108 lines
2.8 KiB
WebGPU Shading Language
108 lines
2.8 KiB
WebGPU Shading Language
struct strided_arr {
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@size(16)
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el : f32,
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}
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type Arr = array<strided_arr, 1u>;
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struct buf0 {
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x_GLF_uniform_float_values : Arr,
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}
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struct strided_arr_1 {
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@size(16)
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el : i32,
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}
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type Arr_1 = array<strided_arr_1, 4u>;
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struct buf1 {
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x_GLF_uniform_int_values : Arr_1,
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}
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@group(0) @binding(0) var<uniform> x_7 : buf0;
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@group(0) @binding(1) var<uniform> x_10 : buf1;
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var<private> gl_FragCoord : vec4<f32>;
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var<private> x_GLF_color : vec4<f32>;
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fn main_1() {
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var data : array<vec4<f32>, 2u>;
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var b : i32;
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var y : i32;
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var i : i32;
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let x_42 : f32 = x_7.x_GLF_uniform_float_values[0].el;
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let x_45 : f32 = x_7.x_GLF_uniform_float_values[0].el;
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data = array<vec4<f32>, 2u>(vec4<f32>(x_42, x_42, x_42, x_42), vec4<f32>(x_45, x_45, x_45, x_45));
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let x_49 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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b = x_49;
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let x_51 : f32 = gl_FragCoord.y;
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let x_54 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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let x_56 : f32 = gl_FragCoord.y;
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let x_60 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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y = clamp(i32(x_51), (x_54 | i32(x_56)), x_60);
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let x_63 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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i = x_63;
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loop {
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var x_82 : bool;
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var x_83_phi : bool;
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let x_68 : i32 = i;
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let x_70 : i32 = x_10.x_GLF_uniform_int_values[0].el;
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if ((x_68 < x_70)) {
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} else {
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break;
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}
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let x_73 : i32 = b;
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let x_75 : i32 = x_10.x_GLF_uniform_int_values[0].el;
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let x_76 : bool = (x_73 > x_75);
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x_83_phi = x_76;
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if (x_76) {
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let x_79 : i32 = y;
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let x_81 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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x_82 = (x_79 > x_81);
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x_83_phi = x_82;
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}
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let x_83 : bool = x_83_phi;
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if (x_83) {
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break;
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}
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let x_86 : i32 = b;
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b = (x_86 + 1);
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continuing {
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let x_88 : i32 = i;
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i = (x_88 + 1);
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}
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}
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let x_90 : i32 = b;
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let x_92 : i32 = x_10.x_GLF_uniform_int_values[0].el;
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if ((x_90 == x_92)) {
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let x_97 : i32 = x_10.x_GLF_uniform_int_values[2].el;
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let x_99 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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let x_101 : i32 = x_10.x_GLF_uniform_int_values[3].el;
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let x_104 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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let x_107 : i32 = x_10.x_GLF_uniform_int_values[2].el;
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let x_110 : i32 = x_10.x_GLF_uniform_int_values[2].el;
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let x_113 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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data[clamp(x_97, x_99, x_101)] = vec4<f32>(f32(x_104), f32(x_107), f32(x_110), f32(x_113));
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}
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let x_118 : i32 = x_10.x_GLF_uniform_int_values[1].el;
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let x_120 : vec4<f32> = data[x_118];
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x_GLF_color = vec4<f32>(x_120.x, x_120.y, x_120.z, x_120.w);
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return;
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}
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struct main_out {
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@location(0)
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x_GLF_color_1 : vec4<f32>,
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}
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@stage(fragment)
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fn main(@builtin(position) gl_FragCoord_param : vec4<f32>) -> main_out {
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gl_FragCoord = gl_FragCoord_param;
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main_1();
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return main_out(x_GLF_color);
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}
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