Convert @id to an expression.

This CL updates the @id AST nodes to store an expression instead
of a literal value. This is in anticipation of the parser updates
for ID expressions.

Bug: tint:1633
Change-Id: I4dd626007dd1f9093999a0236e220ffdbc9e62db
Reviewed-on: https://dawn-review.googlesource.com/c/dawn/+/100760
Reviewed-by: Ben Clayton <bclayton@google.com>
Commit-Queue: Dan Sinclair <dsinclair@chromium.org>
Kokoro: Kokoro <noreply+kokoro@google.com>
This commit is contained in:
dan sinclair 2022-08-31 13:39:48 +00:00 committed by Dawn LUCI CQ
parent 969692ccf8
commit 5361d9e778
32 changed files with 142 additions and 167 deletions

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@ -1043,7 +1043,6 @@ if (tint_build_unittests) {
"ast/module_clone_test.cc",
"ast/module_test.cc",
"ast/multisampled_texture_test.cc",
"ast/override_test.cc",
"ast/phony_expression_test.cc",
"ast/pointer_test.cc",
"ast/return_statement_test.cc",

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@ -736,7 +736,6 @@ if(TINT_BUILD_TESTS)
ast/module_clone_test.cc
ast/module_test.cc
ast/multisampled_texture_test.cc
ast/override_test.cc
ast/phony_expression_test.cc
ast/pointer_test.cc
ast/return_statement_test.cc

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@ -22,7 +22,7 @@ TINT_INSTANTIATE_TYPEINFO(tint::ast::IdAttribute);
namespace tint::ast {
IdAttribute::IdAttribute(ProgramID pid, NodeID nid, const Source& src, uint32_t val)
IdAttribute::IdAttribute(ProgramID pid, NodeID nid, const Source& src, const ast::Expression* val)
: Base(pid, nid, src), value(val) {}
IdAttribute::~IdAttribute() = default;
@ -34,7 +34,8 @@ std::string IdAttribute::Name() const {
const IdAttribute* IdAttribute::Clone(CloneContext* ctx) const {
// Clone arguments outside of create() call to have deterministic ordering
auto src = ctx->Clone(source);
return ctx->dst->create<IdAttribute>(src, value);
auto* value_ = ctx->Clone(value);
return ctx->dst->create<IdAttribute>(src, value_);
}
} // namespace tint::ast

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@ -18,6 +18,7 @@
#include <string>
#include "src/tint/ast/attribute.h"
#include "src/tint/ast/expression.h"
namespace tint::ast {
@ -28,8 +29,8 @@ class IdAttribute final : public Castable<IdAttribute, Attribute> {
/// @param pid the identifier of the program that owns this node
/// @param nid the unique node identifier
/// @param src the source of this node
/// @param val the numeric id value
IdAttribute(ProgramID pid, NodeID nid, const Source& src, uint32_t val);
/// @param val the numeric id value expression
IdAttribute(ProgramID pid, NodeID nid, const Source& src, const ast::Expression* val);
~IdAttribute() override;
/// @returns the WGSL name for the attribute
@ -41,8 +42,8 @@ class IdAttribute final : public Castable<IdAttribute, Attribute> {
/// @return the newly cloned node
const IdAttribute* Clone(CloneContext* ctx) const override;
/// The id value
const uint32_t value;
/// The id value expression
const ast::Expression* const value;
};
} // namespace tint::ast

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@ -19,11 +19,12 @@
namespace tint::ast {
namespace {
using namespace tint::number_suffixes; // NOLINT
using IdAttributeTest = TestHelper;
TEST_F(IdAttributeTest, Creation) {
auto* d = create<IdAttribute>(12u);
EXPECT_EQ(12u, d->value);
auto* d = Id(12_a);
EXPECT_TRUE(d->value->Is<ast::IntLiteralExpression>());
}
} // namespace

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@ -48,11 +48,4 @@ const Override* Override::Clone(CloneContext* ctx) const {
return ctx->dst->create<Override>(src, sym, ty, ctor, std::move(attrs));
}
std::string Override::Identifier(const SymbolTable& symbols) const {
if (auto* id = ast::GetAttribute<ast::IdAttribute>(attributes)) {
return std::to_string(id->value);
}
return symbols.NameFor(symbol);
}
} // namespace tint::ast

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@ -62,12 +62,6 @@ class Override final : public Castable<Override, Variable> {
/// @param ctx the clone context
/// @return the newly cloned node
const Override* Clone(CloneContext* ctx) const override;
/// @param symbols the symbol table to retrieve the name from
/// @returns the identifier string for the override. If the override has
/// an ID attribute, the string is the id-stringified. Otherwise, the ID
/// is the symbol.
std::string Identifier(const SymbolTable& symbols) const;
};
} // namespace tint::ast

