1#[doc = "Register `RSTSR1` reader"]
2pub struct R(crate::R<RSTSR1_SPEC>);
3impl core::ops::Deref for R {
4 type Target = crate::R<RSTSR1_SPEC>;
5 #[inline(always)]
6 fn deref(&self) -> &Self::Target {
7 &self.0
8 }
9}
10impl From<crate::R<RSTSR1_SPEC>> for R {
11 #[inline(always)]
12 fn from(reader: crate::R<RSTSR1_SPEC>) -> Self {
13 R(reader)
14 }
15}
16#[doc = "Register `RSTSR1` writer"]
17pub struct W(crate::W<RSTSR1_SPEC>);
18impl core::ops::Deref for W {
19 type Target = crate::W<RSTSR1_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<RSTSR1_SPEC>> for W {
32 #[inline(always)]
33 fn from(writer: crate::W<RSTSR1_SPEC>) -> Self {
34 W(writer)
35 }
36}
37#[doc = "Field `IWDTRF` reader - Independent Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nThe field is **modified** in some way after a read operation."]
38pub type IWDTRF_R = crate::BitReader<IWDTRF_A>;
39#[doc = "Independent Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nValue on reset: 0"]
40#[derive(Clone, Copy, Debug, PartialEq, Eq)]
41pub enum IWDTRF_A {
42 #[doc = "0: Independent watchdog timer reset not detected."]
43 _0 = 0,
44 #[doc = "1: Independent watchdog timer reset detected."]
45 _1 = 1,
46}
47impl From<IWDTRF_A> for bool {
48 #[inline(always)]
49 fn from(variant: IWDTRF_A) -> Self {
50 variant as u8 != 0
51 }
52}
53impl IWDTRF_R {
54 #[doc = "Get enumerated values variant"]
55 #[inline(always)]
56 pub fn variant(&self) -> IWDTRF_A {
57 match self.bits {
58 false => IWDTRF_A::_0,
59 true => IWDTRF_A::_1,
60 }
61 }
62 #[doc = "Checks if the value of the field is `_0`"]
63 #[inline(always)]
64 pub fn is_0(&self) -> bool {
65 *self == IWDTRF_A::_0
66 }
67 #[doc = "Checks if the value of the field is `_1`"]
68 #[inline(always)]
69 pub fn is_1(&self) -> bool {
70 *self == IWDTRF_A::_1
71 }
72}
73#[doc = "Field `IWDTRF` writer - Independent Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
74pub type IWDTRF_W<'a, const O: u8> = crate::BitWriter0C<'a, u16, RSTSR1_SPEC, IWDTRF_A, O>;
75impl<'a, const O: u8> IWDTRF_W<'a, O> {
76 #[doc = "Independent watchdog timer reset not detected."]
77 #[inline(always)]
78 pub fn _0(self) -> &'a mut W {
79 self.variant(IWDTRF_A::_0)
80 }
81 #[doc = "Independent watchdog timer reset detected."]
82 #[inline(always)]
83 pub fn _1(self) -> &'a mut W {
84 self.variant(IWDTRF_A::_1)
85 }
86}
87#[doc = "Field `WDTRF` reader - Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nThe field is **modified** in some way after a read operation."]
88pub type WDTRF_R = crate::BitReader<WDTRF_A>;
89#[doc = "Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nValue on reset: 0"]
90#[derive(Clone, Copy, Debug, PartialEq, Eq)]
91pub enum WDTRF_A {
92 #[doc = "0: Watchdog timer reset not detected."]
93 _0 = 0,
94 #[doc = "1: Watchdog timer reset detected."]
95 _1 = 1,
96}
97impl From<WDTRF_A> for bool {
98 #[inline(always)]
99 fn from(variant: WDTRF_A) -> Self {
100 variant as u8 != 0
101 }
102}
103impl WDTRF_R {
104 #[doc = "Get enumerated values variant"]
105 #[inline(always)]
106 pub fn variant(&self) -> WDTRF_A {
107 match self.bits {
108 false => WDTRF_A::_0,
109 true => WDTRF_A::_1,
110 }
111 }
112 #[doc = "Checks if the value of the field is `_0`"]
113 #[inline(always)]
114 pub fn is_0(&self) -> bool {
115 *self == WDTRF_A::_0
116 }
117 #[doc = "Checks if the value of the field is `_1`"]
118 #[inline(always)]
119 pub fn is_1(&self) -> bool {
120 *self == WDTRF_A::_1
121 }
122}
123#[doc = "Field `WDTRF` writer - Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
124pub type WDTRF_W<'a, const O: u8> = crate::BitWriter0C<'a, u16, RSTSR1_SPEC, WDTRF_A, O>;
125impl<'a, const O: u8> WDTRF_W<'a, O> {
126 #[doc = "Watchdog timer reset not detected."]
