lpc82x_pac/pint/
pmctrl.rs

1#[doc = "Register `PMCTRL` reader"]
2pub struct R(crate::R<PMCTRL_SPEC>);
3impl core::ops::Deref for R {
4    type Target = crate::R<PMCTRL_SPEC>;
5    #[inline(always)]
6    fn deref(&self) -> &Self::Target {
7        &self.0
8    }
9}
10impl From<crate::R<PMCTRL_SPEC>> for R {
11    #[inline(always)]
12    fn from(reader: crate::R<PMCTRL_SPEC>) -> Self {
13        R(reader)
14    }
15}
16#[doc = "Register `PMCTRL` writer"]
17pub struct W(crate::W<PMCTRL_SPEC>);
18impl core::ops::Deref for W {
19    type Target = crate::W<PMCTRL_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<PMCTRL_SPEC>> for W {
32    #[inline(always)]
33    fn from(writer: crate::W<PMCTRL_SPEC>) -> Self {
34        W(writer)
35    }
36}
37#[doc = "Specifies whether the 8 pin interrupts are controlled by the pin interrupt function or by the pattern match function.\n\nValue on reset: 0"]
38#[derive(Clone, Copy, Debug, PartialEq)]
39pub enum SEL_PMATCH_A {
40    #[doc = "0: Pin interrupt. Interrupts are driven in response to the standard pin interrupt function."]
41    PIN_INTERRUPT = 0,
42    #[doc = "1: Pattern match. Interrupts are driven in response to pattern matches."]
43    PATTERN_MATCH = 1,
44}
45impl From<SEL_PMATCH_A> for bool {
46    #[inline(always)]
47    fn from(variant: SEL_PMATCH_A) -> Self {
48        variant as u8 != 0
49    }
50}
51#[doc = "Field `SEL_PMATCH` reader - Specifies whether the 8 pin interrupts are controlled by the pin interrupt function or by the pattern match function."]
52pub struct SEL_PMATCH_R(crate::FieldReader<bool, SEL_PMATCH_A>);
53impl SEL_PMATCH_R {
54    pub(crate) fn new(bits: bool) -> Self {
55        SEL_PMATCH_R(crate::FieldReader::new(bits))
56    }
57    #[doc = r"Get enumerated values variant"]
58    #[inline(always)]
59    pub fn variant(&self) -> SEL_PMATCH_A {
60        match self.bits {
61            false => SEL_PMATCH_A::PIN_INTERRUPT,
62            true => SEL_PMATCH_A::PATTERN_MATCH,
63        }
64    }
65    #[doc = "Checks if the value of the field is `PIN_INTERRUPT`"]
66    #[inline(always)]
67    pub fn is_pin_interrupt(&self) -> bool {
68        **self == SEL_PMATCH_A::PIN_INTERRUPT
69    }
70    #[doc = "Checks if the value of the field is `PATTERN_MATCH`"]
71    #[inline(always)]
72    pub fn is_pattern_match(&self) -> bool {
73        **self == SEL_PMATCH_A::PATTERN_MATCH
74    }
75}
76impl core::ops::Deref for SEL_PMATCH_R {
77    type Target = crate::FieldReader<bool, SEL_PMATCH_A>;
78    #[inline(always)]
79    fn deref(&self) -> &Self::Target {
80        &self.0
81    }
82}
83#[doc = "Field `SEL_PMATCH` writer - Specifies whether the 8 pin interrupts are controlled by the pin interrupt function or by the pattern match function."]
84pub struct SEL_PMATCH_W<'a> {
85    w: &'a mut W,
86}
87impl<'a> SEL_PMATCH_W<'a> {
88    #[doc = r"Writes `variant` to the field"]
89    #[inline(always)]
90    pub fn variant(self, variant: SEL_PMATCH_A) -> &'a mut W {
91        self.bit(variant.into())
92    }
93    #[doc = "Pin interrupt. Interrupts are driven in response to the standard pin interrupt function."]
94    #[inline(always)]
95    pub fn pin_interrupt(self) -> &'a mut W {
96        self.variant(SEL_PMATCH_A::PIN_INTERRUPT)
97    }
98    #[doc = "Pattern match. Interrupts are driven in response to pattern matches."]
