[spirv-writer] Start accessor chain additions.
This Cl adds the code for the ArrayAccessor generation. Some of the MemberAccessor code is included, but tests are coming in a later Cl. Bug: tint:5 Change-Id: Id7d006ab4a82c1d31d8036d141c83d0d61f9bea5 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/20180 Reviewed-by: David Neto <dneto@google.com>
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BUILD.gn
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BUILD.gn
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@ -552,6 +552,7 @@ source_set("tint_unittests_spv_reader_src") {
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source_set("tint_unittests_spv_writer_src") {
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sources = [
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"src/writer/spirv/binary_writer_test.cc",
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"src/writer/spirv/builder_accessor_expression_test.cc",
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"src/writer/spirv/builder_assign_test.cc",
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"src/writer/spirv/builder_binary_expression_test.cc",
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"src/writer/spirv/builder_call_test.cc",
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@ -425,6 +425,7 @@ endif()
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if(${TINT_BUILD_SPV_WRITER})
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list(APPEND TINT_TEST_SRCS
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writer/spirv/binary_writer_test.cc
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writer/spirv/builder_accessor_expression_test.cc
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writer/spirv/builder_assign_test.cc
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writer/spirv/builder_binary_expression_test.cc
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writer/spirv/builder_call_test.cc
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@ -17,6 +17,7 @@
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#include <utility>
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#include "spirv/unified1/spirv.h"
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#include "src/ast/array_accessor_expression.h"
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#include "src/ast/assignment_statement.h"
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#include "src/ast/binary_expression.h"
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#include "src/ast/binding_decoration.h"
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@ -32,6 +33,7 @@
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#include "src/ast/int_literal.h"
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#include "src/ast/location_decoration.h"
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#include "src/ast/loop_statement.h"
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#include "src/ast/member_accessor_expression.h"
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#include "src/ast/return_statement.h"
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#include "src/ast/scalar_constructor_expression.h"
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#include "src/ast/set_decoration.h"
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@ -198,6 +200,9 @@ bool Builder::GenerateEntryPoint(ast::EntryPoint* ep) {
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}
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uint32_t Builder::GenerateExpression(ast::Expression* expr) {
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if (expr->IsArrayAccessor()) {
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return GenerateAccessorExpression(expr->AsArrayAccessor());
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}
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if (expr->IsBinary()) {
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return GenerateBinaryExpression(expr->AsBinary());
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}
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@ -436,6 +441,77 @@ bool Builder::GenerateGlobalVariable(ast::Variable* var) {
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return true;
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}
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uint32_t Builder::GenerateAccessorExpression(ast::Expression* expr) {
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assert(expr->IsArrayAccessor() || expr->IsMemberAccessor());
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auto result = result_op();
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auto result_id = result.to_i();
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std::vector<Operand> idx_list;
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ast::Expression* source = expr;
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while (true) {
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if (source->IsArrayAccessor()) {
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auto* ary_accessor = source->AsArrayAccessor();
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source = ary_accessor->array();
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auto idx = GenerateExpression(ary_accessor->idx_expr());
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if (idx == 0) {
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return 0;
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}
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idx_list.insert(idx_list.begin(), Operand::Int(idx));
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} else if (source->IsMemberAccessor()) {
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auto* mem_accessor = source->AsMemberAccessor();
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source = mem_accessor->structure();
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auto* data_type = mem_accessor->structure()->result_type();
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if (data_type->IsStruct()) {
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auto* strct = data_type->AsStruct()->impl();
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auto name = mem_accessor->member()->name();
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uint32_t i = 0;
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for (; i < strct->members().size(); ++i) {
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const auto& member = strct->members()[i];
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if (member->name() != name) {
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continue;
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}
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break;
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}
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idx_list.insert(idx_list.begin(), Operand::Int(i));
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} else if (data_type->IsVector()) {
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// TODO(dsinclair): Handle swizzle
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} else {
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error_ = "invalid type for member accessor";
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return 0;
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}
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} else {
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break;
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}
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}
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auto source_id = GenerateExpression(source);
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if (source_id == 0) {
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return 0;
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}
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// The access chain results in a pointer, so wrap the return type.
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ast::type::PointerType ptr(expr->result_type(), ast::StorageClass::kFunction);
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auto type_id = GenerateTypeIfNeeded(&ptr);
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if (type_id == 0) {
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return 0;
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}
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idx_list.insert(idx_list.begin(), Operand::Int(source_id));
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idx_list.insert(idx_list.begin(), result);
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idx_list.insert(idx_list.begin(), Operand::Int(type_id));
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push_function_inst(spv::Op::OpAccessChain, idx_list);
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return result_id;
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}
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uint32_t Builder::GenerateIdentifierExpression(
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ast::IdentifierExpression* expr) {
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uint32_t val = 0;
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@ -177,6 +177,10 @@ class Builder {
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/// @param var the variable to generate
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/// @returns true if the variable is emited.
