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#[doc = "Reader of register CTL"]
pub type R = crate::R<u32, super::CTL>;
#[doc = "Writer for register CTL"]
pub type W = crate::W<u32, super::CTL>;
#[doc = "Register CTL `reset()`'s with value 0"]
impl crate::ResetValue for super::CTL {
    type Type = u32;
    #[inline(always)]
    fn reset_value() -> Self::Type {
        0
    }
}
#[doc = "reset bit\n\nValue on reset: 0"]
#[derive(Clone, Copy, Debug, PartialEq)]
pub enum RST_A {
    #[doc = "1: Resets the DATA register to IDATA, with no effect on FDATA"]
    RESET = 1,
}
impl From<RST_A> for bool {
    #[inline(always)]
    fn from(variant: RST_A) -> Self {
        variant as u8 != 0
    }
}
#[doc = "Reader of field `RST`"]
pub type RST_R = crate::R<bool, RST_A>;
impl RST_R {
    #[doc = r"Get enumerated values variant"]
    #[inline(always)]
    pub fn variant(&self) -> crate::Variant<bool, RST_A> {
        use crate::Variant::*;
        match self.bits {
            true => Val(RST_A::RESET),
            i => Res(i),
        }
    }
    #[doc = "Checks if the value of the field is `RESET`"]
    #[inline(always)]
    pub fn is_reset(&self) -> bool {
        *self == RST_A::RESET
    }
}
#[doc = "Write proxy for field `RST`"]
pub struct RST_W<'a> {
    w: &'a mut W,
}
impl<'a> RST_W<'a> {
    #[doc = r"Writes `variant` to the field"]
    #[inline(always)]
    pub fn variant(self, variant: RST_A) -> &'a mut W {
        {
            self.bit(variant.into())
        }
    }
    #[doc = "Resets the DATA register to IDATA, with no effect on FDATA"]
    #[inline(always)]
    pub fn reset(self) -> &'a mut W {
        self.variant(RST_A::RESET)
    }
    #[doc = r"Sets the field bit"]
    #[inline(always)]
    pub fn set_bit(self) -> &'a mut W {
        self.bit(true)
    }
    #[doc = r"Clears the field bit"]
    #[inline(always)]
    pub fn clear_bit(self) -> &'a mut W {
        self.bit(false)
    }
    #[doc = r"Writes raw bits to the field"]
    #[inline(always)]
    pub fn bit(self, value: bool) -> &'a mut W {
        self.w.bits = (self.w.bits & !0x01) | ((value as u32) & 0x01);
        self.w
    }
}
#[doc = "Input Data Reverse Function\n\nValue on reset: 0"]
#[derive(Clone, Copy, Debug, PartialEq)]
#[repr(u8)]
pub enum REV_I_A {
    #[doc = "0: Bit order not affected"]
    NORMAL = 0,
    #[doc = "1: Bit reversal done by byte"]
    BYTE = 1,
    #[doc = "2: Bit reversal done by half-word"]
    HALFWORD = 2,
    #[doc = "3: Bit reversal done by word"]
    WORD = 3,
}
impl From<REV_I_A> for u8 {
    #[inline(always)]
    fn from(variant: REV_I_A) -> Self {
        variant as _
    }
}
#[doc = "Reader of field `REV_I`"]
pub type REV_I_R = crate::R<u8, REV_I_A>;
impl REV_I_R {
    #[doc = r"Get enumerated values variant"]
    #[inline(always)]
    pub fn variant(&self) -> REV_I_A {
        match self.bits {
            0 => REV_I_A::NORMAL,
            1 => REV_I_A::BYTE,
            2 => REV_I_A::HALFWORD,
            3 => REV_I_A::WORD,
            _ => unreachable!(),
        }
    }
    #[doc = "Checks if the value of the field is `NORMAL`"]
    #[inline(always)]
    pub fn is_normal(&self) -> bool {
        *self == REV_I_A::NORMAL
    }
    #[doc = "Checks if the value of the field is `BYTE`"]
    #[inline(always)]
    pub fn is_byte(&self) -> bool {
        *self == REV_I_A::BYTE
    }
    #[doc = "Checks if the value of the field is `HALFWORD`"]
    #[inline(always)]
    pub fn is_half_word(&self) -> bool {
        *self == REV_I_A::HALFWORD
    }
    #[doc = "Checks if the value of the field is `WORD`"]
    #[inline(always)]
    pub fn is_word(&self) -> bool {
        *self == REV_I_A::WORD
    }
}
#[doc = "Write proxy for field `REV_I`"]
pub struct REV_I_W<'a> {
    w: &'a mut W,
}
impl<'a> REV_I_W<'a> {
    #[doc = r"Writes `variant` to the field"]
    #[inline(always)]
    pub fn variant(self, variant: REV_I_A) -> &'a mut W {
