wpan: add BLE HCI
This commit is contained in:
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commit
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@ -23,11 +23,13 @@ cortex-m = "0.7.6"
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heapless = "0.7.16"
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bit_field = "0.10.2"
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stm32-device-signature = { version = "0.3.3", features = ["stm32wb5x"] }
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bluetooth-hci-async = { version = "*", git = "https://github.com/OueslatiGhaith/bluetooth-hci", optional = true }
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[features]
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defmt = ["dep:defmt", "embassy-sync/defmt", "embassy-embedded-hal/defmt", "embassy-hal-common/defmt"]
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ble = []
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ble = ["dep:bluetooth-hci-async"]
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mac = []
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stm32wb10cc = [ "embassy-stm32/stm32wb10cc" ]
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@ -1,6 +1,7 @@
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use core::marker::PhantomData;
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use embassy_stm32::ipcc::Ipcc;
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use hci::Opcode;
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use crate::channels;
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use crate::cmd::CmdPacket;
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@ -29,7 +30,7 @@ impl Ble {
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Self { phantom: PhantomData }
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}
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/// `HW_IPCC_BLE_EvtNot`
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pub async fn read(&self) -> EvtBox {
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pub async fn tl_read(&self) -> EvtBox {
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Ipcc::receive(channels::cpu2::IPCC_BLE_EVENT_CHANNEL, || unsafe {
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if let Some(node_ptr) = LinkedListNode::remove_head(EVT_QUEUE.as_mut_ptr()) {
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Some(EvtBox::new(node_ptr.cast()))
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@ -41,7 +42,7 @@ impl Ble {
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}
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/// `TL_BLE_SendCmd`
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pub async fn write(&self, opcode: u16, payload: &[u8]) {
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pub async fn tl_write(&self, opcode: u16, payload: &[u8]) {
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Ipcc::send(channels::cpu1::IPCC_BLE_CMD_CHANNEL, || unsafe {
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CmdPacket::write_into(BLE_CMD_BUFFER.as_mut_ptr(), TlPacketType::BleCmd, opcode, payload);
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})
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@ -61,3 +62,17 @@ impl Ble {
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.await;
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}
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}
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pub extern crate bluetooth_hci_async as hci;
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impl hci::Controller for Ble {
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async fn controller_write(&mut self, opcode: Opcode, payload: &[u8]) {
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self.tl_write(opcode.0, payload).await;
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}
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async fn controller_read(&self) -> &[u8] {
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let evt_box = self.tl_read().await;
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evt_box.serial()
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}
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}
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@ -52,7 +52,7 @@ impl CmdPacket {
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p_cmd_serial,
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CmdSerialStub {
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ty: packet_type as u8,
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cmd_code: cmd_code,
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cmd_code,
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payload_len: payload.len() as u8,
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},
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);
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@ -1,6 +1,7 @@
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use core::{ptr, slice};
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use super::PacketHeader;
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use crate::consts::TL_EVT_HEADER_SIZE;
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/**
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* The payload of `Evt` for a command status event
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@ -105,6 +106,14 @@ impl EvtBox {
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Self { ptr }
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}
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pub fn evt<'a>(&self) -> &'a [u8] {
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unsafe {
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let evt_packet = &(*self.ptr);
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core::slice::from_raw_parts(evt_packet as *const _ as *const u8, core::mem::size_of::<EvtPacket>())
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}
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}
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/// Returns information about the event
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pub fn stub(&self) -> EvtStub {
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unsafe {
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@ -124,6 +133,20 @@ impl EvtBox {
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slice::from_raw_parts(p_payload, payload_len as usize)
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}
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}
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/// writes an underlying [`EvtPacket`] into the provided buffer.
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/// Returns the number of bytes that were written.
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/// Returns an error if event kind is unknown or if provided buffer size is not enough.
