blob: fbd8de95e2689db67e020b57b54e823e4793a93d [file] [log] [blame]
cbuffer cbuffer_u : register(b0, space0) {
uint4 u[8];
};
void a(float4x2 a_1[4]) {
}
void b(float4x2 m) {
}
void c(float2 v) {
}
void d(float f_1) {
}
float4x2 u_load_1(uint offset) {
const uint scalar_offset = ((offset + 0u)) / 4;
uint4 ubo_load = u[scalar_offset / 4];
const uint scalar_offset_1 = ((offset + 8u)) / 4;
uint4 ubo_load_1 = u[scalar_offset_1 / 4];
const uint scalar_offset_2 = ((offset + 16u)) / 4;
uint4 ubo_load_2 = u[scalar_offset_2 / 4];
const uint scalar_offset_3 = ((offset + 24u)) / 4;
uint4 ubo_load_3 = u[scalar_offset_3 / 4];
return float4x2(asfloat(((scalar_offset & 2) ? ubo_load.zw : ubo_load.xy)), asfloat(((scalar_offset_1 & 2) ? ubo_load_1.zw : ubo_load_1.xy)), asfloat(((scalar_offset_2 & 2) ? ubo_load_2.zw : ubo_load_2.xy)), asfloat(((scalar_offset_3 & 2) ? ubo_load_3.zw : ubo_load_3.xy)));
}
typedef float4x2 u_load_ret[4];
u_load_ret u_load(uint offset) {
float4x2 arr[4] = (float4x2[4])0;
{
for(uint i = 0u; (i < 4u); i = (i + 1u)) {
arr[i] = u_load_1((offset + (i * 32u)));
}
}
return arr;
}
[numthreads(1, 1, 1)]
void f() {
a(u_load(0u));
b(u_load_1(32u));
c(asfloat(u[2].xy).yx);
d(asfloat(u[2].xy).yx.x);
return;
}