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@ -1,35 +0,0 @@
// Copyright 2022 The Tint Authors.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include "src/tint/ast/override.h"
#include "src/tint/ast/test_helper.h"
namespace tint::ast {
namespace {
using OverrideTest = TestHelper;
TEST_F(OverrideTest, Identifier_NoId) {
auto* o = Override("o", Expr(f32(1.0)));
EXPECT_EQ(std::string("o"), o->Identifier(Symbols()));
}
TEST_F(OverrideTest, Identifier_WithId) {
auto* o = Override("o", Expr(f32(1.0)), Id(4u));
EXPECT_EQ(std::string("4"), o->Identifier(Symbols()));
}
} // namespace
} // namespace tint::ast

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@ -93,7 +93,7 @@ TEST_F(VariableTest, Assert_DifferentProgramID_Constructor) {
TEST_F(VariableTest, WithAttributes) {
auto* var = Var("my_var", ty.i32(), StorageClass::kFunction, Location(1u),
Builtin(BuiltinValue::kPosition), Id(1200u));
Builtin(BuiltinValue::kPosition), Id(1200_u));
auto& attributes = var->attributes;
EXPECT_TRUE(ast::HasAttribute<ast::LocationAttribute>(attributes));

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@ -697,8 +697,8 @@ TEST_F(InspectorGetEntryPointTest, OverrideReferencedByCallee) {
}
TEST_F(InspectorGetEntryPointTest, OverrideSomeReferenced) {
Override("foo", ty.f32(), Id(1));
Override("bar", ty.f32(), Id(2));
Override("foo", ty.f32(), Id(1_a));
Override("bar", ty.f32(), Id(2_a));
MakePlainGlobalReferenceBodyFunction("callee_func", "foo", ty.f32(), utils::Empty);
MakeCallerBodyFunction("ep_func", utils::Vector{std::string("callee_func")},
utils::Vector{
@ -789,7 +789,7 @@ TEST_F(InspectorGetEntryPointTest, OverrideUninitialized) {
TEST_F(InspectorGetEntryPointTest, OverrideNumericIDSpecified) {
Override("foo_no_id", ty.f32());
Override("foo_id", ty.f32(), Id(1234));
Override("foo_id", ty.f32(), Id(1234_a));
MakePlainGlobalReferenceBodyFunction("no_id_func", "foo_no_id", ty.f32(), utils::Empty);
MakePlainGlobalReferenceBodyFunction("id_func", "foo_id", ty.f32(), utils::Empty);
@ -1225,9 +1225,9 @@ INSTANTIATE_TEST_SUITE_P(
InterpolationType::kFlat, InterpolationSampling::kNone}));
TEST_F(InspectorGetOverrideDefaultValuesTest, Bool) {
Override("foo", ty.bool_(), Id(1));
Override("bar", ty.bool_(), Expr(true), Id(20));
Override("baz", ty.bool_(), Expr(false), Id(300));
Override("foo", ty.bool_(), Id(1_a));
Override("bar", ty.bool_(), Expr(true), Id(20_a));
Override("baz", ty.bool_(), Expr(false), Id(300_a));
Inspector& inspector = Build();
@ -1247,8 +1247,8 @@ TEST_F(InspectorGetOverrideDefaultValuesTest, Bool) {
}
TEST_F(InspectorGetOverrideDefaultValuesTest, U32) {
Override("foo", ty.u32(), Id(1));
Override("bar", ty.u32(), Expr(42_u), Id(20));
Override("foo", ty.u32(), Id(1_a));
Override("bar", ty.u32(), Expr(42_u), Id(20_a));
Inspector& inspector = Build();
@ -1264,9 +1264,9 @@ TEST_F(InspectorGetOverrideDefaultValuesTest, U32) {
}
TEST_F(InspectorGetOverrideDefaultValuesTest, I32) {
Override("foo", ty.i32(), Id(1));
Override("bar", ty.i32(), Expr(-42_i), Id(20));
Override("baz", ty.i32(), Expr(42_i), Id(300));
Override("foo", ty.i32(), Id(1_a));
Override("bar", ty.i32(), Expr(-42_i), Id(20_a));
Override("baz", ty.i32(), Expr(42_i), Id(300_a));
Inspector& inspector = Build();
@ -1286,10 +1286,10 @@ TEST_F(InspectorGetOverrideDefaultValuesTest, I32) {
}
TEST_F(InspectorGetOverrideDefaultValuesTest, Float) {
Override("foo", ty.f32(), Id(1));
Override("bar", ty.f32(), Expr(0_f), Id(20));
Override("baz", ty.f32(), Expr(-10_f), Id(300));
Override("x", ty.f32(), Expr(15_f), Id(4000));
Override("foo", ty.f32(), Id(1_a));
Override("bar", ty.f32(), Expr(0_f), Id(20_a));
Override("baz", ty.f32(), Expr(-10_f), Id(300_a));
Override("x", ty.f32(), Expr(15_f), Id(4000_a));
Inspector& inspector = Build();
@ -1313,9 +1313,9 @@ TEST_F(InspectorGetOverrideDefaultValuesTest, Float) {
}
TEST_F(InspectorGetConstantNameToIdMapTest, WithAndWithoutIds) {
Override("v1", ty.f32(), Id(1));
Override("v20", ty.f32(), Id(20));
Override("v300", ty.f32(), Id(300));
Override("v1", ty.f32(), Id(1_a));
Override("v20", ty.f32(), Id(20_a));
Override("v300", ty.f32(), Id(300_a));
auto* a = Override("a", ty.f32());
auto* b = Override("b", ty.f32());
auto* c = Override("c", ty.f32());

