forked from M-Labs/artiq
runtime: enable IPv6. Closes #349
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05e8f24c24
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@ -27,7 +27,7 @@ board_misoc = { path = "../libboard_misoc", features = ["uart_console", "smoltcp
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logger_artiq = { path = "../liblogger_artiq" }
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logger_artiq = { path = "../liblogger_artiq" }
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board_artiq = { path = "../libboard_artiq" }
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board_artiq = { path = "../libboard_artiq" }
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proto_artiq = { path = "../libproto_artiq", features = ["log", "alloc"] }
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proto_artiq = { path = "../libproto_artiq", features = ["log", "alloc"] }
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smoltcp = { version = "0.5.0", default-features = false, features = ["rust-1_28", "alloc", "log", "proto-ipv4", "socket-tcp"] }
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smoltcp = { version = "0.5.0", default-features = false, features = ["rust-1_28", "alloc", "log", "proto-ipv4", "proto-ipv6", "socket-tcp"] }
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[dependencies.fringe]
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[dependencies.fringe]
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git = "https://github.com/m-labs/libfringe"
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git = "https://github.com/m-labs/libfringe"
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@ -170,7 +170,7 @@ fn startup() {
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match config::read_str("ip", |r| r.map(|s| s.parse())) {
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match config::read_str("ip", |r| r.map(|s| s.parse())) {
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Ok(Ok(addr)) => {
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Ok(Ok(addr)) => {
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protocol_addr = addr;
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protocol_addr = addr;
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info!("using IP address {}", protocol_addr);
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info!("using IPv4 address {}", protocol_addr);
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}
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}
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_ => {
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_ => {
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#[cfg(soc_platform = "kasli")]
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#[cfg(soc_platform = "kasli")]
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@ -189,9 +189,23 @@ fn startup() {
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{
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{
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protocol_addr = IpAddress::v4(192, 168, 1, 50);
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protocol_addr = IpAddress::v4(192, 168, 1, 50);
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}
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}
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info!("using default IP address {}", protocol_addr);
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info!("using default IPv4 address {}", protocol_addr);
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}
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}
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}
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}
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let protocol_addr6_ll = IpAddress::v6(
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0xfe80, 0x0000, 0x0000, 0x0000,
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(((hardware_addr.0[0] ^ 0x02) as u16) << 8) | (hardware_addr.0[1] as u16),
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((hardware_addr.0[2] as u16) << 8) | 0x00ff,
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0xfe00 | (hardware_addr.0[3] as u16),
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((hardware_addr.0[4] as u16) << 8) | (hardware_addr.0[5] as u16));
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info!("using IPv6 link-local address {}", protocol_addr6_ll);
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let protocol_addr6 = match config::read_str("ip6", |r| r.map(|s| s.parse())) {
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Ok(Ok(addr)) => {
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info!("using IPv6 configured address {}", addr);
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Some(addr)
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}
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_ => None
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};
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let mut net_device = unsafe { ethmac::EthernetDevice::new() };
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let mut net_device = unsafe { ethmac::EthernetDevice::new() };
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net_device.reset_phy_if_any();
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net_device.reset_phy_if_any();
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@ -218,12 +232,31 @@ fn startup() {
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let neighbor_cache =
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let neighbor_cache =
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smoltcp::iface::NeighborCache::new(alloc::btree_map::BTreeMap::new());
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smoltcp::iface::NeighborCache::new(alloc::btree_map::BTreeMap::new());
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let mut interface =
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let mut interface = match protocol_addr6 {
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smoltcp::iface::EthernetInterfaceBuilder::new(net_device)
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Some(addr) => {
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.neighbor_cache(neighbor_cache)
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let ip_addrs = [
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IpCidr::new(protocol_addr, 0),
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IpCidr::new(protocol_addr6_ll, 0),
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IpCidr::new(addr, 0)
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];
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smoltcp::iface::EthernetInterfaceBuilder::new(net_device)
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.ethernet_addr(hardware_addr)
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.ethernet_addr(hardware_addr)
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.ip_addrs([IpCidr::new(protocol_addr, 0)])
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.ip_addrs(ip_addrs)
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.finalize();
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.neighbor_cache(neighbor_cache)
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.finalize()
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}
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None => {
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let ip_addrs = [
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IpCidr::new(protocol_addr, 0),
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IpCidr::new(protocol_addr6_ll, 0)
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];
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smoltcp::iface::EthernetInterfaceBuilder::new(net_device)
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.ethernet_addr(hardware_addr)
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.ip_addrs(ip_addrs)
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.neighbor_cache(neighbor_cache)
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.finalize()
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}
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};
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#[cfg(has_drtio)]
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#[cfg(has_drtio)]
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let drtio_routing_table = urc::Urc::new(RefCell::new(
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let drtio_routing_table = urc::Urc::new(RefCell::new(
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@ -240,6 +240,8 @@ In other cases, install OpenOCD as before, and flash the IP and MAC addresses di
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Check that you can ping the device. If ping fails, check that the Ethernet link LED is ON - on Kasli, it is the LED next to the SFP0 connector. As a next step, look at the messages emitted on the UART during boot. Use a program such as flterm or PuTTY to connect to the device's serial port at 115200bps 8-N-1 and reboot the device. On Kasli, the serial port is on FTDI channel 2 with v1.1 hardware (with channel 0 being JTAG) and on FTDI channel 1 with v1.0 hardware.
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Check that you can ping the device. If ping fails, check that the Ethernet link LED is ON - on Kasli, it is the LED next to the SFP0 connector. As a next step, look at the messages emitted on the UART during boot. Use a program such as flterm or PuTTY to connect to the device's serial port at 115200bps 8-N-1 and reboot the device. On Kasli, the serial port is on FTDI channel 2 with v1.1 hardware (with channel 0 being JTAG) and on FTDI channel 1 with v1.0 hardware.
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If you want to use IPv6, the device also has a link-local address that corresponds to its EUI-64, and an additional arbitrary IPv6 address can be defined by using the ``ip6`` configuration key. All IPv4 and IPv6 addresses can be used at the same time.
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Miscellaneous configuration of the core device
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Miscellaneous configuration of the core device
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----------------------------------------------
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----------------------------------------------
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