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John Park33858a32018-09-28 23:05:48 -07001#include "aos/time/time.h"
brians343bc112013-02-10 01:53:46 +00002
Austin Schuh3ce0a922020-07-21 21:08:54 -07003#include <algorithm>
Austin Schuhf2a50ba2016-12-24 16:16:26 -08004#include <chrono>
Tyler Chatowbf0609c2021-07-31 16:13:27 -07005#include <cinttypes>
6#include <cstring>
James Kuszmaul38735e82019-12-07 16:42:06 -08007#include <ctime>
Austin Schuhe92f7e62019-12-25 13:54:41 -08008#include <iomanip>
Eric Schmiedeberg42273f42023-12-14 13:48:45 -07009#include <sstream>
Brian Silvermand0575692015-02-21 16:24:02 -050010
Brian Silvermanc03a30c2019-02-16 18:21:56 -080011#ifdef __linux__
12
Austin Schuhd90499f2023-03-24 15:10:51 -070013#include "absl/strings/numbers.h"
Austin Schuhf257f3c2019-10-27 21:00:43 -070014#include "glog/logging.h"
brians343bc112013-02-10 01:53:46 +000015
Brian Silvermanc03a30c2019-02-16 18:21:56 -080016#else // __linux__
17
18#include "motors/core/kinetis.h"
19
20// The systick interrupt increments this every 1ms.
21extern "C" volatile uint32_t systick_millis_count;
22
23#endif // __linux__
24
Austin Schuhf2a50ba2016-12-24 16:16:26 -080025namespace chrono = ::std::chrono;
26
Philipp Schradera7878b92023-10-16 17:33:40 -070027namespace {
28
29void PrintToStream(std::ostream &stream, chrono::nanoseconds duration) {
30 chrono::seconds seconds = chrono::duration_cast<chrono::seconds>(duration);
31 if (duration < chrono::nanoseconds(0)) {
32 stream << "-" << -seconds.count() << "." << std::setfill('0')
33 << std::setw(9)
34 << chrono::duration_cast<chrono::nanoseconds>(seconds - duration)
35 .count()
36 << "sec";
37 } else {
38 stream << seconds.count() << "." << std::setfill('0') << std::setw(9)
39 << chrono::duration_cast<chrono::nanoseconds>(duration - seconds)
40 .count()
41 << "sec";
42 }
43}
44
45} // namespace
46
Brian Silvermanc03a30c2019-02-16 18:21:56 -080047#ifdef __linux__
48
Stephan Pleinesf63bde82024-01-13 15:59:33 -080049namespace std::this_thread {
Austin Schuh793d6b92016-05-01 13:28:14 -070050template <>
51void sleep_until(const ::aos::monotonic_clock::time_point &end_time) {
52 struct timespec end_time_timespec;
53 ::std::chrono::seconds sec =
54 ::std::chrono::duration_cast<::std::chrono::seconds>(
55 end_time.time_since_epoch());
56 ::std::chrono::nanoseconds nsec =
57 ::std::chrono::duration_cast<::std::chrono::nanoseconds>(
58 end_time.time_since_epoch() - sec);
59 end_time_timespec.tv_sec = sec.count();
60 end_time_timespec.tv_nsec = nsec.count();
61 int returnval;
62 do {
63 returnval = clock_nanosleep(CLOCK_MONOTONIC, TIMER_ABSTIME,
64 &end_time_timespec, nullptr);
Austin Schuhf257f3c2019-10-27 21:00:43 -070065 PCHECK(returnval == 0 || returnval == EINTR)
66 << ": clock_nanosleep(" << static_cast<uintmax_t>(CLOCK_MONOTONIC)
67 << ", TIMER_ABSTIME, " << &end_time_timespec << ", nullptr) failed";
Austin Schuh793d6b92016-05-01 13:28:14 -070068 } while (returnval != 0);
69}
70