127 #[inline(always)]
128 pub fn _0(self) -> &'a mut W {
129 self.variant(WDTRF_A::_0)
130 }
131 #[doc = "Watchdog timer reset detected."]
132 #[inline(always)]
133 pub fn _1(self) -> &'a mut W {
134 self.variant(WDTRF_A::_1)
135 }
136}
137#[doc = "Field `SWRF` reader - Software Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nThe field is **modified** in some way after a read operation."]
138pub type SWRF_R = crate::BitReader<SWRF_A>;
139#[doc = "Software Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nValue on reset: 0"]
140#[derive(Clone, Copy, Debug, PartialEq, Eq)]
141pub enum SWRF_A {
142 #[doc = "0: Software reset not detected."]
143 _0 = 0,
144 #[doc = "1: Software reset detected."]
145 _1 = 1,
146}
147impl From<SWRF_A> for bool {
148 #[inline(always)]
149 fn from(variant: SWRF_A) -> Self {
150 variant as u8 != 0
151 }
152}
153impl SWRF_R {
154 #[doc = "Get enumerated values variant"]
155 #[inline(always)]
156 pub fn variant(&self) -> SWRF_A {
157 match self.bits {
158 false => SWRF_A::_0,
159 true => SWRF_A::_1,
160 }
161 }
162 #[doc = "Checks if the value of the field is `_0`"]
163 #[inline(always)]
164 pub fn is_0(&self) -> bool {
165 *self == SWRF_A::_0
166 }
167 #[doc = "Checks if the value of the field is `_1`"]
168 #[inline(always)]
169 pub fn is_1(&self) -> bool {
170 *self == SWRF_A::_1
171 }
172}
173#[doc = "Field `SWRF` writer - Software Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
174pub type SWRF_W<'a, const O: u8> = crate::BitWriter0C<'a, u16, RSTSR1_SPEC, SWRF_A, O>;
175impl<'a, const O: u8> SWRF_W<'a, O> {
176 #[doc = "Software reset not detected."]
177 #[inline(always)]
178 pub fn _0(self) -> &'a mut W {
179 self.variant(SWRF_A::_0)
180 }
181 #[doc = "Software reset detected."]
182 #[inline(always)]
183 pub fn _1(self) -> &'a mut W {
184 self.variant(SWRF_A::_1)
185 }
186}
187#[doc = "Field `RPERF` reader - RAM Parity Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nThe field is **modified** in some way after a read operation."]
188pub type RPERF_R = crate::BitReader<RPERF_A>;
189#[doc = "RAM Parity Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nValue on reset: 0"]
190#[derive(Clone, Copy, Debug, PartialEq, Eq)]
191pub enum RPERF_A {
192 #[doc = "0: RAM parity error reset not detected."]
193 _0 = 0,
194 #[doc = "1: RAM parity error reset detected."]
195 _1 = 1,
196}
197impl From<RPERF_A> for bool {
198 #[inline(always)]
199 fn from(variant: RPERF_A) -> Self {
200 variant as u8 != 0
201 }
202}
203impl RPERF_R {
204 #[doc = "Get enumerated values variant"]
205 #[inline(always)]
206 pub fn variant(&self) -> RPERF_A {
207 match self.bits {
208 false => RPERF_A::_0,
209 true => RPERF_A::_1,
210 }
211 }
212 #[doc = "Checks if the value of the field is `_0`"]
213 #[inline(always)]
214 pub fn is_0(&self) -> bool {
215 *self == RPERF_A::_0
216 }
217 #[doc = "Checks if the value of the field is `_1`"]
218 #[inline(always)]
219 pub fn is_1(&self) -> bool {
220 *self == RPERF_A::_1
221 }
222}
223#[doc = "Field `RPERF` writer - RAM Parity Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
224pub type RPERF_W<'a, const O: u8> = crate::BitWriter0C<'a, u16, RSTSR1_SPEC, RPERF_A, O>;
225impl<'a, const O: u8> RPERF_W<'a, O> {
226 #[doc = "RAM parity error reset not detected."]
227 #[inline(always)]
228 pub fn _0(self) -> &'a mut W {
229 self.variant(RPERF_A::_0)
230 }
231 #[doc = "RAM parity error reset detected."]
