mirror of
https://github.com/facebook/react-native.git
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752e709b51
Summary: See additional assertion. Tests still pass, so no other change was necessary. Changelog: [Internal] Differential Revision: D23775553 fbshipit-source-id: 57d3191f25dd55ab4da189207f6d201a31b175e0
217 lines
6.7 KiB
C++
217 lines
6.7 KiB
C++
/*
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* Copyright (c) Facebook, Inc. and its affiliates.
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*
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* This source code is licensed under the MIT license found in the
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* LICENSE file in the root directory of this source tree.
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*/
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#include <vector>
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#include <glog/logging.h>
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#include <gtest/gtest.h>
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#include <react/renderer/components/root/RootComponentDescriptor.h>
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#include <react/renderer/components/view/ViewComponentDescriptor.h>
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#include <react/renderer/mounting/ShadowViewMutation.h>
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#include <react/renderer/mounting/Differentiator.h>
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#include <react/renderer/mounting/stubs.h>
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#include "Entropy.h"
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#include "shadowTreeGeneration.h"
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namespace facebook {
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namespace react {
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static void testShadowNodeTreeLifeCycle(
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uint_fast32_t seed,
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int treeSize,
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int repeats,
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int stages,
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bool useFlattener) {
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auto entropy = seed == 0 ? Entropy() : Entropy(seed);
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auto eventDispatcher = EventDispatcher::Shared{};
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auto contextContainer = std::make_shared<ContextContainer>();
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auto componentDescriptorParameters =
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ComponentDescriptorParameters{eventDispatcher, contextContainer, nullptr};
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auto viewComponentDescriptor =
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ViewComponentDescriptor(componentDescriptorParameters);
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auto rootComponentDescriptor =
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RootComponentDescriptor(componentDescriptorParameters);
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auto noopEventEmitter =
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std::make_shared<ViewEventEmitter const>(nullptr, -1, eventDispatcher);
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auto allNodes = std::vector<ShadowNode::Shared>{};
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for (int i = 0; i < repeats; i++) {
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allNodes.clear();
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auto family = rootComponentDescriptor.createFamily(
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{Tag(1), SurfaceId(1), nullptr}, nullptr);
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// Creating an initial root shadow node.
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auto emptyRootNode = std::const_pointer_cast<RootShadowNode>(
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std::static_pointer_cast<RootShadowNode const>(
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rootComponentDescriptor.createShadowNode(
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ShadowNodeFragment{RootShadowNode::defaultSharedProps()},
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family)));
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// Applying size constraints.
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emptyRootNode = emptyRootNode->clone(
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LayoutConstraints{Size{512, 0},
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Size{512, std::numeric_limits<Float>::infinity()}},
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LayoutContext{});
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// Generation of a random tree.
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auto singleRootChildNode =
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generateShadowNodeTree(entropy, viewComponentDescriptor, treeSize);
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// Injecting a tree into the root node.
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auto currentRootNode = std::static_pointer_cast<RootShadowNode const>(
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emptyRootNode->ShadowNode::clone(ShadowNodeFragment{
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ShadowNodeFragment::propsPlaceholder(),
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std::make_shared<SharedShadowNodeList>(
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SharedShadowNodeList{singleRootChildNode})}));
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// Building an initial view hierarchy.
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auto viewTree = stubViewTreeFromShadowNode(*emptyRootNode);
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viewTree.mutate(
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calculateShadowViewMutations(*emptyRootNode, *currentRootNode));
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for (int j = 0; j < stages; j++) {
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auto nextRootNode = currentRootNode;
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// Mutating the tree.
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alterShadowTree(
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entropy,
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nextRootNode,
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{
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&messWithChildren,
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&messWithYogaStyles,
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&messWithLayotableOnlyFlag,
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});
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std::vector<LayoutableShadowNode const *> affectedLayoutableNodes{};
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affectedLayoutableNodes.reserve(1024);
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// Laying out the tree.
