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7 changed files with 1370 additions and 90 deletions

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@ -287,6 +287,62 @@ pub enum Packet {
SubkernelMessageAck {
destination: u8,
},
CoreMgmtGetLogRequest {
destination: u8,
clear: bool,
},
CoreMgmtClearLogRequest {
destination: u8,
},
CoreMgmtSetLogLevelRequest {
destination: u8,
log_level: u8,
},
CoreMgmtSetUartLogLevelRequest {
destination: u8,
log_level: u8,
},
CoreMgmtConfigReadRequest {
destination: u8,
length: u16,
key: [u8; MASTER_PAYLOAD_MAX_SIZE],
},
CoreMgmtConfigReadContinue {
destination: u8,
},
CoreMgmtConfigWriteRequest {
destination: u8,
last: bool,
length: u16,
data: [u8; MASTER_PAYLOAD_MAX_SIZE],
},
CoreMgmtConfigRemoveRequest {
destination: u8,
length: u16,
key: [u8; MASTER_PAYLOAD_MAX_SIZE],
},
CoreMgmtConfigEraseRequest {
destination: u8,
},
CoreMgmtRebootRequest {
destination: u8,
},
CoreMgmtAllocatorDebugRequest {
destination: u8,
},
CoreMgmtGetLogReply {
last: bool,
length: u16,
data: [u8; SAT_PAYLOAD_MAX_SIZE],
},
CoreMgmtConfigReadReply {
last: bool,
length: u16,
value: [u8; SAT_PAYLOAD_MAX_SIZE],
},
CoreMgmtAck,
CoreMgmtNack,
}
impl Packet {
@ -563,6 +619,93 @@ impl Packet {
destination: reader.read_u8()?,
},
0xd0 => Packet::CoreMgmtGetLogRequest {
destination: reader.read_u8()?,
clear: reader.read_bool()?,
},
0xd1 => Packet::CoreMgmtClearLogRequest {
destination: reader.read_u8()?,
},
0xd2 => Packet::CoreMgmtSetLogLevelRequest {
destination: reader.read_u8()?,
log_level: reader.read_u8()?,
},
0xd3 => Packet::CoreMgmtSetUartLogLevelRequest {
destination: reader.read_u8()?,
log_level: reader.read_u8()?,
},
0xd4 => {
let destination = reader.read_u8()?;
let length = reader.read_u16()?;
let mut key: [u8; MASTER_PAYLOAD_MAX_SIZE] = [0; MASTER_PAYLOAD_MAX_SIZE];
reader.read_exact(&mut key[0..length as usize])?;
Packet::CoreMgmtConfigReadRequest {
destination: destination,
length: length,
key: key,
}
}
0xd5 => Packet::CoreMgmtConfigReadContinue {
destination: reader.read_u8()?,
},
0xd6 => {
let destination = reader.read_u8()?;
let last = reader.read_bool()?;
let length = reader.read_u16()?;
let mut data: [u8; MASTER_PAYLOAD_MAX_SIZE] = [0; MASTER_PAYLOAD_MAX_SIZE];
reader.read_exact(&mut data[0..length as usize])?;
Packet::CoreMgmtConfigWriteRequest {
destination: destination,
last: last,
length: length,
data: data,
}
}
0xd7 => {
let destination = reader.read_u8()?;
let length = reader.read_u16()?;
let mut key: [u8; MASTER_PAYLOAD_MAX_SIZE] = [0; MASTER_PAYLOAD_MAX_SIZE];
reader.read_exact(&mut key[0..length as usize])?;
Packet::CoreMgmtConfigRemoveRequest {
destination: destination,
length: length,
key: key,
}
}
0xd8 => Packet::CoreMgmtConfigEraseRequest {
destination: reader.read_u8()?,
},
0xd9 => Packet::CoreMgmtRebootRequest {
destination: reader.read_u8()?,
},
0xda => Packet::CoreMgmtAllocatorDebugRequest {
destination: reader.read_u8()?,
},
0xdb => {
let last = reader.read_bool()?;
let length = reader.read_u16()?;
let mut data: [u8; SAT_PAYLOAD_MAX_SIZE] = [0; SAT_PAYLOAD_MAX_SIZE];
reader.read_exact(&mut data[0..length as usize])?;
Packet::CoreMgmtGetLogReply {
last: last,
length: length,
data: data,
}
}
0xdc => {
let last = reader.read_bool()?;
let length = reader.read_u16()?;
let mut value: [u8; SAT_PAYLOAD_MAX_SIZE] = [0; SAT_PAYLOAD_MAX_SIZE];
reader.read_exact(&mut value[0..length as usize])?;
Packet::CoreMgmtConfigReadReply {
last: last,
length: length,
value: value,
}
}
0xdd => Packet::CoreMgmtAck,
0xde => Packet::CoreMgmtNack,
ty => return Err(Error::UnknownPacket(ty)),
})
}
@ -938,6 +1081,88 @@ impl Packet {
writer.write_u8(0xcc)?;
writer.write_u8(destination)?;
}
Packet::CoreMgmtGetLogRequest { destination, clear } => {
writer.write_u8(0xd0)?;
writer.write_u8(destination)?;
writer.write_bool(clear)?;
}
Packet::CoreMgmtClearLogRequest { destination } => {
writer.write_u8(0xd1)?;
writer.write_u8(destination)?;
}
Packet::CoreMgmtSetLogLevelRequest { destination, log_level } => {
writer.write_u8(0xd2)?;
writer.write_u8(destination)?;
writer.write_u8(log_level)?;
}
Packet::CoreMgmtSetUartLogLevelRequest { destination, log_level } => {
writer.write_u8(0xd3)?;
writer.write_u8(destination)?;
writer.write_u8(log_level)?;
}
Packet::CoreMgmtConfigReadRequest {
destination,
length,
key,
} => {
writer.write_u8(0xd4)?;
writer.write_u8(destination)?;
writer.write_u16(length)?;
writer.write_all(&key[0..length as usize])?;
}
