buffa_types/generated/google.protobuf.timestamp.rs
1// @generated by buffa-codegen. DO NOT EDIT.
2// source: google/protobuf/timestamp.proto
3
4/// A Timestamp represents a point in time independent of any time zone or local
5/// calendar, encoded as a count of seconds and fractions of seconds at
6/// nanosecond resolution. The count is relative to an epoch at UTC midnight on
7/// January 1, 1970, in the proleptic Gregorian calendar which extends the
8/// Gregorian calendar backwards to year one.
9///
10/// All minutes are 60 seconds long. Leap seconds are "smeared" so that no leap
11/// second table is needed for interpretation, using a \[24-hour linear
12/// smear\](<https://developers.google.com/time/smear>).
13///
14/// The range is from 0001-01-01T00:00:00Z to 9999-12-31T23:59:59.999999999Z. By
15/// restricting to that range, we ensure that we can convert to and from \[RFC
16/// 3339\](<https://www.ietf.org/rfc/rfc3339.txt>) date strings.
17///
18/// # Examples
19///
20/// Example 1: Compute Timestamp from POSIX `time()`.
21///
22/// ```text
23/// Timestamp timestamp;
24/// timestamp.set_seconds(time(NULL));
25/// timestamp.set_nanos(0);
26/// ```
27///
28/// Example 2: Compute Timestamp from POSIX `gettimeofday()`.
29///
30/// ```text
31/// struct timeval tv;
32/// gettimeofday(&tv, NULL);
33///
34/// Timestamp timestamp;
35/// timestamp.set_seconds(tv.tv_sec);
36/// timestamp.set_nanos(tv.tv_usec * 1000);
37/// ```
38///
39/// Example 3: Compute Timestamp from Win32 `GetSystemTimeAsFileTime()`.
40///
41/// ```text
42/// FILETIME ft;
43/// GetSystemTimeAsFileTime(&ft);
44/// UINT64 ticks = (((UINT64)ft.dwHighDateTime) << 32) | ft.dwLowDateTime;
45///
46/// // A Windows tick is 100 nanoseconds. Windows epoch 1601-01-01T00:00:00Z
47/// // is 11644473600 seconds before Unix epoch 1970-01-01T00:00:00Z.
48/// Timestamp timestamp;
49/// timestamp.set_seconds((INT64) ((ticks / 10000000) - 11644473600LL));
50/// timestamp.set_nanos((INT32) ((ticks % 10000000) * 100));
51/// ```
52///
53/// Example 4: Compute Timestamp from Java `System.currentTimeMillis()`.
54///
55/// ```text
56/// long millis = System.currentTimeMillis();
57///
58/// Timestamp timestamp = Timestamp.newBuilder().setSeconds(millis / 1000)
59/// .setNanos((int) ((millis % 1000) * 1000000)).build();
60/// ```
61///
62/// Example 5: Compute Timestamp from Java `Instant.now()`.
63///
64/// ```text
65/// Instant now = Instant.now();
66///
67/// Timestamp timestamp =
68/// Timestamp.newBuilder().setSeconds(now.getEpochSecond())
69/// .setNanos(now.getNano()).build();
70/// ```
71///
72/// Example 6: Compute Timestamp from current time in Python.
73///
74/// ```text
75/// timestamp = Timestamp()
76/// timestamp.GetCurrentTime()
77/// ```
78///
79/// # JSON Mapping
80///
81/// In JSON format, the Timestamp type is encoded as a string in the
82/// [RFC 3339](https://www.ietf.org/rfc/rfc3339.txt) format. That is, the
83/// format is "{year}-{month}-{day}T{hour}:{min}:{sec}\[.{frac_sec}\]Z"
84/// where {year} is always expressed using four digits while {month}, {day},
85/// {hour}, {min}, and {sec} are zero-padded to two digits each. The fractional
86/// seconds, which can go up to 9 digits (i.e. up to 1 nanosecond resolution),
87/// are optional. The "Z" suffix indicates the timezone ("UTC"); the timezone
88/// is required. A proto3 JSON serializer should always use UTC (as indicated by
89/// "Z") when printing the Timestamp type and a proto3 JSON parser should be
90/// able to accept both UTC and other timezones (as indicated by an offset).
