blob: 39bf36f29ada3a3cf60b7b75485c9fbd1749730e [file] [log] [blame]
#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 SB_RO {
/* 0x0000 */ tint_array<float, 1> arg_0;
};
struct tint_module_vars_struct {
device tint_array<float, 1024>* prevent_dce;
const device SB_RO* sb_ro;
};
simdgroup_float8x8 subgroupMatrixLoad_6c1e00(tint_module_vars_struct tint_module_vars) {
uint arg_1 = 1u;
uint arg_3 = 1u;
simdgroup_float8x8 v = make_filled_simdgroup_matrix<float, 8, 8>(0.0f);
simdgroup_load(v, (&(*tint_module_vars.sb_ro).arg_0[arg_1]), ulong(arg_3), ulong2(0ul), true);
simdgroup_float8x8 res = v;
return res;
}
kernel void compute_main(device tint_array<float, 1024>* prevent_dce [[buffer(0)]], const device SB_RO* sb_ro [[buffer(1)]]) {
tint_module_vars_struct const tint_module_vars = tint_module_vars_struct{.prevent_dce=prevent_dce, .sb_ro=sb_ro};
simdgroup_store(subgroupMatrixLoad_6c1e00(tint_module_vars), (&(*tint_module_vars.prevent_dce)[0u]), ulong(64u), ulong2(0ul), false);
}