Files
aligned
as_slice
bare_metal
bitfield
block_buffer
block_cipher
cortex_m
cortex_m_rt
cortex_m_semihosting
digest
embedded_hal
generic_array
lpc55_hal
lpc55_pac
adc0
ahb_secure_ctrl
anactrl
casper
crc_engine
ctimer0
dbgmailbox
dma0
flash
flash_cfpa0
cmpa_prog_in_progress.rscustomer_defined.rsdcfg_cc_socu_dflt.rsdcfg_cc_socu_pin.rsenable_fa_mode.rsheader.rsimage_key_revoke.rsns_fw_version.rsprince_region0_iv_body0.rsprince_region0_iv_body1.rsprince_region0_iv_body10.rsprince_region0_iv_body11.rsprince_region0_iv_body2.rsprince_region0_iv_body3.rsprince_region0_iv_body4.rsprince_region0_iv_body5.rsprince_region0_iv_body6.rsprince_region0_iv_body7.rsprince_region0_iv_body8.rsprince_region0_iv_body9.rsprince_region0_iv_code0.rsprince_region0_iv_code1.rsprince_region0_iv_code10.rsprince_region0_iv_code11.rsprince_region0_iv_code12.rsprince_region0_iv_code13.rsprince_region0_iv_code2.rsprince_region0_iv_code3.rsprince_region0_iv_code4.rsprince_region0_iv_code5.rsprince_region0_iv_code6.rsprince_region0_iv_code7.rsprince_region0_iv_code8.rsprince_region0_iv_code9.rsprince_region0_iv_header0.rsprince_region0_iv_header1.rsprince_region1_iv_body0.rsprince_region1_iv_body1.rsprince_region1_iv_body10.rsprince_region1_iv_body11.rsprince_region1_iv_body2.rsprince_region1_iv_body3.rsprince_region1_iv_body4.rsprince_region1_iv_body5.rsprince_region1_iv_body6.rsprince_region1_iv_body7.rsprince_region1_iv_body8.rsprince_region1_iv_body9.rsprince_region1_iv_code0.rsprince_region1_iv_code1.rsprince_region1_iv_code10.rsprince_region1_iv_code11.rsprince_region1_iv_code12.rsprince_region1_iv_code13.rsprince_region1_iv_code2.rsprince_region1_iv_code3.rsprince_region1_iv_code4.rsprince_region1_iv_code5.rsprince_region1_iv_code6.rsprince_region1_iv_code7.rsprince_region1_iv_code8.rsprince_region1_iv_code9.rsprince_region1_iv_header0.rsprince_region1_iv_header1.rsprince_region2_iv_body0.rsprince_region2_iv_body1.rsprince_region2_iv_body10.rsprince_region2_iv_body11.rsprince_region2_iv_body2.rsprince_region2_iv_body3.rsprince_region2_iv_body4.rsprince_region2_iv_body5.rsprince_region2_iv_body6.rsprince_region2_iv_body7.rsprince_region2_iv_body8.rsprince_region2_iv_body9.rsprince_region2_iv_code0.rsprince_region2_iv_code1.rsprince_region2_iv_code10.rsprince_region2_iv_code11.rsprince_region2_iv_code12.rsprince_region2_iv_code13.rsprince_region2_iv_code2.rsprince_region2_iv_code3.rsprince_region2_iv_code4.rsprince_region2_iv_code5.rsprince_region2_iv_code6.rsprince_region2_iv_code7.rsprince_region2_iv_code8.rsprince_region2_iv_code9.rsprince_region2_iv_header0.rsprince_region2_iv_header1.rsrotkh_revoke.rss_fw_version.rssha256_digest.rsvendor_usage.rsversion.rs
flash_cmpa
flash_key_store
