efm32pg1b200_pac/cmu/
hfxoctrl.rs1#[doc = "Register `HFXOCTRL` reader"]
2pub struct R(crate::R<HFXOCTRL_SPEC>);
3impl core::ops::Deref for R {
4 type Target = crate::R<HFXOCTRL_SPEC>;
5 #[inline(always)]
6 fn deref(&self) -> &Self::Target {
7 &self.0
8 }
9}
10impl From<crate::R<HFXOCTRL_SPEC>> for R {
11 #[inline(always)]
12 fn from(reader: crate::R<HFXOCTRL_SPEC>) -> Self {
13 R(reader)
14 }
15}
16#[doc = "Register `HFXOCTRL` writer"]
17pub struct W(crate::W<HFXOCTRL_SPEC>);
18impl core::ops::Deref for W {
19 type Target = crate::W<HFXOCTRL_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<HFXOCTRL_SPEC>> for W {
32 #[inline(always)]
33 fn from(writer: crate::W<HFXOCTRL_SPEC>) -> Self {
34 W(writer)
35 }
36}
37#[doc = "Field `MODE` reader - HFXO Mode"]
38pub type MODE_R = crate::BitReader<bool>;
39#[doc = "Field `MODE` writer - HFXO Mode"]
40pub type MODE_W<'a> = crate::BitWriter<'a, u32, HFXOCTRL_SPEC, bool, 0>;
41#[doc = "HFXO Automatic Peak Detection and Shunt Current Optimization Mode\n\nValue on reset: 0"]
42#[derive(Clone, Copy, Debug, PartialEq)]
43#[repr(u8)]
44pub enum PEAKDETSHUNTOPTMODE_A {
45 #[doc = "0: Automatic control of HFXO peak detection and shunt optimization sequences. CMU_CMD HFXOPEAKDETSTART and HFXOSHUNTOPTSTART can also be used."]
46 AUTOCMD = 0,
47 #[doc = "1: CMU_CMD HFXOPEAKDETSTART and HFXOSHUNTOPTSTART can be used to trigger peak detection and shunt optimization sequences."]
48 CMD = 1,
49 #[doc = "2: CMU_HFXOSTEADYSTATECTRL IBTRIMXOCORE, REGISH, REGSELILOW, and PEAKDETEN are under full software control and are allowed to be changed once HFXO is ready."]
50 MANUAL = 2,
51}
52impl From<PEAKDETSHUNTOPTMODE_A> for u8 {
53 #[inline(always)]
54 fn from(variant: PEAKDETSHUNTOPTMODE_A) -> Self {
55 variant as _
56 }
57}
58#[doc = "Field `PEAKDETSHUNTOPTMODE` reader - HFXO Automatic Peak Detection and Shunt Current Optimization Mode"]
59pub type PEAKDETSHUNTOPTMODE_R = crate::FieldReader<u8, PEAKDETSHUNTOPTMODE_A>;
60impl PEAKDETSHUNTOPTMODE_R {
61 #[doc = "Get enumerated values variant"]
62 #[inline(always)]
63 pub fn variant(&self) -> Option<PEAKDETSHUNTOPTMODE_A> {
64 match self.bits {
65 0 => Some(PEAKDETSHUNTOPTMODE_A::AUTOCMD),
66 1 => Some(PEAKDETSHUNTOPTMODE_A::CMD),
67 2 => Some(PEAKDETSHUNTOPTMODE_A::MANUAL),
68 _ => None,
69 }
70 }
71 #[doc = "Checks if the value of the field is `AUTOCMD`"]
72 #[inline(always)]
73 pub fn is_autocmd(&self) -> bool {
74 *self == PEAKDETSHUNTOPTMODE_A::AUTOCMD
75 }
76 #[doc = "Checks if the value of the field is `CMD`"]
77 #[inline(always)]
78 pub fn is_cmd(&self) -> bool {
79 *self == PEAKDETSHUNTOPTMODE_A::CMD
80 }
81 #[doc = "Checks if the value of the field is `MANUAL`"]
82 #[inline(always)]
83 pub fn is_manual(&self) -> bool {
84 *self == PEAKDETSHUNTOPTMODE_A::MANUAL
85 }
86}
87#[doc = "Field `PEAKDETSHUNTOPTMODE` writer - HFXO Automatic Peak Detection and Shunt Current Optimization Mode"]
88pub type PEAKDETSHUNTOPTMODE_W<'a> =
89 crate::FieldWriter<'a, u32, HFXOCTRL_SPEC, u8, PEAKDETSHUNTOPTMODE_A, 2, 4>;
90impl<'a> PEAKDETSHUNTOPTMODE_W<'a> {
91 #[doc = "Automatic control of HFXO peak detection and shunt optimization sequences. CMU_CMD HFXOPEAKDETSTART and HFXOSHUNTOPTSTART can also be used."]
