mirror of
https://github.com/klzgrad/naiveproxy.git
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486 lines
15 KiB
C++
486 lines
15 KiB
C++
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// Copyright 2014 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/ssl/channel_id_service.h"
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#include <algorithm>
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#include <limits>
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#include <memory>
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#include <utility>
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#include "base/atomic_sequence_num.h"
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#include "base/bind.h"
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#include "base/bind_helpers.h"
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#include "base/callback_helpers.h"
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#include "base/compiler_specific.h"
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#include "base/location.h"
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#include "base/logging.h"
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#include "base/macros.h"
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#include "base/memory/ptr_util.h"
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#include "base/metrics/histogram_macros.h"
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#include "base/rand_util.h"
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#include "base/single_thread_task_runner.h"
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#include "base/task_runner.h"
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#include "base/task_scheduler/post_task.h"
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#include "base/threading/thread_task_runner_handle.h"
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#include "crypto/ec_private_key.h"
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#include "net/base/net_errors.h"
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#include "net/base/registry_controlled_domains/registry_controlled_domain.h"
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#include "net/cert/x509_certificate.h"
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#include "net/cert/x509_util.h"
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#include "url/gurl.h"
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namespace net {
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namespace {
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base::AtomicSequenceNumber g_next_id;
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// Used by the GetDomainBoundCertResult histogram to record the final
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// outcome of each GetChannelID or GetOrCreateChannelID call.
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// Do not re-use values.
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enum GetChannelIDResult {
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// Synchronously found and returned an existing domain bound cert.
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SYNC_SUCCESS = 0,
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// Retrieved or generated and returned a domain bound cert asynchronously.
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ASYNC_SUCCESS = 1,
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// Retrieval/generation request was cancelled before the cert generation
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// completed.
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ASYNC_CANCELLED = 2,
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// Cert generation failed.
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ASYNC_FAILURE_KEYGEN = 3,
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// Result code 4 was removed (ASYNC_FAILURE_CREATE_CERT)
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ASYNC_FAILURE_EXPORT_KEY = 5,
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ASYNC_FAILURE_UNKNOWN = 6,
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// GetChannelID or GetOrCreateChannelID was called with
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// invalid arguments.
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INVALID_ARGUMENT = 7,
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// We don't support any of the cert types the server requested.
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UNSUPPORTED_TYPE = 8,
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// Server asked for a different type of certs while we were generating one.
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TYPE_MISMATCH = 9,
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// Couldn't start a worker to generate a cert.
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WORKER_FAILURE = 10,
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GET_CHANNEL_ID_RESULT_MAX
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};
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void RecordGetChannelIDResult(GetChannelIDResult result) {
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UMA_HISTOGRAM_ENUMERATION("DomainBoundCerts.GetDomainBoundCertResult", result,
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GET_CHANNEL_ID_RESULT_MAX);
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}
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// On success, returns a ChannelID object and sets |*error| to OK.
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// Otherwise, returns NULL, and |*error| will be set to a net error code.
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// |serial_number| is passed in because base::RandInt cannot be called from an
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// unjoined thread, due to relying on a non-leaked LazyInstance
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std::unique_ptr<ChannelIDStore::ChannelID> GenerateChannelID(
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const std::string& server_identifier,
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int* error) {
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std::unique_ptr<ChannelIDStore::ChannelID> result;
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base::Time creation_time = base::Time::Now();
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std::unique_ptr<crypto::ECPrivateKey> key(crypto::ECPrivateKey::Create());
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if (!key) {
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DLOG(ERROR) << "Unable to create channel ID key pair";
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*error = ERR_KEY_GENERATION_FAILED;
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return result;
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}
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result.reset(new ChannelIDStore::ChannelID(server_identifier, creation_time,
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std::move(key)));
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*error = OK;
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return result;
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}
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} // namespace
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// ChannelIDServiceWorker takes care of the blocking process of performing key
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// generation. Will take care of deleting itself once Start() is called.
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class ChannelIDServiceWorker {
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public:
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typedef base::Callback<
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void(const std::string&, int, std::unique_ptr<ChannelIDStore::ChannelID>)>
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WorkerDoneCallback;
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ChannelIDServiceWorker(const std::string& server_identifier,
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const WorkerDoneCallback& callback)
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: server_identifier_(server_identifier),
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origin_task_runner_(base::ThreadTaskRunnerHandle::Get()),
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callback_(callback) {}
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// Starts the worker asynchronously.
