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647 lines
21 KiB
647 lines
21 KiB
// |
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// Copyright (C) 2012 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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|
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// This file implements a simple HTTP server. It can exhibit odd behavior |
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// that's useful for testing. For example, it's useful to test that |
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// the updater can continue a connection if it's dropped, or that it |
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// handles very slow data transfers. |
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|
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// To use this, simply make an HTTP connection to localhost:port and |
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// GET a url. |
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#include <err.h> |
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#include <errno.h> |
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#include <fcntl.h> |
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#include <inttypes.h> |
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#include <netinet/in.h> |
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#include <signal.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <sys/socket.h> |
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#include <sys/stat.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 <vector> |
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#include <base/logging.h> |
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#include <base/posix/eintr_wrapper.h> |
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#include <base/strings/string_split.h> |
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#include <base/strings/string_util.h> |
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#include <base/strings/stringprintf.h> |
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#include "update_engine/common/http_common.h" |
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// HTTP end-of-line delimiter; sorry, this needs to be a macro. |
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#define EOL "\r\n" |
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using std::string; |
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using std::vector; |
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namespace chromeos_update_engine { |
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static const char* kListeningMsgPrefix = "listening on port "; |
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enum { |
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RC_OK = 0, |
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RC_BAD_ARGS, |
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RC_ERR_READ, |
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RC_ERR_SETSOCKOPT, |
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RC_ERR_BIND, |
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RC_ERR_LISTEN, |
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RC_ERR_GETSOCKNAME, |
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RC_ERR_REPORT, |
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}; |
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struct HttpRequest { |
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string raw_headers; |
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string host; |
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string url; |
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off_t start_offset{0}; |
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off_t end_offset{0}; // non-inclusive, zero indicates unspecified. |
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HttpResponseCode return_code{kHttpResponseOk}; |
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}; |
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bool ParseRequest(int fd, HttpRequest* request) { |
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string headers; |
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do { |
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char buf[1024]; |
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ssize_t r = read(fd, buf, sizeof(buf)); |
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if (r < 0) { |
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perror("read"); |
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exit(RC_ERR_READ); |
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} |
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headers.append(buf, r); |
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} while (!base::EndsWith(headers, EOL EOL, base::CompareCase::SENSITIVE)); |
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LOG(INFO) << "got headers:\n--8<------8<------8<------8<----\n" |
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<< headers |
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<< "\n--8<------8<------8<------8<----"; |
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request->raw_headers = headers; |
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|
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// Break header into lines. |
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vector<string> lines; |
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base::SplitStringUsingSubstr( |
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headers.substr(0, headers.length() - strlen(EOL EOL)), EOL, &lines); |
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// Decode URL line. |
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vector<string> terms = base::SplitString(lines[0], base::kWhitespaceASCII, |
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base::KEEP_WHITESPACE, |
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base::SPLIT_WANT_NONEMPTY); |
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CHECK_EQ(terms.size(), static_cast<vector<string>::size_type>(3)); |
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CHECK_EQ(terms[0], "GET"); |
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request->url = terms[1]; |
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LOG(INFO) << "URL: " << request->url; |
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|
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// Decode remaining lines. |
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size_t i; |
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for (i = 1; i < lines.size(); i++) { |
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terms = base::SplitString(lines[i], base::kWhitespaceASCII, |
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base::KEEP_WHITESPACE, base::SPLIT_WANT_NONEMPTY); |
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if (terms[0] == "Range:") { |
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CHECK_EQ(terms.size(), static_cast<vector<string>::size_type>(2)); |
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string &range = terms[1]; |
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LOG(INFO) << "range attribute: " << range; |
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CHECK(base::StartsWith(range, "bytes=", base::CompareCase::SENSITIVE) && |
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range.find('-') != string::npos); |
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request->start_offset = atoll(range.c_str() + strlen("bytes=")); |
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// Decode end offset and increment it by one (so it is non-inclusive). |
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if (range.find('-') < range.length() - 1) |