Packet::CoreMgmtConfigReadContinue { destination } => {
writer.write_u8(0xd5)?;
writer.write_u8(destination)?;
}
Packet::CoreMgmtConfigWriteRequest {
destination,
last,
length,
data,
} => {
writer.write_u8(0xd6)?;
writer.write_u8(destination)?;
writer.write_bool(last)?;
writer.write_u16(length)?;
writer.write_all(&data[0..length as usize])?;
}
Packet::CoreMgmtConfigRemoveRequest {
destination,
length,
key,
} => {
writer.write_u8(0xd7)?;
writer.write_u8(destination)?;
writer.write_u16(length)?;
writer.write_all(&key[0..length as usize])?;
}
Packet::CoreMgmtConfigEraseRequest { destination } => {
writer.write_u8(0xd8)?;
writer.write_u8(destination)?;
}
Packet::CoreMgmtRebootRequest { destination } => {
writer.write_u8(0xd9)?;
writer.write_u8(destination)?;
}
Packet::CoreMgmtAllocatorDebugRequest { destination } => {
writer.write_u8(0xda)?;
writer.write_u8(destination)?;
}
Packet::CoreMgmtGetLogReply { last, length, data } => {
writer.write_u8(0xdb)?;
writer.write_bool(last)?;
writer.write_u16(length)?;
writer.write_all(&data[0..length as usize])?;
}
Packet::CoreMgmtConfigReadReply { last, length, value } => {
writer.write_u8(0xdc)?;
writer.write_bool(last)?;
writer.write_u16(length)?;
writer.write_all(&value[0..length as usize])?;
}
Packet::CoreMgmtAck => writer.write_u8(0xdd)?,
Packet::CoreMgmtNack => writer.write_u8(0xde)?,
}
Ok(())
}

View File

@ -783,7 +783,7 @@ pub fn main(timer: GlobalTimer, cfg: Config) {
}
}
mgmt::start(cfg);
mgmt::start(cfg, Some((&aux_mutex, &drtio_routing_table, timer)));
task::spawn(async move {
let connection = Rc::new(Semaphore::new(1, 1));
@ -886,7 +886,7 @@ pub fn soft_panic_main(timer: GlobalTimer, cfg: Config) -> ! {
Sockets::init(32);
mgmt::start(cfg);
mgmt::start(cfg, None);
// getting eth settings disables the LED as it resets GPIO
// need to re-enable it here

View File

@ -1,16 +1,21 @@
use alloc::{rc::Rc, string::String, vec::Vec};
use core::cell::RefCell;
use core::{cell::RefCell, ops::Deref};
use futures::{future::poll_fn, task::Poll};
use libasync::{smoltcp::TcpStream, task};
use libboard_artiq::logger::{BufferLogger, LogBufferRef};
use libboard_zynq::{slcr, smoltcp};
use libboard_artiq::{drtio_routing,
drtio_routing::RoutingTable,
logger::{BufferLogger, LogBufferRef}};
use libboard_zynq::{slcr, smoltcp, timer::GlobalTimer};
use libconfig::Config;
use libcortex_a9::mutex::Mutex;
use log::{self, debug, error, info, warn, LevelFilter};
use num_derive::FromPrimitive;
use num_traits::FromPrimitive;
use crate::proto_async::*;
#[cfg(has_drtio)]
use crate::rtio_mgt::*;
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum Error {
@ -18,6 +23,8 @@ pub enum Error {
UnknownLogLevel(u8),
UnexpectedPattern,
UnrecognizedPacket,
#[cfg(has_drtio)]
DrtioError(drtio::Error),
}
type Result<T> = core::result::Result<T, Error>;
@ -29,6 +36,8 @@ impl core::fmt::Display for Error {
&Error::UnknownLogLevel(lvl) => write!(f, "unknown log level {}", lvl),
&Error::UnexpectedPattern => write!(f, "unexpected pattern"),
&Error::UnrecognizedPacket => write!(f, "unrecognized packet"),
#[cfg(has_drtio)]
&Error::DrtioError(error) => write!(f, "drtio error: {}", error),
}
}
}
@ -39,6 +48,13 @@ impl From<smoltcp::Error> for Error {
}
}
#[cfg(has_drtio)]
impl From<drtio::Error> for Error {
fn from(error: drtio::Error) -> Self {
Error::DrtioError(error)
}
}
#[derive(Debug, FromPrimitive)]
pub enum Request {
GetLog = 1,
@ -51,6 +67,9 @@ pub enum Request {
ConfigRead = 12,
ConfigWrite = 13,
ConfigRemove = 14,
ConfigErase = 15,
DebugAllocator = 8,
}
#[repr(i8)]
@ -111,10 +130,646 @@ async fn read_key(stream: &mut TcpStream) -> Result<String> {
Ok(String::from_utf8(buffer).unwrap())
}
async fn handle_connection(stream: &mut TcpStream, pull_id: Rc<RefCell<u32>>, cfg: Rc<Config>) -> Result<()> {
#[cfg(has_drtio)]
mod remote_coremgmt {
use io::{Cursor, ProtoWrite};
use libboard_artiq::drtioaux_proto::{Packet, MASTER_PAYLOAD_MAX_SIZE};
use super::*;
use crate::rtio_mgt::drtio;
pub async fn get_log(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
) -> Result<()> {
let mut buffer = Vec::new();
loop {
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtGetLogRequest {
destination,
clear: false,
},
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtGetLogReply { last, length, data }) => {
buffer.extend(&data[..length as usize]);
if last {
write_i8(stream, Reply::LogContent as i8).await?;
write_chunk(stream, &buffer).await?;
return Ok(());
}
