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Dan Stoza99b18b42014-03-28 15:34:33 -07001/*
2 * Copyright 2014 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#define LOG_TAG "StreamSplitter_test"
18//#define LOG_NDEBUG 0
19
20#include <gui/BufferQueue.h>
21#include <gui/IConsumerListener.h>
22#include <gui/ISurfaceComposer.h>
23#include <gui/StreamSplitter.h>
24#include <private/gui/ComposerService.h>
25
26#include <gtest/gtest.h>
27
28namespace android {
29
30class StreamSplitterTest : public ::testing::Test {
31
32protected:
33 StreamSplitterTest() {
34 const ::testing::TestInfo* const testInfo =
35 ::testing::UnitTest::GetInstance()->current_test_info();
36 ALOGV("Begin test: %s.%s", testInfo->test_case_name(),
37 testInfo->name());
38 }
39
40 ~StreamSplitterTest() {
41 const ::testing::TestInfo* const testInfo =
42 ::testing::UnitTest::GetInstance()->current_test_info();
43 ALOGV("End test: %s.%s", testInfo->test_case_name(),
44 testInfo->name());
45 }
46};
47
48struct DummyListener : public BnConsumerListener {
Dan Stoza8dc55392014-11-04 11:37:46 -080049 virtual void onFrameAvailable(const BufferItem& /* item */) {}
Dan Stoza99b18b42014-03-28 15:34:33 -070050 virtual void onBuffersReleased() {}
51 virtual void onSidebandStreamChanged() {}
52};
53
54class CountedAllocator : public BnGraphicBufferAlloc {
55public:
56 CountedAllocator() : mAllocCount(0) {
57 sp<ISurfaceComposer> composer(ComposerService::getComposerService());
58 mAllocator = composer->createGraphicBufferAlloc();
59 }
60
61 virtual ~CountedAllocator() {}
62
63 virtual sp<GraphicBuffer> createGraphicBuffer(uint32_t w, uint32_t h,
64 PixelFormat format, uint32_t usage, status_t* error) {
65 ++mAllocCount;
66 sp<GraphicBuffer> buffer = mAllocator->createGraphicBuffer(w, h, format,
67 usage, error);
68 return buffer;
69 }
70
71 int getAllocCount() const { return mAllocCount; }
72
73private:
74 sp<IGraphicBufferAlloc> mAllocator;
75 int mAllocCount;
76};
77
78TEST_F(StreamSplitterTest, OneInputOneOutput) {
79 sp<CountedAllocator> allocator(new CountedAllocator);
80
81 sp<IGraphicBufferProducer> inputProducer;
82 sp<IGraphicBufferConsumer> inputConsumer;
83 BufferQueue::createBufferQueue(&inputProducer, &inputConsumer, allocator);
84
85 sp<IGraphicBufferProducer> outputProducer;
86 sp<IGraphicBufferConsumer> outputConsumer;
87 BufferQueue::createBufferQueue(&outputProducer, &outputConsumer, allocator);
88 ASSERT_EQ(OK, outputConsumer->consumerConnect(new DummyListener, false));
89
90 sp<StreamSplitter> splitter;
91 status_t status = StreamSplitter::createSplitter(inputConsumer, &splitter);
92 ASSERT_EQ(OK, status);
93 ASSERT_EQ(OK, splitter->addOutput(outputProducer));
94
95 IGraphicBufferProducer::QueueBufferOutput qbOutput;
96 ASSERT_EQ(OK, inputProducer->connect(new DummyProducerListener,
97 NATIVE_WINDOW_API_CPU, false, &qbOutput));
98
99 int slot;
100 sp<Fence> fence;
101 sp<GraphicBuffer> buffer;
102 ASSERT_EQ(IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION,
