mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2024-11-22 23:50:19 +00:00
ff47223301
It used to take a plain `Socket` and cast it to a `BufferedSocketBase`, which can lead to unpleasant result when used with a non-buffered `Socket`.
640 lines
28 KiB
C++
640 lines
28 KiB
C++
/*
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* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
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* Copyright (c) 2022, the SerenityOS developers.
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/CharacterTypes.h>
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#include <AK/Debug.h>
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#include <AK/JsonObject.h>
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#include <AK/MemoryStream.h>
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#include <AK/Try.h>
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#include <LibCompress/Brotli.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 <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 ErrorOr<ByteBuffer> handle_content_encoding(ByteBuffer const& buf, DeprecatedString const& 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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// FIXME: Actually do the decompression of the data using streams, instead of all at once when everything has been
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// received. This will require that some of the decompression algorithms are implemented in a streaming way.
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// Gzip and Deflate are implemented using Stream, while Brotli uses the newer Core::Stream. The Gzip and
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// Deflate implementations will likely need to be changed to LibCore::Stream for this to work easily.
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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 = TRY(Compress::GzipDecompressor::decompress_all(buf));
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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.size());
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}
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return uncompressed;
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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::ZlibDecompressor::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: ZlibDecompressor::decompress_all() failed. Trying DeflateDecompressor::decompress_all()");
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uncompressed = TRY(Compress::DeflateDecompressor::decompress_all(buf));
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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.release_value();
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} else if (content_encoding == "br") {
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dbgln_if(JOB_DEBUG, "Job::handle_content_encoding: buf is brotli compressed!");
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FixedMemoryStream bufstream { buf };
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auto brotli_stream = Compress::BrotliDecompressionStream { bufstream };
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auto uncompressed = TRY(brotli_stream.read_until_eof());
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if constexpr (JOB_DEBUG) {
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dbgln("Job::handle_content_encoding: Brotli::decompress() successful.");
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dbgln(" Input size: {}", buf.size());
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dbgln(" Output size: {}", uncompressed.size());
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}
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return uncompressed;
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}
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return buf;
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}
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Job::Job(HttpRequest&& request, Stream& output_stream)
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: Core::NetworkJob(output_stream)
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, m_request(move(request))
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{
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}
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void Job::start(Core::BufferedSocketBase& socket)
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{
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VERIFY(!m_socket);
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m_socket = &socket;
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dbgln_if(HTTPJOB_DEBUG, "Reusing previous connection for {}", url());
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deferred_invoke([this] {
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dbgln_if(HTTPJOB_DEBUG, "HttpJob: on_connected callback");
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on_socket_connected();
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});
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}
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void Job::shutdown(ShutdownMode mode)
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{
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if (!m_socket)
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return;
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if (mode == ShutdownMode::CloseSocket) {
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m_socket->close();
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m_socket->on_ready_to_read = nullptr;
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} else {
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m_socket->on_ready_to_read = nullptr;
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m_socket = nullptr;
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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]->pending_flush;
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auto result = do_write(payload);
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if (result.is_error()) {
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if (!result.error().is_errno()) {
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dbgln_if(JOB_DEBUG, "Job: Failed to flush received buffers: {}", result.error());
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continue;
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}
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if (result.error().code() == EINTR) {
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i--;
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continue;
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}
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break;
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}
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auto written = result.release_value();
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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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(void)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::register_on_ready_to_read(Function<void()> callback)
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{
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m_socket->on_ready_to_read = [this, callback = move(callback)] {
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callback();
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// As `m_socket` is a buffered object, we might not get notifications for data in the buffer
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// so exhaust the buffer to ensure we don't end up waiting forever.