91///
92/// For example, "2017-01-15T01:30:15.01Z" encodes 15.01 seconds past
93/// 01:30 UTC on January 15, 2017.
94///
95/// In JavaScript, one can convert a Date object to this format using the
96/// standard
97/// [toISOString()](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Date/toISOString)
98/// method. In Python, a standard `datetime.datetime` object can be converted
99/// to this format using
100/// [`strftime`](https://docs.python.org/2/library/time.html#time.strftime) with
101/// the time format spec '%Y-%m-%dT%H:%M:%S.%fZ'. Likewise, in Java, one can use
102/// the Joda Time's \[`ISODateTimeFormat.dateTime()`\](
103/// <http://joda-time.sourceforge.net/apidocs/org/joda/time/format/ISODateTimeFormat.html#dateTime(>)
104/// ) to obtain a formatter capable of generating timestamps in this format.
105#[derive(Clone, PartialEq, Default)]
106#[cfg_attr(feature = "arbitrary", derive(::arbitrary::Arbitrary))]
107pub struct Timestamp {
108 /// Represents seconds of UTC time since Unix epoch
109 /// 1970-01-01T00:00:00Z. Must be from 0001-01-01T00:00:00Z to
110 /// 9999-12-31T23:59:59Z inclusive.
111 ///
112 /// Field 1: `seconds`
113 pub seconds: i64,
114 /// Non-negative fractions of a second at nanosecond resolution. Negative
115 /// second values with fractions must still have non-negative nanos values
116 /// that count forward in time. Must be from 0 to 999,999,999
117 /// inclusive.
118 ///
119 /// Field 2: `nanos`
120 pub nanos: i32,
121 #[doc(hidden)]
122 pub __buffa_unknown_fields: ::buffa::UnknownFields,
123}
124impl ::core::fmt::Debug for Timestamp {
125 fn fmt(&self, f: &mut ::core::fmt::Formatter<'_>) -> ::core::fmt::Result {
126 f.debug_struct("Timestamp")
127 .field("seconds", &self.seconds)
128 .field("nanos", &self.nanos)
129 .finish()
130 }
131}
132impl Timestamp {
133 /// Protobuf type URL for this message, for use with `Any::pack` and
134 /// `Any::unpack_if`.
135 ///
136 /// Format: `type.googleapis.com/<fully.qualified.TypeName>`
137 pub const TYPE_URL: &'static str = "type.googleapis.com/google.protobuf.Timestamp";
138}
139::buffa::impl_default_instance!(Timestamp);
140#[cfg(feature = "reflect")]
141const _: () = {
142 impl ::buffa_descriptor::reflect::ReflectMessage for Timestamp {
143 fn message_descriptor(&self) -> &::buffa_descriptor::MessageDescriptor {
144 __buffa::reflect::descriptor_pool()
145 .message(Self::__buffa_reflect_message_index())
146 }
147 fn pool(
148 &self,
149 ) -> &::buffa::alloc::sync::Arc<::buffa_descriptor::DescriptorPool> {
150 __buffa::reflect::descriptor_pool()
151 }
152 fn unknown_fields(&self) -> &::buffa::UnknownFields {
153 &self.__buffa_unknown_fields
154 }
155 fn get(
156 &self,
157 field: &::buffa_descriptor::FieldDescriptor,
158 ) -> ::buffa_descriptor::reflect::ValueRef<'_> {
159 #[allow(unused_imports)]
160 use ::buffa::Enumeration as _;
161 match field.number() {
162 1u32 => ::buffa_descriptor::reflect::ValueRef::I64(self.seconds),
163 2u32 => ::buffa_descriptor::reflect::ValueRef::I32(self.nanos),