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pub fn serial<'a>(&self) -> &'a [u8] {
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unsafe {
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let evt_serial: *const EvtSerial = &(*self.ptr).evt_serial;
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let evt_serial_buf: *const u8 = evt_serial.cast();
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let len = (*evt_serial).evt.payload_len as usize + TL_EVT_HEADER_SIZE;
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slice::from_raw_parts(evt_serial_buf, len)
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}
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}
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}
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impl Drop for EvtBox {
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111
embassy-stm32-wpan/src/lhci.rs
Normal file
111
embassy-stm32-wpan/src/lhci.rs
Normal file
@ -0,0 +1,111 @@
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use crate::cmd::CmdPacket;
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use crate::consts::{TlPacketType, TL_EVT_HEADER_SIZE};
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use crate::evt::{CcEvt, EvtPacket, EvtSerial};
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use crate::tables::{DeviceInfoTable, RssInfoTable, SafeBootInfoTable, WirelessFwInfoTable};
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use crate::TL_REF_TABLE;
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const TL_BLEEVT_CC_OPCODE: u8 = 0x0e;
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const LHCI_OPCODE_C1_DEVICE_INF: u16 = 0xfd62;
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const PACKAGE_DATA_PTR: *const u8 = 0x1FFF_7500 as _;
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const UID64_PTR: *const u32 = 0x1FFF_7580 as _;
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#[derive(Debug, Copy, Clone)]
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#[repr(C, packed)]
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pub struct LhciC1DeviceInformationCcrp {
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pub status: u8,
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pub rev_id: u16,
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pub dev_code_id: u16,
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pub package_type: u8,
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pub device_type_id: u8,
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pub st_company_id: u32,
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pub uid64: u32,
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pub uid96_0: u32,
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pub uid96_1: u32,
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pub uid96_2: u32,
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pub safe_boot_info_table: SafeBootInfoTable,
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pub rss_info_table: RssInfoTable,
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pub wireless_fw_info_table: WirelessFwInfoTable,
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pub app_fw_inf: u32,
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}
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impl Default for LhciC1DeviceInformationCcrp {
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fn default() -> Self {
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let DeviceInfoTable {
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safe_boot_info_table,
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rss_info_table,
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wireless_fw_info_table,
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} = unsafe { &*(*TL_REF_TABLE.as_ptr()).device_info_table }.clone();
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let device_id = stm32_device_signature::device_id();
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let uid96_0 = (device_id[3] as u32) << 24
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| (device_id[2] as u32) << 16
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| (device_id[1] as u32) << 8
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| device_id[0] as u32;
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let uid96_1 = (device_id[7] as u32) << 24
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| (device_id[6] as u32) << 16
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| (device_id[5] as u32) << 8
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| device_id[4] as u32;
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let uid96_2 = (device_id[11] as u32) << 24
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| (device_id[10] as u32) << 16
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| (device_id[9] as u32) << 8
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| device_id[8] as u32;
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let package_type = unsafe { *PACKAGE_DATA_PTR };
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let uid64 = unsafe { *UID64_PTR };
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let st_company_id = unsafe { *UID64_PTR.offset(1) } >> 8 & 0x00FF_FFFF;
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let device_type_id = (unsafe { *UID64_PTR.offset(1) } & 0x000000FF) as u8;
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LhciC1DeviceInformationCcrp {
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status: 0,
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rev_id: 0,
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dev_code_id: 0,
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package_type,
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device_type_id,
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st_company_id,
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uid64,
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uid96_0,
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uid96_1,
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uid96_2,
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safe_boot_info_table,
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rss_info_table,
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wireless_fw_info_table,
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app_fw_inf: (1 << 8), // 0.0.1
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}
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}
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}
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impl LhciC1DeviceInformationCcrp {
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pub fn new() -> Self {
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Self::default()
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}
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pub fn write(&self, cmd_packet: &mut CmdPacket) {
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let self_size = core::mem::size_of::<LhciC1DeviceInformationCcrp>();
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unsafe {
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let cmd_packet_ptr: *mut CmdPacket = cmd_packet;
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let evet_packet_ptr: *mut EvtPacket = cmd_packet_ptr.cast();
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let evt_serial: *mut EvtSerial = &mut (*evet_packet_ptr).evt_serial;
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let evt_payload = (*evt_serial).evt.payload.as_mut_ptr();
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let evt_cc: *mut CcEvt = evt_payload.cast();
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let evt_cc_payload_buf = (*evt_cc).payload.as_mut_ptr();
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(*evt_serial).kind = TlPacketType::LocRsp as u8;
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(*evt_serial).evt.evt_code = TL_BLEEVT_CC_OPCODE;
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(*evt_serial).evt.payload_len = TL_EVT_HEADER_SIZE as u8 + self_size as u8;
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(*evt_cc).cmd_code = LHCI_OPCODE_C1_DEVICE_INF;
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(*evt_cc).num_cmd = 1;
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let self_ptr: *const LhciC1DeviceInformationCcrp = self;
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let self_buf = self_ptr.cast();
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core::ptr::copy(self_buf, evt_cc_payload_buf, self_size);
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}
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}
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}
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@ -1,4 +1,5 @@
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#![no_std]
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#![cfg_attr(feature = "ble", feature(async_fn_in_trait))]
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// This must go FIRST so that all the other modules see its macros.