232 #[inline(always)]
233 pub fn _1(self) -> &'a mut W {
234 self.variant(RPERF_A::_1)
235 }
236}
237#[doc = "Field `REERF` reader - RAM ECC Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nThe field is **modified** in some way after a read operation."]
238pub type REERF_R = crate::BitReader<REERF_A>;
239#[doc = "RAM ECC Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nValue on reset: 0"]
240#[derive(Clone, Copy, Debug, PartialEq, Eq)]
241pub enum REERF_A {
242 #[doc = "0: RAM ECC error reset not detected."]
243 _0 = 0,
244 #[doc = "1: RAM ECC error reset detected."]
245 _1 = 1,
246}
247impl From<REERF_A> for bool {
248 #[inline(always)]
249 fn from(variant: REERF_A) -> Self {
250 variant as u8 != 0
251 }
252}
253impl REERF_R {
254 #[doc = "Get enumerated values variant"]
255 #[inline(always)]
256 pub fn variant(&self) -> REERF_A {
257 match self.bits {
258 false => REERF_A::_0,
259 true => REERF_A::_1,
260 }
261 }
262 #[doc = "Checks if the value of the field is `_0`"]
263 #[inline(always)]
264 pub fn is_0(&self) -> bool {
265 *self == REERF_A::_0
266 }
267 #[doc = "Checks if the value of the field is `_1`"]
268 #[inline(always)]
269 pub fn is_1(&self) -> bool {
270 *self == REERF_A::_1
271 }
272}
273#[doc = "Field `REERF` writer - RAM ECC Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
274pub type REERF_W<'a, const O: u8> = crate::BitWriter0C<'a, u16, RSTSR1_SPEC, REERF_A, O>;
275impl<'a, const O: u8> REERF_W<'a, O> {
276 #[doc = "RAM ECC error reset not detected."]
277 #[inline(always)]
278 pub fn _0(self) -> &'a mut W {
279 self.variant(REERF_A::_0)
280 }
281 #[doc = "RAM ECC error reset detected."]
282 #[inline(always)]
283 pub fn _1(self) -> &'a mut W {
284 self.variant(REERF_A::_1)
285 }
286}
287#[doc = "Field `BUSSRF` reader - Bus Slave MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nThe field is **modified** in some way after a read operation."]
288pub type BUSSRF_R = crate::BitReader<BUSSRF_A>;
289#[doc = "Bus Slave MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nValue on reset: 0"]
290#[derive(Clone, Copy, Debug, PartialEq, Eq)]
291pub enum BUSSRF_A {
292 #[doc = "0: Bus Slave MPU reset not detected."]
293 _0 = 0,
294 #[doc = "1: Bus Slave MPU reset detected."]
295 _1 = 1,
296}
297impl From<BUSSRF_A> for bool {
298 #[inline(always)]
299 fn from(variant: BUSSRF_A) -> Self {
300 variant as u8 != 0
301 }
302}
303impl BUSSRF_R {
304 #[doc = "Get enumerated values variant"]
305 #[inline(always)]
306 pub fn variant(&self) -> BUSSRF_A {
307 match self.bits {
308 false => BUSSRF_A::_0,
309 true => BUSSRF_A::_1,
310 }
311 }
312 #[doc = "Checks if the value of the field is `_0`"]
313 #[inline(always)]
314 pub fn is_0(&self) -> bool {
315 *self == BUSSRF_A::_0
316 }
317 #[doc = "Checks if the value of the field is `_1`"]
318 #[inline(always)]
319 pub fn is_1(&self) -> bool {
320 *self == BUSSRF_A::_1
321 }
322}
323#[doc = "Field `BUSSRF` writer - Bus Slave MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
324pub type BUSSRF_W<'a, const O: u8> = crate::BitWriter0C<'a, u16, RSTSR1_SPEC, BUSSRF_A, O>;
325impl<'a, const O: u8> BUSSRF_W<'a, O> {
326 #[doc = "Bus Slave MPU reset not detected."]
327 #[inline(always)]
328 pub fn _0(self) -> &'a mut W {
329 self.variant(BUSSRF_A::_0)
330 }
331 #[doc = "Bus Slave MPU reset detected."]
332 #[inline(always)]
333 pub fn _1(self) -> &'a mut W {
334 self.variant(BUSSRF_A::_1)
335 }
336}
337#[doc = "Field `BUSMRF` reader - Bus Master MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nThe field is **modified** in some way after a read operation."]
