1fd4e5da5Sopenharmony_ci// Copyright (c) 2018 Google LLC.
2fd4e5da5Sopenharmony_ci//
3fd4e5da5Sopenharmony_ci// Licensed under the Apache License, Version 2.0 (the "License");
4fd4e5da5Sopenharmony_ci// you may not use this file except in compliance with the License.
5fd4e5da5Sopenharmony_ci// You may obtain a copy of the License at
6fd4e5da5Sopenharmony_ci//
7fd4e5da5Sopenharmony_ci//     http://www.apache.org/licenses/LICENSE-2.0
8fd4e5da5Sopenharmony_ci//
9fd4e5da5Sopenharmony_ci// Unless required by applicable law or agreed to in writing, software
10fd4e5da5Sopenharmony_ci// distributed under the License is distributed on an "AS IS" BASIS,
11fd4e5da5Sopenharmony_ci// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12fd4e5da5Sopenharmony_ci// See the License for the specific language governing permissions and
13fd4e5da5Sopenharmony_ci// limitations under the License.
14fd4e5da5Sopenharmony_ci
15fd4e5da5Sopenharmony_ci#include <sstream>
16fd4e5da5Sopenharmony_ci#include <string>
17fd4e5da5Sopenharmony_ci
18fd4e5da5Sopenharmony_ci#include "gmock/gmock.h"
19fd4e5da5Sopenharmony_ci#include "test/unit_spirv.h"
20fd4e5da5Sopenharmony_ci#include "test/val/val_fixtures.h"
21fd4e5da5Sopenharmony_ci
22fd4e5da5Sopenharmony_cinamespace spvtools {
23fd4e5da5Sopenharmony_cinamespace val {
24fd4e5da5Sopenharmony_cinamespace {
25fd4e5da5Sopenharmony_ci
26fd4e5da5Sopenharmony_ciusing ::testing::HasSubstr;
27fd4e5da5Sopenharmony_ciusing ::testing::Not;
28fd4e5da5Sopenharmony_ci
29fd4e5da5Sopenharmony_ciusing ValidateBarriers = spvtest::ValidateBase<bool>;
30fd4e5da5Sopenharmony_ci
31fd4e5da5Sopenharmony_cistd::string GenerateShaderCodeImpl(
32fd4e5da5Sopenharmony_ci    const std::string& body, const std::string& capabilities_and_extensions,
33fd4e5da5Sopenharmony_ci    const std::string& definitions, const std::string& execution_model,
34fd4e5da5Sopenharmony_ci    const std::string& memory_model) {
35fd4e5da5Sopenharmony_ci  std::ostringstream ss;
36fd4e5da5Sopenharmony_ci  ss << R"(
37fd4e5da5Sopenharmony_ciOpCapability Shader
38fd4e5da5Sopenharmony_ci)";
39fd4e5da5Sopenharmony_ci
40fd4e5da5Sopenharmony_ci  ss << capabilities_and_extensions;
41fd4e5da5Sopenharmony_ci  ss << memory_model << std::endl;
42fd4e5da5Sopenharmony_ci  ss << "OpEntryPoint " << execution_model << " %main \"main\"\n";
43fd4e5da5Sopenharmony_ci  if (execution_model == "Fragment") {
44fd4e5da5Sopenharmony_ci    ss << "OpExecutionMode %main OriginUpperLeft\n";
45fd4e5da5Sopenharmony_ci  } else if (execution_model == "Geometry") {
46fd4e5da5Sopenharmony_ci    ss << "OpExecutionMode %main InputPoints\n";
47fd4e5da5Sopenharmony_ci    ss << "OpExecutionMode %main OutputPoints\n";
48fd4e5da5Sopenharmony_ci  } else if (execution_model == "GLCompute") {
49fd4e5da5Sopenharmony_ci    ss << "OpExecutionMode %main LocalSize 1 1 1\n";
50fd4e5da5Sopenharmony_ci  }
51fd4e5da5Sopenharmony_ci
52fd4e5da5Sopenharmony_ci  ss << R"(
53fd4e5da5Sopenharmony_ci%void = OpTypeVoid
54fd4e5da5Sopenharmony_ci%func = OpTypeFunction %void
55fd4e5da5Sopenharmony_ci%bool = OpTypeBool
56fd4e5da5Sopenharmony_ci%f32 = OpTypeFloat 32
57fd4e5da5Sopenharmony_ci%u32 = OpTypeInt 32 0
58fd4e5da5Sopenharmony_ci
59fd4e5da5Sopenharmony_ci%f32_0 = OpConstant %f32 0
60fd4e5da5Sopenharmony_ci%f32_1 = OpConstant %f32 1
61fd4e5da5Sopenharmony_ci%u32_0 = OpConstant %u32 0
62fd4e5da5Sopenharmony_ci%u32_1 = OpConstant %u32 1
63fd4e5da5Sopenharmony_ci%u32_4 = OpConstant %u32 4
64fd4e5da5Sopenharmony_ci)";
65fd4e5da5Sopenharmony_ci  ss << definitions;
66fd4e5da5Sopenharmony_ci  ss << R"(
67fd4e5da5Sopenharmony_ci%cross_device = OpConstant %u32 0
68fd4e5da5Sopenharmony_ci%device = OpConstant %u32 1
69fd4e5da5Sopenharmony_ci%workgroup = OpConstant %u32 2
70fd4e5da5Sopenharmony_ci%subgroup = OpConstant %u32 3
71fd4e5da5Sopenharmony_ci%invocation = OpConstant %u32 4
72fd4e5da5Sopenharmony_ci%queuefamily = OpConstant %u32 5
73fd4e5da5Sopenharmony_ci%shadercall = OpConstant %u32 6
74fd4e5da5Sopenharmony_ci
75fd4e5da5Sopenharmony_ci%none = OpConstant %u32 0
76fd4e5da5Sopenharmony_ci%acquire = OpConstant %u32 2
77fd4e5da5Sopenharmony_ci%release = OpConstant %u32 4
78fd4e5da5Sopenharmony_ci%acquire_release = OpConstant %u32 8
79fd4e5da5Sopenharmony_ci%acquire_and_release = OpConstant %u32 6
80fd4e5da5Sopenharmony_ci%sequentially_consistent = OpConstant %u32 16
81fd4e5da5Sopenharmony_ci%acquire_release_uniform_workgroup = OpConstant %u32 328
82fd4e5da5Sopenharmony_ci%acquire_uniform_workgroup = OpConstant %u32 322
83fd4e5da5Sopenharmony_ci%release_uniform_workgroup = OpConstant %u32 324
84fd4e5da5Sopenharmony_ci%acquire_and_release_uniform = OpConstant %u32 70
85fd4e5da5Sopenharmony_ci%acquire_release_subgroup = OpConstant %u32 136
86fd4e5da5Sopenharmony_ci%acquire_release_workgroup = OpConstant %u32 264
87fd4e5da5Sopenharmony_ci%uniform = OpConstant %u32 64
88fd4e5da5Sopenharmony_ci%uniform_workgroup = OpConstant %u32 320
89fd4e5da5Sopenharmony_ci%workgroup_memory = OpConstant %u32 256
90fd4e5da5Sopenharmony_ci%image_memory = OpConstant %u32 2048
91fd4e5da5Sopenharmony_ci%uniform_image_memory = OpConstant %u32 2112
92fd4e5da5Sopenharmony_ci
93fd4e5da5Sopenharmony_ci%main = OpFunction %void None %func
94fd4e5da5Sopenharmony_ci%main_entry = OpLabel
95fd4e5da5Sopenharmony_ci)";
96fd4e5da5Sopenharmony_ci
97fd4e5da5Sopenharmony_ci  ss << body;
98fd4e5da5Sopenharmony_ci
99fd4e5da5Sopenharmony_ci  ss << R"(
100fd4e5da5Sopenharmony_ciOpReturn
101fd4e5da5Sopenharmony_ciOpFunctionEnd)";
102fd4e5da5Sopenharmony_ci
103fd4e5da5Sopenharmony_ci  return ss.str();
104fd4e5da5Sopenharmony_ci}
105fd4e5da5Sopenharmony_ci
106fd4e5da5Sopenharmony_cistd::string GenerateShaderCode(
107fd4e5da5Sopenharmony_ci    const std::string& body,
108fd4e5da5Sopenharmony_ci    const std::string& capabilities_and_extensions = "",
109fd4e5da5Sopenharmony_ci    const std::string& execution_model = "GLCompute") {
110fd4e5da5Sopenharmony_ci  const std::string int64_capability = R"(
111fd4e5da5Sopenharmony_ciOpCapability Int64
112fd4e5da5Sopenharmony_ci)";
113fd4e5da5Sopenharmony_ci  const std::string int64_declarations = R"(
114fd4e5da5Sopenharmony_ci%u64 = OpTypeInt 64 0
115fd4e5da5Sopenharmony_ci%u64_0 = OpConstant %u64 0
116fd4e5da5Sopenharmony_ci%u64_1 = OpConstant %u64 1
117fd4e5da5Sopenharmony_ci)";
118fd4e5da5Sopenharmony_ci  const std::string memory_model = "OpMemoryModel Logical GLSL450";
119fd4e5da5Sopenharmony_ci  return GenerateShaderCodeImpl(
120fd4e5da5Sopenharmony_ci      body, int64_capability + capabilities_and_extensions, int64_declarations,
121fd4e5da5Sopenharmony_ci      execution_model, memory_model);
122fd4e5da5Sopenharmony_ci}
123fd4e5da5Sopenharmony_ci
124fd4e5da5Sopenharmony_cistd::string GenerateVulkanVertexShaderCode(
125fd4e5da5Sopenharmony_ci    const std::string& body,
126fd4e5da5Sopenharmony_ci    const std::string& capabilities_and_extensions = "",
127fd4e5da5Sopenharmony_ci    const std::string& execution_model = "Vertex") {
128fd4e5da5Sopenharmony_ci  const std::string memory_model = "OpMemoryModel Logical GLSL450";
129fd4e5da5Sopenharmony_ci  return GenerateShaderCodeImpl(body, capabilities_and_extensions, "",
130fd4e5da5Sopenharmony_ci                                execution_model, memory_model);
131fd4e5da5Sopenharmony_ci}
132fd4e5da5Sopenharmony_ci
133fd4e5da5Sopenharmony_cistd::string GenerateKernelCode(
134fd4e5da5Sopenharmony_ci    const std::string& body,
135fd4e5da5Sopenharmony_ci    const std::string& capabilities_and_extensions = "") {
136fd4e5da5Sopenharmony_ci  std::ostringstream ss;
137fd4e5da5Sopenharmony_ci  ss << R"(
138fd4e5da5Sopenharmony_ciOpCapability Addresses
139fd4e5da5Sopenharmony_ciOpCapability Kernel
140fd4e5da5Sopenharmony_ciOpCapability Linkage
141fd4e5da5Sopenharmony_ciOpCapability Int64
142fd4e5da5Sopenharmony_ciOpCapability NamedBarrier
143fd4e5da5Sopenharmony_ci)";
144fd4e5da5Sopenharmony_ci
145fd4e5da5Sopenharmony_ci  ss << capabilities_and_extensions;
146fd4e5da5Sopenharmony_ci  ss << R"(
147fd4e5da5Sopenharmony_ciOpMemoryModel Physical32 OpenCL
148fd4e5da5Sopenharmony_ci%void = OpTypeVoid
149fd4e5da5Sopenharmony_ci%func = OpTypeFunction %void
150fd4e5da5Sopenharmony_ci%bool = OpTypeBool
151fd4e5da5Sopenharmony_ci%f32 = OpTypeFloat 32
152fd4e5da5Sopenharmony_ci%u32 = OpTypeInt 32 0
153fd4e5da5Sopenharmony_ci%u64 = OpTypeInt 64 0
154fd4e5da5Sopenharmony_ci
155fd4e5da5Sopenharmony_ci%f32_0 = OpConstant %f32 0
156fd4e5da5Sopenharmony_ci%f32_1 = OpConstant %f32 1
157fd4e5da5Sopenharmony_ci%f32_4 = OpConstant %f32 4
158fd4e5da5Sopenharmony_ci%u32_0 = OpConstant %u32 0
159fd4e5da5Sopenharmony_ci%u32_1 = OpConstant %u32 1
160fd4e5da5Sopenharmony_ci%u32_4 = OpConstant %u32 4
161fd4e5da5Sopenharmony_ci%u64_0 = OpConstant %u64 0
162fd4e5da5Sopenharmony_ci%u64_1 = OpConstant %u64 1
163fd4e5da5Sopenharmony_ci%u64_4 = OpConstant %u64 4
164fd4e5da5Sopenharmony_ci
165fd4e5da5Sopenharmony_ci%cross_device = OpConstant %u32 0
166fd4e5da5Sopenharmony_ci%device = OpConstant %u32 1
167fd4e5da5Sopenharmony_ci%workgroup = OpConstant %u32 2
168fd4e5da5Sopenharmony_ci%subgroup = OpConstant %u32 3
169fd4e5da5Sopenharmony_ci%invocation = OpConstant %u32 4
170fd4e5da5Sopenharmony_ci
171fd4e5da5Sopenharmony_ci%none = OpConstant %u32 0
172fd4e5da5Sopenharmony_ci%acquire = OpConstant %u32 2
173fd4e5da5Sopenharmony_ci%release = OpConstant %u32 4
174fd4e5da5Sopenharmony_ci%acquire_release = OpConstant %u32 8
175fd4e5da5Sopenharmony_ci%acquire_and_release = OpConstant %u32 6
176fd4e5da5Sopenharmony_ci%sequentially_consistent = OpConstant %u32 16
177fd4e5da5Sopenharmony_ci%acquire_release_workgroup = OpConstant %u32 264
178fd4e5da5Sopenharmony_ci
179fd4e5da5Sopenharmony_ci%named_barrier = OpTypeNamedBarrier
180fd4e5da5Sopenharmony_ci
181fd4e5da5Sopenharmony_ci%main = OpFunction %void None %func
182fd4e5da5Sopenharmony_ci%main_entry = OpLabel
183fd4e5da5Sopenharmony_ci)";
184fd4e5da5Sopenharmony_ci
185fd4e5da5Sopenharmony_ci  ss << body;
186fd4e5da5Sopenharmony_ci
187fd4e5da5Sopenharmony_ci  ss << R"(
188fd4e5da5Sopenharmony_ciOpReturn
189fd4e5da5Sopenharmony_ciOpFunctionEnd)";
190fd4e5da5Sopenharmony_ci
191fd4e5da5Sopenharmony_ci  return ss.str();
192fd4e5da5Sopenharmony_ci}
193fd4e5da5Sopenharmony_ci
194fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierGLComputeSuccess) {
195fd4e5da5Sopenharmony_ci  const std::string body = R"(
196fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %none
197fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire
198fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %device %release
199fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %acquire_release
200fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %sequentially_consistent
201fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %acquire_release_uniform_workgroup
202fd4e5da5Sopenharmony_ci)";
203fd4e5da5Sopenharmony_ci
204fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
205fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions());
206fd4e5da5Sopenharmony_ci}
207fd4e5da5Sopenharmony_ci
208fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierKernelSuccess) {
209fd4e5da5Sopenharmony_ci  const std::string body = R"(
210fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %none
211fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire
212fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %device %release
213fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %acquire_release
214fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %sequentially_consistent
215fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %acquire_release_workgroup
216fd4e5da5Sopenharmony_ci)";
217fd4e5da5Sopenharmony_ci
218fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
219fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
220fd4e5da5Sopenharmony_ci}
221fd4e5da5Sopenharmony_ci
222fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierTesselationControlSuccess) {
223fd4e5da5Sopenharmony_ci  const std::string body = R"(
224fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %none
225fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire
226fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %device %release
227fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %acquire_release
228fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %sequentially_consistent
229fd4e5da5Sopenharmony_ciOpControlBarrier %cross_device %cross_device %acquire_release_uniform_workgroup
230fd4e5da5Sopenharmony_ci)";
231fd4e5da5Sopenharmony_ci
232fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "OpCapability Tessellation\n",
233fd4e5da5Sopenharmony_ci                                         "TessellationControl"));
234fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions());
235fd4e5da5Sopenharmony_ci}
236fd4e5da5Sopenharmony_ci
237fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkanSuccess) {
238fd4e5da5Sopenharmony_ci  const std::string body = R"(
239fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %device %none
240fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire_release_uniform_workgroup
241fd4e5da5Sopenharmony_ci)";
242fd4e5da5Sopenharmony_ci
243fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
244fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_0));
245fd4e5da5Sopenharmony_ci}
246fd4e5da5Sopenharmony_ci
247fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierExecutionModelFragmentSpirv12) {
248fd4e5da5Sopenharmony_ci  const std::string body = R"(
249fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %none
250fd4e5da5Sopenharmony_ci)";
251fd4e5da5Sopenharmony_ci
252fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "", "Fragment"),
253fd4e5da5Sopenharmony_ci                      SPV_ENV_UNIVERSAL_1_2);
254fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_UNIVERSAL_1_2));
255fd4e5da5Sopenharmony_ci  EXPECT_THAT(
256fd4e5da5Sopenharmony_ci      getDiagnosticString(),
257fd4e5da5Sopenharmony_ci      HasSubstr("OpControlBarrier requires one of the following "
258fd4e5da5Sopenharmony_ci                "Execution Models: TessellationControl, GLCompute, Kernel, "
259fd4e5da5Sopenharmony_ci                "MeshNV or TaskNV"));
260fd4e5da5Sopenharmony_ci}
261fd4e5da5Sopenharmony_ci
262fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierExecutionModelFragmentSpirv13) {
263fd4e5da5Sopenharmony_ci  const std::string body = R"(
264fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %none
265fd4e5da5Sopenharmony_ci)";
266fd4e5da5Sopenharmony_ci
267fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "", "Fragment"),
268fd4e5da5Sopenharmony_ci                      SPV_ENV_UNIVERSAL_1_3);
269fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
270fd4e5da5Sopenharmony_ci}
271fd4e5da5Sopenharmony_ci
272fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierFloatExecutionScope) {
273fd4e5da5Sopenharmony_ci  const std::string body = R"(
274fd4e5da5Sopenharmony_ciOpControlBarrier %f32_1 %device %none
275fd4e5da5Sopenharmony_ci)";
276fd4e5da5Sopenharmony_ci
277fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
278fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
279fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
280fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: expected scope to be a 32-bit int"));
281fd4e5da5Sopenharmony_ci}
282fd4e5da5Sopenharmony_ci
283fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierU64ExecutionScope) {
284fd4e5da5Sopenharmony_ci  const std::string body = R"(
285fd4e5da5Sopenharmony_ciOpControlBarrier %u64_1 %device %none
286fd4e5da5Sopenharmony_ci)";
287fd4e5da5Sopenharmony_ci
288fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
289fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
290fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
291fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: expected scope to be a 32-bit int"));
292fd4e5da5Sopenharmony_ci}
293fd4e5da5Sopenharmony_ci
294fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierFloatMemoryScope) {
295fd4e5da5Sopenharmony_ci  const std::string body = R"(
296fd4e5da5Sopenharmony_ciOpControlBarrier %device %f32_1 %none
297fd4e5da5Sopenharmony_ci)";
298fd4e5da5Sopenharmony_ci
299fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
300fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
301fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
302fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: expected scope to be a 32-bit int"));
303fd4e5da5Sopenharmony_ci}
304fd4e5da5Sopenharmony_ci
305fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierU64MemoryScope) {
306fd4e5da5Sopenharmony_ci  const std::string body = R"(
307fd4e5da5Sopenharmony_ciOpControlBarrier %device %u64_1 %none
308fd4e5da5Sopenharmony_ci)";
309fd4e5da5Sopenharmony_ci
310fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
311fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
312fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
313fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: expected scope to be a 32-bit int"));
314fd4e5da5Sopenharmony_ci}
315fd4e5da5Sopenharmony_ci
316fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierFloatMemorySemantics) {
317fd4e5da5Sopenharmony_ci  const std::string body = R"(
318fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %f32_0
319fd4e5da5Sopenharmony_ci)";
320fd4e5da5Sopenharmony_ci
321fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
322fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
323fd4e5da5Sopenharmony_ci  EXPECT_THAT(
324fd4e5da5Sopenharmony_ci      getDiagnosticString(),
325fd4e5da5Sopenharmony_ci      HasSubstr(
326fd4e5da5Sopenharmony_ci          "ControlBarrier: expected Memory Semantics to be a 32-bit int"));
327fd4e5da5Sopenharmony_ci}
328fd4e5da5Sopenharmony_ci
329fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierU64MemorySemantics) {
330fd4e5da5Sopenharmony_ci  const std::string body = R"(
331fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %u64_0
332fd4e5da5Sopenharmony_ci)";
333fd4e5da5Sopenharmony_ci
334fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
335fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
336fd4e5da5Sopenharmony_ci  EXPECT_THAT(
337fd4e5da5Sopenharmony_ci      getDiagnosticString(),
338fd4e5da5Sopenharmony_ci      HasSubstr(
339fd4e5da5Sopenharmony_ci          "ControlBarrier: expected Memory Semantics to be a 32-bit int"));
340fd4e5da5Sopenharmony_ci}
341fd4e5da5Sopenharmony_ci
342fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkanExecutionScopeDevice) {
343fd4e5da5Sopenharmony_ci  const std::string body = R"(
344fd4e5da5Sopenharmony_ciOpControlBarrier %device %workgroup %none
345fd4e5da5Sopenharmony_ci)";
346fd4e5da5Sopenharmony_ci
347fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
348fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_0));
349fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
350fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-None-04636"));
351fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
352fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: in Vulkan environment Execution Scope "
353fd4e5da5Sopenharmony_ci                        "is limited to Workgroup and Subgroup"));
354fd4e5da5Sopenharmony_ci}
355fd4e5da5Sopenharmony_ci
356fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkanMemoryScopeSubgroup) {
357fd4e5da5Sopenharmony_ci  const std::string body = R"(
358fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %subgroup %none
359fd4e5da5Sopenharmony_ci)";
360fd4e5da5Sopenharmony_ci
361fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
362fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_0));
363fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
364fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-SubgroupVoteKHR-07951"));
365fd4e5da5Sopenharmony_ci  EXPECT_THAT(
366fd4e5da5Sopenharmony_ci      getDiagnosticString(),
367fd4e5da5Sopenharmony_ci      HasSubstr(
368fd4e5da5Sopenharmony_ci          "ControlBarrier: in Vulkan 1.0 environment Memory Scope is can not "
369fd4e5da5Sopenharmony_ci          "be Subgroup without SubgroupBallotKHR or SubgroupVoteKHR declared"));
370fd4e5da5Sopenharmony_ci}
371fd4e5da5Sopenharmony_ci
372fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkanMemoryScopeSubgroupVoteKHR) {
373fd4e5da5Sopenharmony_ci  const std::string capabilities = R"(
374fd4e5da5Sopenharmony_ciOpCapability SubgroupVoteKHR
375fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_subgroup_vote"
376fd4e5da5Sopenharmony_ci)";
377fd4e5da5Sopenharmony_ci  const std::string body = R"(
378fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %subgroup %none
379fd4e5da5Sopenharmony_ci)";
380fd4e5da5Sopenharmony_ci
381fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, capabilities),
382fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_0);
383fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_0));
384fd4e5da5Sopenharmony_ci}
385fd4e5da5Sopenharmony_ci
386fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkan1p1MemoryScopeSubgroup) {
387fd4e5da5Sopenharmony_ci  const std::string body = R"(
388fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %subgroup %none
389fd4e5da5Sopenharmony_ci)";
390fd4e5da5Sopenharmony_ci
391fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_1);
392fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
393fd4e5da5Sopenharmony_ci}
394fd4e5da5Sopenharmony_ci
395fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkan1p1MemoryScopeCrossDevice) {
396fd4e5da5Sopenharmony_ci  const std::string body = R"(
397fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %cross_device %none
398fd4e5da5Sopenharmony_ci)";
399fd4e5da5Sopenharmony_ci
400fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_1);
401fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_1));
402fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
403fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-None-04638"));
404fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
405fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: in Vulkan environment Memory Scope is "
406fd4e5da5Sopenharmony_ci                        "limited to Device, QueueFamily, Workgroup, "
407fd4e5da5Sopenharmony_ci                        "ShaderCallKHR, Subgroup, or Invocation"));
408fd4e5da5Sopenharmony_ci}
409fd4e5da5Sopenharmony_ci
410fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers,
411fd4e5da5Sopenharmony_ci       OpControlBarrierVulkan1p1WorkgroupNonComputeMemoryFailure) {
412fd4e5da5Sopenharmony_ci  const std::string body = R"(
413fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %workgroup %acquire
414fd4e5da5Sopenharmony_ci)";