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request->end_offset = atoll(range.c_str() + range.find('-') + 1) + 1; |
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request->return_code = kHttpResponsePartialContent; |
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string tmp_str = base::StringPrintf("decoded range offsets: " |
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"start=%jd end=", |
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(intmax_t)request->start_offset); |
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if (request->end_offset > 0) |
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base::StringAppendF(&tmp_str, "%jd (non-inclusive)", |
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(intmax_t)request->end_offset); |
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else |
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base::StringAppendF(&tmp_str, "unspecified"); |
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LOG(INFO) << tmp_str; |
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} else if (terms[0] == "Host:") { |
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CHECK_EQ(terms.size(), static_cast<vector<string>::size_type>(2)); |
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request->host = terms[1]; |
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LOG(INFO) << "host attribute: " << request->host; |
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} else { |
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LOG(WARNING) << "ignoring HTTP attribute: `" << lines[i] << "'"; |
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} |
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} |
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return true; |
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} |
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string Itoa(off_t num) { |
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char buf[100] = {0}; |
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snprintf(buf, sizeof(buf), "%" PRIi64, num); |
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return buf; |
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} |
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// Writes a string into a file. Returns total number of bytes written or -1 if a |
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// write error occurred. |
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ssize_t WriteString(int fd, const string& str) { |
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const size_t total_size = str.size(); |
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size_t remaining_size = total_size; |
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char const *data = str.data(); |
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while (remaining_size) { |
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ssize_t written = write(fd, data, remaining_size); |
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if (written < 0) { |
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perror("write"); |
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LOG(INFO) << "write failed"; |
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return -1; |
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} |
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data += written; |
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remaining_size -= written; |
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} |
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return total_size; |
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} |
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// Writes the headers of an HTTP response into a file. |
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ssize_t WriteHeaders(int fd, const off_t start_offset, const off_t end_offset, |
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HttpResponseCode return_code) { |
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ssize_t written = 0, ret; |
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ret = WriteString(fd, |
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string("HTTP/1.1 ") + Itoa(return_code) + " " + |
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GetHttpResponseDescription(return_code) + |
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EOL |
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"Content-Type: application/octet-stream" EOL); |
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if (ret < 0) |
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return -1; |
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written += ret; |
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// Compute content legnth. |
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const off_t content_length = end_offset - start_offset;; |
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// A start offset that equals the end offset indicates that the response |
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// should contain the full range of bytes in the requested resource. |
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if (start_offset || start_offset == end_offset) { |
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ret = WriteString(fd, |
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string("Accept-Ranges: bytes" EOL |
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"Content-Range: bytes ") + |
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Itoa(start_offset == end_offset ? 0 : start_offset) + |
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"-" + Itoa(end_offset - 1) + "/" + Itoa(end_offset) + |
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EOL); |
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if (ret < 0) |
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return -1; |
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written += ret; |
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} |
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ret = WriteString(fd, string("Content-Length: ") + Itoa(content_length) + |
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EOL EOL); |
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if (ret < 0) |
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return -1; |
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written += ret; |
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return written; |
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} |
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// Writes a predetermined payload of lines of ascending bytes to a file. The |
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// first byte of output is appropriately offset with respect to the request line |
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// length. Returns the number of successfully written bytes. |
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size_t WritePayload(int fd, const off_t start_offset, const off_t end_offset, |
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const char first_byte, const size_t line_len) { |
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CHECK_LE(start_offset, end_offset); |
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CHECK_GT(line_len, static_cast<size_t>(0)); |
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LOG(INFO) << "writing payload: " << line_len << "-byte lines starting with `" |
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<< first_byte << "', offset range " << start_offset << " -> " |
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<< end_offset; |
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// Populate line of ascending characters. |
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string line; |
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line.reserve(line_len); |
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char byte = first_byte; |
