Release ThreadX regression system
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286
test/tx/regression/threadx_timer_deactivate_accuracy_test.c
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286
test/tx/regression/threadx_timer_deactivate_accuracy_test.c
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/* This test is designed to test application timer activation/deactivation services
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from threads... Make sure the remaining ticks are being saved/restored properly. */
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#include <stdio.h>
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#include "tx_api.h"
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//static unsigned long expected_time;
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static unsigned long thread_0_counter = 0;
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static TX_THREAD thread_0;
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static unsigned long timer_0_counter = 0;
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static TX_TIMER timer_0;
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/* Define thread prototypes. */
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static void thread_0_entry(ULONG thread_input);
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static void timer_0_expiration(ULONG timer_input);
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/* Prototype for test control return. */
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void test_control_return(UINT status);
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/* Define what the initial system looks like. */
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#ifdef CTEST
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void test_application_define(void *first_unused_memory)
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#else
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void threadx_timer_deactivate_accuracy_application_define(void *first_unused_memory)
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#endif
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{
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UINT status;
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CHAR *pointer;
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/* Put first available memory address into a character pointer. */
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pointer = (CHAR *) first_unused_memory;
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/* Put system definition stuff in here, e.g. thread creates and other assorted
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create information. */
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status = tx_thread_create(&thread_0, "thread 0", thread_0_entry, 1,
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pointer, TEST_STACK_SIZE_PRINTF,
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16, 16, 3, TX_AUTO_START);
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pointer = pointer + TEST_STACK_SIZE_PRINTF;
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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printf("Running Timer Activation/Deactivation Accuracy Test................. ERROR #1\n");
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test_control_return(1);
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}
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status = tx_timer_create(&timer_0, "timer 0", timer_0_expiration, 0x1234,
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29, 31, TX_NO_ACTIVATE);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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printf("Running Timer Activation/Deactivation Accuracy Test................. ERROR #2\n");
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test_control_return(1);
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}
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}
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/* Define the test threads. */
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static void thread_0_entry(ULONG thread_input)
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{
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UINT status;
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/* Inform user. */
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printf("Running Timer Activation/Deactivation Accuracy Test................. ");
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/* Sleep so we have to handle the wrap condition. */
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tx_thread_sleep(10);
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/* Activate the timer. */
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status = tx_timer_activate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #3\n");
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test_control_return(1);
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}
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/* Sleep */
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tx_thread_sleep(2);
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/* Deactivate and activate the timer. */
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status = tx_timer_deactivate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #4\n");
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test_control_return(1);
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}
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status = tx_timer_activate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #5\n");
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test_control_return(1);
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}
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/* Sleep */
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tx_thread_sleep(3);
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/* Deactivate and activate the timer. */
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status = tx_timer_deactivate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #6\n");
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test_control_return(1);
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}
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status = tx_timer_activate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #7\n");
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test_control_return(1);
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}
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/* Sleep */
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tx_thread_sleep(4);
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/* Deactivate and activate the timer. */
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status = tx_timer_deactivate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #8\n");
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test_control_return(1);
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}
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status = tx_timer_activate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #9\n");
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test_control_return(1);
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}
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/* Sleep */
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tx_thread_sleep(5);
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/* Deactivate and activate the timer. */
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status = tx_timer_deactivate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #10\n");
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test_control_return(1);
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}
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status = tx_timer_activate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #11\n");
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test_control_return(1);
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}
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/* Sleep */
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tx_thread_sleep(6);
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/* Deactivate and activate the timer. */
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status = tx_timer_deactivate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #12\n");
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test_control_return(1);
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}
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status = tx_timer_activate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #13\n");
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test_control_return(1);
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}
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/* Sleep */
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tx_thread_sleep(7);
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/* Deactivate and activate the timer. */
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status = tx_timer_deactivate(&timer_0);
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/* Check for status. */
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if (status != TX_SUCCESS)
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{
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/* Application timer error. */
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printf("ERROR #14\n");
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test_control_return(1);
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}
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status = tx_timer_activate(&timer_0);
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/* Check for status. */
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if ((status != TX_SUCCESS) || (timer_0_counter))
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{
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/* Application timer error. */
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printf("ERROR #15\n");
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test_control_return(1);
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}
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/* Sleep */
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tx_thread_sleep(2);
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/* At this point the timer should have ran! */
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status = tx_timer_deactivate(&timer_0);
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/* Increment thread 0 counter. */
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thread_0_counter++;
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/* Check for status. */
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if ((status != TX_SUCCESS) || (timer_0_counter != 1))
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{
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/* Application timer error. */
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printf("ERROR #16\n");
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test_control_return(1);
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}
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else
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{
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/* Successful Re-activate test. */
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printf("SUCCESS!\n");
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test_control_return(0);
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}
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}
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static void timer_0_expiration(ULONG timer_input)
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{
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/* Process timer expiration. */
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timer_0_counter++;
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}
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