011f39aeb2
BUG=skia: R=bsalomon@google.com, mtklein@google.com Author: reed@google.com Review URL: https://codereview.chromium.org/511283002
124 lines
3.6 KiB
C++
124 lines
3.6 KiB
C++
/*
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* Copyright 2013 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#include "SkDiscardableMemory.h"
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#include "SkResourceCache.h"
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#include "Test.h"
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namespace {
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static void* gGlobalAddress;
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struct TestingKey : public SkResourceCache::Key {
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void* fPtr;
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intptr_t fValue;
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TestingKey(intptr_t value) : fPtr(&gGlobalAddress), fValue(value) {
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this->init(sizeof(fPtr) + sizeof(fValue));
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}
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};
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struct TestingRec : public SkResourceCache::Rec {
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TestingRec(const TestingKey& key, uint32_t value) : fKey(key), fValue(value) {}
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TestingKey fKey;
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intptr_t fValue;
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virtual const Key& getKey() const SK_OVERRIDE { return fKey; }
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virtual size_t bytesUsed() const SK_OVERRIDE { return sizeof(fKey) + sizeof(fValue); }
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};
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}
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static const int COUNT = 10;
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static const int DIM = 256;
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static void test_cache(skiatest::Reporter* reporter, SkResourceCache& cache,
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bool testPurge) {
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SkResourceCache::ID id;
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for (int i = 0; i < COUNT; ++i) {
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TestingKey key(i);
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const TestingRec* rec = (const TestingRec*)cache.findAndLock(key);
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REPORTER_ASSERT(reporter, NULL == rec);
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TestingRec* newRec = SkNEW_ARGS(TestingRec, (key, i));
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const TestingRec* addedRec = (const TestingRec*)cache.addAndLock(newRec);
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REPORTER_ASSERT(reporter, NULL != addedRec);
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const TestingRec* foundRec = (const TestingRec*)cache.findAndLock(key);
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REPORTER_ASSERT(reporter, foundRec == addedRec);
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REPORTER_ASSERT(reporter, foundRec->fValue == i);
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cache.unlock(foundRec);
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cache.unlock(addedRec);
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}
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if (testPurge) {
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// stress test, should trigger purges
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for (size_t i = 0; i < COUNT * 100; ++i) {
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TestingKey key(i);
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SkResourceCache::ID id = cache.addAndLock(SkNEW_ARGS(TestingRec, (key, i)));
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REPORTER_ASSERT(reporter, NULL != id);
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cache.unlock(id);
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}
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}
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// test the originals after all that purging
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for (int i = 0; i < COUNT; ++i) {
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id = cache.findAndLock(TestingKey(i));
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if (id) {
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cache.unlock(id);
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}
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}
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cache.setTotalByteLimit(0);
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}
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#include "SkDiscardableMemoryPool.h"
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static SkDiscardableMemoryPool* gPool;
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static SkDiscardableMemory* pool_factory(size_t bytes) {
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SkASSERT(gPool);
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return gPool->create(bytes);
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}
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DEF_TEST(ImageCache, reporter) {
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static const size_t defLimit = DIM * DIM * 4 * COUNT + 1024; // 1K slop
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{
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SkResourceCache cache(defLimit);
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test_cache(reporter, cache, true);
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}
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{
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SkAutoTUnref<SkDiscardableMemoryPool> pool(
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SkDiscardableMemoryPool::Create(defLimit, NULL));
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gPool = pool.get();
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SkResourceCache cache(pool_factory);
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test_cache(reporter, cache, true);
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}
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{
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SkResourceCache cache(SkDiscardableMemory::Create);
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test_cache(reporter, cache, false);
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}
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}
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DEF_TEST(ImageCache_doubleAdd, r) {
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// Adding the same key twice should be safe.
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SkResourceCache cache(4096);
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TestingKey key(1);
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SkResourceCache::ID id1 = cache.addAndLock(SkNEW_ARGS(TestingRec, (key, 2)));
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SkResourceCache::ID id2 = cache.addAndLock(SkNEW_ARGS(TestingRec, (key, 3)));
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// We don't really care if id1 == id2 as long as unlocking both works.
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cache.unlock(id1);
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cache.unlock(id2);
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// Lookup can return either value.
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const TestingRec* rec = (const TestingRec*)cache.findAndLock(key);
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REPORTER_ASSERT(r, NULL != rec);
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REPORTER_ASSERT(r, 2 == rec->fValue || 3 == rec->fValue);
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cache.unlock(rec);
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}
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