1#[doc = "Register `TCR` reader"]
2pub type R = crate::R<TcrSpec>;
3#[doc = "Register `TCR` writer"]
4pub type W = crate::W<TcrSpec>;
5#[doc = "Time Compensation Register\n\nValue on reset: 0"]
6#[cfg_attr(feature = "defmt", derive(defmt::Format))]
7#[derive(Clone, Copy, Debug, PartialEq, Eq)]
8#[repr(u8)]
9pub enum Tcr {
10 #[doc = "0: Time Prescaler Register overflows every 32768 clock cycles."]
11 Tcr0 = 0,
12 #[doc = "1: Time Prescaler Register overflows every 32767 clock cycles."]
13 Tcr1 = 1,
14 #[doc = "126: Time Prescaler Register overflows every 32642 clock cycles."]
15 Tcr126 = 126,
16 #[doc = "127: Time Prescaler Register overflows every 32641 clock cycles."]
17 Tcr127 = 127,
18 #[doc = "128: Time Prescaler Register overflows every 32896 clock cycles."]
19 Tcr128 = 128,
20 #[doc = "129: Time Prescaler Register overflows every 32895 clock cycles."]
21 Tcr129 = 129,
22 #[doc = "255: Time Prescaler Register overflows every 32769 clock cycles."]
23 Tcr255 = 255,
24}
25impl From<Tcr> for u8 {
26 #[inline(always)]
27 fn from(variant: Tcr) -> Self {
28 variant as _
29 }
30}
31impl crate::FieldSpec for Tcr {
32 type Ux = u8;
33}
34impl crate::IsEnum for Tcr {}
35#[doc = "Field `TCR` reader - Time Compensation Register"]
36pub type TcrR = crate::FieldReader<Tcr>;
37impl TcrR {
38 #[doc = "Get enumerated values variant"]
39 #[inline(always)]
40 pub const fn variant(&self) -> Option<Tcr> {
41 match self.bits {
42 0 => Some(Tcr::Tcr0),
43 1 => Some(Tcr::Tcr1),
44 126 => Some(Tcr::Tcr126),
45 127 => Some(Tcr::Tcr127),
46 128 => Some(Tcr::Tcr128),
47 129 => Some(Tcr::Tcr129),
48 255 => Some(Tcr::Tcr255),
49 _ => None,
50 }
51 }
52 #[doc = "Time Prescaler Register overflows every 32768 clock cycles."]
53 #[inline(always)]
54 pub fn is_tcr_0(&self) -> bool {
55 *self == Tcr::Tcr0
56 }
57 #[doc = "Time Prescaler Register overflows every 32767 clock cycles."]
58 #[inline(always)]
59 pub fn is_tcr_1(&self) -> bool {
60 *self == Tcr::Tcr1
61 }
62 #[doc = "Time Prescaler Register overflows every 32642 clock cycles."]
63 #[inline(always)]
64 pub fn is_tcr_126(&self) -> bool {
65 *self == Tcr::Tcr126
66 }
67 #[doc = "Time Prescaler Register overflows every 32641 clock cycles."]
68 #[inline(always)]
69 pub fn is_tcr_127(&self) -> bool {
70 *self == Tcr::Tcr127
71 }
72 #[doc = "Time Prescaler Register overflows every 32896 clock cycles."]
73 #[inline(always)]
74 pub fn is_tcr_128(&self) -> bool {
75 *self == Tcr::Tcr128
76 }
77 #[doc = "Time Prescaler Register overflows every 32895 clock cycles."]
78 #[inline(always)]
79 pub fn is_tcr_129(&self) -> bool {
80 *self == Tcr::Tcr129
81 }
82 #[doc = "Time Prescaler Register overflows every 32769 clock cycles."]
83 #[inline(always)]
84 pub fn is_tcr_255(&self) -> bool {
85 *self == Tcr::Tcr255
86 }
87}
88#[doc = "Field `TCR` writer - Time Compensation Register"]
89pub type TcrW<'a, REG> = crate::FieldWriter<'a, REG, 8, Tcr>;
90impl<'a, REG> TcrW<'a, REG>
91where
92 REG: crate::Writable + crate::RegisterSpec,
93 REG::Ux: From<u8>,
94{
95 #[doc = "Time Prescaler Register overflows every 32768 clock cycles."]
96 #[inline(always)]
97 pub fn tcr_0(self) -> &'a mut crate::W<REG> {
98 self.variant(Tcr::Tcr0)
99 }
100 #[doc = "Time Prescaler Register overflows every 32767 clock cycles."]