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@ -2946,26 +2946,32 @@ class ProgramBuilder {
/// @param id the id value
/// @returns the override attribute pointer
const ast::IdAttribute* Id(const Source& source, OverrideId id) {
return create<ast::IdAttribute>(source, id.value);
return create<ast::IdAttribute>(source, Expr(AInt(id.value)));
}
/// Creates an ast::IdAttribute with an override identifier
/// @param id the optional id value
/// @returns the override attribute pointer
const ast::IdAttribute* Id(OverrideId id) { return Id(source_, id); }
const ast::IdAttribute* Id(OverrideId id) {
return create<ast::IdAttribute>(Expr(AInt(id.value)));
}
/// Creates an ast::IdAttribute
/// @param source the source information
/// @param id the id value
/// @param id the id value expression
/// @returns the override attribute pointer
const ast::IdAttribute* Id(const Source& source, uint32_t id) {
return create<ast::IdAttribute>(source, id);
template <typename EXPR>
const ast::IdAttribute* Id(const Source& source, EXPR&& id) {
return create<ast::IdAttribute>(source, Expr(std::forward<EXPR>(id)));
}
/// Creates an ast::IdAttribute with an override identifier
/// @param id the optional id value
/// @param id the optional id value expression
/// @returns the override attribute pointer
const ast::IdAttribute* Id(uint32_t id) { return Id(source_, id); }
template <typename EXPR>
const ast::IdAttribute* Id(EXPR&& id) {
return create<ast::IdAttribute>(Expr(std::forward<EXPR>(id)));
}
/// Creates an ast::StageAttribute
/// @param source the source information

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@ -1366,7 +1366,7 @@ bool ParserImpl::EmitScalarSpecConstants() {
"between 0 and 65535: ID %"
<< inst.result_id() << " has SpecId " << id;
}
auto* cid = create<ast::IdAttribute>(Source{}, id);
auto* cid = builder_.Id(Source{}, AInt(id));
spec_id_decos.Push(cid);
break;
}

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@ -3508,7 +3508,9 @@ Maybe<const ast::Attribute*> ParserImpl::attribute() {
}
match(Token::Type::kComma);
return create<ast::IdAttribute>(t.source(), val.value);
return create<ast::IdAttribute>(
t.source(), create<ast::IntLiteralExpression>(
val.value, ast::IntLiteralExpression::Suffix::kNone));
});
}

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@ -201,7 +201,7 @@ TEST_F(ParserImplTest, GlobalOverrideDecl_WithId) {
auto* override_attr = ast::GetAttribute<ast::IdAttribute>(override->attributes);
ASSERT_NE(override_attr, nullptr);
EXPECT_EQ(override_attr->value, 7u);
EXPECT_TRUE(override_attr->value->Is<ast::IntLiteralExpression>());
}
TEST_F(ParserImplTest, GlobalOverrideDecl_WithId_TrailingComma) {
@ -231,7 +231,7 @@ TEST_F(ParserImplTest, GlobalOverrideDecl_WithId_TrailingComma) {
auto* override_attr = ast::GetAttribute<ast::IdAttribute>(override->attributes);
ASSERT_NE(override_attr, nullptr);
EXPECT_EQ(override_attr->value, 7u);
EXPECT_TRUE(override_attr->value->Is<ast::IntLiteralExpression>());
}
TEST_F(ParserImplTest, GlobalOverrideDecl_WithoutId) {