415fd4e5da5Sopenharmony_ci
416fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateVulkanVertexShaderCode(body), SPV_ENV_VULKAN_1_1);
417fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_1));
418fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
419fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-None-07321"));
420fd4e5da5Sopenharmony_ci  EXPECT_THAT(
421fd4e5da5Sopenharmony_ci      getDiagnosticString(),
422fd4e5da5Sopenharmony_ci      HasSubstr("Workgroup Memory Scope is limited to MeshNV, "
423fd4e5da5Sopenharmony_ci                "TaskNV, MeshEXT, TaskEXT, TessellationControl, and GLCompute "
424fd4e5da5Sopenharmony_ci                "execution model"));
425fd4e5da5Sopenharmony_ci}
426fd4e5da5Sopenharmony_ci
427fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers,
428fd4e5da5Sopenharmony_ci       OpControlBarrierVulkan1p1WorkgroupNonComputeExecutionFailure) {
429fd4e5da5Sopenharmony_ci  const std::string body = R"(
430fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %subgroup %acquire
431fd4e5da5Sopenharmony_ci)";
432fd4e5da5Sopenharmony_ci
433fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateVulkanVertexShaderCode(body), SPV_ENV_VULKAN_1_1);
434fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_1));
435fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
436fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-None-04637"));
437fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
438fd4e5da5Sopenharmony_ci              HasSubstr("in Vulkan environment, Workgroup execution scope is "
439fd4e5da5Sopenharmony_ci                        "only for TaskNV, MeshNV, TaskEXT, MeshEXT, "
440fd4e5da5Sopenharmony_ci                        "TessellationControl, and GLCompute execution models"));
441fd4e5da5Sopenharmony_ci}
442fd4e5da5Sopenharmony_ci
443fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkan1p1WorkgroupComputeSuccess) {
444fd4e5da5Sopenharmony_ci  const std::string body = R"(
445fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire
446fd4e5da5Sopenharmony_ci)";
447fd4e5da5Sopenharmony_ci
448fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_1);
449fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
450fd4e5da5Sopenharmony_ci}
451fd4e5da5Sopenharmony_ci
452fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkan1p1WorkgroupNonComputeSuccess) {
453fd4e5da5Sopenharmony_ci  const std::string body = R"(
454fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %subgroup %acquire
455fd4e5da5Sopenharmony_ci)";
456fd4e5da5Sopenharmony_ci
457fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateVulkanVertexShaderCode(body), SPV_ENV_VULKAN_1_1);
458fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
459fd4e5da5Sopenharmony_ci}
460fd4e5da5Sopenharmony_ci
461fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkanInvocationSuccess) {
462fd4e5da5Sopenharmony_ci  const std::string body = R"(
463fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %invocation %none
464fd4e5da5Sopenharmony_ci)";
465fd4e5da5Sopenharmony_ci
466fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
467fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_0));
468fd4e5da5Sopenharmony_ci}
469fd4e5da5Sopenharmony_ci
470fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierVulkanInvocationFailure) {
471fd4e5da5Sopenharmony_ci  const std::string body = R"(
472fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %invocation %acquire
473fd4e5da5Sopenharmony_ci)";
474fd4e5da5Sopenharmony_ci
475fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
476fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_0));
477fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
478fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-None-04641"));
479fd4e5da5Sopenharmony_ci  EXPECT_THAT(
480fd4e5da5Sopenharmony_ci      getDiagnosticString(),
481fd4e5da5Sopenharmony_ci      HasSubstr("ControlBarrier: Vulkan specification requires Memory "
482fd4e5da5Sopenharmony_ci                "Semantics to be None if used with Invocation Memory Scope"));
483fd4e5da5Sopenharmony_ci}
484fd4e5da5Sopenharmony_ci
485fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierAcquireAndRelease) {
486fd4e5da5Sopenharmony_ci  const std::string body = R"(
487fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %acquire_and_release_uniform
488fd4e5da5Sopenharmony_ci)";
489fd4e5da5Sopenharmony_ci
490fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
491fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
492fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
493fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: Memory Semantics can have at most one "
494fd4e5da5Sopenharmony_ci                        "of the following bits set: Acquire, Release, "
495fd4e5da5Sopenharmony_ci                        "AcquireRelease or SequentiallyConsistent"));
496fd4e5da5Sopenharmony_ci}
497fd4e5da5Sopenharmony_ci
498fd4e5da5Sopenharmony_ci// TODO(atgoo@github.com): the corresponding check fails Vulkan CTS,
499fd4e5da5Sopenharmony_ci// reenable once fixed.
500fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, DISABLED_OpControlBarrierVulkanSubgroupStorageClass) {
501fd4e5da5Sopenharmony_ci  const std::string body = R"(
502fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %device %acquire_release_subgroup
503fd4e5da5Sopenharmony_ci)";
504fd4e5da5Sopenharmony_ci
505fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
506fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_0));
507fd4e5da5Sopenharmony_ci  EXPECT_THAT(
508fd4e5da5Sopenharmony_ci      getDiagnosticString(),
509fd4e5da5Sopenharmony_ci      HasSubstr(
510fd4e5da5Sopenharmony_ci          "ControlBarrier: expected Memory Semantics to include a "
511fd4e5da5Sopenharmony_ci          "Vulkan-supported storage class if Memory Semantics is not None"));
512fd4e5da5Sopenharmony_ci}
513fd4e5da5Sopenharmony_ci
514fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierSubgroupExecutionFragment1p1) {
515fd4e5da5Sopenharmony_ci  const std::string body = R"(
516fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %subgroup %acquire_release_subgroup
517fd4e5da5Sopenharmony_ci)";
518fd4e5da5Sopenharmony_ci
519fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "", "Fragment"),
520fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
521fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
522fd4e5da5Sopenharmony_ci}
523fd4e5da5Sopenharmony_ci
524fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierWorkgroupExecutionFragment1p1) {
525fd4e5da5Sopenharmony_ci  const std::string body = R"(
526fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire_release
527fd4e5da5Sopenharmony_ci)";
528fd4e5da5Sopenharmony_ci
529fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "", "Fragment"),
530fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
531fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_1));
532fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
533fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-OpControlBarrier-04682"));
534fd4e5da5Sopenharmony_ci  EXPECT_THAT(
535fd4e5da5Sopenharmony_ci      getDiagnosticString(),
536fd4e5da5Sopenharmony_ci      HasSubstr(
537fd4e5da5Sopenharmony_ci          "OpControlBarrier execution scope must be Subgroup for Fragment, "
538fd4e5da5Sopenharmony_ci          "Vertex, Geometry, TessellationEvaluation, RayGeneration, "
539fd4e5da5Sopenharmony_ci          "Intersection, AnyHit, ClosestHit, and Miss execution models"));
540fd4e5da5Sopenharmony_ci}
541fd4e5da5Sopenharmony_ci
542fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierSubgroupExecutionFragment1p0) {
543fd4e5da5Sopenharmony_ci  const std::string body = R"(
544fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %workgroup %acquire_release
545fd4e5da5Sopenharmony_ci)";
546fd4e5da5Sopenharmony_ci
547fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "", "Fragment"),
548fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_0);
549fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_0));
550fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
551fd4e5da5Sopenharmony_ci              HasSubstr("OpControlBarrier requires one of the following "
552fd4e5da5Sopenharmony_ci                        "Execution "
553fd4e5da5Sopenharmony_ci                        "Models: TessellationControl, GLCompute, Kernel, "
554fd4e5da5Sopenharmony_ci                        "MeshNV or TaskNV"));
555fd4e5da5Sopenharmony_ci}
556fd4e5da5Sopenharmony_ci
557fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierSubgroupExecutionVertex1p1) {
558fd4e5da5Sopenharmony_ci  const std::string body = R"(
559fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %subgroup %acquire_release_subgroup
560fd4e5da5Sopenharmony_ci)";
561fd4e5da5Sopenharmony_ci
562fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "", "Vertex"),
563fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
564fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
565fd4e5da5Sopenharmony_ci}
566fd4e5da5Sopenharmony_ci
567fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierWorkgroupExecutionVertex1p1) {
568fd4e5da5Sopenharmony_ci  const std::string body = R"(
569fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire_release
570fd4e5da5Sopenharmony_ci)";
571fd4e5da5Sopenharmony_ci
572fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "", "Vertex"),
573fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
574fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_1));
575fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
576fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-OpControlBarrier-04682"));
577fd4e5da5Sopenharmony_ci  EXPECT_THAT(
578fd4e5da5Sopenharmony_ci      getDiagnosticString(),
579fd4e5da5Sopenharmony_ci      HasSubstr(
580fd4e5da5Sopenharmony_ci          "OpControlBarrier execution scope must be Subgroup for Fragment, "
581fd4e5da5Sopenharmony_ci          "Vertex, Geometry, TessellationEvaluation, RayGeneration, "
582fd4e5da5Sopenharmony_ci          "Intersection, AnyHit, ClosestHit, and Miss execution models"));
583fd4e5da5Sopenharmony_ci}
584fd4e5da5Sopenharmony_ci
585fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierSubgroupExecutionVertex1p0) {
586fd4e5da5Sopenharmony_ci  const std::string body = R"(
587fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %workgroup %acquire_release
588fd4e5da5Sopenharmony_ci)";
589fd4e5da5Sopenharmony_ci
590fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "", "Vertex"),
591fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_0);
592fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_0));
593fd4e5da5Sopenharmony_ci  EXPECT_THAT(
594fd4e5da5Sopenharmony_ci      getDiagnosticString(),
595fd4e5da5Sopenharmony_ci      HasSubstr("OpControlBarrier requires one of the following "
596fd4e5da5Sopenharmony_ci                "Execution Models: TessellationControl, GLCompute, Kernel, "
597fd4e5da5Sopenharmony_ci                "MeshNV or TaskNV"));
598fd4e5da5Sopenharmony_ci}
599fd4e5da5Sopenharmony_ci
600fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierSubgroupExecutionGeometry1p1) {
601fd4e5da5Sopenharmony_ci  const std::string body = R"(
602fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %subgroup %acquire_release_subgroup
603fd4e5da5Sopenharmony_ci)";
604fd4e5da5Sopenharmony_ci
