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195 lines
7.3 KiB
C++
195 lines
7.3 KiB
C++
#include <Kernel/E1000NetworkAdapter.h>
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#include <Kernel/EthernetFrameHeader.h>
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#include <Kernel/ARP.h>
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#include <Kernel/ICMP.h>
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#include <Kernel/IPv4.h>
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#include <Kernel/Process.h>
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#include <Kernel/EtherType.h>
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#include <AK/Lock.h>
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//#define ETHERNET_DEBUG
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//#define IPV4_DEBUG
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static void handle_arp(const EthernetFrameHeader&, int frame_size);
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static void handle_ipv4(const EthernetFrameHeader&, int frame_size);
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static void handle_icmp(const EthernetFrameHeader&, int frame_size);
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Lockable<HashMap<IPv4Address, MACAddress>>& arp_table()
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{
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static Lockable<HashMap<IPv4Address, MACAddress>>* the;
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if (!the)
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the = new Lockable<HashMap<IPv4Address, MACAddress>>;
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return *the;
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}
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void NetworkTask_main()
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{
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auto* e1000_ptr = E1000NetworkAdapter::the();
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ASSERT(e1000_ptr);
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auto& e1000 = *e1000_ptr;
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e1000.set_ipv4_address(IPv4Address(192, 168, 5, 2));
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kprintf("NetworkTask: Enter main loop.\n");
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for (;;) {
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auto packet = e1000.dequeue_packet();
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if (packet.is_null()) {
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sleep(1);
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continue;
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}
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if (packet.size() < (int)(sizeof(EthernetFrameHeader))) {
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kprintf("NetworkTask: Packet is too small to be an Ethernet packet! (%d)\n", packet.size());
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continue;
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}
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auto& eth = *(const EthernetFrameHeader*)packet.pointer();
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#ifdef ETHERNET_DEBUG
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kprintf("NetworkTask: From %s to %s, ether_type=%w, packet_length=%u\n",
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eth.source().to_string().characters(),
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eth.destination().to_string().characters(),
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eth.ether_type(),
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packet.size()
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);
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#endif
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switch (eth.ether_type()) {
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case EtherType::ARP:
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handle_arp(eth, packet.size());
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break;
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case EtherType::IPv4:
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handle_ipv4(eth, packet.size());
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break;
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}
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}
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}
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void handle_arp(const EthernetFrameHeader& eth, int frame_size)
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{
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constexpr int minimum_arp_frame_size = sizeof(EthernetFrameHeader) + sizeof(ARPPacket);
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if (frame_size < minimum_arp_frame_size) {
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kprintf("handle_arp: Frame too small (%d, need %d)\n", frame_size, minimum_arp_frame_size);
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return;
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}
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auto& packet = *static_cast<const ARPPacket*>(eth.payload());
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if (packet.hardware_type() != 1 || packet.hardware_address_length() != sizeof(MACAddress)) {
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kprintf("handle_arp: Hardware type not ethernet (%w, len=%u)\n",
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packet.hardware_type(),
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packet.hardware_address_length()
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);
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return;
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}
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if (packet.protocol_type() != EtherType::IPv4 || packet.protocol_address_length() != sizeof(IPv4Address)) {
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kprintf("handle_arp: Protocol type not IPv4 (%w, len=%u)\n",
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packet.hardware_type(),
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packet.protocol_address_length()
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);
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return;
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}
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#ifdef ARP_DEBUG
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kprintf("handle_arp: operation=%w, sender=%s/%s, target=%s/%s\n",
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packet.operation(),
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packet.sender_hardware_address().to_string().characters(),
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packet.sender_protocol_address().to_string().characters(),
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packet.target_hardware_address().to_string().characters(),
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packet.target_protocol_address().to_string().characters()
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);
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#endif
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// FIXME: Get the adapter through some kind of lookup by IPv4 address.
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auto& e1000 = *E1000NetworkAdapter::the();
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if (packet.operation() == ARPOperation::Request) {
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// Who has this IP address?
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if (e1000.ipv4_address() == packet.target_protocol_address()) {
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// We do!
