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https://github.com/espressif/esp-idf.git
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Merge branch 'bugfix/jump_time_54_sec' into 'master'
esp_timer: Fix time jumps back ~ 54sec Closes IDFGH-396 See merge request espressif/esp-idf!5943
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commit
7637feb6ef
@ -12,6 +12,7 @@
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include "sys/param.h"
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#include "esp_err.h"
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#include "esp_timer.h"
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#include "esp_system.h"
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@ -127,13 +128,6 @@ static uint32_t s_timer_us_per_overflow;
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// will not increment s_time_base_us if this flag is set.
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static bool s_mask_overflow;
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//The timer_overflow_happened read alarm register to tell if overflow happened.
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//However, there is a monent that overflow happens, and before ISR function called
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//alarm register is set to another value, then you call timer_overflow_happened,
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//it will return false.
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//So we store the overflow value when new alarm is to be set.
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static bool s_overflow_happened;
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#ifdef CONFIG_PM_DFS_USE_RTC_TIMER_REF
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// If DFS is enabled, upon the first frequency change this value is set to the
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// difference between esp_timer value and RTC timer value. On every subsequent
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@ -152,10 +146,6 @@ portMUX_TYPE s_time_update_lock = portMUX_INITIALIZER_UNLOCKED;
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// Check if timer overflow has happened (but was not handled by ISR yet)
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static inline bool IRAM_ATTR timer_overflow_happened(void)
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{
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if (s_overflow_happened) {
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return true;
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}
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return ((REG_READ(FRC_TIMER_CTRL_REG(1)) & FRC_TIMER_INT_STATUS) != 0 &&
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((REG_READ(FRC_TIMER_ALARM_REG(1)) == ALARM_OVERFLOW_VAL && TIMER_IS_AFTER_OVERFLOW(REG_READ(FRC_TIMER_COUNT_REG(1))) && !s_mask_overflow) ||
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(!TIMER_IS_AFTER_OVERFLOW(REG_READ(FRC_TIMER_ALARM_REG(1))) && TIMER_IS_AFTER_OVERFLOW(REG_READ(FRC_TIMER_COUNT_REG(1))))));
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@ -222,35 +212,31 @@ uint64_t IRAM_ATTR esp_timer_impl_get_time(void)
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void IRAM_ATTR esp_timer_impl_set_alarm(uint64_t timestamp)
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{
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portENTER_CRITICAL(&s_time_update_lock);
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// Alarm time relative to the moment when counter was 0
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uint64_t time_after_timebase_us = timestamp - s_time_base_us;
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// Adjust current time if overflow has happened
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bool overflow = timer_overflow_happened();
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uint64_t cur_count = REG_READ(FRC_TIMER_COUNT_REG(1));
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if (overflow) {
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assert(time_after_timebase_us > s_timer_us_per_overflow);
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time_after_timebase_us -= s_timer_us_per_overflow;
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s_overflow_happened = true;
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}
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// Calculate desired timer compare value (may exceed 2^32-1)
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uint64_t compare_val = time_after_timebase_us * s_timer_ticks_per_us;
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uint32_t alarm_reg_val = ALARM_OVERFLOW_VAL;
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// Use calculated alarm value if it is less than ALARM_OVERFLOW_VAL.
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// Note that if by the time we update ALARM_REG, COUNT_REG value is higher,
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// interrupt will not happen for another ALARM_OVERFLOW_VAL timer ticks,
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// so need to check if alarm value is too close in the future (e.g. <2 us away).
