tint/resolver: Move texture validation to the right place
Validating sampled and multisampled texture types does not belong in Validator::Variable(). Change-Id: Ie0f2502508c28af6fb6d3f4d7803171d946c511b Reviewed-on: https://dawn-review.googlesource.com/c/dawn/+/93783 Reviewed-by: Dan Sinclair <dsinclair@chromium.org> Commit-Queue: Ben Clayton <bclayton@chromium.org>
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@ -240,13 +240,21 @@ sem::Type* Resolver::Type(const ast::Type* ty) {
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[&](const ast::Sampler* t) { return builder_->create<sem::Sampler>(t->kind); },
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[&](const ast::SampledTexture* t) -> sem::SampledTexture* {
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if (auto* el = Type(t->type)) {
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return builder_->create<sem::SampledTexture>(t->dim, el);
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auto* sem = builder_->create<sem::SampledTexture>(t->dim, el);
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if (!validator_.SampledTexture(sem, t->source)) {
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return nullptr;
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}
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return sem;
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}
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return nullptr;
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},
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[&](const ast::MultisampledTexture* t) -> sem::MultisampledTexture* {
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if (auto* el = Type(t->type)) {
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return builder_->create<sem::MultisampledTexture>(t->dim, el);
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auto* sem = builder_->create<sem::MultisampledTexture>(t->dim, el);
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if (!validator_.MultisampledTexture(sem, t->source)) {
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return nullptr;
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}
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return sem;
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}
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return nullptr;
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},
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@ -767,7 +767,7 @@ INSTANTIATE_TEST_SUITE_P(ResolverTypeValidationTest,
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using MultisampledTextureDimensionTest = ResolverTestWithParam<DimensionParams>;
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TEST_P(MultisampledTextureDimensionTest, All) {
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auto& params = GetParam();
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Global(Source{{12, 34}}, "a", ty.multisampled_texture(params.dim, ty.i32()),
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Global("a", ty.multisampled_texture(Source{{12, 34}}, params.dim, ty.i32()),
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ast::StorageClass::kNone, nullptr, ast::AttributeList{GroupAndBinding(0, 0)});
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if (params.is_valid) {
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@ -818,17 +818,16 @@ static constexpr TypeParams type_cases[] = {
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using SampledTextureTypeTest = ResolverTestWithParam<TypeParams>;
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TEST_P(SampledTextureTypeTest, All) {
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auto& params = GetParam();
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Global(Source{{12, 34}}, "a",
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ty.sampled_texture(ast::TextureDimension::k2d, params.type_func(*this)),
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Global(
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"a",
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ty.sampled_texture(Source{{12, 34}}, ast::TextureDimension::k2d, params.type_func(*this)),
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ast::StorageClass::kNone, nullptr, ast::AttributeList{GroupAndBinding(0, 0)});
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if (params.is_valid) {
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EXPECT_TRUE(r()->Resolve()) << r()->error();
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} else {
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EXPECT_FALSE(r()->Resolve());
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EXPECT_EQ(r()->error(),
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"12:34 error: texture_2d<type>: type must be f32, "
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"i32 or u32");
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EXPECT_EQ(r()->error(), "12:34 error: texture_2d<type>: type must be f32, i32 or u32");
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}
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}
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INSTANTIATE_TEST_SUITE_P(ResolverTypeValidationTest,
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@ -838,8 +837,9 @@ INSTANTIATE_TEST_SUITE_P(ResolverTypeValidationTest,
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using MultisampledTextureTypeTest = ResolverTestWithParam<TypeParams>;
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TEST_P(MultisampledTextureTypeTest, All) {
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auto& params = GetParam();
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Global(Source{{12, 34}}, "a",
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ty.multisampled_texture(ast::TextureDimension::k2d, params.type_func(*this)),
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Global("a",
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ty.multisampled_texture(Source{{12, 34}}, ast::TextureDimension::k2d,
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params.type_func(*this)),
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ast::StorageClass::kNone, nullptr, ast::AttributeList{GroupAndBinding(0, 0)});
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if (params.is_valid) {
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@ -847,8 +847,7 @@ TEST_P(MultisampledTextureTypeTest, All) {
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} else {
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EXPECT_FALSE(r()->Resolve());
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EXPECT_EQ(r()->error(),
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"12:34 error: texture_multisampled_2d<type>: type must be f32, "
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"i32 or u32");
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"12:34 error: texture_multisampled_2d<type>: type must be f32, i32 or u32");
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}
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}
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INSTANTIATE_TEST_SUITE_P(ResolverTypeValidationTest,
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@ -887,8 +886,7 @@ TEST_P(StorageTextureDimensionTest, All) {
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} else {
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EXPECT_FALSE(r()->Resolve());