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
write_i8(stream, Reply::Error as i8).await?;
return Err(drtio::Error::UnexpectedReply.into());
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
return Err(e.into());
}
}
}
}
pub async fn clear_log(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
) -> Result<()> {
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtClearLogRequest { destination },
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtAck) => {
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
write_i8(stream, Reply::Error as i8).await?;
Err(drtio::Error::UnexpectedReply.into())
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
Err(e.into())
}
}
}
pub async fn pull_log(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
pull_id: &Rc<RefCell<u32>>,
) -> Result<()> {
let id = {
let mut guard = pull_id.borrow_mut();
*guard += 1;
*guard
};
loop {
if id != *pull_id.borrow() {
// another connection attempts to pull the log...
// abort this connection...
break;
}
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtGetLogRequest {
destination,
clear: true,
},
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtGetLogReply { last: _, length, data }) => {
write_chunk(stream, &data[..length as usize]).await?;
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
return Err(drtio::Error::UnexpectedReply.into());
}
Err(e) => {
error!("aux packet error ({})", e);
return Err(e.into());
}
}
}
Ok(())
}
pub async fn set_log_filter(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
level: LevelFilter,
) -> Result<()> {
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtSetLogLevelRequest {
destination,
log_level: level as u8,
},
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtAck) => {
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
write_i8(stream, Reply::Error as i8).await?;
Err(drtio::Error::UnexpectedReply.into())
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
Err(e.into())
}
}
}
pub async fn set_uart_log_filter(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
level: LevelFilter,
) -> Result<()> {
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtSetUartLogLevelRequest {
destination,
log_level: level as u8,
},
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtAck) => {
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
write_i8(stream, Reply::Error as i8).await?;
Err(drtio::Error::UnexpectedReply.into())
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
Err(e.into())
}
}
}
pub async fn config_read(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
_cfg: &Rc<Config>,
key: &String,
) -> Result<()> {
let mut config_key: [u8; MASTER_PAYLOAD_MAX_SIZE] = [0; MASTER_PAYLOAD_MAX_SIZE];
let len = key.len();
config_key[..len].clone_from_slice(key.as_bytes());
let mut reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtConfigReadRequest {
destination: destination,
length: len as u16,
key: config_key,
},
timer,
)
.await;
let mut buffer = Vec::<u8>::new();
loop {
match reply {
Ok(Packet::CoreMgmtConfigReadReply { last, length, value }) => {
buffer.extend(&value[..length as usize]);
if last {
write_i8(stream, Reply::ConfigData as i8).await?;
write_chunk(stream, &buffer).await?;
return Ok(());
}
reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtConfigReadContinue {
destination: destination,
},
timer,
)
.await;
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
write_i8(stream, Reply::Error as i8).await?;
return Err(drtio::Error::UnexpectedReply.into());
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
return Err(e.into());
}
}
}
}
pub async fn config_write(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
_cfg: &Rc<Config>,
key: &String,
value: Vec<u8>,
) -> Result<()> {
let mut message = Cursor::new(Vec::with_capacity(key.len() + value.len() + 4 * 2));
message.write_string(key).unwrap();
message.write_bytes(&value).unwrap();
match drtio::partition_data(
linkno,
aux_mutex,
routing_table,
timer,
message.get_ref(),
|slice, status, len: usize| Packet::CoreMgmtConfigWriteRequest {
destination: destination,
last: status.is_last(),
length: len as u16,
data: *slice,
},
|reply| match reply {
Packet::CoreMgmtAck => Ok(()),
packet => {
error!("received unexpected aux packet: {:?}", packet);
Err(drtio::Error::UnexpectedReply)
}
},
)
.await
{
Ok(()) => {
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
Err(e.into())
}
}
}
pub async fn config_remove(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
