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// Copyright 2017 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 "chrome/browser/devtools/serialize_host_descriptions.h"
#include <map>
#include <unordered_set>
#include <utility>
#include "base/strings/string_piece.h"
namespace {
// Returns the serialization of |root|. It expects |children[x]| to be the
// vector of child nodes for all descendants |x| of |root|. The serialization
// consists of taking the |representation| value of each node, starting in
// leaves, and injecting children's representations into a ListValue under the
// key |child_key| in the parent's |representation|. This is desctructive to the
// representation stored with the nodes (which gets moved out of them).
base::DictionaryValue Serialize(
base::StringPiece child_key,
base::DictionaryValue* root,
const std::map<base::DictionaryValue*, std::vector<base::DictionaryValue*>>&
children) {
auto children_list = std::make_unique<base::ListValue>();
auto child_it = children.find(root);
if (child_it != children.end()) {
for (base::DictionaryValue* child : child_it->second) {
children_list->base::Value::GetList().push_back(
Serialize(child_key, child, children));
}
}
if (!children_list->empty())
root->Set(child_key, std::move(children_list));
return std::move(*root);
}
// Takes a vector of host description and converts it into:
// |children|: a map from a host's representation to representations of its
// children,
// |roots|: a set of representations of hosts with no parents, and
// |representations|: a vector actually storing all those representations to
// which the rest just points.
void CreateDictionaryForest(
std::vector<HostDescriptionNode> hosts,
std::map<base::DictionaryValue*, std::vector<base::DictionaryValue*>>*
children,
std::unordered_set<base::DictionaryValue*>* roots,
std::vector<base::DictionaryValue>* representations) {
representations->reserve(hosts.size());
children->clear();
roots->clear();
representations->clear();
std::map<base::StringPiece, base::DictionaryValue*> name_to_representation;
// First move the representations and map the names to them.
for (HostDescriptionNode& node : hosts) {
representations->push_back(std::move(node.representation));
// If there are multiple nodes with the same name, subsequent insertions
// will be ignored, so only the first node with a given name will be
// referenced by |roots| and |children|.
name_to_representation.emplace(node.name, &representations->back());
}
// Now compute children.
for (HostDescriptionNode& node : hosts) {
base::DictionaryValue* node_rep = name_to_representation[node.name];
base::StringPiece parent_name = node.parent_name;
if (parent_name.empty()) {
roots->insert(node_rep);
continue;
}
auto node_it = name_to_representation.find(parent_name);
if (node_it == name_to_representation.end()) {
roots->insert(node_rep);
continue;
}
(*children)[name_to_representation[parent_name]].push_back(node_rep);
}
}
} // namespace
base::ListValue SerializeHostDescriptions(
std::vector<HostDescriptionNode> hosts,
base::StringPiece child_key) {
// |representations| must outlive |children| and |roots|, which contain
// pointers to objects in |representations|.
std::vector<base::DictionaryValue> representations;
std::map<base::DictionaryValue*, std::vector<base::DictionaryValue*>>
children;
std::unordered_set<base::DictionaryValue*> roots;
CreateDictionaryForest(std::move(hosts), &children, &roots, &representations);
base::ListValue list_value;
for (auto* root : roots) {
list_value.base::Value::GetList().push_back(
Serialize(child_key, root, children));
}
return list_value;
}