101 #[inline(always)]
102 pub fn tcr_1(self) -> &'a mut crate::W<REG> {
103 self.variant(Tcr::Tcr1)
104 }
105 #[doc = "Time Prescaler Register overflows every 32642 clock cycles."]
106 #[inline(always)]
107 pub fn tcr_126(self) -> &'a mut crate::W<REG> {
108 self.variant(Tcr::Tcr126)
109 }
110 #[doc = "Time Prescaler Register overflows every 32641 clock cycles."]
111 #[inline(always)]
112 pub fn tcr_127(self) -> &'a mut crate::W<REG> {
113 self.variant(Tcr::Tcr127)
114 }
115 #[doc = "Time Prescaler Register overflows every 32896 clock cycles."]
116 #[inline(always)]
117 pub fn tcr_128(self) -> &'a mut crate::W<REG> {
118 self.variant(Tcr::Tcr128)
119 }
120 #[doc = "Time Prescaler Register overflows every 32895 clock cycles."]
121 #[inline(always)]
122 pub fn tcr_129(self) -> &'a mut crate::W<REG> {
123 self.variant(Tcr::Tcr129)
124 }
125 #[doc = "Time Prescaler Register overflows every 32769 clock cycles."]
126 #[inline(always)]
127 pub fn tcr_255(self) -> &'a mut crate::W<REG> {
128 self.variant(Tcr::Tcr255)
129 }
130}
131#[doc = "Field `CIR` reader - Compensation Interval Register"]
132pub type CirR = crate::FieldReader;
133#[doc = "Field `CIR` writer - Compensation Interval Register"]
134pub type CirW<'a, REG> = crate::FieldWriter<'a, REG, 8>;
135#[doc = "Field `TCV` reader - Time Compensation Value"]
136pub type TcvR = crate::FieldReader;
137#[doc = "Field `CIC` reader - Compensation Interval Counter"]
138pub type CicR = crate::FieldReader;
139impl R {
140 #[doc = "Bits 0:7 - Time Compensation Register"]
141 #[inline(always)]
142 pub fn tcr(&self) -> TcrR {
143 TcrR::new((self.bits & 0xff) as u8)
144 }
145 #[doc = "Bits 8:15 - Compensation Interval Register"]
146 #[inline(always)]
147 pub fn cir(&self) -> CirR {
148 CirR::new(((self.bits >> 8) & 0xff) as u8)
149 }
150 #[doc = "Bits 16:23 - Time Compensation Value"]
151 #[inline(always)]
152 pub fn tcv(&self) -> TcvR {
153 TcvR::new(((self.bits >> 16) & 0xff) as u8)
154 }
155 #[doc = "Bits 24:31 - Compensation Interval Counter"]
156 #[inline(always)]
157 pub fn cic(&self) -> CicR {
158 CicR::new(((self.bits >> 24) & 0xff) as u8)
159 }
160}
161#[cfg(feature = "debug")]
162impl core::fmt::Debug for R {
163 fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
164 f.debug_struct("TCR")
165 .field("tcr", &self.tcr())
166 .field("cir", &self.cir())
167 .field("tcv", &self.tcv())
168 .field("cic", &self.cic())
169 .finish()
170 }
171}
172impl W {
173 #[doc = "Bits 0:7 - Time Compensation Register"]
174 #[inline(always)]
175 pub fn tcr(&mut self) -> TcrW<'_, TcrSpec> {
176 TcrW::new(self, 0)
177 }
178 #[doc = "Bits 8:15 - Compensation Interval Register"]
179 #[inline(always)]
180 pub fn cir(&mut self) -> CirW<'_, TcrSpec> {
181 CirW::new(self, 8)
182 }
183}
184#[doc = "RTC Time Compensation\n\nYou can [`read`](crate::Reg::read) this register and get [`tcr::R`](R). You can [`reset`](crate::Reg::reset), [`write`](crate::Reg::write), [`write_with_zero`](crate::Reg::write_with_zero) this register using [`tcr::W`](W). You can also [`modify`](crate::Reg::modify) this register. See [API](https://docs.rs/svd2rust/#read--modify--write-api)."]
185pub struct TcrSpec;
186impl crate::RegisterSpec for TcrSpec {
187 type Ux = u32;
188}
189#[doc = "`read()` method returns [`tcr::R`](R) reader structure"]
190impl crate::Readable for TcrSpec {}
191#[doc = "`write(|w| ..)` method takes [`tcr::W`](W) writer structure"]
192impl crate::Writable for TcrSpec {
193 type Safety = crate::Unsafe;
194}
195#[doc = "`reset()` method sets TCR to value 0"]
196impl crate::Resettable for TcrSpec {}