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Kernel: Use IOAddress class in Network adapters' drivers
Also, kprintf() calls were replaced with klog() calls.
This commit is contained in:
parent
7d39e380f9
commit
15dfca4a79
Notes:
sideshowbarker
2024-07-19 08:55:54 +09:00
Author: https://github.com/supercomputer7 Commit: https://github.com/SerenityOS/serenity/commit/15dfca4a793 Pull-request: https://github.com/SerenityOS/serenity/pull/1322
4 changed files with 52 additions and 50 deletions
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@ -135,10 +135,11 @@ void E1000NetworkAdapter::detect(const PCI::Address& address)
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E1000NetworkAdapter::E1000NetworkAdapter(PCI::Address address, u8 irq)
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: PCI::Device(address, irq)
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, m_io_base(PCI::get_BAR1(pci_address()) & ~1)
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{
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set_interface_name("e1k");
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kprintf("E1000: Found at PCI address @ %w:%b:%b.%b\n", pci_address().seg(), pci_address().bus(), pci_address().slot(), pci_address().function());
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klog() << "E1000: Found at PCI address @ " << String::format("%w", pci_address().seg()) << ":" << String::format("%b", pci_address().bus()) << ":" << String::format("%b", pci_address().slot()) << "." << String::format("%b", pci_address().function());
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enable_bus_mastering(pci_address());
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@ -146,17 +147,16 @@ E1000NetworkAdapter::E1000NetworkAdapter(PCI::Address address, u8 irq)
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m_mmio_region = MM.allocate_kernel_region(PhysicalAddress(page_base_of(PCI::get_BAR0(pci_address()))), PAGE_ROUND_UP(mmio_base_size), "E1000 MMIO", Region::Access::Read | Region::Access::Write, false, false);
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m_mmio_base = m_mmio_region->vaddr();
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m_use_mmio = true;
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m_io_base = PCI::get_BAR1(pci_address()) & ~1;
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m_interrupt_line = PCI::get_interrupt_line(pci_address());
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kprintf("E1000: IO port base: %w\n", m_io_base);
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kprintf("E1000: MMIO base: P%x\n", PCI::get_BAR0(pci_address()) & 0xfffffffc);
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kprintf("E1000: MMIO base size: %u bytes\n", mmio_base_size);
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kprintf("E1000: Interrupt line: %u\n", m_interrupt_line);
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klog() << "E1000: port base: " << m_io_base;
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klog() << "E1000: MMIO base: " << PhysicalAddress(PCI::get_BAR0(pci_address()) & 0xfffffffc);
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klog() << "E1000: MMIO base size: " << mmio_base_size << " bytes";
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klog() << "E1000: Interrupt line: " << m_interrupt_line;
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detect_eeprom();
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kprintf("E1000: Has EEPROM? %u\n", m_has_eeprom);
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klog() << "E1000: Has EEPROM? " << m_has_eeprom;
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read_mac_address();
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const auto& mac = mac_address();
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kprintf("E1000: MAC address: %b:%b:%b:%b:%b:%b\n", mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
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klog() << "E1000: MAC address: " << String::format("%b", mac[0]) << ":" << String::format("%b", mac[1]) << ":" << String::format("%b", mac[2]) << ":" << String::format("%b", mac[3]) << ":" << String::format("%b", mac[4]) << ":" << String::format("%b", mac[5]);
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u32 flags = in32(REG_CTRL);
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out32(REG_CTRL, flags | ECTRL_SLU);
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@ -309,7 +309,7 @@ void E1000NetworkAdapter::out8(u16 address, u8 data)
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*ptr = data;
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return;
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}
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IO::out8(m_io_base + address, data);
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m_io_base.offset(address).out(data);
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}
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void E1000NetworkAdapter::out16(u16 address, u16 data)
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@ -322,7 +322,7 @@ void E1000NetworkAdapter::out16(u16 address, u16 data)
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*ptr = data;
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return;
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}
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IO::out16(m_io_base + address, data);
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m_io_base.offset(address).out(data);
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}
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void E1000NetworkAdapter::out32(u16 address, u32 data)
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@ -335,7 +335,7 @@ void E1000NetworkAdapter::out32(u16 address, u32 data)
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*ptr = data;
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return;
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}
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IO::out32(m_io_base + address, data);
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m_io_base.offset(address).out(data);
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}
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u8 E1000NetworkAdapter::in8(u16 address)
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@ -345,7 +345,7 @@ u8 E1000NetworkAdapter::in8(u16 address)
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#endif
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if (m_use_mmio)
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return *(volatile u8*)(m_mmio_base.get() + address);
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return IO::in8(m_io_base + address);
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return m_io_base.offset(address).in<u8>();
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}
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u16 E1000NetworkAdapter::in16(u16 address)
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@ -355,7 +355,7 @@ u16 E1000NetworkAdapter::in16(u16 address)
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#endif
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if (m_use_mmio)
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return *(volatile u16*)(m_mmio_base.get() + address);
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return IO::in16(m_io_base + address);