103 inputProducer->dequeueBuffer(&slot, &fence, false, 0, 0, 0,
104 GRALLOC_USAGE_SW_WRITE_OFTEN));
105 ASSERT_EQ(OK, inputProducer->requestBuffer(slot, &buffer));
106
107 uint32_t* dataIn;
108 ASSERT_EQ(OK, buffer->lock(GraphicBuffer::USAGE_SW_WRITE_OFTEN,
109 reinterpret_cast<void**>(&dataIn)));
110 *dataIn = 0x12345678;
111 ASSERT_EQ(OK, buffer->unlock());
112
113 IGraphicBufferProducer::QueueBufferInput qbInput(0, false,
Eino-Ville Talvala5b75a512015-02-19 16:10:43 -0800114 HAL_DATASPACE_UNKNOWN,
Dan Stoza99b18b42014-03-28 15:34:33 -0700115 Rect(0, 0, 1, 1), NATIVE_WINDOW_SCALING_MODE_FREEZE, 0, false,
116 Fence::NO_FENCE);
117 ASSERT_EQ(OK, inputProducer->queueBuffer(slot, qbInput, &qbOutput));
118
119 IGraphicBufferConsumer::BufferItem item;
120 ASSERT_EQ(OK, outputConsumer->acquireBuffer(&item, 0));
121
122 uint32_t* dataOut;
123 ASSERT_EQ(OK, item.mGraphicBuffer->lock(GraphicBuffer::USAGE_SW_READ_OFTEN,
124 reinterpret_cast<void**>(&dataOut)));
125 ASSERT_EQ(*dataOut, 0x12345678);
126 ASSERT_EQ(OK, item.mGraphicBuffer->unlock());
127
128 ASSERT_EQ(OK, outputConsumer->releaseBuffer(item.mBuf, item.mFrameNumber,
129 EGL_NO_DISPLAY, EGL_NO_SYNC_KHR, Fence::NO_FENCE));
130
131 ASSERT_EQ(IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION,
132 inputProducer->dequeueBuffer(&slot, &fence, false, 0, 0, 0,
133 GRALLOC_USAGE_SW_WRITE_OFTEN));
134
135 ASSERT_EQ(1, allocator->getAllocCount());
136}
137
138TEST_F(StreamSplitterTest, OneInputMultipleOutputs) {
139 const int NUM_OUTPUTS = 4;
140 sp<CountedAllocator> allocator(new CountedAllocator);
141
142 sp<IGraphicBufferProducer> inputProducer;
143 sp<IGraphicBufferConsumer> inputConsumer;
144 BufferQueue::createBufferQueue(&inputProducer, &inputConsumer, allocator);
145
146 sp<IGraphicBufferProducer> outputProducers[NUM_OUTPUTS] = {};
147 sp<IGraphicBufferConsumer> outputConsumers[NUM_OUTPUTS] = {};
148 for (int output = 0; output < NUM_OUTPUTS; ++output) {
149 BufferQueue::createBufferQueue(&outputProducers[output],
150 &outputConsumers[output], allocator);
151 ASSERT_EQ(OK, outputConsumers[output]->consumerConnect(
152 new DummyListener, false));
153 }
154
155 sp<StreamSplitter> splitter;
156 status_t status = StreamSplitter::createSplitter(inputConsumer, &splitter);
157 ASSERT_EQ(OK, status);
158 for (int output = 0; output < NUM_OUTPUTS; ++output) {
159 ASSERT_EQ(OK, splitter->addOutput(outputProducers[output]));
160 }
161
162 IGraphicBufferProducer::QueueBufferOutput qbOutput;
163 ASSERT_EQ(OK, inputProducer->connect(new DummyProducerListener,
164 NATIVE_WINDOW_API_CPU, false, &qbOutput));
165
166 int slot;
167 sp<Fence> fence;
168 sp<GraphicBuffer> buffer;
169 ASSERT_EQ(IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION,
170 inputProducer->dequeueBuffer(&slot, &fence, false, 0, 0, 0,
171 GRALLOC_USAGE_SW_WRITE_OFTEN));
172 ASSERT_EQ(OK, inputProducer->requestBuffer(slot, &buffer));
173
174 uint32_t* dataIn;
175 ASSERT_EQ(OK, buffer->lock(GraphicBuffer::USAGE_SW_WRITE_OFTEN,
