rusefi-1/unit_tests/tests/test_signal_executor.cpp

167 lines
3.9 KiB
C++

/**
* @file test_signal_executor.cpp
*
* @date Nov 28, 2013
* @author Andrey Belomutskiy, (c) 2012-2020
*/
#include "global.h"
#include <time.h>
#include "test_signal_executor.h"
#include "io_pins.h"
#include "event_queue.h"
#include "pwm_generator_logic.h"
#include "unit_test_framework.h"
// this instance is used by some unit tests here which reference it directly
static EventQueue eq;
static int callbackCounter = 0;
static void callback(void *a) {
callbackCounter++;
}
static int complexTestNow;
typedef struct {
scheduling_s s;
int period;
} TestPwm;
static void complexCallback(TestPwm *testPwm) {
callbackCounter++;
eq.insertTask(&testPwm->s, complexTestNow + testPwm->period,
{ complexCallback, testPwm });
}
static void testSignalExecutor2(void) {
print("*************************************** testSignalExecutor2\r\n");
eq.clear();
TestPwm p1;
TestPwm p2;
p1.period = 2;
p2.period = 3;
complexTestNow = 0;
callbackCounter = 0;
eq.insertTask(&p1.s, 0, { complexCallback, &p1 });
eq.insertTask(&p2.s, 0, { complexCallback, &p2 });
eq.executeAll(complexTestNow);
ASSERT_EQ( 2, callbackCounter) << "callbackCounter #1";
ASSERT_EQ(2, eq.size());
eq.executeAll(complexTestNow = 2);
ASSERT_EQ( 3, callbackCounter) << "callbackCounter #2";
ASSERT_EQ(2, eq.size());
eq.executeAll(complexTestNow = 3);
ASSERT_EQ( 4, callbackCounter) << "callbackCounter #3";
ASSERT_EQ(2, eq.size());
}
static long prevValue = -1;
static void orderCallback(void *a) {
long value = (long)a;
printf("value=%d prevValue=%d\r\n", value, prevValue);
ASSERT_TRUE(value > prevValue) << "orderCallback";
prevValue = value;
}
static void testSignalExecutor3(void) {
print("*************************************** testSignalExecutor3\r\n");
eq.clear();
scheduling_s s1;
scheduling_s s2;
scheduling_s s3;
eq.insertTask(&s1, 10, { orderCallback, (void*)1 });
eq.insertTask(&s2, 11, { orderCallback, (void*)2 });
eq.insertTask(&s3, 12, { orderCallback, (void*)3 });
eq.executeAll(100);
}
TEST(misc, testSignalExecutor) {
testSignalExecutor3();
print("*************************************** testSignalExecutor\r\n");
eq.clear();
ASSERT_EQ(EMPTY_QUEUE, eq.getNextEventTime(0));
scheduling_s s1;
scheduling_s s2;
scheduling_s s3;
scheduling_s s4;
eq.insertTask(&s1, 10, callback);
eq.insertTask(&s4, 10, callback);
eq.insertTask(&s3, 12, callback);
eq.insertTask(&s2, 11, callback);
ASSERT_EQ(4, eq.size());
ASSERT_EQ(10, eq.getHead()->momentX);
ASSERT_EQ(10, eq.getHead()->nextScheduling_s->momentX);
ASSERT_EQ(11, eq.getHead()->nextScheduling_s->nextScheduling_s->momentX);
ASSERT_EQ(12, eq.getHead()->nextScheduling_s->nextScheduling_s->nextScheduling_s->momentX);
callbackCounter = 0;
eq.executeAll(10);
ASSERT_EQ( 2, callbackCounter) << "callbackCounter/2";
callbackCounter = 0;
eq.executeAll(11);
ASSERT_EQ( 1, callbackCounter) << "callbackCounter/1#1";
eq.executeAll(100);
ASSERT_EQ(0, eq.size());
eq.insertTask(&s1, 12, callback);
eq.insertTask(&s2, 11, callback);
eq.insertTask(&s3, 10, callback);
callbackCounter = 0;
eq.executeAll(10);
ASSERT_EQ( 1, callbackCounter) << "callbackCounter/1#2";
callbackCounter = 0;
eq.executeAll(11);
ASSERT_EQ(1, callbackCounter);
eq.executeAll(100);
ASSERT_EQ(0, eq.size());
callbackCounter = 0;
eq.insertTask(&s1, 10, callback);
ASSERT_EQ(10, eq.getNextEventTime(0));
eq.executeAll(1);
ASSERT_EQ( 0, callbackCounter) << "callbacks not expected";
eq.executeAll(11);
ASSERT_EQ(1, callbackCounter);
ASSERT_EQ(EMPTY_QUEUE, eq.getNextEventTime(0));
eq.insertTask(&s1, 10, callback);
eq.insertTask(&s2, 13, callback);
ASSERT_EQ(10, eq.getNextEventTime(0));
eq.executeAll(1);
ASSERT_EQ(10, eq.getNextEventTime(0));
eq.executeAll(100);
ASSERT_EQ(0, eq.size());
callbackCounter = 0;
// both events are scheduled for the same time
eq.insertTask(&s1, 10, callback);
eq.insertTask(&s2, 10, callback);
eq.executeAll(11);
ASSERT_EQ(2, callbackCounter);
testSignalExecutor2();
}