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This adds SPIR-V assembly and WGSL tests derived from VK-GL-CTS commit 571256871c2e2f03995373e1e4a02958d8cd8cf5. The following procedure was followed: - Those .amber files in VK-GL-CTS wholly owned by Google were identified - All GLSL and SPIR-V shaders were extracted from the Amber files and converted into SPIR-V binaries - The compact-ids pass of spirv-opt was applied to each binary - Duplicate binaries were removed - spirv-opt -O was used to obtain an optimized version of each remaining binary, with duplicates discarded - Binaries that failed validation using spirv-val with target environment SPIR-V 1.3 were discarded - Those binaries that tint could not successfully convert into WGSL were put aside for further investigation - SPIR-V assembly versions of the remaining binaries are included in this CL - test-runner with -generate-expected and -generate-skip was used to generate expected .spvasm, .msl, .hlsl and .wgsl outputs for these SPIR-V assembly tests - Each successfully-generated .expected.wgsl is included in this CL again, as a WGLSL test - test-runner with -generate-expected and -generate-skip was used again, to generate expected outputs for these WGSL tests Change-Id: Ibe9baf2729cf97e0b633db9a426f53362a5de540 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/58842 Kokoro: Kokoro <noreply+kokoro@google.com> Commit-Queue: Ben Clayton <bclayton@google.com> Reviewed-by: Ben Clayton <bclayton@google.com>
97 lines
2.7 KiB
HLSL
97 lines
2.7 KiB
HLSL
uint tint_pack2x16unorm(float2 param_0) {
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uint2 i = uint2(round(clamp(param_0, 0.0, 1.0) * 65535.0));
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return (i.x | i.y << 16);
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}
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float4 tint_unpack4x8snorm(uint param_0) {
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int j = int(param_0);
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int4 i = int4(j << 24, j << 16, j << 8, j) >> 24;
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return clamp(float4(i) / 127.0, -1.0, 1.0);
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}
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cbuffer cbuffer_x_6 : register(b1, space0) {
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uint4 x_6[7];
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};
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cbuffer cbuffer_x_10 : register(b0, space0) {
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uint4 x_10[4];
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};
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static float4 x_GLF_color = float4(0.0f, 0.0f, 0.0f, 0.0f);
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void main_1() {
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uint a = 0u;
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float4 v1 = float4(0.0f, 0.0f, 0.0f, 0.0f);
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float E = 0.0f;
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bool x_75 = false;
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bool x_92 = false;
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bool x_109 = false;
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bool x_76_phi = false;
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bool x_93_phi = false;
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bool x_110_phi = false;
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const uint scalar_offset = ((16u * uint(0))) / 4;
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const float x_41 = asfloat(x_6[scalar_offset / 4][scalar_offset % 4]);
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const float x_43 = asfloat(x_6[1].x);
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a = tint_pack2x16unorm(float2(x_41, x_43));
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v1 = tint_unpack4x8snorm(a);
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E = 0.01f;
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const int x_49 = asint(x_10[2].x);
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const float x_51 = v1[x_49];
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const float x_53 = asfloat(x_6[2].x);
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const float x_55 = asfloat(x_6[3].x);
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const bool x_60 = (abs((x_51 - (x_53 / x_55))) < E);
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x_76_phi = x_60;
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if (x_60) {
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const int x_64 = asint(x_10[1].x);
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const float x_66 = v1[x_64];
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const float x_68 = asfloat(x_6[4].x);
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const float x_70 = asfloat(x_6[3].x);
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x_75 = (abs((x_66 - (x_68 / x_70))) < E);
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x_76_phi = x_75;
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}
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const bool x_76 = x_76_phi;
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x_93_phi = x_76;
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if (x_76) {
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const int x_80 = asint(x_10[3].x);
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const float x_82 = v1[x_80];
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const float x_84 = asfloat(x_6[5].x);
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const float x_87 = asfloat(x_6[3].x);
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x_92 = (abs((x_82 - (-(x_84) / x_87))) < E);
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x_93_phi = x_92;
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}
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const bool x_93 = x_93_phi;
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x_110_phi = x_93;
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if (x_93) {
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const uint scalar_offset_1 = ((16u * uint(0))) / 4;
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const int x_97 = asint(x_10[scalar_offset_1 / 4][scalar_offset_1 % 4]);
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const float x_99 = v1[x_97];
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const float x_101 = asfloat(x_6[6].x);
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const float x_104 = asfloat(x_6[3].x);
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x_109 = (abs((x_99 - (-(x_101) / x_104))) < E);
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x_110_phi = x_109;
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}
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if (x_110_phi) {
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const int x_115 = asint(x_10[1].x);
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const int x_118 = asint(x_10[2].x);
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const int x_121 = asint(x_10[2].x);
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const int x_124 = asint(x_10[1].x);
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x_GLF_color = float4(float(x_115), float(x_118), float(x_121), float(x_124));
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} else {
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const float x_128 = asfloat(x_6[5].x);
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x_GLF_color = float4(x_128, x_128, x_128, x_128);
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}
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return;
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}
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struct main_out {
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float4 x_GLF_color_1;
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};
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struct tint_symbol {
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float4 x_GLF_color_1 : SV_Target0;
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};
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tint_symbol main() {
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main_1();
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const main_out tint_symbol_1 = {x_GLF_color};
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const tint_symbol tint_symbol_4 = {tint_symbol_1.x_GLF_color_1};
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return tint_symbol_4;
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}
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