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void Start(const scoped_refptr<base::TaskRunner>& task_runner) {
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DCHECK(origin_task_runner_->RunsTasksInCurrentSequence());
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auto callback = base::Bind(&ChannelIDServiceWorker::Run, base::Owned(this));
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if (task_runner) {
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task_runner->PostTask(FROM_HERE, callback);
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} else {
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base::PostTaskWithTraits(
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FROM_HERE,
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{base::MayBlock(), base::TaskShutdownBehavior::CONTINUE_ON_SHUTDOWN},
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callback);
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}
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}
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private:
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void Run() {
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// Runs on a worker thread.
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int error = ERR_FAILED;
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std::unique_ptr<ChannelIDStore::ChannelID> channel_id =
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GenerateChannelID(server_identifier_, &error);
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origin_task_runner_->PostTask(
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FROM_HERE, base::Bind(callback_, server_identifier_, error,
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base::Passed(&channel_id)));
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}
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const std::string server_identifier_;
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scoped_refptr<base::SequencedTaskRunner> origin_task_runner_;
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WorkerDoneCallback callback_;
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DISALLOW_COPY_AND_ASSIGN(ChannelIDServiceWorker);
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};
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// A ChannelIDServiceJob is a one-to-one counterpart of an
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// ChannelIDServiceWorker. It lives only on the ChannelIDService's
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// origin task runner's thread.
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class ChannelIDServiceJob {
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public:
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ChannelIDServiceJob(bool create_if_missing)
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: create_if_missing_(create_if_missing) {
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}
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~ChannelIDServiceJob() { DCHECK(requests_.empty()); }
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void AddRequest(ChannelIDService::Request* request,
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bool create_if_missing = false) {
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create_if_missing_ |= create_if_missing;
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requests_.push_back(request);
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}
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void HandleResult(int error, std::unique_ptr<crypto::ECPrivateKey> key) {
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PostAll(error, std::move(key));
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}
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bool CreateIfMissing() const { return create_if_missing_; }
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void CancelRequest(ChannelIDService::Request* req) {
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auto it = std::find(requests_.begin(), requests_.end(), req);
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if (it != requests_.end())
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requests_.erase(it);
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}
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private:
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void PostAll(int error, std::unique_ptr<crypto::ECPrivateKey> key) {
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std::vector<ChannelIDService::Request*> requests;
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requests_.swap(requests);
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for (std::vector<ChannelIDService::Request*>::iterator i = requests.begin();
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i != requests.end(); i++) {
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std::unique_ptr<crypto::ECPrivateKey> key_copy;
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if (key)
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key_copy = key->Copy();
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(*i)->Post(error, std::move(key_copy));
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}
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}
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std::vector<ChannelIDService::Request*> requests_;
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bool create_if_missing_;
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};
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ChannelIDService::Request::Request() : service_(NULL) {
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}
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ChannelIDService::Request::~Request() {
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Cancel();
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}
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void ChannelIDService::Request::Cancel() {
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if (service_) {
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RecordGetChannelIDResult(ASYNC_CANCELLED);
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callback_.Reset();
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job_->CancelRequest(this);
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service_ = NULL;
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}
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}
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void ChannelIDService::Request::RequestStarted(
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ChannelIDService* service,
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const CompletionCallback& callback,
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std::unique_ptr<crypto::ECPrivateKey>* key,
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ChannelIDServiceJob* job) {
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DCHECK(service_ == NULL);
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service_ = service;
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callback_ = callback;
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key_ = key;
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job_ = job;
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}
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void ChannelIDService::Request::Post(
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int error,
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std::unique_ptr<crypto::ECPrivateKey> key) {
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switch (error) {
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case OK: {
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RecordGetChannelIDResult(ASYNC_SUCCESS);
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break;
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}
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case ERR_KEY_GENERATION_FAILED:
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RecordGetChannelIDResult(ASYNC_FAILURE_KEYGEN);
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break;
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case ERR_PRIVATE_KEY_EXPORT_FAILED:
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RecordGetChannelIDResult(ASYNC_FAILURE_EXPORT_KEY);
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break;
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case ERR_INSUFFICIENT_RESOURCES:
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RecordGetChannelIDResult(WORKER_FAILURE);
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break;
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default:
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RecordGetChannelIDResult(ASYNC_FAILURE_UNKNOWN);
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break;
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}
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service_ = NULL;
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DCHECK(!callback_.is_null());
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if (key)
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*key_ = std::move(key);
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// Running the callback might delete |this| (e.g. the callback cleans up
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// resources created for the request), so we can't touch any of our
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// members afterwards. Reset callback_ first.