605fd4e5da5Sopenharmony_ci  CompileSuccessfully(
606fd4e5da5Sopenharmony_ci      GenerateShaderCode(body, "OpCapability Geometry\n", "Geometry"),
607fd4e5da5Sopenharmony_ci      SPV_ENV_VULKAN_1_1);
608fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
609fd4e5da5Sopenharmony_ci}
610fd4e5da5Sopenharmony_ci
611fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierWorkgroupExecutionGeometry1p1) {
612fd4e5da5Sopenharmony_ci  const std::string body = R"(
613fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire_release
614fd4e5da5Sopenharmony_ci)";
615fd4e5da5Sopenharmony_ci
616fd4e5da5Sopenharmony_ci  CompileSuccessfully(
617fd4e5da5Sopenharmony_ci      GenerateShaderCode(body, "OpCapability Geometry\n", "Geometry"),
618fd4e5da5Sopenharmony_ci      SPV_ENV_VULKAN_1_1);
619fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_1));
620fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
621fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-OpControlBarrier-04682"));
622fd4e5da5Sopenharmony_ci  EXPECT_THAT(
623fd4e5da5Sopenharmony_ci      getDiagnosticString(),
624fd4e5da5Sopenharmony_ci      HasSubstr(
625fd4e5da5Sopenharmony_ci          "OpControlBarrier execution scope must be Subgroup for Fragment, "
626fd4e5da5Sopenharmony_ci          "Vertex, Geometry, TessellationEvaluation, RayGeneration, "
627fd4e5da5Sopenharmony_ci          "Intersection, AnyHit, ClosestHit, and Miss execution models"));
628fd4e5da5Sopenharmony_ci}
629fd4e5da5Sopenharmony_ci
630fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierSubgroupExecutionGeometry1p0) {
631fd4e5da5Sopenharmony_ci  const std::string body = R"(
632fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %workgroup %acquire_release
633fd4e5da5Sopenharmony_ci)";
634fd4e5da5Sopenharmony_ci
635fd4e5da5Sopenharmony_ci  CompileSuccessfully(
636fd4e5da5Sopenharmony_ci      GenerateShaderCode(body, "OpCapability Geometry\n", "Geometry"),
637fd4e5da5Sopenharmony_ci      SPV_ENV_VULKAN_1_0);
638fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_0));
639fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
640fd4e5da5Sopenharmony_ci              HasSubstr("OpControlBarrier requires one of the following "
641fd4e5da5Sopenharmony_ci                        "Execution "
642fd4e5da5Sopenharmony_ci                        "Models: TessellationControl, GLCompute, Kernel, "
643fd4e5da5Sopenharmony_ci                        "MeshNV or TaskNV"));
644fd4e5da5Sopenharmony_ci}
645fd4e5da5Sopenharmony_ci
646fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers,
647fd4e5da5Sopenharmony_ci       OpControlBarrierSubgroupExecutionTessellationEvaluation1p1) {
648fd4e5da5Sopenharmony_ci  const std::string body = R"(
649fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %subgroup %acquire_release_subgroup
650fd4e5da5Sopenharmony_ci)";
651fd4e5da5Sopenharmony_ci
652fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "OpCapability Tessellation\n",
653fd4e5da5Sopenharmony_ci                                         "TessellationEvaluation"),
654fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
655fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
656fd4e5da5Sopenharmony_ci}
657fd4e5da5Sopenharmony_ci
658fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers,
659fd4e5da5Sopenharmony_ci       OpControlBarrierWorkgroupExecutionTessellationEvaluation1p1) {
660fd4e5da5Sopenharmony_ci  const std::string body = R"(
661fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %acquire_release
662fd4e5da5Sopenharmony_ci)";
663fd4e5da5Sopenharmony_ci
664fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "OpCapability Tessellation\n",
665fd4e5da5Sopenharmony_ci                                         "TessellationEvaluation"),
666fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
667fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_1));
668fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
669fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-OpControlBarrier-04682"));
670fd4e5da5Sopenharmony_ci  EXPECT_THAT(
671fd4e5da5Sopenharmony_ci      getDiagnosticString(),
672fd4e5da5Sopenharmony_ci      HasSubstr(
673fd4e5da5Sopenharmony_ci          "OpControlBarrier execution scope must be Subgroup for Fragment, "
674fd4e5da5Sopenharmony_ci          "Vertex, Geometry, TessellationEvaluation, RayGeneration, "
675fd4e5da5Sopenharmony_ci          "Intersection, AnyHit, ClosestHit, and Miss execution models"));
676fd4e5da5Sopenharmony_ci}
677fd4e5da5Sopenharmony_ci
678fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers,
679fd4e5da5Sopenharmony_ci       OpControlBarrierSubgroupExecutionTessellationEvaluation1p0) {
680fd4e5da5Sopenharmony_ci  const std::string body = R"(
681fd4e5da5Sopenharmony_ciOpControlBarrier %subgroup %workgroup %acquire_release
682fd4e5da5Sopenharmony_ci)";
683fd4e5da5Sopenharmony_ci
684fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body, "OpCapability Tessellation\n",
685fd4e5da5Sopenharmony_ci                                         "TessellationEvaluation"),
686fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_0);
687fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_0));
688fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
689fd4e5da5Sopenharmony_ci              HasSubstr("OpControlBarrier requires one of the following "
690fd4e5da5Sopenharmony_ci                        "Execution "
691fd4e5da5Sopenharmony_ci                        "Models: TessellationControl, GLCompute, Kernel, "
692fd4e5da5Sopenharmony_ci                        "MeshNV or TaskNV"));
693fd4e5da5Sopenharmony_ci}
694fd4e5da5Sopenharmony_ci
695fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierSuccess) {
696fd4e5da5Sopenharmony_ci  const std::string body = R"(
697fd4e5da5Sopenharmony_ciOpMemoryBarrier %cross_device %acquire_release_uniform_workgroup
698fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %uniform
699fd4e5da5Sopenharmony_ci)";
700fd4e5da5Sopenharmony_ci
701fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
702fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions());
703fd4e5da5Sopenharmony_ci}
704fd4e5da5Sopenharmony_ci
705fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierKernelSuccess) {
706fd4e5da5Sopenharmony_ci  const std::string body = R"(
707fd4e5da5Sopenharmony_ciOpMemoryBarrier %cross_device %acquire_release_workgroup
708fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %none
709fd4e5da5Sopenharmony_ci)";
710fd4e5da5Sopenharmony_ci
711fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
712fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
713fd4e5da5Sopenharmony_ci}
714fd4e5da5Sopenharmony_ci
715fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierVulkanSuccess) {
716fd4e5da5Sopenharmony_ci  const std::string body = R"(
717fd4e5da5Sopenharmony_ciOpMemoryBarrier %workgroup %acquire_release_uniform_workgroup
718fd4e5da5Sopenharmony_ci)";
719fd4e5da5Sopenharmony_ci
720fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
721fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_0));
722fd4e5da5Sopenharmony_ci}
723fd4e5da5Sopenharmony_ci
724fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierFloatMemoryScope) {
725fd4e5da5Sopenharmony_ci  const std::string body = R"(
726fd4e5da5Sopenharmony_ciOpMemoryBarrier %f32_1 %acquire_release_uniform_workgroup
727fd4e5da5Sopenharmony_ci)";
728fd4e5da5Sopenharmony_ci
729fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
730fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
731fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
732fd4e5da5Sopenharmony_ci              HasSubstr("MemoryBarrier: expected scope to be a 32-bit int"));
733fd4e5da5Sopenharmony_ci}
734fd4e5da5Sopenharmony_ci
735fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierU64MemoryScope) {
736fd4e5da5Sopenharmony_ci  const std::string body = R"(
737fd4e5da5Sopenharmony_ciOpMemoryBarrier %u64_1 %acquire_release_uniform_workgroup
738fd4e5da5Sopenharmony_ci)";
739fd4e5da5Sopenharmony_ci
740fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
741fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
742fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
743fd4e5da5Sopenharmony_ci              HasSubstr("MemoryBarrier: expected scope to be a 32-bit int"));
744fd4e5da5Sopenharmony_ci}
745fd4e5da5Sopenharmony_ci
746fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierFloatMemorySemantics) {
747fd4e5da5Sopenharmony_ci  const std::string body = R"(
748fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %f32_0
749fd4e5da5Sopenharmony_ci)";
750fd4e5da5Sopenharmony_ci
751fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
752fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
753fd4e5da5Sopenharmony_ci  EXPECT_THAT(
754fd4e5da5Sopenharmony_ci      getDiagnosticString(),
755fd4e5da5Sopenharmony_ci      HasSubstr("MemoryBarrier: expected Memory Semantics to be a 32-bit int"));
756fd4e5da5Sopenharmony_ci}
757fd4e5da5Sopenharmony_ci
758fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierU64MemorySemantics) {
759fd4e5da5Sopenharmony_ci  const std::string body = R"(
760fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %u64_0
761fd4e5da5Sopenharmony_ci)";
762fd4e5da5Sopenharmony_ci
763fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
764fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
765fd4e5da5Sopenharmony_ci  EXPECT_THAT(
766fd4e5da5Sopenharmony_ci      getDiagnosticString(),
767fd4e5da5Sopenharmony_ci      HasSubstr("MemoryBarrier: expected Memory Semantics to be a 32-bit int"));
768fd4e5da5Sopenharmony_ci}
769fd4e5da5Sopenharmony_ci
770fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierVulkanMemoryScopeSubgroup) {
771fd4e5da5Sopenharmony_ci  const std::string body = R"(
772fd4e5da5Sopenharmony_ciOpMemoryBarrier %subgroup %acquire_release_uniform_workgroup
773fd4e5da5Sopenharmony_ci)";
774fd4e5da5Sopenharmony_ci
775fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
776fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_0));
777fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
778fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-SubgroupVoteKHR-07951"));
779fd4e5da5Sopenharmony_ci  EXPECT_THAT(
780fd4e5da5Sopenharmony_ci      getDiagnosticString(),
781fd4e5da5Sopenharmony_ci      HasSubstr(
782fd4e5da5Sopenharmony_ci          "MemoryBarrier: in Vulkan 1.0 environment Memory Scope is can not be "
783fd4e5da5Sopenharmony_ci          "Subgroup without SubgroupBallotKHR or SubgroupVoteKHR declared"));
784fd4e5da5Sopenharmony_ci}
785fd4e5da5Sopenharmony_ci
786fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierVulkan1p1MemoryScopeSubgroup) {
787fd4e5da5Sopenharmony_ci  const std::string body = R"(
788fd4e5da5Sopenharmony_ciOpMemoryBarrier %subgroup %acquire_release_uniform_workgroup
789fd4e5da5Sopenharmony_ci)";
790fd4e5da5Sopenharmony_ci
791fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_1);
792fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
793fd4e5da5Sopenharmony_ci}
794fd4e5da5Sopenharmony_ci
795fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierAcquireAndRelease) {
796fd4e5da5Sopenharmony_ci  const std::string body = R"(
797fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %acquire_and_release_uniform
798fd4e5da5Sopenharmony_ci)";
799fd4e5da5Sopenharmony_ci
800fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body));
801fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
802fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
803fd4e5da5Sopenharmony_ci              HasSubstr("MemoryBarrier: Memory Semantics can have at most one "
804fd4e5da5Sopenharmony_ci                        "of the following bits set: Acquire, Release, "
805fd4e5da5Sopenharmony_ci                        "AcquireRelease or SequentiallyConsistent"));
806fd4e5da5Sopenharmony_ci}
807fd4e5da5Sopenharmony_ci
808fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierVulkanMemorySemanticsNone) {
809fd4e5da5Sopenharmony_ci  const std::string body = R"(
810fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %none
811fd4e5da5Sopenharmony_ci)";
812fd4e5da5Sopenharmony_ci
813fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
814fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_0));
815fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
816fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-OpMemoryBarrier-04732"));
817fd4e5da5Sopenharmony_ci  EXPECT_THAT(
818fd4e5da5Sopenharmony_ci      getDiagnosticString(),
819fd4e5da5Sopenharmony_ci      HasSubstr("MemoryBarrier: Vulkan specification requires Memory Semantics "
820fd4e5da5Sopenharmony_ci                "to have one of the following bits set: Acquire, Release, "
821fd4e5da5Sopenharmony_ci                "AcquireRelease or SequentiallyConsistent"));
822fd4e5da5Sopenharmony_ci}
823fd4e5da5Sopenharmony_ci
824fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierVulkanMemorySemanticsAcquire) {
825fd4e5da5Sopenharmony_ci  const std::string body = R"(
826fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %acquire
827fd4e5da5Sopenharmony_ci)";
828fd4e5da5Sopenharmony_ci
829fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
830fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_0));
831fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
832fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-OpMemoryBarrier-04733"));
833fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
834fd4e5da5Sopenharmony_ci              HasSubstr("MemoryBarrier: expected Memory Semantics to include a "
835fd4e5da5Sopenharmony_ci                        "Vulkan-supported storage class"));
836fd4e5da5Sopenharmony_ci}
837fd4e5da5Sopenharmony_ci
838fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierVulkanSubgroupStorageClass) {
839fd4e5da5Sopenharmony_ci  const std::string body = R"(
840fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %acquire_release_subgroup
841fd4e5da5Sopenharmony_ci)";
842fd4e5da5Sopenharmony_ci
843fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCode(body), SPV_ENV_VULKAN_1_0);
844fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_0));
845fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
846fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-OpMemoryBarrier-04733"));
847fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
848fd4e5da5Sopenharmony_ci              HasSubstr("MemoryBarrier: expected Memory Semantics to include a "
849fd4e5da5Sopenharmony_ci                        "Vulkan-supported storage class"));
850fd4e5da5Sopenharmony_ci}
851fd4e5da5Sopenharmony_ci
852fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpNamedBarrierInitializeSuccess) {
853fd4e5da5Sopenharmony_ci  const std::string body = R"(
854fd4e5da5Sopenharmony_ci%barrier = OpNamedBarrierInitialize %named_barrier %u32_4
855fd4e5da5Sopenharmony_ci)";
856fd4e5da5Sopenharmony_ci
857fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
858fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
859fd4e5da5Sopenharmony_ci}
860fd4e5da5Sopenharmony_ci
861fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpNamedBarrierInitializeWrongResultType) {
862fd4e5da5Sopenharmony_ci  const std::string body = R"(
863fd4e5da5Sopenharmony_ci%barrier = OpNamedBarrierInitialize %u32 %u32_4
864fd4e5da5Sopenharmony_ci)";
865fd4e5da5Sopenharmony_ci
866fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
867fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA,
868fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
869fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
870fd4e5da5Sopenharmony_ci              HasSubstr("NamedBarrierInitialize: expected Result Type to be "
871fd4e5da5Sopenharmony_ci                        "OpTypeNamedBarrier"));
872fd4e5da5Sopenharmony_ci}
873fd4e5da5Sopenharmony_ci
874fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpNamedBarrierInitializeFloatSubgroupCount) {
875fd4e5da5Sopenharmony_ci  const std::string body = R"(
876fd4e5da5Sopenharmony_ci%barrier = OpNamedBarrierInitialize %named_barrier %f32_4
877fd4e5da5Sopenharmony_ci)";
878fd4e5da5Sopenharmony_ci
879fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
880fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA,
881fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
882fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
883fd4e5da5Sopenharmony_ci              HasSubstr("NamedBarrierInitialize: expected Subgroup Count to be "
884fd4e5da5Sopenharmony_ci                        "a 32-bit int"));
885fd4e5da5Sopenharmony_ci}
886fd4e5da5Sopenharmony_ci
887fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpNamedBarrierInitializeU64SubgroupCount) {
888fd4e5da5Sopenharmony_ci  const std::string body = R"(
889fd4e5da5Sopenharmony_ci%barrier = OpNamedBarrierInitialize %named_barrier %u64_4
890fd4e5da5Sopenharmony_ci)";
891fd4e5da5Sopenharmony_ci
892fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
893fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA,
894fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
895fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
896fd4e5da5Sopenharmony_ci              HasSubstr("NamedBarrierInitialize: expected Subgroup Count to be "
897fd4e5da5Sopenharmony_ci                        "a 32-bit int"));
898fd4e5da5Sopenharmony_ci}
899fd4e5da5Sopenharmony_ci
900fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryNamedBarrierSuccess) {
901fd4e5da5Sopenharmony_ci  const std::string body = R"(
902fd4e5da5Sopenharmony_ci%barrier = OpNamedBarrierInitialize %named_barrier %u32_4
903fd4e5da5Sopenharmony_ciOpMemoryNamedBarrier %barrier %workgroup %acquire_release_workgroup
904fd4e5da5Sopenharmony_ci)";
905fd4e5da5Sopenharmony_ci
906fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
907fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
908fd4e5da5Sopenharmony_ci}
909fd4e5da5Sopenharmony_ci
910fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryNamedBarrierNotNamedBarrier) {
911fd4e5da5Sopenharmony_ci  const std::string body = R"(
912fd4e5da5Sopenharmony_ciOpMemoryNamedBarrier %u32_1 %workgroup %acquire_release_workgroup
913fd4e5da5Sopenharmony_ci)";
914fd4e5da5Sopenharmony_ci
915fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
916fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA,
917fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
918fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
919fd4e5da5Sopenharmony_ci              HasSubstr("MemoryNamedBarrier: expected Named Barrier to be of "
920fd4e5da5Sopenharmony_ci                        "type OpTypeNamedBarrier"));
921fd4e5da5Sopenharmony_ci}
922fd4e5da5Sopenharmony_ci
923fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryNamedBarrierFloatMemoryScope) {
924fd4e5da5Sopenharmony_ci  const std::string body = R"(
925fd4e5da5Sopenharmony_ci%barrier = OpNamedBarrierInitialize %named_barrier %u32_4
926fd4e5da5Sopenharmony_ciOpMemoryNamedBarrier %barrier %f32_1 %acquire_release_workgroup
927fd4e5da5Sopenharmony_ci)";
928fd4e5da5Sopenharmony_ci
929fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
930fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA,
931fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
932fd4e5da5Sopenharmony_ci  EXPECT_THAT(
933fd4e5da5Sopenharmony_ci      getDiagnosticString(),
934fd4e5da5Sopenharmony_ci      HasSubstr("MemoryNamedBarrier: expected scope to be a 32-bit int"));
935fd4e5da5Sopenharmony_ci}
936fd4e5da5Sopenharmony_ci
937fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryNamedBarrierFloatMemorySemantics) {
938fd4e5da5Sopenharmony_ci  const std::string body = R"(
939fd4e5da5Sopenharmony_ci%barrier = OpNamedBarrierInitialize %named_barrier %u32_4
940fd4e5da5Sopenharmony_ciOpMemoryNamedBarrier %barrier %workgroup %f32_0
941fd4e5da5Sopenharmony_ci)";
942fd4e5da5Sopenharmony_ci
943fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
944fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA,
945fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
946fd4e5da5Sopenharmony_ci  EXPECT_THAT(
947fd4e5da5Sopenharmony_ci      getDiagnosticString(),
948fd4e5da5Sopenharmony_ci      HasSubstr(
949fd4e5da5Sopenharmony_ci          "MemoryNamedBarrier: expected Memory Semantics to be a 32-bit int"));
950fd4e5da5Sopenharmony_ci}
951fd4e5da5Sopenharmony_ci
952fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryNamedBarrierAcquireAndRelease) {
953fd4e5da5Sopenharmony_ci  const std::string body = R"(
954fd4e5da5Sopenharmony_ci%barrier = OpNamedBarrierInitialize %named_barrier %u32_4
955fd4e5da5Sopenharmony_ciOpMemoryNamedBarrier %barrier %workgroup %acquire_and_release
956fd4e5da5Sopenharmony_ci)";
957fd4e5da5Sopenharmony_ci
958fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
959fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA,
960fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
961fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
962fd4e5da5Sopenharmony_ci              HasSubstr("MemoryNamedBarrier: Memory Semantics can have at most "
963fd4e5da5Sopenharmony_ci                        "one of the following bits set: Acquire, Release, "
964fd4e5da5Sopenharmony_ci                        "AcquireRelease or SequentiallyConsistent"));
965fd4e5da5Sopenharmony_ci}
966fd4e5da5Sopenharmony_ci
967fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, TypeAsMemoryScope) {
968fd4e5da5Sopenharmony_ci  const std::string body = R"(
969fd4e5da5Sopenharmony_ciOpMemoryBarrier %u32 %u32_0
970fd4e5da5Sopenharmony_ci)";
971fd4e5da5Sopenharmony_ci
972fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateKernelCode(body), SPV_ENV_UNIVERSAL_1_1);
973fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
974fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(), HasSubstr("Operand '5[%uint]' cannot be a "
975fd4e5da5Sopenharmony_ci                                               "type"));
976fd4e5da5Sopenharmony_ci}
977fd4e5da5Sopenharmony_ci
978fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers,
979fd4e5da5Sopenharmony_ci       OpControlBarrierVulkanMemoryModelBanSequentiallyConsistent) {
980fd4e5da5Sopenharmony_ci  const std::string text = R"(
981fd4e5da5Sopenharmony_ciOpCapability Shader
982fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
983fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
984fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
985fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %1 "func"
986fd4e5da5Sopenharmony_ciOpExecutionMode %1 OriginUpperLeft
987fd4e5da5Sopenharmony_ci%2 = OpTypeVoid
988fd4e5da5Sopenharmony_ci%3 = OpTypeInt 32 0
989fd4e5da5Sopenharmony_ci%4 = OpConstant %3 16
990fd4e5da5Sopenharmony_ci%5 = OpTypeFunction %2
991fd4e5da5Sopenharmony_ci%6 = OpConstant %3 5