activation_code.rsheader.rsprince_region0_body0.rsprince_region0_body1.rsprince_region0_body10.rsprince_region0_body11.rsprince_region0_body2.rsprince_region0_body3.rsprince_region0_body4.rsprince_region0_body5.rsprince_region0_body6.rsprince_region0_body7.rsprince_region0_body8.rsprince_region0_body9.rsprince_region0_header0.rsprince_region0_header1.rsprince_region0_key_code0.rsprince_region0_key_code1.rsprince_region0_key_code10.rsprince_region0_key_code11.rsprince_region0_key_code12.rsprince_region0_key_code13.rsprince_region0_key_code2.rsprince_region0_key_code3.rsprince_region0_key_code4.rsprince_region0_key_code5.rsprince_region0_key_code6.rsprince_region0_key_code7.rsprince_region0_key_code8.rsprince_region0_key_code9.rsprince_region1_body0.rsprince_region1_body1.rsprince_region1_body10.rsprince_region1_body11.rsprince_region1_body2.rsprince_region1_body3.rsprince_region1_body4.rsprince_region1_body5.rsprince_region1_body6.rsprince_region1_body7.rsprince_region1_body8.rsprince_region1_body9.rsprince_region1_header0.rsprince_region1_header1.rsprince_region1_key_code0.rsprince_region1_key_code1.rsprince_region1_key_code10.rsprince_region1_key_code11.rsprince_region1_key_code12.rsprince_region1_key_code13.rsprince_region1_key_code2.rsprince_region1_key_code3.rsprince_region1_key_code4.rsprince_region1_key_code5.rsprince_region1_key_code6.rsprince_region1_key_code7.rsprince_region1_key_code8.rsprince_region1_key_code9.rsprince_region2_body0.rsprince_region2_body1.rsprince_region2_body10.rsprince_region2_body11.rsprince_region2_body2.rsprince_region2_body3.rsprince_region2_body4.rsprince_region2_body5.rsprince_region2_body6.rsprince_region2_body7.rsprince_region2_body8.rsprince_region2_body9.rsprince_region2_header0.rsprince_region2_header1.rsprince_region2_key_code0.rsprince_region2_key_code1.rsprince_region2_key_code10.rsprince_region2_key_code11.rsprince_region2_key_code12.rsprince_region2_key_code13.rsprince_region2_key_code2.rsprince_region2_key_code3.rsprince_region2_key_code4.rsprince_region2_key_code5.rsprince_region2_key_code6.rsprince_region2_key_code7.rsprince_region2_key_code8.rsprince_region2_key_code9.rspuf_discharge_time_in_ms.rssbkey_body0.rssbkey_body1.rssbkey_body10.rssbkey_body11.rssbkey_body2.rssbkey_body3.rssbkey_body4.rssbkey_body5.rssbkey_body6.rssbkey_body7.rssbkey_body8.rssbkey_body9.rssbkey_header0.rssbkey_header1.rssbkey_key_code0.rssbkey_key_code1.rssbkey_key_code10.rssbkey_key_code11.rssbkey_key_code12.rssbkey_key_code13.rssbkey_key_code2.rssbkey_key_code3.rssbkey_key_code4.rssbkey_key_code5.rssbkey_key_code6.rssbkey_key_code7.rssbkey_key_code8.rssbkey_key_code9.rsuds_body0.rsuds_body1.rsuds_body10.rsuds_body11.rsuds_body2.rsuds_body3.rsuds_body4.rsuds_body5.rsuds_body6.rsuds_body7.rsuds_body8.rsuds_body9.rsuds_header0.rsuds_header1.rsuds_key_code0.rsuds_key_code1.rsuds_key_code10.rsuds_key_code11.rsuds_key_code12.rsuds_key_code13.rsuds_key_code2.rsuds_key