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auto can_read_without_blocking = m_socket->can_read_without_blocking();
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if (can_read_without_blocking.is_error())
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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if (can_read_without_blocking.value() && m_state != State::Finished && !has_error()) {
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deferred_invoke([this] {
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if (m_socket && m_socket->on_ready_to_read)
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m_socket->on_ready_to_read();
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});
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}
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};
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}
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ErrorOr<DeprecatedString> Job::read_line(size_t size)
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{
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auto buffer = TRY(ByteBuffer::create_uninitialized(size));
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auto bytes_read = TRY(m_socket->read_until(buffer, "\r\n"sv));
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return DeprecatedString::copy(bytes_read);
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}
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ErrorOr<ByteBuffer> Job::receive(size_t size)
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{
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if (size == 0)
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return ByteBuffer {};
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auto buffer = TRY(ByteBuffer::create_uninitialized(size));
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size_t nread;
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do {
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auto result = m_socket->read_some(buffer);
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if (result.is_error() && result.error().is_errno() && result.error().code() == EINTR)
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continue;
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nread = TRY(result).size();
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break;
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} while (true);
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return buffer.slice(0, nread);
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}
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void Job::on_socket_connected()
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{
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auto raw_request = m_request.to_raw_request().release_value_but_fixme_should_propagate_errors();
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if constexpr (JOB_DEBUG) {
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dbgln("Job: raw_request:");
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dbgln("{}", DeprecatedString::copy(raw_request));
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}
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bool success = !m_socket->write_until_depleted(raw_request).is_error();
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if (!success)
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deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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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 (m_socket->is_eof()) {
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dbgln_if(JOB_DEBUG, "Read failure: Actually EOF!");
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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}
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while (m_state == State::InStatus) {
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auto can_read_line = m_socket->can_read_line();
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if (can_read_line.is_error()) {
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dbgln_if(JOB_DEBUG, "Job {} could not figure out whether we could read a line", m_request.url());
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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}
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if (!can_read_line.value()) {
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dbgln_if(JOB_DEBUG, "Job {} cannot read a full line", m_request.url());
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// TODO: Should we retry here instead of failing instantly?
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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}
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auto maybe_line = read_line(PAGE_SIZE);
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if (maybe_line.is_error()) {
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dbgln_if(JOB_DEBUG, "Job {} could not read line: {}", m_request.url(), maybe_line.error());
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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}
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auto line = maybe_line.release_value();
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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() < 2) {
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dbgln("Job: Expected 2-part or 3-part HTTP status line, got '{}'", line);
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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}
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if (!parts[0].matches("HTTP/?.?"sv, CaseSensitivity::CaseSensitive) || !is_ascii_digit(parts[0][5]) || !is_ascii_digit(parts[0][7])) {
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dbgln("Job: Expected HTTP-Version to be of the form 'HTTP/X.Y', got '{}'", parts[0]);
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::ProtocolFailed); });
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}
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auto http_major_version = parse_ascii_digit(parts[0][5]);
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auto http_minor_version = parse_ascii_digit(parts[0][7]);
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m_legacy_connection = http_major_version < 1 || (http_major_version == 1 && http_minor_version == 0);
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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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auto can_read_without_blocking = m_socket->can_read_without_blocking();
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if (can_read_without_blocking.is_error())
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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if (!can_read_without_blocking.value())
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return;
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}
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while (m_state == State::InHeaders || m_state == State::Trailers) {
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auto can_read_line = m_socket->can_read_line();
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if (can_read_line.is_error()) {
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dbgln_if(JOB_DEBUG, "Job {} could not figure out whether we could read a line", m_request.url());
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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}
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if (!can_read_line.value()) {
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dbgln_if(JOB_DEBUG, "Can't read lines anymore :(");
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return;
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}
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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 maybe_line = read_line(32 * KiB);
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if (maybe_line.is_error()) {
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dbgln_if(JOB_DEBUG, "Job {} could not read a header line: {}", m_request.url(), maybe_line.error());
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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}
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auto line = maybe_line.release_value();
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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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}
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if (on_headers_received) {
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if (!m_set_cookie_headers.is_empty())
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m_headers.set("Set-Cookie", JsonArray { m_set_cookie_headers }.to_deprecated_string());
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on_headers_received(m_headers, m_code > 0 ? m_code : Optional<u32> {});
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}
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m_state = State::InBody;
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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_ascii_case("chunked"sv))
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return finish_up();
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}
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// There's also the possibility that the server responds with 204 (No Content),
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// and manages to set a Content-Length anyway, in such cases ignore Content-Length and quit early;
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// As the HTTP spec explicitly prohibits presence of Content-Length when the response code is 204.