Stephan Pleinesf63bde82024-01-13 15:59:33 -080071} // namespace std::this_thread
Austin Schuh793d6b92016-05-01 13:28:14 -070072
Brian Silvermanc03a30c2019-02-16 18:21:56 -080073#endif // __linux__
Austin Schuh793d6b92016-05-01 13:28:14 -070074
brians343bc112013-02-10 01:53:46 +000075namespace aos {
Austin Schuhde8a8ff2019-11-30 15:25:36 -080076
James Kuszmaul38735e82019-12-07 16:42:06 -080077std::ostream &operator<<(std::ostream &stream,
78 const aos::monotonic_clock::time_point &now) {
Philipp Schradera7878b92023-10-16 17:33:40 -070079 PrintToStream(stream, now.time_since_epoch());
Austin Schuh40102d22019-12-27 23:30:06 -080080 return stream;
81}
82
Eric Schmiedeberg42273f42023-12-14 13:48:45 -070083std::string ToString(const aos::monotonic_clock::time_point &now) {
84 std::ostringstream stream;
85 stream << now;
86 return stream.str();
87}
88
89std::string ToString(const aos::realtime_clock::time_point &now) {
90 std::ostringstream stream;
91 stream << now;
92 return stream.str();
93}
94
Austin Schuhd90499f2023-03-24 15:10:51 -070095#ifdef __linux__
Austin Schuh3ce0a922020-07-21 21:08:54 -070096std::optional<monotonic_clock::time_point> monotonic_clock::FromString(
97 const std::string_view now) {
98 // This should undo the operator << above.
99 if (now.size() < 14) {
100 return std::nullopt;
101 }
102
103 if (now.substr(now.size() - 3, now.size()) != "sec") {
104 return std::nullopt;
105 }
106
Brian J Griglak259048b2022-01-27 12:30:55 -0700107 if (now[now.size() - 13] != '.') {
Austin Schuh3ce0a922020-07-21 21:08:54 -0700108 return std::nullopt;
109 }
110
Brian J Griglak259048b2022-01-27 12:30:55 -0700111 bool negative = now[0] == '-';
Austin Schuh3ce0a922020-07-21 21:08:54 -0700112
Austin Schuhd90499f2023-03-24 15:10:51 -0700113 std::string_view sec(
Austin Schuh3ce0a922020-07-21 21:08:54 -0700114 now.substr(negative ? 1 : 0, now.size() - (negative ? 14 : 13)));
Austin Schuhd90499f2023-03-24 15:10:51 -0700115 std::string_view nsec(now.substr(now.size() - 12, 9));
Austin Schuh3ce0a922020-07-21 21:08:54 -0700116
117 if (!std::all_of(sec.begin(), sec.end(), ::isdigit) ||
118 !std::all_of(nsec.begin(), nsec.end(), ::isdigit)) {
119 return std::nullopt;
120 }
121
Austin Schuhd90499f2023-03-24 15:10:51 -0700122 std::chrono::seconds::rep seconds_data;
123 if (!absl::SimpleAtoi(sec, &seconds_data)) {
124 return std::nullopt;
125 }
126
127 std::chrono::nanoseconds::rep nanoseconds_data;
128 if (!absl::SimpleAtoi(nsec, &nanoseconds_data)) {
129 return std::nullopt;
130 }
131
Austin Schuh3ce0a922020-07-21 21:08:54 -0700132 return monotonic_clock::time_point(
Austin Schuhd90499f2023-03-24 15:10:51 -0700133 std::chrono::seconds((negative ? -1 : 1) * seconds_data) +
134 std::chrono::nanoseconds((negative ? -1 : 1) * nanoseconds_data));
Austin Schuh3ce0a922020-07-21 21:08:54 -0700135}
136
137std::optional<realtime_clock::time_point> realtime_clock::FromString(
138 const std::string_view now) {
139 // This should undo the operator << above.
