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757 lines
27 KiB
757 lines
27 KiB
// |
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// Copyright (C) 2009 The Android Open Source Project |
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// |
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// Licensed under the Apache License, Version 2.0 (the "License"); |
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// you may not use this file except in compliance with the License. |
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// You may obtain a copy of the License at |
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// |
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// http://www.apache.org/licenses/LICENSE-2.0 |
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// |
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// Unless required by applicable law or agreed to in writing, software |
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// distributed under the License is distributed on an "AS IS" BASIS, |
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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// See the License for the specific language governing permissions and |
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// limitations under the License. |
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// |
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#include "update_engine/libcurl_http_fetcher.h" |
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#include <sys/types.h> |
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#include <unistd.h> |
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#include <algorithm> |
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#include <string> |
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#include <base/bind.h> |
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#include <base/format_macros.h> |
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#include <base/location.h> |
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#include <base/logging.h> |
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#include <base/strings/string_util.h> |
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#include <base/strings/stringprintf.h> |
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|
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#ifdef __ANDROID__ |
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#include <cutils/qtaguid.h> |
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#include <private/android_filesystem_config.h> |
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#endif // __ANDROID__ |
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#include "update_engine/certificate_checker.h" |
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#include "update_engine/common/hardware_interface.h" |
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#include "update_engine/common/platform_constants.h" |
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using base::TimeDelta; |
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using brillo::MessageLoop; |
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using std::max; |
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using std::string; |
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// This is a concrete implementation of HttpFetcher that uses libcurl to do the |
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// http work. |
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namespace chromeos_update_engine { |
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namespace { |
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const int kNoNetworkRetrySeconds = 10; |
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// libcurl's CURLOPT_SOCKOPTFUNCTION callback function. Called after the socket |
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// is created but before it is connected. This callback tags the created socket |
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// so the network usage can be tracked in Android. |
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int LibcurlSockoptCallback(void* /* clientp */, |
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curl_socket_t curlfd, |
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curlsocktype /* purpose */) { |
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#ifdef __ANDROID__ |
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// Socket tag used by all network sockets. See qtaguid kernel module for |
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// stats. |
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const int kUpdateEngineSocketTag = 0x55417243; // "CrAU" in little-endian. |
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qtaguid_tagSocket(curlfd, kUpdateEngineSocketTag, AID_OTA_UPDATE); |
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#endif // __ANDROID__ |
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return CURL_SOCKOPT_OK; |
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} |
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} // namespace |
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// static |
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int LibcurlHttpFetcher::LibcurlCloseSocketCallback(void* clientp, |
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curl_socket_t item) { |
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#ifdef __ANDROID__ |
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qtaguid_untagSocket(item); |
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#endif // __ANDROID__ |
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LibcurlHttpFetcher* fetcher = static_cast<LibcurlHttpFetcher*>(clientp); |
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// Stop watching the socket before closing it. |
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for (size_t t = 0; t < arraysize(fetcher->fd_task_maps_); ++t) { |
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const auto fd_task_pair = fetcher->fd_task_maps_[t].find(item); |
