#[doc = "Reader of register BIASPROG"]
pub type R = crate::R<u32, super::BIASPROG>;
#[doc = "Writer for register BIASPROG"]
pub type W = crate::W<u32, super::BIASPROG>;
#[doc = "Register BIASPROG `reset()`'s with value 0"]
impl crate::ResetValue for super::BIASPROG {
type Type = u32;
#[inline(always)]
fn reset_value() -> Self::Type {
0
}
}
#[doc = "Bias Programming Value of Analog ADC Block\n\nValue on reset: 0"]
#[derive(Clone, Copy, Debug, PartialEq)]
#[repr(u8)]
pub enum ADCBIASPROG_A {
#[doc = "0: Normal power (use for 1Msps operation)"]
NORMAL = 0,
#[doc = "4: Scaling bias to 1/2"]
SCALE2 = 4,
#[doc = "8: Scaling bias to 1/4"]
SCALE4 = 8,
#[doc = "12: Scaling bias to 1/8"]
SCALE8 = 12,
#[doc = "14: Scaling bias to 1/16"]
SCALE16 = 14,
#[doc = "15: Scaling bias to 1/32"]
SCALE32 = 15,
}
impl From<ADCBIASPROG_A> for u8 {
#[inline(always)]
fn from(variant: ADCBIASPROG_A) -> Self {
variant as _
}
}
#[doc = "Reader of field `ADCBIASPROG`"]
pub type ADCBIASPROG_R = crate::R<u8, ADCBIASPROG_A>;
impl ADCBIASPROG_R {
#[doc = r"Get enumerated values variant"]
#[inline(always)]
pub fn variant(&self) -> crate::Variant<u8, ADCBIASPROG_A> {
use crate::Variant::*;
match self.bits {
0 => Val(ADCBIASPROG_A::NORMAL),
4 => Val(ADCBIASPROG_A::SCALE2),
8 => Val(ADCBIASPROG_A::SCALE4),
12 => Val(ADCBIASPROG_A::SCALE8),
14 => Val(ADCBIASPROG_A::SCALE16),
15 => Val(ADCBIASPROG_A::SCALE32),
i => Res(i),
}
}
#[doc = "Checks if the value of the field is `NORMAL`"]
#[inline(always)]
pub fn is_normal(&self) -> bool {
*self == ADCBIASPROG_A::NORMAL
}
#[doc = "Checks if the value of the field is `SCALE2`"]
#[inline(always)]
pub fn is_scale2(&self) -> bool {
*self == ADCBIASPROG_A::SCALE2
}
#[doc = "Checks if the value of the field is `SCALE4`"]
#[inline(always)]
pub fn is_scale4(&self) -> bool {
*self == ADCBIASPROG_A::SCALE4
}
#[doc = "Checks if the value of the field is `SCALE8`"]
#[inline(always)]
pub fn is_scale8(&self) -> bool {
*self == ADCBIASPROG_A::SCALE8
}
#[doc = "Checks if the value of the field is `SCALE16`"]
#[inline(always)]
pub fn is_scale16(&self) -> bool {
*self == ADCBIASPROG_A::SCALE16
}
#[doc = "Checks if the value of the field is `SCALE32`"]
#[inline(always)]
pub fn is_scale32(&self) -> bool {
*self == ADCBIASPROG_A::SCALE32
}
}
#[doc = "Write proxy for field `ADCBIASPROG`"]
pub struct ADCBIASPROG_W<'a> {
w: &'a mut W,
}
impl<'a> ADCBIASPROG_W<'a> {
#[doc = r"Writes `variant` to the field"]
#[inline(always)]
pub fn variant(self, variant: ADCBIASPROG_A) -> &'a mut W {
unsafe { self.bits(variant.into()) }
}
#[doc = "Normal power (use for 1Msps operation)"]
#[inline(always)]
pub fn normal(self) -> &'a mut W {
self.variant(ADCBIASPROG_A::NORMAL)
}
#[doc = "Scaling bias to 1/2"]
#[inline(always)]
pub fn scale2(self) -> &'a mut W {
self.variant(ADCBIASPROG_A::SCALE2)
}
#[doc = "Scaling bias to 1/4"]
#[inline(always)]
pub fn scale4(self) -> &'a mut W {
self.variant(ADCBIASPROG_A::SCALE4)
}
#[doc = "Scaling bias to 1/8"]
#[inline(always)]
pub fn scale8(self) -> &'a mut W {
self.variant(ADCBIASPROG_A::SCALE8)
}
#[doc = "Scaling bias to 1/16"]
#[inline(always)]
pub fn scale16(self) -> &'a mut W {
self.variant(ADCBIASPROG_A::SCALE16)
}
#[doc = "Scaling bias to 1/32"]
#[inline(always)]
pub fn scale32(self) -> &'a mut W {
self.variant(ADCBIASPROG_A::SCALE32)
}
#[doc = r"Writes raw bits to the field"]
#[inline(always)]
pub unsafe fn bits(self, value: u8) -> &'a mut W {
self.w.bits = (self.w.bits & !0x0f) | ((value as u32) & 0x0f);
self.w
}
}
#[doc = "Reader of field `VFAULTCLR`"]
pub type VFAULTCLR_R = crate::R<bool, bool>;
#[doc = "Write proxy for field `VFAULTCLR`"]
pub struct VFAULTCLR_W<'a> {
w: &'a mut W,
}
impl<'a> VFAULTCLR_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 << 12)) | (((value as u32) & 0x01) << 12);
self.w
}
}
#[doc = "Reader of field `GPBIASACC`"]
pub type GPBIASACC_R = crate::R<bool, bool>;
#[doc = "Write proxy for field `GPBIASACC`"]
pub struct GPBIASACC_W<'a> {
w: &'a mut W,
}
impl<'a> GPBIASACC_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 << 16)) | (((value as u32) & 0x01) << 16);
self.w
}
}
impl R {
#[doc = "Bits 0:3 - Bias Programming Value of Analog ADC Block"]
#[inline(always)]
pub fn adcbiasprog(&self) -> ADCBIASPROG_R {
ADCBIASPROG_R::new((self.bits & 0x0f) as u8)
}
#[doc = "Bit 12 - Clear VREFOF Flag"]
#[inline(always)]
pub fn vfaultclr(&self) -> VFAULTCLR_R {
VFAULTCLR_R::new(((self.bits >> 12) & 0x01) != 0)
}
#[doc = "Bit 16 - Accuracy Setting for the System Bias During ADC Operation"]
#[inline(always)]
pub fn gpbiasacc(&self) -> GPBIASACC_R {
GPBIASACC_R::new(((self.bits >> 16) & 0x01) != 0)
}
}
impl W {
#[doc = "Bits 0:3 - Bias Programming Value of Analog ADC Block"]
#[inline(always)]
pub fn adcbiasprog(&mut self) -> ADCBIASPROG_W {
ADCBIASPROG_W { w: self }
}
#[doc = "Bit 12 - Clear VREFOF Flag"]
#[inline(always)]
pub fn vfaultclr(&mut self) -> VFAULTCLR_W {
VFAULTCLR_W { w: self }
}
#[doc = "Bit 16 - Accuracy Setting for the System Bias During ADC Operation"]
#[inline(always)]
pub fn gpbiasacc(&mut self) -> GPBIASACC_W {
GPBIASACC_W { w: self }
}
}