log: inform itm issue
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93f3b2dfb3
commit
b4d425dc37
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@ -3,7 +3,6 @@ use embedded_hal::{
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blocking::spi::Transfer,
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blocking::spi::Transfer,
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blocking::delay::DelayUs,
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blocking::delay::DelayUs,
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};
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};
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use log::info;
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#[derive(Debug)]
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#[derive(Debug)]
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pub enum FPGAFlashError {
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pub enum FPGAFlashError {
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@ -85,10 +84,8 @@ pub fn flash_ice40_fpga<SPI: Transfer<u8>,
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_ => return Err(FPGAFlashError::ResetStatusError),
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_ => return Err(FPGAFlashError::ResetStatusError),
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};
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};
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info!("Configuration successful!");
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// Send at least another 49 clock cycles to activate IO pins (choosing same 13 bytes)
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// Send at least another 49 clock cycles to activate IO pins (choosing same 13 bytes)
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spi.transfer(&mut dummy_13_bytes).map_err(|_| FPGAFlashError::SPICommunicationError)?;
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spi.transfer(&mut dummy_13_bytes).map_err(|_| FPGAFlashError::SPICommunicationError)?;
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info!("User I/O pins activated.");
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Ok(())
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Ok(())
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}
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}
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@ -0,0 +1,78 @@
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// Enables ITM
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pub unsafe fn enable_itm(
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dbgmcu: &stm32h7xx_hal::stm32::DBGMCU,
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dcb: &mut cortex_m::peripheral::DCB,
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itm: &mut cortex_m::peripheral::ITM
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) {
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// ARMv7-M DEMCR: Set TRCENA. Enables DWT and ITM units
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//unsafe { *(0xE000_EDFC as *mut u32) |= 1 << 24 };
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dcb.enable_trace();
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// Ensure debug blocks are clocked before interacting with them
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dbgmcu.cr.modify(|_, w| {
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w.d1dbgcken()
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.set_bit()
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.d3dbgcken()
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.set_bit()
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.traceclken()
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.set_bit()
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.dbgsleep_d1()
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.set_bit()
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});
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// SWO: Unlock
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*(0x5c00_3fb0 as *mut u32) = 0xC5ACCE55;
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// SWTF: Unlock
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*(0x5c00_4fb0 as *mut u32) = 0xC5ACCE55;
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// SWO CODR Register: Set SWO speed
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*(0x5c00_3010 as *mut _) = 200;
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// SWO SPPR Register:
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// 1 = Manchester
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// 2 = NRZ
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*(0x5c00_30f0 as *mut _) = 2;
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// SWTF Trace Funnel: Enable for CM7
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*(0x5c00_4000 as *mut u32) |= 1;
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// ITM: Unlock
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itm.lar.write(0xC5ACCE55);
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// ITM Trace Enable Register: Enable lower 8 stimulus ports
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itm.ter[0].write(1);
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// ITM Trace Control Register: Enable ITM
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itm.tcr.write(
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(0b000001 << 16) | // TraceBusID
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(1 << 3) | // enable SWO output
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(1 << 0), // enable the ITM
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);
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}
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use panic_itm as _;
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use lazy_static::lazy_static;
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use log::LevelFilter;
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pub use cortex_m_log::log::Logger;
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use cortex_m_log::{
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destination::Itm as ItmDest,
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printer::itm::InterruptSync,
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modes::InterruptFree,
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printer::itm::ItmSync
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};
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lazy_static! {
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static ref LOGGER: Logger<ItmSync<InterruptFree>> = Logger {
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level: LevelFilter::Trace,
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inner: unsafe {
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InterruptSync::new(
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ItmDest::new(cortex_m::Peripherals::steal().ITM)
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)
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},
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};
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}
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pub fn init() {
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cortex_m_log::log::init(&LOGGER).unwrap();
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}
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64
src/main.rs
64
src/main.rs
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@ -37,7 +37,6 @@ use crate::mqtt_mux::MqttMux;
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pub mod urukul;
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pub mod urukul;
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use crate::urukul::Urukul;
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use crate::urukul::Urukul;
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#[path = "../examples/util/logger.rs"]
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mod logger;
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mod logger;
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static mut NET_STORE: NetStorage = NetStorage {
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static mut NET_STORE: NetStorage = NetStorage {
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@ -74,15 +73,15 @@ fn main() -> ! {
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let mut cp = cortex_m::Peripherals::take().unwrap();
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let mut cp = cortex_m::Peripherals::take().unwrap();
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let dp = pac::Peripherals::take().unwrap();
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let dp = pac::Peripherals::take().unwrap();
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cp.DWT.enable_cycle_counter();
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unsafe {
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logger::enable_itm(&dp.DBGMCU, &mut cp.DCB, &mut cp.ITM);
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}
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logger::init();
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// Enable SRAM3 for the descriptor ring.