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if (fd_task_pair != fetcher->fd_task_maps_[t].end()) { |
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if (!MessageLoop::current()->CancelTask(fd_task_pair->second)) { |
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LOG(WARNING) << "Error canceling the watch task " |
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<< fd_task_pair->second << " for " |
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<< (t ? "writing" : "reading") << " the fd " << item; |
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} |
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fetcher->fd_task_maps_[t].erase(item); |
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} |
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} |
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|
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// Documentation for this callback says to return 0 on success or 1 on error. |
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if (!IGNORE_EINTR(close(item))) |
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return 0; |
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return 1; |
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} |
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LibcurlHttpFetcher::LibcurlHttpFetcher(ProxyResolver* proxy_resolver, |
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HardwareInterface* hardware) |
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: HttpFetcher(proxy_resolver), hardware_(hardware) { |
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// Dev users want a longer timeout (180 seconds) because they may |
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// be waiting on the dev server to build an image. |
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if (!hardware_->IsOfficialBuild()) |
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low_speed_time_seconds_ = kDownloadDevModeLowSpeedTimeSeconds; |
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if (hardware_->IsOOBEEnabled() && !hardware_->IsOOBEComplete(nullptr)) |
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max_retry_count_ = kDownloadMaxRetryCountOobeNotComplete; |
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} |
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LibcurlHttpFetcher::~LibcurlHttpFetcher() { |
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LOG_IF(ERROR, transfer_in_progress_) |
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<< "Destroying the fetcher while a transfer is in progress."; |
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CancelProxyResolution(); |
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CleanUp(); |
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} |
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bool LibcurlHttpFetcher::GetProxyType(const string& proxy, |
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curl_proxytype* out_type) { |
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if (base::StartsWith( |
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proxy, "socks5://", base::CompareCase::INSENSITIVE_ASCII) || |
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base::StartsWith( |
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proxy, "socks://", base::CompareCase::INSENSITIVE_ASCII)) { |
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*out_type = CURLPROXY_SOCKS5_HOSTNAME; |
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return true; |
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} |
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if (base::StartsWith( |
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proxy, "socks4://", base::CompareCase::INSENSITIVE_ASCII)) { |
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*out_type = CURLPROXY_SOCKS4A; |
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return true; |
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} |
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if (base::StartsWith( |
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proxy, "http://", base::CompareCase::INSENSITIVE_ASCII) || |
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base::StartsWith( |
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proxy, "https://", base::CompareCase::INSENSITIVE_ASCII)) { |
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*out_type = CURLPROXY_HTTP; |
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return true; |
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} |
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if (base::StartsWith(proxy, kNoProxy, base::CompareCase::INSENSITIVE_ASCII)) { |
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// known failure case. don't log. |
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return false; |
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} |
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LOG(INFO) << "Unknown proxy type: " << proxy; |
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return false; |
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} |
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void LibcurlHttpFetcher::ResumeTransfer(const string& url) { |
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LOG(INFO) << "Starting/Resuming transfer"; |
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CHECK(!transfer_in_progress_); |
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url_ = url; |
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curl_multi_handle_ = curl_multi_init(); |
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CHECK(curl_multi_handle_); |
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curl_handle_ = curl_easy_init(); |
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CHECK(curl_handle_); |
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ignore_failure_ = false; |
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// Tag and untag the socket for network usage stats. |
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curl_easy_setopt( |