_cfg: &Rc<Config>,
key: &String,
) -> Result<()> {
let mut config_key: [u8; MASTER_PAYLOAD_MAX_SIZE] = [0; MASTER_PAYLOAD_MAX_SIZE];
let len = key.len();
config_key[..len].clone_from_slice(key.as_bytes());
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtConfigRemoveRequest {
destination: destination,
length: len as u16,
key: config_key,
},
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtAck) => {
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
write_i8(stream, Reply::Error as i8).await?;
Err(drtio::Error::UnexpectedReply.into())
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
Err(e.into())
}
}
}
pub async fn config_erase(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
) -> Result<()> {
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtConfigEraseRequest {
destination: destination,
},
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtAck) => {
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
write_i8(stream, Reply::Error as i8).await?;
Err(drtio::Error::UnexpectedReply.into())
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
Err(e.into())
}
}
}
pub async fn reboot(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
) -> Result<()> {
info!("initited reboot request to satellite destination {}", destination);
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtRebootRequest {
destination: destination,
},
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtAck) => {
write_i8(stream, Reply::RebootImminent as i8).await?;
Ok(())
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
write_i8(stream, Reply::Error as i8).await?;
Err(drtio::Error::UnexpectedReply.into())
}
Err(e) => {
error!("aux packet error ({})", e);
write_i8(stream, Reply::Error as i8).await?;
Err(e.into())
}
}
}
pub async fn debug_allocator(
stream: &mut TcpStream,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &drtio_routing::RoutingTable,
timer: GlobalTimer,
linkno: u8,
destination: u8,
) -> Result<()> {
let reply = drtio::aux_transact(
aux_mutex,
linkno,
routing_table,
&Packet::CoreMgmtAllocatorDebugRequest {
destination: destination,
},
timer,
)
.await;
match reply {
Ok(Packet::CoreMgmtAck) => {
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
Ok(packet) => {
error!("received unexpected aux packet: {:?}", packet);
Err(drtio::Error::UnexpectedReply.into())
}
Err(e) => {
error!("aux packet error ({})", e);
Err(e.into())
}
}
}
}
mod local_coremgmt {
use super::*;
pub async fn get_log(stream: &mut TcpStream) -> Result<()> {
let buffer = get_logger_buffer().await.extract().as_bytes().to_vec();
write_i8(stream, Reply::LogContent as i8).await?;
write_chunk(stream, &buffer).await?;
Ok(())
}
pub async fn clear_log(stream: &mut TcpStream) -> Result<()> {
let mut buffer = get_logger_buffer().await;
buffer.clear();
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
pub async fn pull_log(stream: &mut TcpStream, pull_id: &Rc<RefCell<u32>>) -> Result<()> {
let id = {
let mut guard = pull_id.borrow_mut();
*guard += 1;
*guard
};
loop {
let mut buffer = get_logger_buffer_pred(|b| !b.is_empty()).await;
if id != *pull_id.borrow() {
// another connection attempts to pull the log...
// abort this connection...
break;
}
let bytes = buffer.extract().as_bytes().to_vec();
buffer.clear();
core::mem::drop(buffer);
write_chunk(stream, &bytes).await?;
if log::max_level() == LevelFilter::Trace {
// temporarily discard all trace level log
let logger = unsafe { BufferLogger::get_logger().as_mut().unwrap() };
logger.set_buffer_log_level(LevelFilter::Debug);
stream.flush().await?;
logger.set_buffer_log_level(LevelFilter::Trace);
}
}
Ok(())
}
pub async fn set_log_filter(stream: &mut TcpStream, lvl: LevelFilter) -> Result<()> {
info!("Changing log level to {}", lvl);
log::set_max_level(lvl);
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
pub async fn set_uart_log_filter(stream: &mut TcpStream, lvl: LevelFilter) -> Result<()> {
info!("Changing UART log level to {}", lvl);
unsafe {
BufferLogger::get_logger().as_ref().unwrap().set_uart_log_level(lvl);
}
write_i8(stream, Reply::Success as i8).await?;
Ok(())
}
pub async fn config_read(stream: &mut TcpStream, cfg: &Rc<Config>, key: &String) -> Result<()> {
let value = cfg.read(&key);
if let Ok(value) = value {
debug!("got value");
write_i8(stream, Reply::ConfigData as i8).await?;
write_chunk(stream, &value).await?;
} else {
warn!("read error: no such key");
write_i8(stream, Reply::Error as i8).await?;
}
Ok(())
}