92 #[inline(always)]
93 pub fn autocmd(self) -> &'a mut W {
94 self.variant(PEAKDETSHUNTOPTMODE_A::AUTOCMD)
95 }
96 #[doc = "CMU_CMD HFXOPEAKDETSTART and HFXOSHUNTOPTSTART can be used to trigger peak detection and shunt optimization sequences."]
97 #[inline(always)]
98 pub fn cmd(self) -> &'a mut W {
99 self.variant(PEAKDETSHUNTOPTMODE_A::CMD)
100 }
101 #[doc = "CMU_HFXOSTEADYSTATECTRL IBTRIMXOCORE, REGISH, REGSELILOW, and PEAKDETEN are under full software control and are allowed to be changed once HFXO is ready."]
102 #[inline(always)]
103 pub fn manual(self) -> &'a mut W {
104 self.variant(PEAKDETSHUNTOPTMODE_A::MANUAL)
105 }
106}
107#[doc = "Field `LOWPOWER` reader - Low Power Mode Control"]
108pub type LOWPOWER_R = crate::BitReader<bool>;
109#[doc = "Field `LOWPOWER` writer - Low Power Mode Control"]
110pub type LOWPOWER_W<'a> = crate::BitWriter<'a, u32, HFXOCTRL_SPEC, bool, 8>;
111#[doc = "Field `XTI2GND` reader - Clamp HFXTAL_N Pin to Ground When HFXO Oscillator is Off"]
112pub type XTI2GND_R = crate::BitReader<bool>;
113#[doc = "Field `XTI2GND` writer - Clamp HFXTAL_N Pin to Ground When HFXO Oscillator is Off"]
114pub type XTI2GND_W<'a> = crate::BitWriter<'a, u32, HFXOCTRL_SPEC, bool, 9>;
115#[doc = "Field `XTO2GND` reader - Clamp HFXTAL_P Pin to Ground When HFXO Oscillator is Off"]
116pub type XTO2GND_R = crate::BitReader<bool>;
117#[doc = "Field `XTO2GND` writer - Clamp HFXTAL_P Pin to Ground When HFXO Oscillator is Off"]
118pub type XTO2GND_W<'a> = crate::BitWriter<'a, u32, HFXOCTRL_SPEC, bool, 10>;
119#[doc = "HFXO Low Frequency Timeout\n\nValue on reset: 0"]
120#[derive(Clone, Copy, Debug, PartialEq)]
121#[repr(u8)]
122pub enum LFTIMEOUT_A {
123 #[doc = "0: Timeout period of 0 cycles (disabled)"]
124 _0CYCLES = 0,
125 #[doc = "1: Timeout period of 2 cycles"]
126 _2CYCLES = 1,
127 #[doc = "2: Timeout period of 4 cycles"]
128 _4CYCLES = 2,
129 #[doc = "3: Timeout period of 16 cycles"]
130 _16CYCLES = 3,
131 #[doc = "4: Timeout period of 32 cycles"]
132 _32CYCLES = 4,
133 #[doc = "5: Timeout period of 64 cycles"]
134 _64CYCLES = 5,
135 #[doc = "6: Timeout period of 1024 cycles"]
136 _1KCYCLES = 6,
137 #[doc = "7: Timeout period of 4096 cycles"]
138 _4KCYCLES = 7,
139}
140impl From<LFTIMEOUT_A> for u8 {
141 #[inline(always)]
142 fn from(variant: LFTIMEOUT_A) -> Self {
143 variant as _
144 }
145}
146#[doc = "Field `LFTIMEOUT` reader - HFXO Low Frequency Timeout"]
147pub type LFTIMEOUT_R = crate::FieldReader<u8, LFTIMEOUT_A>;
148impl LFTIMEOUT_R {
149 #[doc = "Get enumerated values variant"]
150 #[inline(always)]
151 pub fn variant(&self) -> LFTIMEOUT_A {
