] c"CBScalars\00", align 1
cbuffer CBVectors {
float3 b1;
double3 b2;
float16_t2 b3;
uint64_t3 b4;
int4 b5;
uint16_t3 b6;
int64_t3 b7;
// FIXME: add a bool vectors after llvm-project/llvm#91639 is added
}
// CHECK: @CBVectors.cb = internal global target("dx.CBuffer", %__cblayout_CBVectors)
// CHECK: @b1 = external hidden addrspace(2) global <3 x float>, align 4
// CHECK: @b2 = external hidden addrspace(2) global <3 x double>, align 8
// CHECK: @b3 = external hidden addrspace(2) global <2 x half>, align 2
// CHECK: @b4 = external hidden addrspace(2) global <3 x i64>, align 8
// CHECK: @b5 = external hidden addrspace(2) global <4 x i32>, align 4
// CHECK: @b6 = external hidden addrspace(2) global <3 x i16>, align 2
// CHECK: @b7 = external hidden addrspace(2) global <3 x i64>, align 8
// CHECK: @CBVectors.str = private unnamed_addr constant [10 x i8] c"CBVectors\00", align 1
cbuffer CBArrays : register(b2) {
float c1[3];
double3 c2[2];
float16_t c3[2][2];
uint64_t c4[3];
int4 c5[2][3][4];
uint16_t c6[1];
int64_t c7[2];
bool c8[4];
}
// CHECK: @CBArrays.cb = internal global target("dx.CBuffer", %__cblayout_CBArrays)
// CHECK: @c1 = external hidden addrspace(2) global <{ [2 x <{ float, target("dx.Padding", 12) }>], float }>, align 4
// CHECK: @c2 = external hidden addrspace(2) global <{ [1 x <{ <3 x double>, target("dx.Padding", 8) }>], <3 x double> }>, align 8
// CHECK: @c3 = external hidden addrspace(2) global <{ [1 x <{ <{ [1 x <{ half, target("dx.Padding", 14) }>], half }>, target("dx.Padding", 14) }>], <{ [1 x <{ half, target("dx.Padding", 14) }>], half }> }>, align 2
// CHECK: @c4 = external hidden addrspace(2) global <{ [2 x <{ i64, target("dx.Padding", 8) }>], i64 }>, align 8
// CHECK: @c5 = external hidden addrspace(2) global [2 x [3 x [4 x <4 x i32>]]], align 4
// CHECK: @c6 = external hidden addrspace(2) global [1 x i16], align 2
// CHECK: @c7 = external hidden addrspace(2) global <{ [1 x <{ i64, target("dx.Padding", 8) }>], i64 }>, align 8
// CHECK: @c8 = external hidden addrspace(2) global <{ [3 x <{ i32, target("dx.Padding", 12) }>], i32 }>, align 4
// CHECK: @CBArrays.str = private unnamed_addr constant [9 x i8] c"CBArrays\00", align 1
typedef uint32_t4 uint32_t8[2];
typedef uint4 T1;
typedef T1 T2[2]; // check a double typedef
cbuffer CBTypedefArray : register(space2) {
uint32_t8 t1[2];
T2 t2[2];
}
// CHECK: @CBTypedefArray.cb = internal global target("dx.CBuffer", %__cblayout_CBTypedefArray)
// CHECK: @t1 = external hidden addrspace(2) global [2 x [2 x <4 x i32>]], align 4
// CHECK: @t2 = external hidden addrspace(2) global [2 x [2 x <4 x i32>]], align 4
// CHECK: @CBTypedefArray.str = private unnamed_addr constant [15 x i8] c"CBTypedefArray\00", align 1
struct Empty {};
struct A {
float2 f1;
};
struct B : A {
uint16_t3 f2;
};
struct C {
int i;
A f3;
};
struct D {
B array_of_B[2][3];
Empty es;
};
// CHECK: @CBStructs.cb = internal global target("dx.CBuffer", %__cblayout_CBStructs)
// CHECK: @a = external hidden addrspace(2) global %A, align 1
// CHECK: @b = external hidden addrspace(2) global %B, align 1
// CHECK: @c = external hidden addrspace(2) global %C, align 1
// CHECK: @array_of_A = external hidden addrspace(2) global <{ [4 x <{ %A, target("dx.Padding", 8) }>], %A }>, align 1
// CHECK: @d = external hidden addrspace(2) global %__cblayout_D, align 1
// CHECK: @e = external hidden addrspace(2) global half, align 2