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base::ResetAndReturn(&callback_).Run(error);
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}
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ChannelIDService::ChannelIDService(ChannelIDStore* channel_id_store)
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: channel_id_store_(channel_id_store),
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id_(g_next_id.GetNext()),
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requests_(0),
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key_store_hits_(0),
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inflight_joins_(0),
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workers_created_(0),
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weak_ptr_factory_(this) {}
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ChannelIDService::~ChannelIDService() {
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DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
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}
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// static
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std::string ChannelIDService::GetDomainForHost(const std::string& host) {
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std::string domain =
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registry_controlled_domains::GetDomainAndRegistry(
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host, registry_controlled_domains::INCLUDE_PRIVATE_REGISTRIES);
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if (domain.empty())
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return host;
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return domain;
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}
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int ChannelIDService::GetOrCreateChannelID(
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const std::string& host,
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std::unique_ptr<crypto::ECPrivateKey>* key,
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const CompletionCallback& callback,
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Request* out_req) {
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DVLOG(1) << __func__ << " " << host;
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DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
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if (callback.is_null() || !key || host.empty()) {
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RecordGetChannelIDResult(INVALID_ARGUMENT);
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return ERR_INVALID_ARGUMENT;
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}
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std::string domain = GetDomainForHost(host);
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if (domain.empty()) {
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RecordGetChannelIDResult(INVALID_ARGUMENT);
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return ERR_INVALID_ARGUMENT;
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}
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requests_++;
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// See if a request for the same domain is currently in flight.
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bool create_if_missing = true;
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if (JoinToInFlightRequest(domain, key, create_if_missing, callback,
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out_req)) {
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return ERR_IO_PENDING;
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}
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int err = LookupChannelID(domain, key, create_if_missing, callback, out_req);
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if (err == ERR_FILE_NOT_FOUND) {
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// Sync lookup did not find a valid channel ID. Start generating a new one.
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workers_created_++;
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ChannelIDServiceWorker* worker = new ChannelIDServiceWorker(
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domain,
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base::Bind(&ChannelIDService::GeneratedChannelID,
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weak_ptr_factory_.GetWeakPtr()));
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worker->Start(task_runner_);
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// We are waiting for key generation. Create a job & request to track it.
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ChannelIDServiceJob* job = new ChannelIDServiceJob(create_if_missing);
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inflight_[domain] = base::WrapUnique(job);
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job->AddRequest(out_req);
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out_req->RequestStarted(this, callback, key, job);
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return ERR_IO_PENDING;
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}
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return err;
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}
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int ChannelIDService::GetChannelID(const std::string& host,
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std::unique_ptr<crypto::ECPrivateKey>* key,
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const CompletionCallback& callback,
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Request* out_req) {
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DVLOG(1) << __func__ << " " << host;
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DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
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if (callback.is_null() || !key || host.empty()) {
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RecordGetChannelIDResult(INVALID_ARGUMENT);
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return ERR_INVALID_ARGUMENT;
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}
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std::string domain = GetDomainForHost(host);
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if (domain.empty()) {
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RecordGetChannelIDResult(INVALID_ARGUMENT);
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return ERR_INVALID_ARGUMENT;
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}
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requests_++;
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// See if a request for the same domain currently in flight.
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bool create_if_missing = false;
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if (JoinToInFlightRequest(domain, key, create_if_missing, callback,
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out_req)) {
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return ERR_IO_PENDING;
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}
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int err = LookupChannelID(domain, key, create_if_missing, callback, out_req);
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return err;
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}
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void ChannelIDService::GotChannelID(int err,
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const std::string& server_identifier,
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std::unique_ptr<crypto::ECPrivateKey> key) {
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DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
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auto j = inflight_.find(server_identifier);
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if (j == inflight_.end()) {
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NOTREACHED();
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return;
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}
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if (err == OK) {
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// Async DB lookup found a valid channel ID.
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key_store_hits_++;
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// ChannelIDService::Request::Post will do the histograms and stuff.
