Sub: use AP_Scheduler's loop() function
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d9bb546048
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@ -90,11 +90,6 @@ void Sub::setup()
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// initialise the main loop scheduler
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scheduler.init(&scheduler_tasks[0], ARRAY_SIZE(scheduler_tasks));
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// setup initial performance counters
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perf_info.set_loop_rate(scheduler.get_loop_rate_hz());
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perf_info.reset();
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fast_loopTimer = AP_HAL::micros();
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}
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void Sub::perf_update(void)
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@ -104,46 +99,21 @@ void Sub::perf_update(void)
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}
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if (scheduler.debug()) {
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gcs().send_text(MAV_SEVERITY_WARNING, "PERF: %u/%u max=%lu min=%lu avg=%lu sd=%lu",
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(unsigned)perf_info.get_num_long_running(),
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(unsigned)perf_info.get_num_loops(),
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(unsigned long)perf_info.get_max_time(),
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(unsigned long)perf_info.get_min_time(),
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(unsigned long)perf_info.get_avg_time(),
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(unsigned long)perf_info.get_stddev_time());
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(unsigned)scheduler.perf_info.get_num_long_running(),
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(unsigned)scheduler.perf_info.get_num_loops(),
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(unsigned long)scheduler.perf_info.get_max_time(),
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(unsigned long)scheduler.perf_info.get_min_time(),
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(unsigned long)scheduler.perf_info.get_avg_time(),
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(unsigned long)scheduler.perf_info.get_stddev_time());
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}
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perf_info.reset(scheduler.get_loop_rate_hz());
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scheduler.perf_info.reset();
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pmTest1 = 0;
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}
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void Sub::loop()
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{
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// wait for an INS sample
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ins.wait_for_sample();
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uint32_t timer = micros();
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// check loop time
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perf_info.check_loop_time(timer - fast_loopTimer);
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// used by PI Loops
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G_Dt = (float)(timer - fast_loopTimer) / 1000000.0f;
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fast_loopTimer = timer;
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// Execute the fast loop
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// ---------------------
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fast_loop();
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// tell the scheduler one tick has passed
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scheduler.tick();
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// run all the tasks that are due to run. Note that we only
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// have to call this once per loop, as the tasks are scheduled
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// in multiples of the main loop tick. So if they don't run on
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// the first call to the scheduler they won't run on a later
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// call until scheduler.tick() is called again
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const uint32_t loop_us = scheduler.get_loop_period_us();
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const uint32_t time_available = (timer + loop_us) - micros();
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scheduler.run(time_available > loop_us ? 0u : time_available);
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scheduler.loop();
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G_Dt = scheduler.last_loop_time;
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}
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@ -150,13 +150,13 @@ void Sub::Log_Write_Performance()
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struct log_Performance pkt = {
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LOG_PACKET_HEADER_INIT(LOG_PERFORMANCE_MSG),
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time_us : AP_HAL::micros64(),
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num_long_running : perf_info.get_num_long_running(),
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num_loops : perf_info.get_num_loops(),
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max_time : perf_info.get_max_time(),
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num_long_running : scheduler.perf_info.get_num_long_running(),
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num_loops : scheduler.perf_info.get_num_loops(),
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max_time : scheduler.perf_info.get_max_time(),
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pm_test : pmTest1,
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i2c_lockup_count : 0,
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ins_error_count : ins.error_count(),
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log_dropped : DataFlash.num_dropped() - perf_info.get_num_dropped(),
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log_dropped : DataFlash.num_dropped() - scheduler.perf_info.get_num_dropped(),
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hal.util->available_memory()
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};
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DataFlash.WriteCriticalBlock(&pkt, sizeof(pkt));
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@ -52,7 +52,6 @@ Sub::Sub(void)
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wp_nav(inertial_nav, ahrs_view, pos_control, attitude_control),
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circle_nav(inertial_nav, ahrs_view, pos_control),
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pmTest1(0),
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fast_loopTimer(0),
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in_mavlink_delay(false),
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param_loader(var_info),
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last_pilot_yaw_input_ms(0)
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@ -147,7 +147,7 @@ private:
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ParametersG2 g2;
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// main loop scheduler
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AP_Scheduler scheduler;
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AP_Scheduler scheduler{FUNCTOR_BIND_MEMBER(&Sub::fast_loop, void)};
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// AP_Notify instance
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AP_Notify notify;
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@ -347,9 +347,6 @@ private:
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// Flag indicating if we are currently using input hold
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bool input_hold_engaged;
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// loop performance monitoring:
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AP::PerfInfo perf_info;
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// 3D Location vectors
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// Current location of the Sub (altitude is relative to home)
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Location_Class current_loc;
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@ -401,11 +398,6 @@ private:
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// Performance monitoring
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int16_t pmTest1;
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// System Timers
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// --------------
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// Time in microseconds of main control loop
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uint32_t fast_loopTimer;
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// Reference to the relay object
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AP_Relay relay;
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@ -75,7 +75,7 @@ bool Sub::init_arm_motors(bool arming_from_gcs)
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mainloop_failsafe_enable();
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// perf monitor ignores delay due to arming
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perf_info.ignore_this_loop();
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scheduler.perf_info.ignore_this_loop();
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// flag exiting this function
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in_arm_motors = false;
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