forked from M-Labs/zynq-rs
168 lines
4.6 KiB
Rust
168 lines
4.6 KiB
Rust
#![no_std]
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#![no_main]
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extern crate alloc;
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extern crate log;
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mod netboot;
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use alloc::rc::Rc;
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use core::mem;
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use core_io::{Read, Seek};
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use libboard_zynq::{
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self as zynq,
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clocks::source::{ArmPll, ClockSource, IoPll},
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clocks::Clocks,
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logger, println, sdio, slcr,
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timer::GlobalTimer,
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};
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use libconfig::{bootgen, sd_reader, Config};
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use libcortex_a9::{
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asm::{dsb, isb},
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cache::{bpiall, dcciall, iciallu},
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l2c::enable_l2_cache,
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};
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use libregister::RegisterR;
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use libsupport_zynq::ram;
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use log::info;
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extern "C" {
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static mut __runtime_start: usize;
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static mut __runtime_end: usize;
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}
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fn boot_sd<File: Read + Seek>(
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file: &mut Option<File>,
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runtime_start: *mut u8,
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runtime_max: usize,
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) -> Result<(), ()> {
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if file.is_none() {
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log::error!("No bootgen file");
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return Err(());
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}
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let mut file = file.as_mut().unwrap();
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info!("Loading gateware");
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bootgen::load_bitstream(&mut file).map_err(|e| log::error!("Cannot load gateware: {:?}", e))?;
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info!("Loading runtime");
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let runtime =
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bootgen::get_runtime(&mut file).map_err(|e| log::error!("Cannot load runtime: {:?}", e))?;
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if runtime.len() > runtime_max {
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log::error!(
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"Runtime binary too large, max {} but got {}",
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runtime_max,
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runtime.len()
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);
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}
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unsafe {
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let target = core::slice::from_raw_parts_mut(runtime_start, runtime.len());
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target.copy_from_slice(&runtime);
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}
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Ok(())
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}
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#[no_mangle]
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pub fn main_core0() {
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GlobalTimer::start();
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logger::init().unwrap();
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log::set_max_level(log::LevelFilter::Debug);
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println!(
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r#"
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__________ __
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/ ___/__ / / /
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\__ \ / / / /
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___/ / / /__/ /___
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/____/ /____/_____/
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(C) 2020 M-Labs
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"#
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);
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info!("Simple Zynq Loader starting...");
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enable_l2_cache();
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const CPU_FREQ: u32 = 800_000_000;
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ArmPll::setup(2 * CPU_FREQ);
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Clocks::set_cpu_freq(CPU_FREQ);
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IoPll::setup(1_000_000_000);
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libboard_zynq::stdio::drop_uart(); // reinitialize UART after clocking change
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let mut ddr = zynq::ddr::DdrRam::ddrram();
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ram::init_alloc_core0();
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let sdio0 = sdio::Sdio::sdio0(true);
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let fs = if sdio0.is_card_inserted() {
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info!("Card inserted. Mounting file system.");
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let sd = sdio::sd_card::SdCard::from_sdio(sdio0).unwrap();
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let reader = sd_reader::SdReader::new(sd);
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reader
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.mount_fatfs(sd_reader::PartitionEntry::Entry1)
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.map(|v| Rc::new(v))
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.ok()
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} else {
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info!("No SD card inserted.");
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None
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};
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let fs_ref = fs.as_ref();
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let root_dir = fs_ref.map(|fs| fs.root_dir());
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let mut bootgen_file = root_dir.and_then(|root_dir| root_dir.open_file("/BOOT.BIN").ok());
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let config = Config::from_fs(fs.clone());
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unsafe {
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let max_len =
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&__runtime_end as *const usize as usize - &__runtime_start as *const usize as usize;
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match slcr::RegisterBlock::unlocked(|slcr| slcr.boot_mode.read().boot_mode_pins()) {
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slcr::BootModePins::Jtag => netboot::netboot(
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&mut bootgen_file,
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config,
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&mut __runtime_start as *mut usize as *mut u8,
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max_len,
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),
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slcr::BootModePins::SdCard => {
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if boot_sd(
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&mut bootgen_file,
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&mut __runtime_start as *mut usize as *mut u8,
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max_len,
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)
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.is_err()
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{
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log::error!("Error booting from SD card");
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log::info!("Fall back on netboot");
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netboot::netboot(
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&mut bootgen_file,
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config,
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&mut __runtime_start as *mut usize as *mut u8,
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max_len,
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)
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}
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}
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v => {
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panic!("Boot mode {:?} not supported", v);
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}
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};
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}
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info!("Preparing for runtime execution");
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// Flush data cache entries for all of L1 cache, including
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// Memory/Instruction Synchronization Barriers
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dcciall();
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iciallu();
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bpiall();
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dsb();
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isb();
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// Start core0 only, for compatibility with FSBL.
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info!("executing payload");
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unsafe {
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(mem::transmute::<*mut u8, fn()>(ddr.ptr::<u8>()))();
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}
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loop {}
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}
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#[no_mangle]
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pub fn main_core1() {
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panic!("core1 started but should not have");
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}
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