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curl_handle_, CURLOPT_SOCKOPTFUNCTION, LibcurlSockoptCallback); |
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curl_easy_setopt( |
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curl_handle_, CURLOPT_CLOSESOCKETFUNCTION, LibcurlCloseSocketCallback); |
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curl_easy_setopt(curl_handle_, CURLOPT_CLOSESOCKETDATA, this); |
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|
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CHECK(HasProxy()); |
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bool is_direct = (GetCurrentProxy() == kNoProxy); |
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LOG(INFO) << "Using proxy: " << (is_direct ? "no" : "yes"); |
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if (is_direct) { |
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CHECK_EQ(curl_easy_setopt(curl_handle_, |
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CURLOPT_PROXY, |
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""), CURLE_OK); |
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} else { |
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CHECK_EQ(curl_easy_setopt(curl_handle_, |
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CURLOPT_PROXY, |
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GetCurrentProxy().c_str()), CURLE_OK); |
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// Curl seems to require us to set the protocol |
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curl_proxytype type; |
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if (GetProxyType(GetCurrentProxy(), &type)) { |
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CHECK_EQ(curl_easy_setopt(curl_handle_, |
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CURLOPT_PROXYTYPE, |
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type), CURLE_OK); |
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} |
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} |
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if (post_data_set_) { |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_POST, 1), CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_POSTFIELDS, |
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post_data_.data()), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_POSTFIELDSIZE, |
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post_data_.size()), |
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CURLE_OK); |
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} |
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// Setup extra HTTP headers. |
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if (curl_http_headers_) { |
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curl_slist_free_all(curl_http_headers_); |
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curl_http_headers_ = nullptr; |
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} |
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for (const auto& header : extra_headers_) { |
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// curl_slist_append() copies the string. |
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curl_http_headers_ = |
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curl_slist_append(curl_http_headers_, header.second.c_str()); |
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} |
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if (post_data_set_) { |
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// Set the Content-Type HTTP header, if one was specifically set. |
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if (post_content_type_ != kHttpContentTypeUnspecified) { |
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const string content_type_attr = base::StringPrintf( |
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"Content-Type: %s", GetHttpContentTypeString(post_content_type_)); |
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curl_http_headers_ = |
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curl_slist_append(curl_http_headers_, content_type_attr.c_str()); |
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} else { |
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LOG(WARNING) << "no content type set, using libcurl default"; |
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} |
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} |
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CHECK_EQ( |
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curl_easy_setopt(curl_handle_, CURLOPT_HTTPHEADER, curl_http_headers_), |
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CURLE_OK); |
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if (bytes_downloaded_ > 0 || download_length_) { |
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// Resume from where we left off. |
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resume_offset_ = bytes_downloaded_; |
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CHECK_GE(resume_offset_, 0); |
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// Compute end offset, if one is specified. As per HTTP specification, this |
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// is an inclusive boundary. Make sure it doesn't overflow. |
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size_t end_offset = 0; |
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if (download_length_) { |
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end_offset = static_cast<size_t>(resume_offset_) + download_length_ - 1; |
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CHECK_LE((size_t) resume_offset_, end_offset); |
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} |
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// Create a string representation of the desired range. |
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string range_str = base::StringPrintf( |
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"%" PRIu64 "-", static_cast<uint64_t>(resume_offset_)); |
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if (end_offset) |