// CHECK: @f = external hidden addrspace(2) global <3 x i16>, align 2
// CHECK: @CBStructs.str = private unnamed_addr constant [10 x i8] c"CBStructs\00", align 1
cbuffer CBStructs {
A a;
B b;
C c;
A array_of_A[5];
D d;
half e;
uint16_t3 f;
};
class K {
float i;
};
class L : K {
float j;
};
class M {
K array[5];
};
cbuffer CBClasses {
K k;
L l;
M m;
K ka[10];
};
// CHECK: @CBClasses.cb = internal global target("dx.CBuffer", %__cblayout_CBClasses)
// CHECK: @k = external hidden addrspace(2) global %K, align 1
// CHECK: @l = external hidden addrspace(2) global %L, align 1
// CHECK: @m = external hidden addrspace(2) global %M, align 1
// CHECK: @ka = external hidden addrspace(2) global <{ [9 x <{ %K, target("dx.Padding", 12) }>], %K }>, align 1
// CHECK: @CBClasses.str = private unnamed_addr constant [10 x i8] c"CBClasses\00", align 1
struct Test {
float a, b;
};
// CHECK: @CBMix.cb = internal global target("dx.CBuffer", %__cblayout_CBMix)
// CHECK: @test = external hidden addrspace(2) global <{ [1 x <{ %Test, target("dx.Padding", 8) }>], %Test }>, align 1
// CHECK: @f1 = external hidden addrspace(2) global float, align 4
// CHECK: @f2 = external hidden addrspace(2) global <{ [2 x <{ <{ [1 x <{ <2 x float>, target("dx.Padding", 8) }>], <2 x float> }>, target("dx.Padding", 8) }>], <{ [1 x <{ <2 x float>, target("dx.Padding", 8) }>], <2 x float> }> }>, align 4
// CHECK: @f3 = external hidden addrspace(2) global float, align 4
// CHECK: @f4 = external hidden addrspace(2) global %anon, align 1
// CHECK: @f5 = external hidden addrspace(2) global double, align 8
// CHECK: @f6 = external hidden addrspace(2) global %anon.0, align 1
// CHECK: @f7 = external hidden addrspace(2) global float, align 4
// CHECK: @f8 = external hidden addrspace(2) global <1 x double>, align 8
// CHECK: @f9 = external hidden addrspace(2) global i16, align 2
// CHECK: @CBMix.str = private unnamed_addr constant [6 x i8] c"CBMix\00", align 1
cbuffer CBMix {
Test test[2];
float f1;
float2 f2[3][2];
float f3;
struct { float c; } f4;
double f5;
struct { int2 i; } f6;
float f7;
vector<double,1> f8;
uint16_t f9;
};
// CHECK: @CB_A.cb = internal global target("dx.CBuffer", %__cblayout_CB_A)
cbuffer CB_A {
double B0[2];
float3 B1[3];
float B2;
double B3[3];
half B4;
double2 B5[1];
float B6;
half3 B7[2];
half3 B8;
}
// CHECK: @CB_B.cb = internal global target("dx.CBuffer", %__cblayout_CB_B)
cbuffer CB_B {
double3 B9[3];
half3 B10;
}
struct E {
float A0;
double A1;
float A2;
half A3;
int16_t A4;
int64_t A5;
int A6;
};
struct F {
double B0;
float3 B1;
float B2;
double3 B3;
half B4;
double2 B5;
float B6;
half3 B7;
half3 B8;
};
struct G {
E C0;
float C1[1];
F C2[2];
half C3;
};
// CHECK: @CB_C.cb = internal global target("dx.CBuffer", %__cblayout_CB_C)
cbuffer CB_C {
int D0;
F D1;
half D2;
G D3;
double D4;
}
// CHECK: @llvm.compiler.used = appending global [10 x ptr] [ptr @CBScalars.cb, ptr @CBVectors.cb,
// CHECK-SAME: ptr @CBArrays.cb, ptr @CBTypedefArray.cb, ptr @CBStructs.cb, ptr @CBClasses.cb,
// CHECK-SAME: ptr @CBMix.cb, ptr @CB_A.cb, ptr @CB_B.cb, ptr @CB_C.cb], section "llvm.metadata"
// CHECK: define internal void @_init_buffer_CBScalars.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CBScalars.cb_h = call target("dx.CBuffer", %__cblayout_CBScalars)