_code3.rsuds_key_code4.rsuds_key_code5.rsuds_key_code6.rsuds_key_code7.rsuds_key_code8.rsuds_key_code9.rsuser_kek_body0.rsuser_kek_body1.rsuser_kek_body10.rsuser_kek_body11.rsuser_kek_body2.rsuser_kek_body3.rsuser_kek_body4.rsuser_kek_body5.rsuser_kek_body6.rsuser_kek_body7.rsuser_kek_body8.rsuser_kek_body9.rsuser_kek_header0.rsuser_kek_header1.rsuser_kek_key_code0.rsuser_kek_key_code1.rsuser_kek_key_code10.rsuser_kek_key_code11.rsuser_kek_key_code12.rsuser_kek_key_code13.rsuser_kek_key_code2.rsuser_kek_key_code3.rsuser_kek_key_code4.rsuser_kek_key_code5.rsuser_kek_key_code6.rsuser_kek_key_code7.rsuser_kek_key_code8.rsuser_kek_key_code9.rs
flexcomm0
gint0
gpio
hashcrypt
i2c0
i2s0
inputmux
iocon
mailbox
mrt0
ostimer
pint
plu
pmc
powerquad
prince
puf
rng
rtc
sau
scn_scb
sct0
sdif
secgpio
spi0
syscon
adcclkdiv.rsadcclksel.rsahbclkctrl0.rsahbclkctrl1.rsahbclkctrl2.rsahbclkctrlclr.rsahbclkctrlset.rsahbclkdiv.rsahbmatprio.rsautoclkgateoverride.rsclkoutdiv.rsclkoutsel.rsclock_ctrl.rsclockgenupdatelockout.rscomp_int_ctrl.rscomp_int_status.rscpboot.rscpstat.rscpu0nstckcal.rscpu0stckcal.rscpu1stckcal.rscpucfg.rscpuctrl.rsctimerclksel0.rsctimerclksel1.rsctimerclksel2.rsctimerclksel3.rsctimerclksel4.rsctimerclkselx0.rsctimerclkselx1.rsctimerclkselx2.rsctimerclkselx3.rsctimerclkselx4.rsdebug_auth_beacon.rsdebug_features.rsdebug_features_dp.rsdebug_lock_en.rsdevice_id0.rsdieid.rsfcclksel0.rsfcclksel1.rsfcclksel2.rsfcclksel3.rsfcclksel4.rsfcclksel5.rsfcclksel6.rsfcclksel7.rsfcclkselx0.rsfcclkselx1.rsfcclkselx2.rsfcclkselx3.rsfcclkselx4.rsfcclkselx5.rsfcclkselx6.rsfcclkselx7.rsflexfrg0ctrl.rsflexfrg1ctrl.rsflexfrg2ctrl.rsflexfrg3ctrl.rsflexfrg4ctrl.rsflexfrg5ctrl.rsflexfrg6ctrl.rsflexfrg7ctrl.rsflexfrgxctrl0.rsflexfrgxctrl1.rsflexfrgxctrl2.rsflexfrgxctrl3.rsflexfrgxctrl4.rsflexfrgxctrl5.rsflexfrgxctrl6.rsflexfrgxctrl7.rsfmccr.rsfmcflush.rsfrohfdiv.rsgpiopsync.rshslspiclksel.rskey_block.rsmainclksela.rsmainclkselb.rsmclkclksel.rsmclkdiv.rsmclkio.rsmemoryremap.rsnmisrc.rspll0clkdiv.rspll0clksel.rspll0ctrl.rspll0ndec.rspll0pdec.rspll0sscg0.rspll0sscg1.rspll0stat.rspll1clksel.rspll1ctrl.rspll1mdec.rspll1ndec.rspll1pdec.rspll1stat.rspresetctrl0.rspresetctrl1.rspresetctrl2.rspresetctrlclr.rspresetctrlset.rssctclkdiv.rssctclksel.rssdioclkctrl.rssdioclkdiv.rssdioclksel.rsswr_reset.rssystickclkdiv0.rssystickclkdiv1.rssystickclksel0.rssystickclksel1.rssystickclkselx0.rssystickclkselx1.rstraceclkdiv.rstraceclksel.rsusb0clkdiv.rsusb0clksel.rsusb0needclkctrl.rsusb0needclkstat.rsusb1needclkctrl.rsusb1needclkstat.rswdtclkdiv.rs
sysctl
usart0
usb1
usbfsh
usbhsh
usbphy
utick0
wwdt
nb
r0
stable_deref_trait
typenum
usb_device
usbd_serial
vcell
void
volatile_register
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#![no_std]
pub use generic_array;
#[cfg(feature = "block-padding")]
pub use block_padding;