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range_str += std::to_string(end_offset); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_RANGE, range_str.c_str()), |
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CURLE_OK); |
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} |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_WRITEDATA, this), CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_WRITEFUNCTION, |
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StaticLibcurlWrite), CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_URL, url_.c_str()), |
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CURLE_OK); |
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// If the connection drops under |low_speed_limit_bps_| (10 |
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// bytes/sec by default) for |low_speed_time_seconds_| (90 seconds, |
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// 180 on non-official builds), reconnect. |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_LOW_SPEED_LIMIT, |
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low_speed_limit_bps_), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_LOW_SPEED_TIME, |
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low_speed_time_seconds_), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_CONNECTTIMEOUT, |
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connect_timeout_seconds_), |
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CURLE_OK); |
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// By default, libcurl doesn't follow redirections. Allow up to |
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// |kDownloadMaxRedirects| redirections. |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_FOLLOWLOCATION, 1), CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_MAXREDIRS, |
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kDownloadMaxRedirects), |
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CURLE_OK); |
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// Lock down the appropriate curl options for HTTP or HTTPS depending on |
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// the url. |
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if (hardware_->IsOfficialBuild()) { |
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if (base::StartsWith( |
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url_, "http://", base::CompareCase::INSENSITIVE_ASCII)) { |
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SetCurlOptionsForHttp(); |
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} else if (base::StartsWith( |
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url_, "https://", base::CompareCase::INSENSITIVE_ASCII)) { |
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SetCurlOptionsForHttps(); |
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#if !defined(__CHROMEOS__) && !defined(__BRILLO__) |
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} else if (base::StartsWith( |
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url_, "file://", base::CompareCase::INSENSITIVE_ASCII)) { |
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SetCurlOptionsForFile(); |
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#endif |
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} else { |
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LOG(ERROR) << "Received invalid URI: " << url_; |
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// Lock down to no protocol supported for the transfer. |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_PROTOCOLS, 0), CURLE_OK); |
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} |
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} else { |
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LOG(INFO) << "Not setting http(s) curl options because we are " |
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<< "running a dev/test image"; |
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} |
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CHECK_EQ(curl_multi_add_handle(curl_multi_handle_, curl_handle_), CURLM_OK); |
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transfer_in_progress_ = true; |
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} |
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// Lock down only the protocol in case of HTTP. |
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void LibcurlHttpFetcher::SetCurlOptionsForHttp() { |
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LOG(INFO) << "Setting up curl options for HTTP"; |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_PROTOCOLS, CURLPROTO_HTTP), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_REDIR_PROTOCOLS, |
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CURLPROTO_HTTP), |
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CURLE_OK); |
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} |
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// Security lock-down in official builds: makes sure that peer certificate |
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// verification is enabled, restricts the set of trusted certificates, |
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// restricts protocols to HTTPS, restricts ciphers to HIGH. |
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void LibcurlHttpFetcher::SetCurlOptionsForHttps() { |
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LOG(INFO) << "Setting up curl options for HTTPS"; |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_SSL_VERIFYPEER, 1), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_SSL_VERIFYHOST, 2), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_CAPATH, |
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constants::kCACertificatesPath), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_PROTOCOLS, CURLPROTO_HTTPS), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_REDIR_PROTOCOLS, |
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CURLPROTO_HTTPS), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_SSL_CIPHER_LIST, "HIGH:!ADH"), |
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CURLE_OK); |
