114 lines
1.7 KiB
Plaintext
114 lines
1.7 KiB
Plaintext
#include <metal_stdlib>
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using namespace metal;
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struct tint_symbol_1 {
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float4 value [[color(0)]];
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};
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void bitwise_i32() {
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int s1 = 0;
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int s2 = 0;
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int3 v1 = 0;
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int3 v2 = 0;
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s1 = (s1 | s2);
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s1 = (s1 & s2);
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s1 = (s1 ^ s2);
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v1 = (v1 | v2);
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v1 = (v1 & v2);
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v1 = (v1 ^ v2);
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}
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void bitwise_u32() {
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uint s1 = 0u;
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uint s2 = 0u;
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uint3 v1 = 0u;
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uint3 v2 = 0u;
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s1 = (s1 | s2);
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s1 = (s1 & s2);
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s1 = (s1 ^ s2);
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v1 = (v1 | v2);
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v1 = (v1 & v2);
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v1 = (v1 ^ v2);
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}
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void vector_scalar_f32() {
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float3 v = 0.0f;
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float s = 0.0f;
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float3 r = 0.0f;
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r = (v + s);
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r = (v - s);
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r = (v * s);
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r = (v / s);
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}
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void vector_scalar_i32() {
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int3 v = 0;
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int s = 0;
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int3 r = 0;
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r = (v + s);
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r = (v - s);
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r = (v * s);
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r = (v / s);
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r = (v % s);
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}
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void vector_scalar_u32() {
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uint3 v = 0u;
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uint s = 0u;
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uint3 r = 0u;
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r = (v + s);
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r = (v - s);
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r = (v * s);
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r = (v / s);
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r = (v % s);
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}
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void scalar_vector_f32() {
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float3 v = 0.0f;
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float s = 0.0f;
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float3 r = 0.0f;
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r = (s + v);
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r = (s - v);
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r = (s * v);
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r = (s / v);
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}
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void scalar_vector_i32() {
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int3 v = 0;
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int s = 0;
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int3 r = 0;
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r = (s + v);
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r = (s - v);
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r = (s * v);
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r = (s / v);
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r = (s % v);
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}
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void scalar_vector_u32() {
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uint3 v = 0u;
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uint s = 0u;
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uint3 r = 0u;
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r = (s + v);
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r = (s - v);
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r = (s * v);
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r = (s / v);
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r = (s % v);
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}
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void matrix_matrix_f32() {
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float3x4 m34 = float3x4(0.0f);
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float4x3 m43 = float4x3(0.0f);
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float3x3 m33 = float3x3(0.0f);
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float4x4 m44 = float4x4(0.0f);
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m34 = (m34 + m34);
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m34 = (m34 - m34);
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m33 = (m43 * m34);
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m44 = (m34 * m43);
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}
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fragment tint_symbol_1 tint_symbol() {
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tint_symbol_1 const tint_symbol_2 = {.value=float4(0.0f, 0.0f, 0.0f, 0.0f)};
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return tint_symbol_2;
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}
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