mirror of
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This way we can save some calculations, but more importantly this will also be needed in next commits. :P
426 lines
18 KiB
C++
426 lines
18 KiB
C++
/*
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* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Debug.h>
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#include <LibCompress/Gzip.h>
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#include <LibCompress/Zlib.h>
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#include <LibCore/Event.h>
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#include <LibCore/TCPSocket.h>
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#include <LibHTTP/HttpResponse.h>
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#include <LibHTTP/Job.h>
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#include <stdio.h>
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#include <unistd.h>
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namespace HTTP {
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static Optional<ByteBuffer> handle_content_encoding(const ByteBuffer& buf, const String& content_encoding)
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{
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dbgln_if(JOB_DEBUG, "Job::handle_content_encoding: buf has content_encoding={}", content_encoding);
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if (content_encoding == "gzip") {
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if (!Compress::GzipDecompressor::is_likely_compressed(buf)) {
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dbgln("Job::handle_content_encoding: buf is not gzip compressed!");
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}
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dbgln_if(JOB_DEBUG, "Job::handle_content_encoding: buf is gzip compressed!");
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auto uncompressed = Compress::GzipDecompressor::decompress_all(buf);
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if (!uncompressed.has_value()) {
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dbgln("Job::handle_content_encoding: Gzip::decompress() failed.");
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return {};
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}
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if constexpr (JOB_DEBUG) {
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dbgln("Job::handle_content_encoding: Gzip::decompress() successful.");
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dbgln(" Input size: {}", buf.size());
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dbgln(" Output size: {}", uncompressed.value().size());
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}
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return uncompressed.value();
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} else if (content_encoding == "deflate") {
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dbgln_if(JOB_DEBUG, "Job::handle_content_encoding: buf is deflate compressed!");
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// Even though the content encoding is "deflate", it's actually deflate with the zlib wrapper.
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// https://tools.ietf.org/html/rfc7230#section-4.2.2
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auto uncompressed = Compress::Zlib::decompress_all(buf);
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if (!uncompressed.has_value()) {
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// From the RFC:
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// "Note: Some non-conformant implementations send the "deflate"
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// compressed data without the zlib wrapper."
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dbgln_if(JOB_DEBUG, "Job::handle_content_encoding: Zlib::decompress_all() failed. Trying DeflateDecompressor::decompress_all()");
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uncompressed = Compress::DeflateDecompressor::decompress_all(buf);
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if (!uncompressed.has_value()) {
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dbgln("Job::handle_content_encoding: DeflateDecompressor::decompress_all() failed.");
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return {};
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}
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}
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if constexpr (JOB_DEBUG) {
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dbgln("Job::handle_content_encoding: Deflate decompression successful.");
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dbgln(" Input size: {}", buf.size());
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dbgln(" Output size: {}", uncompressed.value().size());
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}
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return uncompressed.value();
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}
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return buf;
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}
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Job::Job(const HttpRequest& request, OutputStream& output_stream)
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: Core::NetworkJob(output_stream)
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, m_request(request)
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{
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}
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Job::~Job()
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{
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}
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void Job::flush_received_buffers()
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{
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if (!m_can_stream_response || m_buffered_size == 0)
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return;
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dbgln_if(JOB_DEBUG, "Job: Flushing received buffers: have {} bytes in {} buffers for {}", m_buffered_size, m_received_buffers.size(), m_request.url());
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for (size_t i = 0; i < m_received_buffers.size(); ++i) {
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auto& payload = m_received_buffers[i];
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auto written = do_write(payload);
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m_buffered_size -= written;
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if (written == payload.size()) {
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// FIXME: Make this a take-first-friendly object?
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m_received_buffers.take_first();
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--i;
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continue;
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}
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VERIFY(written < payload.size());
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payload = payload.slice(written, payload.size() - written);
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break;
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}
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dbgln_if(JOB_DEBUG, "Job: Flushing received buffers done: have {} bytes in {} buffers for {}", m_buffered_size, m_received_buffers.size(), m_request.url());
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}
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void Job::on_socket_connected()
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{
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register_on_ready_to_write([&] {
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if (m_sent_data)
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return;
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m_sent_data = true;
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auto raw_request = m_request.to_raw_request();
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if constexpr (JOB_DEBUG) {
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dbgln("Job: raw_request:");
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dbgln("{}", String::copy(raw_request));
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}
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bool success = write(raw_request);
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if (!success)
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deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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});
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register_on_ready_to_read([&] {
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dbgln_if(JOB_DEBUG, "Ready to read for {}, state = {}, cancelled = {}", m_request.url(), to_underlying(m_state), is_cancelled());
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if (is_cancelled())
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return;
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if (m_state == State::Finished) {
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// We have everything we want, at this point, we can either get an EOF, or a bunch of extra newlines
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// (unless "Connection: close" isn't specified)
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// So just ignore everything after this.
