eeprom support
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d335e30901
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@ -11,6 +11,9 @@ use crate::Peri;
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use crate::_generated::FLASH_BASE;
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use crate::peripherals::FLASH;
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#[cfg(eeprom)]
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use crate::_generated::{EEPROM_BASE, EEPROM_SIZE};
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/// Internal flash memory driver.
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pub struct Flash<'d, MODE = Async> {
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pub(crate) inner: Peri<'d, FLASH>,
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@ -72,6 +75,100 @@ impl<'d, MODE> Flash<'d, MODE> {
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}
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}
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#[cfg(eeprom)]
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impl<'d> Flash<'d, Blocking> {
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fn eeprom_base(&self) -> u32 {
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EEPROM_BASE as u32
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}
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fn eeprom_size(&self) -> u32 {
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EEPROM_SIZE as u32
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}
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fn check_eeprom_offset(&self, offset: u32, size: u32) -> Result<(), Error> {
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if offset + size > self.eeprom_size() {
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Err(Error::Size)
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} else {
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Ok(())
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}
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}
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/// Read a byte (u8) from EEPROM at the given offset.
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pub fn eeprom_read_u8(&self, offset: u32) -> Result<u8, Error> {
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self.check_eeprom_offset(offset, 1)?;
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let addr = self.eeprom_base() + offset;
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Ok(unsafe { core::ptr::read_volatile(addr as *const u8) })
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}
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/// Read a half-word (u16) from EEPROM at the given offset.
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pub fn eeprom_read_u16(&self, offset: u32) -> Result<u16, Error> {
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if offset % 2 != 0 {
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return Err(Error::Unaligned);
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}
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self.check_eeprom_offset(offset, 2)?;
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let addr = self.eeprom_base() + offset;
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Ok(unsafe { core::ptr::read_volatile(addr as *const u16) })
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}
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/// Read a word (u32) from EEPROM at the given offset.
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pub fn eeprom_read_u32(&self, offset: u32) -> Result<u32, Error> {
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if offset % 4 != 0 {
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return Err(Error::Unaligned);
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}
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self.check_eeprom_offset(offset, 4)?;
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let addr = self.eeprom_base() + offset;
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Ok(unsafe { core::ptr::read_volatile(addr as *const u32) })
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}
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/// Write a byte (u8) to EEPROM at the given offset.
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pub fn eeprom_write_u8(&mut self, offset: u32, value: u8) -> Result<(), Error> {
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self.check_eeprom_offset(offset, 1)?;
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let addr = self.eeprom_base() + offset;
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unsafe {
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family::unlock();
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core::ptr::write_volatile(addr as *mut u8, value);
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family::wait_ready_blocking()?;
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family::clear_all_err();
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family::lock();
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}
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Ok(())
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}
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/// Write a half-word (u16) to EEPROM at the given offset.
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pub fn eeprom_write_u16(&mut self, offset: u32, value: u16) -> Result<(), Error> {
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if offset % 2 != 0 {
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return Err(Error::Unaligned);
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}
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self.check_eeprom_offset(offset, 2)?;
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let addr = self.eeprom_base() + offset;
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unsafe {
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family::unlock();
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core::ptr::write_volatile(addr as *mut u16, value);
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family::wait_ready_blocking()?;
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family::clear_all_err();
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family::lock();
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}
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Ok(())
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}
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/// Write a word (u32) to EEPROM at the given offset.
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pub fn eeprom_write_u32(&mut self, offset: u32, value: u32) -> Result<(), Error> {
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if offset % 4 != 0 {
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return Err(Error::Unaligned);
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}
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self.check_eeprom_offset(offset, 4)?;
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let addr = self.eeprom_base() + offset;
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unsafe {
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family::unlock();
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core::ptr::write_volatile(addr as *mut u32, value);
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family::wait_ready_blocking()?;
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family::clear_all_err();
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family::lock();
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}
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Ok(())
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}
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}
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pub(super) fn blocking_read(base: u32, size: u32, offset: u32, bytes: &mut [u8]) -> Result<(), Error> {
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if offset + bytes.len() as u32 > size {
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return Err(Error::Size);
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@ -162,7 +162,7 @@ pub(crate) unsafe fn clear_all_err() {
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pac::FLASH.nssr().modify(|_| {});
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}
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unsafe fn wait_ready_blocking() -> Result<(), Error> {
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pub(crate) unsafe fn wait_ready_blocking() -> Result<(), Error> {
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loop {
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#[cfg(not(flash_l5))]
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{
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