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const uint32_t offset = s_timer_ticks_per_us * 2;
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if (compare_val < ALARM_OVERFLOW_VAL) {
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if (compare_val < cur_count + offset) {
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compare_val = cur_count + offset;
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if (compare_val > ALARM_OVERFLOW_VAL) {
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compare_val = ALARM_OVERFLOW_VAL;
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}
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do {
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// Adjust current time if overflow has happened
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if (timer_overflow_happened()) {
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timer_count_reload();
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s_time_base_us += s_timer_us_per_overflow;
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}
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alarm_reg_val = (uint32_t) compare_val;
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}
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REG_WRITE(FRC_TIMER_ALARM_REG(1), alarm_reg_val);
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s_mask_overflow = false;
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uint64_t cur_count = REG_READ(FRC_TIMER_COUNT_REG(1));
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// Alarm time relative to the moment when counter was 0
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int64_t time_after_timebase_us = (int64_t)timestamp - s_time_base_us;
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// Calculate desired timer compare value (may exceed 2^32-1)
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int64_t compare_val = time_after_timebase_us * s_timer_ticks_per_us;
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compare_val = MAX(compare_val, cur_count + offset);
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uint32_t alarm_reg_val = ALARM_OVERFLOW_VAL;
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if (compare_val < ALARM_OVERFLOW_VAL) {
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alarm_reg_val = (uint32_t) compare_val;
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}
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REG_WRITE(FRC_TIMER_ALARM_REG(1), alarm_reg_val);
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} while (REG_READ(FRC_TIMER_ALARM_REG(1)) <= REG_READ(FRC_TIMER_COUNT_REG(1)));
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portEXIT_CRITICAL(&s_time_update_lock);
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}
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@ -261,7 +247,6 @@ static void IRAM_ATTR timer_alarm_isr(void *arg)
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if (timer_overflow_happened()) {
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timer_count_reload();
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s_time_base_us += s_timer_us_per_overflow;
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s_overflow_happened = false;
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}
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s_mask_overflow = false;
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// Clear interrupt status
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@ -336,7 +321,6 @@ void esp_timer_impl_advance(int64_t time_us)
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REG_WRITE(FRC_TIMER_ALARM_REG(1), 0);
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REG_WRITE(FRC_TIMER_LOAD_REG(1), 0);
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s_time_base_us += count / s_timer_ticks_per_us + time_us;
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s_overflow_happened = false;
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portEXIT_CRITICAL(&s_time_update_lock);
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}
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@ -649,3 +649,133 @@ TEST_CASE("after esp_timer_impl_advance, timers run when expected", "[esp_timer]
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ref_clock_deinit();
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}
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#if !defined(CONFIG_FREERTOS_UNICORE) && defined(CONFIG_ESP32_DPORT_WORKAROUND)
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#include "soc/dport_reg.h"
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#include "soc/frc_timer_reg.h"
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#include "esp_ipc.h"
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static bool task_stop;
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static bool time_jumped;
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static void task_check_time(void *p)
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{
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int64_t t1 = 0, t2 = 0;
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while (task_stop == false) {
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t1 = t2;
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t2 = esp_timer_get_time();
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if (t1 > t2) {
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int64_t shift_us = t2 - t1;
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time_jumped = true;
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printf("System clock jumps back: %lli us\n", shift_us);
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}
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vTaskDelay(1);
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}
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vTaskDelete(NULL);
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}
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static void timer_callback(void* arg)
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{
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}
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static void dport_task(void *pvParameters)
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{
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while (task_stop == false) {
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DPORT_STALL_OTHER_CPU_START();
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ets_delay_us(3);
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DPORT_STALL_OTHER_CPU_END();
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}
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vTaskDelete(NULL);
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}
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TEST_CASE("esp_timer_impl_set_alarm does not set an alarm below the current time", "[esp_timer][timeout=62]")
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{
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const int max_timers = 2;
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time_jumped = false;
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task_stop = false;
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xTaskCreatePinnedToCore(task_check_time, "task_check_time", 4096, NULL, 5, NULL, 0);
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// dport_task is used here to interrupt the esp_timer_impl_set_alarm function.
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// To interrupt it we can use an interrupt with 4 or 5 levels which will run on CPU0.
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// Instead, an interrupt we use the dport workaround which has 4 interrupt level for stall CPU0.
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xTaskCreatePinnedToCore(dport_task, "dport_task", 4096, NULL, 5, NULL, 1);
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const esp_timer_create_args_t periodic_timer_args = {
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.callback = &timer_callback,
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};
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esp_timer_handle_t periodic_timer[max_timers];
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printf("timers created\n");
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esp_timer_create(&periodic_timer_args, &periodic_timer[0]);
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esp_timer_start_periodic(periodic_timer[0], 9000);
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esp_timer_create(&periodic_timer_args, &periodic_timer[1]);
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esp_timer_start_periodic(periodic_timer[1], 9000);
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vTaskDelay(60 * 1000 / portTICK_PERIOD_MS);
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task_stop = true;
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esp_timer_stop(periodic_timer[0]);
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esp_timer_delete(periodic_timer[0]);
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esp_timer_stop(periodic_timer[1]);
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esp_timer_delete(periodic_timer[1]);
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printf("timers deleted\n");
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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TEST_ASSERT(time_jumped == false);
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}
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static esp_timer_handle_t oneshot_timer;
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static void oneshot_timer_callback(void* arg)
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{
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esp_timer_start_once(oneshot_timer, 5000);
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}
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static const esp_timer_create_args_t oneshot_timer_args = {
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.callback = &oneshot_timer_callback,
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};
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TEST_CASE("esp_timer_impl_set_alarm and using start_once do not lead that the System time jumps back", "[esp_timer][timeout=62]")
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{
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time_jumped = false;
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task_stop = false;
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xTaskCreatePinnedToCore(task_check_time, "task_check_time", 4096, NULL, 5, NULL, 0);
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// dport_task is used here to interrupt the esp_timer_impl_set_alarm function.
