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13bf8b6080
Author | SHA1 | Date |
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occheung | 13bf8b6080 | |
occheung | 1e7fd93835 |
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@ -17,7 +17,9 @@ smoltcp = { version = "0.6.0", default-features = false, features = [ "ethernet"
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nb = "1.0.0"
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nb = "1.0.0"
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scpi = { git = "https://github.com/occheung/scpi-rs", branch = "issue-4" }
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scpi = { git = "https://github.com/occheung/scpi-rs", branch = "issue-4" }
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lexical-core = { version="0.7.1", features=["radix"], default-features=false }
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lexical-core = { version="0.7.1", features=["radix"], default-features=false }
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libm = { version = "0.2.0" }
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libm = "0.2.0"
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embedded-nal = "0.1.0"
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minimq = "0.1.0"
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# Logging and Panicking
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# Logging and Panicking
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panic-itm = "0.4.1"
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panic-itm = "0.4.1"
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@ -58,6 +58,9 @@ use smoltcp::socket::SocketSet;
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use smoltcp::socket::{SocketHandle, TcpSocket, TcpSocketBuffer};
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use smoltcp::socket::{SocketHandle, TcpSocket, TcpSocketBuffer};
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use smoltcp::time::{Duration, Instant};
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use smoltcp::time::{Duration, Instant};
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// Use embedded-nal to access smoltcp
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use embedded_nal::TcpStack;
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use firmware;
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use firmware;
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use firmware::{
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use firmware::{
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attenuator::Attenuator,
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attenuator::Attenuator,
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@ -301,8 +304,6 @@ fn main() -> ! {
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};
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};
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let mut eth_up = false;
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let mut eth_up = false;
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let mut receive_and_not_send = true;
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let mut counter = 0;
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// Record activeness of silent socket, init as false
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// Record activeness of silent socket, init as false
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let mut silent_socket_active = false;
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let mut silent_socket_active = false;
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@ -319,7 +320,7 @@ fn main() -> ! {
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},
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},
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};
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};
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// Counting socket (:6969)
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// Float rounding test socket (:6969)
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{
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{
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let mut socket = sockets.get::<TcpSocket>(tcp1_handle);
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let mut socket = sockets.get::<TcpSocket>(tcp1_handle);
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if !socket.is_open() {
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if !socket.is_open() {
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@ -327,24 +328,16 @@ fn main() -> ! {
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socket.set_timeout(Some(Duration::from_millis(5000)));
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socket.set_timeout(Some(Duration::from_millis(5000)));
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}
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}
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if socket.can_recv() && receive_and_not_send {
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if socket.can_recv() {
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let data = socket.recv(|buffer| {
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let data = socket.recv(|buffer| {
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(buffer.len(), buffer)
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(buffer.len(), buffer)
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}).unwrap();
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}).unwrap();
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hprintln!("{:?}", data).unwrap();
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hprintln!("{:?}", data).unwrap();
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let result = lexical_core::parse_partial::<f64>(data).unwrap();
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let result = lexical_core::parse_partial::<f64>(data).unwrap();
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writeln!(socket, "{}", round(result.0 * 2.0));
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writeln!(socket, "{}", round(result.0 * 2.0));
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}
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else if socket.can_recv() {
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// hprintln!("{:?}", socket.can_recv());
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}
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if socket.can_send() && !receive_and_not_send {
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writeln!(socket, "{}", counter);
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receive_and_not_send = true;
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}
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}
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}
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}
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// Silent socket (:7000)
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// SCPI interaction socket (:7000)
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{
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{
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let mut socket = sockets.get::<TcpSocket>(silent_handle);
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let mut socket = sockets.get::<TcpSocket>(silent_handle);
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if !socket.is_open() {
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if !socket.is_open() {
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@ -357,7 +357,7 @@ where
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// Test configuration register by getting SDIO_IN_ONLY and LSB_FIRST.
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// Test configuration register by getting SDIO_IN_ONLY and LSB_FIRST.
