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def test_wifi(dut): | ||
dut.expect_unity_test_output(timeout=240) |
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/* HW Timer test */ | ||
#include <unity.h> | ||
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#define TIMER_FREQUENCY 4000000 | ||
#define TIMER_FREQUENCY_XTAL_CLK 1000 | ||
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/* | ||
* ESP32 - APB clk only (1kHz not possible) | ||
* C3 - APB + XTAL clk | ||
* S2 - APB + XTAL clk | ||
* S3 - APB + XTAL clk | ||
*/ | ||
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static hw_timer_t *timer = NULL; | ||
static volatile bool alarm_flag; | ||
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/* setUp / tearDown functions are intended to be called before / after each test. */ | ||
void setUp(void) { | ||
timer = timerBegin(TIMER_FREQUENCY); | ||
if (timer == NULL) { | ||
TEST_FAIL_MESSAGE("Timer init failed in setUp()"); | ||
} | ||
timerStop(timer); | ||
timerRestart(timer); | ||
} | ||
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void tearDown(void) { | ||
timerEnd(timer); | ||
} | ||
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void ARDUINO_ISR_ATTR onTimer() { | ||
alarm_flag = true; | ||
} | ||
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void timer_interrupt_test(void) { | ||
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alarm_flag = false; | ||
timerAttachInterrupt(timer, &onTimer); | ||
timerAlarm(timer, (1.2 * TIMER_FREQUENCY), true, 0); | ||
timerStart(timer); | ||
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delay(2000); | ||
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TEST_ASSERT_EQUAL(true, alarm_flag); | ||
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timerStop(timer); | ||
timerRestart(timer); | ||
alarm_flag = false; | ||
timerDetachInterrupt(timer); | ||
timerStart(timer); | ||
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delay(2000); | ||
TEST_ASSERT_EQUAL(false, alarm_flag); | ||
} | ||
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void timer_divider_test(void) { | ||
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uint64_t time_val; | ||
uint64_t comp_time_val; | ||
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timerStart(timer); | ||
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delay(1000); | ||
time_val = timerRead(timer); | ||
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// compare divider 16 and 8, value should be double | ||
timerEnd(timer); | ||
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timer = timerBegin(2 * TIMER_FREQUENCY); | ||
if (timer == NULL) { | ||
TEST_FAIL_MESSAGE("Timer init failed!"); | ||
} | ||
timerRestart(timer); | ||
delay(1000); | ||
comp_time_val = timerRead(timer); | ||
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TEST_ASSERT_INT_WITHIN(4000, 4000000, time_val); | ||
TEST_ASSERT_INT_WITHIN(8000, 8000000, comp_time_val); | ||
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// divider is 256, value should be 2^4 | ||
timerEnd(timer); | ||
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timer = timerBegin(TIMER_FREQUENCY / 16); | ||
if (timer == NULL) { | ||
TEST_FAIL_MESSAGE("Timer init failed!"); | ||
} | ||
timerRestart(timer); | ||
delay(1000); | ||
comp_time_val = timerRead(timer); | ||
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TEST_ASSERT_INT_WITHIN(4000, 4000000, time_val); | ||
TEST_ASSERT_INT_WITHIN(2500, 250000, comp_time_val); | ||
} | ||
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void timer_read_test(void) { | ||
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uint64_t set_timer_val = 0xFF; | ||
uint64_t get_timer_val = 0; | ||
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timerWrite(timer, set_timer_val); | ||
get_timer_val = timerRead(timer); | ||
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TEST_ASSERT_EQUAL(set_timer_val, get_timer_val); | ||
} | ||
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void timer_clock_select_test(void) { | ||
// Set timer frequency that can be achieved using XTAL clock source (autoselected) | ||
timer = timerBegin(TIMER_FREQUENCY_XTAL_CLK); | ||
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uint32_t resolution = timerGetFrequency(timer); | ||
TEST_ASSERT_EQUAL(TIMER_FREQUENCY_XTAL_CLK, resolution); | ||
} | ||
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void setup() { | ||
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// Open serial communications and wait for port to open: | ||
Serial.begin(115200); | ||
while (!Serial) { | ||
; | ||
} | ||
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UNITY_BEGIN(); | ||
RUN_TEST(timer_read_test); | ||
RUN_TEST(timer_interrupt_test); | ||
RUN_TEST(timer_divider_test); | ||
#if !CONFIG_IDF_TARGET_ESP32 | ||
RUN_TEST(timer_clock_select_test); | ||
#endif | ||
UNITY_END(); | ||
} | ||
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void loop() {} |