spirv-reader: fix arity for depth texture builtins
Texture buitins on depth textures always result in scalar f32. Corresponding operations in SPIR-V always result in vec4<f32>. When translating to Tint AST, wrap the generated texture builtin in a type constructor to vec4, with the builtin result as the x component. Fixed: tint:411 Change-Id: Idf26a1cbc7e875bc8a97bf3c0b342c0220c6d4b7 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/35900 Auto-Submit: David Neto <dneto@google.com> Commit-Queue: Ryan Harrison <rharrison@chromium.org> Reviewed-by: Ryan Harrison <rharrison@chromium.org>
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@ -4145,14 +4145,31 @@ bool FunctionEmitter::EmitImageAccess(const spvtools::opt::Instruction& inst) {
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// It returns a value.
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ast::Expression* value = call_expr;
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// If necessary, convert the result to the signedness of the instruction
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// result type. Compare the SPIR-V image's sampled component type with the
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// component of the result type of the SPIR-V instruction.
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// The result type, derived from the SPIR-V instruction.
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auto* result_type = parser_impl_.ConvertType(inst.type_id());
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auto* result_component_type = result_type;
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if (auto* result_vector_type = result_type->As<ast::type::Vector>()) {
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result_component_type = result_vector_type->type();
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}
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// Convert the arity of the result when operating on depth textures.
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// SPIR-V operations on depth textures always result in 4-element vectors.
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// But WGSL operations on depth textures always result in a f32 scalar.
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// Construct a 4-element vector with the result from the builtin in the
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// first component.
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if (texture_type->Is<ast::type::DepthTexture>()) {
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value = create<ast::TypeConstructorExpression>(
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Source{},
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result_type, // a vec4
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ast::ExpressionList{
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value, parser_impl_.MakeNullValue(result_component_type),
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parser_impl_.MakeNullValue(result_component_type),
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parser_impl_.MakeNullValue(result_component_type)});
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}
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// If necessary, convert the result to the signedness of the instruction
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// result type. Compare the SPIR-V image's sampled component type with the
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// component of the result type of the SPIR-V instruction.
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auto* spirv_image_type =
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parser_impl_.GetSpirvTypeForHandleMemoryObjectDeclaration(*image);
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if (!spirv_image_type || (spirv_image_type->opcode() != SpvOpTypeImage)) {
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@ -1751,13 +1751,19 @@ INSTANTIATE_TEST_SUITE_P(
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none
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__vec_4__f32
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{
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Call[not set]{
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Identifier[not set]{textureSample}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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Identifier[not set]{coords12}
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)
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TypeConstructor[not set]{
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__vec_4__f32
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Call[not set]{
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Identifier[not set]{textureSample}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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Identifier[not set]{coords12}
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)
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}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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}
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}
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}
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@ -1768,14 +1774,20 @@ INSTANTIATE_TEST_SUITE_P(
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none
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__vec_4__f32
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{
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_30}
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Identifier[not set]{coords12}
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ScalarConstructor[not set]{0.200000}
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)
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TypeConstructor[not set]{
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__vec_4__f32
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_30}
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Identifier[not set]{coords12}
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ScalarConstructor[not set]{0.200000}
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)
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}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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}
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}
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}
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@ -1809,14 +1821,20 @@ INSTANTIATE_TEST_SUITE_P(
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__depth_texture_2d
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})",
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R"(
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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Identifier[not set]{coords12}
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ScalarConstructor[not set]{0.200000}
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)
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TypeConstructor[not set]{
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__vec_4__f32
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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Identifier[not set]{coords12}
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ScalarConstructor[not set]{0.200000}
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)
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}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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})"},
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// ImageSampleDrefImplicitLod - arrayed
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ImageAccessCase{"%float 2D 0 1 0 1 Unknown",
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@ -1842,24 +1860,30 @@ INSTANTIATE_TEST_SUITE_P(
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__depth_texture_2d_array
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})",
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R"(
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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MemberAccessor[not set]{
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Identifier[not set]{coords123}
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Identifier[not set]{xy}
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}
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TypeConstructor[not set]{
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__i32
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TypeConstructor[not set]{
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__vec_4__f32
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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MemberAccessor[not set]{
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Identifier[not set]{coords123}
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Identifier[not set]{z}
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Identifier[not set]{xy}
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}
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}
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ScalarConstructor[not set]{0.200000}
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)
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TypeConstructor[not set]{
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__i32
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MemberAccessor[not set]{
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Identifier[not set]{coords123}
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Identifier[not set]{z}
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}
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}
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ScalarConstructor[not set]{0.200000}
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)
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}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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})"},
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// ImageSampleDrefImplicitLod with ConstOffset
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ImageAccessCase{
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@ -1886,15 +1910,21 @@ INSTANTIATE_TEST_SUITE_P(
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__depth_texture_2d
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})",
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R"(
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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Identifier[not set]{coords12}
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ScalarConstructor[not set]{0.200000}
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Identifier[not set]{offsets2d}
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)
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TypeConstructor[not set]{
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__vec_4__f32
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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Identifier[not set]{coords12}
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ScalarConstructor[not set]{0.200000}
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Identifier[not set]{offsets2d}
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)
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}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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})"},
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// ImageSampleDrefImplicitLod arrayed with ConstOffset
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ImageAccessCase{
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@ -1921,25 +1951,31 @@ INSTANTIATE_TEST_SUITE_P(
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__depth_texture_2d_array
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})",
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R"(
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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MemberAccessor[not set]{
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Identifier[not set]{coords123}
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Identifier[not set]{xy}
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}
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TypeConstructor[not set]{
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__i32
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TypeConstructor[not set]{
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__vec_4__f32
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Call[not set]{
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Identifier[not set]{textureSampleCompare}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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MemberAccessor[not set]{
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Identifier[not set]{coords123}
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Identifier[not set]{z}
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Identifier[not set]{xy}
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}
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}
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ScalarConstructor[not set]{0.200000}
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Identifier[not set]{offsets2d}
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)
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TypeConstructor[not set]{
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__i32
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MemberAccessor[not set]{
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Identifier[not set]{coords123}
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Identifier[not set]{z}
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}
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}
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ScalarConstructor[not set]{0.200000}
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Identifier[not set]{offsets2d}
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)
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}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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})"}));
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INSTANTIATE_TEST_SUITE_P(
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@ -2471,17 +2507,23 @@ INSTANTIATE_TEST_SUITE_P(
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__depth_texture_2d
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})",
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R"(
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Call[not set]{
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Identifier[not set]{textureSampleLevel}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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Identifier[not set]{vf12}
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TypeConstructor[not set]{
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__i32
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Identifier[not set]{f1}
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}
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)
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TypeConstructor[not set]{
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__vec_4__f32
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Call[not set]{
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Identifier[not set]{textureSampleLevel}
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(
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Identifier[not set]{x_20}
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Identifier[not set]{x_10}
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Identifier[not set]{vf12}
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TypeConstructor[not set]{
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__i32
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Identifier[not set]{f1}
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}
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)
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}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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ScalarConstructor[not set]{0.000000}
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})"}}));
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using SpvParserTest_ImageAccessTest =
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