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EXPECT_EQ(r()->error(),
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"12:34 error: cube dimensions for storage textures are not "
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"supported");
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"12:34 error: cube dimensions for storage textures are not supported");
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}
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}
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INSTANTIATE_TEST_SUITE_P(ResolverTypeValidationTest,
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@ -948,9 +946,8 @@ TEST_P(StorageTextureFormatTest, All) {
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} else {
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EXPECT_FALSE(r()->Resolve());
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EXPECT_EQ(r()->error(),
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"12:34 error: image format must be one of the texel formats "
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"specified for storage textues in "
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"https://gpuweb.github.io/gpuweb/wgsl/#texel-formats");
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"12:34 error: image format must be one of the texel formats specified for "
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"storage textues in https://gpuweb.github.io/gpuweb/wgsl/#texel-formats");
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}
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}
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INSTANTIATE_TEST_SUITE_P(ResolverTypeValidationTest,
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@ -284,6 +284,29 @@ bool Validator::StorageTexture(const ast::StorageTexture* t) const {
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return true;
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}
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bool Validator::SampledTexture(const sem::SampledTexture* t, const Source& source) const {
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if (!t->type()->UnwrapRef()->is_numeric_scalar()) {
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AddError("texture_2d<type>: type must be f32, i32 or u32", source);
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return false;
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}
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return true;
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}
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bool Validator::MultisampledTexture(const sem::MultisampledTexture* t, const Source& source) const {
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if (t->dim() != ast::TextureDimension::k2d) {
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AddError("only 2d multisampled textures are supported", source);
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return false;
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}
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if (!t->type()->UnwrapRef()->is_numeric_scalar()) {
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AddError("texture_multisampled_2d<type>: type must be f32, i32 or u32", source);
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return false;
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}
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return true;
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}
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bool Validator::Materialize(const sem::Materialize* m) const {
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auto* from = m->Expr()->Type();
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auto* to = m->Type();
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@ -685,25 +708,6 @@ bool Validator::Variable(const sem::Variable* v) const {
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return false;
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}
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if (auto* r = storage_ty->As<sem::SampledTexture>()) {
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if (!r->type()->UnwrapRef()->is_numeric_scalar()) {
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AddError("texture_2d<type>: type must be f32, i32 or u32", decl->source);
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return false;
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}
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}
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if (auto* r = storage_ty->As<sem::MultisampledTexture>()) {
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if (r->dim() != ast::TextureDimension::k2d) {
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AddError("only 2d multisampled textures are supported", decl->source);
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return false;
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}
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if (!r->type()->UnwrapRef()->is_numeric_scalar()) {
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AddError("texture_multisampled_2d<type>: type must be f32, i32 or u32", decl->source);
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return false;
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}
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}
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if (v->Is<sem::LocalVariable>() && as_var &&
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IsValidationEnabled(decl->attributes, ast::DisabledValidation::kIgnoreStorageClass)) {
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if (!v->Type()->UnwrapRef()->IsConstructible()) {
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@ -321,6 +321,18 @@ class Validator {
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/// @returns true on success, false otherwise
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bool StorageTexture(const ast::StorageTexture* t) const;
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/// Validates a sampled texture
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/// @param t the texture to validate
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/// @param source the source of the texture
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/// @returns true on success, false otherwise
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bool SampledTexture(const sem::SampledTexture* t, const Source& source) const;
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/// Validates a multisampled texture
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/// @param t the texture to validate
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/// @param source the source of the texture
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/// @returns true on success, false otherwise
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bool MultisampledTexture(const sem::MultisampledTexture* t, const Source& source) const;
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/// Validates a structure
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/// @param str the structure to validate
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/// @param stage the current pipeline stage
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