summaryrefslogtreecommitdiffstats
path: root/cc/resources/resource_pool_unittest.cc
blob: f280f49d1421a4b93878a19fad5305e25d05c2fc (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
// Copyright 2015 The Chromium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.

#include "cc/resources/resource_pool.h"

#include "cc/resources/resource_util.h"
#include "cc/resources/scoped_resource.h"
#include "cc/test/fake_output_surface.h"
#include "cc/test/fake_output_surface_client.h"
#include "cc/test/fake_resource_provider.h"
#include "cc/test/test_shared_bitmap_manager.h"
#include "testing/gtest/include/gtest/gtest.h"

namespace cc {
namespace {

class ResourcePoolTest : public testing::Test {
 public:
  void SetUp() override {
    output_surface_ = FakeOutputSurface::Create3d();
    ASSERT_TRUE(output_surface_->BindToClient(&output_surface_client_));
    shared_bitmap_manager_.reset(new TestSharedBitmapManager());
    resource_provider_ = FakeResourceProvider::Create(
        output_surface_.get(), shared_bitmap_manager_.get());
    resource_pool_ =
        ResourcePool::Create(resource_provider_.get(), GL_TEXTURE_2D);
  }

 protected:
  FakeOutputSurfaceClient output_surface_client_;
  scoped_ptr<FakeOutputSurface> output_surface_;
  scoped_ptr<SharedBitmapManager> shared_bitmap_manager_;
  scoped_ptr<ResourceProvider> resource_provider_;
  scoped_ptr<ResourcePool> resource_pool_;
};

TEST_F(ResourcePoolTest, AcquireRelease) {
  gfx::Size size(100, 100);
  ResourceFormat format = RGBA_8888;
  scoped_ptr<ScopedResource> resource =
      resource_pool_->AcquireResource(size, format);
  EXPECT_EQ(size, resource->size());
  EXPECT_EQ(format, resource->format());
  EXPECT_TRUE(resource_provider_->CanLockForWrite(resource->id()));

  resource_pool_->ReleaseResource(resource.Pass(), 0u);
}

TEST_F(ResourcePoolTest, AccountingSingleResource) {
  // Limits high enough to not be hit by this test.
  size_t bytes_limit = 10 * 1024 * 1024;
  size_t count_limit = 100;
  resource_pool_->SetResourceUsageLimits(bytes_limit, bytes_limit, count_limit);

  gfx::Size size(100, 100);
  ResourceFormat format = RGBA_8888;
  size_t resource_bytes =
      ResourceUtil::UncheckedSizeInBytes<size_t>(size, format);
  scoped_ptr<ScopedResource> resource =
      resource_pool_->AcquireResource(size, format);

  EXPECT_EQ(resource_bytes, resource_pool_->total_memory_usage_bytes());
  EXPECT_EQ(resource_bytes, resource_pool_->acquired_memory_usage_bytes());
  EXPECT_EQ(1u, resource_pool_->total_resource_count());
  EXPECT_EQ(1u, resource_pool_->acquired_resource_count());
  EXPECT_EQ(0u, resource_pool_->busy_resource_count());

  resource_pool_->ReleaseResource(resource.Pass(), 0u);
  EXPECT_EQ(resource_bytes, resource_pool_->total_memory_usage_bytes());
  EXPECT_EQ(1u, resource_pool_->total_resource_count());
  EXPECT_EQ(1u, resource_pool_->busy_resource_count());

  resource_pool_->CheckBusyResources();
  EXPECT_EQ(resource_bytes, resource_pool_->total_memory_usage_bytes());
  EXPECT_EQ(0u, resource_pool_->acquired_memory_usage_bytes());
  EXPECT_EQ(1u, resource_pool_->total_resource_count());
  EXPECT_EQ(0u, resource_pool_->acquired_resource_count());
  EXPECT_EQ(0u, resource_pool_->busy_resource_count());

  resource_pool_->SetResourceUsageLimits(0u, 0u, 0u);
  resource_pool_->ReduceResourceUsage();
  EXPECT_EQ(0u, resource_pool_->total_memory_usage_bytes());
  EXPECT_EQ(0u, resource_pool_->acquired_memory_usage_bytes());
  EXPECT_EQ(0u, resource_pool_->total_resource_count());
  EXPECT_EQ(0u, resource_pool_->acquired_resource_count());
  EXPECT_EQ(0u, resource_pool_->busy_resource_count());
}

TEST_F(ResourcePoolTest, SimpleResourceReuse) {
  // Limits high enough to not be hit by this test.
  size_t bytes_limit = 10 * 1024 * 1024;
  size_t count_limit = 100;
  resource_pool_->SetResourceUsageLimits(bytes_limit, bytes_limit, count_limit);

  gfx::Size size(100, 100);
  ResourceFormat format = RGBA_8888;

  scoped_ptr<ScopedResource> resource =
      resource_pool_->AcquireResource(size, format);
  resource_pool_->ReleaseResource(resource.Pass(), 0u);
  resource_pool_->CheckBusyResources();
  EXPECT_EQ(1u, resource_provider_->num_resources());

  // Same size/format should re-use resource.
  resource = resource_pool_->AcquireResource(size, format);
  EXPECT_EQ(1u, resource_provider_->num_resources());
  resource_pool_->ReleaseResource(resource.Pass(), 0u);
  resource_pool_->CheckBusyResources();
  EXPECT_EQ(1u, resource_provider_->num_resources());

  // Different size/format should alloate new resource.
  resource = resource_pool_->AcquireResource(gfx::Size(50, 50), LUMINANCE_8);
  EXPECT_EQ(2u, resource_provider_->num_resources());
  resource_pool_->ReleaseResource(resource.Pass(), 0u);
  resource_pool_->CheckBusyResources();
  EXPECT_EQ(2u, resource_provider_->num_resources());
}

TEST_F(ResourcePoolTest, LostResource) {
  // Limits high enough to not be hit by this test.
  size_t bytes_limit = 10 * 1024 * 1024;
  size_t count_limit = 100;
  resource_pool_->SetResourceUsageLimits(bytes_limit, bytes_limit, count_limit);

  gfx::Size size(100, 100);
  ResourceFormat format = RGBA_8888;

  scoped_ptr<ScopedResource> resource =
      resource_pool_->AcquireResource(size, format);
  EXPECT_EQ(1u, resource_provider_->num_resources());

  resource_provider_->LoseResourceForTesting(resource->id());
  resource_pool_->ReleaseResource(resource.Pass(), 0u);
  resource_pool_->CheckBusyResources();
  EXPECT_EQ(0u, resource_provider_->num_resources());
}

}  // namespace
}  // namespace cc