cyt2b7_d/m4/srss/csv_ilo/csv/
ref_limit.rs1#[doc = "Register `REF_LIMIT` reader"]
2pub struct R(crate::R<REF_LIMIT_SPEC>);
3impl core::ops::Deref for R {
4 type Target = crate::R<REF_LIMIT_SPEC>;
5 #[inline(always)]
6 fn deref(&self) -> &Self::Target {
7 &self.0
8 }
9}
10impl From<crate::R<REF_LIMIT_SPEC>> for R {
11 #[inline(always)]
12 fn from(reader: crate::R<REF_LIMIT_SPEC>) -> Self {
13 R(reader)
14 }
15}
16#[doc = "Register `REF_LIMIT` writer"]
17pub struct W(crate::W<REF_LIMIT_SPEC>);
18impl core::ops::Deref for W {
19 type Target = crate::W<REF_LIMIT_SPEC>;
20 #[inline(always)]
21 fn deref(&self) -> &Self::Target {
22 &self.0
23 }
24}
25impl core::ops::DerefMut for W {
26 #[inline(always)]
27 fn deref_mut(&mut self) -> &mut Self::Target {
28 &mut self.0
29 }
30}
31impl From<crate::W<REF_LIMIT_SPEC>> for W {
32 #[inline(always)]
33 fn from(writer: crate::W<REF_LIMIT_SPEC>) -> Self {
34 W(writer)
35 }
36}
37#[doc = "Field `LOWER` reader - Cycle time lower limit. Set the lower limit -1, in reference clock cycles, before the next monitored clock event is allowed to happen. If a monitored clock event happens before this limit is reached a CSV error is detected. LOWER must be at least 1 less than UPPER. In case the clocks are asynchronous LOWER must be at least 3 less than UPPER."]
38pub type LOWER_R = crate::FieldReader<u8, u8>;
39#[doc = "Field `LOWER` writer - Cycle time lower limit. Set the lower limit -1, in reference clock cycles, before the next monitored clock event is allowed to happen. If a monitored clock event happens before this limit is reached a CSV error is detected. LOWER must be at least 1 less than UPPER. In case the clocks are asynchronous LOWER must be at least 3 less than UPPER."]
40pub type LOWER_W<'a, const O: u8> = crate::FieldWriter<'a, u32, REF_LIMIT_SPEC, u8, u8, 8, O>;
41#[doc = "Field `UPPER` reader - Cycle time upper limit. Set the upper limit -1, in reference clock cycles, before (or same time) the next monitored clock event must happen. If a monitored clock event does not happen before this limit is reached, or does not happen at all (clock loss), a CSV error is detected."]
42pub type UPPER_R = crate::FieldReader<u8, u8>;
43#[doc = "Field `UPPER` writer - Cycle time upper limit. Set the upper limit -1, in reference clock cycles, before (or same time) the next monitored clock event must happen. If a monitored clock event does not happen before this limit is reached, or does not happen at all (clock loss), a CSV error is detected."]
44pub type UPPER_W<'a, const O: u8> = crate::FieldWriter<'a, u32, REF_LIMIT_SPEC, u8, u8, 8, O>;
45impl R {
46 #[doc = "Bits 0:7 - Cycle time lower limit. Set the lower limit -1, in reference clock cycles, before the next monitored clock event is allowed to happen. If a monitored clock event happens before this limit is reached a CSV error is detected. LOWER must be at least 1 less than UPPER. In case the clocks are asynchronous LOWER must be at least 3 less than UPPER."]
47 #[inline(always)]
48 pub fn lower(&self) -> LOWER_R {
49 LOWER_R::new((self.bits & 0xff) as u8)
50 }
51 #[doc = "Bits 16:23 - Cycle time upper limit. Set the upper limit -1, in reference clock cycles, before (or same time) the next monitored clock event must happen. If a monitored clock event does not happen before this limit is reached, or does not happen at all (clock loss), a CSV error is detected."]
52 #[inline(always)]
53 pub fn upper(&self) -> UPPER_R {
54 UPPER_R::new(((self.bits >> 16) & 0xff) as u8)
55 }
56}
57impl W {
58 #[doc = "Bits 0:7 - Cycle time lower limit. Set the lower limit -1, in reference clock cycles, before the next monitored clock event is allowed to happen. If a monitored clock event happens before this limit is reached a CSV error is detected. LOWER must be at least 1 less than UPPER. In case the clocks are asynchronous LOWER must be at least 3 less than UPPER."]
59 #[inline(always)]
60 #[must_use]
61 pub fn lower(&mut self) -> LOWER_W<0> {
62 LOWER_W::new(self)
63 }
64 #[doc = "Bits 16:23 - Cycle time upper limit. Set the upper limit -1, in reference clock cycles, before (or same time) the next monitored clock event must happen. If a monitored clock event does not happen before this limit is reached, or does not happen at all (clock loss), a CSV error is detected."]
65 #[inline(always)]
66 #[must_use]
67 pub fn upper(&mut self) -> UPPER_W<16> {
68 UPPER_W::new(self)
69 }
70 #[doc = "Writes raw bits to the register."]
71 #[inline(always)]
72 pub unsafe fn bits(&mut self, bits: u32) -> &mut Self {
73 self.0.bits(bits);
74 self
75 }
76}
77#[doc = "Clock Supervision Reference Limits\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 [ref_limit](index.html) module"]
78pub struct REF_LIMIT_SPEC;
79impl crate::RegisterSpec for REF_LIMIT_SPEC {
80 type Ux = u32;
81}
82#[doc = "`read()` method returns [ref_limit::R](R) reader structure"]
83impl crate::Readable for REF_LIMIT_SPEC {
84 type Reader = R;
85}
86#[doc = "`write(|w| ..)` method takes [ref_limit::W](W) writer structure"]
87impl crate::Writable for REF_LIMIT_SPEC {
88 type Writer = W;
89 const ZERO_TO_MODIFY_FIELDS_BITMAP: Self::Ux = 0;
90 const ONE_TO_MODIFY_FIELDS_BITMAP: Self::Ux = 0;
91}
92#[doc = "`reset()` method sets REF_LIMIT to value 0"]
93impl crate::Resettable for REF_LIMIT_SPEC {
94 const RESET_VALUE: Self::Ux = 0;
95}