152 match self.bits {
153 0 => LFTIMEOUT_A::_0CYCLES,
154 1 => LFTIMEOUT_A::_2CYCLES,
155 2 => LFTIMEOUT_A::_4CYCLES,
156 3 => LFTIMEOUT_A::_16CYCLES,
157 4 => LFTIMEOUT_A::_32CYCLES,
158 5 => LFTIMEOUT_A::_64CYCLES,
159 6 => LFTIMEOUT_A::_1KCYCLES,
160 7 => LFTIMEOUT_A::_4KCYCLES,
161 _ => unreachable!(),
162 }
163 }
164 #[doc = "Checks if the value of the field is `_0CYCLES`"]
165 #[inline(always)]
166 pub fn is_0cycles(&self) -> bool {
167 *self == LFTIMEOUT_A::_0CYCLES
168 }
169 #[doc = "Checks if the value of the field is `_2CYCLES`"]
170 #[inline(always)]
171 pub fn is_2cycles(&self) -> bool {
172 *self == LFTIMEOUT_A::_2CYCLES
173 }
174 #[doc = "Checks if the value of the field is `_4CYCLES`"]
175 #[inline(always)]
176 pub fn is_4cycles(&self) -> bool {
177 *self == LFTIMEOUT_A::_4CYCLES
178 }
179 #[doc = "Checks if the value of the field is `_16CYCLES`"]
180 #[inline(always)]
181 pub fn is_16cycles(&self) -> bool {
182 *self == LFTIMEOUT_A::_16CYCLES
183 }
184 #[doc = "Checks if the value of the field is `_32CYCLES`"]
185 #[inline(always)]
186 pub fn is_32cycles(&self) -> bool {
187 *self == LFTIMEOUT_A::_32CYCLES
188 }
189 #[doc = "Checks if the value of the field is `_64CYCLES`"]
190 #[inline(always)]
191 pub fn is_64cycles(&self) -> bool {
192 *self == LFTIMEOUT_A::_64CYCLES
193 }
194 #[doc = "Checks if the value of the field is `_1KCYCLES`"]
195 #[inline(always)]
196 pub fn is_1kcycles(&self) -> bool {
197 *self == LFTIMEOUT_A::_1KCYCLES
198 }
199 #[doc = "Checks if the value of the field is `_4KCYCLES`"]
200 #[inline(always)]
201 pub fn is_4kcycles(&self) -> bool {
202 *self == LFTIMEOUT_A::_4KCYCLES
203 }
204}
205#[doc = "Field `LFTIMEOUT` writer - HFXO Low Frequency Timeout"]
206pub type LFTIMEOUT_W<'a> = crate::FieldWriterSafe<'a, u32, HFXOCTRL_SPEC, u8, LFTIMEOUT_A, 3, 24>;
207impl<'a> LFTIMEOUT_W<'a> {
208 #[doc = "Timeout period of 0 cycles (disabled)"]
209 #[inline(always)]
210 pub fn _0cycles(self) -> &'a mut W {
211 self.variant(LFTIMEOUT_A::_0CYCLES)
212 }
213 #[doc = "Timeout period of 2 cycles"]
214 #[inline(always)]
215 pub fn _2cycles(self) -> &'a mut W {
216 self.variant(LFTIMEOUT_A::_2CYCLES)
217 }
218 #[doc = "Timeout period of 4 cycles"]
219 #[inline(always)]
220 pub fn _4cycles(self) -> &'a mut W {
221 self.variant(LFTIMEOUT_A::_4CYCLES)
222 }
223 #[doc = "Timeout period of 16 cycles"]
224 #[inline(always)]
225 pub fn _16cycles(self) -> &'a mut W {
226 self.variant(LFTIMEOUT_A::_16CYCLES)
227 }
228 #[doc = "Timeout period of 32 cycles"]
229 #[inline(always)]
230 pub fn _32cycles(self) -> &'a mut W {