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if (m_code == 204)
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return finish_up();
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break;
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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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if (name.equals_ignoring_ascii_case("Set-Cookie"sv)) {
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dbgln_if(JOB_DEBUG, "Job: Received Set-Cookie header: '{}'", value);
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m_set_cookie_headers.append(move(value));
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auto can_read_without_blocking = m_socket->can_read_without_blocking();
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if (can_read_without_blocking.is_error())
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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if (!can_read_without_blocking.value())
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return;
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} else if (auto existing_value = m_headers.get(name); existing_value.has_value()) {
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StringBuilder builder;
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builder.append(existing_value.value());
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builder.append(',');
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builder.append(value);
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m_headers.set(name, builder.to_deprecated_string());
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} else {
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m_headers.set(name, value);
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}
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if (name.equals_ignoring_ascii_case("Content-Encoding"sv)) {
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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_ascii_case("Content-Length"sv)) {
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auto length = value.to_uint<u64>();
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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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auto can_read_without_blocking = m_socket->can_read_without_blocking();
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if (can_read_without_blocking.is_error())
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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if (!can_read_without_blocking.value()) {
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dbgln_if(JOB_DEBUG, "Can't read headers anymore, byebye :(");
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return;
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}
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}
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VERIFY(m_state == State::InBody);
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while (true) {
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auto can_read_without_blocking = m_socket->can_read_without_blocking();
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if (can_read_without_blocking.is_error())
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return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
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if (!can_read_without_blocking.value())
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break;
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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 maybe_size_data = read_line(PAGE_SIZE);
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if (maybe_size_data.is_error()) {
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dbgln_if(JOB_DEBUG, "Job: Could not receive chunk: {}", maybe_size_data.error());
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}
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auto size_data = maybe_size_data.release_value();
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if (m_should_read_chunk_ending_line) {
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// NOTE: Some servers seem to send an extra \r\n here despite there being no size.
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// This makes us tolerate that.
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size_data = size_data.trim("\r\n"sv, TrimMode::Right);
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VERIFY(size_data.is_empty());
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m_should_read_chunk_ending_line = false;
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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 (!m_socket->is_eof())
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break;
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dbgln("Job: Reached end of stream");
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finish_up();
|
|
break;
|
|
} else {
|
|
auto chunk = size_lines[0].split_view(';', SplitBehavior::KeepEmpty);
|
|
DeprecatedString size_string = chunk[0];
|
|
char* endptr;
|
|
auto size = strtoul(size_string.characters(), &endptr, 16);
|
|
if (*endptr) {
|
|
// invalid number
|
|
deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
|
|
break;
|
|
}
|
|
if (size == 0) {
|
|
// This is the last chunk
|
|
// '0' *[; chunk-ext-name = chunk-ext-value]
|
|
// We're going to ignore _all_ chunk extensions
|
|
read_size = 0;
|
|
m_current_chunk_total_size = 0;
|
|
m_current_chunk_remaining_size = 0;
|
|
|
|
dbgln_if(JOB_DEBUG, "Job: Received the last chunk with extensions '{}'", size_string.substring_view(1, size_string.length() - 1));
|
|
} else {
|
|
m_current_chunk_total_size = size;
|
|
m_current_chunk_remaining_size = size;
|
|
read_size = size;
|
|
|
|
dbgln_if(JOB_DEBUG, "Job: Chunk of size '{}' started", size);
|
|
}
|
|
}
|
|
} else {
|
|
read_size = remaining;
|
|
|
|
dbgln_if(JOB_DEBUG, "Job: Resuming chunk with '{}' bytes left over", remaining);
|
|
}
|
|
} else {
|
|
auto transfer_encoding = m_headers.get("Transfer-Encoding");
|
|
if (transfer_encoding.has_value()) {
|
|
// HTTP/1.1 3.3.3.3:
|
|
// If a message is received with both a Transfer-Encoding and a Content-Length header field, the Transfer-Encoding overrides the Content-Length. [...]