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return m_io_base.offset(address).in<u16>();
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}
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u32 E1000NetworkAdapter::in32(u16 address)
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@ -365,7 +365,7 @@ u32 E1000NetworkAdapter::in32(u16 address)
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#endif
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if (m_use_mmio)
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return *(volatile u32*)(m_mmio_base.get() + address);
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return IO::in32(m_io_base + address);
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return m_io_base.offset(address).in<u32>();
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}
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void E1000NetworkAdapter::send_raw(const u8* data, size_t length)
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@ -373,7 +373,7 @@ void E1000NetworkAdapter::send_raw(const u8* data, size_t length)
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disable_irq();
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u32 tx_current = in32(REG_TXDESCTAIL);
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#ifdef E1000_DEBUG
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kprintf("E1000: Sending packet (%zu bytes)\n", length);
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klog() << "E1000: Sending packet (" << length << " bytes)";
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#endif
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auto& descriptor = m_tx_descriptors[tx_current];
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ASSERT(length <= 8192);
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@ -383,7 +383,7 @@ void E1000NetworkAdapter::send_raw(const u8* data, size_t length)
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descriptor.status = 0;
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descriptor.cmd = CMD_EOP | CMD_IFCS | CMD_RS;
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#ifdef E1000_DEBUG
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kprintf("E1000: Using tx descriptor %d (head is at %d)\n", tx_current, in32(REG_TXDESCHEAD));
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klog() << "E1000: Using tx descriptor " << tx_current << " (head is at " << in32(REG_TXDESCHEAD) << ")";
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#endif
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tx_current = (tx_current + 1) % number_of_tx_descriptors;
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out32(REG_TXDESCTAIL, tx_current);
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@ -397,7 +397,7 @@ void E1000NetworkAdapter::send_raw(const u8* data, size_t length)
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Thread::current->wait_on(m_wait_queue);
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}
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#ifdef E1000_DEBUG
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kprintf("E1000: Sent packet, status is now %b!\n", descriptor.status);
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klog() << "E1000: Sent packet, status is now " << String::format("%b",descriptor.status) << "!";
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#endif
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}
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@ -414,7 +414,7 @@ void E1000NetworkAdapter::receive()
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auto* buffer = (u8*)(m_rx_descriptors[rx_current].addr + 0xc0000000);
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u16 length = m_rx_descriptors[rx_current].length;
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#ifdef E1000_DEBUG
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kprintf("E1000: Received 1 packet @ %p (%zu) bytes!\n", buffer, length);
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klog() << "E1000: Received 1 packet @ " << buffer << " (" << length << ") bytes!";
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#endif
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did_receive(buffer, length);
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m_rx_descriptors[rx_current].status = 0;
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@ -29,6 +29,7 @@
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#include <AK/OwnPtr.h>
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#include <Kernel/Interrupts/IRQHandler.h>
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#include <Kernel/Net/NetworkAdapter.h>
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#include <LibBareMetal/IO.h>
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#include <Kernel/PCI/Access.h>
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#include <Kernel/PCI/Device.h>
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@ -89,7 +90,7 @@ private:
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void receive();
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u16 m_io_base { 0 };
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IOAddress m_io_base;
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VirtualAddress m_mmio_base;
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OwnPtr<Region> m_mmio_region;
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u8 m_interrupt_line { 0 };
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@ -139,28 +139,28 @@ void RTL8139NetworkAdapter::detect(const PCI::Address& address)
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RTL8139NetworkAdapter::RTL8139NetworkAdapter(PCI::Address address, u8 irq)
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: PCI::Device(address, irq)
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, m_io_base(PCI::get_BAR0(pci_address()) & ~1)
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{
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set_interface_name("rtl8139");
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kprintf("RTL8139: Found at PCI address %b:%b:%b\n", pci_address().bus(), pci_address().slot(), pci_address().function());
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klog() << "RTL8139: Found at PCI address " << String::format("%w", pci_address().seg()) << ":" << String::format("%b", pci_address().bus()) << ":" << String::format("%b", pci_address().slot()) << "." << String::format("%b", pci_address().function());
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enable_bus_mastering(pci_address());
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m_io_base = PCI::get_BAR0(pci_address()) & ~1;
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m_interrupt_line = PCI::get_interrupt_line(pci_address());
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kprintf("RTL8139: IO port base: %w\n", m_io_base);
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kprintf("RTL8139: Interrupt line: %u\n", m_interrupt_line);
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klog() << "RTL8139: port base: " << m_io_base;
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klog() << "RTL8139: Interrupt line: " << m_interrupt_line;
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// we add space to account for overhang from the last packet - the rtl8139
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// can optionally guarantee that packets will be contiguous by
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// purposefully overrunning the rx buffer
