blob: 7858ec70e5d2f8b0f1c054ea1713a932d4093ffc [file]
SKIP: INVALID
struct f_inputs {
uint tint_local_index : SV_GroupIndex;
};
cbuffer cbuffer_u : register(b0) {
uint4 u[1];
};
groupshared matrix<float16_t, 4, 2> w;
vector<float16_t, 2> tint_bitcast_to_f16(uint src) {
uint v = src;
float t_low = f16tof32((v & 65535u));
float t_high = f16tof32(((v >> 16u) & 65535u));
float16_t v_1 = float16_t(t_low);
return vector<float16_t, 2>(v_1, float16_t(t_high));
}
matrix<float16_t, 4, 2> v_2(uint start_byte_offset) {
uint4 v_3 = u[(start_byte_offset / 16u)];
vector<float16_t, 2> v_4 = tint_bitcast_to_f16((((((start_byte_offset % 16u) / 4u) == 2u)) ? (v_3.z) : (v_3.x)));
uint4 v_5 = u[((4u + start_byte_offset) / 16u)];
vector<float16_t, 2> v_6 = tint_bitcast_to_f16(((((((4u + start_byte_offset) % 16u) / 4u) == 2u)) ? (v_5.z) : (v_5.x)));
uint4 v_7 = u[((8u + start_byte_offset) / 16u)];
vector<float16_t, 2> v_8 = tint_bitcast_to_f16(((((((8u + start_byte_offset) % 16u) / 4u) == 2u)) ? (v_7.z) : (v_7.x)));
uint4 v_9 = u[((12u + start_byte_offset) / 16u)];
return matrix<float16_t, 4, 2>(v_4, v_6, v_8, tint_bitcast_to_f16(((((((12u + start_byte_offset) % 16u) / 4u) == 2u)) ? (v_9.z) : (v_9.x))));
}
void f_inner(uint tint_local_index) {
if ((tint_local_index == 0u)) {
w = matrix<float16_t, 4, 2>((float16_t(0.0h)).xx, (float16_t(0.0h)).xx, (float16_t(0.0h)).xx, (float16_t(0.0h)).xx);
}
GroupMemoryBarrierWithGroupSync();
w = v_2(0u);
w[int(1)] = tint_bitcast_to_f16(u[0u].x);
w[int(1)] = tint_bitcast_to_f16(u[0u].x).yx;
w[int(0)][int(1)] = float16_t(f16tof32(u[0u].y));
}
[numthreads(1, 1, 1)]
void f(f_inputs inputs) {
f_inner(inputs.tint_local_index);
}
FXC validation failure:
<scrubbed_path>(9,20-28): error X3000: syntax error: unexpected token 'float16_t'
tint executable returned error: exit status 1