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return;
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}
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if (eof())
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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if (m_state == State::InStatus) {
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if (!can_read_line()) {
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dbgln_if(JOB_DEBUG, "Job {} cannot read line", m_request.url());
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return;
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}
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auto line = read_line(PAGE_SIZE);
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dbgln_if(JOB_DEBUG, "Job {} read line of length {}", m_request.url(), line.length());
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if (line.is_null()) {
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dbgln("Job: Expected HTTP status");
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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}
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auto parts = line.split_view(' ');
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if (parts.size() < 3) {
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dbgln("Job: Expected 3-part HTTP status, got '{}'", line);
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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}
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auto code = parts[1].to_uint();
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if (!code.has_value()) {
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dbgln("Job: Expected numeric HTTP status");
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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}
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m_code = code.value();
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m_state = State::InHeaders;
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return;
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}
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if (m_state == State::InHeaders || m_state == State::Trailers) {
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if (!can_read_line())
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return;
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// There's no max limit defined on headers, but for our sanity, let's limit it to 32K.
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auto line = read_line(32 * KiB);
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if (line.is_null()) {
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if (m_state == State::Trailers) {
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// Some servers like to send two ending chunks
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// use this fact as an excuse to ignore anything after the last chunk
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// that is not a valid trailing header.
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return finish_up();
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}
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dbgln("Job: Expected HTTP header");
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return did_fail(Core::NetworkJob::Error::ProtocolFailed);
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}
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if (line.is_empty()) {
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if (m_state == State::Trailers) {
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return finish_up();
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} else {
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if (on_headers_received)
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on_headers_received(m_headers, m_code > 0 ? m_code : Optional<u32> {});
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m_state = State::InBody;
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}
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// We've reached the end of the headers, there's a possibility that the server
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// responds with nothing (content-length = 0 with normal encoding); if that's the case,
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// quit early as we won't be reading anything anyway.
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if (auto result = m_headers.get("Content-Length"sv).value_or(""sv).to_uint(); result.has_value()) {
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if (result.value() == 0 && !m_headers.get("Transfer-Encoding"sv).value_or(""sv).view().trim_whitespace().equals_ignoring_case("chunked"sv))
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return finish_up();
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}
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return;
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}
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auto parts = line.split_view(':');
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if (parts.is_empty()) {
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if (m_state == State::Trailers) {
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// Some servers like to send two ending chunks
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// use this fact as an excuse to ignore anything after the last chunk
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// that is not a valid trailing header.
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return finish_up();
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}
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dbgln("Job: Expected HTTP header with key/value");
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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}
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auto name = parts[0];
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if (line.length() < name.length() + 2) {
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if (m_state == State::Trailers) {
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// Some servers like to send two ending chunks
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// use this fact as an excuse to ignore anything after the last chunk
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// that is not a valid trailing header.
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return finish_up();
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}
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dbgln("Job: Malformed HTTP header: '{}' ({})", line, line.length());
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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}
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auto value = line.substring(name.length() + 2, line.length() - name.length() - 2);
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m_headers.set(name, value);
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if (name.equals_ignoring_case("Content-Encoding")) {
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// Assume that any content-encoding means that we can't decode it as a stream :(
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dbgln_if(JOB_DEBUG, "Content-Encoding {} detected, cannot stream output :(", value);
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m_can_stream_response = false;
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} else if (name.equals_ignoring_case("Content-Length")) {
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auto length = value.to_uint();
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if (length.has_value())
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m_content_length = length.value();
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}
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dbgln_if(JOB_DEBUG, "Job: [{}] = '{}'", name, value);
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return;
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}
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VERIFY(m_state == State::InBody);
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VERIFY(can_read());
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read_while_data_available([&] {
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auto read_size = 64 * KiB;
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if (m_current_chunk_remaining_size.has_value()) {
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read_chunk_size:;
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auto remaining = m_current_chunk_remaining_size.value();
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if (remaining == -1) {
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// read size
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auto size_data = read_line(PAGE_SIZE);
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if (m_should_read_chunk_ending_line) {
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VERIFY(size_data.is_empty());
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m_should_read_chunk_ending_line = false;
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return IterationDecision::Continue;
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}
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auto size_lines = size_data.view().lines();
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dbgln_if(JOB_DEBUG, "Job: Received a chunk with size '{}'", size_data);
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if (size_lines.size() == 0) {
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if (!eof())
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return AK::IterationDecision::Break;
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dbgln("Job: Reached end of stream");
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finish_up();
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return IterationDecision::Break;
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} else {
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auto chunk = size_lines[0].split_view(';', true);
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String size_string = chunk[0];
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char* endptr;
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auto size = strtoul(size_string.characters(), &endptr, 16);
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if (*endptr) {
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// invalid number
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deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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return IterationDecision::Break;
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}
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if (size == 0) {
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// This is the last chunk
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// '0' *[; chunk-ext-name = chunk-ext-value]
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// We're going to ignore _all_ chunk extensions
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read_size = 0;
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m_current_chunk_total_size = 0;
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m_current_chunk_remaining_size = 0;
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dbgln_if(JOB_DEBUG, "Job: Received the last chunk with extensions '{}'", size_string.substring_view(1, size_string.length() - 1));
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} else {
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m_current_chunk_total_size = size;
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m_current_chunk_remaining_size = size;
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read_size = size;
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dbgln_if(JOB_DEBUG, "Job: Chunk of size '{}' started", size);
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}
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}
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} else {
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read_size = remaining;
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dbgln_if(JOB_DEBUG, "Job: Resuming chunk with '{}' bytes left over", remaining);
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}
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} else {
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auto transfer_encoding = m_headers.get("Transfer-Encoding");
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if (transfer_encoding.has_value()) {
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// Note: Some servers add extra spaces around 'chunked', see #6302.
