// Copyright 2020 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/ast/assignment_statement.h" #include "src/ast/binary_expression.h" #include "src/ast/binding_decoration.h" #include "src/ast/call_expression.h" #include "src/ast/decorated_variable.h" #include "src/ast/float_literal.h" #include "src/ast/function.h" #include "src/ast/identifier_expression.h" #include "src/ast/if_statement.h" #include "src/ast/location_decoration.h" #include "src/ast/member_accessor_expression.h" #include "src/ast/module.h" #include "src/ast/pipeline_stage.h" #include "src/ast/return_statement.h" #include "src/ast/scalar_constructor_expression.h" #include "src/ast/set_decoration.h" #include "src/ast/sint_literal.h" #include "src/ast/stage_decoration.h" #include "src/ast/struct.h" #include "src/ast/struct_block_decoration.h" #include "src/ast/struct_member_offset_decoration.h" #include "src/ast/type/access_control_type.h" #include "src/ast/type/array_type.h" #include "src/ast/type/f32_type.h" #include "src/ast/type/i32_type.h" #include "src/ast/type/struct_type.h" #include "src/ast/type/vector_type.h" #include "src/ast/type/void_type.h" #include "src/ast/variable.h" #include "src/ast/variable_decl_statement.h" #include "src/ast/workgroup_decoration.h" #include "src/context.h" #include "src/type_determiner.h" #include "src/writer/hlsl/test_helper.h" namespace tint { namespace writer { namespace hlsl { namespace { using HlslGeneratorImplTest_Function = TestHelper; TEST_F(HlslGeneratorImplTest_Function, Emit_Function) { ast::type::Void void_type; auto* body = create(); body->append(create()); auto* func = create("my_func", ast::VariableList{}, &void_type, body); mod.AddFunction(func); gen.increment_indent(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"( void my_func() { return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_Function_Name_Collision) { ast::type::Void void_type; auto* body = create(); body->append(create()); auto* func = create("GeometryShader", ast::VariableList{}, &void_type, body); mod.AddFunction(func); gen.increment_indent(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"( void GeometryShader_tint_0() { return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_Function_WithParams) { ast::type::F32 f32; ast::type::I32 i32; ast::VariableList params; params.push_back(create("a", ast::StorageClass::kNone, &f32)); params.push_back(create("b", ast::StorageClass::kNone, &i32)); ast::type::Void void_type; auto* body = create(); body->append(create()); auto* func = create("my_func", params, &void_type, body); mod.AddFunction(func); gen.increment_indent(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"( void my_func(float a, int b) { return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_WithInOutVars) { ast::type::Void void_type; ast::type::F32 f32; auto* foo_var = create( create("foo", ast::StorageClass::kInput, &f32)); foo_var->set_decorations({create(0, Source{})}); auto* bar_var = create( create("bar", ast::StorageClass::kOutput, &f32)); bar_var->set_decorations({create(1, Source{})}); td.RegisterVariableForTesting(foo_var); td.RegisterVariableForTesting(bar_var); mod.AddGlobalVariable(foo_var); mod.AddGlobalVariable(bar_var); ast::VariableList params; auto* body = create(); body->append(create( create("bar"), create("foo"))); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(struct frag_main_in { float foo : TEXCOORD0; }; struct frag_main_out { float bar : SV_Target1; }; frag_main_out frag_main(frag_main_in tint_in) { frag_main_out tint_out; tint_out.bar = tint_in.foo; return tint_out; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_WithInOut_Builtins) { ast::type::Void void_type; ast::type::F32 f32; ast::type::Vector vec4(&f32, 4); auto* coord_var = create( create("coord", ast::StorageClass::kInput, &vec4)); coord_var->set_decorations( {create(ast::Builtin::kFragCoord, Source{})}); auto* depth_var = create( create("depth", ast::StorageClass::kOutput, &f32)); depth_var->set_decorations( {create(ast::Builtin::kFragDepth, Source{})}); td.RegisterVariableForTesting(coord_var); td.RegisterVariableForTesting(depth_var); mod.AddGlobalVariable(coord_var); mod.AddGlobalVariable(depth_var); ast::VariableList params; auto* body = create(); body->append(create( create("depth"), create( create("coord"), create("x")))); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(struct frag_main_in { float4 coord : SV_Position; }; struct frag_main_out { float depth : SV_Depth; }; frag_main_out