992fd4e5da5Sopenharmony_ci%1 = OpFunction %2 None %5
993fd4e5da5Sopenharmony_ci%7 = OpLabel
994fd4e5da5Sopenharmony_ciOpControlBarrier %6 %6 %4
995fd4e5da5Sopenharmony_ciOpReturn
996fd4e5da5Sopenharmony_ciOpFunctionEnd
997fd4e5da5Sopenharmony_ci)";
998fd4e5da5Sopenharmony_ci
999fd4e5da5Sopenharmony_ci  CompileSuccessfully(text, SPV_ENV_UNIVERSAL_1_3);
1000fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA,
1001fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
1002fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1003fd4e5da5Sopenharmony_ci              HasSubstr("SequentiallyConsistent memory semantics cannot be "
1004fd4e5da5Sopenharmony_ci                        "used with the VulkanKHR memory model."));
1005fd4e5da5Sopenharmony_ci}
1006fd4e5da5Sopenharmony_ci
1007fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers,
1008fd4e5da5Sopenharmony_ci       OpMemoryBarrierVulkanMemoryModelBanSequentiallyConsistent) {
1009fd4e5da5Sopenharmony_ci  const std::string text = R"(
1010fd4e5da5Sopenharmony_ciOpCapability Shader
1011fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1012fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1013fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1014fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %1 "func"
1015fd4e5da5Sopenharmony_ciOpExecutionMode %1 OriginUpperLeft
1016fd4e5da5Sopenharmony_ci%2 = OpTypeVoid
1017fd4e5da5Sopenharmony_ci%3 = OpTypeInt 32 0
1018fd4e5da5Sopenharmony_ci%4 = OpConstant %3 16
1019fd4e5da5Sopenharmony_ci%5 = OpTypeFunction %2
1020fd4e5da5Sopenharmony_ci%6 = OpConstant %3 5
1021fd4e5da5Sopenharmony_ci%1 = OpFunction %2 None %5
1022fd4e5da5Sopenharmony_ci%7 = OpLabel
1023fd4e5da5Sopenharmony_ciOpMemoryBarrier %6 %4
1024fd4e5da5Sopenharmony_ciOpReturn
1025fd4e5da5Sopenharmony_ciOpFunctionEnd
1026fd4e5da5Sopenharmony_ci)";
1027fd4e5da5Sopenharmony_ci
1028fd4e5da5Sopenharmony_ci  CompileSuccessfully(text, SPV_ENV_UNIVERSAL_1_3);
1029fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA,
1030fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
1031fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1032fd4e5da5Sopenharmony_ci              HasSubstr("SequentiallyConsistent memory semantics cannot be "
1033fd4e5da5Sopenharmony_ci                        "used with the VulkanKHR memory model."));
1034fd4e5da5Sopenharmony_ci}
1035fd4e5da5Sopenharmony_ci
1036fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OutputMemoryKHRRequireVulkanMemoryModelKHR) {
1037fd4e5da5Sopenharmony_ci  const std::string text = R"(
1038fd4e5da5Sopenharmony_ciOpCapability Shader
1039fd4e5da5Sopenharmony_ciOpMemoryModel Logical GLSL450
1040fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %1 "func"
1041fd4e5da5Sopenharmony_ciOpExecutionMode %1 OriginUpperLeft
1042fd4e5da5Sopenharmony_ci%2 = OpTypeVoid
1043fd4e5da5Sopenharmony_ci%3 = OpTypeInt 32 0
1044fd4e5da5Sopenharmony_ci%semantics = OpConstant %3 4104
1045fd4e5da5Sopenharmony_ci%5 = OpTypeFunction %2
1046fd4e5da5Sopenharmony_ci%device = OpConstant %3 1
1047fd4e5da5Sopenharmony_ci%1 = OpFunction %2 None %5
1048fd4e5da5Sopenharmony_ci%7 = OpLabel
1049fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %semantics
1050fd4e5da5Sopenharmony_ciOpReturn
1051fd4e5da5Sopenharmony_ciOpFunctionEnd
1052fd4e5da5Sopenharmony_ci)";
1053fd4e5da5Sopenharmony_ci
1054fd4e5da5Sopenharmony_ci  CompileSuccessfully(text);
1055fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
1056fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1057fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: Memory Semantics OutputMemoryKHR "
1058fd4e5da5Sopenharmony_ci                        "requires capability VulkanMemoryModelKHR"));
1059fd4e5da5Sopenharmony_ci}
1060fd4e5da5Sopenharmony_ci
1061fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, MakeAvailableKHRRequireVulkanMemoryModelKHR) {
1062fd4e5da5Sopenharmony_ci  const std::string text = R"(
1063fd4e5da5Sopenharmony_ciOpCapability Shader
1064fd4e5da5Sopenharmony_ciOpMemoryModel Logical GLSL450
1065fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %1 "func"
1066fd4e5da5Sopenharmony_ciOpExecutionMode %1 OriginUpperLeft
1067fd4e5da5Sopenharmony_ci%2 = OpTypeVoid
1068fd4e5da5Sopenharmony_ci%3 = OpTypeInt 32 0
1069fd4e5da5Sopenharmony_ci%semantics = OpConstant %3 8264
1070fd4e5da5Sopenharmony_ci%5 = OpTypeFunction %2
1071fd4e5da5Sopenharmony_ci%device = OpConstant %3 1
1072fd4e5da5Sopenharmony_ci%1 = OpFunction %2 None %5
1073fd4e5da5Sopenharmony_ci%7 = OpLabel
1074fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %semantics
1075fd4e5da5Sopenharmony_ciOpReturn
1076fd4e5da5Sopenharmony_ciOpFunctionEnd
1077fd4e5da5Sopenharmony_ci)";
1078fd4e5da5Sopenharmony_ci
1079fd4e5da5Sopenharmony_ci  CompileSuccessfully(text);
1080fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
1081fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1082fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: Memory Semantics MakeAvailableKHR "
1083fd4e5da5Sopenharmony_ci                        "requires capability VulkanMemoryModelKHR"));
1084fd4e5da5Sopenharmony_ci}
1085fd4e5da5Sopenharmony_ci
1086fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, MakeVisibleKHRRequireVulkanMemoryModelKHR) {
1087fd4e5da5Sopenharmony_ci  const std::string text = R"(
1088fd4e5da5Sopenharmony_ciOpCapability Shader
1089fd4e5da5Sopenharmony_ciOpMemoryModel Logical GLSL450
1090fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %1 "func"
1091fd4e5da5Sopenharmony_ciOpExecutionMode %1 OriginUpperLeft
1092fd4e5da5Sopenharmony_ci%2 = OpTypeVoid
1093fd4e5da5Sopenharmony_ci%3 = OpTypeInt 32 0
1094fd4e5da5Sopenharmony_ci%semantics = OpConstant %3 16456
1095fd4e5da5Sopenharmony_ci%5 = OpTypeFunction %2
1096fd4e5da5Sopenharmony_ci%device = OpConstant %3 1
1097fd4e5da5Sopenharmony_ci%1 = OpFunction %2 None %5
1098fd4e5da5Sopenharmony_ci%7 = OpLabel
1099fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %semantics
1100fd4e5da5Sopenharmony_ciOpReturn
1101fd4e5da5Sopenharmony_ciOpFunctionEnd
1102fd4e5da5Sopenharmony_ci)";
1103fd4e5da5Sopenharmony_ci
1104fd4e5da5Sopenharmony_ci  CompileSuccessfully(text);
1105fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
1106fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1107fd4e5da5Sopenharmony_ci              HasSubstr("ControlBarrier: Memory Semantics MakeVisibleKHR "
1108fd4e5da5Sopenharmony_ci                        "requires capability VulkanMemoryModelKHR"));
1109fd4e5da5Sopenharmony_ci}
1110fd4e5da5Sopenharmony_ci
1111fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, MakeAvailableKHRRequiresReleaseSemantics) {
1112fd4e5da5Sopenharmony_ci  const std::string text = R"(
1113fd4e5da5Sopenharmony_ciOpCapability Shader
1114fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1115fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1116fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1117fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %func "func"
1118fd4e5da5Sopenharmony_ciOpExecutionMode %func OriginUpperLeft
1119fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1120fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1121fd4e5da5Sopenharmony_ci%workgroup = OpConstant %int 2
1122fd4e5da5Sopenharmony_ci%semantics = OpConstant %int 8448
1123fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1124fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1125fd4e5da5Sopenharmony_ci%1 = OpLabel
1126fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %semantics
1127fd4e5da5Sopenharmony_ciOpReturn
1128fd4e5da5Sopenharmony_ciOpFunctionEnd
1129fd4e5da5Sopenharmony_ci)";
1130fd4e5da5Sopenharmony_ci
1131fd4e5da5Sopenharmony_ci  CompileSuccessfully(text, SPV_ENV_UNIVERSAL_1_3);
1132fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA,
1133fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
1134fd4e5da5Sopenharmony_ci  EXPECT_THAT(
1135fd4e5da5Sopenharmony_ci      getDiagnosticString(),
1136fd4e5da5Sopenharmony_ci      HasSubstr("ControlBarrier: MakeAvailableKHR Memory Semantics also "
1137fd4e5da5Sopenharmony_ci                "requires either Release or AcquireRelease Memory Semantics"));
1138fd4e5da5Sopenharmony_ci}
1139fd4e5da5Sopenharmony_ci
1140fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, MakeVisibleKHRRequiresAcquireSemantics) {
1141fd4e5da5Sopenharmony_ci  const std::string text = R"(
1142fd4e5da5Sopenharmony_ciOpCapability Shader
1143fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1144fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1145fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1146fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %func "func"
1147fd4e5da5Sopenharmony_ciOpExecutionMode %func OriginUpperLeft
1148fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1149fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1150fd4e5da5Sopenharmony_ci%workgroup = OpConstant %int 2
1151fd4e5da5Sopenharmony_ci%semantics = OpConstant %int 16640
1152fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1153fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1154fd4e5da5Sopenharmony_ci%1 = OpLabel
1155fd4e5da5Sopenharmony_ciOpControlBarrier %workgroup %workgroup %semantics
1156fd4e5da5Sopenharmony_ciOpReturn
1157fd4e5da5Sopenharmony_ciOpFunctionEnd
1158fd4e5da5Sopenharmony_ci)";
1159fd4e5da5Sopenharmony_ci
1160fd4e5da5Sopenharmony_ci  CompileSuccessfully(text, SPV_ENV_UNIVERSAL_1_3);
1161fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA,
1162fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
1163fd4e5da5Sopenharmony_ci  EXPECT_THAT(
1164fd4e5da5Sopenharmony_ci      getDiagnosticString(),
1165fd4e5da5Sopenharmony_ci      HasSubstr("ControlBarrier: MakeVisibleKHR Memory Semantics also requires "
1166fd4e5da5Sopenharmony_ci                "either Acquire or AcquireRelease Memory Semantics"));
1167fd4e5da5Sopenharmony_ci}
1168fd4e5da5Sopenharmony_ci
1169fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, MakeAvailableKHRRequiresStorageSemantics) {
1170fd4e5da5Sopenharmony_ci  const std::string text = R"(
1171fd4e5da5Sopenharmony_ciOpCapability Shader
1172fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1173fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1174fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1175fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %func "func"
1176fd4e5da5Sopenharmony_ciOpExecutionMode %func OriginUpperLeft
1177fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1178fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1179fd4e5da5Sopenharmony_ci%workgroup = OpConstant %int 2
1180fd4e5da5Sopenharmony_ci%semantics = OpConstant %int 8196
1181fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1182fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1183fd4e5da5Sopenharmony_ci%1 = OpLabel
1184fd4e5da5Sopenharmony_ciOpMemoryBarrier %workgroup %semantics
1185fd4e5da5Sopenharmony_ciOpReturn
1186fd4e5da5Sopenharmony_ciOpFunctionEnd
1187fd4e5da5Sopenharmony_ci)";
1188fd4e5da5Sopenharmony_ci
1189fd4e5da5Sopenharmony_ci  CompileSuccessfully(text, SPV_ENV_UNIVERSAL_1_3);
1190fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA,
1191fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
1192fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1193fd4e5da5Sopenharmony_ci              HasSubstr("MemoryBarrier: expected Memory Semantics to include a "