pub async fn config_write(stream: &mut TcpStream, cfg: &Rc<Config>, key: &String, value: Vec<u8>) -> Result<()> {
let value = cfg.write(&key, value);
if value.is_ok() {
debug!("write success");
write_i8(stream, Reply::Success as i8).await?;
} else {
// this is an error because we do not expect write to fail
error!("failed to write: {:?}", value);
write_i8(stream, Reply::Error as i8).await?;
}
Ok(())
}
pub async fn config_remove(stream: &mut TcpStream, cfg: &Rc<Config>, key: &String) -> Result<()> {
let value = cfg.remove(&key);
if value.is_ok() {
debug!("erase success");
write_i8(stream, Reply::Success as i8).await?;
} else {
warn!("erase failed");
write_i8(stream, Reply::Error as i8).await?;
}
Ok(())
}
pub async fn config_erase(stream: &mut TcpStream) -> Result<()> {
error!("zynq device does not support config erase");
write_i8(stream, Reply::Error as i8).await?;
Ok(())
}
pub async fn reboot(stream: &mut TcpStream) -> Result<()> {
info!("rebooting");
write_i8(stream, Reply::RebootImminent as i8).await?;
stream.flush().await?;
slcr::reboot();
unreachable!()
}
pub async fn debug_allocator(_stream: &mut TcpStream) -> Result<()> {
error!("zynq device does not support allocator debug print");
Ok(())
}
}
#[cfg(has_drtio)]
macro_rules! process {
($stream: ident, $drtio_tuple:ident, $destination:expr, $func:ident $(, $param:expr)*) => {{
if $destination == 0 {
local_coremgmt::$func($stream, $($param, )*).await
} else if let Some((aux_mutex, routing_table, timer)) = $drtio_tuple {
let linkno = routing_table.0[$destination as usize][0] - 1 as u8;
remote_coremgmt::$func($stream, aux_mutex, routing_table, timer, linkno, $destination, $($param, )*).await
} else {
error!("coremgmt-over-drtio not supported for panicked device, please reboot");
write_i8($stream, Reply::Error as i8).await?;
Err(drtio::Error::LinkDown.into())
}
}}
}
#[cfg(not(has_drtio))]
macro_rules! process {
($stream: ident, $drtio_tuple:ident, $destination:expr, $func:ident $(, $param:expr)*) => {{
local_coremgmt::$func($stream, $($param, )*).await
}}
}
async fn handle_connection(
stream: &mut TcpStream,
pull_id: Rc<RefCell<u32>>,
cfg: Rc<Config>,
_drtio_tuple: Option<(&Rc<Mutex<bool>>, &RoutingTable, GlobalTimer)>,
) -> Result<()> {
if !expect(&stream, b"ARTIQ management\n").await? {
return Err(Error::UnexpectedPattern);
}
let _destination: u8 = read_i8(stream).await? as u8;
stream.send_slice("e".as_bytes()).await?;
loop {
@ -124,72 +779,48 @@ async fn handle_connection(stream: &mut TcpStream, pull_id: Rc<RefCell<u32>>, cf
}
let msg: Request = FromPrimitive::from_i8(msg?).ok_or(Error::UnrecognizedPacket)?;
match msg {
Request::GetLog => {
let buffer = get_logger_buffer().await.extract().as_bytes().to_vec();
write_i8(stream, Reply::LogContent as i8).await?;
write_chunk(stream, &buffer).await?;
}
Request::ClearLog => {
let mut buffer = get_logger_buffer().await;
buffer.clear();
write_i8(stream, Reply::Success as i8).await?;
}
Request::PullLog => {
let id = {
let mut guard = pull_id.borrow_mut();
*guard += 1;
*guard
};
loop {
let mut buffer = get_logger_buffer_pred(|b| !b.is_empty()).await;
if id != *pull_id.borrow() {
// another connection attempts to pull the log...
// abort this connection...
break;
}
let bytes = buffer.extract().as_bytes().to_vec();
buffer.clear();
core::mem::drop(buffer);
write_chunk(stream, &bytes).await?;
if log::max_level() == LevelFilter::Trace {
// temporarily discard all trace level log
let logger = unsafe { BufferLogger::get_logger().as_mut().unwrap() };
logger.set_buffer_log_level(LevelFilter::Debug);
stream.flush().await?;
logger.set_buffer_log_level(LevelFilter::Trace);
}
}
}
Request::GetLog => process!(stream, _drtio_tuple, _destination, get_log),
Request::ClearLog => process!(stream, _drtio_tuple, _destination, clear_log),
Request::PullLog => process!(
stream,
_drtio_tuple,
_destination,
pull_log,
&pull_id
),
Request::SetLogFilter => {
let lvl = read_log_level_filter(stream).await?;
info!("Changing log level to {}", lvl);
log::set_max_level(lvl);
write_i8(stream, Reply::Success as i8).await?;
process!(
stream,
_drtio_tuple,
_destination,
set_log_filter,
lvl
)
}
Request::SetUartLogFilter => {
let lvl = read_log_level_filter(stream).await?;
info!("Changing UART log level to {}", lvl);
unsafe {
BufferLogger::get_logger().as_ref().unwrap().set_uart_log_level(lvl);
}
write_i8(stream, Reply::Success as i8).await?;
process!(
stream,
_drtio_tuple,
_destination,
set_uart_log_filter,