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@ -97,7 +97,7 @@ static utils::Vector<const ast::Attribute*, 2> createAttributes(const Source& so
case AttributeKind::kGroup:
return {builder.Group(source, 1_a)};
case AttributeKind::kId:
return {builder.create<ast::IdAttribute>(source, 0u)};
return {builder.Id(source, 0_a)};
case AttributeKind::kInterpolate:
return {builder.Interpolate(source, ast::InterpolationType::kLinear,
ast::InterpolationSampling::kCenter)};
@ -786,8 +786,8 @@ INSTANTIATE_TEST_SUITE_P(ResolverAttributeValidationTest,
TEST_F(ConstantAttributeTest, DuplicateAttribute) {
GlobalConst("a", ty.f32(), Expr(1.23_f),
utils::Vector{
create<ast::IdAttribute>(Source{{12, 34}}, 0u),
create<ast::IdAttribute>(Source{{56, 78}}, 1u),
Id(Source{{12, 34}}, 0_a),
Id(Source{{56, 78}}, 1_a),
});
EXPECT_FALSE(r()->Resolve());
@ -829,8 +829,8 @@ INSTANTIATE_TEST_SUITE_P(ResolverAttributeValidationTest,
TEST_F(OverrideAttributeTest, DuplicateAttribute) {
Override("a", ty.f32(), Expr(1.23_f),
utils::Vector{
create<ast::IdAttribute>(Source{{12, 34}}, 0u),
create<ast::IdAttribute>(Source{{56, 78}}, 1u),
Id(Source{{12, 34}}, 0_a),
Id(Source{{56, 78}}, 1_a),
});
EXPECT_FALSE(r()->Resolve());

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@ -50,7 +50,7 @@ TEST_F(ResolverOverrideTest, NonOverridable) {
}
TEST_F(ResolverOverrideTest, WithId) {
auto* a = Override("a", ty.f32(), Expr(1_f), Id(7u));
auto* a = Override("a", ty.f32(), Expr(1_f), Id(7_u));
EXPECT_TRUE(r()->Resolve()) << r()->error();
@ -69,10 +69,10 @@ TEST_F(ResolverOverrideTest, WithAndWithoutIds) {
std::vector<ast::Variable*> variables;
auto* a = Override("a", ty.f32(), Expr(1_f));
auto* b = Override("b", ty.f32(), Expr(1_f));
auto* c = Override("c", ty.f32(), Expr(1_f), Id(2u));
auto* d = Override("d", ty.f32(), Expr(1_f), Id(4u));
auto* c = Override("c", ty.f32(), Expr(1_f), Id(2_u));
auto* d = Override("d", ty.f32(), Expr(1_f), Id(4_u));
auto* e = Override("e", ty.f32(), Expr(1_f));
auto* f = Override("f", ty.f32(), Expr(1_f), Id(1u));
auto* f = Override("f", ty.f32(), Expr(1_f), Id(1_u));
EXPECT_TRUE(r()->Resolve()) << r()->error();
@ -86,8 +86,8 @@ TEST_F(ResolverOverrideTest, WithAndWithoutIds) {
}
TEST_F(ResolverOverrideTest, DuplicateIds) {
Override("a", ty.f32(), Expr(1_f), Id(Source{{12, 34}}, 7u));
Override("b", ty.f32(), Expr(1_f), Id(Source{{56, 78}}, 7u));
Override("a", ty.f32(), Expr(1_f), Id(Source{{12, 34}}, 7_u));
Override("b", ty.f32(), Expr(1_f), Id(Source{{56, 78}}, 7_u));
EXPECT_FALSE(r()->Resolve());
@ -96,7 +96,7 @@ TEST_F(ResolverOverrideTest, DuplicateIds) {
}
TEST_F(ResolverOverrideTest, IdTooLarge) {
Override("a", ty.f32(), Expr(1_f), Id(Source{{12, 34}}, 65536u));
Override("a", ty.f32(), Expr(1_f), Id(Source{{12, 34}}, 65536_u));
EXPECT_FALSE(r()->Resolve());
@ -106,7 +106,7 @@ TEST_F(ResolverOverrideTest, IdTooLarge) {
TEST_F(ResolverOverrideTest, F16_TemporallyBan) {
Enable(ast::Extension::kF16);
Override(Source{{12, 34}}, "a", ty.f16(), Expr(1_h), Id(1u));
Override(Source{{12, 34}}, "a", ty.f16(), Expr(1_h), Id(1_u));
EXPECT_FALSE(r()->Resolve());