164 _ => {
165 ::core::debug_assert!(
166 false,
167 "field number {} is not a member of this message's reflect get()",
168 field.number(),
169 );
170 ::buffa_descriptor::reflect::ValueRef::Bool(false)
171 }
172 }
173 }
174 fn has(&self, field: &::buffa_descriptor::FieldDescriptor) -> bool {
175 match field.number() {
176 1u32 => self.seconds != 0,
177 2u32 => self.nanos != 0,
178 _ => false,
179 }
180 }
181 fn for_each_set(
182 &self,
183 f: &mut dyn ::core::ops::FnMut(
184 &::buffa_descriptor::FieldDescriptor,
185 ::buffa_descriptor::reflect::ValueRef<'_>,
186 ),
187 ) {
188 let md = ::buffa_descriptor::reflect::ReflectMessage::message_descriptor(
189 self,
190 );
191 for fd in md.fields() {
192 if ::buffa_descriptor::reflect::ReflectMessage::has(self, fd) {
193 f(fd, ::buffa_descriptor::reflect::ReflectMessage::get(self, fd));
194 }
195 }
196 }
197 fn to_dynamic(&self) -> ::buffa_descriptor::reflect::DynamicMessage {
198 ::buffa_descriptor::reflect::DynamicMessage::from_message(
199 self,
200 ::buffa::alloc::sync::Arc::clone(__buffa::reflect::descriptor_pool()),
201 Self::__buffa_reflect_message_index(),
202 )
203 }
204 }
205 impl ::buffa_descriptor::reflect::ReflectElement for Timestamp {
206 #[inline]
207 fn as_value_ref(&self) -> ::buffa_descriptor::reflect::ValueRef<'_> {
208 ::buffa_descriptor::reflect::ValueRef::Message(
209 ::buffa_descriptor::reflect::ReflectCow::Borrowed(self),
210 )
211 }
212 }
213 impl Timestamp {
214 /// Memoized `MessageIndex` for this message type, resolved once
215 /// against the package's embedded descriptor pool.
216 #[doc(hidden)]
217 fn __buffa_reflect_message_index() -> ::buffa_descriptor::MessageIndex {
218 static IDX: ::std::sync::OnceLock<::buffa_descriptor::MessageIndex> = ::std::sync::OnceLock::new();
219 *IDX
220 .get_or_init(|| {
221 __buffa::reflect::descriptor_pool()
222 .message_index(<Self as ::buffa::MessageName>::FULL_NAME)
223 .expect(
224 "generated message is registered in the embedded descriptor pool",
225 )
226 })
227 }
228 }
229 impl ::buffa_descriptor::reflect::Reflectable for Timestamp {
230 /// Vtable-mode reflective handle: borrows `self` directly. No
231 /// encode/decode round-trip and no allocation — the reflective
232 /// accessors read this message's fields in place.
233 #[inline]
234 fn reflect(&self) -> ::buffa_descriptor::reflect::ReflectCow<'_> {
235 ::buffa_descriptor::reflect::ReflectCow::Borrowed(self)
236 }
237 }
238};
239impl ::buffa::MessageName for Timestamp {
240 const PACKAGE: &'static str = "google.protobuf";
241 const NAME: &'static str = "Timestamp";
242 const FULL_NAME: &'static str = "google.protobuf.Timestamp";
243 const TYPE_URL: &'static str = "type.googleapis.com/google.protobuf.Timestamp";
244}
245impl ::buffa::Message for Timestamp {
246 /// Returns the total encoded size in bytes.
247 ///
248 /// The result is a `u32`; the protobuf specification requires all
249 /// messages to fit within 2 GiB (2,147,483,647 bytes), so a
250 /// compliant message will never overflow this type.