1194fd4e5da5Sopenharmony_ci                        "storage class"));
1195fd4e5da5Sopenharmony_ci}
1196fd4e5da5Sopenharmony_ci
1197fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, MakeVisibleKHRRequiresStorageSemantics) {
1198fd4e5da5Sopenharmony_ci  const std::string text = R"(
1199fd4e5da5Sopenharmony_ciOpCapability Shader
1200fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1201fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1202fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1203fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %func "func"
1204fd4e5da5Sopenharmony_ciOpExecutionMode %func OriginUpperLeft
1205fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1206fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1207fd4e5da5Sopenharmony_ci%workgroup = OpConstant %int 2
1208fd4e5da5Sopenharmony_ci%semantics = OpConstant %int 16386
1209fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1210fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1211fd4e5da5Sopenharmony_ci%1 = OpLabel
1212fd4e5da5Sopenharmony_ciOpMemoryBarrier %workgroup %semantics
1213fd4e5da5Sopenharmony_ciOpReturn
1214fd4e5da5Sopenharmony_ciOpFunctionEnd
1215fd4e5da5Sopenharmony_ci)";
1216fd4e5da5Sopenharmony_ci
1217fd4e5da5Sopenharmony_ci  CompileSuccessfully(text, SPV_ENV_UNIVERSAL_1_3);
1218fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA,
1219fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
1220fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1221fd4e5da5Sopenharmony_ci              HasSubstr("MemoryBarrier: expected Memory Semantics to include a "
1222fd4e5da5Sopenharmony_ci                        "storage class"));
1223fd4e5da5Sopenharmony_ci}
1224fd4e5da5Sopenharmony_ci
1225fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, SemanticsSpecConstantShader) {
1226fd4e5da5Sopenharmony_ci  const std::string spirv = R"(
1227fd4e5da5Sopenharmony_ciOpCapability Shader
1228fd4e5da5Sopenharmony_ciOpMemoryModel Logical GLSL450
1229fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %func "func"
1230fd4e5da5Sopenharmony_ciOpExecutionMode %func OriginUpperLeft
1231fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1232fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1233fd4e5da5Sopenharmony_ci%ptr_int_workgroup = OpTypePointer Workgroup %int
1234fd4e5da5Sopenharmony_ci%var = OpVariable %ptr_int_workgroup Workgroup
1235fd4e5da5Sopenharmony_ci%voidfn = OpTypeFunction %void
1236fd4e5da5Sopenharmony_ci%spec_const = OpSpecConstant %int 0
1237fd4e5da5Sopenharmony_ci%workgroup = OpConstant %int 2
1238fd4e5da5Sopenharmony_ci%func = OpFunction %void None %voidfn
1239fd4e5da5Sopenharmony_ci%entry = OpLabel
1240fd4e5da5Sopenharmony_ciOpMemoryBarrier %workgroup %spec_const
1241fd4e5da5Sopenharmony_ciOpReturn
1242fd4e5da5Sopenharmony_ciOpFunctionEnd
1243fd4e5da5Sopenharmony_ci)";
1244fd4e5da5Sopenharmony_ci
1245fd4e5da5Sopenharmony_ci  CompileSuccessfully(spirv);
1246fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
1247fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1248fd4e5da5Sopenharmony_ci              HasSubstr("Memory Semantics ids must be OpConstant when Shader "
1249fd4e5da5Sopenharmony_ci                        "capability is present"));
1250fd4e5da5Sopenharmony_ci}
1251fd4e5da5Sopenharmony_ci
1252fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, SemanticsSpecConstantKernel) {
1253fd4e5da5Sopenharmony_ci  const std::string spirv = R"(
1254fd4e5da5Sopenharmony_ciOpCapability Kernel
1255fd4e5da5Sopenharmony_ciOpCapability Linkage
1256fd4e5da5Sopenharmony_ciOpMemoryModel Logical OpenCL
1257fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1258fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1259fd4e5da5Sopenharmony_ci%ptr_int_workgroup = OpTypePointer Workgroup %int
1260fd4e5da5Sopenharmony_ci%var = OpVariable %ptr_int_workgroup Workgroup
1261fd4e5da5Sopenharmony_ci%voidfn = OpTypeFunction %void
1262fd4e5da5Sopenharmony_ci%spec_const = OpSpecConstant %int 0
1263fd4e5da5Sopenharmony_ci%workgroup = OpConstant %int 2
1264fd4e5da5Sopenharmony_ci%func = OpFunction %void None %voidfn
1265fd4e5da5Sopenharmony_ci%entry = OpLabel
1266fd4e5da5Sopenharmony_ciOpMemoryBarrier %workgroup %spec_const
1267fd4e5da5Sopenharmony_ciOpReturn
1268fd4e5da5Sopenharmony_ciOpFunctionEnd
1269fd4e5da5Sopenharmony_ci)";
1270fd4e5da5Sopenharmony_ci
1271fd4e5da5Sopenharmony_ci  CompileSuccessfully(spirv);
1272fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_SUCCESS, ValidateInstructions());
1273fd4e5da5Sopenharmony_ci}
1274fd4e5da5Sopenharmony_ci
1275fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, ScopeSpecConstantShader) {
1276fd4e5da5Sopenharmony_ci  const std::string spirv = R"(
1277fd4e5da5Sopenharmony_ciOpCapability Shader
1278fd4e5da5Sopenharmony_ciOpMemoryModel Logical GLSL450
1279fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %func "func"
1280fd4e5da5Sopenharmony_ciOpExecutionMode %func OriginUpperLeft
1281fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1282fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1283fd4e5da5Sopenharmony_ci%ptr_int_workgroup = OpTypePointer Workgroup %int
1284fd4e5da5Sopenharmony_ci%var = OpVariable %ptr_int_workgroup Workgroup
1285fd4e5da5Sopenharmony_ci%voidfn = OpTypeFunction %void
1286fd4e5da5Sopenharmony_ci%spec_const = OpSpecConstant %int 0
1287fd4e5da5Sopenharmony_ci%relaxed = OpConstant %int 0
1288fd4e5da5Sopenharmony_ci%func = OpFunction %void None %voidfn
1289fd4e5da5Sopenharmony_ci%entry = OpLabel
1290fd4e5da5Sopenharmony_ciOpMemoryBarrier %spec_const %relaxed
1291fd4e5da5Sopenharmony_ciOpReturn
1292fd4e5da5Sopenharmony_ciOpFunctionEnd
1293fd4e5da5Sopenharmony_ci)";
1294fd4e5da5Sopenharmony_ci
1295fd4e5da5Sopenharmony_ci  CompileSuccessfully(spirv);
1296fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
1297fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1298fd4e5da5Sopenharmony_ci              HasSubstr("Scope ids must be OpConstant when Shader "
1299fd4e5da5Sopenharmony_ci                        "capability is present"));
1300fd4e5da5Sopenharmony_ci}
1301fd4e5da5Sopenharmony_ci
1302fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, ScopeSpecConstantKernel) {
1303fd4e5da5Sopenharmony_ci  const std::string spirv = R"(
1304fd4e5da5Sopenharmony_ciOpCapability Kernel
1305fd4e5da5Sopenharmony_ciOpCapability Linkage
1306fd4e5da5Sopenharmony_ciOpMemoryModel Logical OpenCL
1307fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1308fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1309fd4e5da5Sopenharmony_ci%ptr_int_workgroup = OpTypePointer Workgroup %int
1310fd4e5da5Sopenharmony_ci%var = OpVariable %ptr_int_workgroup Workgroup
1311fd4e5da5Sopenharmony_ci%voidfn = OpTypeFunction %void
1312fd4e5da5Sopenharmony_ci%spec_const = OpSpecConstant %int 0
1313fd4e5da5Sopenharmony_ci%relaxed = OpConstant %int 0
1314fd4e5da5Sopenharmony_ci%func = OpFunction %void None %voidfn
1315fd4e5da5Sopenharmony_ci%entry = OpLabel
1316fd4e5da5Sopenharmony_ciOpMemoryBarrier %spec_const %relaxed
1317fd4e5da5Sopenharmony_ciOpReturn
1318fd4e5da5Sopenharmony_ciOpFunctionEnd
1319fd4e5da5Sopenharmony_ci)";
1320fd4e5da5Sopenharmony_ci
1321fd4e5da5Sopenharmony_ci  CompileSuccessfully(spirv);
1322fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_SUCCESS, ValidateInstructions());
1323fd4e5da5Sopenharmony_ci}
1324fd4e5da5Sopenharmony_ci
1325fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, VulkanMemoryModelDeviceScopeBad) {
1326fd4e5da5Sopenharmony_ci  const std::string text = R"(
1327fd4e5da5Sopenharmony_ciOpCapability Shader
1328fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1329fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1330fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1331fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %func "func"
1332fd4e5da5Sopenharmony_ciOpExecutionMode %func OriginUpperLeft
1333fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1334fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1335fd4e5da5Sopenharmony_ci%device = OpConstant %int 1
1336fd4e5da5Sopenharmony_ci%semantics = OpConstant %int 0
1337fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1338fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1339fd4e5da5Sopenharmony_ci%1 = OpLabel
1340fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %semantics
1341fd4e5da5Sopenharmony_ciOpReturn
1342fd4e5da5Sopenharmony_ciOpFunctionEnd
1343fd4e5da5Sopenharmony_ci)";
1344fd4e5da5Sopenharmony_ci
1345fd4e5da5Sopenharmony_ci  CompileSuccessfully(text, SPV_ENV_UNIVERSAL_1_3);
1346fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA,
1347fd4e5da5Sopenharmony_ci            ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
1348fd4e5da5Sopenharmony_ci  EXPECT_THAT(
1349fd4e5da5Sopenharmony_ci      getDiagnosticString(),
1350fd4e5da5Sopenharmony_ci      HasSubstr("Use of device scope with VulkanKHR memory model requires the "
1351fd4e5da5Sopenharmony_ci                "VulkanMemoryModelDeviceScopeKHR capability"));
1352fd4e5da5Sopenharmony_ci}
1353fd4e5da5Sopenharmony_ci
1354fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, VulkanMemoryModelDeviceScopeGood) {
1355fd4e5da5Sopenharmony_ci  const std::string text = R"(
1356fd4e5da5Sopenharmony_ciOpCapability Shader
1357fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1358fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelDeviceScopeKHR
1359fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1360fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1361fd4e5da5Sopenharmony_ciOpEntryPoint Fragment %func "func"
1362fd4e5da5Sopenharmony_ciOpExecutionMode %func OriginUpperLeft
1363fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1364fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1365fd4e5da5Sopenharmony_ci%device = OpConstant %int 1
1366fd4e5da5Sopenharmony_ci%semantics = OpConstant %int 0
1367fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1368fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1369fd4e5da5Sopenharmony_ci%1 = OpLabel
1370fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %semantics
1371fd4e5da5Sopenharmony_ciOpReturn
1372fd4e5da5Sopenharmony_ciOpFunctionEnd
1373fd4e5da5Sopenharmony_ci)";
1374fd4e5da5Sopenharmony_ci
1375fd4e5da5Sopenharmony_ci  CompileSuccessfully(text, SPV_ENV_UNIVERSAL_1_3);
1376fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
1377fd4e5da5Sopenharmony_ci}
1378fd4e5da5Sopenharmony_ci
1379fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, VolatileMemoryBarrier) {
1380fd4e5da5Sopenharmony_ci  const std::string text = R"(
1381fd4e5da5Sopenharmony_ciOpCapability Shader
1382fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1383fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelDeviceScopeKHR
1384fd4e5da5Sopenharmony_ciOpCapability Linkage
1385fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1386fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1387fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1388fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1389fd4e5da5Sopenharmony_ci%device = OpConstant %int 1
1390fd4e5da5Sopenharmony_ci%semantics = OpConstant %int 32768
1391fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1392fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1393fd4e5da5Sopenharmony_ci%1 = OpLabel