140
141 if (now.size() < 25) {
142 return std::nullopt;
143 }
144
Brian J Griglak259048b2022-01-27 12:30:55 -0700145 if (now[now.size() - 10] != '.') {
Austin Schuh3ce0a922020-07-21 21:08:54 -0700146 return std::nullopt;
147 }
148
Austin Schuhd90499f2023-03-24 15:10:51 -0700149 std::string_view nsec(now.substr(now.size() - 9, 9));
Austin Schuh3ce0a922020-07-21 21:08:54 -0700150
151 if (!std::all_of(nsec.begin(), nsec.end(), ::isdigit)) {
152 return std::nullopt;
153 }
154
155 struct tm tm;
156 std::istringstream ss(std::string(now.substr(0, now.size() - 10)));
157 ss >> std::get_time(&tm, "%Y-%m-%d_%H-%M-%S");
Austin Schuh76a313c2021-11-30 19:16:35 -0800158 if (ss.fail()) {
159 return std::nullopt;
160 }
Austin Schuh3ce0a922020-07-21 21:08:54 -0700161 tm.tm_isdst = -1;
162
163 time_t seconds = mktime(&tm);
164
Austin Schuhd90499f2023-03-24 15:10:51 -0700165 std::chrono::nanoseconds::rep nanoseconds_data;
166 if (!absl::SimpleAtoi(nsec, &nanoseconds_data)) {
167 return std::nullopt;
168 }
169
Philipp Schrader790cb542023-07-05 21:06:52 -0700170 return realtime_clock::time_point(std::chrono::seconds(seconds) +
171 std::chrono::nanoseconds(nanoseconds_data));
Austin Schuh3ce0a922020-07-21 21:08:54 -0700172}
Austin Schuhd90499f2023-03-24 15:10:51 -0700173#endif
Austin Schuh3ce0a922020-07-21 21:08:54 -0700174
Austin Schuh40102d22019-12-27 23:30:06 -0800175std::ostream &operator<<(std::ostream &stream,
176 const aos::realtime_clock::time_point &now) {
177 std::tm tm;
178 std::chrono::seconds seconds =
179 now < realtime_clock::epoch()
Austin Schuhb2ac0562021-09-13 23:23:33 -0700180 ? (std::chrono::duration_cast<std::chrono::seconds>(
181 now.time_since_epoch() + std::chrono::nanoseconds(1)) -
182 std::chrono::seconds(1))
Austin Schuh40102d22019-12-27 23:30:06 -0800183 : std::chrono::duration_cast<std::chrono::seconds>(
Austin Schuhe92f7e62019-12-25 13:54:41 -0800184 now.time_since_epoch());
185
Philipp Schraderd0d264d2023-12-20 11:11:35 -0800186 // We can run into some corner cases where the seconds value is large enough
187 // to cause the conversion to nanoseconds to overflow. That is undefined
188 // behaviour so we prevent it with this check here.
189 if (int64_t result;
190 __builtin_mul_overflow(seconds.count(), 1'000'000'000, &result)) {
191 stream << "(unrepresentable realtime " << now.time_since_epoch().count()
192 << ")";
193 return stream;
194 }
195
Austin Schuh40102d22019-12-27 23:30:06 -0800196 std::time_t seconds_t = seconds.count();
197 stream << std::put_time(localtime_r(&seconds_t, &tm), "%Y-%m-%d_%H-%M-%S.")
198 << std::setfill('0') << std::setw(9)
199 << std::chrono::duration_cast<std::chrono::nanoseconds>(
200 now.time_since_epoch() - seconds)
201 .count();
202 return stream;
Austin Schuhde8a8ff2019-11-30 15:25:36 -0800203}
204
brians343bc112013-02-10 01:53:46 +0000205namespace time {
206
Austin Schuh40102d22019-12-27 23:30:06 -0800207struct timespec to_timespec(const ::aos::monotonic_clock::duration duration) {
Neil Balch229001a2018-01-07 18:22:52 -0800208 struct timespec time_timespec;
209 ::std::chrono::seconds sec =
210 ::std::chrono::duration_cast<::std::chrono::seconds>(duration);
211 ::std::chrono::nanoseconds nsec =
212 ::std::chrono::duration_cast<::std::chrono::nanoseconds>(duration - sec);
213 time_timespec.tv_sec = sec.count();
214 time_timespec.tv_nsec = nsec.count();
215 return time_timespec;
216}
217