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@ -23,6 +23,7 @@
#include "src/tint/ast/alias.h"
#include "src/tint/ast/array.h"
#include "src/tint/ast/assignment_statement.h"
#include "src/tint/ast/attribute.h"
#include "src/tint/ast/bitcast_expression.h"
#include "src/tint/ast/break_statement.h"
#include "src/tint/ast/call_statement.h"
@ -437,12 +438,35 @@ sem::Variable* Resolver::Override(const ast::Override* v) {
auto* sem = builder_->create<sem::GlobalVariable>(
v, ty, sem::EvaluationStage::kOverride, ast::StorageClass::kNone, ast::Access::kUndefined,
/* constant_value */ nullptr, sem::BindingPoint{});
sem->SetConstructor(rhs);
if (auto* id = ast::GetAttribute<ast::IdAttribute>(v->attributes)) {
sem->SetOverrideId(OverrideId{static_cast<decltype(OverrideId::value)>(id->value)});
if (auto* id_attr = ast::GetAttribute<ast::IdAttribute>(v->attributes)) {
auto* materialize = Materialize(Expression(id_attr->value));
if (!materialize) {
return nullptr;
}
auto* c = materialize->ConstantValue();
if (!c) {
// TODO(crbug.com/tint/1633): Handle invalid materialization when expressions
// are supported.
return nullptr;
}
auto value = c->As<uint32_t>();
if (value > std::numeric_limits<decltype(OverrideId::value)>::max()) {
AddError("override IDs must be between 0 and " +
std::to_string(std::numeric_limits<decltype(OverrideId::value)>::max()),
id_attr->source);
return nullptr;
}
auto o = OverrideId{static_cast<decltype(OverrideId::value)>(value)};
sem->SetOverrideId(o);
// Track the constant IDs that are specified in the shader.
override_ids_.emplace(o, sem);
}
sem->SetConstructor(rhs);
builder_->Sem().Add(v, sem);
return sem;
}
@ -737,8 +761,8 @@ bool Resolver::AllocateOverridableConstantIds() {
}
OverrideId id;
if (auto* id_attr = ast::GetAttribute<ast::IdAttribute>(override->attributes)) {
id = OverrideId{static_cast<decltype(OverrideId::value)>(id_attr->value)};
if (ast::HasAttribute<ast::IdAttribute>(override->attributes)) {
id = builder_->Sem().Get<sem::GlobalVariable>(override)->OverrideId();
} else {
// No ID was specified, so allocate the next available ID.
while (!ids_exhausted && override_ids_.count(next_id)) {
@ -777,12 +801,6 @@ sem::GlobalVariable* Resolver::GlobalVariable(const ast::Variable* v) {
for (auto* attr : v->attributes) {
Mark(attr);
if (auto* id_attr = attr->As<ast::IdAttribute>()) {
// Track the constant IDs that are specified in the shader.
override_ids_.emplace(
OverrideId{static_cast<decltype(OverrideId::value)>(id_attr->value)}, sem);
}
}
if (!validator_.NoDuplicateAttributes(v->attributes)) {

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@ -1001,9 +1001,9 @@ TEST_F(ResolverTest, Function_WorkgroupSize_OverridableConsts) {
// @id(2) override depth = 2i;
// @compute @workgroup_size(width, height, depth)
// fn main() {}
auto* width = Override("width", ty.i32(), Expr(16_i), Id(0));
auto* height = Override("height", ty.i32(), Expr(8_i), Id(1));
auto* depth = Override("depth", ty.i32(), Expr(2_i), Id(2));
auto* width = Override("width", ty.i32(), Expr(16_i), Id(0_a));
auto* height = Override("height", ty.i32(), Expr(8_i), Id(1_a));
auto* depth = Override("depth", ty.i32(), Expr(2_i), Id(2_a));
auto* func = Func("main", utils::Empty, ty.void_(), utils::Empty,
utils::Vector{
Stage(ast::PipelineStage::kCompute),
@ -1029,9 +1029,9 @@ TEST_F(ResolverTest, Function_WorkgroupSize_OverridableConsts_NoInit) {
// @id(2) override depth : i32;
// @compute @workgroup_size(width, height, depth)
// fn main() {}
auto* width = Override("width", ty.i32(), Id(0));
auto* height = Override("height", ty.i32(), Id(1));
auto* depth = Override("depth", ty.i32(), Id(2));
auto* width = Override("width", ty.i32(), Id(0_a));
auto* height = Override("height", ty.i32(), Id(1_a));
auto* depth = Override("depth", ty.i32(), Id(2_a));
auto* func = Func("main", utils::Empty, ty.void_(), utils::Empty,
utils::Vector{
Stage(ast::PipelineStage::kCompute),
@ -1056,7 +1056,7 @@ TEST_F(ResolverTest, Function_WorkgroupSize_Mixed) {
// const depth = 3i;
// @compute @workgroup_size(8, height, depth)
// fn main() {}
auto* height = Override("height", ty.i32(), Expr(2_i), Id(0));
auto* height = Override("height", ty.i32(), Expr(2_i), Id(0_a));
GlobalConst("depth", ty.i32(), Expr(3_i));
auto* func = Func("main", utils::Empty, ty.void_(), utils::Empty,
utils::Vector{

