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Alex Perrycb7da4b2019-08-28 19:35:56 -07001#ifndef AOS_EVENTS_EVENT_LOOP_TMPL_H_
2#define AOS_EVENTS_EVENT_LOOP_TMPL_H_
3
Brian Silverman79ec7fc2020-06-08 20:11:22 -05004#include <inttypes.h>
5#include <stdint.h>
6
Alex Perrycb7da4b2019-08-28 19:35:56 -07007#include <type_traits>
Brian Silverman79ec7fc2020-06-08 20:11:22 -05008
Alex Perrycb7da4b2019-08-28 19:35:56 -07009#include "aos/events/event_loop.h"
10#include "glog/logging.h"
11
12namespace aos {
Brian Silverman454bc112020-03-05 14:21:25 -080013namespace event_loop_internal {
Alex Perrycb7da4b2019-08-28 19:35:56 -070014
Brian Silverman454bc112020-03-05 14:21:25 -080015// From a watch functor, specializations of this will extract the message type
16// of the template argument. If T is not a valid message type, there will be no
17// matching specialization.
18//
19// This is just the forward declaration, which will be used by one of the
20// following specializations to match valid argument types.
Alex Perrycb7da4b2019-08-28 19:35:56 -070021template <class T>
Brian Silverman454bc112020-03-05 14:21:25 -080022struct watch_message_type_trait;
Alex Perrycb7da4b2019-08-28 19:35:56 -070023
24// From a watch functor, this will extract the message type of the argument.
25// This is the template specialization.
26template <class ClassType, class ReturnType, class A1>
27struct watch_message_type_trait<ReturnType (ClassType::*)(A1) const> {
28 using message_type = typename std::decay<A1>::type;
29};
30
Brian Silverman454bc112020-03-05 14:21:25 -080031} // namespace event_loop_internal
32
Alex Perrycb7da4b2019-08-28 19:35:56 -070033template <typename T>
34typename Sender<T>::Builder Sender<T>::MakeBuilder() {
Brian Silvermana1652f32020-01-29 20:41:44 -080035 return Builder(sender_.get(), sender_->fbb_allocator());
Alex Perrycb7da4b2019-08-28 19:35:56 -070036}
37
38template <typename Watch>
James Kuszmaul3ae42262019-11-08 12:33:41 -080039void EventLoop::MakeWatcher(const std::string_view channel_name, Watch &&w) {
Brian Silverman454bc112020-03-05 14:21:25 -080040 using MessageType =
41 typename event_loop_internal::watch_message_type_trait<decltype(
42 &Watch::operator())>::message_type;
Alex Perrycb7da4b2019-08-28 19:35:56 -070043 const Channel *channel = configuration::GetChannel(
Brian Silverman454bc112020-03-05 14:21:25 -080044 configuration_, channel_name, MessageType::GetFullyQualifiedName(),
45 name(), node());
Alex Perrycb7da4b2019-08-28 19:35:56 -070046
47 CHECK(channel != nullptr)
48 << ": Channel { \"name\": \"" << channel_name << "\", \"type\": \""
Austin Schuhc59a1de2021-02-20 14:47:39 -080049 << MessageType::GetFullyQualifiedName()
50 << "\" } not found in config for application " << name() << ".";
Alex Perrycb7da4b2019-08-28 19:35:56 -070051
Brian Silverman454bc112020-03-05 14:21:25 -080052 MakeRawWatcher(channel,
53 [this, w](const Context &context, const void *message) {
54 context_ = context;
55 w(*flatbuffers::GetRoot<MessageType>(
56 reinterpret_cast<const char *>(message)));
57 });
58}
59
60template <typename MessageType>
61void EventLoop::MakeNoArgWatcher(const std::string_view channel_name,
62 std::function<void()> w) {
63 const Channel *channel = configuration::GetChannel(
64 configuration_, channel_name, MessageType::GetFullyQualifiedName(),
65 name(), node());
66 CHECK(channel != nullptr)
67 << ": Channel { \"name\": \"" << channel_name << "\", \"type\": \""
Austin Schuhc59a1de2021-02-20 14:47:39 -080068 << MessageType::GetFullyQualifiedName()
69 << "\" } not found in config for application " << name() << ".";