99    #[inline(always)]
100    pub fn pattern_match(self) -> &'a mut W {
101        self.variant(SEL_PMATCH_A::PATTERN_MATCH)
102    }
103    #[doc = r"Sets the field bit"]
104    #[inline(always)]
105    pub fn set_bit(self) -> &'a mut W {
106        self.bit(true)
107    }
108    #[doc = r"Clears the field bit"]
109    #[inline(always)]
110    pub fn clear_bit(self) -> &'a mut W {
111        self.bit(false)
112    }
113    #[doc = r"Writes raw bits to the field"]
114    #[inline(always)]
115    pub fn bit(self, value: bool) -> &'a mut W {
116        self.w.bits = (self.w.bits & !0x01) | (value as u32 & 0x01);
117        self.w
118    }
119}
120#[doc = "Enables the RXEV output to the CPU and/or to a GPIO output when the specified boolean expression evaluates to true.\n\nValue on reset: 0"]
121#[derive(Clone, Copy, Debug, PartialEq)]
122pub enum ENA_RXEV_A {
123    #[doc = "0: Disabled. RXEV output to the CPU is disabled."]
124    DISABLED = 0,
125    #[doc = "1: Enabled. RXEV output to the CPU is enabled."]
126    ENABLED = 1,
127}
128impl From<ENA_RXEV_A> for bool {
129    #[inline(always)]
130    fn from(variant: ENA_RXEV_A) -> Self {
131        variant as u8 != 0
132    }
133}
134#[doc = "Field `ENA_RXEV` reader - Enables the RXEV output to the CPU and/or to a GPIO output when the specified boolean expression evaluates to true."]
135pub struct ENA_RXEV_R(crate::FieldReader<bool, ENA_RXEV_A>);
136impl ENA_RXEV_R {
137    pub(crate) fn new(bits: bool) -> Self {
138        ENA_RXEV_R(crate::FieldReader::new(bits))
139    }
140    #[doc = r"Get enumerated values variant"]
141    #[inline(always)]
142    pub fn variant(&self) -> ENA_RXEV_A {
143        match self.bits {
144            false => ENA_RXEV_A::DISABLED,
145            true => ENA_RXEV_A::ENABLED,
146        }
147    }
148    #[doc = "Checks if the value of the field is `DISABLED`"]
149    #[inline(always)]
150    pub fn is_disabled(&self) -> bool {
151        **self == ENA_RXEV_A::DISABLED
152    }
153    #[doc = "Checks if the value of the field is `ENABLED`"]
154    #[inline(always)]
155    pub fn is_enabled(&self) -> bool {
156        **self == ENA_RXEV_A::ENABLED
157    }
158}
159impl core::ops::Deref for ENA_RXEV_R {
160    type Target = crate::FieldReader<bool, ENA_RXEV_A>;
161    #[inline(always)]
162    fn deref(&self) -> &Self::Target {
163        &self.0
164    }
165}
166#[doc = "Field `ENA_RXEV` writer - Enables the RXEV output to the CPU and/or to a GPIO output when the specified boolean expression evaluates to true."]
167pub struct ENA_RXEV_W<'a> {
168    w: &'a mut W,
169}
170impl<'a> ENA_RXEV_W<'a> {
171    #[doc = r"Writes `variant` to the field"]
172    #[inline(always)]
173    pub fn variant(self, variant: ENA_RXEV_A) -> &'a mut W {
174        self.bit(variant.into())
175    }
176    #[doc = "Disabled. RXEV output to the CPU is disabled."]
177    #[inline(always)]
178    pub fn disabled(self) -> &'a mut W {
179        self.variant(ENA_RXEV_A::DISABLED)
180    }
181    #[doc = "Enabled. RXEV output to the CPU is enabled."]
182    #[inline(always)]
183    pub fn enabled(self) -> &'a mut W {
184        self.variant(ENA_RXEV_A::ENABLED)
185    }
186    #[doc = r"Sets the field bit"]
187    #[inline(always)]
188    pub fn set_bit(self) -> &'a mut W {
189        self.bit(true)
190    }
191    #[doc = r"Clears the field bit"]
192    #[inline(always)]
193    pub fn clear_bit(self) -> &'a mut W {
194        self.bit(false)
195    }
196    #[doc = r"Writes raw bits to the field"]
197    #[inline(always)]
198    pub fn bit(self, value: bool) -> &'a mut W {
199        self.w.bits = (self.w.bits & !(0x01 << 1)) | ((value as u32 & 0x01) << 1);
200        self.w
201    }
202}
203#[doc = "Field `PMAT` reader - This field displays the current state of pattern matches. A 1 in any bit of this field indicates that the corresponding product term is matched by the current state of the appropriate inputs."]