251 #[allow(clippy::let_and_return)]
252 fn compute_size(&self, _cache: &mut ::buffa::SizeCache) -> u32 {
253 #[allow(unused_imports)]
254 use ::buffa::Enumeration as _;
255 let mut size = 0u32;
256 if self.seconds != 0i64 {
257 size += 1u32 + ::buffa::types::int64_encoded_len(self.seconds) as u32;
258 }
259 if self.nanos != 0i32 {
260 size += 1u32 + ::buffa::types::int32_encoded_len(self.nanos) as u32;
261 }
262 size += self.__buffa_unknown_fields.encoded_len() as u32;
263 size
264 }
265 fn write_to(
266 &self,
267 _cache: &mut ::buffa::SizeCache,
268 buf: &mut impl ::buffa::bytes::BufMut,
269 ) {
270 #[allow(unused_imports)]
271 use ::buffa::Enumeration as _;
272 if self.seconds != 0i64 {
273 ::buffa::types::put_int64_field(1u32, self.seconds, buf);
274 }
275 if self.nanos != 0i32 {
276 ::buffa::types::put_int32_field(2u32, self.nanos, buf);
277 }
278 self.__buffa_unknown_fields.write_to(buf);
279 }
280 fn merge_field(
281 &mut self,
282 tag: ::buffa::encoding::Tag,
283 buf: &mut impl ::buffa::bytes::Buf,
284 ctx: ::buffa::DecodeContext<'_>,
285 ) -> ::core::result::Result<(), ::buffa::DecodeError> {
286 #[allow(unused_imports)]
287 use ::buffa::bytes::Buf as _;
288 #[allow(unused_imports)]
289 use ::buffa::Enumeration as _;
290 match tag.field_number() {
291 1u32 => {
292 ::buffa::encoding::check_wire_type(
293 tag,
294 ::buffa::encoding::WireType::Varint,
295 )?;
296 self.seconds = ::buffa::types::decode_int64(buf)?;
297 }
298 2u32 => {
299 ::buffa::encoding::check_wire_type(
300 tag,
301 ::buffa::encoding::WireType::Varint,
302 )?;
303 self.nanos = ::buffa::types::decode_int32(buf)?;
304 }
305 _ => {
306 self.__buffa_unknown_fields
307 .push(::buffa::encoding::decode_unknown_field(tag, buf, ctx)?);
308 }
309 }
310 ::core::result::Result::Ok(())
311 }
312 fn clear(&mut self) {
313 self.seconds = 0i64;
314 self.nanos = 0i32;
315 self.__buffa_unknown_fields.clear();
316 }
317}
318impl ::buffa::ExtensionSet for Timestamp {
319 const PROTO_FQN: &'static str = "google.protobuf.Timestamp";
320 fn unknown_fields(&self) -> &::buffa::UnknownFields {
321 &self.__buffa_unknown_fields
322 }
323 fn unknown_fields_mut(&mut self) -> &mut ::buffa::UnknownFields {
324 &mut self.__buffa_unknown_fields
325 }
326}
327impl ::buffa::text::TextFormat for Timestamp {
328 fn encode_text(
329 &self,
330 enc: &mut ::buffa::text::TextEncoder<'_>,
331 ) -> ::core::fmt::Result {
332 #[allow(unused_imports)]
333 use ::buffa::Enumeration as _;
334 if self.seconds != 0i64 {
335 enc.write_field_name("seconds")?;
336 enc.write_i64(self.seconds)?;
337 }
338 if self.nanos != 0i32 {
339 enc.write_field_name("nanos")?;
340 enc.write_i32(self.nanos)?;
341 }
342 enc.write_unknown_fields(&self.__buffa_unknown_fields)?;
343 ::core::result::Result::Ok(())
344 }
345 fn merge_text(
346 &mut self,
347 dec: &mut ::buffa::text::TextDecoder<'_>,
348 ) -> ::core::result::Result<(), ::buffa::text::ParseError> {
349 #[allow(unused_imports)]
350 use ::buffa::Enumeration as _;
351 while let ::core::option::Option::Some(__name) = dec.read_field_name()? {
352 match __name {
353 "seconds" => self.seconds = dec.read_i64()?,
354 "nanos" => self.nanos = dec.read_i32()?,
355 _ => dec.skip_value()?,
356 }
357 }
358 ::core::result::Result::Ok(())
359 }
360}
361#[doc(hidden)]
362pub const __TIMESTAMP_TEXT_ANY: ::buffa::type_registry::TextAnyEntry = ::buffa::type_registry::TextAnyEntry {
363 type_url: "type.googleapis.com/google.protobuf.Timestamp",
364 text_encode: ::buffa::type_registry::any_encode_text::<Timestamp>,
365 text_merge: ::buffa::type_registry::any_merge_text::<Timestamp>,
366};