2020-09-22 16:03:43 +00:00
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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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#[path = "../example_common.rs"]
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mod example_common;
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use example_common::*;
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use cortex_m_rt::entry;
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use embassy::flash::Flash;
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use embassy_nrf::qspi;
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use nrf52840_hal::gpio;
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2020-09-24 20:04:45 +00:00
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use static_executor::{task, Executor};
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static EXECUTOR: Executor = Executor::new(|| cortex_m::asm::sev());
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2020-09-22 16:03:43 +00:00
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const PAGE_SIZE: usize = 4096;
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// Workaround for alignment requirements.
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// Nicer API will probably come in the future.
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#[repr(C, align(4))]
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struct AlignedBuf([u8; 4096]);
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2020-09-24 20:04:45 +00:00
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#[task]
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2020-09-22 16:03:43 +00:00
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async fn run() {
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let p = embassy_nrf::pac::Peripherals::take().dewrap();
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let port0 = gpio::p0::Parts::new(p.P0);
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let pins = qspi::Pins {
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csn: port0
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.p0_17
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.into_push_pull_output(gpio::Level::High)
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.degrade(),
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sck: port0
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.p0_19
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.into_push_pull_output(gpio::Level::High)
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.degrade(),
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io0: port0
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.p0_20
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.into_push_pull_output(gpio::Level::High)
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.degrade(),
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io1: port0
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.p0_21
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.into_push_pull_output(gpio::Level::High)
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.degrade(),
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io2: Some(
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port0
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.p0_22
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.into_push_pull_output(gpio::Level::High)
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.degrade(),
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),
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io3: Some(
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port0
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.p0_23
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.into_push_pull_output(gpio::Level::High)
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.degrade(),
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),
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};
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let config = qspi::Config {
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pins,
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read_opcode: qspi::ReadOpcode::READ4IO,
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write_opcode: qspi::WriteOpcode::PP4IO,
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xip_offset: 0,
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write_page_size: qspi::WritePageSize::_256BYTES,
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};
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let mut q = qspi::Qspi::new(p.QSPI, config);
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let mut id = [1; 3];
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q.custom_instruction(0x9F, &[], &mut id).await.unwrap();
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info!("id: {:[u8]}", id);
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// Read status register
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let mut status = [0; 1];
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q.custom_instruction(0x05, &[], &mut status).await.unwrap();
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info!("status: {:?}", status[0]);
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if status[0] & 0x40 == 0 {
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status[0] |= 0x40;
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q.custom_instruction(0x01, &status, &mut []).await.unwrap();
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info!("enabled quad in status");
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}
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let mut buf = AlignedBuf([0u8; PAGE_SIZE]);
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let pattern = |a: u32| (a ^ (a >> 8) ^ (a >> 16) ^ (a >> 24)) as u8;
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for i in 0..8 {
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info!("page {:?}: erasing... ", i);
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q.erase(i * PAGE_SIZE).await.unwrap();
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for j in 0..PAGE_SIZE {
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buf.0[j] = pattern((j + i * PAGE_SIZE) as u32);
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}
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info!("programming...");
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q.write(i * PAGE_SIZE, &buf.0).await.unwrap();
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}
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for i in 0..8 {
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info!("page {:?}: reading... ", i);
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q.read(i * PAGE_SIZE, &mut buf.0).await.unwrap();
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info!("verifying...");
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for j in 0..PAGE_SIZE {
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assert_eq!(buf.0[j], pattern((j + i * PAGE_SIZE) as u32));
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}
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}
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info!("done!")
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}
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#[entry]
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fn main() -> ! {
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info!("Hello World!");
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unsafe {
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2020-09-24 20:04:45 +00:00
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EXECUTOR.spawn(run()).dewrap();
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loop {
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EXECUTOR.run();
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cortex_m::asm::wfe();
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}
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2020-09-22 16:03:43 +00:00
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}
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}
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