204pub struct PMAT_R(crate::FieldReader<u8, u8>);
205impl PMAT_R {
206    pub(crate) fn new(bits: u8) -> Self {
207        PMAT_R(crate::FieldReader::new(bits))
208    }
209}
210impl core::ops::Deref for PMAT_R {
211    type Target = crate::FieldReader<u8, u8>;
212    #[inline(always)]
213    fn deref(&self) -> &Self::Target {
214        &self.0
215    }
216}
217#[doc = "Field `PMAT` writer - This field displays the current state of pattern matches. A 1 in any bit of this field indicates that the corresponding product term is matched by the current state of the appropriate inputs."]
218pub struct PMAT_W<'a> {
219    w: &'a mut W,
220}
221impl<'a> PMAT_W<'a> {
222    #[doc = r"Writes raw bits to the field"]
223    #[inline(always)]
224    pub unsafe fn bits(self, value: u8) -> &'a mut W {
225        self.w.bits = (self.w.bits & !(0xff << 24)) | ((value as u32 & 0xff) << 24);
226        self.w
227    }
228}
229impl R {
230    #[doc = "Bit 0 - Specifies whether the 8 pin interrupts are controlled by the pin interrupt function or by the pattern match function."]
231    #[inline(always)]
232    pub fn sel_pmatch(&self) -> SEL_PMATCH_R {
233        SEL_PMATCH_R::new((self.bits & 0x01) != 0)
234    }
235    #[doc = "Bit 1 - Enables the RXEV output to the CPU and/or to a GPIO output when the specified boolean expression evaluates to true."]
236    #[inline(always)]
237    pub fn ena_rxev(&self) -> ENA_RXEV_R {
238        ENA_RXEV_R::new(((self.bits >> 1) & 0x01) != 0)
239    }
240    #[doc = "Bits 24:31 - This field displays the current state of pattern matches. A 1 in any bit of this field indicates that the corresponding product term is matched by the current state of the appropriate inputs."]
241    #[inline(always)]
242    pub fn pmat(&self) -> PMAT_R {
243        PMAT_R::new(((self.bits >> 24) & 0xff) as u8)
244    }
245}
246impl W {
247    #[doc = "Bit 0 - Specifies whether the 8 pin interrupts are controlled by the pin interrupt function or by the pattern match function."]
248    #[inline(always)]
249    pub fn sel_pmatch(&mut self) -> SEL_PMATCH_W {
250        SEL_PMATCH_W { w: self }
251    }
252    #[doc = "Bit 1 - Enables the RXEV output to the CPU and/or to a GPIO output when the specified boolean expression evaluates to true."]
253    #[inline(always)]
254    pub fn ena_rxev(&mut self) -> ENA_RXEV_W {
255        ENA_RXEV_W { w: self }
256    }
257    #[doc = "Bits 24:31 - This field displays the current state of pattern matches. A 1 in any bit of this field indicates that the corresponding product term is matched by the current state of the appropriate inputs."]
258    #[inline(always)]
259    pub fn pmat(&mut self) -> PMAT_W {
260        PMAT_W { w: self }
261    }
262    #[doc = "Writes raw bits to the register."]
263    #[inline(always)]
264    pub unsafe fn bits(&mut self, bits: u32) -> &mut Self {
265        self.0.bits(bits);
266        self
267    }
268}
269#[doc = "Pattern match interrupt 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 [pmctrl](index.html) module"]
270pub struct PMCTRL_SPEC;
271impl crate::RegisterSpec for PMCTRL_SPEC {
272    type Ux = u32;
273}
274#[doc = "`read()` method returns [pmctrl::R](R) reader structure"]
275impl crate::Readable for PMCTRL_SPEC {
276    type Reader = R;
277}
278#[doc = "`write(|w| ..)` method takes [pmctrl::W](W) writer structure"]
279impl crate::Writable for PMCTRL_SPEC {
280    type Writer = W;
281}
282#[doc = "`reset()` method sets PMCTRL to value 0"]
283impl crate::Resettable for PMCTRL_SPEC {
284    #[inline(always)]
285    fn reset_value() -> Self::Ux {
286        0
287    }
288}