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size_t i; |
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for (i = 0; i < line_len; i++) |
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line += byte++; |
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const size_t total_len = end_offset - start_offset; |
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size_t remaining_len = total_len; |
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bool success = true; |
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// If start offset is not aligned with line boundary, output partial line up |
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// to the first line boundary. |
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size_t start_modulo = start_offset % line_len; |
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if (start_modulo) { |
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string partial = line.substr(start_modulo, remaining_len); |
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ssize_t ret = WriteString(fd, partial); |
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if ((success = (ret >= 0 && (size_t) ret == partial.length()))) |
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remaining_len -= partial.length(); |
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} |
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// Output full lines up to the maximal line boundary below the end offset. |
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while (success && remaining_len >= line_len) { |
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ssize_t ret = WriteString(fd, line); |
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if ((success = (ret >= 0 && (size_t) ret == line_len))) |
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remaining_len -= line_len; |
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} |
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// Output a partial line up to the end offset. |
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if (success && remaining_len) { |
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string partial = line.substr(0, remaining_len); |
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ssize_t ret = WriteString(fd, partial); |
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if ((success = (ret >= 0 && (size_t) ret == partial.length()))) |
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remaining_len -= partial.length(); |
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} |
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return (total_len - remaining_len); |
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} |
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// Write default payload lines of the form 'abcdefghij'. |
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inline size_t WritePayload(int fd, const off_t start_offset, |
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const off_t end_offset) { |
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return WritePayload(fd, start_offset, end_offset, 'a', 10); |
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} |
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// Send an empty response, then kill the server. |
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void HandleQuit(int fd) { |
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WriteHeaders(fd, 0, 0, kHttpResponseOk); |
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LOG(INFO) << "pid(" << getpid() << "): HTTP server exiting ..."; |
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exit(RC_OK); |
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} |
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// Generates an HTTP response with payload corresponding to requested offsets |
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// and length. Optionally, truncate the payload at a given length and add a |
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// pause midway through the transfer. Returns the total number of bytes |
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// delivered or -1 for error. |
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ssize_t HandleGet(int fd, const HttpRequest& request, const size_t total_length, |
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const size_t truncate_length, const int sleep_every, |
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const int sleep_secs) { |
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ssize_t ret; |
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size_t written = 0; |
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// Obtain start offset, make sure it is within total payload length. |
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const size_t start_offset = request.start_offset; |
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if (start_offset >= total_length) { |
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LOG(WARNING) << "start offset (" << start_offset |
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<< ") exceeds total length (" << total_length |
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<< "), generating error response (" |
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<< kHttpResponseReqRangeNotSat << ")"; |
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return WriteHeaders(fd, total_length, total_length, |
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kHttpResponseReqRangeNotSat); |
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} |
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// Obtain end offset, adjust to fit in total payload length and ensure it does |
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// not preceded the start offset. |
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size_t end_offset = (request.end_offset > 0 ? |
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request.end_offset : total_length); |
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if (end_offset < start_offset) { |
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LOG(WARNING) << "end offset (" << end_offset << ") precedes start offset (" |
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<< start_offset << "), generating error response"; |
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return WriteHeaders(fd, 0, 0, kHttpResponseBadRequest); |
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} |
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if (end_offset > total_length) { |
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LOG(INFO) << "requested end offset (" << end_offset |
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<< ") exceeds total length (" << total_length << "), adjusting"; |
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end_offset = total_length; |
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} |
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// Generate headers |
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LOG(INFO) << "generating response header: range=" << start_offset << "-" |
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<< (end_offset - 1) << "/" << (end_offset - start_offset) |
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<< ", return code=" << request.return_code; |
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if ((ret = WriteHeaders(fd, start_offset, end_offset, |
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request.return_code)) < 0) |
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return -1; |
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LOG(INFO) << ret << " header bytes written"; |
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written += ret; |
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|
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// Compute payload length, truncate as necessary. |