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std::const_pointer_cast<RootShadowNode>(nextRootNode)
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->layoutIfNeeded(&affectedLayoutableNodes);
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nextRootNode->sealRecursive();
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allNodes.push_back(nextRootNode);
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// Calculating mutations.
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auto mutations = calculateShadowViewMutations(
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*currentRootNode, *nextRootNode, useFlattener);
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// If using flattener: make sure that in a single frame, a DELETE for a view is not
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// followed by a CREATE for the same view.
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if (useFlattener) {
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std::vector<int> deletedTags{};
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for (auto const& mutation : mutations) {
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if (mutation.type == ShadowViewMutation::Type::Delete) {
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deletedTags.push_back(mutation.oldChildShadowView.tag);
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}
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}
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for (auto const& mutation : mutations) {
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if (mutation.type == ShadowViewMutation::Type::Create) {
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if (std::find(deletedTags.begin(), deletedTags.end(), mutation.newChildShadowView.tag) != deletedTags.end()) {
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LOG(ERROR) << "Deleted tag was recreated in mutations list: [" << mutation.newChildShadowView.tag << "]";
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FAIL();
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}
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}
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}
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}
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// Mutating the view tree.
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viewTree.mutate(mutations);
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// Building a view tree to compare with.
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auto rebuiltViewTree = stubViewTreeFromShadowNode(*nextRootNode);
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// Comparing the newly built tree with the updated one.
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if (rebuiltViewTree != viewTree) {
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// Something went wrong.
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LOG(ERROR) << "Entropy seed: " << entropy.getSeed() << "\n";
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// There are some issues getting `getDebugDescription` to compile
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// under test on Android for now.
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#ifndef ANDROID
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LOG(ERROR) << "Shadow Tree before: \n"
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<< currentRootNode->getDebugDescription();
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LOG(ERROR) << "Shadow Tree after: \n"
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<< nextRootNode->getDebugDescription();
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LOG(ERROR) << "View Tree before: \n"
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<< getDebugDescription(viewTree.getRootStubView(), {});
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LOG(ERROR) << "View Tree after: \n"
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<< getDebugDescription(
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rebuiltViewTree.getRootStubView(), {});
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LOG(ERROR) << "Mutations:"
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<< "\n"
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<< getDebugDescription(mutations, {});
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#endif
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FAIL();
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}
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currentRootNode = nextRootNode;
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}
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}
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SUCCEED();
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}
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} // namespace react
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} // namespace facebook
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using namespace facebook::react;
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TEST(MountingTest, stableBiggerTreeFewerIterationsOptimizedMoves) {
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testShadowNodeTreeLifeCycle(
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/* seed */ 0,
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/* size */ 512,
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/* repeats */ 32,
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/* stages */ 32,
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false);
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}
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TEST(MountingTest, stableSmallerTreeMoreIterationsOptimizedMoves) {
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testShadowNodeTreeLifeCycle(
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/* seed */ 0,
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/* size */ 16,
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/* repeats */ 512,
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/* stages */ 32,
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false);
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}
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TEST(MountingTest, stableBiggerTreeFewerIterationsOptimizedMovesFlattener) {
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testShadowNodeTreeLifeCycle(
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/* seed */ 0,
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/* size */ 512,
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/* repeats */ 32,
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/* stages */ 32,
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true);
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}
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TEST(MountingTest, stableBiggerTreeFewerIterationsOptimizedMovesFlattener2) {
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testShadowNodeTreeLifeCycle(
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/* seed */ 1,
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/* size */ 512,
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/* repeats */ 32,
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/* stages */ 32,
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true);
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}
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TEST(MountingTest, stableSmallerTreeMoreIterationsOptimizedMovesFlattener) {
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testShadowNodeTreeLifeCycle(
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/* seed */ 0,
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/* size */ 16,
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/* repeats */ 512,
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/* stages */ 32,
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true);
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}
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