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if (server_to_check_ != ServerToCheck::kNone) { |
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CHECK_EQ( |
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curl_easy_setopt(curl_handle_, CURLOPT_SSL_CTX_DATA, &server_to_check_), |
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CURLE_OK); |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_SSL_CTX_FUNCTION, |
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CertificateChecker::ProcessSSLContext), |
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CURLE_OK); |
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} |
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} |
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|
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// Lock down only the protocol in case of a local file. |
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void LibcurlHttpFetcher::SetCurlOptionsForFile() { |
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LOG(INFO) << "Setting up curl options for FILE"; |
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CHECK_EQ(curl_easy_setopt(curl_handle_, CURLOPT_PROTOCOLS, CURLPROTO_FILE), |
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CURLE_OK); |
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CHECK_EQ( |
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curl_easy_setopt(curl_handle_, CURLOPT_REDIR_PROTOCOLS, CURLPROTO_FILE), |
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CURLE_OK); |
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} |
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|
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// Begins the transfer, which must not have already been started. |
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void LibcurlHttpFetcher::BeginTransfer(const string& url) { |
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CHECK(!transfer_in_progress_); |
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url_ = url; |
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auto closure = base::Bind(&LibcurlHttpFetcher::ProxiesResolved, |
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base::Unretained(this)); |
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ResolveProxiesForUrl(url_, closure); |
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} |
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void LibcurlHttpFetcher::ProxiesResolved() { |
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transfer_size_ = -1; |
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resume_offset_ = 0; |
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retry_count_ = 0; |
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no_network_retry_count_ = 0; |
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http_response_code_ = 0; |
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terminate_requested_ = false; |
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sent_byte_ = false; |
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|
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// If we are paused, we delay these two operations until Unpause is called. |
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if (transfer_paused_) { |
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restart_transfer_on_unpause_ = true; |
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return; |
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} |
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ResumeTransfer(url_); |
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CurlPerformOnce(); |
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} |
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|
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void LibcurlHttpFetcher::ForceTransferTermination() { |
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CancelProxyResolution(); |
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CleanUp(); |
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if (delegate_) { |
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// Note that after the callback returns this object may be destroyed. |
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delegate_->TransferTerminated(this); |
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} |
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} |
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|
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void LibcurlHttpFetcher::TerminateTransfer() { |
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if (in_write_callback_) { |
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terminate_requested_ = true; |
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} else { |
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ForceTransferTermination(); |
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} |
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} |
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|
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void LibcurlHttpFetcher::SetHeader(const string& header_name, |
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const string& header_value) { |
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string header_line = header_name + ": " + header_value; |
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// Avoid the space if no data on the right side of the semicolon. |
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if (header_value.empty()) |
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header_line = header_name + ":"; |
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TEST_AND_RETURN(header_line.find('\n') == string::npos); |
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TEST_AND_RETURN(header_name.find(':') == string::npos); |
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extra_headers_[base::ToLowerASCII(header_name)] = header_line; |
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} |
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|
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void LibcurlHttpFetcher::CurlPerformOnce() { |