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HandleResult(OK, server_identifier, std::move(key));
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return;
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}
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// Async lookup failed or the channel ID was missing. Return the error
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// directly, unless the channel ID was missing and a request asked to create
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// one.
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if (err != ERR_FILE_NOT_FOUND || !j->second->CreateIfMissing()) {
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HandleResult(err, server_identifier, std::move(key));
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return;
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}
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// At least one request asked to create a channel ID => start generating a new
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// one.
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workers_created_++;
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ChannelIDServiceWorker* worker = new ChannelIDServiceWorker(
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server_identifier,
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base::Bind(&ChannelIDService::GeneratedChannelID,
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weak_ptr_factory_.GetWeakPtr()));
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worker->Start(task_runner_);
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}
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ChannelIDStore* ChannelIDService::GetChannelIDStore() {
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return channel_id_store_.get();
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}
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void ChannelIDService::GeneratedChannelID(
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const std::string& server_identifier,
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int error,
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std::unique_ptr<ChannelIDStore::ChannelID> channel_id) {
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DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
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std::unique_ptr<crypto::ECPrivateKey> key;
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if (error == OK) {
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key = channel_id->key()->Copy();
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channel_id_store_->SetChannelID(std::move(channel_id));
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}
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HandleResult(error, server_identifier, std::move(key));
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}
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void ChannelIDService::HandleResult(int error,
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const std::string& server_identifier,
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std::unique_ptr<crypto::ECPrivateKey> key) {
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DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
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auto j = inflight_.find(server_identifier);
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if (j == inflight_.end()) {
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NOTREACHED();
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return;
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}
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std::unique_ptr<ChannelIDServiceJob> job = std::move(j->second);
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inflight_.erase(j);
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job->HandleResult(error, std::move(key));
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}
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bool ChannelIDService::JoinToInFlightRequest(
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const std::string& domain,
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std::unique_ptr<crypto::ECPrivateKey>* key,
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bool create_if_missing,
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const CompletionCallback& callback,
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Request* out_req) {
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|
ChannelIDServiceJob* job = NULL;
|
||
|
auto j = inflight_.find(domain);
|
||
|
if (j != inflight_.end()) {
|
||
|
// A request for the same domain is in flight already. We'll attach our
|
||
|
// callback, but we'll also mark it as requiring a channel ID if one's
|
||
|
// mising.
|
||
|
job = j->second.get();
|
||
|
inflight_joins_++;
|
||
|
|
||
|
job->AddRequest(out_req, create_if_missing);
|
||
|
out_req->RequestStarted(this, callback, key, job);
|
||
|
return true;
|
||
|
}
|
||
|
return false;
|
||
|
}
|
||
|
|
||
|
int ChannelIDService::LookupChannelID(
|
||
|
const std::string& domain,
|
||
|
std::unique_ptr<crypto::ECPrivateKey>* key,
|
||
|
bool create_if_missing,
|
||
|
const CompletionCallback& callback,
|
||
|
Request* out_req) {
|
||
|
// Check if a channel ID key already exists for this domain.
|
||
|
int err = channel_id_store_->GetChannelID(
|
||
|
domain, key, base::Bind(&ChannelIDService::GotChannelID,
|
||
|
weak_ptr_factory_.GetWeakPtr()));
|
||
|
|
||
|
if (err == OK) {
|
||
|
// Sync lookup found a valid channel ID.
|
||
|
DVLOG(1) << "Channel ID store had valid key for " << domain;
|
||
|
key_store_hits_++;
|
||
|
RecordGetChannelIDResult(SYNC_SUCCESS);
|
||
|
return OK;
|
||
|
}
|
||
|
|
||
|
if (err == ERR_IO_PENDING) {
|
||
|
// We are waiting for async DB lookup. Create a job & request to track it.
|
||
|
ChannelIDServiceJob* job = new ChannelIDServiceJob(create_if_missing);
|
||
|
inflight_[domain] = base::WrapUnique(job);
|
||
|
|
||
|
job->AddRequest(out_req);
|
||
|
out_req->RequestStarted(this, callback, key, job);
|
||
|
return ERR_IO_PENDING;
|
||
|
}
|
||
|
|
||
|
return err;
|
||
|
}
|
||
|
|
||
|
int ChannelIDService::channel_id_count() {
|
||
|
return channel_id_store_->GetChannelIDCount();
|
||
|
}
|
||
|
|
||
|
} // namespace net
|