stm32/wpan: add draft mac mbox
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9f63158aad
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@ -2,12 +2,12 @@ use core::marker::PhantomData;
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use embassy_stm32::ipcc::Ipcc;
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use crate::channels;
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use crate::cmd::CmdPacket;
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use crate::consts::TlPacketType;
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use crate::evt::EvtBox;
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use crate::tables::BleTable;
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use crate::tables::{BleTable, BLE_CMD_BUFFER, CS_BUFFER, EVT_QUEUE, HCI_ACL_DATA_BUFFER, TL_BLE_TABLE};
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use crate::unsafe_linked_list::LinkedListNode;
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use crate::{channels, BLE_CMD_BUFFER, CS_BUFFER, EVT_QUEUE, HCI_ACL_DATA_BUFFER, TL_BLE_TABLE};
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pub struct Ble {
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phantom: PhantomData<Ble>,
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@ -1,7 +1,6 @@
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use core::{ptr, slice};
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use super::PacketHeader;
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use crate::mm;
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/**
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* The payload of `Evt` for a command status event
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@ -129,6 +128,18 @@ impl EvtBox {
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impl Drop for EvtBox {
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fn drop(&mut self) {
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unsafe { mm::MemoryManager::drop_event_packet(self.ptr) };
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#[cfg(feature = "ble")]
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unsafe {
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use crate::mm;
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mm::MemoryManager::drop_event_packet(self.ptr)
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};
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#[cfg(feature = "mac")]
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unsafe {
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use crate::mac;
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mac::Mac::drop_event_packet(self.ptr)
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}
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}
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}
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@ -6,7 +6,6 @@ pub mod fmt;
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use core::mem::MaybeUninit;
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use core::sync::atomic::{compiler_fence, Ordering};
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use ble::Ble;
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use embassy_hal_common::{into_ref, Peripheral, PeripheralRef};
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use embassy_stm32::interrupt;
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use embassy_stm32::ipcc::{Config, Ipcc, ReceiveInterruptHandler, TransmitInterruptHandler};
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@ -16,11 +15,14 @@ use sys::Sys;
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use tables::*;
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use unsafe_linked_list::LinkedListNode;
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#[cfg(feature = "ble")]
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pub mod ble;
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pub mod channels;
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pub mod cmd;
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pub mod consts;
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pub mod evt;
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#[cfg(feature = "mac")]
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pub mod mac;
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pub mod mm;
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pub mod shci;
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pub mod sys;
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@ -34,7 +36,10 @@ pub struct TlMbox<'d> {
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pub sys_subsystem: Sys,
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pub mm_subsystem: MemoryManager,
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pub ble_subsystem: Ble,
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#[cfg(feature = "ble")]
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pub ble_subsystem: ble::Ble,
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#[cfg(feature = "mac")]
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pub mac_subsystem: mac::Mac,
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}
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impl<'d> TlMbox<'d> {
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@ -122,7 +127,10 @@ impl<'d> TlMbox<'d> {
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Self {
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_ipcc: ipcc,
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sys_subsystem: sys::Sys::new(),
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#[cfg(feature = "ble")]
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ble_subsystem: ble::Ble::new(),
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#[cfg(feature = "mac")]
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mac_subsystem: mac::Mac::new(),
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mm_subsystem: mm::MemoryManager::new(),
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}
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}
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109
embassy-stm32-wpan/src/mac.rs
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109
embassy-stm32-wpan/src/mac.rs
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@ -0,0 +1,109 @@
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use core::future::poll_fn;
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use core::marker::PhantomData;
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use core::ptr;
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use core::sync::atomic::{AtomicBool, Ordering};
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use core::task::Poll;
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use embassy_futures::poll_once;
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use embassy_stm32::ipcc::Ipcc;
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use embassy_sync::waitqueue::AtomicWaker;
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use crate::cmd::CmdPacket;
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use crate::consts::TlPacketType;
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use crate::evt::{EvtBox, EvtPacket};
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use crate::tables::{
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Mac802_15_4Table, MAC_802_15_4_CMD_BUFFER, MAC_802_15_4_NOTIF_RSP_EVT_BUFFER, TL_MAC_802_15_4_TABLE,
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};
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use crate::unsafe_linked_list::LinkedListNode;