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CHECK(transfer_in_progress_); |
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int running_handles = 0; |
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CURLMcode retcode = CURLM_CALL_MULTI_PERFORM; |
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|
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// libcurl may request that we immediately call curl_multi_perform after it |
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// returns, so we do. libcurl promises that curl_multi_perform will not block. |
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while (CURLM_CALL_MULTI_PERFORM == retcode) { |
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retcode = curl_multi_perform(curl_multi_handle_, &running_handles); |
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if (terminate_requested_) { |
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ForceTransferTermination(); |
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return; |
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} |
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} |
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|
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// If the transfer completes while paused, we should ignore the failure once |
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// the fetcher is unpaused. |
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if (running_handles == 0 && transfer_paused_ && !ignore_failure_) { |
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LOG(INFO) << "Connection closed while paused, ignoring failure."; |
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ignore_failure_ = true; |
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} |
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|
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if (running_handles != 0 || transfer_paused_) { |
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// There's either more work to do or we are paused, so we just keep the |
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// file descriptors to watch up to date and exit, until we are done with the |
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// work and we are not paused. |
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SetupMessageLoopSources(); |
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return; |
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} |
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|
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// At this point, the transfer was completed in some way (error, connection |
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// closed or download finished). |
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|
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GetHttpResponseCode(); |
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if (http_response_code_) { |
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LOG(INFO) << "HTTP response code: " << http_response_code_; |
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no_network_retry_count_ = 0; |
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} else { |
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LOG(ERROR) << "Unable to get http response code."; |
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} |
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|
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// we're done! |
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CleanUp(); |
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|
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// TODO(petkov): This temporary code tries to deal with the case where the |
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// update engine performs an update check while the network is not ready |
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// (e.g., right after resume). Longer term, we should check if the network |
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// is online/offline and return an appropriate error code. |
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if (!sent_byte_ && |
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http_response_code_ == 0 && |
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no_network_retry_count_ < no_network_max_retries_) { |
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no_network_retry_count_++; |
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retry_task_id_ = MessageLoop::current()->PostDelayedTask( |
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FROM_HERE, |
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base::Bind(&LibcurlHttpFetcher::RetryTimeoutCallback, |
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base::Unretained(this)), |
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TimeDelta::FromSeconds(kNoNetworkRetrySeconds)); |
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LOG(INFO) << "No HTTP response, retry " << no_network_retry_count_; |
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} else if ((!sent_byte_ && !IsHttpResponseSuccess()) || |
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IsHttpResponseError()) { |
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// The transfer completed w/ error and we didn't get any bytes. |
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// If we have another proxy to try, try that. |
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// |
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// TODO(garnold) in fact there are two separate cases here: one case is an |
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// other-than-success return code (including no return code) and no |
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// received bytes, which is necessary due to the way callbacks are |
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// currently processing error conditions; the second is an explicit HTTP |
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// error code, where some data may have been received (as in the case of a |