Brian Silverman454bc112020-03-05 14:21:25 -080070 MakeRawNoArgWatcher(channel, [this, w](const Context &context) {
71 context_ = context;
72 w();
73 });
Alex Perrycb7da4b2019-08-28 19:35:56 -070074}
75
Austin Schuh39788ff2019-12-01 18:22:57 -080076inline bool RawFetcher::FetchNext() {
77 const auto result = DoFetchNext();
78 if (result.first) {
79 timing_.fetcher->mutate_count(timing_.fetcher->count() + 1);
80 const monotonic_clock::time_point monotonic_time = result.second;
Brian Silverman79ec7fc2020-06-08 20:11:22 -050081 ftrace_.FormatMessage(
82 "%.*s: fetch next: now=%" PRId64 " event=%" PRId64 " queue=%" PRIu32,
83 static_cast<int>(ftrace_prefix_.size()), ftrace_prefix_.data(),
84 static_cast<int64_t>(monotonic_time.time_since_epoch().count()),
85 static_cast<int64_t>(
86 context_.monotonic_event_time.time_since_epoch().count()),
87 context_.queue_index);
Austin Schuh39788ff2019-12-01 18:22:57 -080088 const float latency =
89 std::chrono::duration_cast<std::chrono::duration<float>>(
Austin Schuhad154822019-12-27 15:45:13 -080090 monotonic_time - context_.monotonic_event_time)
Austin Schuh39788ff2019-12-01 18:22:57 -080091 .count();
92 timing_.latency.Add(latency);
93 return true;
94 }
Brian Silverman79ec7fc2020-06-08 20:11:22 -050095 ftrace_.FormatMessage(
96 "%.*s: fetch next: still event=%" PRId64 " queue=%" PRIu32,
97 static_cast<int>(ftrace_prefix_.size()), ftrace_prefix_.data(),
98 static_cast<int64_t>(
99 context_.monotonic_event_time.time_since_epoch().count()),
100 context_.queue_index);
Austin Schuh39788ff2019-12-01 18:22:57 -0800101 return false;
102}
103
104inline bool RawFetcher::Fetch() {
105 const auto result = DoFetch();
106 if (result.first) {
107 timing_.fetcher->mutate_count(timing_.fetcher->count() + 1);
108 const monotonic_clock::time_point monotonic_time = result.second;
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500109 ftrace_.FormatMessage(
110 "%.*s: fetch latest: now=%" PRId64 " event=%" PRId64 " queue=%" PRIu32,
111 static_cast<int>(ftrace_prefix_.size()), ftrace_prefix_.data(),
112 static_cast<int64_t>(monotonic_time.time_since_epoch().count()),
113 static_cast<int64_t>(
114 context_.monotonic_event_time.time_since_epoch().count()),
115 context_.queue_index);
Austin Schuh39788ff2019-12-01 18:22:57 -0800116 const float latency =
117 std::chrono::duration_cast<std::chrono::duration<float>>(
Austin Schuhad154822019-12-27 15:45:13 -0800118 monotonic_time - context_.monotonic_event_time)
Austin Schuh39788ff2019-12-01 18:22:57 -0800119 .count();
120 timing_.latency.Add(latency);
121 return true;
122 }
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500123 ftrace_.FormatMessage(
124 "%.*s: fetch latest: still event=%" PRId64 " queue=%" PRIu32,
125 static_cast<int>(ftrace_prefix_.size()), ftrace_prefix_.data(),
126 static_cast<int64_t>(
127 context_.monotonic_event_time.time_since_epoch().count()),
128 context_.queue_index);
Austin Schuh39788ff2019-12-01 18:22:57 -0800129 return false;
130}
131
Austin Schuhad154822019-12-27 15:45:13 -0800132inline bool RawSender::Send(
133 size_t size, aos::monotonic_clock::time_point monotonic_remote_time,
134 aos::realtime_clock::time_point realtime_remote_time,
135 uint32_t remote_queue_index) {
136 if (DoSend(size, monotonic_remote_time, realtime_remote_time,
137 remote_queue_index)) {
Austin Schuh39788ff2019-12-01 18:22:57 -0800138 timing_.size.Add(size);
139 timing_.sender->mutate_count(timing_.sender->count() + 1);
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500140 ftrace_.FormatMessage(
141 "%.*s: sent internal: event=%" PRId64 " queue=%" PRIu32,
142 static_cast<int>(ftrace_prefix_.size()), ftrace_prefix_.data(),
