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https://github.com/LadybirdBrowser/ladybird.git
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d1371d66f7
This patch switches away from {Nonnull,}LockRefPtr to the non-locking smart pointers throughout the kernel. I've looked at the handful of places where these were being persisted and I don't see any race situations. Note that the process file descriptor table (Process::m_fds) was already guarded via MutexProtected.
173 lines
6.2 KiB
C++
173 lines
6.2 KiB
C++
/*
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* Copyright (c) 2021, the SerenityOS developers.
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* Copyright (c) 2021, Kyle Pereira <hey@xylepereira.me>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <Kernel/Bus/VirtIO/Console.h>
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#include <Kernel/Bus/VirtIO/ConsolePort.h>
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namespace Kernel::VirtIO {
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unsigned ConsolePort::next_device_id = 0;
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ErrorOr<NonnullLockRefPtr<ConsolePort>> ConsolePort::try_create(unsigned port, Console& console)
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{
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auto receive_buffer = TRY(Memory::RingBuffer::try_create("VirtIO::ConsolePort Receive"sv, RINGBUFFER_SIZE));
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auto transmit_buffer = TRY(Memory::RingBuffer::try_create("VirtIO::ConsolePort Transmit"sv, RINGBUFFER_SIZE));
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return adopt_nonnull_lock_ref_or_enomem(new (nothrow) ConsolePort(port, console, move(receive_buffer), move(transmit_buffer)));
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}
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ConsolePort::ConsolePort(unsigned port, VirtIO::Console& console, NonnullOwnPtr<Memory::RingBuffer> receive_buffer, NonnullOwnPtr<Memory::RingBuffer> transmit_buffer)
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: CharacterDevice(229, next_device_id++)
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, m_receive_buffer(move(receive_buffer))
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, m_transmit_buffer(move(transmit_buffer))
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, m_console(console)
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, m_port(port)
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{
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m_receive_queue = m_port == 0 ? 0 : m_port * 2 + 2;
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m_transmit_queue = m_port == 0 ? 1 : m_port * 2 + 3;
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}
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void ConsolePort::init_receive_buffer(Badge<VirtIO::Console>)
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{
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auto& queue = m_console.get_queue(m_receive_queue);
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SpinlockLocker queue_lock(queue.lock());
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QueueChain chain(queue);
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auto buffer_start = m_receive_buffer->start_of_region();
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auto did_add_buffer = chain.add_buffer_to_chain(buffer_start, RINGBUFFER_SIZE, BufferType::DeviceWritable);
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VERIFY(did_add_buffer);
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m_console.supply_chain_and_notify(m_receive_queue, chain);
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}
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void ConsolePort::handle_queue_update(Badge<VirtIO::Console>, u16 queue_index)
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{
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dbgln_if(VIRTIO_DEBUG, "VirtIO::ConsolePort: Handle queue update for port {}", m_port);
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VERIFY(queue_index == m_transmit_queue || queue_index == m_receive_queue);
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if (queue_index == m_receive_queue) {
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auto& queue = m_console.get_queue(m_receive_queue);
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SpinlockLocker queue_lock(queue.lock());
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size_t used;
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QueueChain popped_chain = queue.pop_used_buffer_chain(used);
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SpinlockLocker ringbuffer_lock(m_receive_buffer->lock());
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auto used_space_or_error = m_receive_buffer->reserve_space(used);
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if (used_space_or_error.is_error()) {
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TODO();
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}
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auto used_space = used_space_or_error.release_value();
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auto remaining_space = m_receive_buffer->bytes_till_end();
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// Our algorithm always has only one buffer in the queue.