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@ -75,7 +75,7 @@ TEST_F(ResolverTypeValidationTest, VariableDeclNoConstructor_Pass) {
TEST_F(ResolverTypeValidationTest, GlobalOverrideNoConstructor_Pass) {
// @id(0) override a :i32;
Override(Source{{12, 34}}, "a", ty.i32(), Id(0));
Override(Source{{12, 34}}, "a", ty.i32(), Id(0_u));
EXPECT_TRUE(r()->Resolve()) << r()->error();
}

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@ -776,7 +776,7 @@ bool Validator::Let(const sem::Variable* v) const {
}
bool Validator::Override(
const sem::Variable* v,
const sem::GlobalVariable* v,
const std::unordered_map<OverrideId, const sem::Variable*>& override_ids) const {
auto* decl = v->Declaration();
auto* storage_ty = v->Type()->UnwrapRef();
@ -788,20 +788,11 @@ bool Validator::Override(
}
for (auto* attr : decl->attributes) {
if (auto* id_attr = attr->As<ast::IdAttribute>()) {
uint32_t id = id_attr->value;
if (id > std::numeric_limits<decltype(OverrideId::value)>::max()) {
AddError(
"override IDs must be between 0 and " +
std::to_string(std::numeric_limits<decltype(OverrideId::value)>::max()),
attr->source);
return false;
}
if (auto it =
override_ids.find(OverrideId{static_cast<decltype(OverrideId::value)>(id)});
it != override_ids.end() && it->second != v) {
if (attr->Is<ast::IdAttribute>()) {
auto id = v->OverrideId();
if (auto it = override_ids.find(id); it != override_ids.end() && it->second != v) {
AddError("override IDs must be unique", attr->source);
AddNote("a override with an ID of " + std::to_string(id) +
AddNote("a override with an ID of " + std::to_string(id.value) +
" was previously declared here:",
ast::GetAttribute<ast::IdAttribute>(it->second->Declaration()->attributes)
->source);

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@ -376,7 +376,7 @@ class Validator {
/// @param v the variable to validate
/// @param override_id the set of override ids in the module
/// @returns true on success, false otherwise.
bool Override(const sem::Variable* v,
bool Override(const sem::GlobalVariable* v,
const std::unordered_map<OverrideId, const sem::Variable*>& override_id) const;
/// Validates a 'const' variable declaration

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@ -98,7 +98,7 @@ TEST_F(ResolverVariableValidationTest, OverrideExceedsIDLimit_LastReserved) {
// ...
// @id(N) override oN : i32;
constexpr size_t kLimit = std::numeric_limits<decltype(OverrideId::value)>::max();
Override("reserved", ty.i32(), Id(kLimit));
Override("reserved", ty.i32(), Id(AInt(kLimit)));
for (size_t i = 0; i < kLimit; i++) {
Override("o" + std::to_string(i), ty.i32());
}

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@ -124,8 +124,9 @@ fn main() {
auto got = Run<Unshadow, SimplifyPointers, ArrayLengthFromUniform>(src, data);
EXPECT_EQ(expect, str(got));
EXPECT_EQ(std::unordered_set<uint32_t>({0}),
got.data.Get<ArrayLengthFromUniform::Result>()->used_size_indices);
auto* val = got.data.Get<ArrayLengthFromUniform::Result>();
ASSERT_NE(val, nullptr);
EXPECT_EQ(std::unordered_set<uint32_t>({0}), val->used_size_indices);
}
TEST_F(ArrayLengthFromUniformTest, BasicInStruct) {

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@ -804,9 +804,9 @@ void main() {
TEST_F(GlslGeneratorImplTest_Function,
Emit_Attribute_EntryPoint_Compute_WithWorkgroup_OverridableConst) {
Override("width", ty.i32(), Construct(ty.i32(), 2_i), Id(7u));
Override("height", ty.i32(), Construct(ty.i32(), 3_i), Id(8u));
Override("depth", ty.i32(), Construct(ty.i32(), 4_i), Id(9u));
Override("width", ty.i32(), Construct(ty.i32(), 2_i), Id(7_u));
Override("height", ty.i32(), Construct(ty.i32(), 3_i), Id(8_u));
Override("depth", ty.i32(), Construct(ty.i32(), 4_i), Id(9_u));
Func("main", utils::Empty, ty.void_(), {},
utils::Vector{
Stage(ast::PipelineStage::kCompute),