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// Enable SRAM3 for the descriptor ring.
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dp.RCC.ahb2enr.modify(|_, w| w.sram3en().set_bit());
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dp.RCC.ahb2enr.modify(|_, w| w.sram3en().set_bit());
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// Reset RCC clock
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// // Reset RCC clock
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dp.RCC.rsr.write(|w| w.rmvf().set_bit());
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// dp.RCC.rsr.write(|w| w.rmvf().set_bit());
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cp.SCB.invalidate_icache();
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cp.SCB.enable_icache();
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let pwr = dp.PWR.constrain();
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let pwr = dp.PWR.constrain();
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let vos = pwr.freeze();
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let vos = pwr.freeze();
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@ -95,13 +94,13 @@ fn main() -> ! {
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.pll1_q_ck(48.mhz())
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.pll1_q_ck(48.mhz())
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.pll1_r_ck(400.mhz())
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.pll1_r_ck(400.mhz())
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.freeze(vos, &dp.SYSCFG);
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.freeze(vos, &dp.SYSCFG);
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// unsafe {
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// logger::enable_itm(&dp.DBGMCU, &mut cp.DCB, &mut cp.ITM);
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// }
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// logger::init();
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let mut delay = cp.SYST.delay(ccdr.clocks);
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let delay = cp.SYST.delay(ccdr.clocks);
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cp.SCB.invalidate_icache();
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cp.SCB.enable_icache();
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cp.DWT.enable_cycle_counter();
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let gpioa = dp.GPIOA.split(ccdr.peripheral.GPIOA);
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let gpioa = dp.GPIOA.split(ccdr.peripheral.GPIOA);
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let gpiob = dp.GPIOB.split(ccdr.peripheral.GPIOB);
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let gpiob = dp.GPIOB.split(ccdr.peripheral.GPIOB);
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@ -110,12 +109,13 @@ fn main() -> ! {
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let gpioe = dp.GPIOE.split(ccdr.peripheral.GPIOE);
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let gpioe = dp.GPIOE.split(ccdr.peripheral.GPIOE);
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let gpiof = dp.GPIOF.split(ccdr.peripheral.GPIOF);
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let gpiof = dp.GPIOF.split(ccdr.peripheral.GPIOF);
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let gpiog = dp.GPIOG.split(ccdr.peripheral.GPIOG);
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let gpiog = dp.GPIOG.split(ccdr.peripheral.GPIOG);
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gpiob.pb3.into_alternate_af0().set_speed(Speed::VeryHigh);
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// trace!("Flashing configuration bitstream to iCE40 HX8K on Humpback.");
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// Note: ITM doesn't work beyond this, due to a pin conflict between:
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// delay.delay_ms(1000_u16);
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// - FPGA_SPI: SCK (af5)
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/*
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// - ST_LINK SWO (af0)
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// Both demands PB3
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trace!("Flashing configuration bitstream to iCE40 HX8K on Humpback.");
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// Using SPI_1 alternate functions (af5)
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// Using SPI_1 alternate functions (af5)
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let fpga_sck = gpiob.pb3.into_alternate_af5();
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let fpga_sck = gpiob.pb3.into_alternate_af5();
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let fpga_sdo = gpiob.pb4.into_alternate_af5();
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let fpga_sdo = gpiob.pb4.into_alternate_af5();
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@ -138,7 +138,7 @@ fn main() -> ! {
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);
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);
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flash_ice40_fpga(fpga_cfg_spi, fpga_ss, fpga_creset, fpga_cdone, delay).unwrap();
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flash_ice40_fpga(fpga_cfg_spi, fpga_ss, fpga_creset, fpga_cdone, delay).unwrap();
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*/
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// Configure ethernet IO
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// Configure ethernet IO
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{
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{
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let _rmii_refclk = gpioa.pa1.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_refclk = gpioa.pa1.into_alternate_af11().set_speed(Speed::VeryHigh);
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@ -207,7 +207,7 @@ fn main() -> ! {
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let spi = dp.SPI6.spi(
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let spi = dp.SPI6.spi(
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(sclk, miso, mosi),
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(sclk, miso, mosi),
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spi::MODE_0,
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spi::MODE_0,
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2.mhz(),
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10.mhz(),
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ccdr.peripheral.SPI6,