143 static_cast<int64_t>(monotonic_sent_time().time_since_epoch().count()),
144 sent_queue_index());
Austin Schuh39788ff2019-12-01 18:22:57 -0800145 return true;
146 }
147 return false;
148}
149
Austin Schuhad154822019-12-27 15:45:13 -0800150inline bool RawSender::Send(
151 const void *data, size_t size,
152 aos::monotonic_clock::time_point monotonic_remote_time,
153 aos::realtime_clock::time_point realtime_remote_time,
154 uint32_t remote_queue_index) {
155 if (DoSend(data, size, monotonic_remote_time, realtime_remote_time,
156 remote_queue_index)) {
Austin Schuh39788ff2019-12-01 18:22:57 -0800157 timing_.size.Add(size);
158 timing_.sender->mutate_count(timing_.sender->count() + 1);
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500159 ftrace_.FormatMessage(
160 "%.*s: sent external: event=%" PRId64 " queue=%" PRIu32,
161 static_cast<int>(ftrace_prefix_.size()), ftrace_prefix_.data(),
162 static_cast<int64_t>(monotonic_sent_time().time_since_epoch().count()),
163 sent_queue_index());
Austin Schuh39788ff2019-12-01 18:22:57 -0800164 return true;
165 }
166 return false;
167}
168
Austin Schuhcde39fd2020-02-22 20:58:24 -0800169inline monotonic_clock::time_point TimerHandler::Call(
Austin Schuh39788ff2019-12-01 18:22:57 -0800170 std::function<monotonic_clock::time_point()> get_time,
171 monotonic_clock::time_point event_time) {
172 CHECK_NOTNULL(timing_.timer);
173 const monotonic_clock::time_point monotonic_start_time = get_time();
174
Austin Schuhad154822019-12-27 15:45:13 -0800175 event_loop_->context_.monotonic_event_time = event_time;
176 event_loop_->context_.monotonic_remote_time = monotonic_clock::min_time;
177 event_loop_->context_.realtime_remote_time =
178 event_loop_->context_.realtime_event_time = realtime_clock::min_time;
Austin Schuh39788ff2019-12-01 18:22:57 -0800179 event_loop_->context_.queue_index = 0xffffffffu;
180 event_loop_->context_.size = 0;
181 event_loop_->context_.data = nullptr;
Brian Silverman4f4e0612020-08-12 19:54:41 -0700182 event_loop_->context_.buffer_index = -1;
Austin Schuh39788ff2019-12-01 18:22:57 -0800183
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500184 ftrace_.FormatMessage(
185 "timer: %.*s: start now=%" PRId64 " event=%" PRId64,
186 static_cast<int>(name_.size()), name_.data(),
187 static_cast<int64_t>(monotonic_start_time.time_since_epoch().count()),
188 static_cast<int64_t>(event_time.time_since_epoch().count()));
Austin Schuh39788ff2019-12-01 18:22:57 -0800189 {
190 const float start_latency =
191 std::chrono::duration_cast<std::chrono::duration<float>>(
192 monotonic_start_time - event_time)
193 .count();
194 timing_.wakeup_latency.Add(start_latency);
195 }
196 timing_.timer->mutate_count(timing_.timer->count() + 1);
197 fn_();
198
199 const monotonic_clock::time_point monotonic_end_time = get_time();
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500200 ftrace_.FormatMessage(
201 "timer: %.*s: end now=%" PRId64, static_cast<int>(name_.size()),
202 name_.data(),
203 static_cast<int64_t>(monotonic_end_time.time_since_epoch().count()));
Austin Schuh39788ff2019-12-01 18:22:57 -0800204
205 const float handler_latency =
206 std::chrono::duration_cast<std::chrono::duration<float>>(
207 monotonic_end_time - monotonic_start_time)
208 .count();
209 timing_.handler_time.Add(handler_latency);
Austin Schuhcde39fd2020-02-22 20:58:24 -0800210 return monotonic_start_time;
Austin Schuh39788ff2019-12-01 18:22:57 -0800211}
212
213inline void PhasedLoopHandler::Call(
214 std::function<monotonic_clock::time_point()> get_time,
215 std::function<void(monotonic_clock::time_point)> schedule) {
216 // Read time directly to save a vtable indirection...