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m_rx_buffer_addr = (uintptr_t)virtual_to_low_physical(kmalloc_aligned(RX_BUFFER_SIZE + PACKET_SIZE_MAX, 16));
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kprintf("RTL8139: RX buffer: P%p\n", m_rx_buffer_addr);
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klog() << "RTL8139: RX buffer: " << PhysicalAddress(m_rx_buffer_addr);
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auto tx_buffer_addr = (uintptr_t)virtual_to_low_physical(kmalloc_aligned(TX_BUFFER_SIZE * 4, 16));
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for (int i = 0; i < RTL8139_TX_BUFFER_COUNT; i++) {
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m_tx_buffer_addr[i] = tx_buffer_addr + TX_BUFFER_SIZE * i;
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kprintf("RTL8139: TX buffer %d: P%p\n", i, m_tx_buffer_addr[i]);
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klog() << "RTL8139: TX buffer " << i << ": " << PhysicalAddress(m_tx_buffer_addr[i]);
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}
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m_packet_buffer = (uintptr_t)kmalloc(PACKET_SIZE_MAX);
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@ -169,7 +169,7 @@ RTL8139NetworkAdapter::RTL8139NetworkAdapter(PCI::Address address, u8 irq)
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read_mac_address();
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const auto& mac = mac_address();
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kprintf("RTL8139: MAC address: %s\n", mac.to_string().characters());
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klog() << "RTL8139: MAC address: " << mac.to_string().characters();
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enable_irq();
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}
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@ -185,7 +185,7 @@ void RTL8139NetworkAdapter::handle_irq(RegisterState&)
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out16(REG_ISR, status);
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#ifdef RTL8139_DEBUG
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kprintf("RTL8139NetworkAdapter::handle_irq status=%#04x\n", status);
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klog() << "RTL8139NetworkAdapter::handle_irq status=0x" << String::format("%x", status);
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#endif
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if ((status & (INT_RXOK | INT_RXERR | INT_TXOK | INT_TXERR | INT_RX_BUFFER_OVERFLOW | INT_LINK_CHANGE | INT_RX_FIFO_OVERFLOW | INT_LENGTH_CHANGE | INT_SYSTEM_ERROR)) == 0)
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@ -193,38 +193,38 @@ void RTL8139NetworkAdapter::handle_irq(RegisterState&)
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if (status & INT_RXOK) {
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#ifdef RTL8139_DEBUG
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kprintf("RTL8139NetworkAdapter: rx ready\n");
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klog() << "RTL8139NetworkAdapter: rx ready";
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#endif
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receive();
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}
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if (status & INT_RXERR) {
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kprintf("RTL8139NetworkAdapter: rx error - resetting device\n");
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klog() << "RTL8139NetworkAdapter: rx error - resetting device";
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reset();
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}
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if (status & INT_TXOK) {
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#ifdef RTL8139_DEBUG
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kprintf("RTL8139NetworkAdapter: tx complete\n");
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klog() << "RTL8139NetworkAdapter: tx complete";
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#endif
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}
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if (status & INT_TXERR) {
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kprintf("RTL8139NetworkAdapter: tx error - resetting device\n");
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klog() << "RTL8139NetworkAdapter: tx error - resetting device";
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reset();
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}
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if (status & INT_RX_BUFFER_OVERFLOW) {
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kprintf("RTL8139NetworkAdapter: rx buffer overflow\n");
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klog() << "RTL8139NetworkAdapter: rx buffer overflow";
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}
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if (status & INT_LINK_CHANGE) {
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m_link_up = (in8(REG_MSR) & MSR_LINKB) == 0;
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kprintf("RTL8139NetworkAdapter: link status changed up=%d\n", m_link_up);
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klog() << "RTL8139NetworkAdapter: link status changed up=" << m_link_up;
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}
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if (status & INT_RX_FIFO_OVERFLOW) {
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kprintf("RTL8139NetworkAdapter: rx fifo overflow\n");
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klog() << "RTL8139NetworkAdapter: rx fifo overflow";
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}
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if (status & INT_LENGTH_CHANGE) {
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kprintf("RTL8139NetworkAdapter: cable length change\n");
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klog() << "RTL8139NetworkAdapter: cable length change";
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}
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if (status & INT_SYSTEM_ERROR) {
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kprintf("RTL8139NetworkAdapter: system error - resetting device\n");
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klog() << "RTL8139NetworkAdapter: system error - resetting device";
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reset();
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}
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}
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@ -291,11 +291,11 @@ void RTL8139NetworkAdapter::read_mac_address()
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void RTL8139NetworkAdapter::send_raw(const u8* data, size_t length)
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{
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#ifdef RTL8139_DEBUG
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kprintf("RTL8139NetworkAdapter::send_raw length=%d\n", length);
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klog() << "RTL8139NetworkAdapter::send_raw length=" << length;
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#endif
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if (length > PACKET_SIZE_MAX) {