// CHECK-SAME: @llvm.dx.resource.handlefrombinding.tdx.CBuffer_s___cblayout_CBScalarsst(i32 5, i32 1, i32 1, i32 0, ptr @CBScalars.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CBScalars) %CBScalars.cb_h, ptr @CBScalars.cb, align 4
// CHECK: define internal void @_init_buffer_CBVectors.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CBVectors.cb_h = call target("dx.CBuffer", %__cblayout_CBVectors)
// CHECK-SAME: @llvm.dx.resource.handlefromimplicitbinding.tdx.CBuffer_s___cblayout_CBVectorsst(i32 0, i32 0, i32 1, i32 0, ptr @CBVectors.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CBVectors) %CBVectors.cb_h, ptr @CBVectors.cb, align 4
// CHECK: define internal void @_init_buffer_CBArrays.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CBArrays.cb_h = call target("dx.CBuffer", %__cblayout_CBArrays)
// CHECK-SAME: @llvm.dx.resource.handlefrombinding.tdx.CBuffer_s___cblayout_CBArraysst(i32 0, i32 2, i32 1, i32 0, ptr @CBArrays.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CBArrays) %CBArrays.cb_h, ptr @CBArrays.cb, align 4
// CHECK: define internal void @_init_buffer_CBTypedefArray.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CBTypedefArray.cb_h = call target("dx.CBuffer", %__cblayout_CBTypedefArray)
// CHECK-SAME: @llvm.dx.resource.handlefromimplicitbinding.tdx.CBuffer_s___cblayout_CBTypedefArrayst(i32 1, i32 2, i32 1, i32 0, ptr @CBTypedefArray.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CBTypedefArray) %CBTypedefArray.cb_h, ptr @CBTypedefArray.cb, align 4
// CHECK: define internal void @_init_buffer_CBStructs.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CBStructs.cb_h = call target("dx.CBuffer", %__cblayout_CBStructs)
// CHECK-SAME: @llvm.dx.resource.handlefromimplicitbinding.tdx.CBuffer_s___cblayout_CBStructsst(i32 2, i32 0, i32 1, i32 0, ptr @CBStructs.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CBStructs) %CBStructs.cb_h, ptr @CBStructs.cb, align 4
// CHECK: define internal void @_init_buffer_CBClasses.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CBClasses.cb_h = call target("dx.CBuffer", %__cblayout_CBClasses)
// CHECK-SAME: @llvm.dx.resource.handlefromimplicitbinding.tdx.CBuffer_s___cblayout_CBClassesst(i32 3, i32 0, i32 1, i32 0, ptr @CBClasses.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CBClasses) %CBClasses.cb_h, ptr @CBClasses.cb, align 4
// CHECK: define internal void @_init_buffer_CBMix.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CBMix.cb_h = call target("dx.CBuffer", %__cblayout_CBMix)
// CHECK-SAME: @llvm.dx.resource.handlefromimplicitbinding.tdx.CBuffer_s___cblayout_CBMixst(i32 4, i32 0, i32 1, i32 0, ptr @CBMix.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CBMix) %CBMix.cb_h, ptr @CBMix.cb, align 4
// CHECK: define internal void @_init_buffer_CB_A.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CB_A.cb_h = call target("dx.CBuffer", %__cblayout_CB_A)
// CHECK-SAME: @llvm.dx.resource.handlefromimplicitbinding.tdx.CBuffer_s___cblayout_CB_Ast(i32 5, i32 0, i32 1, i32 0, ptr @CB_A.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CB_A) %CB_A.cb_h, ptr @CB_A.cb, align 4
// CHECK: define internal void @_init_buffer_CB_B.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CB_B.cb_h = call target("dx.CBuffer", %__cblayout_CB_B)
// CHECK-SAME: @llvm.dx.resource.handlefromimplicitbinding.tdx.CBuffer_s___cblayout_CB_Bst(i32 6, i32 0, i32 1, i32 0, ptr @CB_B.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CB_B) %CB_B.cb_h, ptr @CB_B.cb, align 4