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pub mod fmt;
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@ -21,6 +22,7 @@ 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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pub mod lhci;
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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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@ -1,6 +1,6 @@
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[target.'cfg(all(target_arch = "arm", target_os = "none"))']
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# replace STM32WB55CCUx with your chip as listed in `probe-rs-cli chip list`
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# runner = "probe-rs-cli run --chip STM32WB55CCUx --speed 1000 --connect-under-reset"
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# runner = "probe-rs-cli run --chip STM32WB55RGVx --speed 1000 --connect-under-reset"
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runner = "teleprobe local run --chip STM32WB55RG --elf"
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[build]
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@ -34,3 +34,7 @@ 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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[[bin]]
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name = "eddystone_beacon"
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required-features = ["ble"]
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examples/stm32wb/src/bin/eddystone_beacon.rs
Normal file
249
examples/stm32wb/src/bin/eddystone_beacon.rs
Normal file
@ -0,0 +1,249 @@
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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 core::time::Duration;
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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::ble::hci::host::uart::UartHci;
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use embassy_stm32_wpan::ble::hci::host::{AdvertisingFilterPolicy, EncryptionKey, HostHci, OwnAddressType};
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use embassy_stm32_wpan::ble::hci::types::AdvertisingType;
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use embassy_stm32_wpan::ble::hci::vendor::stm32wb::command::gap::{
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AdvertisingDataType, DiscoverableParameters, GapCommands, Role,
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};
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use embassy_stm32_wpan::ble::hci::vendor::stm32wb::command::gatt::GattCommands;
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use embassy_stm32_wpan::ble::hci::vendor::stm32wb::command::hal::{ConfigData, HalCommands, PowerLevel};
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use embassy_stm32_wpan::ble::hci::BdAddr;
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use embassy_stm32_wpan::lhci::LhciC1DeviceInformationCcrp;
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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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const BLE_GAP_DEVICE_NAME_LENGTH: u8 = 7;
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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 mut 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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info!("resetting BLE...");
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mbox.ble_subsystem.reset().await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("config public address...");
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mbox.ble_subsystem
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.write_config_data(&ConfigData::public_address(get_bd_addr()).build())
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.await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("config random address...");
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mbox.ble_subsystem
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.write_config_data(&ConfigData::random_address(get_random_addr()).build())
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.await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("config identity root...");
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mbox.ble_subsystem
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.write_config_data(&ConfigData::identity_root(&get_irk()).build())
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.await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("config encryption root...");
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mbox.ble_subsystem
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.write_config_data(&ConfigData::encryption_root(&get_erk()).build())
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.await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("config tx power level...");
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mbox.ble_subsystem.set_tx_power_level(PowerLevel::ZerodBm).await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("GATT init...");
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mbox.ble_subsystem.init_gatt().await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("GAP init...");
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mbox.ble_subsystem
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.init_gap(Role::PERIPHERAL, false, BLE_GAP_DEVICE_NAME_LENGTH)
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.await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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// info!("set scan response...");
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// mbox.ble_subsystem.le_set_scan_response_data(&[]).await.unwrap();