1394fd4e5da5Sopenharmony_ciOpMemoryBarrier %device %semantics
1395fd4e5da5Sopenharmony_ciOpReturn
1396fd4e5da5Sopenharmony_ciOpFunctionEnd
1397fd4e5da5Sopenharmony_ci)";
1398fd4e5da5Sopenharmony_ci
1399fd4e5da5Sopenharmony_ci  CompileSuccessfully(text);
1400fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
1401fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1402fd4e5da5Sopenharmony_ci              HasSubstr("Memory Semantics Volatile can only be used with "
1403fd4e5da5Sopenharmony_ci                        "atomic instructions"));
1404fd4e5da5Sopenharmony_ci}
1405fd4e5da5Sopenharmony_ci
1406fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, VolatileControlBarrier) {
1407fd4e5da5Sopenharmony_ci  const std::string text = R"(
1408fd4e5da5Sopenharmony_ciOpCapability Shader
1409fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1410fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelDeviceScopeKHR
1411fd4e5da5Sopenharmony_ciOpCapability Linkage
1412fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1413fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1414fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1415fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1416fd4e5da5Sopenharmony_ci%device = OpConstant %int 1
1417fd4e5da5Sopenharmony_ci%semantics = OpConstant %int 32768
1418fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1419fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1420fd4e5da5Sopenharmony_ci%1 = OpLabel
1421fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %semantics
1422fd4e5da5Sopenharmony_ciOpReturn
1423fd4e5da5Sopenharmony_ciOpFunctionEnd
1424fd4e5da5Sopenharmony_ci)";
1425fd4e5da5Sopenharmony_ci
1426fd4e5da5Sopenharmony_ci  CompileSuccessfully(text);
1427fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
1428fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1429fd4e5da5Sopenharmony_ci              HasSubstr("Memory Semantics Volatile can only be used with "
1430fd4e5da5Sopenharmony_ci                        "atomic instructions"));
1431fd4e5da5Sopenharmony_ci}
1432fd4e5da5Sopenharmony_ci
1433fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, CooperativeMatrixSpecConstantVolatile) {
1434fd4e5da5Sopenharmony_ci  const std::string text = R"(
1435fd4e5da5Sopenharmony_ciOpCapability Shader
1436fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1437fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelDeviceScopeKHR
1438fd4e5da5Sopenharmony_ciOpCapability CooperativeMatrixNV
1439fd4e5da5Sopenharmony_ciOpCapability Linkage
1440fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1441fd4e5da5Sopenharmony_ciOpExtension "SPV_NV_cooperative_matrix"
1442fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1443fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1444fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1445fd4e5da5Sopenharmony_ci%device = OpConstant %int 1
1446fd4e5da5Sopenharmony_ci%semantics = OpSpecConstant %int 32768
1447fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1448fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1449fd4e5da5Sopenharmony_ci%1 = OpLabel
1450fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %semantics
1451fd4e5da5Sopenharmony_ciOpReturn
1452fd4e5da5Sopenharmony_ciOpFunctionEnd
1453fd4e5da5Sopenharmony_ci)";
1454fd4e5da5Sopenharmony_ci
1455fd4e5da5Sopenharmony_ci  CompileSuccessfully(text);
1456fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_SUCCESS, ValidateInstructions());
1457fd4e5da5Sopenharmony_ci}
1458fd4e5da5Sopenharmony_ci
1459fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, CooperativeMatrixNonConstantSemantics) {
1460fd4e5da5Sopenharmony_ci  const std::string text = R"(
1461fd4e5da5Sopenharmony_ciOpCapability Shader
1462fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelKHR
1463fd4e5da5Sopenharmony_ciOpCapability VulkanMemoryModelDeviceScopeKHR
1464fd4e5da5Sopenharmony_ciOpCapability CooperativeMatrixNV
1465fd4e5da5Sopenharmony_ciOpCapability Linkage
1466fd4e5da5Sopenharmony_ciOpExtension "SPV_KHR_vulkan_memory_model"
1467fd4e5da5Sopenharmony_ciOpExtension "SPV_NV_cooperative_matrix"
1468fd4e5da5Sopenharmony_ciOpMemoryModel Logical VulkanKHR
1469fd4e5da5Sopenharmony_ci%void = OpTypeVoid
1470fd4e5da5Sopenharmony_ci%int = OpTypeInt 32 0
1471fd4e5da5Sopenharmony_ci%device = OpConstant %int 1
1472fd4e5da5Sopenharmony_ci%semantics = OpUndef %int
1473fd4e5da5Sopenharmony_ci%functy = OpTypeFunction %void
1474fd4e5da5Sopenharmony_ci%func = OpFunction %void None %functy
1475fd4e5da5Sopenharmony_ci%1 = OpLabel
1476fd4e5da5Sopenharmony_ciOpControlBarrier %device %device %semantics
1477fd4e5da5Sopenharmony_ciOpReturn
1478fd4e5da5Sopenharmony_ciOpFunctionEnd
1479fd4e5da5Sopenharmony_ci)";
1480fd4e5da5Sopenharmony_ci
1481fd4e5da5Sopenharmony_ci  CompileSuccessfully(text);
1482fd4e5da5Sopenharmony_ci  EXPECT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions());
1483fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1484fd4e5da5Sopenharmony_ci              HasSubstr("Memory Semantics must be a constant instruction when "
1485fd4e5da5Sopenharmony_ci                        "CooperativeMatrixNV capability is present"));
1486fd4e5da5Sopenharmony_ci}
1487fd4e5da5Sopenharmony_ci
1488fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierShaderCallRayGenSuccess) {
1489fd4e5da5Sopenharmony_ci  const std::string body =
1490fd4e5da5Sopenharmony_ci      "OpMemoryBarrier %shadercall %release_uniform_workgroup";
1491fd4e5da5Sopenharmony_ci
1492fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCodeImpl(body,
1493fd4e5da5Sopenharmony_ci                                             // capabilities_and_extensions
1494fd4e5da5Sopenharmony_ci                                             R"(
1495fd4e5da5Sopenharmony_ci                                               OpCapability VulkanMemoryModelKHR
1496fd4e5da5Sopenharmony_ci                                               OpCapability RayTracingKHR
1497fd4e5da5Sopenharmony_ci                                               OpExtension "SPV_KHR_vulkan_memory_model"
1498fd4e5da5Sopenharmony_ci                                               OpExtension "SPV_KHR_ray_tracing"
1499fd4e5da5Sopenharmony_ci                                             )",
1500fd4e5da5Sopenharmony_ci                                             // definitions
1501fd4e5da5Sopenharmony_ci                                             "",
1502fd4e5da5Sopenharmony_ci                                             // execution_model
1503fd4e5da5Sopenharmony_ci                                             "RayGenerationKHR",
1504fd4e5da5Sopenharmony_ci                                             // memory_model
1505fd4e5da5Sopenharmony_ci                                             "OpMemoryModel Logical VulkanKHR"),
1506fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
1507fd4e5da5Sopenharmony_ci
1508fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_VULKAN_1_1));
1509fd4e5da5Sopenharmony_ci}
1510fd4e5da5Sopenharmony_ci
1511fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpMemoryBarrierShaderCallComputeFailure) {
1512fd4e5da5Sopenharmony_ci  const std::string body =
1513fd4e5da5Sopenharmony_ci      "OpMemoryBarrier %shadercall %release_uniform_workgroup";
1514fd4e5da5Sopenharmony_ci
1515fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCodeImpl(body,
1516fd4e5da5Sopenharmony_ci                                             // capabilities_and_extensions
1517fd4e5da5Sopenharmony_ci                                             R"(
1518fd4e5da5Sopenharmony_ci                                               OpCapability VulkanMemoryModelKHR
1519fd4e5da5Sopenharmony_ci                                               OpExtension "SPV_KHR_vulkan_memory_model"
1520fd4e5da5Sopenharmony_ci                                             )",
1521fd4e5da5Sopenharmony_ci                                             // definitions
1522fd4e5da5Sopenharmony_ci                                             "",
1523fd4e5da5Sopenharmony_ci                                             // execution_model
1524fd4e5da5Sopenharmony_ci                                             "GLCompute",
1525fd4e5da5Sopenharmony_ci                                             // memory_model
1526fd4e5da5Sopenharmony_ci                                             "OpMemoryModel Logical VulkanKHR"),
1527fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
1528fd4e5da5Sopenharmony_ci
1529fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions(SPV_ENV_VULKAN_1_1));
1530fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1531fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-None-04640"));
1532fd4e5da5Sopenharmony_ci  EXPECT_THAT(
1533fd4e5da5Sopenharmony_ci      getDiagnosticString(),
1534fd4e5da5Sopenharmony_ci      HasSubstr(
1535fd4e5da5Sopenharmony_ci          "ShaderCallKHR Memory Scope requires a ray tracing execution model"));
1536fd4e5da5Sopenharmony_ci}
1537fd4e5da5Sopenharmony_ci
1538fd4e5da5Sopenharmony_ciTEST_F(ValidateBarriers, OpControlBarrierShaderCallRayGenFailure) {
1539fd4e5da5Sopenharmony_ci  const std::string body = "OpControlBarrier %shadercall %shadercall %none";
1540fd4e5da5Sopenharmony_ci
1541fd4e5da5Sopenharmony_ci  CompileSuccessfully(GenerateShaderCodeImpl(body,
1542fd4e5da5Sopenharmony_ci                                             // capabilities_and_extensions
1543fd4e5da5Sopenharmony_ci                                             R"(
1544fd4e5da5Sopenharmony_ci                                               OpCapability VulkanMemoryModelKHR
1545fd4e5da5Sopenharmony_ci                                               OpCapability RayTracingKHR
1546fd4e5da5Sopenharmony_ci                                               OpExtension "SPV_KHR_vulkan_memory_model"
1547fd4e5da5Sopenharmony_ci                                               OpExtension "SPV_KHR_ray_tracing"
1548fd4e5da5Sopenharmony_ci                                             )",
1549fd4e5da5Sopenharmony_ci                                             // definitions
1550fd4e5da5Sopenharmony_ci                                             "",
1551fd4e5da5Sopenharmony_ci                                             // execution_model
1552fd4e5da5Sopenharmony_ci                                             "RayGenerationKHR",
1553fd4e5da5Sopenharmony_ci                                             // memory_model
1554fd4e5da5Sopenharmony_ci                                             "OpMemoryModel Logical VulkanKHR"),
1555fd4e5da5Sopenharmony_ci                      SPV_ENV_VULKAN_1_1);
1556fd4e5da5Sopenharmony_ci
1557fd4e5da5Sopenharmony_ci  ASSERT_EQ(SPV_ERROR_INVALID_DATA, ValidateInstructions(SPV_ENV_VULKAN_1_1));
1558fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1559fd4e5da5Sopenharmony_ci              AnyVUID("VUID-StandaloneSpirv-None-04636"));
1560fd4e5da5Sopenharmony_ci  EXPECT_THAT(getDiagnosticString(),
1561fd4e5da5Sopenharmony_ci              HasSubstr("in Vulkan environment Execution Scope is limited to "
1562fd4e5da5Sopenharmony_ci                        "Workgroup and Subgroup"));
1563fd4e5da5Sopenharmony_ci}
1564fd4e5da5Sopenharmony_ci
1565fd4e5da5Sopenharmony_ci}  // namespace
1566fd4e5da5Sopenharmony_ci}  // namespace val
1567fd4e5da5Sopenharmony_ci}  // namespace spvtools
1568