lvl
)
}
Request::ConfigRead => {
let key = read_key(stream).await?;
debug!("read key: {}", key);
let value = cfg.read(&key);
if let Ok(value) = value {
debug!("got value");
write_i8(stream, Reply::ConfigData as i8).await?;
write_chunk(stream, &value).await?;
} else {
warn!("read error: no such key");
write_i8(stream, Reply::Error as i8).await?;
}
process!(
stream,
_drtio_tuple,
_destination,
config_read,
&cfg,
&key
)
}
Request::ConfigWrite => {
let key = read_key(stream).await?;
debug!("write key: {}", key);
let len = read_i32(stream).await?;
let len = if len <= 0 { 0 } else { len as usize };
let mut buffer = Vec::with_capacity(len);
@ -197,39 +828,56 @@ async fn handle_connection(stream: &mut TcpStream, pull_id: Rc<RefCell<u32>>, cf
buffer.set_len(len);
}
read_chunk(stream, &mut buffer).await?;
let value = cfg.write(&key, buffer);
if value.is_ok() {
debug!("write success");
write_i8(stream, Reply::Success as i8).await?;
} else {
// this is an error because we do not expect write to fail
error!("failed to write: {:?}", value);
write_i8(stream, Reply::Error as i8).await?;
}
process!(
stream,
_drtio_tuple,
_destination,
config_write,
&cfg,
&key,
buffer
)
}
Request::ConfigRemove => {
let key = read_key(stream).await?;
debug!("erase key: {}", key);
let value = cfg.remove(&key);
if value.is_ok() {
debug!("erase success");
write_i8(stream, Reply::Success as i8).await?;
} else {
warn!("erase failed");
write_i8(stream, Reply::Error as i8).await?;
}
process!(
stream,
_drtio_tuple,
_destination,
config_remove,
&cfg,
&key
)
}
Request::Reboot => {
info!("rebooting");
write_i8(stream, Reply::RebootImminent as i8).await?;
stream.flush().await?;
slcr::reboot();
process!(stream, _drtio_tuple, _destination, reboot)
}
}
Request::ConfigErase => {
process!(stream, _drtio_tuple, _destination, config_erase)
}
Request::DebugAllocator => {
process!(
stream,
_drtio_tuple,
_destination,
debug_allocator
)
}
}?;
}
}
pub fn start(cfg: Config) {
pub fn start(
cfg: Config,
drtio_tuple: Option<(
&Rc<Mutex<bool>>,
&Rc<RefCell<drtio_routing::RoutingTable>>,
GlobalTimer,
)>,
) {
let drtio_tuple = drtio_tuple.map(
|(aux_mutex, routing_table, timer)| (aux_mutex.clone(), routing_table.clone(), timer)
);
task::spawn(async move {
let pull_id = Rc::new(RefCell::new(0u32));
let cfg = Rc::new(cfg);
@ -237,9 +885,19 @@ pub fn start(cfg: Config) {
let mut stream = TcpStream::accept(1380, 2048, 2048).await.unwrap();
let pull_id = pull_id.clone();
let cfg = cfg.clone();
let drtio_tuple = drtio_tuple.clone();
task::spawn(async move {
info!("received connection");
let _ = handle_connection(&mut stream, pull_id, cfg)
// Avoid consuming the tuple
// Keep the borrowed value on stack
let drtio_tuple = drtio_tuple.as_ref().map(
|(aux_mutex, routing_table, timer)| (aux_mutex, routing_table.borrow(), *timer)
);
let drtio_tuple = drtio_tuple.as_ref().map(
|(aux_mutex, routing_table, timer)| (*aux_mutex, routing_table.deref(), *timer)
);
let _ = handle_connection(&mut stream, pull_id, cfg, drtio_tuple)
.await
.map_err(|e| warn!("connection terminated: {:?}", e));
let _ = stream.flush().await;

View File

@ -540,7 +540,7 @@ pub mod drtio {
}
}
async fn partition_data<PacketF, HandlerF>(
pub async fn partition_data<PacketF, HandlerF>(
linkno: u8,
aux_mutex: &Rc<Mutex<bool>>,
routing_table: &RoutingTable,

View File

@ -38,16 +38,18 @@ use libboard_artiq::{drtio_routing, drtioaux,
pl::csr};
#[cfg(feature = "target_kasli_soc")]
use libboard_zynq::error_led::ErrorLED;
use libboard_zynq::{i2c::I2c, print, println, time::Milliseconds, timer::GlobalTimer};
use libboard_zynq::{i2c::I2c, print, println, slcr, time::Milliseconds, timer::GlobalTimer};
use libconfig::Config;
use libcortex_a9::{l2c::enable_l2_cache, regs::MPIDR};
use libregister::RegisterR;
use libsupport_zynq::{exception_vectors, ram};
use mgmt::Manager as CoreManager;
use routing::Router;
use subkernel::Manager as KernelManager;
mod analyzer;
mod dma;
mod mgmt;
mod repeater;
mod routing;
mod subkernel;
@ -149,6 +151,7 @@ fn process_aux_packet(
dma_manager: &mut DmaManager,
analyzer: &mut Analyzer,
kernel_manager: &mut KernelManager,
core_manager: &mut CoreManager,
router: &mut Router,
) -> Result<(), drtioaux::Error> {
// In the code below, *_chan_sel_write takes an u8 if there are fewer than 256 channels,
@ -1010,6 +1013,279 @@ fn process_aux_packet(
}
Ok(())
}
drtioaux::Packet::CoreMgmtGetLogRequest {
destination: _destination,
clear,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