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bool GenerateGlobalVariable(ast::Variable* var);
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/// Generates an array accessor expression
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/// @param expr the expresssion to generate
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/// @returns the id of the expression or 0 on failure
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uint32_t GenerateAccessorExpression(ast::Expression* expr);
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/// Generates an identifier expression
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/// @param expr the expresssion to generate
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/// @returns the id of the expression or 0 on failure
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@ -0,0 +1,131 @@
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// Copyright 2020 The Tint Authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include "gtest/gtest.h"
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#include "src/ast/array_accessor_expression.h"
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#include "src/ast/identifier_expression.h"
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#include "src/ast/int_literal.h"
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#include "src/ast/module.h"
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#include "src/ast/scalar_constructor_expression.h"
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#include "src/ast/type/array_type.h"
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#include "src/ast/type/f32_type.h"
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#include "src/ast/type/i32_type.h"
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#include "src/ast/type/vector_type.h"
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#include "src/ast/variable.h"
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#include "src/context.h"
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#include "src/type_determiner.h"
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#include "src/writer/spirv/builder.h"
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#include "src/writer/spirv/spv_dump.h"
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namespace tint {
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namespace writer {
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namespace spirv {
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namespace {
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using BuilderTest = testing::Test;
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TEST_F(BuilderTest, ArrayAccessor) {
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ast::type::I32Type i32;
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ast::type::F32Type f32;
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ast::type::VectorType vec3(&f32, 3);
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ast::Variable var("ary", ast::StorageClass::kFunction, &vec3);
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auto ary = std::make_unique<ast::IdentifierExpression>("ary");
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auto idx_expr = std::make_unique<ast::ScalarConstructorExpression>(
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std::make_unique<ast::IntLiteral>(&i32, 1));
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ast::ArrayAccessorExpression expr(std::move(ary), std::move(idx_expr));
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Context ctx;
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ast::Module mod;
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TypeDeterminer td(&ctx, &mod);
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td.RegisterVariableForTesting(&var);
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ASSERT_TRUE(td.DetermineResultType(&expr)) << td.error();
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Builder b(&mod);
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b.push_function(Function{});
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ASSERT_TRUE(b.GenerateFunctionVariable(&var)) << b.error();
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EXPECT_EQ(b.GenerateAccessorExpression(&expr), 5u);
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EXPECT_EQ(DumpInstructions(b.types()), R"(%4 = OpTypeFloat 32
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%3 = OpTypeVector %4 3
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%2 = OpTypePointer Function %3
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%6 = OpTypeInt 32 1
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%7 = OpConstant %6 1
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%8 = OpTypePointer Function %4
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)");
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EXPECT_EQ(DumpInstructions(b.functions()[0].variables()),
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R"(%1 = OpVariable %2 Function
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)");
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EXPECT_EQ(DumpInstructions(b.functions()[0].instructions()),
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R"(%5 = OpAccessChain %8 %1 %7
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)");
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}
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TEST_F(BuilderTest, ArrayAccessor_MultiLevel) {
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ast::type::I32Type i32;
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ast::type::F32Type f32;
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ast::type::VectorType vec3(&f32, 3);
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ast::type::ArrayType ary4(&vec3, 4);
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// ary = array<vec3<f32>, 4>
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// ary[3][2];
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ast::Variable var("ary", ast::StorageClass::kFunction, &ary4);
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ast::ArrayAccessorExpression expr(
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std::make_unique<ast::ArrayAccessorExpression>(
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std::make_unique<ast::IdentifierExpression>("ary"),
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std::make_unique<ast::ScalarConstructorExpression>(
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std::make_unique<ast::IntLiteral>(&i32, 3))),
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std::make_unique<ast::ScalarConstructorExpression>(
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std::make_unique<ast::IntLiteral>(&i32, 2)));
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Context ctx;
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ast::Module mod;
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TypeDeterminer td(&ctx, &mod);
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td.RegisterVariableForTesting(&var);
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ASSERT_TRUE(td.DetermineResultType(&expr)) << td.error();
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Builder b(&mod);
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b.push_function(Function{});
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ASSERT_TRUE(b.GenerateFunctionVariable(&var)) << b.error();
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EXPECT_EQ(b.GenerateAccessorExpression(&expr), 8u);
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EXPECT_EQ(DumpInstructions(b.types()), R"(%5 = OpTypeFloat 32
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%4 = OpTypeVector %5 3
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%6 = OpTypeInt 32 0
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%7 = OpConstant %6 4
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%3 = OpTypeArray %4 %7
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%2 = OpTypePointer Function %3
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%9 = OpTypeInt 32 1
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%10 = OpConstant %9 2
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%11 = OpConstant %9 3
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%12 = OpTypePointer Function %5
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)");
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EXPECT_EQ(DumpInstructions(b.functions()[0].variables()),
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R"(%1 = OpVariable %2 Function
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)");
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EXPECT_EQ(DumpInstructions(b.functions()[0].instructions()),
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R"(%8 = OpAccessChain %12 %1 %11 %10
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)");
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}
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} // namespace
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} // namespace spirv
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} // namespace writer
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} // namespace tint
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