231 self.variant(LFTIMEOUT_A::_32CYCLES)
232 }
233 #[doc = "Timeout period of 64 cycles"]
234 #[inline(always)]
235 pub fn _64cycles(self) -> &'a mut W {
236 self.variant(LFTIMEOUT_A::_64CYCLES)
237 }
238 #[doc = "Timeout period of 1024 cycles"]
239 #[inline(always)]
240 pub fn _1kcycles(self) -> &'a mut W {
241 self.variant(LFTIMEOUT_A::_1KCYCLES)
242 }
243 #[doc = "Timeout period of 4096 cycles"]
244 #[inline(always)]
245 pub fn _4kcycles(self) -> &'a mut W {
246 self.variant(LFTIMEOUT_A::_4KCYCLES)
247 }
248}
249#[doc = "Field `AUTOSTARTEM0EM1` reader - Automatically Start of HFXO Upon EM0/EM1 Entry From EM2/EM3"]
250pub type AUTOSTARTEM0EM1_R = crate::BitReader<bool>;
251#[doc = "Field `AUTOSTARTEM0EM1` writer - Automatically Start of HFXO Upon EM0/EM1 Entry From EM2/EM3"]
252pub type AUTOSTARTEM0EM1_W<'a> = crate::BitWriter<'a, u32, HFXOCTRL_SPEC, bool, 28>;
253#[doc = "Field `AUTOSTARTSELEM0EM1` reader - Automatically Start and Select of HFXO Upon EM0/EM1 Entry From EM2/EM3"]
254pub type AUTOSTARTSELEM0EM1_R = crate::BitReader<bool>;
255#[doc = "Field `AUTOSTARTSELEM0EM1` writer - Automatically Start and Select of HFXO Upon EM0/EM1 Entry From EM2/EM3"]
256pub type AUTOSTARTSELEM0EM1_W<'a> = crate::BitWriter<'a, u32, HFXOCTRL_SPEC, bool, 29>;
257impl R {
258 #[doc = "Bit 0 - HFXO Mode"]
259 #[inline(always)]
260 pub fn mode(&self) -> MODE_R {
261 MODE_R::new((self.bits & 1) != 0)
262 }
263 #[doc = "Bits 4:5 - HFXO Automatic Peak Detection and Shunt Current Optimization Mode"]
264 #[inline(always)]
265 pub fn peakdetshuntoptmode(&self) -> PEAKDETSHUNTOPTMODE_R {
266 PEAKDETSHUNTOPTMODE_R::new(((self.bits >> 4) & 3) as u8)
267 }
268 #[doc = "Bit 8 - Low Power Mode Control"]
269 #[inline(always)]
270 pub fn lowpower(&self) -> LOWPOWER_R {
271 LOWPOWER_R::new(((self.bits >> 8) & 1) != 0)
272 }
273 #[doc = "Bit 9 - Clamp HFXTAL_N Pin to Ground When HFXO Oscillator is Off"]
274 #[inline(always)]
275 pub fn xti2gnd(&self) -> XTI2GND_R {
276 XTI2GND_R::new(((self.bits >> 9) & 1) != 0)
277 }
278 #[doc = "Bit 10 - Clamp HFXTAL_P Pin to Ground When HFXO Oscillator is Off"]
279 #[inline(always)]
280 pub fn xto2gnd(&self) -> XTO2GND_R {
281 XTO2GND_R::new(((self.bits >> 10) & 1) != 0)
282 }
283 #[doc = "Bits 24:26 - HFXO Low Frequency Timeout"]
284 #[inline(always)]
285 pub fn lftimeout(&self) -> LFTIMEOUT_R {
286 LFTIMEOUT_R::new(((self.bits >> 24) & 7) as u8)
287 }
288 #[doc = "Bit 28 - Automatically Start of HFXO Upon EM0/EM1 Entry From EM2/EM3"]
289 #[inline(always)]
290 pub fn autostartem0em1(&self) -> AUTOSTARTEM0EM1_R {
291 AUTOSTARTEM0EM1_R::new(((self.bits >> 28) & 1) != 0)