let mut data_slice = [0; SAT_PAYLOAD_MAX_SIZE];
let meta = core_manager.log_get_slice(&mut data_slice);
if clear && meta.status.is_first() {
mgmt::clear_log();
}
drtioaux::send(
0,
&drtioaux::Packet::CoreMgmtGetLogReply {
last: meta.status.is_last(),
length: meta.len as u16,
data: data_slice,
},
)
}
drtioaux::Packet::CoreMgmtClearLogRequest {
destination: _destination,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
mgmt::clear_log();
drtioaux::send(0, &drtioaux::Packet::CoreMgmtAck)
}
drtioaux::Packet::CoreMgmtSetLogLevelRequest {
destination: _destination,
log_level,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
if let Ok(level_filter) = mgmt::byte_to_level_filter(log_level) {
info!("Changing log level to {}", level_filter);
log::set_max_level(level_filter);
drtioaux::send(0, &drtioaux::Packet::CoreMgmtAck)
} else {
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
}
}
drtioaux::Packet::CoreMgmtSetUartLogLevelRequest {
destination: _destination,
log_level,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
if let Ok(level_filter) = mgmt::byte_to_level_filter(log_level) {
info!("Changing log level to {}", level_filter);
unsafe {
logger::BufferLogger::get_logger()
.as_ref()
.unwrap()
.set_uart_log_level(level_filter);
}
drtioaux::send(0, &drtioaux::Packet::CoreMgmtAck)
} else {
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
}
}
drtioaux::Packet::CoreMgmtConfigReadRequest {
destination: _destination,
length,
key,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
let mut value_slice = [0; SAT_PAYLOAD_MAX_SIZE];
let key_slice = &key[..length as usize];
if !key_slice.is_ascii() {
error!("invalid key");
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
} else {
let key = core::str::from_utf8(key_slice).unwrap();
if core_manager.fetch_config_value(key).is_ok() {
let meta = core_manager.get_config_value_slice(&mut value_slice);
drtioaux::send(
0,
&drtioaux::Packet::CoreMgmtConfigReadReply {
last: meta.status.is_last(),
length: meta.len as u16,
value: value_slice,
},
)
} else {
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
}
}
}
drtioaux::Packet::CoreMgmtConfigReadContinue {
destination: _destination,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
let mut value_slice = [0; SAT_PAYLOAD_MAX_SIZE];
let meta = core_manager.get_config_value_slice(&mut value_slice);
drtioaux::send(
0,
&drtioaux::Packet::CoreMgmtConfigReadReply {
last: meta.status.is_last(),
length: meta.len as u16,
value: value_slice,
},
)
}
drtioaux::Packet::CoreMgmtConfigWriteRequest {
destination: _destination,
last,
length,
data,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
core_manager.add_data(&data, length as usize);
let mut succeeded = true;
if last {
succeeded = core_manager.write_config().is_ok();
core_manager.clear_data();
}
if succeeded {
drtioaux::send(0, &drtioaux::Packet::CoreMgmtAck)
} else {
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
}
}
drtioaux::Packet::CoreMgmtConfigRemoveRequest {
destination: _destination,
length,
key,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
let key_slice = &key[..length as usize];
if !key_slice.is_ascii() {
error!("invalid key");
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
} else {
let key = core::str::from_utf8(key_slice).unwrap();
if core_manager.remove_config(key).is_ok() {
drtioaux::send(0, &drtioaux::Packet::CoreMgmtAck)
} else {
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
}
}
}
drtioaux::Packet::CoreMgmtConfigEraseRequest {
destination: _destination,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
error!("config erase not supported on zynq device");
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
}
drtioaux::Packet::CoreMgmtRebootRequest {
destination: _destination,
} => {
info!("received reboot request");
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
drtioaux::send(0, &drtioaux::Packet::CoreMgmtAck)?;
info!("reboot imminent");
slcr::reboot();
Ok(())
}
drtioaux::Packet::CoreMgmtAllocatorDebugRequest {
destination: _destination,
} => {
forward!(
router,
_routing_table,
_destination,
*rank,
*self_destination,
_repeaters,
&packet,
timer
);
error!("debug allocator not supported on zynq device");
drtioaux::send(0, &drtioaux::Packet::CoreMgmtNack)
}
p => {
warn!("received unexpected aux packet: {:?}", p);
@ -1028,6 +1304,7 @@ fn process_aux_packets(
dma_manager: &mut DmaManager,
analyzer: &mut Analyzer,
kernel_manager: &mut KernelManager,