frag_main(frag_main_in tint_in) { frag_main_out tint_out; tint_out.depth = tint_in.coord.x; return tint_out; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_With_Uniform) { ast::type::Void void_type; ast::type::F32 f32; ast::type::Vector vec4(&f32, 4); auto* coord_var = create( create("coord", ast::StorageClass::kUniform, &vec4)); ast::VariableDecorationList decos; decos.push_back(create(0, Source{})); decos.push_back(create(1, Source{})); coord_var->set_decorations(decos); td.RegisterVariableForTesting(coord_var); mod.AddGlobalVariable(coord_var); ast::VariableList params; auto* var = create("v", ast::StorageClass::kFunction, &f32); var->set_constructor(create( create("coord"), create("x"))); auto* body = create(); body->append(create(var)); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(cbuffer : register(b0) { float4 coord; }; void frag_main() { float v = coord.x; return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_With_UniformStruct) { ast::type::Void void_type; ast::type::F32 f32; ast::type::Vector vec4(&f32, 4); ast::StructMemberList members; members.push_back(create( "coord", &vec4, ast::StructMemberDecorationList{})); auto* str = create(); str->set_members(members); ast::type::Struct s("Uniforms", str); auto* coord_var = create( create("uniforms", ast::StorageClass::kUniform, &s)); mod.AddConstructedType(&s); ast::VariableDecorationList decos; decos.push_back(create(0, Source{})); decos.push_back(create(1, Source{})); coord_var->set_decorations(decos); td.RegisterVariableForTesting(coord_var); mod.AddGlobalVariable(coord_var); ast::VariableList params; auto* var = create("v", ast::StorageClass::kFunction, &f32); var->set_constructor(create( create( create("uniforms"), create("coord")), create("x"))); auto* body = create(); body->append(create(var)); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(struct Uniforms { float4 coord; }; ConstantBuffer uniforms : register(b0); void frag_main() { float v = uniforms.coord.x; return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_With_RW_StorageBuffer_Read) { ast::type::Void void_type; ast::type::F32 f32; ast::type::I32 i32; ast::StructMemberList members; ast::StructMemberDecorationList a_deco; a_deco.push_back(create(0, Source{})); members.push_back(create("a", &i32, a_deco)); ast::StructMemberDecorationList b_deco; b_deco.push_back(create(4, Source{})); members.push_back(create("b", &f32, b_deco)); auto* str = create(); str->set_members(members); ast::type::Struct s("Data", str); ast::type::AccessControl ac(ast::AccessControl::kReadWrite, &s); auto* coord_var = create( create("coord", ast::StorageClass::kStorageBuffer, &ac)); ast::VariableDecorationList decos; decos.push_back(create(0, Source{})); decos.push_back(create(1, Source{})); coord_var->set_decorations(decos); td.RegisterVariableForTesting(coord_var); mod.AddGlobalVariable(coord_var); ast::VariableList params; auto* var = create("v", ast::StorageClass::kFunction, &f32); var->set_constructor(create( create("coord"), create("b"))); auto* body = create(); body->append(create(var)); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(RWByteAddressBuffer coord : register(u0); void frag_main() { float v = asfloat(coord.Load(4)); return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_With_RO_StorageBuffer_Read) { ast::type::Void void_type; ast::type::F32 f32; ast::type::I32 i32; ast::StructMemberList members; ast::StructMemberDecorationList a_deco; a_deco.push_back(create(0, Source{})); members.push_back(create("a", &i32, a_deco)); ast::StructMemberDecorationList b_deco; b_deco.push_back(create(4, Source{})); members.push_back(create("b", &f32, b_deco)); auto* str = create(); str->set_members(members); ast::type::Struct s("Data", str); ast::type::AccessControl ac(ast::AccessControl::kReadOnly, &s); auto* coord_var = create( create("coord", ast::StorageClass::kStorageBuffer, &ac)); ast::VariableDecorationList decos; decos.push_back(create(0, Source{})); decos.push_back(create(1, Source{})); coord_var->set_decorations(decos); td.RegisterVariableForTesting(coord_var); mod.AddGlobalVariable(coord_var); ast::VariableList params; auto* var = create("v", ast::StorageClass::kFunction, &f32); var->set_constructor(create( create("coord"), create("b"))); auto* body = create(); body->append(create(var)); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(ByteAddressBuffer coord : register(u0); void frag_main() { float v = asfloat(coord.Load(4)); return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_With_StorageBuffer_Store) { ast::type::Void void_type; ast::type::F32 f32; ast::type::I32 i32; ast::StructMemberList members; ast::StructMemberDecorationList a_deco; a_deco.push_back(create(0, Source{})); members.push_back(create("a", &i32, a_deco)); ast::StructMemberDecorationList b_deco; b_deco.push_back(create(4, Source{})); members.push_back(create("b", &f32, b_deco)); auto* str = create(); str->set_members(members); ast::type::Struct s("Data", str); ast::type::AccessControl ac(ast::AccessControl::kReadWrite, &s); auto* coord_var = create( create("coord", ast::StorageClass::kStorageBuffer, &ac)); ast::VariableDecorationList decos; decos.push_back(create(0, Source{})); decos.push_back(create(1, Source{})); coord_var->set_decorations(decos); td.RegisterVariableForTesting(coord_var); mod.AddGlobalVariable(coord_var); ast::VariableList params; auto* assign = create( create( create("coord"), create("b")), create( create(&f32, 2.0f))); auto* body = create(); body->append(assign); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(RWByteAddressBuffer coord : register(u0); void frag_main() { coord.Store(4, asuint(2.0f)); return; } )"); } TEST_F( HlslGeneratorImplTest_Function, Emit_FunctionDecoration_Called_By_EntryPoints_WithLocationGlobals_And_Params) { // NOLINT ast::type::Void void_type; ast::type::F32 f32; auto* foo_var = create( create("foo", ast::StorageClass::kInput, &f32)); foo_var->set_decorations({create(0, Source{})}); auto* bar_var = create( create("bar", ast::StorageClass::kOutput, &f32)); bar_var->set_decorations({create(1, Source{})}); auto* val_var = create( create("val", ast::StorageClass::kOutput, &f32)); val_var->set_decorations({create(0, Source{})}); td.RegisterVariableForTesting(foo_var); td.RegisterVariableForTesting(bar_var); td.RegisterVariableForTesting(val_var); mod.AddGlobalVariable(foo_var); mod.AddGlobalVariable(bar_var); mod.AddGlobalVariable(val_var); ast::VariableList params; params.push_back( create("param", ast::StorageClass::kFunction, &f32)); auto* body = create(); body->append(create( create("bar"), create("foo"))); body->append(create( create("val"), create("param"))); body->append( create(create("foo"))); auto* sub_func = create("sub_func", params, &f32, body); mod.AddFunction(sub_func); ast::ExpressionList expr; expr.push_back(create( create(&f32, 1.0f))); body = create(); body->append(create( create("bar"), create(create("sub_func"), expr))); body->append(create()); auto* func_1 = create("ep_1", params, &void_type, body); func_1->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func_1); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(struct ep_1_in { float foo : TEXCOORD0; }; struct ep_1_out { float bar : SV_Target1; float val : SV_Target0; }; float sub_func_ep_1(in ep_1_in tint_in, out ep_1_out tint_out, float param) { tint_out.bar = tint_in.foo; tint_out.val = param; return tint_in.foo; } ep_1_out ep_1(ep_1_in tint_in) { ep_1_out tint_out; tint_out.bar = sub_func_ep_1(tint_in, tint_out, 1.0f); return tint_out; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_Called_By_EntryPoints_NoUsedGlobals) { ast::type::Void void_type; ast::type::F32 f32; ast::type::Vector vec4(&f32, 4); auto* depth_var = create( create("depth", ast::StorageClass::kOutput, &f32)); ast::VariableDecorationList decos; decos.push_back( create(ast::Builtin::kFragDepth, Source{})); depth_var->set_decorations(decos); td.RegisterVariableForTesting(depth_var); mod.AddGlobalVariable(depth_var); ast::VariableList params; params.push_back( create("param", ast::StorageClass::kFunction, &f32)); auto* body = create(); body->append( create(create("param"))); auto* sub_func = create("sub_func", params, &f32, body); mod.AddFunction(sub_func); ast::ExpressionList expr; expr.push_back(create( create(&f32, 1.0f))); body = create(); body->append(create( create("depth"), create(create("sub_func"), expr))); body->append(create()); auto* func_1 = create("ep_1", params, &void_type, body); func_1->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func_1); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(struct ep_1_out { float depth : SV_Depth; }; float sub_func(float param) { return param; } ep_1_out ep_1() { ep_1_out tint_out; tint_out.depth = sub_func(1.0f); return tint_out; } )"); } TEST_F( HlslGeneratorImplTest_Function, Emit_FunctionDecoration_Called_By_EntryPoints_WithBuiltinGlobals_And_Params) { // NOLINT ast::type::Void void_type; ast::type::F32 