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			377 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			377 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /*
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|  Tests for the interrupt allocator.
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| */
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| 
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| #include <stdio.h>
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| #include "esp_types.h"
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| #include "esp_rom_sys.h"
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| #include "freertos/FreeRTOS.h"
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| #include "freertos/task.h"
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| #include "freertos/semphr.h"
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| #include "freertos/queue.h"
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| #include "unity.h"
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| #include "esp_intr_alloc.h"
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| #include "driver/periph_ctrl.h"
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| #include "driver/timer.h"
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| #include "soc/soc_caps.h"
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| #include "soc/spi_periph.h"
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| #include "hal/spi_ll.h"
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| #include "sdkconfig.h"
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| 
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| #define TIMER_DIVIDER (16)          /*!< Hardware timer clock divider */
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| #define TIMER_SCALE   (APB_CLK_FREQ / TIMER_DIVIDER)  /*!< used to calculate counter value */
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| #define TIMER_INTERVAL0_SEC   (3)   /*!< test interval for timer 0 */
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| #define TIMER_INTERVAL1_SEC   (5)   /*!< test interval for timer 1 */
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| 
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| static void my_timer_init(int timer_group, int timer_idx, uint64_t alarm_value)
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| {
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|     timer_config_t config = {
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|         .alarm_en = 1,
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|         .auto_reload = 1,
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|         .counter_dir = TIMER_COUNT_UP,
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|         .divider = TIMER_DIVIDER,
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|     };
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|     /*Configure timer*/
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|     timer_init(timer_group, timer_idx, &config);
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|     /*Stop timer counter*/
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|     timer_pause(timer_group, timer_idx);
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|     /*Load counter value */
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|     timer_set_counter_value(timer_group, timer_idx, 0);
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|     /*Set alarm value*/
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|     timer_set_alarm_value(timer_group, timer_idx, alarm_value);
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|     /*Enable timer interrupt*/
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|     timer_enable_intr(timer_group, timer_idx);
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| }
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| 
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| static volatile int count[SOC_TIMER_GROUP_TOTAL_TIMERS] = {0};
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| 
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| static void timer_isr(void *arg)
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| {
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|     int timer_idx = (int)arg;
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|     int group_id = timer_idx / SOC_TIMER_GROUP_TIMERS_PER_GROUP;
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|     int timer_id = timer_idx % SOC_TIMER_GROUP_TIMERS_PER_GROUP;
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|     count[timer_idx]++;
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| 
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|     timer_group_clr_intr_status_in_isr(group_id, timer_id);
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|     timer_group_enable_alarm_in_isr(group_id, timer_id);
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| }
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| 
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| static void timer_test(int flags)
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| {
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|     timer_isr_handle_t inth[SOC_TIMER_GROUP_TOTAL_TIMERS];
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|     for (int i = 0; i < SOC_TIMER_GROUPS; i++) {
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|         for (int j = 0; j < SOC_TIMER_GROUP_TIMERS_PER_GROUP; j++) {
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|             my_timer_init(i, j, 100000 + 10000 * (i * SOC_TIMER_GROUP_TIMERS_PER_GROUP + j + 1));
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|         }
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|     }
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|     timer_isr_register(0, 0, timer_isr, (void *)0, flags | ESP_INTR_FLAG_INTRDISABLED, &inth[0]);
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|     printf("Interrupts allocated: %d (dis)\r\n", esp_intr_get_intno(inth[0]));
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| 
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|     for (int j = 1; j < SOC_TIMER_GROUP_TIMERS_PER_GROUP; j++) {
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|         timer_isr_register(0, j, timer_isr, (void *)1, flags, &inth[j]);
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|         printf("Interrupts allocated: %d\r\n", esp_intr_get_intno(inth[j]));
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|     }
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|     for (int i = 1; i < SOC_TIMER_GROUPS; i++) {
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|         for (int j = 0; j < SOC_TIMER_GROUP_TIMERS_PER_GROUP; j++) {
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|             timer_isr_register(i, j, timer_isr, (void *)(i * SOC_TIMER_GROUP_TIMERS_PER_GROUP + j), flags, &inth[i * SOC_TIMER_GROUP_TIMERS_PER_GROUP + j]);
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|             printf("Interrupts allocated: %d\r\n", esp_intr_get_intno(inth[i * SOC_TIMER_GROUP_TIMERS_PER_GROUP + j]));
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|         }
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|     }
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|     for (int i = 0; i < SOC_TIMER_GROUPS; i++) {
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|         for (int j = 0; j < SOC_TIMER_GROUP_TIMERS_PER_GROUP; j++) {
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|             timer_start(i, j);
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|         }
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|     }