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// semi-successful multi-chunk fetch). This is a confusing behavior and |
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// should be unified into a complete, coherent interface. |
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LOG(INFO) << "Transfer resulted in an error (" << http_response_code_ |
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<< "), " << bytes_downloaded_ << " bytes downloaded"; |
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|
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PopProxy(); // Delete the proxy we just gave up on. |
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|
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if (HasProxy()) { |
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// We have another proxy. Retry immediately. |
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LOG(INFO) << "Retrying with next proxy setting"; |
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retry_task_id_ = MessageLoop::current()->PostTask( |
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FROM_HERE, |
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base::Bind(&LibcurlHttpFetcher::RetryTimeoutCallback, |
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base::Unretained(this))); |
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} else { |
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// Out of proxies. Give up. |
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LOG(INFO) << "No further proxies, indicating transfer complete"; |
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if (delegate_) |
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delegate_->TransferComplete(this, false); // signal fail |
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return; |
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} |
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} else if ((transfer_size_ >= 0) && (bytes_downloaded_ < transfer_size_)) { |
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if (!ignore_failure_) |
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retry_count_++; |
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LOG(INFO) << "Transfer interrupted after downloading " |
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<< bytes_downloaded_ << " of " << transfer_size_ << " bytes. " |
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<< transfer_size_ - bytes_downloaded_ << " bytes remaining " |
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<< "after " << retry_count_ << " attempt(s)"; |
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|
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if (retry_count_ > max_retry_count_) { |
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LOG(INFO) << "Reached max attempts (" << retry_count_ << ")"; |
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if (delegate_) |
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delegate_->TransferComplete(this, false); // signal fail |
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return; |
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} |
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// Need to restart transfer |
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LOG(INFO) << "Restarting transfer to download the remaining bytes"; |
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retry_task_id_ = MessageLoop::current()->PostDelayedTask( |
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FROM_HERE, |
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base::Bind(&LibcurlHttpFetcher::RetryTimeoutCallback, |
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base::Unretained(this)), |
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TimeDelta::FromSeconds(retry_seconds_)); |
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} else { |
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LOG(INFO) << "Transfer completed (" << http_response_code_ |
|
<< "), " << bytes_downloaded_ << " bytes downloaded"; |
|
if (delegate_) { |
|
bool success = IsHttpResponseSuccess(); |
|
delegate_->TransferComplete(this, success); |
|
} |
|
return; |
|
} |
|
// If we reach this point is because TransferComplete() was not called in any |
|
// of the previous branches. The delegate is allowed to destroy the object |
|
// once TransferComplete is called so this would be illegal. |
|
ignore_failure_ = false; |
|
} |
|
|
|
size_t LibcurlHttpFetcher::LibcurlWrite(void *ptr, size_t size, size_t nmemb) { |
|
// Update HTTP response first. |
|
GetHttpResponseCode(); |
|
const size_t payload_size = size * nmemb; |
|
|
|
// Do nothing if no payload or HTTP response is an error. |
|
if (payload_size == 0 || !IsHttpResponseSuccess()) { |
|
LOG(INFO) << "HTTP response unsuccessful (" << http_response_code_ |
|
<< ") or no payload (" << payload_size << "), nothing to do"; |
|
return 0; |
|
} |
|
|
|
sent_byte_ = true; |
|
{ |
|
double transfer_size_double; |
|
CHECK_EQ(curl_easy_getinfo(curl_handle_, |
|
CURLINFO_CONTENT_LENGTH_DOWNLOAD, |
|
&transfer_size_double), CURLE_OK); |
|
off_t new_transfer_size = static_cast<off_t>(transfer_size_double); |
|
if (new_transfer_size > 0) { |
|
transfer_size_ = resume_offset_ + new_transfer_size; |
|
} |
|
} |
|
bytes_downloaded_ += payload_size; |
|
in_write_callback_ = true; |
|
if (delegate_) |
|
delegate_->ReceivedBytes(this, ptr, payload_size); |
|
in_write_callback_ = false; |
|
return payload_size; |
|
} |
|
|
|
void LibcurlHttpFetcher::Pause() { |
|
if (transfer_paused_) { |
|
LOG(ERROR) << "Fetcher already paused."; |
|
return; |
|
} |
|
transfer_paused_ = true; |
|
if (!transfer_in_progress_) { |
|
// If pause before we started a connection, we don't need to notify curl |
|
// about that, we will simply not start the connection later. |
|
return; |
|
} |
|
CHECK(curl_handle_); |
|
CHECK_EQ(curl_easy_pause(curl_handle_, CURLPAUSE_ALL), CURLE_OK); |
|
} |
|
|
|
void LibcurlHttpFetcher::Unpause() { |
|
if (!transfer_paused_) { |
|
LOG(ERROR) << "Resume attempted when fetcher not paused."; |
|
return; |
|
} |
|
transfer_paused_ = false; |
|