217 const monotonic_clock::time_point monotonic_start_time = get_time();
218
219 // Update the context to hold the desired wakeup time.
Austin Schuhad154822019-12-27 15:45:13 -0800220 event_loop_->context_.monotonic_event_time = phased_loop_.sleep_time();
221 event_loop_->context_.monotonic_remote_time = monotonic_clock::min_time;
222 event_loop_->context_.realtime_remote_time =
223 event_loop_->context_.realtime_event_time = realtime_clock::min_time;
Austin Schuh39788ff2019-12-01 18:22:57 -0800224 event_loop_->context_.queue_index = 0xffffffffu;
225 event_loop_->context_.size = 0;
226 event_loop_->context_.data = nullptr;
Brian Silverman4f4e0612020-08-12 19:54:41 -0700227 event_loop_->context_.buffer_index = -1;
Austin Schuh39788ff2019-12-01 18:22:57 -0800228
229 // Compute how many cycles elapsed and schedule the next wakeup.
230 Reschedule(schedule, monotonic_start_time);
231
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500232 ftrace_.FormatMessage(
233 "phased: %.*s: start now=%" PRId64 " event=%" PRId64 " cycles=%d",
234 static_cast<int>(name_.size()), name_.data(),
235 static_cast<int64_t>(monotonic_start_time.time_since_epoch().count()),
236 static_cast<int64_t>(
237 phased_loop_.sleep_time().time_since_epoch().count()),
238 cycles_elapsed_);
Austin Schuh39788ff2019-12-01 18:22:57 -0800239 {
240 const float start_latency =
241 std::chrono::duration_cast<std::chrono::duration<float>>(
Austin Schuhad154822019-12-27 15:45:13 -0800242 monotonic_start_time - event_loop_->context_.monotonic_event_time)
Austin Schuh39788ff2019-12-01 18:22:57 -0800243 .count();
244 timing_.wakeup_latency.Add(start_latency);
245 }
246 timing_.timer->mutate_count(timing_.timer->count() + 1);
247
248 // Call the function with the elapsed cycles.
249 fn_(cycles_elapsed_);
250 cycles_elapsed_ = 0;
251
252 const monotonic_clock::time_point monotonic_end_time = get_time();
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500253 ftrace_.FormatMessage(
254 "phased: %.*s: end now=%" PRId64, static_cast<int>(name_.size()),
255 name_.data(),
256 static_cast<int64_t>(monotonic_end_time.time_since_epoch().count()));
Austin Schuh39788ff2019-12-01 18:22:57 -0800257
258 const float handler_latency =
259 std::chrono::duration_cast<std::chrono::duration<float>>(
260 monotonic_end_time - monotonic_start_time)
261 .count();
262 timing_.handler_time.Add(handler_latency);
263
Brian Silvermanaf9a4d82020-10-06 15:10:58 -0700264 // If the handler took too long so we blew by the previous deadline, we
Austin Schuh91ba6392020-10-03 13:27:47 -0700265 // want to just try for the next deadline. Reschedule.
Austin Schuh39788ff2019-12-01 18:22:57 -0800266 if (monotonic_end_time > phased_loop_.sleep_time()) {
267 Reschedule(schedule, monotonic_end_time);
268 }
269}
270
271// Class to automate the timing report generation for watchers.
272class WatcherState {
273 public:
274 WatcherState(
275 EventLoop *event_loop, const Channel *channel,
276 std::function<void(const Context &context, const void *message)> fn)
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500277 : channel_index_(event_loop->ChannelIndex(channel)),
278 ftrace_prefix_(configuration::StrippedChannelToString(channel)),
279 fn_(std::move(fn)) {}
Austin Schuh39788ff2019-12-01 18:22:57 -0800280
281 virtual ~WatcherState() {}
282
283 // Calls the callback, measuring time with get_time, with the provided
284 // context.