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use crate::{channels, EVT_QUEUE};
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static MAC_WAKER: AtomicWaker = AtomicWaker::new();
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static MAC_EVT_OUT: AtomicBool = AtomicBool::new(false);
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pub struct Mac {
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phantom: PhantomData<Mac>,
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}
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impl Mac {
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pub(crate) fn new() -> Self {
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unsafe {
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LinkedListNode::init_head(EVT_QUEUE.as_mut_ptr());
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TL_MAC_802_15_4_TABLE.as_mut_ptr().write_volatile(Mac802_15_4Table {
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p_cmdrsp_buffer: MAC_802_15_4_CMD_BUFFER.as_mut_ptr().cast(),
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p_notack_buffer: MAC_802_15_4_NOTIF_RSP_EVT_BUFFER.as_mut_ptr().cast(),
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evt_queue: ptr::null_mut(),
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});
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}
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Self { phantom: PhantomData }
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}
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/// SAFETY: passing a pointer to something other than a managed event packet is UB
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pub(crate) unsafe fn drop_event_packet(_: *mut EvtPacket) {
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// Write the ack
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CmdPacket::write_into(MAC_802_15_4_CMD_BUFFER.as_mut_ptr(), TlPacketType::OtAck, 0, &[]);
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// Clear the rx flag
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let _ = poll_once(Ipcc::receive::<bool>(
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channels::cpu2::IPCC_MAC_802_15_4_NOTIFICATION_ACK_CHANNEL,
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|| None,
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));
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// Allow a new read call
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MAC_EVT_OUT.store(false, Ordering::SeqCst);
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MAC_WAKER.wake();
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}
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/// `HW_IPCC_MAC_802_15_4_EvtNot`
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///
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/// This function will stall if the previous `EvtBox` has not been dropped
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pub async fn read(&self) -> EvtBox {
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// Wait for the last event box to be dropped
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poll_fn(|cx| {
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MAC_WAKER.register(cx.waker());
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if MAC_EVT_OUT.load(Ordering::SeqCst) {
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Poll::Pending
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} else {
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Poll::Ready(())
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}
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})
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.await;
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// Return a new event box
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Ipcc::receive(channels::cpu2::IPCC_MAC_802_15_4_NOTIFICATION_ACK_CHANNEL, || unsafe {
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// The closure is not async, therefore the closure must execute to completion (cannot be dropped)
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// Therefore, the event box is guaranteed to be cleaned up if it's not leaked
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MAC_EVT_OUT.store(true, Ordering::SeqCst);
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Some(EvtBox::new(MAC_802_15_4_NOTIF_RSP_EVT_BUFFER.as_mut_ptr() as *mut _))
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})
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.await
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}
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/// `HW_IPCC_MAC_802_15_4_CmdEvtNot`
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pub async fn write_and_get_response(&self, opcode: u16, payload: &[u8]) -> u8 {
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self.write(opcode, payload).await;
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Ipcc::flush(channels::cpu1::IPCC_SYSTEM_CMD_RSP_CHANNEL).await;
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unsafe {
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let p_event_packet = MAC_802_15_4_CMD_BUFFER.as_ptr() as *const EvtPacket;
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let p_mac_rsp_evt = &((*p_event_packet).evt_serial.evt.payload) as *const u8;
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ptr::read_volatile(p_mac_rsp_evt)
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}
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}
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/// `TL_MAC_802_15_4_SendCmd`
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pub async fn write(&self, opcode: u16, payload: &[u8]) {
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Ipcc::send(channels::cpu1::IPCC_MAC_802_15_4_CMD_RSP_CHANNEL, || unsafe {
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CmdPacket::write_into(
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MAC_802_15_4_CMD_BUFFER.as_mut_ptr(),
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TlPacketType::OtCmd,
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opcode,
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payload,
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);
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})
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.await;
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}
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}
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@ -43,7 +43,8 @@ impl MemoryManager {
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Self { phantom: PhantomData }
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}
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/// SAFETY: passing a pointer to something other than an event packet is UB
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#[allow(dead_code)]
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/// SAFETY: passing a pointer to something other than a managed event packet is UB
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pub(crate) unsafe fn drop_event_packet(evt: *mut EvtPacket) {
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interrupt::free(|_| unsafe {
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LinkedListNode::insert_head(LOCAL_FREE_BUF_QUEUE.as_mut_ptr(), evt as *mut _);
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@ -230,6 +230,15 @@ pub static mut EVT_QUEUE: MaybeUninit<LinkedListNode> = MaybeUninit::uninit();
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pub static mut SYSTEM_EVT_QUEUE: MaybeUninit<LinkedListNode> = MaybeUninit::uninit();
