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https://github.com/RGBCube/serenity
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When scanning for network adapters, we give each driver a chance to claim the PCI device and whoever claims it first gets to keep it. Before this patch, the driver API returned a LockRefPtr<AdapterType>, which made it impossible to propagate errors that occurred during detection and/or initialization. This patch changes the API so that errors can bubble all the way out the PCI enumeration in NetworkingManagement::initialize() where we perform all the network adapter auto-detection on boot. When we eventually start to support hot-plugging network adapter in the future, it will be even more important to propagate errors instead of swallowing them. Importantly, before this patch, some errors were "handled" by panicking the kernel. This is no longer the case. 7 FIXMEs were killed in the making of this commit. :^)
99 lines
2.9 KiB
C++
99 lines
2.9 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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#pragma once
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#include <AK/OwnPtr.h>
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#include <Kernel/Bus/PCI/Access.h>
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#include <Kernel/Bus/PCI/Device.h>
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#include <Kernel/IOWindow.h>
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#include <Kernel/Interrupts/IRQHandler.h>
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#include <Kernel/Net/NetworkAdapter.h>
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#include <Kernel/Random.h>
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namespace Kernel {
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class E1000NetworkAdapter : public NetworkAdapter
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, public PCI::Device
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, public IRQHandler {
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public:
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static ErrorOr<LockRefPtr<E1000NetworkAdapter>> try_to_initialize(PCI::DeviceIdentifier const&);
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virtual bool initialize();
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virtual ~E1000NetworkAdapter() override;
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virtual void send_raw(ReadonlyBytes) override;
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virtual bool link_up() override { return m_link_up; };
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virtual i32 link_speed() override;
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virtual bool link_full_duplex() override;
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virtual StringView purpose() const override { return class_name(); }
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protected:
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void setup_interrupts();
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void setup_link();
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E1000NetworkAdapter(PCI::Address, u8 irq, NonnullOwnPtr<IOWindow> registers_io_window, NonnullOwnPtr<KString>);
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virtual bool handle_irq(RegisterState const&) override;
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virtual StringView class_name() const override { return "E1000NetworkAdapter"sv; }
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struct [[gnu::packed]] e1000_rx_desc {
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volatile uint64_t addr { 0 };
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volatile uint16_t length { 0 };
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volatile uint16_t checksum { 0 };
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volatile uint8_t status { 0 };
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volatile uint8_t errors { 0 };
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volatile uint16_t special { 0 };
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};
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struct [[gnu::packed]] e1000_tx_desc {
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volatile uint64_t addr { 0 };
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volatile uint16_t length { 0 };
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volatile uint8_t cso { 0 };
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volatile uint8_t cmd { 0 };
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volatile uint8_t status { 0 };
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volatile uint8_t css { 0 };
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volatile uint16_t special { 0 };
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};
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virtual void detect_eeprom();
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virtual u32 read_eeprom(u8 address);
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void read_mac_address();
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void write_command(u16 address, u32);
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u32 read_command(u16 address);
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void initialize_rx_descriptors();
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void initialize_tx_descriptors();
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void out8(u16 address, u8);
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void out16(u16 address, u16);
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void out32(u16 address, u32);
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u8 in8(u16 address);
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u16 in16(u16 address);
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u32 in32(u16 address);
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void receive();
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static constexpr size_t number_of_rx_descriptors = 256;
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static constexpr size_t number_of_tx_descriptors = 256;
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NonnullOwnPtr<IOWindow> m_registers_io_window;
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OwnPtr<Memory::Region> m_rx_descriptors_region;
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OwnPtr<Memory::Region> m_tx_descriptors_region;
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OwnPtr<Memory::Region> m_rx_buffer_region;
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OwnPtr<Memory::Region> m_tx_buffer_region;
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Array<void*, number_of_rx_descriptors> m_rx_buffers;
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Array<void*, number_of_tx_descriptors> m_tx_buffers;
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bool m_has_eeprom { false };
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bool m_link_up { false };
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EntropySource m_entropy_source;
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WaitQueue m_wait_queue;
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};
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}
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