use core::{slice, convert::TryInto};
use generic_array::{GenericArray, ArrayLength};
#[cfg(feature = "block-padding")]
use block_padding::{Padding, PadError};

/// Buffer for block processing of data
#[derive(Clone, Default)]
pub struct BlockBuffer<BlockSize: ArrayLength<u8>>  {
    buffer: GenericArray<u8, BlockSize>,
    pos: usize,
}

impl<BlockSize: ArrayLength<u8>> BlockBuffer<BlockSize> {
    /// Process data in `input` in blocks of size `BlockSize` using function `f`.
    #[inline]
    pub fn input_block(
        &mut self, mut input: &[u8], mut f: impl FnMut(&GenericArray<u8, BlockSize>),
    ) {
        let r = self.remaining();
        if input.len() < r {
            let n = input.len();
            self.buffer[self.pos..self.pos + n].copy_from_slice(input);
            self.pos += n;
            return;
        }
        if self.pos != 0 && input.len() >= r {
            let (l, r) = input.split_at(r);
            input = r;
            self.buffer[self.pos..].copy_from_slice(l);
            f(&self.buffer);
        }

        let mut chunks_iter = input.chunks_exact(self.size());
        for chunk in &mut chunks_iter {
            f(chunk.try_into().unwrap());
        }
        let rem = chunks_iter.remainder();

        // Copy any remaining data into the buffer.
        self.buffer[..rem.len()].copy_from_slice(rem);
        self.pos = rem.len();
    }

    /// Process data in `input` in blocks of size `BlockSize` using function `f`, which accepts
    /// slice of blocks.
    #[inline]
    pub fn input_blocks(
        &mut self, mut input: &[u8], mut f: impl FnMut(&[GenericArray<u8, BlockSize>]),
    ) {
        let r = self.remaining();
        if input.len() < r {
            let n = input.len();
            self.buffer[self.pos..self.pos + n].copy_from_slice(input);
            self.pos += n;
            return;
        }
        if self.pos != 0 && input.len() >= r {
            let (l, r) = input.split_at(r);
            input = r;
            self.buffer[self.pos..].copy_from_slice(l);
            self.pos = 0;
            f(slice::from_ref(&self.buffer));
        }

        // While we have at least a full buffer size chunks's worth of data,
        // process its data without copying into the buffer
        let n_blocks = input.len()/self.size();
        let (left, right) = input.split_at(n_blocks*self.size());
        // SAFETY: we guarantee that `blocks` does not point outside of `input` 
        let blocks = unsafe {
            slice::from_raw_parts(
                left.as_ptr() as *const GenericArray<u8, BlockSize>,
                n_blocks,
            )
        };
        f(blocks);

        // Copy remaining data into the buffer.
        let n = right.len();
        self.buffer[..n].copy_from_slice(right);
        self.pos = n;
    }

    /// Variant that doesn't flush the buffer until there's additional
    /// data to be processed. Suitable for tweakable block ciphers
    /// like Threefish that need to know whether a block is the *last*
    /// data block before processing it.
    #[inline]
    pub fn input_lazy(
        &mut self, mut input: &[u8], mut f: impl FnMut(&GenericArray<u8, BlockSize>),
    ) {
        let r = self.remaining();
        if input.len() <= r {
            let n = input.len();
            self.buffer[self.pos..self.pos + n].copy_from_slice(input);
            self.pos += n;
            return;
        }
        if self.pos != 0 && input.len() > r {
            let (l, r) = input.split_at(r);
            input = r;
            self.buffer[self.pos..].copy_from_slice(l);
            f(&self.buffer);
        }

        while input.len() > self.size() {
            let (block, r) = input.split_at(self.size());
            input = r;
            f(block.try_into().unwrap());
        }

        self.buffer[..input.len()].copy_from_slice(input);
        self.pos = input.len();
    }