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auto encoding = transfer_encoding.value().trim_whitespace();
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dbgln_if(JOB_DEBUG, "Job: This content has transfer encoding '{}'", encoding);
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if (encoding.equals_ignoring_case("chunked")) {
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m_current_chunk_remaining_size = -1;
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goto read_chunk_size;
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} else {
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dbgln("Job: Unknown transfer encoding '{}', the result will likely be wrong!", encoding);
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}
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}
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}
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dbgln_if(JOB_DEBUG, "Waiting for payload for {}", m_request.url());
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auto payload = receive(read_size);
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dbgln_if(JOB_DEBUG, "Received {} bytes of payload from {}", payload.size(), m_request.url());
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if (payload.is_empty()) {
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if (eof()) {
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finish_up();
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return IterationDecision::Break;
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}
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if (should_fail_on_empty_payload()) {
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deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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return IterationDecision::Break;
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}
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}
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m_received_buffers.append(payload);
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m_buffered_size += payload.size();
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m_received_size += payload.size();
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flush_received_buffers();
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if (m_current_chunk_remaining_size.has_value()) {
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auto size = m_current_chunk_remaining_size.value() - payload.size();
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dbgln_if(JOB_DEBUG, "Job: We have {} bytes left over in this chunk", size);
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if (size == 0) {
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dbgln_if(JOB_DEBUG, "Job: Finished a chunk of {} bytes", m_current_chunk_total_size.value());
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if (m_current_chunk_total_size.value() == 0) {
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m_state = State::Trailers;
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return IterationDecision::Break;
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}
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// we've read everything, now let's get the next chunk
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size = -1;
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if (can_read_line()) {
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auto line = read_line(PAGE_SIZE);
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VERIFY(line.is_empty());
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} else {
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m_should_read_chunk_ending_line = true;
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}
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}
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m_current_chunk_remaining_size = size;
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}
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deferred_invoke([this] { did_progress(m_content_length, m_received_size); });
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if (m_content_length.has_value()) {
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auto length = m_content_length.value();
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if (m_received_size >= length) {
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m_received_size = length;
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finish_up();
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return IterationDecision::Break;
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}
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}
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return IterationDecision::Continue;
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});
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if (!is_established()) {
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dbgln_if(JOB_DEBUG, "Connection appears to have closed, finishing up");
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finish_up();
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}
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});
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}
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void Job::timer_event(Core::TimerEvent& event)
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{
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event.accept();
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finish_up();
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if (m_buffered_size == 0)
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stop_timer();
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}
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void Job::finish_up()
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{
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VERIFY(!m_has_scheduled_finish);
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m_state = State::Finished;
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if (!m_can_stream_response) {
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auto flattened_buffer = ByteBuffer::create_uninitialized(m_buffered_size).release_value(); // FIXME: Handle possible OOM situation.
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u8* flat_ptr = flattened_buffer.data();
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for (auto& received_buffer : m_received_buffers) {
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memcpy(flat_ptr, received_buffer.data(), received_buffer.size());
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flat_ptr += received_buffer.size();
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}
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m_received_buffers.clear();
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// For the time being, we cannot stream stuff with content-encoding set to _anything_.
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// FIXME: LibCompress exposes a streaming interface, so this can be resolved
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auto content_encoding = m_headers.get("Content-Encoding");
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if (content_encoding.has_value()) {
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if (auto result = handle_content_encoding(flattened_buffer, content_encoding.value()); result.has_value())
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flattened_buffer = result.release_value();
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else
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return did_fail(Core::NetworkJob::Error::TransmissionFailed);
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}
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m_buffered_size = flattened_buffer.size();
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m_received_buffers.append(move(flattened_buffer));
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m_can_stream_response = true;
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}
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flush_received_buffers();
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if (m_buffered_size != 0) {
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// We have to wait for the client to consume all the downloaded data
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// before we can actually call `did_finish`. in a normal flow, this should
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// never be hit since the client is reading as we are writing, unless there
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// are too many concurrent downloads going on.
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dbgln_if(JOB_DEBUG, "Flush finished with {} bytes remaining, will try again later", m_buffered_size);
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if (!has_timer())
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start_timer(50);
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return;
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}
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m_has_scheduled_finish = true;
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auto response = HttpResponse::create(m_code, move(m_headers));
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deferred_invoke([this, response = move(response)] {
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// If the server responded with "Connection: close", close the connection
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// as the server may or may not want to close the socket.
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if (auto result = response->headers().get("Connection"sv); result.has_value() && result.value().equals_ignoring_case("close"sv))
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shutdown(ShutdownMode::CloseSocket);
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did_finish(response);
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});
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}
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}
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