// CHECK: define internal void @_init_buffer_CB_C.cb()
// CHECK-NEXT: entry:
// CHECK-NEXT: %CB_C.cb_h = call target("dx.CBuffer", %__cblayout_CB_C)
// CHECK-SAME: @llvm.dx.resource.handlefromimplicitbinding.tdx.CBuffer_s___cblayout_CB_Cst(i32 7, i32 0, i32 1, i32 0, ptr @CB_C.str)
// CHECK-NEXT: store target("dx.CBuffer", %__cblayout_CB_C) %CB_C.cb_h, ptr @CB_C.cb, align 4
RWBuffer<float> Buf;
[numthreads(4,1,1)]
void main() {
Buf[0] = a1 + b1.z + c1[2] + a.f1.y + f1 + B1[0].x + ka[2].i + B10.z + D1.B2;
}
// CHECK: define internal void @_GLOBAL__sub_I_cbuffer.hlsl()
// CHECK-NEXT: entry:
// CHECK-NEXT: %[[#C_ENTRY:]] = call token @llvm.experimental.convergence.entry()
// CHECK-NEXT: call void @_init_buffer_CBScalars.cb()
// CHECK-NEXT: call void @_init_buffer_CBVectors.cb()
// CHECK-NEXT: call void @_init_buffer_CBArrays.cb()
// CHECK-NEXT: call void @_init_buffer_CBTypedefArray.cb()
// CHECK-NEXT: call void @_init_buffer_CBStructs.cb()
// CHECK-NEXT: call void @_init_buffer_CBClasses.cb()
// CHECK-NEXT: call void @_init_buffer_CBMix.cb()
// CHECK-NEXT: call void @_init_buffer_CB_A.cb()
// CHECK: !hlsl.cbs = !{![[CBSCALARS:[0-9]+]], ![[CBVECTORS:[0-9]+]], ![[CBARRAYS:[0-9]+]], ![[CBTYPEDEFARRAY:[0-9]+]], ![[CBSTRUCTS:[0-9]+]], ![[CBCLASSES:[0-9]+]],
// CHECK-SAME: ![[CBMIX:[0-9]+]], ![[CB_A:[0-9]+]], ![[CB_B:[0-9]+]], ![[CB_C:[0-9]+]]}
// CHECK: ![[CBSCALARS]] = !{ptr @CBScalars.cb, ptr addrspace(2) @a1, ptr addrspace(2) @a2, ptr addrspace(2) @a3, ptr addrspace(2) @a4,
// CHECK-SAME: ptr addrspace(2) @a5, ptr addrspace(2) @a6, ptr addrspace(2) @a7, ptr addrspace(2) @a8}
// CHECK: ![[CBVECTORS]] = !{ptr @CBVectors.cb, ptr addrspace(2) @b1, ptr addrspace(2) @b2, ptr addrspace(2) @b3, ptr addrspace(2) @b4,
// CHECK-SAME: ptr addrspace(2) @b5, ptr addrspace(2) @b6, ptr addrspace(2) @b7}
// CHECK: ![[CBARRAYS]] = !{ptr @CBArrays.cb, ptr addrspace(2) @c1, ptr addrspace(2) @c2, ptr addrspace(2) @c3, ptr addrspace(2) @c4,
// CHECK-SAME: ptr addrspace(2) @c5, ptr addrspace(2) @c6, ptr addrspace(2) @c7, ptr addrspace(2) @c8}
// CHECK: ![[CBTYPEDEFARRAY]] = !{ptr @CBTypedefArray.cb, ptr addrspace(2) @t1, ptr addrspace(2) @t2}
// CHECK: ![[CBSTRUCTS]] = !{ptr @CBStructs.cb, ptr addrspace(2) @a, ptr addrspace(2) @b, ptr addrspace(2) @c, ptr addrspace(2) @array_of_A,
// CHECK-SAME: ptr addrspace(2) @d, ptr addrspace(2) @e, ptr addrspace(2) @f}
// CHECK: ![[CBCLASSES]] = !{ptr @CBClasses.cb, ptr addrspace(2) @k, ptr addrspace(2) @l, ptr addrspace(2) @m, ptr addrspace(2) @ka}
// CHECK: ![[CBMIX]] = !{ptr @CBMix.cb, ptr addrspace(2) @test, ptr addrspace(2) @f1, ptr addrspace(2) @f2, ptr addrspace(2) @f3,
// CHECK-SAME: ptr addrspace(2) @f4, ptr addrspace(2) @f5, ptr addrspace(2) @f6, ptr addrspace(2) @f7, ptr addrspace(2) @f8, ptr addrspace(2) @f9}
// CHECK: ![[CB_A]] = !{ptr @CB_A.cb, ptr addrspace(2) @B0, ptr addrspace(2) @B1, ptr addrspace(2) @B2, ptr addrspace(2) @B3, ptr addrspace(2) @B4,
// CHECK-SAME: ptr addrspace(2) @B5, ptr addrspace(2) @B6, ptr addrspace(2) @B7, ptr addrspace(2) @B8}
// CHECK: ![[CB_B]] = !{ptr @CB_B.cb, ptr addrspace(2) @B9, ptr addrspace(2) @B10}
// CHECK: ![[CB_C]] = !{ptr @CB_C.cb, ptr addrspace(2) @D0, ptr addrspace(2) @D1, ptr addrspace(2) @D2, ptr addrspace(2) @D3, ptr addrspace(2) @D4}