        {
            self.bits(variant.into())
        }
    }
    #[doc = "Bit order not affected"]
    #[inline(always)]
    pub fn normal(self) -> &'a mut W {
        self.variant(REV_I_A::NORMAL)
    }
    #[doc = "Bit reversal done by byte"]
    #[inline(always)]
    pub fn byte(self) -> &'a mut W {
        self.variant(REV_I_A::BYTE)
    }
    #[doc = "Bit reversal done by half-word"]
    #[inline(always)]
    pub fn half_word(self) -> &'a mut W {
        self.variant(REV_I_A::HALFWORD)
    }
    #[doc = "Bit reversal done by word"]
    #[inline(always)]
    pub fn word(self) -> &'a mut W {
        self.variant(REV_I_A::WORD)
    }
    #[doc = r"Writes raw bits to the field"]
    #[inline(always)]
    pub fn bits(self, value: u8) -> &'a mut W {
        self.w.bits = (self.w.bits & !(0x03 << 5)) | (((value as u32) & 0x03) << 5);
        self.w
    }
}
#[doc = "Output Data Reverse Function\n\nValue on reset: 0"]
#[derive(Clone, Copy, Debug, PartialEq)]
pub enum REV_O_A {
    #[doc = "0: Bit order not affected"]
    NORMAL = 0,
    #[doc = "1: Bit reversed output"]
    REVERSED = 1,
}
impl From<REV_O_A> for bool {
    #[inline(always)]
    fn from(variant: REV_O_A) -> Self {
        variant as u8 != 0
    }
}
#[doc = "Reader of field `REV_O`"]
pub type REV_O_R = crate::R<bool, REV_O_A>;
impl REV_O_R {
    #[doc = r"Get enumerated values variant"]
    #[inline(always)]
    pub fn variant(&self) -> REV_O_A {
        match self.bits {
            false => REV_O_A::NORMAL,
            true => REV_O_A::REVERSED,
        }
    }
    #[doc = "Checks if the value of the field is `NORMAL`"]
    #[inline(always)]
    pub fn is_normal(&self) -> bool {
        *self == REV_O_A::NORMAL
    }
    #[doc = "Checks if the value of the field is `REVERSED`"]
    #[inline(always)]
    pub fn is_reversed(&self) -> bool {
        *self == REV_O_A::REVERSED
    }
}
#[doc = "Write proxy for field `REV_O`"]
pub struct REV_O_W<'a> {
    w: &'a mut W,
}
impl<'a> REV_O_W<'a> {
    #[doc = r"Writes `variant` to the field"]
    #[inline(always)]
    pub fn variant(self, variant: REV_O_A) -> &'a mut W {
        {
            self.bit(variant.into())
        }
    }
    #[doc = "Bit order not affected"]
    #[inline(always)]
    pub fn normal(self) -> &'a mut W {
        self.variant(REV_O_A::NORMAL)
    }
    #[doc = "Bit reversed output"]
    #[inline(always)]
    pub fn reversed(self) -> &'a mut W {
        self.variant(REV_O_A::REVERSED)
    }
    #[doc = r"Sets the field bit"]
    #[inline(always)]
    pub fn set_bit(self) -> &'a mut W {
        self.bit(true)
    }
    #[doc = r"Clears the field bit"]
    #[inline(always)]
    pub fn clear_bit(self) -> &'a mut W {
        self.bit(false)
    }
    #[doc = r"Writes raw bits to the field"]
    #[inline(always)]
    pub fn bit(self, value: bool) -> &'a mut W {
        self.w.bits = (self.w.bits & !(0x01 << 7)) | (((value as u32) & 0x01) << 7);
        self.w
    }
}
impl R {
    #[doc = "Bit 0 - reset bit"]
    #[inline(always)]
    pub fn rst(&self) -> RST_R {
        RST_R::new((self.bits & 0x01) != 0)
    }
    #[doc = "Bits 5:6 - Input Data Reverse Function"]
    #[inline(always)]
    pub fn rev_i(&self) -> REV_I_R {
        REV_I_R::new(((self.bits >> 5) & 0x03) as u8)
    }
    #[doc = "Bit 7 - Output Data Reverse Function"]
    #[inline(always)]
    pub fn rev_o(&self) -> REV_O_R {
        REV_O_R::new(((self.bits >> 7) & 0x01) != 0)
    }
}
impl W {
    #[doc = "Bit 0 - reset bit"]
    #[inline(always)]
    pub fn rst(&mut self) -> RST_W {
        RST_W { w: self }
    }
    #[doc = "Bits 5:6 - Input Data Reverse Function"]
    #[inline(always)]
    pub fn rev_i(&mut self) -> REV_I_W {
        REV_I_W { w: self }
    }
    #[doc = "Bit 7 - Output Data Reverse Function"]
    #[inline(always)]
    pub fn rev_o(&mut self) -> REV_O_W {
        REV_O_W { w: self }
    }
}