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kprintf("RTL8139NetworkAdapter: packet was too big; discarding\n");
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klog() << "RTL8139NetworkAdapter: packet was too big; discarding";
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return;
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}
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@ -311,11 +311,11 @@ void RTL8139NetworkAdapter::send_raw(const u8* data, size_t length)
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}
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if (hw_buffer == -1) {
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kprintf("RTL8139NetworkAdapter: hardware buffers full; discarding packet\n");
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klog() << "RTL8139NetworkAdapter: hardware buffers full; discarding packet";
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return;
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} else {
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#ifdef RTL8139_DEBUG
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kprintf("RTL8139NetworkAdapter: chose buffer %d @ %p\n", hw_buffer, m_tx_buffer_addr[hw_buffer]);
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klog() << "RTL8139NetworkAdapter: chose buffer " << hw_buffer << " @ " << PhysicalAddress(m_tx_buffer_addr[hw_buffer]);
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#endif
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m_tx_next_buffer = (hw_buffer + 1) % 4;
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}
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@ -329,7 +329,7 @@ void RTL8139NetworkAdapter::send_raw(const u8* data, size_t length)
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// 60 bytes if necessary to make sure the whole thing is large enough.
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if (length < 60) {
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#ifdef RTL8139_DEBUG
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kprintf("RTL8139NetworkAdapter: adjusting payload size from %zu to 60\n", length);
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klog() << "RTL8139NetworkAdapter: adjusting payload size from " << length << " to 60";
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#endif
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length = 60;
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}
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@ -345,11 +345,11 @@ void RTL8139NetworkAdapter::receive()
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u16 length = *(const u16*)(start_of_packet + 2);
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#ifdef RTL8139_DEBUG
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kprintf("RTL8139NetworkAdapter::receive status=%04x length=%d offset=%d\n", status, length, m_rx_buffer_offset);
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klog() << "RTL8139NetworkAdapter::receive status=0x" << String::format("%x",status) << " length=" << length << " offset=" << m_rx_buffer_offset;
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#endif
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if (!(status & RX_OK) || (status & (RX_INVALID_SYMBOL_ERROR | RX_CRC_ERROR | RX_FRAME_ALIGNMENT_ERROR)) || (length >= PACKET_SIZE_MAX) || (length < PACKET_SIZE_MIN)) {
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kprintf("RTL8139NetworkAdapter::receive got bad packet status=%04x length=%d\n", status, length);
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klog() << "RTL8139NetworkAdapter::receive got bad packet status=0x" << String::format("%x",status) << " length=" << length;
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reset();
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return;
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}
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@ -368,32 +368,32 @@ void RTL8139NetworkAdapter::receive()
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void RTL8139NetworkAdapter::out8(u16 address, u8 data)
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{
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IO::out8(m_io_base + address, data);
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m_io_base.offset(address).out(data);
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}
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void RTL8139NetworkAdapter::out16(u16 address, u16 data)
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{
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IO::out16(m_io_base + address, data);
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m_io_base.offset(address).out(data);
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}
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void RTL8139NetworkAdapter::out32(u16 address, u32 data)
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{
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IO::out32(m_io_base + address, data);
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m_io_base.offset(address).out(data);
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}
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u8 RTL8139NetworkAdapter::in8(u16 address)
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{
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return IO::in8(m_io_base + address);
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return m_io_base.offset(address).in<u8>();
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}
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u16 RTL8139NetworkAdapter::in16(u16 address)
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{
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return IO::in16(m_io_base + address);
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return m_io_base.offset(address).in<u16>();
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}
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u32 RTL8139NetworkAdapter::in32(u16 address)
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{
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return IO::in32(m_io_base + address);
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return m_io_base.offset(address).in<u32>();
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}
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}
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@ -30,6 +30,7 @@
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#include <Kernel/Net/NetworkAdapter.h>
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#include <Kernel/PCI/Access.h>
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#include <Kernel/PCI/Device.h>
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#include <LibBareMetal/IO.h>
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namespace Kernel {
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@ -62,7 +63,7 @@ private:
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u16 in16(u16 address);
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u32 in32(u16 address);
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u16 m_io_base { 0 };
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IOAddress m_io_base;
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u8 m_interrupt_line { 0 };
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u32 m_rx_buffer_addr { 0 };
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u16 m_rx_buffer_offset { 0 };
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