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@ -346,7 +346,7 @@ void f() {
}
TEST_F(GlslGeneratorImplTest_ModuleConstant, Emit_Override) {
auto* var = Override("pos", ty.f32(), Expr(3_f), Id(23));
auto* var = Override("pos", ty.f32(), Expr(3_f), Id(23_a));
GeneratorImpl& gen = Build();
@ -359,7 +359,7 @@ const float pos = WGSL_SPEC_CONSTANT_23;
}
TEST_F(GlslGeneratorImplTest_ModuleConstant, Emit_Override_NoConstructor) {
auto* var = Override("pos", ty.f32(), Id(23));
auto* var = Override("pos", ty.f32(), Id(23_a));
GeneratorImpl& gen = Build();
@ -372,7 +372,7 @@ const float pos = WGSL_SPEC_CONSTANT_23;
}
TEST_F(GlslGeneratorImplTest_ModuleConstant, Emit_Override_NoId) {
auto* a = Override("a", ty.f32(), Expr(3_f), Id(0));
auto* a = Override("a", ty.f32(), Expr(3_f), Id(0_a));
auto* b = Override("b", ty.f32(), Expr(2_f));
GeneratorImpl& gen = Build();

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@ -714,9 +714,9 @@ void main() {
TEST_F(HlslGeneratorImplTest_Function,
Emit_Attribute_EntryPoint_Compute_WithWorkgroup_OverridableConst) {
Override("width", ty.i32(), Construct(ty.i32(), 2_i), Id(7u));
Override("height", ty.i32(), Construct(ty.i32(), 3_i), Id(8u));
Override("depth", ty.i32(), Construct(ty.i32(), 4_i), Id(9u));
Override("width", ty.i32(), Construct(ty.i32(), 2_i), Id(7_u));
Override("height", ty.i32(), Construct(ty.i32(), 3_i), Id(8_u));
Override("depth", ty.i32(), Construct(ty.i32(), 4_i), Id(9_u));
Func("main", utils::Empty, ty.void_(), utils::Empty,
utils::Vector{
Stage(ast::PipelineStage::kCompute),

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@ -243,7 +243,7 @@ TEST_F(HlslGeneratorImplTest_ModuleConstant, Emit_GlobalConst_arr_vec2_bool) {
}
TEST_F(HlslGeneratorImplTest_ModuleConstant, Emit_Override) {
auto* var = Override("pos", ty.f32(), Expr(3_f), Id(23));
auto* var = Override("pos", ty.f32(), Expr(3_f), Id(23_a));
GeneratorImpl& gen = Build();
@ -256,7 +256,7 @@ static const float pos = WGSL_SPEC_CONSTANT_23;
}
TEST_F(HlslGeneratorImplTest_ModuleConstant, Emit_Override_NoConstructor) {
auto* var = Override("pos", ty.f32(), Id(23));
auto* var = Override("pos", ty.f32(), Id(23_a));
GeneratorImpl& gen = Build();
@ -269,7 +269,7 @@ static const float pos = WGSL_SPEC_CONSTANT_23;
}
TEST_F(HlslGeneratorImplTest_ModuleConstant, Emit_Override_NoId) {
auto* a = Override("a", ty.f32(), Expr(3_f), Id(0));
auto* a = Override("a", ty.f32(), Expr(3_f), Id(0_a));
auto* b = Override("b", ty.f32(), Expr(2_f));
GeneratorImpl& gen = Build();

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@ -329,7 +329,7 @@ void f() {
}
TEST_F(MslGeneratorImplTest, Emit_Override) {
auto* var = Override("pos", ty.f32(), Expr(3_f), Id(23));
auto* var = Override("pos", ty.f32(), Expr(3_f), Id(23_a));
GeneratorImpl& gen = Build();
@ -338,7 +338,7 @@ TEST_F(MslGeneratorImplTest, Emit_Override) {
}
TEST_F(MslGeneratorImplTest, Emit_Override_NoId) {
auto* var_a = Override("a", ty.f32(), Id(0));
auto* var_a = Override("a", ty.f32(), Id(0_a));
auto* var_b = Override("b", ty.f32());
GeneratorImpl& gen = Build();

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@ -150,9 +150,9 @@ TEST_F(BuilderTest, Decoration_ExecutionMode_WorkgroupSize_Const) {
}
TEST_F(BuilderTest, Decoration_ExecutionMode_WorkgroupSize_OverridableConst) {
Override("width", ty.i32(), Construct(ty.i32(), 2_i), Id(7u));
Override("height", ty.i32(), Construct(ty.i32(), 3_i), Id(8u));
Override("depth", ty.i32(), Construct(ty.i32(), 4_i), Id(9u));
Override("width", ty.i32(), Construct(ty.i32(), 2_i), Id(7_u));
Override("height", ty.i32(), Construct(ty.i32(), 3_i), Id(8_u));
Override("depth", ty.i32(), Construct(ty.i32(), 4_i), Id(9_u));
auto* func = Func("main", utils::Empty, ty.void_(), utils::Empty,
utils::Vector{
WorkgroupSize("width", "height", "depth"),
@ -180,7 +180,7 @@ OpDecorate %3 BuiltIn WorkgroupSize
}
TEST_F(BuilderTest, Decoration_ExecutionMode_WorkgroupSize_LiteralAndConst) {
Override("height", ty.i32(), Construct(ty.i32(), 2_i), Id(7u));
Override("height", ty.i32(), Construct(ty.i32(), 2_i), Id(7_u));
GlobalConst("depth", ty.i32(), Construct(ty.i32(), 3_i));
auto* func = Func("main", utils::Empty, ty.void_(), utils::Empty,
utils::Vector{

