blob: 5b64a8120db18c6e95a8a6f4bf5164ad116346ca [file]
#include <metal_stdlib>
using namespace metal;
template<typename T, size_t N>
struct tint_array {
const constant T& operator[](size_t i) const constant { return elements[i]; }
device T& operator[](size_t i) device { return elements[i]; }
const device T& operator[](size_t i) const device { return elements[i]; }
thread T& operator[](size_t i) thread { return elements[i]; }
const thread T& operator[](size_t i) const thread { return elements[i]; }
threadgroup T& operator[](size_t i) threadgroup { return elements[i]; }
const threadgroup T& operator[](size_t i) const threadgroup { return elements[i]; }
T elements[N];
};
struct tint_module_vars_struct {
device tint_array<float, 1>* tint_member;
const constant tint_array<uint4, 1>* tint_storage_buffer_sizes;
};
struct tint_array_lengths_struct {
uint tint_array_length_0_0;
};
struct S {
simdgroup_float8x8 l;
simdgroup_float8x8 r;
};
struct S_Nested {
S s;
};
[[max_total_threads_per_threadgroup(64)]]
kernel void v(device tint_array<float, 1>* v_1 [[buffer(0)]], const constant tint_array<uint4, 1>* tint_storage_buffer_sizes [[buffer(30)]]) {
tint_module_vars_struct const tint_module_vars = tint_module_vars_struct{.tint_member=v_1, .tint_storage_buffer_sizes=tint_storage_buffer_sizes};
tint_array_lengths_struct const v_2 = tint_array_lengths_struct{.tint_array_length_0_0=((*tint_module_vars.tint_storage_buffer_sizes)[0u].x / 4u)};
simdgroup_float8x8 m = make_filled_simdgroup_matrix<float, 8, 8>(0.0f);
tint_array<simdgroup_float8x8, 4> m_array = {};
tint_array<tint_array<simdgroup_float8x8, 4>, 4> m_nested_array = {};
S m_struct = {};
S_Nested m_nested_struct = {};
uint const v_3 = as_type<uint>(0);
uint const v_4 = as_type<uint>(64);
bool const v_5 = (((v_3 + (v_4 * 7u)) + 8u) <= v_2.tint_array_length_0_0);
(simdgroup_store(m, (&(*tint_module_vars.tint_member)[select(0u, v_3, v_5)]), ulong(select(8u, v_4, v_5)), ulong2(0ul), false));
uint const v_6 = as_type<uint>(0);
uint const v_7 = as_type<uint>(64);
bool const v_8 = (((v_6 + (v_7 * 7u)) + 8u) <= v_2.tint_array_length_0_0);
(simdgroup_store(m_array[0u], (&(*tint_module_vars.tint_member)[select(0u, v_6, v_8)]), ulong(select(8u, v_7, v_8)), ulong2(0ul), false));
uint const v_9 = as_type<uint>(0);
uint const v_10 = as_type<uint>(64);
bool const v_11 = (((v_9 + (v_10 * 7u)) + 8u) <= v_2.tint_array_length_0_0);
(simdgroup_store(m_nested_array[1u][2u], (&(*tint_module_vars.tint_member)[select(0u, v_9, v_11)]), ulong(select(8u, v_10, v_11)), ulong2(0ul), false));
uint const v_12 = as_type<uint>(0);
uint const v_13 = as_type<uint>(64);
bool const v_14 = (((v_12 + (v_13 * 7u)) + 8u) <= v_2.tint_array_length_0_0);
(simdgroup_store(m_struct.l, (&(*tint_module_vars.tint_member)[select(0u, v_12, v_14)]), ulong(select(8u, v_13, v_14)), ulong2(0ul), false));
uint const v_15 = as_type<uint>(0);
uint const v_16 = as_type<uint>(64);
bool const v_17 = (((v_15 + (v_16 * 7u)) + 8u) <= v_2.tint_array_length_0_0);
(simdgroup_store(m_nested_struct.s.r, (&(*tint_module_vars.tint_member)[select(0u, v_15, v_17)]), ulong(select(8u, v_16, v_17)), ulong2(0ul), false));
}