f32; ast::type::Vector vec4(&f32, 4); auto* coord_var = create( create("coord", ast::StorageClass::kInput, &vec4)); coord_var->set_decorations( {create(ast::Builtin::kFragCoord, Source{})}); auto* depth_var = create( create("depth", ast::StorageClass::kOutput, &f32)); depth_var->set_decorations( {create(ast::Builtin::kFragDepth, Source{})}); td.RegisterVariableForTesting(coord_var); td.RegisterVariableForTesting(depth_var); mod.AddGlobalVariable(coord_var); mod.AddGlobalVariable(depth_var); ast::VariableList params; params.push_back( create("param", ast::StorageClass::kFunction, &f32)); auto* body = create(); body->append(create( create("depth"), create( create("coord"), create("x")))); body->append( create(create("param"))); auto* sub_func = create("sub_func", params, &f32, body); mod.AddFunction(sub_func); ast::ExpressionList expr; expr.push_back(create( create(&f32, 1.0f))); body = create(); body->append(create( create("depth"), create(create("sub_func"), expr))); body->append(create()); auto* func_1 = create("ep_1", params, &void_type, body); func_1->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func_1); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(struct ep_1_in { float4 coord : SV_Position; }; struct ep_1_out { float depth : SV_Depth; }; float sub_func_ep_1(in ep_1_in tint_in, out ep_1_out tint_out, float param) { tint_out.depth = tint_in.coord.x; return param; } ep_1_out ep_1(ep_1_in tint_in) { ep_1_out tint_out; tint_out.depth = sub_func_ep_1(tint_in, tint_out, 1.0f); return tint_out; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_Called_By_EntryPoint_With_Uniform) { ast::type::Void void_type; ast::type::F32 f32; ast::type::Vector vec4(&f32, 4); auto* coord_var = create( create("coord", ast::StorageClass::kUniform, &vec4)); ast::VariableDecorationList decos; decos.push_back(create(0, Source{})); decos.push_back(create(1, Source{})); coord_var->set_decorations(decos); td.RegisterVariableForTesting(coord_var); mod.AddGlobalVariable(coord_var); ast::VariableList params; params.push_back( create("param", ast::StorageClass::kFunction, &f32)); auto* body = create(); body->append( create(create( create("coord"), create("x")))); auto* sub_func = create("sub_func", params, &f32, body); mod.AddFunction(sub_func); ast::ExpressionList expr; expr.push_back(create( create(&f32, 1.0f))); auto* var = create("v", ast::StorageClass::kFunction, &f32); var->set_constructor(create( create("sub_func"), expr)); body = create(); body->append(create(var)); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(cbuffer : register(b0) { float4 coord; }; float sub_func(float param) { return coord.x; } void frag_main() { float v = sub_func(1.0f); return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_Called_By_EntryPoint_With_StorageBuffer) { ast::type::Void void_type; ast::type::F32 f32; ast::type::Vector vec4(&f32, 4); ast::type::AccessControl ac(ast::AccessControl::kReadWrite, &vec4); auto* coord_var = create( create("coord", ast::StorageClass::kStorageBuffer, &ac)); ast::VariableDecorationList decos; decos.push_back(create(0, Source{})); decos.push_back(create(1, Source{})); coord_var->set_decorations(decos); td.RegisterVariableForTesting(coord_var); mod.AddGlobalVariable(coord_var); ast::VariableList params; params.push_back( create("param", ast::StorageClass::kFunction, &f32)); auto* body = create(); body->append( create(create( create("coord"), create("x")))); auto* sub_func = create("sub_func", params, &f32, body); mod.AddFunction(sub_func); ast::ExpressionList expr; expr.push_back(create( create(&f32, 1.0f))); auto* var = create("v", ast::StorageClass::kFunction, &f32); var->set_constructor(create( create("sub_func"), expr)); body = create(); body->append(create(var)); body->append(create()); auto* func = create("frag_main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(RWByteAddressBuffer coord : register(u0); float sub_func(float param) { return asfloat(coord.Load((4 * 0))); } void frag_main() { float v = sub_func(1.0f); return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoints_WithGlobal_Nested_Return) { ast::type::Void void_type; ast::type::F32 f32; ast::type::I32 i32; auto* bar_var = create( create("bar", ast::StorageClass::kOutput, &f32)); ast::VariableDecorationList decos; decos.push_back(create(1, Source{})); bar_var->set_decorations(decos); td.RegisterVariableForTesting(bar_var); mod.AddGlobalVariable(bar_var); ast::VariableList params; auto* body = create(); body->append(create( create("bar"), create( create(&f32, 1.0f)))); auto* list = create(); list->append(create()); body->append(create( create(ast::BinaryOp::kEqual, create( create(&i32, 1)), create( create(&i32, 1))), list)); body->append(create()); auto* func_1 = create("ep_1", params, &void_type, body); func_1->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func_1); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(struct ep_1_out { float bar : SV_Target1; }; ep_1_out ep_1() { ep_1_out tint_out; tint_out.bar = 1.0f; if ((1 == 1)) { return tint_out; } return tint_out; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_WithNameCollision) { ast::type::Void void_type; auto* func = create("GeometryShader", ast::VariableList{}, &void_type, create()); func->add_decoration( create(ast::PipelineStage::kFragment, Source{})); mod.AddFunction(func); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(void GeometryShader_tint_0() { } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_Compute) { ast::type::Void void_type; ast::VariableList params; auto* body = create(); body->append(create()); auto* func = create("main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kCompute, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"([numthreads(1, 1, 1)] void main() { return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_FunctionDecoration_EntryPoint_Compute_WithWorkgroup) { ast::type::Void void_type; ast::VariableList params; auto* body = create(); body->append(create()); auto* func = create("main", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kCompute, Source{})); func->add_decoration(create(2u, 4u, 6u, Source{})); mod.AddFunction(func); ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"([numthreads(2, 4, 6)] void main() { return; } )"); } TEST_F(HlslGeneratorImplTest_Function, Emit_Function_WithArrayParams) { ast::type::F32 f32; ast::type::Array ary(&f32, 5); ast::VariableList params; params.push_back(create("a", ast::StorageClass::kNone, &ary)); ast::type::Void void_type; auto* body = create(); body->append(create()); auto* func = create("my_func", params, &void_type, body); mod.AddFunction(func); gen.increment_indent(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"( void my_func(float a[5]) { return; } )"); } // https://crbug.com/tint/297 TEST_F(HlslGeneratorImplTest_Function, Emit_Multiple_EntryPoint_With_Same_ModuleVar) { // [[block]] struct Data { // [[offset(0)]] d : f32; // }; // [[binding(0), set(0)]] var data : Data; // // [[stage(compute)]] // fn a() -> void { // return; // } // // [[stage(compute)]] // fn b() -> void { // return; // } ast::type::Void void_type; ast::type::F32 f32; ast::StructMemberList members; ast::StructMemberDecorationList a_deco; a_deco.push_back(create(0, Source{})); members.push_back(create("d", &f32, a_deco)); ast::StructDecorationList s_decos; s_decos.push_back(create(Source{})); auto* str = create(s_decos, members); ast::type::Struct s("Data", str); ast::type::AccessControl ac(ast::AccessControl::kReadWrite, &s); auto* data_var = create( create("data", ast::StorageClass::kStorageBuffer, &ac)); ast::VariableDecorationList decos; decos.push_back(create(0, Source{})); decos.push_back(create(0, Source{})); data_var->set_decorations(decos); mod.AddConstructedType(&s); td.RegisterVariableForTesting(data_var); mod.AddGlobalVariable(data_var); { ast::VariableList params; auto* var = create("v", ast::StorageClass::kFunction, &f32); var->set_constructor(create( create("data"), create("d"))); auto* body = create(); body->append(create(var)); body->append(create()); auto* func = create("a", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kCompute, Source{})); mod.AddFunction(func); } { ast::VariableList params; auto* var = create("v", ast::StorageClass::kFunction, &f32); var->set_constructor(create( create("data"), create("d"))); auto* body = create(); body->append(create(var)); body->append(create()); auto* func = create("b", params, &void_type, body); func->add_decoration( create(ast::PipelineStage::kCompute, Source{})); mod.AddFunction(func); } ASSERT_TRUE(td.Determine()) << td.error(); ASSERT_TRUE(gen.Generate(out)) << gen.error(); EXPECT_EQ(result(), R"(struct Data { float d; }; RWByteAddressBuffer data : register(u0); [numthreads(1, 1, 1)] void a() { float v = asfloat(data.Load(0)); return; } [numthreads(1, 1, 1)] void b() { float v = asfloat(data.Load(0)); return; } )"); } } // namespace } // namespace hlsl } // namespace writer } // namespace tint