182 lines
5.7 KiB
Rust
182 lines
5.7 KiB
Rust
use alloc::vec::Vec;
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use core_io::{Error, Read, Seek, SeekFrom};
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use libboard_zynq::devc;
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use log::debug;
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#[derive(Debug)]
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pub enum BootgenLoadingError {
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InvalidBootImageHeader,
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MissingPartition,
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EncryptedBitstream,
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IoError(Error),
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DevcError(devc::DevcError),
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}
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impl From<Error> for BootgenLoadingError {
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fn from(error: Error) -> Self {
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BootgenLoadingError::IoError(error)
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}
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}
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impl From<devc::DevcError> for BootgenLoadingError {
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fn from(error: devc::DevcError) -> Self {
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BootgenLoadingError::DevcError(error)
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}
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}
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impl core::fmt::Display for BootgenLoadingError {
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fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
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use BootgenLoadingError::*;
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match self {
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InvalidBootImageHeader => write!(
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f,
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"Invalid boot image header. Check if the file is correct."
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),
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MissingPartition => write!(f, "Partition not found. Check your compile configuration."),
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EncryptedBitstream => write!(f, "Encrypted bitstream is not supported."),
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IoError(e) => write!(f, "Error while reading: {}", e),
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DevcError(e) => write!(f, "PCAP interface error: {}", e),
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}
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}
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}
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#[repr(C)]
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struct PartitionHeader {
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pub encrypted_length: u32,
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pub unencrypted_length: u32,
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pub word_length: u32,
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pub dest_load_addr: u32,
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pub dest_exec_addr: u32,
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pub data_offset: u32,
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pub attribute_bits: u32,
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pub section_count: u32,
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pub checksum_offset: u32,
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pub header_offset: u32,
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pub cert_offset: u32,
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pub reserved: [u32; 4],
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pub checksum: u32,
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}
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/// Read a u32 word from the reader.
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fn read_u32<Reader: Read>(reader: &mut Reader) -> Result<u32, BootgenLoadingError> {
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let mut buffer: [u8; 4] = [0; 4];
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reader.read_exact(&mut buffer)?;
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let mut result: u32 = 0;
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for i in 0..4 {
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result |= (buffer[i] as u32) << (i * 8);
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}
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Ok(result)
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}
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/// Load PL partition header.
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fn load_pl_header<File: Read + Seek>(
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file: &mut File,
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) -> Result<Option<PartitionHeader>, BootgenLoadingError> {
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let mut buffer: [u8; 0x40] = [0; 0x40];
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file.read_exact(&mut buffer)?;
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let header = unsafe { core::mem::transmute::<_, PartitionHeader>(buffer) };
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if header.attribute_bits & (2 << 4) != 0 {
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Ok(Some(header))
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} else {
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Ok(None)
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}
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}
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fn load_ps_header<File: Read + Seek>(
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file: &mut File,
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) -> Result<Option<PartitionHeader>, BootgenLoadingError> {
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let mut buffer: [u8; 0x40] = [0; 0x40];
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file.read_exact(&mut buffer)?;
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let header = unsafe { core::mem::transmute::<_, PartitionHeader>(buffer) };
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if header.attribute_bits & (1 << 4) != 0 {
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Ok(Some(header))
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} else {
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Ok(None)
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}
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}
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/// Locate the partition from the image, and return the size (in bytes) of the partition if successful.
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/// This function would seek the file to the location of the partition.
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fn locate<
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File: Read + Seek,
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F: Fn(&mut File) -> Result<Option<PartitionHeader>, BootgenLoadingError>,
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>(
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file: &mut File,
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f: F,
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) -> Result<usize, BootgenLoadingError> {
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file.seek(SeekFrom::Start(0))?;
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const BOOT_HEADER_SIGN: u32 = 0x584C4E58;
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// read boot header signature
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file.seek(SeekFrom::Start(0x24))?;
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if read_u32(file)? != BOOT_HEADER_SIGN {
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return Err(BootgenLoadingError::InvalidBootImageHeader);
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}
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// find fsbl offset
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file.seek(SeekFrom::Start(0x30))?;
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// the length is in bytes, we have to convert it to words to compare with the partition offset
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// later
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let fsbl = read_u32(file)? / 4;
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// read partition header offset
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file.seek(SeekFrom::Start(0x9C))?;
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let ptr = read_u32(file)?;
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debug!("Partition header pointer = {:0X}", ptr);
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file.seek(SeekFrom::Start(ptr as u64))?;
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// at most 3 partition headers
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for _ in 0..3 {
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if let Some(header) = f(file)? {
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let encrypted_length = header.encrypted_length;
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let unencrypted_length = header.unencrypted_length;
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debug!("Unencrypted length = {:0X}", unencrypted_length);
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if encrypted_length != unencrypted_length {
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return Err(BootgenLoadingError::EncryptedBitstream);
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}
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let start_addr = header.data_offset;
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// skip fsbl
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if start_addr == fsbl {
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continue;
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}
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debug!("Partition start address: {:0X}", start_addr);
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file.seek(SeekFrom::Start(start_addr as u64 * 4))?;
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return Ok(unencrypted_length as usize * 4);
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}
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}
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Err(BootgenLoadingError::MissingPartition)
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}
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/// Load bitstream from bootgen file.
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/// This function parses the file, locate the bitstream and load it through the PCAP driver.
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/// It requires a large buffer, please enable the DDR RAM before using it.
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pub fn load_bitstream<File: Read + Seek>(file: &mut File) -> Result<(), BootgenLoadingError> {
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let size = locate(file, load_pl_header)?;
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unsafe {
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// align to 64 bytes
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let ptr = alloc::alloc::alloc(alloc::alloc::Layout::from_size_align(size, 64).unwrap());
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let buffer = core::slice::from_raw_parts_mut(ptr, size);
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file.read_exact(buffer).map_err(|e| {
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core::ptr::drop_in_place(ptr);
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e
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})?;
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let mut devcfg = devc::DevC::new();
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devcfg.enable();
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devcfg.program(&buffer).map_err(|e| {
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core::ptr::drop_in_place(ptr);
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e
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})?;
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core::ptr::drop_in_place(ptr);
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Ok(())
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}
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}
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pub fn get_runtime<File: Read + Seek>(file: &mut File) -> Result<Vec<u8>, BootgenLoadingError> {
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let size = locate(file, load_ps_header)?;
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let mut buffer = Vec::with_capacity(size);
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unsafe {
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buffer.set_len(size);
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}
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file.read_exact(&mut buffer)?;
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Ok(buffer)
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}
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