Align H7 family
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@ -1,13 +1,19 @@
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use core::convert::TryInto;
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use core::convert::TryInto;
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use core::mem::size_of;
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use core::ptr::write_volatile;
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use core::ptr::write_volatile;
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use super::{FlashRegion, FLASH_SIZE};
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use crate::flash::Error;
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use crate::flash::Error;
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use crate::pac;
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use crate::pac;
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const WRITE_SIZE: usize = super::BANK1::WRITE_SIZE;
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const ERASE_SIZE: usize = super::BANK1::ERASE_SIZE;
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pub(crate) const MAX_WRITE_SIZE: usize = WRITE_SIZE;
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pub(crate) const MAX_ERASE_SIZE: usize = ERASE_SIZE;
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const SECOND_BANK_OFFSET: usize = 0x0010_0000;
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const SECOND_BANK_OFFSET: usize = 0x0010_0000;
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const fn is_dual_bank() -> bool {
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const fn is_dual_bank() -> bool {
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super::FLASH_SIZE / 2 > super::ERASE_SIZE
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FLASH_SIZE / 2 > ERASE_SIZE
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}
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}
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pub(crate) unsafe fn lock() {
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pub(crate) unsafe fn lock() {
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@ -27,8 +33,8 @@ pub(crate) unsafe fn unlock() {
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}
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}
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}
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}
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pub(crate) unsafe fn blocking_write(offset: u32, buf: &[u8]) -> Result<(), Error> {
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pub(crate) unsafe fn blocking_write(first_address: u32, buf: &[u8]) -> Result<(), Error> {
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let bank = if !is_dual_bank() || (offset - super::FLASH_BASE as u32) < SECOND_BANK_OFFSET as u32 {
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let bank = if !is_dual_bank() || (first_address - super::FLASH_BASE as u32) < SECOND_BANK_OFFSET as u32 {
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pac::FLASH.bank(0)
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pac::FLASH.bank(0)
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} else {
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} else {
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pac::FLASH.bank(1)
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pac::FLASH.bank(1)
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@ -45,12 +51,13 @@ pub(crate) unsafe fn blocking_write(offset: u32, buf: &[u8]) -> Result<(), Error
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let ret = {
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let ret = {
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let mut ret: Result<(), Error> = Ok(());
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let mut ret: Result<(), Error> = Ok(());
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let mut offset = offset;
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let mut address = first_address;
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'outer: for chunk in buf.chunks(super::WRITE_SIZE) {
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'outer: for chunk in buf.chunks(WRITE_SIZE) {
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for val in chunk.chunks(4) {
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let vals = chunk.chunks_exact(size_of::<u32>());
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trace!("Writing at {:x}", offset);
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assert!(vals.remainder().is_empty());
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write_volatile(offset as *mut u32, u32::from_le_bytes(val[0..4].try_into().unwrap()));
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for val in vals {
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offset += val.len() as u32;
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write_volatile(address as *mut u32, u32::from_le_bytes(val.try_into().unwrap()));
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address += val.len() as u32;
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ret = blocking_wait_ready(bank);
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ret = blocking_wait_ready(bank);
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bank.sr().modify(|w| {
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bank.sr().modify(|w| {
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@ -76,20 +83,10 @@ pub(crate) unsafe fn blocking_write(offset: u32, buf: &[u8]) -> Result<(), Error
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}
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}
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pub(crate) unsafe fn blocking_erase(from: u32, to: u32) -> Result<(), Error> {
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pub(crate) unsafe fn blocking_erase(from: u32, to: u32) -> Result<(), Error> {
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let from = from - super::FLASH_BASE as u32;
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let start_sector = (from - super::FLASH_BASE as u32) / ERASE_SIZE as u32;
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let to = to - super::FLASH_BASE as u32;
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let end_sector = (to - super::FLASH_BASE as u32) / ERASE_SIZE as u32;
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let (start, end) = if to <= super::FLASH_SIZE as u32 {
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for sector in start_sector..end_sector {
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let start_sector = from / super::ERASE_SIZE as u32;
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let end_sector = to / super::ERASE_SIZE as u32;
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(start_sector, end_sector)
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} else {
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error!("Attempting to write outside of defined sectors {:x} {:x}", from, to);
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return Err(Error::Unaligned);
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};
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trace!("Erasing sectors from {} to {}", start, end);
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for sector in start..end {
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let bank = if sector >= 8 { 1 } else { 0 };
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let bank = if sector >= 8 { 1 } else { 0 };
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let ret = erase_sector(pac::FLASH.bank(bank), (sector % 8) as u8);
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let ret = erase_sector(pac::FLASH.bank(bank), (sector % 8) as u8);
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if ret.is_err() {
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if ret.is_err() {
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