core_manager: &mut CoreManager,
router: &mut Router,
) {
let result = drtioaux::recv(0).and_then(|packet| {
@ -1043,6 +1320,7 @@ fn process_aux_packets(
dma_manager,
analyzer,
kernel_manager,
core_manager,
router,
)
} else {
@ -1239,7 +1517,7 @@ pub extern "C" fn main_core0() -> i32 {
#[cfg(has_si549)]
si549::helper_setup(&mut timer, &SI549_SETTINGS).expect("cannot initialize helper Si549");
let cfg = match Config::new() {
let mut cfg = match Config::new() {
Ok(cfg) => cfg,
Err(err) => {
warn!("config initialization failed: {}", err);
@ -1314,6 +1592,7 @@ pub extern "C" fn main_core0() -> i32 {
let mut dma_manager = DmaManager::new();
let mut analyzer = Analyzer::new();
let mut kernel_manager = KernelManager::new(&mut control);
let mut core_manager = CoreManager::new(&mut cfg);
drtioaux::reset(0);
drtiosat_reset(false);
@ -1331,6 +1610,7 @@ pub extern "C" fn main_core0() -> i32 {
&mut dma_manager,
&mut analyzer,
&mut kernel_manager,
&mut core_manager,
&mut router,
);
#[allow(unused_mut)]

116
src/satman/src/mgmt.rs Normal file
View File

@ -0,0 +1,116 @@
use alloc::vec::Vec;
use io::{Cursor, ProtoRead, ProtoWrite};
use libboard_artiq::{drtioaux_proto::SAT_PAYLOAD_MAX_SIZE,
logger::{BufferLogger, LogBufferRef}};
use libconfig::Config;
use log::{self, debug, error, info, warn, LevelFilter};
use crate::routing::{SliceMeta, Sliceable};
type Result<T> = core::result::Result<T, ()>;
pub fn byte_to_level_filter(level_byte: u8) -> Result<log::LevelFilter> {
Ok(match level_byte {
0 => log::LevelFilter::Off,
1 => log::LevelFilter::Error,
2 => log::LevelFilter::Warn,
3 => log::LevelFilter::Info,
4 => log::LevelFilter::Debug,
5 => log::LevelFilter::Trace,
lv => {
error!("unknown log level: {}", lv);
return Err(());
}
})
}
fn get_logger_buffer_pred() -> LogBufferRef<'static> {
let logger = unsafe { BufferLogger::get_logger().as_mut().unwrap() };
loop {
if let Some(buffer_ref) = logger.buffer() {
return buffer_ref;
}
}
}
fn get_logger_buffer() -> LogBufferRef<'static> {
get_logger_buffer_pred()
}
pub fn clear_log() {
let mut buffer = get_logger_buffer();
buffer.clear();
}
pub struct Manager<'a> {
cfg: &'a mut Config,
last_log: Sliceable,
current_payload: Cursor<Vec<u8>>,
last_value: Sliceable,
}
impl<'a> Manager<'_> {
pub fn new(cfg: &mut Config) -> Manager {
Manager {
cfg: cfg,
last_log: Sliceable::new(0, Vec::new()),
current_payload: Cursor::new(Vec::new()),
last_value: Sliceable::new(0, Vec::new()),
}
}
pub fn log_get_slice(&mut self, data_slice: &mut [u8; SAT_PAYLOAD_MAX_SIZE]) -> SliceMeta {
// Populate buffer if depleted
if self.last_log.at_end() {
self.last_log.extend(get_logger_buffer().extract().as_bytes());
}
self.last_log.get_slice_satellite(data_slice)
}
pub fn fetch_config_value(&mut self, key: &str) -> Result<()> {
self.cfg
.read(&key)
.map(|value| {
debug!("got value");
self.last_value = Sliceable::new(0, value)
})
.map_err(|_| warn!("read error: no such key"))
}
pub fn get_config_value_slice(&mut self, data_slice: &mut [u8; SAT_PAYLOAD_MAX_SIZE]) -> SliceMeta {
self.last_value.get_slice_satellite(data_slice)
}
pub fn add_data(&mut self, data: &[u8], data_len: usize) {
self.current_payload.write_all(&data[..data_len]).unwrap();
}
pub fn clear_data(&mut self) {
self.current_payload.get_mut().clear();
self.current_payload.set_position(0);
}
pub fn write_config(&mut self) -> Result<()> {
let key = self
.current_payload
.read_string()
.map_err(|_err| error!("error on reading key"))?;
debug!("write key: {}", key);
let value = self.current_payload.read_bytes().unwrap();
self.cfg
.write(&key, value)
.map(|()| debug!("write success"))
.map_err(|err| error!("failed to write: {:?}", err))
}
pub fn remove_config(&mut self, key: &str) -> Result<()> {
debug!("erase key: {}", key);
self.cfg
.remove(&key)
.map(|()| debug!("erase success"))
.map_err(|err| warn!("failed to erase: {:?}", err))
}
}

View File

@ -4,7 +4,7 @@ use core::cmp::min;
#[cfg(has_drtio_routing)]
use libboard_artiq::pl::csr;
use libboard_artiq::{drtio_routing, drtioaux,
drtioaux_proto::{PayloadStatus, MASTER_PAYLOAD_MAX_SIZE}};
drtioaux_proto::{PayloadStatus, MASTER_PAYLOAD_MAX_SIZE, SAT_PAYLOAD_MAX_SIZE}};
pub struct SliceMeta {
pub destination: u8,
@ -58,6 +58,7 @@ impl Sliceable {
}
get_slice_fn!(get_slice_master, MASTER_PAYLOAD_MAX_SIZE);
get_slice_fn!(get_slice_satellite, SAT_PAYLOAD_MAX_SIZE);
}
// Packets from downstream (further satellites) are received and routed appropriately.