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kprintf("handle_arp: Responding to ARP request for my IPv4 address (%s)\n",
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e1000.ipv4_address().to_string().characters());
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ARPPacket response;
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response.set_operation(ARPOperation::Response);
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response.set_target_hardware_address(packet.sender_hardware_address());
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response.set_target_protocol_address(packet.sender_protocol_address());
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response.set_sender_hardware_address(e1000.mac_address());
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response.set_sender_protocol_address(e1000.ipv4_address());
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e1000.send(packet.sender_hardware_address(), response);
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}
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return;
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}
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if (packet.operation() == ARPOperation::Response) {
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// Someone has this IPv4 address. I guess we can try to remember that.
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// FIXME: Protect against ARP spamming.
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// FIXME: Support static ARP table entries.
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LOCKER(arp_table().lock());
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arp_table().resource().set(packet.sender_protocol_address(), packet.sender_hardware_address());
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kprintf("ARP table (%d entries):\n", arp_table().resource().size());
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for (auto& it : arp_table().resource()) {
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kprintf("%s :: %s\n", it.value.to_string().characters(), it.key.to_string().characters());
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}
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}
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}
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void handle_ipv4(const EthernetFrameHeader& eth, int frame_size)
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{
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constexpr int minimum_ipv4_frame_size = sizeof(EthernetFrameHeader) + sizeof(IPv4Packet);
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if (frame_size < minimum_ipv4_frame_size) {
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kprintf("handle_ipv4: Frame too small (%d, need %d)\n", frame_size, minimum_ipv4_frame_size);
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return;
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}
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auto& packet = *static_cast<const IPv4Packet*>(eth.payload());
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#ifdef IPV4_DEBUG
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kprintf("handle_ipv4: source=%s, target=%s\n",
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packet.source().to_string().characters(),
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packet.destination().to_string().characters()
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);
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#endif
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switch ((IPv4Protocol)packet.protocol()) {
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case IPv4Protocol::ICMP:
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return handle_icmp(eth, frame_size);
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default:
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kprintf("handle_ipv4: Unhandled protocol %u\n", packet.protocol());
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break;
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}
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}
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void handle_icmp(const EthernetFrameHeader& eth, int frame_size)
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{
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(void)frame_size;
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auto& ipv4_packet = *static_cast<const IPv4Packet*>(eth.payload());
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auto& icmp_header = *static_cast<const ICMPHeader*>(ipv4_packet.payload());
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#ifdef ICMP_DEBUG
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kprintf("handle_icmp: source=%s, destination=%d type=%b, code=%b\n",
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ipv4_packet.source().to_string().characters(),
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ipv4_packet.destination().to_string().characters(),
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icmp_header.type(),
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icmp_header.code()
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);
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#endif
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// FIXME: Get adapater via lookup.
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auto& adapter = *E1000NetworkAdapter::the();
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if (ipv4_packet.destination() != adapter.ipv4_address())
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return;
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if (icmp_header.type() == ICMPType::EchoRequest) {
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auto& request = reinterpret_cast<const ICMPEchoPacket&>(icmp_header);
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kprintf("handle_icmp: EchoRequest from %s: id=%u, seq=%u\n",
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ipv4_packet.source().to_string().characters(),
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(word)request.identifier,
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(word)request.sequence_number
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);
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size_t icmp_packet_size = ipv4_packet.payload_size();
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auto buffer = ByteBuffer::create_zeroed(icmp_packet_size);
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auto& response = *(ICMPEchoPacket*)buffer.pointer();
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response.header.set_type(ICMPType::EchoReply);
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response.header.set_code(0);
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response.identifier = request.identifier;
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response.sequence_number = request.sequence_number;
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if (size_t icmp_payload_size = icmp_packet_size - sizeof(ICMPEchoPacket))
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memcpy(response.payload(), request.payload(), icmp_payload_size);
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response.header.set_checksum(internet_checksum(&response, icmp_packet_size));
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adapter.send_ipv4(eth.source(), ipv4_packet.source(), IPv4Protocol::ICMP, move(buffer));
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}
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}
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