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@ -250,7 +250,7 @@ OpDecorate %1 DescriptorSet 3
}
TEST_F(BuilderTest, GlobalVar_Override_Bool) {
auto* v = Override("var", ty.bool_(), Expr(true), Id(1200));
auto* v = Override("var", ty.bool_(), Expr(true), Id(1200_a));
spirv::Builder& b = Build();
@ -265,7 +265,7 @@ TEST_F(BuilderTest, GlobalVar_Override_Bool) {
}
TEST_F(BuilderTest, GlobalVar_Override_Bool_ZeroValue) {
auto* v = Override("var", ty.bool_(), Construct<bool>(), Id(1200));
auto* v = Override("var", ty.bool_(), Construct<bool>(), Id(1200_a));
spirv::Builder& b = Build();
@ -280,7 +280,7 @@ TEST_F(BuilderTest, GlobalVar_Override_Bool_ZeroValue) {
}
TEST_F(BuilderTest, GlobalVar_Override_Bool_NoConstructor) {
auto* v = Override("var", ty.bool_(), Id(1200));
auto* v = Override("var", ty.bool_(), Id(1200_a));
spirv::Builder& b = Build();
@ -295,7 +295,7 @@ TEST_F(BuilderTest, GlobalVar_Override_Bool_NoConstructor) {
}
TEST_F(BuilderTest, GlobalVar_Override_Scalar) {
auto* v = Override("var", ty.f32(), Expr(2_f), Id(0));
auto* v = Override("var", ty.f32(), Expr(2_f), Id(0_a));
spirv::Builder& b = Build();
@ -310,7 +310,7 @@ TEST_F(BuilderTest, GlobalVar_Override_Scalar) {
}
TEST_F(BuilderTest, GlobalVar_Override_Scalar_ZeroValue) {
auto* v = Override("var", ty.f32(), Construct<f32>(), Id(0));
auto* v = Override("var", ty.f32(), Construct<f32>(), Id(0_a));
spirv::Builder& b = Build();
@ -325,7 +325,7 @@ TEST_F(BuilderTest, GlobalVar_Override_Scalar_ZeroValue) {
}
TEST_F(BuilderTest, GlobalVar_Override_Scalar_F32_NoConstructor) {
auto* v = Override("var", ty.f32(), Id(0));
auto* v = Override("var", ty.f32(), Id(0_a));
spirv::Builder& b = Build();
@ -340,7 +340,7 @@ TEST_F(BuilderTest, GlobalVar_Override_Scalar_F32_NoConstructor) {
}
TEST_F(BuilderTest, GlobalVar_Override_Scalar_I32_NoConstructor) {
auto* v = Override("var", ty.i32(), Id(0));
auto* v = Override("var", ty.i32(), Id(0_a));
spirv::Builder& b = Build();
@ -355,7 +355,7 @@ TEST_F(BuilderTest, GlobalVar_Override_Scalar_I32_NoConstructor) {
}
TEST_F(BuilderTest, GlobalVar_Override_Scalar_U32_NoConstructor) {
auto* v = Override("var", ty.u32(), Id(0));
auto* v = Override("var", ty.u32(), Id(0_a));
spirv::Builder& b = Build();
@ -370,7 +370,7 @@ TEST_F(BuilderTest, GlobalVar_Override_Scalar_U32_NoConstructor) {
}
TEST_F(BuilderTest, GlobalVar_Override_NoId) {
auto* var_a = Override("a", ty.bool_(), Expr(true), Id(0));
auto* var_a = Override("a", ty.bool_(), Expr(true), Id(0_a));
auto* var_b = Override("b", ty.bool_(), Expr(false));
spirv::Builder& b = Build();

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@ -776,7 +776,11 @@ bool GeneratorImpl::EmitAttributes(std::ostream& out,
return true;
},
[&](const ast::IdAttribute* override_deco) {
out << "id(" << override_deco->value << ")";
out << "id(";
if (!EmitExpression(out, override_deco->value)) {
return false;
}
out << ")";
return true;
},
[&](const ast::StructMemberSizeAttribute* size) {

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@ -144,7 +144,7 @@ TEST_F(WgslGeneratorImplTest, Emit_GlobalConst) {
TEST_F(WgslGeneratorImplTest, Emit_OverridableConstants) {
Override("a", ty.f32());
Override("b", ty.f32(), Id(7u));
Override("b", ty.f32(), Id(7_a));
GeneratorImpl& gen = Build();