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// To interrupt it we can use an interrupt with 4 or 5 levels which will run on CPU0.
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// Instead, an interrupt we use the dport workaround which has 4 interrupt level for stall CPU0.
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xTaskCreatePinnedToCore(dport_task, "dport_task", 4096, NULL, 5, NULL, 1);
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const esp_timer_create_args_t periodic_timer_args = {
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.callback = &timer_callback,
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};
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esp_timer_handle_t periodic_timer;
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esp_timer_create(&periodic_timer_args, &periodic_timer);
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esp_timer_start_periodic(periodic_timer, 5000);
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esp_timer_create(&oneshot_timer_args, &oneshot_timer);
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esp_timer_start_once(oneshot_timer, 9990);
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printf("timers created\n");
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vTaskDelay(60 * 1000 / portTICK_PERIOD_MS);
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task_stop = true;
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esp_timer_stop(oneshot_timer);
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esp_timer_delete(oneshot_timer);
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printf("timers deleted\n");
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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TEST_ASSERT(time_jumped == false);
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}
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#endif // !defined(CONFIG_FREERTOS_UNICORE) && defined(CONFIG_ESP32_DPORT_WORKAROUND)
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@ -129,12 +129,15 @@ esp_err_t IRAM_ATTR esp_timer_start_once(esp_timer_handle_t timer, uint64_t time
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if (!is_initialized() || timer_armed(timer)) {
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return ESP_ERR_INVALID_STATE;
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}
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timer_list_lock();
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timer->alarm = esp_timer_get_time() + timeout_us;
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timer->period = 0;
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#if WITH_PROFILING
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timer->times_armed++;
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#endif
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return timer_insert(timer);
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esp_err_t err = timer_insert(timer);
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timer_list_unlock();
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return err;
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}
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esp_err_t IRAM_ATTR esp_timer_start_periodic(esp_timer_handle_t timer, uint64_t period_us)
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@ -145,13 +148,16 @@ esp_err_t IRAM_ATTR esp_timer_start_periodic(esp_timer_handle_t timer, uint64_t
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if (!is_initialized() || timer_armed(timer)) {
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return ESP_ERR_INVALID_STATE;
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}
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timer_list_lock();
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period_us = MAX(period_us, esp_timer_impl_get_min_period_us());
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timer->alarm = esp_timer_get_time() + period_us;
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timer->period = period_us;
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#if WITH_PROFILING
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timer->times_armed++;
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#endif
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return timer_insert(timer);
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esp_err_t err = timer_insert(timer);
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timer_list_unlock();
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return err;
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}
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esp_err_t IRAM_ATTR esp_timer_stop(esp_timer_handle_t timer)
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@ -173,16 +179,17 @@ esp_err_t esp_timer_delete(esp_timer_handle_t timer)
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if (timer_armed(timer)) {
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return ESP_ERR_INVALID_STATE;
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}
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timer_list_lock();
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timer->event_id = EVENT_ID_DELETE_TIMER;
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timer->alarm = esp_timer_get_time() + 50;
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timer->alarm = esp_timer_get_time();
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timer->period = 0;
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timer_insert(timer);
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timer_list_unlock();
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return ESP_OK;
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}
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static IRAM_ATTR esp_err_t timer_insert(esp_timer_handle_t timer)
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{
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timer_list_lock();
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#if WITH_PROFILING
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timer_remove_inactive(timer);
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#endif
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@ -205,7 +212,6 @@ static IRAM_ATTR esp_err_t timer_insert(esp_timer_handle_t timer)
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if (timer == LIST_FIRST(&s_timers)) {
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esp_timer_impl_set_alarm(timer->alarm);
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}
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timer_list_unlock();
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return ESP_OK;
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}
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