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VERIFY(popped_chain.length() == 1);
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VERIFY(!queue.new_data_available());
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popped_chain.release_buffer_slots_to_queue();
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QueueChain new_chain(queue);
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if (remaining_space != 0) {
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new_chain.add_buffer_to_chain(used_space.offset(used), remaining_space, BufferType::DeviceWritable);
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m_console.supply_chain_and_notify(m_receive_queue, new_chain);
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} else {
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m_receive_buffer_exhausted = true;
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}
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evaluate_block_conditions();
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} else {
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SpinlockLocker ringbuffer_lock(m_transmit_buffer->lock());
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auto& queue = m_console.get_queue(m_transmit_queue);
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SpinlockLocker queue_lock(queue.lock());
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size_t used;
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QueueChain popped_chain = queue.pop_used_buffer_chain(used);
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do {
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popped_chain.for_each([this](PhysicalAddress address, size_t length) {
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m_transmit_buffer->reclaim_space(address, length);
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});
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popped_chain.release_buffer_slots_to_queue();
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popped_chain = queue.pop_used_buffer_chain(used);
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} while (!popped_chain.is_empty());
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// Unblock any IO tasks that were blocked because can_write() returned false
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evaluate_block_conditions();
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}
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}
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bool ConsolePort::can_read(OpenFileDescription const&, u64) const
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{
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return m_receive_buffer->used_bytes() > 0;
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}
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ErrorOr<size_t> ConsolePort::read(OpenFileDescription& desc, u64, UserOrKernelBuffer& buffer, size_t size)
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{
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if (!size)
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return 0;
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SpinlockLocker ringbuffer_lock(m_receive_buffer->lock());
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if (!can_read(desc, size))
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return EAGAIN;
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auto bytes_copied = TRY(m_receive_buffer->copy_data_out(size, buffer));
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m_receive_buffer->reclaim_space(m_receive_buffer->start_of_used(), bytes_copied);
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if (m_receive_buffer_exhausted && m_receive_buffer->used_bytes() == 0) {
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auto& queue = m_console.get_queue(m_receive_queue);
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SpinlockLocker queue_lock(queue.lock());
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QueueChain new_chain(queue);
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new_chain.add_buffer_to_chain(m_receive_buffer->start_of_region(), RINGBUFFER_SIZE, BufferType::DeviceWritable);
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m_console.supply_chain_and_notify(m_receive_queue, new_chain);
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m_receive_buffer_exhausted = false;
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}
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return bytes_copied;
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}
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bool ConsolePort::can_write(OpenFileDescription const&, u64) const
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{
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return m_console.get_queue(m_transmit_queue).has_free_slots() && m_transmit_buffer->has_space();
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}
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ErrorOr<size_t> ConsolePort::write(OpenFileDescription& desc, u64, UserOrKernelBuffer const& data, size_t size)
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{
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if (!size)
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return 0;
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SpinlockLocker ringbuffer_lock(m_transmit_buffer->lock());
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auto& queue = m_console.get_queue(m_transmit_queue);
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SpinlockLocker queue_lock(queue.lock());
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if (!can_write(desc, size))
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return EAGAIN;
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QueueChain chain(queue);
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size_t total_bytes_copied = 0;
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do {
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PhysicalAddress start_of_chunk;
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size_t length_of_chunk;
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if (!m_transmit_buffer->copy_data_in(data, total_bytes_copied, size - total_bytes_copied, start_of_chunk, length_of_chunk)) {
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chain.release_buffer_slots_to_queue();
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return EINVAL;
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}
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bool did_add_buffer = chain.add_buffer_to_chain(start_of_chunk, length_of_chunk, BufferType::DeviceReadable);
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VERIFY(did_add_buffer);
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total_bytes_copied += length_of_chunk;
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} while (total_bytes_copied < size && can_write(desc, size));
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m_console.supply_chain_and_notify(m_transmit_queue, chain);
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return total_bytes_copied;
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}
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ErrorOr<NonnullRefPtr<OpenFileDescription>> ConsolePort::open(int options)
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{
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if (!m_open)
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m_console.send_open_control_message(m_port, true);
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return Device::open(options);
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}
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}
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