338pub type BUSMRF_R = crate::BitReader<BUSMRF_A>;
339#[doc = "Bus Master MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nValue on reset: 0"]
340#[derive(Clone, Copy, Debug, PartialEq, Eq)]
341pub enum BUSMRF_A {
342 #[doc = "0: Bus Master MPU reset not detected."]
343 _0 = 0,
344 #[doc = "1: Bus Master MPU reset detected."]
345 _1 = 1,
346}
347impl From<BUSMRF_A> for bool {
348 #[inline(always)]
349 fn from(variant: BUSMRF_A) -> Self {
350 variant as u8 != 0
351 }
352}
353impl BUSMRF_R {
354 #[doc = "Get enumerated values variant"]
355 #[inline(always)]
356 pub fn variant(&self) -> BUSMRF_A {
357 match self.bits {
358 false => BUSMRF_A::_0,
359 true => BUSMRF_A::_1,
360 }
361 }
362 #[doc = "Checks if the value of the field is `_0`"]
363 #[inline(always)]
364 pub fn is_0(&self) -> bool {
365 *self == BUSMRF_A::_0
366 }
367 #[doc = "Checks if the value of the field is `_1`"]
368 #[inline(always)]
369 pub fn is_1(&self) -> bool {
370 *self == BUSMRF_A::_1
371 }
372}
373#[doc = "Field `BUSMRF` writer - Bus Master MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
374pub type BUSMRF_W<'a, const O: u8> = crate::BitWriter0C<'a, u16, RSTSR1_SPEC, BUSMRF_A, O>;
375impl<'a, const O: u8> BUSMRF_W<'a, O> {
376 #[doc = "Bus Master MPU reset not detected."]
377 #[inline(always)]
378 pub fn _0(self) -> &'a mut W {
379 self.variant(BUSMRF_A::_0)
380 }
381 #[doc = "Bus Master MPU reset detected."]
382 #[inline(always)]
383 pub fn _1(self) -> &'a mut W {
384 self.variant(BUSMRF_A::_1)
385 }
386}
387#[doc = "Field `SPERF` reader - SP Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nThe field is **modified** in some way after a read operation."]
388pub type SPERF_R = crate::BitReader<SPERF_A>;
389#[doc = "SP Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0.\n\nValue on reset: 0"]
390#[derive(Clone, Copy, Debug, PartialEq, Eq)]
391pub enum SPERF_A {
392 #[doc = "0: SP error reset not detected."]
393 _0 = 0,
394 #[doc = "1: SP error reset detected."]
395 _1 = 1,
396}
397impl From<SPERF_A> for bool {
398 #[inline(always)]
399 fn from(variant: SPERF_A) -> Self {
400 variant as u8 != 0
401 }
402}
403impl SPERF_R {
404 #[doc = "Get enumerated values variant"]
405 #[inline(always)]
406 pub fn variant(&self) -> SPERF_A {
407 match self.bits {
408 false => SPERF_A::_0,
409 true => SPERF_A::_1,
410 }
411 }
412 #[doc = "Checks if the value of the field is `_0`"]
413 #[inline(always)]
414 pub fn is_0(&self) -> bool {
415 *self == SPERF_A::_0
416 }
417 #[doc = "Checks if the value of the field is `_1`"]
418 #[inline(always)]
419 pub fn is_1(&self) -> bool {
420 *self == SPERF_A::_1
421 }
422}
423#[doc = "Field `SPERF` writer - SP Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
424pub type SPERF_W<'a, const O: u8> = crate::BitWriter0C<'a, u16, RSTSR1_SPEC, SPERF_A, O>;
425impl<'a, const O: u8> SPERF_W<'a, O> {
426 #[doc = "SP error reset not detected."]
427 #[inline(always)]
428 pub fn _0(self) -> &'a mut W {
429 self.variant(SPERF_A::_0)
430 }
431 #[doc = "SP error reset detected."]