if (restart_transfer_on_unpause_) { |
|
restart_transfer_on_unpause_ = false; |
|
ResumeTransfer(url_); |
|
CurlPerformOnce(); |
|
return; |
|
} |
|
if (!transfer_in_progress_) { |
|
// If resumed before starting the connection, there's no need to notify |
|
// anybody. We will simply start the connection once it is time. |
|
return; |
|
} |
|
CHECK(curl_handle_); |
|
CHECK_EQ(curl_easy_pause(curl_handle_, CURLPAUSE_CONT), CURLE_OK); |
|
// Since the transfer is in progress, we need to dispatch a CurlPerformOnce() |
|
// now to let the connection continue, otherwise it would be called by the |
|
// TimeoutCallback but with a delay. |
|
CurlPerformOnce(); |
|
} |
|
|
|
// This method sets up callbacks with the MessageLoop. |
|
void LibcurlHttpFetcher::SetupMessageLoopSources() { |
|
fd_set fd_read; |
|
fd_set fd_write; |
|
fd_set fd_exc; |
|
|
|
FD_ZERO(&fd_read); |
|
FD_ZERO(&fd_write); |
|
FD_ZERO(&fd_exc); |
|
|
|
int fd_max = 0; |
|
|
|
// Ask libcurl for the set of file descriptors we should track on its |
|
// behalf. |
|
CHECK_EQ(curl_multi_fdset(curl_multi_handle_, &fd_read, &fd_write, |
|
&fd_exc, &fd_max), CURLM_OK); |
|
|
|
// We should iterate through all file descriptors up to libcurl's fd_max or |
|
// the highest one we're tracking, whichever is larger. |
|
for (size_t t = 0; t < arraysize(fd_task_maps_); ++t) { |
|
if (!fd_task_maps_[t].empty()) |
|
fd_max = max(fd_max, fd_task_maps_[t].rbegin()->first); |
|
} |
|
|
|
// For each fd, if we're not tracking it, track it. If we are tracking it, but |
|
// libcurl doesn't care about it anymore, stop tracking it. After this loop, |
|
// there should be exactly as many tasks scheduled in fd_task_maps_[0|1] as |
|
// there are read/write fds that we're tracking. |
|
for (int fd = 0; fd <= fd_max; ++fd) { |
|
// Note that fd_exc is unused in the current version of libcurl so is_exc |
|
// should always be false. |
|
bool is_exc = FD_ISSET(fd, &fd_exc) != 0; |
|
bool must_track[2] = { |
|
is_exc || (FD_ISSET(fd, &fd_read) != 0), // track 0 -- read |
|
is_exc || (FD_ISSET(fd, &fd_write) != 0) // track 1 -- write |
|
}; |
|
MessageLoop::WatchMode watch_modes[2] = { |
|
MessageLoop::WatchMode::kWatchRead, |
|
MessageLoop::WatchMode::kWatchWrite, |
|
}; |
|
|
|
for (size_t t = 0; t < arraysize(fd_task_maps_); ++t) { |
|
auto fd_task_it = fd_task_maps_[t].find(fd); |
|
bool tracked = fd_task_it != fd_task_maps_[t].end(); |
|
|
|
if (!must_track[t]) { |
|
// If we have an outstanding io_channel, remove it. |
|
if (tracked) { |
|
MessageLoop::current()->CancelTask(fd_task_it->second); |
|
fd_task_maps_[t].erase(fd_task_it); |
|
} |
|
continue; |
|
} |
|
|
|
// If we are already tracking this fd, continue -- nothing to do. |
|
if (tracked) |
|
continue; |
|
|
|
// Track a new fd. |
|
fd_task_maps_[t][fd] = MessageLoop::current()->WatchFileDescriptor( |
|
FROM_HERE, |
|
fd, |
|
watch_modes[t], |
|
true, // persistent |
|
base::Bind(&LibcurlHttpFetcher::CurlPerformOnce, |
|
base::Unretained(this))); |
|
|
|
static int io_counter = 0; |
|
io_counter++; |
|
if (io_counter % 50 == 0) { |
|
LOG(INFO) << "io_counter = " << io_counter; |
|
} |
|
} |
|
} |
|
|
|
// Set up a timeout callback for libcurl. |
|
if (timeout_id_ == MessageLoop::kTaskIdNull) { |
|
VLOG(1) << "Setting up timeout source: " << idle_seconds_ << " seconds."; |
|
timeout_id_ = MessageLoop::current()->PostDelayedTask( |
|
FROM_HERE, |
|
base::Bind(&LibcurlHttpFetcher::TimeoutCallback, |
|
base::Unretained(this)), |
|
TimeDelta::FromSeconds(idle_seconds_)); |
|
} |
|
} |
|
|
|
void LibcurlHttpFetcher::RetryTimeoutCallback() { |
|
retry_task_id_ = MessageLoop::kTaskIdNull; |
|
if (transfer_paused_) { |
|
restart_transfer_on_unpause_ = true; |
|
return; |
|
} |
|
ResumeTransfer(url_); |
|
CurlPerformOnce(); |
|
} |
|
|
|
void LibcurlHttpFetcher::TimeoutCallback() { |
|
// We always re-schedule the callback, even if we don't want to be called |
|
// anymore. We will remove the event source separately if we don't want to |
|
// be called back. |
|
timeout_id_ = MessageLoop::current()->PostDelayedTask( |
|
FROM_HERE, |
|
base::Bind(&LibcurlHttpFetcher::TimeoutCallback, base::Unretained(this)), |
|
TimeDelta::FromSeconds(idle_seconds_)); |
|
|
|
// CurlPerformOnce() may call CleanUp(), so we need to schedule our callback |
|
// first, since it could be canceled by this call. |
|
if (transfer_in_progress_) |
|
CurlPerformOnce(); |
|
} |
|
|
|
void LibcurlHttpFetcher::CleanUp() { |
|
MessageLoop::current()->CancelTask(retry_task_id_); |
|
retry_task_id_ = MessageLoop::kTaskIdNull; |
|
|
|
MessageLoop::current()->CancelTask(timeout_id_); |
|
timeout_id_ = MessageLoop::kTaskIdNull; |
|
|
|
for (size_t t = 0; t < arraysize(fd_task_maps_); ++t) { |
|
for (const auto& fd_taks_pair : fd_task_maps_[t]) { |
|
if (!MessageLoop::current()->CancelTask(fd_taks_pair.second)) { |
|
LOG(WARNING) << "Error canceling the watch task " |
|
<< fd_taks_pair.second << " for " |
|
<< (t ? "writing" : "reading") << " the fd " |
|
<< fd_taks_pair.first; |
|
} |
|
} |
|
fd_task_maps_[t].clear(); |
|
} |
|
|
|
if (curl_http_headers_) { |
|
curl_slist_free_all(curl_http_headers_); |
|
curl_http_headers_ = nullptr; |
|
} |
|
if (curl_handle_) { |
|
if (curl_multi_handle_) { |
|
CHECK_EQ(curl_multi_remove_handle(curl_multi_handle_, curl_handle_), |
|
CURLM_OK); |
|
} |
|
curl_easy_cleanup(curl_handle_); |
|
curl_handle_ = nullptr; |
|
} |
|
if (curl_multi_handle_) { |
|
CHECK_EQ(curl_multi_cleanup(curl_multi_handle_), CURLM_OK); |
|
curl_multi_handle_ = nullptr; |
|
} |
|
transfer_in_progress_ = false; |
|
transfer_paused_ = false; |
|
restart_transfer_on_unpause_ = false; |
|
} |
|
|
|
void LibcurlHttpFetcher::GetHttpResponseCode() { |
|
long http_response_code = 0; // NOLINT(runtime/int) - curl needs long. |
|
if (base::StartsWith(url_, "file://", base::CompareCase::INSENSITIVE_ASCII)) { |
|
// Fake out a valid response code for file:// URLs. |
|
http_response_code_ = 299; |
|
} else if (curl_easy_getinfo(curl_handle_, |
|
CURLINFO_RESPONSE_CODE, |
|
&http_response_code) == CURLE_OK) { |
|
http_response_code_ = static_cast<int>(http_response_code); |
|
} |
|
} |
|
|
|
} // namespace chromeos_update_engine
|
|
|