blob: a8f507ed700aa339ceaa87563390d8bae36dfcfb [file] [log] [blame]
cbuffer cbuffer_u : register(b0) {
uint4 u[1];
};
RWByteAddressBuffer s : register(u1);
matrix<float16_t, 2, 4> u_load(uint offset) {
const uint scalar_offset = ((offset + 0u)) / 4;
uint4 ubo_load_1 = u[scalar_offset / 4];
uint2 ubo_load = ((scalar_offset & 2) ? ubo_load_1.zw : ubo_load_1.xy);
vector<float16_t, 2> ubo_load_xz = vector<float16_t, 2>(f16tof32(ubo_load & 0xFFFF));
vector<float16_t, 2> ubo_load_yw = vector<float16_t, 2>(f16tof32(ubo_load >> 16));
const uint scalar_offset_1 = ((offset + 8u)) / 4;
uint4 ubo_load_3 = u[scalar_offset_1 / 4];
uint2 ubo_load_2 = ((scalar_offset_1 & 2) ? ubo_load_3.zw : ubo_load_3.xy);
vector<float16_t, 2> ubo_load_2_xz = vector<float16_t, 2>(f16tof32(ubo_load_2 & 0xFFFF));
vector<float16_t, 2> ubo_load_2_yw = vector<float16_t, 2>(f16tof32(ubo_load_2 >> 16));
return matrix<float16_t, 2, 4>(vector<float16_t, 4>(ubo_load_xz[0], ubo_load_yw[0], ubo_load_xz[1], ubo_load_yw[1]), vector<float16_t, 4>(ubo_load_2_xz[0], ubo_load_2_yw[0], ubo_load_2_xz[1], ubo_load_2_yw[1]));
}
void s_store(uint offset, matrix<float16_t, 2, 4> value) {
s.Store<vector<float16_t, 4> >((offset + 0u), value[0u]);
s.Store<vector<float16_t, 4> >((offset + 8u), value[1u]);
}
[numthreads(1, 1, 1)]
void main() {
matrix<float16_t, 2, 4> x = u_load(0u);
s_store(0u, x);
return;
}