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size_t payload_length = end_offset - start_offset; |
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if (truncate_length > 0 && truncate_length < payload_length) { |
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LOG(INFO) << "truncating request payload length (" << payload_length |
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<< ") at " << truncate_length; |
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payload_length = truncate_length; |
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end_offset = start_offset + payload_length; |
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} |
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LOG(INFO) << "generating response payload: range=" << start_offset << "-" |
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<< (end_offset - 1) << "/" << (end_offset - start_offset); |
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|
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// Decide about optional midway delay. |
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if (truncate_length > 0 && sleep_every > 0 && sleep_secs >= 0 && |
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start_offset % (truncate_length * sleep_every) == 0) { |
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const off_t midway_offset = start_offset + payload_length / 2; |
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if ((ret = WritePayload(fd, start_offset, midway_offset)) < 0) |
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return -1; |
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LOG(INFO) << ret << " payload bytes written (first chunk)"; |
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written += ret; |
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LOG(INFO) << "sleeping for " << sleep_secs << " seconds..."; |
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sleep(sleep_secs); |
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if ((ret = WritePayload(fd, midway_offset, end_offset)) < 0) |
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return -1; |
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LOG(INFO) << ret << " payload bytes written (second chunk)"; |
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written += ret; |
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} else { |
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if ((ret = WritePayload(fd, start_offset, end_offset)) < 0) |
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return -1; |
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LOG(INFO) << ret << " payload bytes written"; |
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written += ret; |
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} |
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LOG(INFO) << "response generation complete, " << written |
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<< " total bytes written"; |
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return written; |
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} |
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ssize_t HandleGet(int fd, const HttpRequest& request, |
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const size_t total_length) { |
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return HandleGet(fd, request, total_length, 0, 0, 0); |
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} |
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// Handles /redirect/<code>/<url> requests by returning the specified |
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// redirect <code> with a location pointing to /<url>. |
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void HandleRedirect(int fd, const HttpRequest& request) { |
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LOG(INFO) << "Redirecting..."; |
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string url = request.url; |
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CHECK_EQ(static_cast<size_t>(0), url.find("/redirect/")); |
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url.erase(0, strlen("/redirect/")); |
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string::size_type url_start = url.find('/'); |
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CHECK_NE(url_start, string::npos); |
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HttpResponseCode code = StringToHttpResponseCode(url.c_str()); |
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url.erase(0, url_start); |
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url = "http://" + request.host + url; |
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const char *status = GetHttpResponseDescription(code); |
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if (!status) |
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CHECK(false) << "Unrecognized redirection code: " << code; |
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LOG(INFO) << "Code: " << code << " " << status; |
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LOG(INFO) << "New URL: " << url; |
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ssize_t ret; |
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if ((ret = WriteString(fd, "HTTP/1.1 " + Itoa(code) + " " + |
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status + EOL)) < 0) |
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return; |
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WriteString(fd, "Location: " + url + EOL); |
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} |
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// Generate a page not found error response with actual text payload. Return |
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// number of bytes written or -1 for error. |
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ssize_t HandleError(int fd, const HttpRequest& request) { |
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LOG(INFO) << "Generating error HTTP response"; |
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ssize_t ret; |
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size_t written = 0; |
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const string data("This is an error page."); |
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if ((ret = WriteHeaders(fd, 0, data.size(), kHttpResponseNotFound)) < 0) |
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return -1; |
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written += ret; |
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if ((ret = WriteString(fd, data)) < 0) |
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return -1; |
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written += ret; |
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return written; |
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} |
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// Generate an error response if the requested offset is nonzero, up to a given |
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// maximal number of successive failures. The error generated is an "Internal |
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// Server Error" (500). |
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ssize_t HandleErrorIfOffset(int fd, const HttpRequest& request, |
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size_t end_offset, int max_fails) { |
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static int num_fails = 0; |
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if (request.start_offset > 0 && num_fails < max_fails) { |
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LOG(INFO) << "Generating error HTTP response"; |
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ssize_t ret; |
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size_t written = 0; |