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let mut error_count = 0;
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let mut error_count = 0;
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let mut config_checks = [
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let mut config_checks = [
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(DDSCFRMask::SDIO_IN_ONLY, 0),
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(DDSCFRMask::SDIO_IN_ONLY, 1),
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(DDSCFRMask::LSB_FIRST, 0)
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(DDSCFRMask::LSB_FIRST, 0)
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];
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];
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self.get_configurations(&mut config_checks)?;
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self.get_configurations(&mut config_checks)?;
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@ -1,4 +1,5 @@
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#![no_std]
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#![no_std]
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#![feature(generic_associated_types)]
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extern crate embedded_hal;
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extern crate embedded_hal;
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use embedded_hal::{
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use embedded_hal::{
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digital::v2::OutputPin,
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digital::v2::OutputPin,
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@ -37,6 +38,8 @@ use crate::dds::DDS;
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pub mod scpi;
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pub mod scpi;
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pub mod nal_tcp_client;
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/*
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/*
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* Enum for structuring error
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* Enum for structuring error
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*/
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*/
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@ -0,0 +1,109 @@
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use embedded_nal::{TcpStack, Mode, SocketAddr};
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use embedded_nal::SocketAddr::{V4, V6};
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use smoltcp::wire::{EthernetAddress, IpAddress, IpCidr};
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use smoltcp::iface::{NeighborCache, EthernetInterfaceBuilder};
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use smoltcp::socket::SocketSet;
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use smoltcp::socket::{SocketHandle, TcpSocket, TcpSocketBuffer};
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use smoltcp::time::{Duration, Instant};
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use smoltcp::Error;
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use nb::Error as nbError;
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use core::cell;
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const BUFFER_SIZE: usize = 2048;
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pub static mut TX_STORAGE: &'static mut [u8] = &mut [0; BUFFER_SIZE];
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pub static mut RX_STORAGE: &'static mut [u8] = &mut [0; BUFFER_SIZE];
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/*
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* Struct for a TCP socket
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* TODO: Consider handling all sockets in this struct
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*/
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pub struct NalTcpClient {}
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// impl NalTcpClient {
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// pub fn new(socket: &'a mut TcpSocket<'a>) -> Self {
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// NalTcpClient {
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// socket,
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// }
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// }
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// }
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impl<'a> TcpStack for &'a NalTcpClient{
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// The type returned when we create a new TCP socket
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type TcpSocket = smoltcp::socket::TcpSocket<'a>;
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// The type returned when we have an error
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type Error = Error;
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// Open a new TCP socket. The socket starts in the unconnected state.
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fn open(&self, mode: Mode) -> Result<Self::TcpSocket, Self::Error> {
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let tx_buffer = unsafe { TcpSocketBuffer::new(&mut TX_STORAGE[..]) };
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let rx_buffer = unsafe { TcpSocketBuffer::new(&mut RX_STORAGE[..]) };
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let mut socket = TcpSocket::new(rx_buffer, tx_buffer);
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if let Mode::Timeout(dur) = mode {
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socket.set_timeout(Some(Duration::from_millis(dur.into())));
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}
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Ok(socket)
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}
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// Connect to the given remote host and port.
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fn connect(
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&self,
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mut socket: Self::TcpSocket,
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remote: SocketAddr,
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) -> Result<Self::TcpSocket, Self::Error> {
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let result = match remote {
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V4(v4_addr) => {
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let ip_addr = v4_addr.ip().octets();
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socket.connect((IpAddress::v4(ip_addr[0], ip_addr[1], ip_addr[2], ip_addr[3]), v4_addr.port()), 49500)
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},
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V6(v6_addr) => {
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let ip_addr = v6_addr.ip().segments();
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socket.connect((IpAddress::v6(ip_addr[0], ip_addr[1], ip_addr[2], ip_addr[3],
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ip_addr[0], ip_addr[1], ip_addr[2], ip_addr[3]), v6_addr.port()), 49500)
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}
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};
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match result {
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Ok(_) => Ok(socket),
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Err(_e) => Err(_e),
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}
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}
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/// Check if this socket is connected
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fn is_connected(&self, socket: &Self::TcpSocket) -> Result<bool, Self::Error> {
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Ok(socket.is_active())
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}
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/// Write to the stream. Returns the number of bytes written is returned
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/// (which may be less than `buffer.len()`), or an error.
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fn write(&self, socket: &mut Self::TcpSocket, buffer: &[u8]) -> nb::Result<usize, Self::Error> {
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if socket.can_send() {
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socket.send_slice(buffer).map_err(nbError::Other)
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} else {
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Err(nbError::Other(Error::Illegal))
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}
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}
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/// Read from the stream. Returns `Ok(n)`, which means `n` bytes of
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/// data have been received and they have been placed in
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/// `&buffer[0..n]`, or an error.
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fn read(
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&self,
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socket: &mut Self::TcpSocket,
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buffer: &mut [u8],
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) -> nb::Result<usize, Self::Error> {
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if socket.can_recv() {
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socket.recv_slice(buffer).map_err(nbError::Other)
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} else {
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Err(nbError::Other(Error::Illegal))
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}
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}
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/// Close an existing TCP socket.
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fn close(&self, mut socket: Self::TcpSocket) -> Result<(), Self::Error> {
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socket.close();
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Ok(())
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}
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}
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@ -29,6 +29,7 @@ use scpi::{
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};
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};
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use embedded_hal::blocking::spi::Transfer;
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use embedded_hal::blocking::spi::Transfer;
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use cortex_m_semihosting::hprintln;
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use crate::Urukul;
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use crate::Urukul;
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@ -70,6 +71,7 @@ where
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}
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}
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fn tst(&mut self) -> Result<()> {
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fn tst(&mut self) -> Result<()> {
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hprintln!("Testing Urukul...").unwrap();
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match self.test() {
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match self.test() {
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Ok(0) => Ok(()),
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Ok(0) => Ok(()),
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Ok(_) => Err(Error::new(
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Ok(_) => Err(Error::new(
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