1e5c31af7Sopenharmony_ci#!amber
2e5c31af7Sopenharmony_ci
3e5c31af7Sopenharmony_ci# Copyright 2021 Google LLC
4e5c31af7Sopenharmony_ci#
5e5c31af7Sopenharmony_ci# Licensed under the Apache License, Version 2.0 (the "License");
6e5c31af7Sopenharmony_ci# you may not use this file except in compliance with the License.
7e5c31af7Sopenharmony_ci# You may obtain a copy of the License at
8e5c31af7Sopenharmony_ci#
9e5c31af7Sopenharmony_ci#     http://www.apache.org/licenses/LICENSE-2.0
10e5c31af7Sopenharmony_ci#
11e5c31af7Sopenharmony_ci# Unless required by applicable law or agreed to in writing, software
12e5c31af7Sopenharmony_ci# distributed under the License is distributed on an "AS IS" BASIS,
13e5c31af7Sopenharmony_ci# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14e5c31af7Sopenharmony_ci# See the License for the specific language governing permissions and
15e5c31af7Sopenharmony_ci# limitations under the License.
16e5c31af7Sopenharmony_ci
17e5c31af7Sopenharmony_ci
18e5c31af7Sopenharmony_ci# A test for a coverage-gap found by the GraphicsFuzz project.
19e5c31af7Sopenharmony_ci
20e5c31af7Sopenharmony_ci# Short description: A fragment shader that covers specific LLVM code paths
21e5c31af7Sopenharmony_ci
22e5c31af7Sopenharmony_ci# The test passes because the shader always writes red.
23e5c31af7Sopenharmony_ci
24e5c31af7Sopenharmony_ci# Optimized using spirv-opt with the following arguments:
25e5c31af7Sopenharmony_ci# '-O'
26e5c31af7Sopenharmony_ci# spirv-opt commit hash: a0370efd589be33d5d9a85cfde2f85841b3755af
27e5c31af7Sopenharmony_ci
28e5c31af7Sopenharmony_ci
29e5c31af7Sopenharmony_ci
30e5c31af7Sopenharmony_ciSHADER vertex variant_vertex_shader PASSTHROUGH
31e5c31af7Sopenharmony_ci
32e5c31af7Sopenharmony_ci# variant_fragment_shader is derived from the following GLSL:
33e5c31af7Sopenharmony_ci# #version 320 es
34e5c31af7Sopenharmony_ci# #define _int_1 _GLF_uniform_int_values[0]
35e5c31af7Sopenharmony_ci# #define _int_0 _GLF_uniform_int_values[1]
36e5c31af7Sopenharmony_ci# #define _int_5 _GLF_uniform_int_values[2]
37e5c31af7Sopenharmony_ci# #define _int_3 _GLF_uniform_int_values[3]
38e5c31af7Sopenharmony_ci#
39e5c31af7Sopenharmony_ci# precision highp float;
40e5c31af7Sopenharmony_ci# precision highp int;
41e5c31af7Sopenharmony_ci#
42e5c31af7Sopenharmony_ci# // Contents of _GLF_uniform_int_values: [1, 0, 5, 3]
43e5c31af7Sopenharmony_ci# layout(set = 0, binding = 0) uniform buf0
44e5c31af7Sopenharmony_ci# {
45e5c31af7Sopenharmony_ci#     int _GLF_uniform_int_values[4];
46e5c31af7Sopenharmony_ci# };
47e5c31af7Sopenharmony_ci#
48e5c31af7Sopenharmony_ci# const int _GLF_global_loop_bound = 10;
49e5c31af7Sopenharmony_ci# int _GLF_global_loop_count = 0;
50e5c31af7Sopenharmony_ci#
51e5c31af7Sopenharmony_ci# // Contents of injectionSwitch: [0.0, 1.0]
52e5c31af7Sopenharmony_ci# layout(set = 0, binding = 1) uniform buf1
53e5c31af7Sopenharmony_ci# {
54e5c31af7Sopenharmony_ci#     highp vec2 injectionSwitch;
55e5c31af7Sopenharmony_ci# };
56e5c31af7Sopenharmony_ci#
57e5c31af7Sopenharmony_ci# layout(location = 0) out vec4 _GLF_color;
58e5c31af7Sopenharmony_ci#
59e5c31af7Sopenharmony_ci# void main()
60e5c31af7Sopenharmony_ci# {
61e5c31af7Sopenharmony_ci#     int a = _int_0;
62e5c31af7Sopenharmony_ci#
63e5c31af7Sopenharmony_ci#     // Iterated three times.