|
|
// https://httpwg.org/specs/rfc7230.html#message.body.length
|
|
m_content_length = {};
|
|
|
|
// Note: Some servers add extra spaces around 'chunked', see #6302.
|
|
auto encoding = transfer_encoding.value().trim_whitespace();
|
|
|
|
dbgln_if(JOB_DEBUG, "Job: This content has transfer encoding '{}'", encoding);
|
|
if (encoding.equals_ignoring_ascii_case("chunked"sv)) {
|
|
m_current_chunk_remaining_size = -1;
|
|
goto read_chunk_size;
|
|
} else {
|
|
dbgln("Job: Unknown transfer encoding '{}', the result will likely be wrong!", encoding);
|
|
}
|
|
}
|
|
}
|
|
|
|
can_read_without_blocking = m_socket->can_read_without_blocking();
|
|
if (can_read_without_blocking.is_error())
|
|
return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
|
|
if (!can_read_without_blocking.value())
|
|
break;
|
|
|
|
dbgln_if(JOB_DEBUG, "Waiting for payload for {}", m_request.url());
|
|
auto maybe_payload = receive(read_size);
|
|
if (maybe_payload.is_error()) {
|
|
dbgln_if(JOB_DEBUG, "Could not read the payload: {}", maybe_payload.error());
|
|
return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
|
|
}
|
|
|
|
auto payload = maybe_payload.release_value();
|
|
|
|
if (payload.is_empty() && m_socket->is_eof()) {
|
|
finish_up();
|
|
break;
|
|
}
|
|
|
|
bool read_everything = false;
|
|
if (m_content_length.has_value()) {
|
|
auto length = m_content_length.value();
|
|
if (m_received_size + payload.size() >= length) {
|
|
payload.resize(length - m_received_size);
|
|
read_everything = true;
|
|
}
|
|
}
|
|
|
|
m_received_buffers.append(make<ReceivedBuffer>(payload));
|
|
m_buffered_size += payload.size();
|
|
m_received_size += payload.size();
|
|
flush_received_buffers();
|
|
|
|
deferred_invoke([this] { did_progress(m_content_length, m_received_size); });
|
|
|
|
if (read_everything) {
|
|
VERIFY(m_received_size <= m_content_length.value());
|
|
finish_up();
|
|
break;
|
|
}
|
|
|
|
// Check after reading all the buffered data if we have reached the end of stream
|
|
// for cases where the server didn't send a content length, chunked encoding but is
|
|
// directly closing the connection.