Austin Schuh40102d22019-12-27 23:30:06 -0800218struct timespec to_timespec(const ::aos::monotonic_clock::time_point time) {
Neil Balch229001a2018-01-07 18:22:52 -0800219 return to_timespec(time.time_since_epoch());
220}
Brian Silverman967e5df2020-02-09 16:43:34 -0800221
222::aos::monotonic_clock::time_point from_timeval(struct timeval t) {
223 return monotonic_clock::epoch() + std::chrono::seconds(t.tv_sec) +
224 std::chrono::microseconds(t.tv_usec);
225}
226
brians343bc112013-02-10 01:53:46 +0000227} // namespace time
Austin Schuh858c0212016-11-25 17:23:30 -0800228
229constexpr monotonic_clock::time_point monotonic_clock::min_time;
Brian Silverman94357272019-02-23 21:00:54 -0800230constexpr monotonic_clock::time_point monotonic_clock::max_time;
Brian Silverman2eb89762019-02-17 15:16:37 -0800231constexpr realtime_clock::time_point realtime_clock::min_time;
Brian Silverman94357272019-02-23 21:00:54 -0800232constexpr realtime_clock::time_point realtime_clock::max_time;
Austin Schuh858c0212016-11-25 17:23:30 -0800233
234monotonic_clock::time_point monotonic_clock::now() noexcept {
Brian Silvermanc03a30c2019-02-16 18:21:56 -0800235#ifdef __linux__
Austin Schuh858c0212016-11-25 17:23:30 -0800236 struct timespec current_time;
Austin Schuhf257f3c2019-10-27 21:00:43 -0700237 PCHECK(clock_gettime(CLOCK_MONOTONIC, &current_time) == 0)
238 << ": clock_gettime(" << static_cast<uintmax_t>(CLOCK_MONOTONIC) << ", "
239 << &current_time << ") failed";
240
Austin Schuh858c0212016-11-25 17:23:30 -0800241 return time_point(::std::chrono::seconds(current_time.tv_sec) +
Alex Perrycb7da4b2019-08-28 19:35:56 -0700242 ::std::chrono::nanoseconds(current_time.tv_nsec));
Brian Silvermanc03a30c2019-02-16 18:21:56 -0800243
244#else // __linux__
245
246 __disable_irq();
247 const uint32_t current_counter = SYST_CVR;
248 uint32_t ms_count = systick_millis_count;
249 const uint32_t istatus = SCB_ICSR;
250 __enable_irq();
251 // If the interrupt is pending and the timer has already wrapped from 0 back
252 // up to its max, then add another ms.
253 if ((istatus & SCB_ICSR_PENDSTSET) && current_counter > 50) {
254 ++ms_count;
255 }
256
257 // It counts down, but everything we care about counts up.
258 const uint32_t counter_up = ((F_CPU / 1000) - 1) - current_counter;
259
260 // "3.2.1.2 System Tick Timer" in the TRM says "The System Tick Timer's clock
261 // source is always the core clock, FCLK".
262 using systick_duration =
263 std::chrono::duration<uint32_t, std::ratio<1, F_CPU>>;
264
Milo Linfd40acb2021-11-06 14:51:36 -0700265 return time_point(std::chrono::round<std::chrono::nanoseconds>(
Brian Silvermanc03a30c2019-02-16 18:21:56 -0800266 std::chrono::milliseconds(ms_count) + systick_duration(counter_up)));
267
268#endif // __linux__
Austin Schuh858c0212016-11-25 17:23:30 -0800269}
270
Brian Silvermana3688802019-02-16 19:31:26 -0800271#ifdef __linux__
272realtime_clock::time_point realtime_clock::now() noexcept {
273 struct timespec current_time;
Austin Schuhf257f3c2019-10-27 21:00:43 -0700274 PCHECK(clock_gettime(CLOCK_REALTIME, &current_time) == 0)
275 << "clock_gettime(" << static_cast<uintmax_t>(CLOCK_REALTIME) << ", "
276 << &current_time << ") failed";
Brian Silvermana3688802019-02-16 19:31:26 -0800277
278 return time_point(::std::chrono::seconds(current_time.tv_sec) +
279 ::std::chrono::nanoseconds(current_time.tv_nsec));
280}
281#endif // __linux__
Austin Schuh858c0212016-11-25 17:23:30 -0800282
brians343bc112013-02-10 01:53:46 +0000283} // namespace aos