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// --------------------- app tables ---------------------
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#[cfg(feature = "mac")]
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#[link_section = "MB_MEM2"]
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pub static mut MAC_802_15_4_CMD_BUFFER: MaybeUninit<CmdPacket> = MaybeUninit::uninit();
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#[cfg(feature = "mac")]
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#[link_section = "MB_MEM2"]
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pub static mut MAC_802_15_4_NOTIF_RSP_EVT_BUFFER: MaybeUninit<[u8; TL_PACKET_HEADER_SIZE + TL_EVT_HEADER_SIZE + 255]> =
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MaybeUninit::uninit();
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#[link_section = "MB_MEM2"]
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pub static mut EVT_POOL: MaybeUninit<[u8; POOL_SIZE]> = MaybeUninit::uninit();
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@ -20,3 +20,17 @@ embedded-hal = "0.2.6"
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panic-probe = { version = "0.3", features = ["print-defmt"] }
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futures = { version = "0.3.17", default-features = false, features = ["async-await"] }
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heapless = { version = "0.7.5", default-features = false }
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[features]
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default = ["ble"]
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mac = ["embassy-stm32-wpan/mac"]
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ble = ["embassy-stm32-wpan/ble"]
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[[bin]]
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name = "tl_mbox_ble"
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required-features = ["ble"]
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[[bin]]
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name = "tl_mbox_mac"
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required-features = ["mac"]
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64
examples/stm32wb/src/bin/tl_mbox_mac.rs
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64
examples/stm32wb/src/bin/tl_mbox_mac.rs
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#![no_std]
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#![no_main]
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#![feature(type_alias_impl_trait)]
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use defmt::*;
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use embassy_executor::Spawner;
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use embassy_stm32::bind_interrupts;
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use embassy_stm32::ipcc::{Config, ReceiveInterruptHandler, TransmitInterruptHandler};
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use embassy_stm32_wpan::TlMbox;
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use {defmt_rtt as _, panic_probe as _};
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bind_interrupts!(struct Irqs{
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IPCC_C1_RX => ReceiveInterruptHandler;
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IPCC_C1_TX => TransmitInterruptHandler;
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});
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#[embassy_executor::main]
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async fn main(_spawner: Spawner) {
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/*
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How to make this work:
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- Obtain a NUCLEO-STM32WB55 from your preferred supplier.
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- Download and Install STM32CubeProgrammer.
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- Download stm32wb5x_FUS_fw.bin, stm32wb5x_BLE_Stack_full_fw.bin, and Release_Notes.html from
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gh:STMicroelectronics/STM32CubeWB@2234d97/Projects/STM32WB_Copro_Wireless_Binaries/STM32WB5x
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- Open STM32CubeProgrammer
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- On the right-hand pane, click "firmware upgrade" to upgrade the st-link firmware.
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- Once complete, click connect to connect to the device.
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- On the left hand pane, click the RSS signal icon to open "Firmware Upgrade Services".
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- In the Release_Notes.html, find the memory address that corresponds to your device for the stm32wb5x_FUS_fw.bin file
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- Select that file, the memory address, "verify download", and then "Firmware Upgrade".
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- Once complete, in the Release_Notes.html, find the memory address that corresponds to your device for the
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stm32wb5x_BLE_Stack_full_fw.bin file. It should not be the same memory address.
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- Select that file, the memory address, "verify download", and then "Firmware Upgrade".
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- Select "Start Wireless Stack".
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- Disconnect from the device.
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- In the examples folder for stm32wb, modify the memory.x file to match your target device.
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- Run this example.
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Note: extended stack versions are not supported at this time. Do not attempt to install a stack with "extended" in the name.
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*/
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let p = embassy_stm32::init(Default::default());
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info!("Hello World!");
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let config = Config::default();
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let mbox = TlMbox::init(p.IPCC, Irqs, config);
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let sys_event = mbox.sys_subsystem.read().await;
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info!("sys event: {}", sys_event.payload());
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// mbox.sys_subsystem.shci_c2_ble_init(Default::default()).await;
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//
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// info!("starting ble...");
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// mbox.ble_subsystem.write(0x0c, &[]).await;
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//
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// info!("waiting for ble...");
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// let ble_event = mbox.ble_subsystem.read().await;
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//
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// info!("ble event: {}", ble_event.payload());
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info!("Test OK");
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cortex_m::asm::bkpt();
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}
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