285 void DoCallCallback(std::function<monotonic_clock::time_point()> get_time,
286 Context context) {
Brian Silverman6b8a3c32020-03-06 11:26:14 -0800287 if (context.data) {
288 CheckChannelDataAlignment(context.data, context.size);
289 }
Austin Schuh39788ff2019-12-01 18:22:57 -0800290 const monotonic_clock::time_point monotonic_start_time = get_time();
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500291 ftrace_.FormatMessage(
292 "%.*s: watcher start: now=%" PRId64 " event=%" PRId64 " queue=%" PRIu32,
293 static_cast<int>(ftrace_prefix_.size()), ftrace_prefix_.data(),
294 static_cast<int64_t>(monotonic_start_time.time_since_epoch().count()),
295 static_cast<int64_t>(
296 context.monotonic_event_time.time_since_epoch().count()),
297 context.queue_index);
Austin Schuh39788ff2019-12-01 18:22:57 -0800298 {
299 const float start_latency =
300 std::chrono::duration_cast<std::chrono::duration<float>>(
Austin Schuhad154822019-12-27 15:45:13 -0800301 monotonic_start_time - context.monotonic_event_time)
Austin Schuh39788ff2019-12-01 18:22:57 -0800302 .count();
303 wakeup_latency_.Add(start_latency);
304 }
305 watcher_->mutate_count(watcher_->count() + 1);
306 fn_(context, context.data);
307
308 const monotonic_clock::time_point monotonic_end_time = get_time();
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500309 ftrace_.FormatMessage(
310 "%.*s: watcher end: now=%" PRId64,
311 static_cast<int>(ftrace_prefix_.size()), ftrace_prefix_.data(),
312 static_cast<int64_t>(monotonic_end_time.time_since_epoch().count()));
Austin Schuh39788ff2019-12-01 18:22:57 -0800313
314 const float handler_latency =
315 std::chrono::duration_cast<std::chrono::duration<float>>(
316 monotonic_end_time - monotonic_start_time)
317 .count();
318 handler_time_.Add(handler_latency);
319 }
320
321 int channel_index() const { return channel_index_; }
322
323 void set_timing_report(timing::Watcher *watcher);
324 void ResetReport();
325
326 virtual void Startup(EventLoop *event_loop) = 0;
327
328 protected:
329 const int channel_index_;
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500330 const std::string ftrace_prefix_;
Austin Schuh39788ff2019-12-01 18:22:57 -0800331
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500332 const std::function<void(const Context &context, const void *message)> fn_;
Austin Schuh39788ff2019-12-01 18:22:57 -0800333
334 internal::TimingStatistic wakeup_latency_;
335 internal::TimingStatistic handler_time_;
336 timing::Watcher *watcher_ = nullptr;
Brian Silverman79ec7fc2020-06-08 20:11:22 -0500337
338 Ftrace ftrace_;
Austin Schuh39788ff2019-12-01 18:22:57 -0800339};
340
Austin Schuha28cbc32019-12-27 16:28:04 -0800341template <typename T>
Austin Schuhadd6eb32020-11-09 21:24:26 -0800342bool Sender<T>::Send(const NonSizePrefixedFlatbuffer<T> &flatbuffer) {
343 return sender_->Send(flatbuffer.span().data(), flatbuffer.span().size());
Austin Schuha28cbc32019-12-27 16:28:04 -0800344}
345
Brian Silverman341b57e2020-06-23 16:23:18 -0700346template <typename T>
347bool Sender<T>::SendDetached(FlatbufferDetachedBuffer<T> detached) {
Austin Schuhadd6eb32020-11-09 21:24:26 -0800348 CHECK_EQ(static_cast<void *>(detached.span().data() + detached.span().size() -
349 sender_->size()),
350 sender_->data())
Brian Silverman341b57e2020-06-23 16:23:18 -0700351 << ": May only send the buffer detached from this Sender";
Austin Schuhadd6eb32020-11-09 21:24:26 -0800352 return sender_->Send(detached.span().size());
Brian Silverman341b57e2020-06-23 16:23:18 -0700353}
354
Alex Perrycb7da4b2019-08-28 19:35:56 -0700355} // namespace aos
356
357#endif // AOS_EVENTS_EVENT_LOOP_TMPL_H