|
|
if (!m_content_length.has_value() && !m_current_chunk_remaining_size.has_value() && m_socket->is_eof()) {
|
|
finish_up();
|
|
break;
|
|
}
|
|
|
|
if (m_current_chunk_remaining_size.has_value()) {
|
|
auto size = m_current_chunk_remaining_size.value() - payload.size();
|
|
|
|
dbgln_if(JOB_DEBUG, "Job: We have {} bytes left over in this chunk", size);
|
|
if (size == 0) {
|
|
dbgln_if(JOB_DEBUG, "Job: Finished a chunk of {} bytes", m_current_chunk_total_size.value());
|
|
|
|
if (m_current_chunk_total_size.value() == 0) {
|
|
m_state = State::Trailers;
|
|
break;
|
|
}
|
|
|
|
// we've read everything, now let's get the next chunk
|
|
size = -1;
|
|
|
|
auto can_read_line = m_socket->can_read_line();
|
|
if (can_read_line.is_error())
|
|
return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
|
|
if (can_read_line.value()) {
|
|
auto maybe_line = read_line(PAGE_SIZE);
|
|
if (maybe_line.is_error()) {
|
|
return deferred_invoke([this] { did_fail(Core::NetworkJob::Error::TransmissionFailed); });
|
|
}
|
|
|
|
VERIFY(maybe_line.value().is_empty());
|
|
} else {
|
|
m_should_read_chunk_ending_line = true;
|
|
}
|
|
}
|
|
m_current_chunk_remaining_size = size;
|
|
}
|
|
}
|
|
|
|
if (!m_socket->is_open()) {
|
|
dbgln_if(JOB_DEBUG, "Connection appears to have closed, finishing up");
|
|
finish_up();
|
|
}
|
|
});
|
|
}
|
|
|
|
void Job::timer_event(Core::TimerEvent& event)
|
|
{
|
|
event.accept();
|
|
finish_up();
|
|
if (m_buffered_size == 0)
|
|
stop_timer();
|
|
}
|
|
|
|
void Job::finish_up()
|
|
{
|
|
VERIFY(!m_has_scheduled_finish);
|
|
m_state = State::Finished;
|
|
if (!m_can_stream_response) {
|
|
auto maybe_flattened_buffer = ByteBuffer::create_uninitialized(m_buffered_size);
|
|
if (maybe_flattened_buffer.is_error())
|
|
return did_fail(Core::NetworkJob::Error::TransmissionFailed);
|
|
auto flattened_buffer = maybe_flattened_buffer.release_value();
|
|
|
|
u8* flat_ptr = flattened_buffer.data();
|
|
for (auto& received_buffer : m_received_buffers) {
|
|
memcpy(flat_ptr, received_buffer->pending_flush.data(), received_buffer->pending_flush.size());
|
|
flat_ptr += received_buffer->pending_flush.size();
|
|
}
|
|
m_received_buffers.clear();
|
|
|
|
// For the time being, we cannot stream stuff with content-encoding set to _anything_.
|
|
// FIXME: LibCompress exposes a streaming interface, so this can be resolved
|
|
auto content_encoding = m_headers.get("Content-Encoding");
|
|
if (content_encoding.has_value()) {
|
|
if (auto result = handle_content_encoding(flattened_buffer, content_encoding.value()); !result.is_error())
|
|
flattened_buffer = result.release_value();
|
|
else
|
|
return did_fail(Core::NetworkJob::Error::TransmissionFailed);
|
|
}
|
|
|
|
m_buffered_size = flattened_buffer.size();
|
|
m_received_buffers.append(make<ReceivedBuffer>(move(flattened_buffer)));
|
|
m_can_stream_response = true;
|
|
}
|
|
|
|
flush_received_buffers();
|
|
if (m_buffered_size != 0) {
|
|
// We have to wait for the client to consume all the downloaded data
|
|
// before we can actually call `did_finish`. in a normal flow, this should
|
|
// never be hit since the client is reading as we are writing, unless there
|
|
// are too many concurrent downloads going on.
|
|
dbgln_if(JOB_DEBUG, "Flush finished with {} bytes remaining, will try again later", m_buffered_size);
|
|
if (!has_timer())
|
|
start_timer(50);
|
|
return;
|
|
}
|
|
|
|
m_has_scheduled_finish = true;
|
|
auto response = HttpResponse::create(m_code, move(m_headers), m_received_size);
|
|
deferred_invoke([this, response = move(response)] {
|
|
// If the server responded with "Connection: close", close the connection
|
|
// as the server may or may not want to close the socket. Also, if this is
|
|
// a legacy HTTP server (1.0 or older), assume close is the default value.
|
|
if (auto result = response->headers().get("Connection"sv); result.has_value() ? result->equals_ignoring_ascii_case("close"sv) : m_legacy_connection)
|
|
shutdown(ShutdownMode::CloseSocket);
|
|
did_finish(response);
|
|
});
|
|
}
|
|
}
|