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#[doc = "Register `ACSR0B` reader"] pub struct R(crate::R<ACSR0B_SPEC>); impl core::ops::Deref for R { type Target = crate::R<ACSR0B_SPEC>; #[inline(always)] fn deref(&self) -> &Self::Target { &self.0 } } impl core::convert::From<crate::R<ACSR0B_SPEC>> for R { fn from(reader: crate::R<ACSR0B_SPEC>) -> Self { R(reader) } } #[doc = "Register `ACSR0B` writer"] pub struct W(crate::W<ACSR0B_SPEC>); impl core::ops::Deref for W { type Target = crate::W<ACSR0B_SPEC>; #[inline(always)] fn deref(&self) -> &Self::Target { &self.0 } } impl core::ops::DerefMut for W { #[inline(always)] fn deref_mut(&mut self) -> &mut Self::Target { &mut self.0 } } impl core::convert::From<crate::W<ACSR0B_SPEC>> for W { fn from(writer: crate::W<ACSR0B_SPEC>) -> Self { W(writer) } } #[doc = "Field `ACPMUX` reader - Analog Comparator 0 Positive Input Multiplexer Bits 1:0"] pub struct ACPMUX_R(crate::FieldReader<u8, u8>); impl ACPMUX_R { pub(crate) fn new(bits: u8) -> Self { ACPMUX_R(crate::FieldReader::new(bits)) } } impl core::ops::Deref for ACPMUX_R { type Target = crate::FieldReader<u8, u8>; #[inline(always)] fn deref(&self) -> &Self::Target { &self.0 } } #[doc = "Field `ACPMUX` writer - Analog Comparator 0 Positive Input Multiplexer Bits 1:0"] pub struct ACPMUX_W<'a> { w: &'a mut W, } impl<'a> ACPMUX_W<'a> { #[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) | ((value as u8) & 0x03); self.w } } #[doc = "Field `ACNMUX` reader - Analog Comparator 0 Negative Input Multiplexer"] pub struct ACNMUX_R(crate::FieldReader<u8, u8>); impl ACNMUX_R { pub(crate) fn new(bits: u8) -> Self { ACNMUX_R(crate::FieldReader::new(bits)) } } impl core::ops::Deref for ACNMUX_R { type Target = crate::FieldReader<u8, u8>; #[inline(always)] fn deref(&self) -> &Self::Target { &self.0 } } #[doc = "Field `ACNMUX` writer - Analog Comparator 0 Negative Input Multiplexer"] pub struct ACNMUX_W<'a> { w: &'a mut W, } impl<'a> ACNMUX_W<'a> { #[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 << 2)) | (((value as u8) & 0x03) << 2); self.w } } #[doc = "Field `ACOE0` reader - Analog Comparator 0 Output Pin Enable"] pub struct ACOE0_R(crate::FieldReader<bool, bool>); impl ACOE0_R { pub(crate) fn new(bits: bool) -> Self { ACOE0_R(crate::FieldReader::new(bits)) } } impl core::ops::Deref for ACOE0_R { type Target = crate::FieldReader<bool, bool>; #[inline(always)] fn deref(&self) -> &Self::Target { &self.0 } } #[doc = "Field `ACOE0` writer - Analog Comparator 0 Output Pin Enable"] pub struct ACOE0_W<'a> { w: &'a mut W, } impl<'a> ACOE0_W<'a> { #[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 << 4)) | (((value as u8) & 0x01) << 4); self.w } } #[doc = "Field `HLEV0` reader - Analog Comparator 0 Hysteresis Level"] pub struct HLEV0_R(crate::FieldReader<bool, bool>); impl HLEV0_R { pub(crate) fn new(bits: bool) -> Self { HLEV0_R(crate::FieldReader::new(bits)) } } impl core::ops::Deref for HLEV0_R { type Target = crate::FieldReader<bool, bool>; #[inline(always)] fn deref(&self) -> &Self::Target { &self.0 } } #[doc = "Field `HLEV0` writer - Analog Comparator 0 Hysteresis Level"] pub struct HLEV0_W<'a> { w: &'a mut W, } impl<'a> HLEV0_W<'a> { #[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 << 6)) | (((value as u8) & 0x01) << 6); self.w } } #[doc = "Field `HSEL0` reader - Analog Comparator 0 Hysteresis Select"] pub struct HSEL0_R(crate::FieldReader<bool, bool>); impl HSEL0_R { pub(crate) fn new(bits: bool) -> Self { HSEL0_R(crate::FieldReader::new(bits)) } } impl core::ops::Deref for HSEL0_R { type Target = crate::FieldReader<bool, bool>; #[inline(always)] fn deref(&self) -> &Self::Target { &self.0 } } #[doc = "Field `HSEL0` writer - Analog Comparator 0 Hysteresis Select"] pub struct HSEL0_W<'a> { w: &'a mut W, } impl<'a> HSEL0_W<'a> { #[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 u8) & 0x01) << 7); self.w } } impl R { #[doc = "Bits 0:1 - Analog Comparator 0 Positive Input Multiplexer Bits 1:0"] #[inline(always)] pub fn acpmux(&self) -> ACPMUX_R { ACPMUX_R::new((self.bits & 0x03) as u8) } #[doc = "Bits 2:3 - Analog Comparator 0 Negative Input Multiplexer"] #[inline(always)] pub fn acnmux(&self) -> ACNMUX_R { ACNMUX_R::new(((self.bits >> 2) & 0x03) as u8) } #[doc = "Bit 4 - Analog Comparator 0 Output Pin Enable"] #[inline(always)] pub fn acoe0(&self) -> ACOE0_R { ACOE0_R::new(((self.bits >> 4) & 0x01) != 0) } #[doc = "Bit 6 - Analog Comparator 0 Hysteresis Level"] #[inline(always)] pub fn hlev0(&self) -> HLEV0_R { HLEV0_R::new(((self.bits >> 6) & 0x01) != 0) } #[doc = "Bit 7 - Analog Comparator 0 Hysteresis Select"] #[inline(always)] pub fn hsel0(&self) -> HSEL0_R { HSEL0_R::new(((self.bits >> 7) & 0x01) != 0) } } impl W { #[doc = "Bits 0:1 - Analog Comparator 0 Positive Input Multiplexer Bits 1:0"] #[inline(always)] pub fn acpmux(&mut self) -> ACPMUX_W { ACPMUX_W { w: self } } #[doc = "Bits 2:3 - Analog Comparator 0 Negative Input Multiplexer"] #[inline(always)] pub fn acnmux(&mut self) -> ACNMUX_W { ACNMUX_W { w: self } } #[doc = "Bit 4 - Analog Comparator 0 Output Pin Enable"] #[inline(always)] pub fn acoe0(&mut self) -> ACOE0_W { ACOE0_W { w: self } } #[doc = "Bit 6 - Analog Comparator 0 Hysteresis Level"] #[inline(always)] pub fn hlev0(&mut self) -> HLEV0_W { HLEV0_W { w: self } } #[doc = "Bit 7 - Analog Comparator 0 Hysteresis Select"] #[inline(always)] pub fn hsel0(&mut self) -> HSEL0_W { HSEL0_W { w: self } } #[doc = "Writes raw bits to the register."] pub unsafe fn bits(&mut self, bits: u8) -> &mut Self { self.0.bits(bits); self } } #[doc = "Analog Comparator 0 Control And Status Register B\n\nThis register you can [`read`](crate::generic::Reg::read), [`write_with_zero`](crate::generic::Reg::write_with_zero), [`reset`](crate::generic::Reg::reset), [`write`](crate::generic::Reg::write), [`modify`](crate::generic::Reg::modify). See [API](https://docs.rs/svd2rust/#read--modify--write-api).\n\nFor information about available fields see [acsr0b](index.html) module"] pub struct ACSR0B_SPEC; impl crate::RegisterSpec for ACSR0B_SPEC { type Ux = u8; } #[doc = "`read()` method returns [acsr0b::R](R) reader structure"] impl crate::Readable for ACSR0B_SPEC { type Reader = R; } #[doc = "`write(|w| ..)` method takes [acsr0b::W](W) writer structure"] impl crate::Writable for ACSR0B_SPEC { type Writer = W; } #[doc = "`reset()` method sets ACSR0B to value 0"] impl crate::Resettable for ACSR0B_SPEC { #[inline(always)] fn reset_value() -> Self::Ux { 0 } }