    /// Pad buffer with `prefix` and make sure that internall buffer
    /// has at least `up_to` free bytes. All remaining bytes get
    /// zeroed-out.
    #[inline]
    fn digest_pad(
        &mut self, up_to: usize, mut f: impl FnMut(&GenericArray<u8, BlockSize>),
    ) {
        if self.pos == self.size() {
            f(&self.buffer);
            self.pos = 0;
        }
        self.buffer[self.pos] = 0x80;
        self.pos += 1;

        set_zero(&mut self.buffer[self.pos..]);

        if self.remaining() < up_to {
            f(&self.buffer);
            set_zero(&mut self.buffer[..self.pos]);
        }
    }

    /// Pad message with 0x80, zeros and 64-bit message length
    /// using big-endian byte order
    #[inline]
    pub fn len64_padding_be(
        &mut self, data_len: u64, mut f: impl FnMut(&GenericArray<u8, BlockSize>),
    ) {
        self.digest_pad(8, &mut f);
        let b = data_len.to_be_bytes();
        let n = self.buffer.len() - b.len();
        self.buffer[n..].copy_from_slice(&b);
        f(&self.buffer);
        self.pos = 0;
    }

    /// Pad message with 0x80, zeros and 64-bit message length
    /// using little-endian byte order
    #[inline]
    pub fn len64_padding_le(
        &mut self, data_len: u64, mut f: impl FnMut(&GenericArray<u8, BlockSize>),
    ) {
        self.digest_pad(8, &mut f);
        let b = data_len.to_le_bytes();
        let n = self.buffer.len() - b.len();
        self.buffer[n..].copy_from_slice(&b);
        f(&self.buffer);
        self.pos = 0;
    }

    /// Pad message with 0x80, zeros and 128-bit message length
    /// using big-endian byte order
    #[inline]
    pub fn len128_padding_be(
        &mut self, data_len: u128, mut f: impl FnMut(&GenericArray<u8, BlockSize>),
    ) {
        self.digest_pad(16, &mut f);
        let b = data_len.to_be_bytes();
        let n = self.buffer.len() - b.len();
        self.buffer[n..].copy_from_slice(&b);
        f(&self.buffer);
        self.pos = 0;
    }

    /// Pad message with a given padding `P`
    ///
    /// Returns `PadError` if internall buffer is full, which can only happen if
    /// `input_lazy` was used.
    #[cfg(feature = "block-padding")]
    #[inline]
    pub fn pad_with<P: Padding>(&mut self)
        -> Result<&mut GenericArray<u8, BlockSize>, PadError>
    {
        P::pad_block(&mut self.buffer[..], self.pos)?;
        self.pos = 0;
        Ok(&mut self.buffer)
    }

    /// Return size of the internall buffer in bytes
    #[inline]
    pub fn size(&self) -> usize {
        BlockSize::to_usize()
    }

    /// Return current cursor position
    #[inline]
    pub fn position(&self) -> usize {
        self.pos
    }

    /// Return number of remaining bytes in the internall buffer
    #[inline]
    pub fn remaining(&self) -> usize {
        self.size() - self.pos
    }

    /// Reset buffer by setting cursor position to zero
    #[inline]
    pub fn reset(&mut self)  {
        self.pos = 0
    }
}

/// Sets all bytes in `dst` to zero
#[inline(always)]
fn set_zero(dst: &mut [u8]) {
    // SAFETY: we overwrite valid memory behind `dst`
    // note: loop is not used here because it produces
    // unnecessary branch which tests for zero-length slices
    unsafe {
        core::ptr::write_bytes(dst.as_mut_ptr(), 0, dst.len());
    }
}