64e5c31af7Sopenharmony_ci#     while(_GLF_global_loop_count < _GLF_global_loop_bound)
65e5c31af7Sopenharmony_ci#     {
66e5c31af7Sopenharmony_ci#         a++;
67e5c31af7Sopenharmony_ci#
68e5c31af7Sopenharmony_ci#         // Iterated four times.
69e5c31af7Sopenharmony_ci#         for(int i = clamp(ivec2(1, int(injectionSwitch.y)), ivec2(0), ivec2(_int_1)).x; i < _int_5; i++)
70e5c31af7Sopenharmony_ci#         {
71e5c31af7Sopenharmony_ci#             _GLF_global_loop_count++;
72e5c31af7Sopenharmony_ci#         }
73e5c31af7Sopenharmony_ci#     }
74e5c31af7Sopenharmony_ci#
75e5c31af7Sopenharmony_ci#     // Always true.
76e5c31af7Sopenharmony_ci#     if(a == _int_3)
77e5c31af7Sopenharmony_ci#     {
78e5c31af7Sopenharmony_ci#         _GLF_color = vec4(_int_1, _int_0, _int_0, _int_1);
79e5c31af7Sopenharmony_ci#     }
80e5c31af7Sopenharmony_ci#     else
81e5c31af7Sopenharmony_ci#     {
82e5c31af7Sopenharmony_ci#         _GLF_color = vec4(_int_0);
83e5c31af7Sopenharmony_ci#     }
84e5c31af7Sopenharmony_ci# }
85e5c31af7Sopenharmony_ciSHADER fragment variant_fragment_shader SPIRV-ASM TARGET_ENV spv1.0
86e5c31af7Sopenharmony_ci; SPIR-V
87e5c31af7Sopenharmony_ci; Version: 1.0
88e5c31af7Sopenharmony_ci; Generator: Khronos Glslang Reference Front End; 10
89e5c31af7Sopenharmony_ci; Bound: 102
90e5c31af7Sopenharmony_ci; Schema: 0
91e5c31af7Sopenharmony_ci               OpCapability Shader
92e5c31af7Sopenharmony_ci          %1 = OpExtInstImport "GLSL.std.450"
93e5c31af7Sopenharmony_ci               OpMemoryModel Logical GLSL450
94e5c31af7Sopenharmony_ci               OpEntryPoint Fragment %4 "main" %76
95e5c31af7Sopenharmony_ci               OpExecutionMode %4 OriginUpperLeft
96e5c31af7Sopenharmony_ci               OpSource ESSL 320
97e5c31af7Sopenharmony_ci               OpName %4 "main"
98e5c31af7Sopenharmony_ci               OpName %15 "buf0"
99e5c31af7Sopenharmony_ci               OpMemberName %15 0 "_GLF_uniform_int_values"
100e5c31af7Sopenharmony_ci               OpName %17 ""
101e5c31af7Sopenharmony_ci               OpName %76 "_GLF_color"
102e5c31af7Sopenharmony_ci               OpDecorate %14 ArrayStride 16
103e5c31af7Sopenharmony_ci               OpMemberDecorate %15 0 Offset 0
104e5c31af7Sopenharmony_ci               OpDecorate %15 Block
105e5c31af7Sopenharmony_ci               OpDecorate %17 DescriptorSet 0
106e5c31af7Sopenharmony_ci               OpDecorate %17 Binding 0
107e5c31af7Sopenharmony_ci               OpDecorate %76 Location 0
108e5c31af7Sopenharmony_ci          %2 = OpTypeVoid
109e5c31af7Sopenharmony_ci          %3 = OpTypeFunction %2
110e5c31af7Sopenharmony_ci          %6 = OpTypeInt 32 1
111e5c31af7Sopenharmony_ci          %9 = OpConstant %6 0
112e5c31af7Sopenharmony_ci         %12 = OpTypeInt 32 0
113e5c31af7Sopenharmony_ci         %13 = OpConstant %12 4
114e5c31af7Sopenharmony_ci         %14 = OpTypeArray %6 %13
115e5c31af7Sopenharmony_ci         %15 = OpTypeStruct %14
116e5c31af7Sopenharmony_ci         %16 = OpTypePointer Uniform %15
