50 lines
1.2 KiB
Plaintext
50 lines
1.2 KiB
Plaintext
#include <metal_stdlib>
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using namespace metal;
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uint3 tint_first_leading_bit(uint3 v) {
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uint3 x = v;
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uint3 const b16 = select(uint3(0u), uint3(16u), bool3((x & uint3(4294901760u))));
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x = (x >> b16);
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uint3 const b8 = select(uint3(0u), uint3(8u), bool3((x & uint3(65280u))));
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x = (x >> b8);
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uint3 const b4 = select(uint3(0u), uint3(4u), bool3((x & uint3(240u))));
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x = (x >> b4);
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uint3 const b2 = select(uint3(0u), uint3(2u), bool3((x & uint3(12u))));
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x = (x >> b2);
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uint3 const b1 = select(uint3(0u), uint3(1u), bool3((x & uint3(2u))));
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uint3 const is_zero = select(uint3(0u), uint3(4294967295u), (x == uint3(0u)));
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return uint3((((((b16 | b8) | b4) | b2) | b1) | is_zero));
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}
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void firstLeadingBit_3fd7d0() {
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uint3 arg_0 = uint3(0u);
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uint3 res = tint_first_leading_bit(arg_0);
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}
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struct tint_symbol {
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float4 value [[position]];
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};
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float4 vertex_main_inner() {
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firstLeadingBit_3fd7d0();
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return float4(0.0f);
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}
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vertex tint_symbol vertex_main() {
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float4 const inner_result = vertex_main_inner();
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tint_symbol wrapper_result = {};
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wrapper_result.value = inner_result;
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return wrapper_result;
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}
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fragment void fragment_main() {
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firstLeadingBit_3fd7d0();
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return;
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}
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kernel void compute_main() {
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firstLeadingBit_3fd7d0();
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return;
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}
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