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// let response = mbox.ble_subsystem.read().await.unwrap();
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// defmt::info!("{}", response);
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info!("set discoverable...");
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mbox.ble_subsystem
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.set_discoverable(&DiscoverableParameters {
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advertising_type: AdvertisingType::NonConnectableUndirected,
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advertising_interval: Some((Duration::from_millis(250), Duration::from_millis(250))),
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address_type: OwnAddressType::Public,
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filter_policy: AdvertisingFilterPolicy::AllowConnectionAndScan,
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local_name: None,
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advertising_data: &[],
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conn_interval: (None, None),
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})
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.await
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.unwrap();
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let response = mbox.ble_subsystem.read().await;
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defmt::info!("{}", response);
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// remove some advertisement to decrease the packet size
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info!("delete tx power ad type...");
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mbox.ble_subsystem
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.delete_ad_type(AdvertisingDataType::TxPowerLevel)
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.await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("delete conn interval ad type...");
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mbox.ble_subsystem
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.delete_ad_type(AdvertisingDataType::PeripheralConnectionInterval)
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.await;
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("update advertising data...");
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mbox.ble_subsystem
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.update_advertising_data(&eddystone_advertising_data())
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.await
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.unwrap();
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let response = mbox.ble_subsystem.read().await.unwrap();
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defmt::info!("{}", response);
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info!("update advertising data type...");
|
||||
mbox.ble_subsystem
|
||||
.update_advertising_data(&[3, AdvertisingDataType::UuidCompleteList16 as u8, 0xaa, 0xfe])
|
||||
.await
|
||||
.unwrap();
|
||||
let response = mbox.ble_subsystem.read().await.unwrap();
|
||||
defmt::info!("{}", response);
|
||||
|
||||
info!("update advertising data flags...");
|
||||
mbox.ble_subsystem
|
||||
.update_advertising_data(&[
|
||||
2,
|
||||
AdvertisingDataType::Flags as u8,
|
||||
(0x02 | 0x04) as u8, // BLE general discoverable, without BR/EDR support
|
||||
])
|
||||
.await
|
||||
.unwrap();
|
||||
let response = mbox.ble_subsystem.read().await.unwrap();
|
||||
defmt::info!("{}", response);
|
||||
|
||||
cortex_m::asm::wfi();
|
||||
}
|
||||
|
||||
fn get_bd_addr() -> BdAddr {
|
||||
let mut bytes = [0u8; 6];
|
||||
|
||||
let lhci_info = LhciC1DeviceInformationCcrp::new();
|
||||
bytes[0] = (lhci_info.uid64 & 0xff) as u8;
|
||||
bytes[1] = ((lhci_info.uid64 >> 8) & 0xff) as u8;
|
||||
bytes[2] = ((lhci_info.uid64 >> 16) & 0xff) as u8;
|
||||
bytes[3] = lhci_info.device_type_id;
|
||||
bytes[4] = (lhci_info.st_company_id & 0xff) as u8;
|
||||
bytes[5] = (lhci_info.st_company_id >> 8 & 0xff) as u8;
|
||||
|
||||
BdAddr(bytes)
|
||||
}
|
||||
|
||||
fn get_random_addr() -> BdAddr {
|
||||
let mut bytes = [0u8; 6];
|
||||
|
||||
let lhci_info = LhciC1DeviceInformationCcrp::new();
|
||||
bytes[0] = (lhci_info.uid64 & 0xff) as u8;
|
||||
bytes[1] = ((lhci_info.uid64 >> 8) & 0xff) as u8;
|
||||
bytes[2] = ((lhci_info.uid64 >> 16) & 0xff) as u8;
|
||||
bytes[3] = 0;
|
||||
bytes[4] = 0x6E;
|
||||
bytes[5] = 0xED;
|
||||
|
||||
BdAddr(bytes)
|
||||
}
|
||||
|
||||
const BLE_CFG_IRK: [u8; 16] = [
|
||||
0x12, 0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12, 0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0,
|
||||
];
|
||||
const BLE_CFG_ERK: [u8; 16] = [
|
||||
0xfe, 0xdc, 0xba, 0x09, 0x87, 0x65, 0x43, 0x21, 0xfe, 0xdc, 0xba, 0x09, 0x87, 0x65, 0x43, 0x21,
|
||||
];
|
||||
|
||||
fn get_irk() -> EncryptionKey {
|
||||
EncryptionKey(BLE_CFG_IRK)
|
||||
}
|
||||
|
||||
fn get_erk() -> EncryptionKey {
|
||||
EncryptionKey(BLE_CFG_ERK)
|
||||
}
|
||||
|
||||
fn eddystone_advertising_data() -> [u8; 24] {
|
||||
const EDDYSTONE_URL: &[u8] = b"www.rust-lang.com";
|
||||
|
||||
let mut service_data = [0u8; 24];
|
||||
let url_len = EDDYSTONE_URL.len();
|
||||
|
||||
service_data[0] = 6 + url_len as u8;
|
||||
service_data[1] = AdvertisingDataType::ServiceData as u8;
|
||||
|
||||
// 16-bit eddystone uuid
|
||||
service_data[2] = 0xaa;
|
||||
service_data[3] = 0xFE;
|
||||
|
||||
service_data[4] = 0x10; // URL frame type
|
||||
service_data[5] = 22_i8 as u8; // calibrated TX power at 0m
|
||||
service_data[6] = 0x03; // eddystone url prefix = https
|
||||
|
||||
service_data[7..(7 + url_len)].copy_from_slice(EDDYSTONE_URL);
|
||||
|
||||
service_data
|
||||
}
|
Loading…
Reference in New Issue
Block a user