117e5c31af7Sopenharmony_ci         %17 = OpVariable %16 Uniform
118e5c31af7Sopenharmony_ci         %18 = OpConstant %6 1
119e5c31af7Sopenharmony_ci         %19 = OpTypePointer Uniform %6
120e5c31af7Sopenharmony_ci         %28 = OpConstant %6 10
121e5c31af7Sopenharmony_ci         %29 = OpTypeBool
122e5c31af7Sopenharmony_ci         %34 = OpTypeFloat 32
123e5c31af7Sopenharmony_ci         %44 = OpTypeVector %6 2
124e5c31af7Sopenharmony_ci         %46 = OpConstantComposite %44 %9 %9
125e5c31af7Sopenharmony_ci         %59 = OpConstant %6 2
126e5c31af7Sopenharmony_ci         %68 = OpConstant %6 3
127e5c31af7Sopenharmony_ci         %74 = OpTypeVector %34 4
128e5c31af7Sopenharmony_ci         %75 = OpTypePointer Output %74
129e5c31af7Sopenharmony_ci         %76 = OpVariable %75 Output
130e5c31af7Sopenharmony_ci        %101 = OpUndef %6
131e5c31af7Sopenharmony_ci          %4 = OpFunction %2 None %3
132e5c31af7Sopenharmony_ci          %5 = OpLabel
133e5c31af7Sopenharmony_ci         %20 = OpAccessChain %19 %17 %9 %18
134e5c31af7Sopenharmony_ci         %21 = OpLoad %6 %20
135e5c31af7Sopenharmony_ci               OpBranch %22
136e5c31af7Sopenharmony_ci         %22 = OpLabel
137e5c31af7Sopenharmony_ci         %96 = OpPhi %6 %21 %5 %32 %25
138e5c31af7Sopenharmony_ci         %95 = OpPhi %6 %9 %5 %98 %25
139e5c31af7Sopenharmony_ci         %30 = OpSLessThan %29 %95 %28
140e5c31af7Sopenharmony_ci               OpLoopMerge %24 %25 None
141e5c31af7Sopenharmony_ci               OpBranchConditional %30 %23 %24
142e5c31af7Sopenharmony_ci         %23 = OpLabel
143e5c31af7Sopenharmony_ci         %32 = OpIAdd %6 %96 %18
144e5c31af7Sopenharmony_ci         %45 = OpCompositeConstruct %44 %18 %101
145e5c31af7Sopenharmony_ci         %47 = OpAccessChain %19 %17 %9 %9
146e5c31af7Sopenharmony_ci         %48 = OpLoad %6 %47
147e5c31af7Sopenharmony_ci         %49 = OpCompositeConstruct %44 %48 %48
148e5c31af7Sopenharmony_ci         %50 = OpExtInst %44 %1 SClamp %45 %46 %49
149e5c31af7Sopenharmony_ci         %52 = OpCompositeExtract %6 %50 0
150e5c31af7Sopenharmony_ci               OpBranch %53
151e5c31af7Sopenharmony_ci         %53 = OpLabel
152e5c31af7Sopenharmony_ci         %98 = OpPhi %6 %95 %23 %64 %54
153e5c31af7Sopenharmony_ci         %97 = OpPhi %6 %52 %23 %66 %54
154e5c31af7Sopenharmony_ci         %60 = OpAccessChain %19 %17 %9 %59
155e5c31af7Sopenharmony_ci         %61 = OpLoad %6 %60
156e5c31af7Sopenharmony_ci         %62 = OpSLessThan %29 %97 %61
157e5c31af7Sopenharmony_ci               OpLoopMerge %55 %54 None
158e5c31af7Sopenharmony_ci               OpBranchConditional %62 %54 %55
159e5c31af7Sopenharmony_ci         %54 = OpLabel
160e5c31af7Sopenharmony_ci         %64 = OpIAdd %6 %98 %18
161e5c31af7Sopenharmony_ci         %66 = OpIAdd %6 %97 %18
162e5c31af7Sopenharmony_ci               OpBranch %53
163e5c31af7Sopenharmony_ci         %55 = OpLabel
164e5c31af7Sopenharmony_ci               OpBranch %25