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| 
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|     printf("Timer values on start:");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         count[i] = 0;
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|         printf(" %d", count[i]);
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|     }
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|     printf("\r\n");
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| 
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|     vTaskDelay(1000 / portTICK_PERIOD_MS);
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|     printf("Timer values after 1 sec:");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         printf(" %d", count[i]);
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|     }
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|     printf("\r\n");
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| 
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|     TEST_ASSERT(count[0] == 0);
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|     for (int i = 1; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         TEST_ASSERT(count[i] != 0);
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|     }
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| 
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|     printf("Disabling half of timers' interrupt...\r\n");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS / 2; i++) {
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|         esp_intr_disable(inth[i]);
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|     }
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|     for (int i = SOC_TIMER_GROUP_TOTAL_TIMERS / 2; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         esp_intr_enable(inth[i]);
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|     }
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         count[i] = 0;
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|     }
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| 
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|     vTaskDelay(1000 / portTICK_PERIOD_MS);
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|     printf("Timer values after 1 sec:");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         printf(" %d", count[i]);
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|     }
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|     printf("\r\n");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS / 2; i++) {
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|         TEST_ASSERT(count[i] == 0);
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|     }
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|     for (int i = SOC_TIMER_GROUP_TOTAL_TIMERS / 2; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         TEST_ASSERT(count[i] != 0);
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|     }
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| 
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|     printf("Disabling another half...\r\n");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS / 2; i++) {
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|         esp_intr_enable(inth[i]);
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|     }
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|     for (int i = SOC_TIMER_GROUP_TOTAL_TIMERS / 2; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         esp_intr_disable(inth[i]);
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|     }
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|     for (int x = 0; x < SOC_TIMER_GROUP_TOTAL_TIMERS; x++) {
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|         count[x] = 0;
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|     }
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|     vTaskDelay(1000 / portTICK_PERIOD_MS);
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|     printf("Timer values after 1 sec:");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         printf(" %d", count[i]);
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|     }
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|     printf("\r\n");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS / 2; i++) {
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|         TEST_ASSERT(count[i] != 0);
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|     }
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|     for (int i = SOC_TIMER_GROUP_TOTAL_TIMERS / 2; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         TEST_ASSERT(count[i] == 0);
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|     }
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|     printf("Done.\n");
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|     for (int i = 0; i < SOC_TIMER_GROUP_TOTAL_TIMERS; i++) {
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|         esp_intr_free(inth[i]);
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|     }
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| }
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| 
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| TEST_CASE("Intr_alloc test, private ints", "[intr_alloc]")
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| {
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|     timer_test(0);
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| }
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| 
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| TEST_CASE("Intr_alloc test, shared ints", "[intr_alloc]")
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| {
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|     timer_test(ESP_INTR_FLAG_SHARED);
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| }
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| 
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| typedef struct {
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|     bool flag1;
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|     bool flag2;
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|     bool flag3;
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|     bool flag4;
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| } intr_alloc_test_ctx_t;
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| 
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| void IRAM_ATTR int_handler1(void *arg)
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| {
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|     intr_alloc_test_ctx_t *ctx = (intr_alloc_test_ctx_t *)arg;
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|     esp_rom_printf("handler 1 called.\n");
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|     if ( ctx->flag1 ) {
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|         ctx->flag3 = true;
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|     } else {
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|         ctx->flag1 = true;
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|     }
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| 
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| #ifdef CONFIG_IDF_TARGET_ESP32
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|     spi_ll_clear_int_stat(&SPI2);
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| #else
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|     spi_ll_clear_int_stat(&GPSPI2);
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| #endif
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| }
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| 