292 }
293 #[doc = "Bit 29 - Automatically Start and Select of HFXO Upon EM0/EM1 Entry From EM2/EM3"]
294 #[inline(always)]
295 pub fn autostartselem0em1(&self) -> AUTOSTARTSELEM0EM1_R {
296 AUTOSTARTSELEM0EM1_R::new(((self.bits >> 29) & 1) != 0)
297 }
298}
299impl W {
300 #[doc = "Bit 0 - HFXO Mode"]
301 #[inline(always)]
302 pub fn mode(&mut self) -> MODE_W {
303 MODE_W::new(self)
304 }
305 #[doc = "Bits 4:5 - HFXO Automatic Peak Detection and Shunt Current Optimization Mode"]
306 #[inline(always)]
307 pub fn peakdetshuntoptmode(&mut self) -> PEAKDETSHUNTOPTMODE_W {
308 PEAKDETSHUNTOPTMODE_W::new(self)
309 }
310 #[doc = "Bit 8 - Low Power Mode Control"]
311 #[inline(always)]
312 pub fn lowpower(&mut self) -> LOWPOWER_W {
313 LOWPOWER_W::new(self)
314 }
315 #[doc = "Bit 9 - Clamp HFXTAL_N Pin to Ground When HFXO Oscillator is Off"]
316 #[inline(always)]
317 pub fn xti2gnd(&mut self) -> XTI2GND_W {
318 XTI2GND_W::new(self)
319 }
320 #[doc = "Bit 10 - Clamp HFXTAL_P Pin to Ground When HFXO Oscillator is Off"]
321 #[inline(always)]
322 pub fn xto2gnd(&mut self) -> XTO2GND_W {
323 XTO2GND_W::new(self)
324 }
325 #[doc = "Bits 24:26 - HFXO Low Frequency Timeout"]
326 #[inline(always)]
327 pub fn lftimeout(&mut self) -> LFTIMEOUT_W {
328 LFTIMEOUT_W::new(self)
329 }
330 #[doc = "Bit 28 - Automatically Start of HFXO Upon EM0/EM1 Entry From EM2/EM3"]
331 #[inline(always)]
332 pub fn autostartem0em1(&mut self) -> AUTOSTARTEM0EM1_W {
333 AUTOSTARTEM0EM1_W::new(self)
334 }
335 #[doc = "Bit 29 - Automatically Start and Select of HFXO Upon EM0/EM1 Entry From EM2/EM3"]
336 #[inline(always)]
337 pub fn autostartselem0em1(&mut self) -> AUTOSTARTSELEM0EM1_W {
338 AUTOSTARTSELEM0EM1_W::new(self)
339 }
340 #[doc = "Writes raw bits to the register."]
341 #[inline(always)]
342 pub unsafe fn bits(&mut self, bits: u32) -> &mut Self {
343 self.0.bits(bits);
344 self
345 }
346}
347#[doc = "HFXO Control Register\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 [hfxoctrl](index.html) module"]
348pub struct HFXOCTRL_SPEC;
349impl crate::RegisterSpec for HFXOCTRL_SPEC {
350 type Ux = u32;
351}
352#[doc = "`read()` method returns [hfxoctrl::R](R) reader structure"]
353impl crate::Readable for HFXOCTRL_SPEC {
354 type Reader = R;
355}
356#[doc = "`write(|w| ..)` method takes [hfxoctrl::W](W) writer structure"]
357impl crate::Writable for HFXOCTRL_SPEC {
358 type Writer = W;
359}
360#[doc = "`reset()` method sets HFXOCTRL to value 0"]
361impl crate::Resettable for HFXOCTRL_SPEC {
362 #[inline(always)]
363 fn reset_value() -> Self::Ux {
364 0
365 }
366}