176 reinterpret_cast<void**>(&dataIn)));
177 *dataIn = 0x12345678;
178 ASSERT_EQ(OK, buffer->unlock());
179
180 IGraphicBufferProducer::QueueBufferInput qbInput(0, false,
Eino-Ville Talvala5b75a512015-02-19 16:10:43 -0800181 HAL_DATASPACE_UNKNOWN,
Dan Stoza99b18b42014-03-28 15:34:33 -0700182 Rect(0, 0, 1, 1), NATIVE_WINDOW_SCALING_MODE_FREEZE, 0, false,
183 Fence::NO_FENCE);
184 ASSERT_EQ(OK, inputProducer->queueBuffer(slot, qbInput, &qbOutput));
185
186 for (int output = 0; output < NUM_OUTPUTS; ++output) {
187 IGraphicBufferConsumer::BufferItem item;
188 ASSERT_EQ(OK, outputConsumers[output]->acquireBuffer(&item, 0));
189
190 uint32_t* dataOut;
191 ASSERT_EQ(OK, item.mGraphicBuffer->lock(GraphicBuffer::USAGE_SW_READ_OFTEN,
192 reinterpret_cast<void**>(&dataOut)));
193 ASSERT_EQ(*dataOut, 0x12345678);
194 ASSERT_EQ(OK, item.mGraphicBuffer->unlock());
195
196 ASSERT_EQ(OK, outputConsumers[output]->releaseBuffer(item.mBuf,
197 item.mFrameNumber, EGL_NO_DISPLAY, EGL_NO_SYNC_KHR,
198 Fence::NO_FENCE));
199 }
200
201 ASSERT_EQ(IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION,
202 inputProducer->dequeueBuffer(&slot, &fence, false, 0, 0, 0,
203 GRALLOC_USAGE_SW_WRITE_OFTEN));
204
205 ASSERT_EQ(1, allocator->getAllocCount());
206}
207
208TEST_F(StreamSplitterTest, OutputAbandonment) {
209 sp<IGraphicBufferProducer> inputProducer;
210 sp<IGraphicBufferConsumer> inputConsumer;
211 BufferQueue::createBufferQueue(&inputProducer, &inputConsumer);
212
213 sp<IGraphicBufferProducer> outputProducer;
214 sp<IGraphicBufferConsumer> outputConsumer;
215 BufferQueue::createBufferQueue(&outputProducer, &outputConsumer);
216 ASSERT_EQ(OK, outputConsumer->consumerConnect(new DummyListener, false));
217
218 sp<StreamSplitter> splitter;
219 status_t status = StreamSplitter::createSplitter(inputConsumer, &splitter);
220 ASSERT_EQ(OK, status);
221 ASSERT_EQ(OK, splitter->addOutput(outputProducer));
222
223 IGraphicBufferProducer::QueueBufferOutput qbOutput;
224 ASSERT_EQ(OK, inputProducer->connect(new DummyProducerListener,
225 NATIVE_WINDOW_API_CPU, false, &qbOutput));
226
227 int slot;
228 sp<Fence> fence;
229 sp<GraphicBuffer> buffer;
230 ASSERT_EQ(IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION,
231 inputProducer->dequeueBuffer(&slot, &fence, false, 0, 0, 0,
232 GRALLOC_USAGE_SW_WRITE_OFTEN));
233 ASSERT_EQ(OK, inputProducer->requestBuffer(slot, &buffer));
234
235 // Abandon the output
236 outputConsumer->consumerDisconnect();
237
238 IGraphicBufferProducer::QueueBufferInput qbInput(0, false,
Eino-Ville Talvala5b75a512015-02-19 16:10:43 -0800239 HAL_DATASPACE_UNKNOWN,
Dan Stoza99b18b42014-03-28 15:34:33 -0700240 Rect(0, 0, 1, 1), NATIVE_WINDOW_SCALING_MODE_FREEZE, 0, false,
241 Fence::NO_FENCE);
242 ASSERT_EQ(OK, inputProducer->queueBuffer(slot, qbInput, &qbOutput));
243
244 // Input should be abandoned
245 ASSERT_EQ(NO_INIT, inputProducer->dequeueBuffer(&slot, &fence, false, 0, 0,
246 0, GRALLOC_USAGE_SW_WRITE_OFTEN));
247}
248
249} // namespace android