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| void IRAM_ATTR int_handler2(void *arg)
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| {
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|     intr_alloc_test_ctx_t *ctx = (intr_alloc_test_ctx_t *)arg;
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|     esp_rom_printf("handler 2 called.\n");
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|     if ( ctx->flag2 ) {
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|         ctx->flag4 = true;
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|     } else {
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|         ctx->flag2 = true;
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|     }
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| }
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| 
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| TEST_CASE("allocate 2 handlers for a same source and remove the later one", "[intr_alloc]")
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| {
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|     intr_alloc_test_ctx_t ctx = {false, false, false, false };
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|     intr_handle_t handle1, handle2;
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| 
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|     // enable SPI2
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|     periph_module_enable(spi_periph_signal[1].module);
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| 
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|     esp_err_t r;
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|     r = esp_intr_alloc(spi_periph_signal[1].irq, ESP_INTR_FLAG_SHARED, int_handler1, &ctx, &handle1);
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|     TEST_ESP_OK(r);
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|     //try an invalid assign first
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|     r = esp_intr_alloc(spi_periph_signal[1].irq, 0, int_handler2, NULL, &handle2);
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|     TEST_ASSERT_EQUAL_INT(ESP_ERR_NOT_FOUND, r);
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|     //assign shared then
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|     r = esp_intr_alloc(spi_periph_signal[1].irq, ESP_INTR_FLAG_SHARED, int_handler2, &ctx, &handle2);
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|     TEST_ESP_OK(r);
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| 
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| #ifdef CONFIG_IDF_TARGET_ESP32
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|     spi_ll_enable_int(&SPI2);
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| #else
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|     spi_ll_enable_int(&GPSPI2);
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| #endif
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| 
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|     printf("trigger first time.\n");
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| 
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| #ifdef CONFIG_IDF_TARGET_ESP32
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|     spi_ll_set_int_stat(&SPI2);
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| #else
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|     spi_ll_set_int_stat(&GPSPI2);
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| #endif
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| 
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|     vTaskDelay(100);
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|     TEST_ASSERT( ctx.flag1 && ctx.flag2 );
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| 
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|     printf("remove intr 1.\n");
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|     r = esp_intr_free(handle2);
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| 
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|     printf("trigger second time.\n");
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| 
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| #ifdef CONFIG_IDF_TARGET_ESP32
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|     spi_ll_set_int_stat(&SPI2);
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| #else
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|     spi_ll_set_int_stat(&GPSPI2);
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| #endif
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| 
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|     vTaskDelay(500);
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|     TEST_ASSERT( ctx.flag3 && !ctx.flag4 );
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|     printf("test passed.\n");
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|     esp_intr_free(handle1);
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| }
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| 
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| static void dummy(void *arg)
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| {
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| }
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| static IRAM_ATTR void dummy_iram(void *arg)
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| {
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| }
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| static RTC_IRAM_ATTR void dummy_rtc(void *arg)
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| {
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| }
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| 
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| TEST_CASE("Can allocate IRAM int only with an IRAM handler", "[intr_alloc]")
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| {
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|     intr_handle_t ih;
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|     esp_err_t err = esp_intr_alloc(spi_periph_signal[1].irq,
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|                                    ESP_INTR_FLAG_IRAM, &dummy, NULL, &ih);
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|     TEST_ASSERT_EQUAL_INT(ESP_ERR_INVALID_ARG, err);
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|     err = esp_intr_alloc(spi_periph_signal[1].irq,
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|                          ESP_INTR_FLAG_IRAM, &dummy_iram, NULL, &ih);
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|     TEST_ESP_OK(err);
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|     err = esp_intr_free(ih);
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|     TEST_ESP_OK(err);
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|     err = esp_intr_alloc(spi_periph_signal[1].irq,
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|                          ESP_INTR_FLAG_IRAM, &dummy_rtc, NULL, &ih);
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|     TEST_ESP_OK(err);
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|     err = esp_intr_free(ih);
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|     TEST_ESP_OK(err);
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| }
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| 
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| #ifndef CONFIG_FREERTOS_UNICORE
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| void isr_free_task(void *param)
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| {
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|     esp_err_t ret = ESP_FAIL;
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|     intr_handle_t *test_handle = (intr_handle_t *)param;