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const string data("This is an error page."); |
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if ((ret = WriteHeaders(fd, 0, data.size(), |
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kHttpResponseInternalServerError)) < 0) |
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return -1; |
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written += ret; |
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if ((ret = WriteString(fd, data)) < 0) |
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return -1; |
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written += ret; |
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num_fails++; |
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return written; |
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} else { |
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num_fails = 0; |
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return HandleGet(fd, request, end_offset); |
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} |
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} |
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// Returns a valid response echoing in the body of the response all the headers |
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// sent by the client. |
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void HandleEchoHeaders(int fd, const HttpRequest& request) { |
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WriteHeaders(fd, 0, request.raw_headers.size(), kHttpResponseOk); |
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WriteString(fd, request.raw_headers); |
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} |
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void HandleHang(int fd) { |
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LOG(INFO) << "Hanging until the other side of the connection is closed."; |
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char c; |
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while (HANDLE_EINTR(read(fd, &c, 1)) > 0) {} |
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} |
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void HandleDefault(int fd, const HttpRequest& request) { |
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const off_t start_offset = request.start_offset; |
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const string data("unhandled path"); |
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const size_t size = data.size(); |
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ssize_t ret; |
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|
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if ((ret = WriteHeaders(fd, start_offset, size, request.return_code)) < 0) |
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return; |
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WriteString(fd, (start_offset < static_cast<off_t>(size) ? |
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data.substr(start_offset) : "")); |
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} |
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// Break a URL into terms delimited by slashes. |
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class UrlTerms { |
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public: |
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UrlTerms(const string &url, size_t num_terms) { |
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// URL must be non-empty and start with a slash. |
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CHECK_GT(url.size(), static_cast<size_t>(0)); |
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CHECK_EQ(url[0], '/'); |
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|
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// Split it into terms delimited by slashes, omitting the preceding slash. |
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terms = base::SplitString(url.substr(1), "/", base::KEEP_WHITESPACE, |
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base::SPLIT_WANT_ALL); |
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|
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// Ensure expected length. |
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CHECK_EQ(terms.size(), num_terms); |
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} |
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|
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inline string Get(const off_t index) const { |
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return terms[index]; |
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} |
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inline const char *GetCStr(const off_t index) const { |
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return Get(index).c_str(); |
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} |
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inline int GetInt(const off_t index) const { |
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return atoi(GetCStr(index)); |
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} |
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inline size_t GetSizeT(const off_t index) const { |
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return static_cast<size_t>(atol(GetCStr(index))); |
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} |
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private: |
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vector<string> terms; |
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}; |
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void HandleConnection(int fd) { |
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HttpRequest request; |
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ParseRequest(fd, &request); |
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|
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string &url = request.url; |
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LOG(INFO) << "pid(" << getpid() << "): handling url " << url; |
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if (url == "/quitquitquit") { |
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HandleQuit(fd); |
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} else if (base::StartsWith( |
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url, "/download/", base::CompareCase::SENSITIVE)) { |
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const UrlTerms terms(url, 2); |
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HandleGet(fd, request, terms.GetSizeT(1)); |
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} else if (base::StartsWith(url, "/flaky/", base::CompareCase::SENSITIVE)) { |
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const UrlTerms terms(url, 5); |
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HandleGet(fd, request, terms.GetSizeT(1), terms.GetSizeT(2), |
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terms.GetInt(3), terms.GetInt(4)); |
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} else if (url.find("/redirect/") == 0) { |
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HandleRedirect(fd, request); |
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} else if (url == "/error") { |
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HandleError(fd, request); |
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} else if (base::StartsWith(url, "/error-if-offset/", |
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base::CompareCase::SENSITIVE)) { |
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const UrlTerms terms(url, 3); |
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HandleErrorIfOffset(fd, request, terms.GetSizeT(1), terms.GetInt(2)); |
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} else if (url == "/echo-headers") { |
