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#[doc = r" Value read from the register"] pub struct R { bits: u32, } impl super::XO_CAL_STATUS { #[doc = r" Reads the contents of the register"] #[inline] pub fn read(&self) -> R { R { bits: self.register.get(), } } } #[doc = r" Value of the field"] pub struct CAL_CNTRR { bits: u16, } impl CAL_CNTRR { #[doc = r" Value of the field as raw bits"] #[inline] pub fn bits(&self) -> u16 { self.bits } } #[doc = r" Value of the field"] pub struct DONER { bits: bool, } impl DONER { #[doc = r" Value of the field as raw bits"] #[inline] pub fn bit(&self) -> bool { self.bits } #[doc = r" Returns `true` if the bit is clear (0)"] #[inline] pub fn bit_is_clear(&self) -> bool { !self.bit() } #[doc = r" Returns `true` if the bit is set (1)"] #[inline] pub fn bit_is_set(&self) -> bool { self.bit() } } impl R { #[doc = r" Value of the register as raw bits"] #[inline] pub fn bits(&self) -> u32 { self.bits } #[doc = "Bits 0:15 - Value of the calibration counter (result of the calibration operation)."] #[inline] pub fn cal_cntr(&self) -> CAL_CNTRR { let bits = { const MASK: u16 = 65535; const OFFSET: u8 = 0; ((self.bits >> OFFSET) & MASK as u32) as u16 }; CAL_CNTRR { bits } } #[doc = "Bit 16 - Status of the calibration run. 1: Calibration is completed."] #[inline] pub fn done(&self) -> DONER { let bits = { const MASK: bool = true; const OFFSET: u8 = 16; ((self.bits >> OFFSET) & MASK as u32) != 0 }; DONER { bits } } }