165e5c31af7Sopenharmony_ci         %25 = OpLabel
166e5c31af7Sopenharmony_ci               OpBranch %22
167e5c31af7Sopenharmony_ci         %24 = OpLabel
168e5c31af7Sopenharmony_ci         %69 = OpAccessChain %19 %17 %9 %68
169e5c31af7Sopenharmony_ci         %70 = OpLoad %6 %69
170e5c31af7Sopenharmony_ci         %71 = OpIEqual %29 %96 %70
171e5c31af7Sopenharmony_ci               OpSelectionMerge %73 None
172e5c31af7Sopenharmony_ci               OpBranchConditional %71 %72 %90
173e5c31af7Sopenharmony_ci         %72 = OpLabel
174e5c31af7Sopenharmony_ci         %77 = OpAccessChain %19 %17 %9 %9
175e5c31af7Sopenharmony_ci         %78 = OpLoad %6 %77
176e5c31af7Sopenharmony_ci         %79 = OpConvertSToF %34 %78
177e5c31af7Sopenharmony_ci         %82 = OpConvertSToF %34 %21
178e5c31af7Sopenharmony_ci         %89 = OpCompositeConstruct %74 %79 %82 %82 %79
179e5c31af7Sopenharmony_ci               OpStore %76 %89
180e5c31af7Sopenharmony_ci               OpBranch %73
181e5c31af7Sopenharmony_ci         %90 = OpLabel
182e5c31af7Sopenharmony_ci         %93 = OpConvertSToF %34 %21
183e5c31af7Sopenharmony_ci         %94 = OpCompositeConstruct %74 %93 %93 %93 %93
184e5c31af7Sopenharmony_ci               OpStore %76 %94
185e5c31af7Sopenharmony_ci               OpBranch %73
186e5c31af7Sopenharmony_ci         %73 = OpLabel
187e5c31af7Sopenharmony_ci               OpReturn
188e5c31af7Sopenharmony_ci               OpFunctionEnd
189e5c31af7Sopenharmony_ciEND
190e5c31af7Sopenharmony_ci
191e5c31af7Sopenharmony_ci# uniforms for variant
192e5c31af7Sopenharmony_ci
193e5c31af7Sopenharmony_ci# injectionSwitch
194e5c31af7Sopenharmony_ciBUFFER variant_injectionSwitch DATA_TYPE vec2<float> STD140 DATA
195e5c31af7Sopenharmony_ci 0.0 1.0
196e5c31af7Sopenharmony_ciEND
197e5c31af7Sopenharmony_ci# _GLF_uniform_int_values
198e5c31af7Sopenharmony_ciBUFFER variant__GLF_uniform_int_values DATA_TYPE int32[] STD140 DATA
199e5c31af7Sopenharmony_ci 1 0 5 3
200e5c31af7Sopenharmony_ciEND
201e5c31af7Sopenharmony_ci
202e5c31af7Sopenharmony_ciBUFFER variant_framebuffer FORMAT B8G8R8A8_UNORM
203e5c31af7Sopenharmony_ci
204e5c31af7Sopenharmony_ciPIPELINE graphics variant_pipeline
205e5c31af7Sopenharmony_ci  ATTACH variant_vertex_shader
206e5c31af7Sopenharmony_ci  ATTACH variant_fragment_shader
207e5c31af7Sopenharmony_ci  FRAMEBUFFER_SIZE 256 256
208e5c31af7Sopenharmony_ci  BIND BUFFER variant_framebuffer AS color LOCATION 0
209e5c31af7Sopenharmony_ci  BIND BUFFER variant_injectionSwitch AS uniform DESCRIPTOR_SET 0 BINDING 1
210e5c31af7Sopenharmony_ci  BIND BUFFER variant__GLF_uniform_int_values AS uniform DESCRIPTOR_SET 0 BINDING 0
211e5c31af7Sopenharmony_ciEND
212e5c31af7Sopenharmony_ciCLEAR_COLOR variant_pipeline 0 0 0 255
213e5c31af7Sopenharmony_ci
214e5c31af7Sopenharmony_ciCLEAR variant_pipeline
215e5c31af7Sopenharmony_ciRUN variant_pipeline DRAW_RECT POS 0 0 SIZE 256 256
216e5c31af7Sopenharmony_ci
217e5c31af7Sopenharmony_ciEXPECT variant_framebuffer IDX 0 0 SIZE 256 256 EQ_RGBA 255 0 0 255
218