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HandleEchoHeaders(fd, request); |
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} else if (url == "/hang") { |
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HandleHang(fd); |
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} else { |
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HandleDefault(fd, request); |
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} |
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|
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close(fd); |
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} |
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} // namespace chromeos_update_engine |
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using namespace chromeos_update_engine; // NOLINT(build/namespaces) |
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void usage(const char *prog_arg) { |
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fprintf( |
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stderr, |
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"Usage: %s [ FILE ]\n" |
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"Once accepting connections, the following is written to FILE (or " |
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"stdout):\n" |
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"\"%sN\" (where N is an integer port number)\n", |
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basename(prog_arg), kListeningMsgPrefix); |
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} |
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int main(int argc, char** argv) { |
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// Check invocation. |
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if (argc > 2) |
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errx(RC_BAD_ARGS, "unexpected number of arguments (use -h for usage)"); |
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// Parse (optional) argument. |
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int report_fd = STDOUT_FILENO; |
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if (argc == 2) { |
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if (!strcmp(argv[1], "-h")) { |
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usage(argv[0]); |
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exit(RC_OK); |
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} |
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report_fd = open(argv[1], O_WRONLY | O_CREAT, 00644); |
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} |
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// Ignore SIGPIPE on write() to sockets. |
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signal(SIGPIPE, SIG_IGN); |
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int listen_fd = socket(AF_INET, SOCK_STREAM, 0); |
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if (listen_fd < 0) |
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LOG(FATAL) << "socket() failed"; |
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struct sockaddr_in server_addr = sockaddr_in(); |
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server_addr.sin_family = AF_INET; |
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server_addr.sin_addr.s_addr = INADDR_ANY; |
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server_addr.sin_port = 0; |
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{ |
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// Get rid of "Address in use" error |
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int tr = 1; |
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if (setsockopt(listen_fd, SOL_SOCKET, SO_REUSEADDR, &tr, |
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sizeof(int)) == -1) { |
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perror("setsockopt"); |
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exit(RC_ERR_SETSOCKOPT); |
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} |
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} |
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// Bind the socket and set for listening. |
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if (bind(listen_fd, reinterpret_cast<struct sockaddr *>(&server_addr), |
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sizeof(server_addr)) < 0) { |
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perror("bind"); |
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exit(RC_ERR_BIND); |
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} |
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if (listen(listen_fd, 5) < 0) { |
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perror("listen"); |
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exit(RC_ERR_LISTEN); |
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} |
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// Check the actual port. |
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struct sockaddr_in bound_addr = sockaddr_in(); |
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socklen_t bound_addr_len = sizeof(bound_addr); |
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if (getsockname(listen_fd, reinterpret_cast<struct sockaddr*>(&bound_addr), |
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&bound_addr_len) < 0) { |
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perror("getsockname"); |
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exit(RC_ERR_GETSOCKNAME); |
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} |
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in_port_t port = ntohs(bound_addr.sin_port); |
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// Output the listening port, indicating that the server is processing |
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// requests. IMPORTANT! (a) the format of this message is as expected by some |
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// unit tests, avoid unilateral changes; (b) it is necessary to flush/sync the |
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// file to prevent the spawning process from waiting indefinitely for this |
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// message. |
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string listening_msg = base::StringPrintf("%s%hu", kListeningMsgPrefix, port); |
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LOG(INFO) << listening_msg; |
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CHECK_EQ(write(report_fd, listening_msg.c_str(), listening_msg.length()), |
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static_cast<int>(listening_msg.length())); |
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CHECK_EQ(write(report_fd, "\n", 1), 1); |
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if (report_fd == STDOUT_FILENO) |
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fsync(report_fd); |
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else |
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close(report_fd); |
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while (1) { |
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LOG(INFO) << "pid(" << getpid() << "): waiting to accept new connection"; |
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int client_fd = accept(listen_fd, nullptr, nullptr); |
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LOG(INFO) << "got past accept"; |
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if (client_fd < 0) |
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LOG(FATAL) << "ERROR on accept"; |
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HandleConnection(client_fd); |
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} |
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return 0; |
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}
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