mirror of
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184 lines
6.2 KiB
C++
184 lines
6.2 KiB
C++
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// Copyright 2016 The Chromium Authors. All rights reserved.
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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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#include "net/spdy/http2_priority_dependencies.h"
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#include "base/trace_event/memory_usage_estimator.h"
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namespace net {
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Http2PriorityDependencies::Http2PriorityDependencies() = default;
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Http2PriorityDependencies::~Http2PriorityDependencies() = default;
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void Http2PriorityDependencies::OnStreamCreation(
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spdy::SpdyStreamId id,
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spdy::SpdyPriority priority,
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spdy::SpdyStreamId* parent_stream_id,
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int* weight,
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bool* exclusive) {
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if (entry_by_stream_id_.find(id) != entry_by_stream_id_.end())
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return;
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*parent_stream_id = 0;
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*exclusive = true;
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// Since the generated dependency graph is a single linked list, the value
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// of weight should not actually matter, and perhaps the default weight of 16
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// from the HTTP/2 spec would be reasonable. However, there are some servers
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// which currently interpret the weight field like an old SPDY priority value.
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// As long as those servers need to be supported, weight should be set to
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// a value those servers will interpret correctly.
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*weight = spdy::Spdy3PriorityToHttp2Weight(priority);
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// Dependent on the lowest-priority stream that has a priority >= |priority|.
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IdList::iterator parent;
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if (PriorityLowerBound(priority, &parent)) {
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*parent_stream_id = parent->first;
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}
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id_priority_lists_[priority].push_back(std::make_pair(id, priority));
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IdList::iterator it = id_priority_lists_[priority].end();
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--it;
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entry_by_stream_id_[id] = it;
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}
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bool Http2PriorityDependencies::PriorityLowerBound(spdy::SpdyPriority priority,
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IdList::iterator* bound) {
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for (int i = priority; i >= spdy::kV3HighestPriority; --i) {
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if (!id_priority_lists_[i].empty()) {
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*bound = id_priority_lists_[i].end();
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--(*bound);
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return true;
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}
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}
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return false;
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}
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bool Http2PriorityDependencies::ParentOfStream(spdy::SpdyStreamId id,
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IdList::iterator* parent) {
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EntryMap::iterator entry = entry_by_stream_id_.find(id);
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DCHECK(entry != entry_by_stream_id_.end());
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spdy::SpdyPriority priority = entry->second->second;
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IdList::iterator curr = entry->second;
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if (curr != id_priority_lists_[priority].begin()) {
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*parent = curr;
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--(*parent);
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return true;
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}
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// |id| is at the head of its priority list, so its parent is the last
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// entry of the next-highest priority band.
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if (priority == spdy::kV3HighestPriority) {
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return false;
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}
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return PriorityLowerBound(priority - 1, parent);
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}
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bool Http2PriorityDependencies::ChildOfStream(spdy::SpdyStreamId id,
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IdList::iterator* child) {
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EntryMap::iterator entry = entry_by_stream_id_.find(id);
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DCHECK(entry != entry_by_stream_id_.end());
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spdy::SpdyPriority priority = entry->second->second;
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*child = entry->second;
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++(*child);
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if (*child != id_priority_lists_[priority].end()) {
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return true;
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}
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// |id| is at the end of its priority list, so its child is the stream
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// at the front of the next-lowest priority band.
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for (int i = priority + 1; i <= spdy::kV3LowestPriority; ++i) {
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if (!id_priority_lists_[i].empty()) {
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*child = id_priority_lists_[i].begin();
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return true;
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}
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}
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return false;
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}
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std::vector<Http2PriorityDependencies::DependencyUpdate>
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Http2PriorityDependencies::OnStreamUpdate(spdy::SpdyStreamId id,
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spdy::SpdyPriority new_priority) {
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std::vector<DependencyUpdate> result;
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result.reserve(2);
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EntryMap::iterator curr_entry = entry_by_stream_id_.find(id);
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if (curr_entry == entry_by_stream_id_.end()) {
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return result;
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}
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spdy::SpdyPriority old_priority = curr_entry->second->second;
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if (old_priority == new_priority) {
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return result;
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}
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IdList::iterator old_parent;
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bool old_has_parent = ParentOfStream(id, &old_parent);
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IdList::iterator new_parent;
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bool new_has_parent = PriorityLowerBound(new_priority, &new_parent);
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// If we move |id| from MEDIUM to LOW, where HIGH = {other_id}, MEDIUM = {id},
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// and LOW = {}, then PriorityLowerBound(new_priority) is |id|. In this corner
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// case, |id| does not change parents.
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if (new_has_parent && new_parent->first == id) {
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new_has_parent = old_has_parent;
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new_parent = old_parent;
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}
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// If the parent has changed, we generate dependency updates.
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if ((old_has_parent != new_has_parent) ||
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(old_has_parent && old_parent->first != new_parent->first)) {
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// If |id| has a child, then that child moves to be dependent on
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// |old_parent|.
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IdList::iterator old_child;
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if (ChildOfStream(id, &old_child)) {
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int weight = spdy::Spdy3PriorityToHttp2Weight(old_child->second);
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if (old_has_parent) {
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result.push_back({old_child->first, old_parent->first, weight, true});
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} else {
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result.push_back({old_child->first, 0, weight, true});
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}
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}
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int weight = spdy::Spdy3PriorityToHttp2Weight(new_priority);
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// |id| moves to be dependent on |new_parent|.
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if (new_has_parent) {
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result.push_back({id, new_parent->first, weight, true});
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} else {
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result.push_back({id, 0, weight, true});
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}
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}
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// Move to the new priority.
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EntryMap::iterator old = entry_by_stream_id_.find(id);
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id_priority_lists_[old->second->second].erase(old->second);
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id_priority_lists_[new_priority].push_back(std::make_pair(id, new_priority));
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IdList::iterator it = id_priority_lists_[new_priority].end();
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--it;
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entry_by_stream_id_[id] = it;
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return result;
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}
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void Http2PriorityDependencies::OnStreamDestruction(spdy::SpdyStreamId id) {
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EntryMap::iterator emit = entry_by_stream_id_.find(id);
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if (emit == entry_by_stream_id_.end())
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return;
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IdList::iterator it = emit->second;
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id_priority_lists_[it->second].erase(it);
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entry_by_stream_id_.erase(emit);
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}
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size_t Http2PriorityDependencies::EstimateMemoryUsage() const {
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return base::trace_event::EstimateMemoryUsage(id_priority_lists_);
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// TODO(xunjieli): https://crbug.com/690015. Include |entry_by_stream_id_|
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// when memory_usage_estimator.h supports std::list::iterator.
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}
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} // namespace net
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