Files
ladybird/Libraries/LibIPC/Decoder.h
Aliaksandr Kalenik 4b04e97feb LibWeb: Send IPC messages exceeding socket buffer through shared memory
It turned out that some web applications want to send fairly large
messages to WebWorker through IPC (for example, MapLibre GL sends
~1200KiB), which led to failures (at least on macOS) because buffer size
of TransportSocket is limited to 128KiB. This change solves the problem
by wrapping messages that exceed socket buffer size into another message
that holds wrapped message content in shared memory.

Co-Authored-By: Luke Wilde <luke@ladybird.org>
2025-04-03 13:55:41 +02:00

217 lines
4.7 KiB
C++

/*
* Copyright (c) 2020, Andreas Kling <andreas@ladybird.org>
* Copyright (c) 2023, Tim Flynn <trflynn89@serenityos.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#pragma once
#include <AK/ByteString.h>
#include <AK/Concepts.h>
#include <AK/Forward.h>
#include <AK/NumericLimits.h>
#include <AK/Queue.h>
#include <AK/StdLibExtras.h>
#include <AK/String.h>
#include <AK/Try.h>
#include <AK/TypeList.h>
#include <AK/Variant.h>
#include <LibCore/SharedCircularQueue.h>
#include <LibCore/Socket.h>
#include <LibIPC/Concepts.h>
#include <LibIPC/File.h>
#include <LibIPC/Forward.h>
#include <LibIPC/Message.h>
#include <LibIPC/UnprocessedFileDescriptors.h>
#include <LibURL/Origin.h>
#include <LibURL/URL.h>
namespace IPC {
template<typename T>
inline ErrorOr<T> decode(Decoder&)
{
static_assert(DependentFalse<T>, "Base IPC::decoder() instantiated");
VERIFY_NOT_REACHED();
}
class Decoder {
public:
Decoder(Stream& stream, UnprocessedFileDescriptors& files)
: m_stream(stream)
, m_files(files)
{
}
template<typename T>
ErrorOr<T> decode();
template<typename T>
ErrorOr<void> decode_into(T& value)
{
value = TRY(m_stream.read_value<T>());
return {};
}
ErrorOr<void> decode_into(Bytes bytes)
{
TRY(m_stream.read_until_filled(bytes));
return {};
}
ErrorOr<size_t> decode_size();
Stream& stream() { return m_stream; }
UnprocessedFileDescriptors& files() { return m_files; }
private:
Stream& m_stream;
UnprocessedFileDescriptors& m_files;
};
template<Arithmetic T>
ErrorOr<T> decode(Decoder& decoder)
{
T value { 0 };
TRY(decoder.decode_into(value));
return value;
}
template<Enum T>
ErrorOr<T> decode(Decoder& decoder)
{
auto value = TRY(decoder.decode<UnderlyingType<T>>());
return static_cast<T>(value);
}
template<>
ErrorOr<String> decode(Decoder&);
template<>
ErrorOr<ByteString> decode(Decoder&);
template<>
ErrorOr<ByteBuffer> decode(Decoder&);
template<>
ErrorOr<JsonValue> decode(Decoder&);
template<>
ErrorOr<AK::Duration> decode(Decoder&);
template<>
ErrorOr<UnixDateTime> decode(Decoder&);
template<>
ErrorOr<URL::URL> decode(Decoder&);
template<>
ErrorOr<URL::Origin> decode(Decoder&);
template<>
ErrorOr<URL::Host> decode(Decoder&);
template<>
ErrorOr<File> decode(Decoder&);
template<>
ErrorOr<Empty> decode(Decoder&);
template<Concepts::Array T>
ErrorOr<T> decode(Decoder& decoder)
{
T array {};
auto size = TRY(decoder.decode_size());
if (size != array.size())
return Error::from_string_literal("Array size mismatch");
for (size_t i = 0; i < array.size(); ++i)
array[i] = TRY(decoder.decode<typename T::ValueType>());
return array;
}
template<Concepts::Vector T>
ErrorOr<T> decode(Decoder& decoder)
{
T vector;
auto size = TRY(decoder.decode_size());
TRY(vector.try_ensure_capacity(size));
for (size_t i = 0; i < size; ++i) {
auto value = TRY(decoder.decode<typename T::ValueType>());
vector.unchecked_append(move(value));
}
return vector;
}
template<Concepts::HashMap T>
ErrorOr<T> decode(Decoder& decoder)
{
T hashmap;
auto size = TRY(decoder.decode_size());
TRY(hashmap.try_ensure_capacity(size));
for (size_t i = 0; i < size; ++i) {
auto key = TRY(decoder.decode<typename T::KeyType>());
auto value = TRY(decoder.decode<typename T::ValueType>());
TRY(hashmap.try_set(move(key), move(value)));
}
return hashmap;
}
template<Concepts::SharedSingleProducerCircularQueue T>
ErrorOr<T> decode(Decoder& decoder)
{
auto anon_file = TRY(decoder.decode<IPC::File>());
return T::create(anon_file.take_fd());
}
template<Concepts::Optional T>
ErrorOr<T> decode(Decoder& decoder)
{
if (auto has_value = TRY(decoder.decode<bool>()); !has_value)
return T {};
return T { TRY(decoder.decode<typename T::ValueType>()) };
}
namespace Detail {
template<Concepts::Variant T, size_t Index = 0>
ErrorOr<T> decode_variant(Decoder& decoder, size_t index)
{
using ElementList = TypeList<T>;
if constexpr (Index < ElementList::size) {
if (index == Index) {
using ElementType = typename ElementList::template Type<Index>;
return T { TRY(decoder.decode<ElementType>()) };
}
return decode_variant<T, Index + 1>(decoder, index);
} else {
VERIFY_NOT_REACHED();
}
}
}
template<Concepts::Variant T>
ErrorOr<T> decode(Decoder& decoder)
{
auto index = TRY(decoder.decode<typename T::IndexType>());
return Detail::decode_variant<T>(decoder, index);
}
// This must be last so that it knows about the above specializations.
template<typename T>
ErrorOr<T> Decoder::decode()
{
return IPC::decode<T>(*this);
}
}