432 #[inline(always)]
433 pub fn _1(self) -> &'a mut W {
434 self.variant(SPERF_A::_1)
435 }
436}
437impl R {
438 #[doc = "Bit 0 - Independent Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
439 #[inline(always)]
440 pub fn iwdtrf(&self) -> IWDTRF_R {
441 IWDTRF_R::new((self.bits & 1) != 0)
442 }
443 #[doc = "Bit 1 - Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
444 #[inline(always)]
445 pub fn wdtrf(&self) -> WDTRF_R {
446 WDTRF_R::new(((self.bits >> 1) & 1) != 0)
447 }
448 #[doc = "Bit 2 - Software Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
449 #[inline(always)]
450 pub fn swrf(&self) -> SWRF_R {
451 SWRF_R::new(((self.bits >> 2) & 1) != 0)
452 }
453 #[doc = "Bit 8 - RAM Parity Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
454 #[inline(always)]
455 pub fn rperf(&self) -> RPERF_R {
456 RPERF_R::new(((self.bits >> 8) & 1) != 0)
457 }
458 #[doc = "Bit 9 - RAM ECC Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
459 #[inline(always)]
460 pub fn reerf(&self) -> REERF_R {
461 REERF_R::new(((self.bits >> 9) & 1) != 0)
462 }
463 #[doc = "Bit 10 - Bus Slave MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
464 #[inline(always)]
465 pub fn bussrf(&self) -> BUSSRF_R {
466 BUSSRF_R::new(((self.bits >> 10) & 1) != 0)
467 }
468 #[doc = "Bit 11 - Bus Master MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
469 #[inline(always)]
470 pub fn busmrf(&self) -> BUSMRF_R {
471 BUSMRF_R::new(((self.bits >> 11) & 1) != 0)
472 }
473 #[doc = "Bit 12 - SP Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
474 #[inline(always)]
475 pub fn sperf(&self) -> SPERF_R {
476 SPERF_R::new(((self.bits >> 12) & 1) != 0)
477 }
478}
479impl W {
480 #[doc = "Bit 0 - Independent Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
481 #[inline(always)]
482 #[must_use]
483 pub fn iwdtrf(&mut self) -> IWDTRF_W<0> {
484 IWDTRF_W::new(self)
485 }
486 #[doc = "Bit 1 - Watchdog Timer Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
487 #[inline(always)]
488 #[must_use]
489 pub fn wdtrf(&mut self) -> WDTRF_W<1> {
490 WDTRF_W::new(self)
491 }
492 #[doc = "Bit 2 - Software Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
493 #[inline(always)]
494 #[must_use]
495 pub fn swrf(&mut self) -> SWRF_W<2> {
496 SWRF_W::new(self)
497 }
498 #[doc = "Bit 8 - RAM Parity Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
499 #[inline(always)]
500 #[must_use]
501 pub fn rperf(&mut self) -> RPERF_W<8> {
502 RPERF_W::new(self)
503 }
504 #[doc = "Bit 9 - RAM ECC Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
505 #[inline(always)]
506 #[must_use]
507 pub fn reerf(&mut self) -> REERF_W<9> {
508 REERF_W::new(self)
509 }
510 #[doc = "Bit 10 - Bus Slave MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
511 #[inline(always)]
512 #[must_use]
513 pub fn bussrf(&mut self) -> BUSSRF_W<10> {
514 BUSSRF_W::new(self)
515 }
516 #[doc = "Bit 11 - Bus Master MPU Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
517 #[inline(always)]
518 #[must_use]
519 pub fn busmrf(&mut self) -> BUSMRF_W<11> {
520 BUSMRF_W::new(self)
521 }
522 #[doc = "Bit 12 - SP Error Reset Detect FlagNOTE: Writable only to clear the flag. Confirm the value is 1 and then write 0."]
523 #[inline(always)]
524 #[must_use]
525 pub fn sperf(&mut self) -> SPERF_W<12> {
526 SPERF_W::new(self)
527 }
528 #[doc = "Writes raw bits to the register."]
529 #[inline(always)]
530 pub unsafe fn bits(&mut self, bits: u16) -> &mut Self {
531 self.0.bits(bits);
532 self
533 }
534}
535#[doc = "Reset Status Register 1\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 [rstsr1](index.html) module"]
536pub struct RSTSR1_SPEC;
537impl crate::RegisterSpec for RSTSR1_SPEC {
538 type Ux = u16;
539}
540#[doc = "`read()` method returns [rstsr1::R](R) reader structure"]
541impl crate::Readable for RSTSR1_SPEC {
542 type Reader = R;
543}
544#[doc = "`write(|w| ..)` method takes [rstsr1::W](W) writer structure"]
545impl crate::Writable for RSTSR1_SPEC {
546 type Writer = W;
547 const ZERO_TO_MODIFY_FIELDS_BITMAP: Self::Ux = 0x1f07;
548 const ONE_TO_MODIFY_FIELDS_BITMAP: Self::Ux = 0;
549}
550#[doc = "`reset()` method sets RSTSR1 to value 0"]
551impl crate::Resettable for RSTSR1_SPEC {
552 const RESET_VALUE: Self::Ux = 0;
553}