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ccdr.peripheral.SPI6,
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&ccdr.clocks,
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&ccdr.clocks,
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);
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);
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@ -218,14 +218,9 @@ fn main() -> ! {
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let mut urukul = Urukul::new(
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let mut urukul = Urukul::new(
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parts.spi1, parts.spi2, parts.spi3, parts.spi4, parts.spi5, parts.spi6, parts.spi7
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parts.spi1, parts.spi2, parts.spi3, parts.spi4, parts.spi5, parts.spi6, parts.spi7
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);
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);
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unsafe {
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logger::enable_itm(&dp.DBGMCU, &mut cp.DCB, &mut cp.ITM);
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}
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logger::init();
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urukul.reset().unwrap();
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urukul.reset().unwrap();
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info!("Test value: {}", urukul.test().unwrap());
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// info!("Test value: {}", urukul.test().unwrap());
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let mut mqtt_mux = MqttMux::new(urukul);
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let mut mqtt_mux = MqttMux::new(urukul);
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@ -248,7 +243,7 @@ fn main() -> ! {
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// Probably fixed in latest smoltcp commit
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// Probably fixed in latest smoltcp commit
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let mut client = MqttClient::<consts::U256, _>::new(
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let mut client = MqttClient::<consts::U256, _>::new(
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IpAddr::V4(Ipv4Addr::new(192, 168, 1, 125)),
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IpAddr::V4(Ipv4Addr::new(192, 168, 1, 125)),
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"Nucleo",
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"Urukul",
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tcp_stack,
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tcp_stack,
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)
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)
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.unwrap();
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.unwrap();
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@ -274,22 +269,25 @@ fn main() -> ! {
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// Process MQTT messages about Urukul/Control
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// Process MQTT messages about Urukul/Control
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let connection = client
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let connection = client
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.poll(|_client, topic, message, _properties| {
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.poll(|_client, topic, message, _properties| {
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info!("On {:?}, received: {:?}", topic, message);
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// info!("On {:?}, received: {:?}", topic, message);
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// Why is topic a string while message is a slice?
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// Why is topic a string while message is a slice?
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mqtt_mux.process_mqtt(topic, message);
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mqtt_mux.process_mqtt(topic, message).is_ok();
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}).is_ok();
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}).is_ok();
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if connection && !has_subscribed && tick {
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if connection && !has_subscribed && tick {
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match client.subscribe("Urukul/Control/#", &[]) {
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match client.subscribe("Urukul/Control/#", &[]) {
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Ok(()) => has_subscribed = true,
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Ok(()) => has_subscribed = true,
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Err(minimq::Error::NotReady) => warn!("Minimq is not ready"),
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Err(minimq::Error::NotReady) => {},
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e => warn!("{:?}", e),
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_e => {},
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};
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};
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}
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}
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if connection && tick && (time % 3000) == 0 {
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if connection && tick && (time % 3000) == 0 {
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info!("Feedback from print publish: {:?}", client
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client.publish("Urukul/Channel1/Switch", mqtt_mux
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.publish("Channel1/Switch", mqtt_mux.get_switch_status_message(1).unwrap().as_bytes(), QoS::AtMostOnce, &[]));
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.get_switch_status_message(1)
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.unwrap()
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.as_bytes(), QoS::AtMostOnce, &[])
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.unwrap();
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}
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}
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// Reset tick flag
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// Reset tick flag
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