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|     if (*test_handle != NULL) {
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|         ret = esp_intr_free(*test_handle);
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|         if (ret == ESP_OK) {
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|             *test_handle = NULL;
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|         }
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|     }
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|     vTaskDelete(NULL);
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| }
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| 
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| void isr_alloc_free_test(void)
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| {
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|     intr_handle_t test_handle = NULL;
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|     esp_err_t ret = esp_intr_alloc(spi_periph_signal[1].irq, 0, int_handler1, NULL, &test_handle);
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|     if (ret != ESP_OK) {
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|         printf("alloc isr handle fail\n");
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|     } else {
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|         printf("alloc isr handle on core %d\n", esp_intr_get_cpu(test_handle));
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|     }
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|     TEST_ASSERT(ret == ESP_OK);
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|     xTaskCreatePinnedToCore(isr_free_task, "isr_free_task", 1024 * 2, (void *)&test_handle, 10, NULL, !xPortGetCoreID());
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|     vTaskDelay(1000 / portTICK_RATE_MS);
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|     TEST_ASSERT(test_handle == NULL);
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|     printf("test passed\n");
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| }
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| 
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| TEST_CASE("alloc and free isr handle on different core", "[intr_alloc]")
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| {
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|     isr_alloc_free_test();
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| }
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| #endif
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| 
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| #if __XTENSA__
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| static volatile int int_timer_ctr;
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| 
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| void int_timer_handler(void *arg)
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| {
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|     xthal_set_ccompare(1, xthal_get_ccount() + 8000000);
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|     int_timer_ctr++;
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| }
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| 
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| static void local_timer_test(void)
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| {
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|     intr_handle_t ih;
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|     esp_err_t r;
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|     r = esp_intr_alloc(ETS_INTERNAL_TIMER1_INTR_SOURCE, 0, int_timer_handler, NULL, &ih);
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|     TEST_ASSERT(r == ESP_OK);
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|     printf("Int timer 1 intno %d\n", esp_intr_get_intno(ih));
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|     xthal_set_ccompare(1, xthal_get_ccount() + 8000000);
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|     int_timer_ctr = 0;
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|     vTaskDelay(1000 / portTICK_PERIOD_MS);
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|     printf("Timer val after 1 sec: %d\n", int_timer_ctr);
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|     TEST_ASSERT(int_timer_ctr != 0);
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|     printf("Disabling int\n");
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|     esp_intr_disable(ih);
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|     int_timer_ctr = 0;
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|     vTaskDelay(1000 / portTICK_PERIOD_MS);
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|     printf("Timer val after 1 sec: %d\n", int_timer_ctr);
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|     TEST_ASSERT(int_timer_ctr == 0);
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|     printf("Re-enabling\n");
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|     esp_intr_enable(ih);
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|     vTaskDelay(1000 / portTICK_PERIOD_MS);
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|     printf("Timer val after 1 sec: %d\n", int_timer_ctr);
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|     TEST_ASSERT(int_timer_ctr != 0);
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| 
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|     printf("Free int, re-alloc disabled\n");
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|     r = esp_intr_free(ih);
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|     TEST_ASSERT(r == ESP_OK);
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|     r = esp_intr_alloc(ETS_INTERNAL_TIMER1_INTR_SOURCE, ESP_INTR_FLAG_INTRDISABLED, int_timer_handler, NULL, &ih);
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|     TEST_ASSERT(r == ESP_OK);
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|     int_timer_ctr = 0;
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|     vTaskDelay(1000 / portTICK_PERIOD_MS);
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|     printf("Timer val after 1 sec: %d\n", int_timer_ctr);
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|     TEST_ASSERT(int_timer_ctr == 0);
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|     printf("Re-enabling\n");
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|     esp_intr_enable(ih);
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|     vTaskDelay(1000 / portTICK_PERIOD_MS);
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|     printf("Timer val after 1 sec: %d\n", int_timer_ctr);
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|     TEST_ASSERT(int_timer_ctr != 0);
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|     r = esp_intr_free(ih);
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|     TEST_ASSERT(r == ESP_OK);
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|     printf("Done.\n");
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| }
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| 
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| 
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| TEST_CASE("Intr_alloc test, CPU-local int source", "[intr_alloc]")
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| {
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|     local_timer_test();
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| }
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| 
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| #endif // #if __XTENSA__
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