blob: 8ed8df3f92e6786c42815c8139fbd29e8e10a998 [file] [log] [blame]
/*
* Copyright (c) 2016 Intel Corporation
*
* SPDX-License-Identifier: Apache-2.0
*/
#include <stdbool.h>
#include <zephyr.h>
#include <ztest.h>
#include <tc_util.h>
#include <misc/util.h>
#define NUM_TEST_ITEMS 6
/* Each work item takes 100ms */
#define WORK_ITEM_WAIT 100
/*
* Wait 50ms between work submissions, to ensure co-op and prempt
* preempt thread submit alternatively.
*/
#define SUBMIT_WAIT 50
#define STACK_SIZE 1024
struct test_item {
int key;
struct k_delayed_work work;
};
static K_THREAD_STACK_DEFINE(co_op_stack, STACK_SIZE);
static struct k_thread co_op_data;
static struct test_item tests[NUM_TEST_ITEMS];
static int results[NUM_TEST_ITEMS];
static int num_results;
static void work_handler(struct k_work *work)
{
struct test_item *ti = CONTAINER_OF(work, struct test_item, work);
TC_PRINT(" - Running test item %d\n", ti->key);
k_sleep(WORK_ITEM_WAIT);
results[num_results++] = ti->key;
}
static void test_items_init(void)
{
int i;
for (i = 0; i < NUM_TEST_ITEMS; i++) {
tests[i].key = i + 1;
k_work_init(&tests[i].work.work, work_handler);
}
}
static void reset_results(void)
{
int i;
for (i = 0; i < NUM_TEST_ITEMS; i++)
results[i] = 0;
num_results = 0;
}
static void coop_work_main(int arg1, int arg2)
{
int i;
ARG_UNUSED(arg1);
ARG_UNUSED(arg2);
/* Let the preempt thread submit the first work item. */
k_sleep(SUBMIT_WAIT / 2);
for (i = 1; i < NUM_TEST_ITEMS; i += 2) {
TC_PRINT(" - Submitting work %d from coop thread\n", i + 1);
k_work_submit(&tests[i].work.work);
k_sleep(SUBMIT_WAIT);
}
}
static void test_items_submit(void)
{
int i;
k_thread_create(&co_op_data, co_op_stack, STACK_SIZE,
(k_thread_entry_t)coop_work_main,
NULL, NULL, NULL, K_PRIO_COOP(10), 0, 0);
for (i = 0; i < NUM_TEST_ITEMS; i += 2) {
TC_PRINT(" - Submitting work %d from preempt thread\n", i + 1);
k_work_submit(&tests[i].work.work);
k_sleep(SUBMIT_WAIT);
}
}
static void check_results(int num_tests)
{
int i;
zassert_equal(num_results, num_tests,
"*** work items finished: %d (expected: %d)\n",
num_results, num_tests);
for (i = 0; i < num_tests; i++) {
zassert_equal(results[i], i + 1,
"*** got result %d in position %d"
" (expected %d)\n",
results[i], i, i + 1);
}
}
static void test_sequence(void)
{
TC_PRINT(" - Initializing test items\n");
test_items_init();
TC_PRINT(" - Submitting test items\n");
test_items_submit();
TC_PRINT(" - Waiting for work to finish\n");
k_sleep((NUM_TEST_ITEMS + 1) * WORK_ITEM_WAIT);
check_results(NUM_TEST_ITEMS);
reset_results();
}
static void resubmit_work_handler(struct k_work *work)
{
struct test_item *ti = CONTAINER_OF(work, struct test_item, work);
k_sleep(WORK_ITEM_WAIT);
results[num_results++] = ti->key;
if (ti->key < NUM_TEST_ITEMS) {
ti->key++;
TC_PRINT(" - Resubmitting work\n");
k_work_submit(work);
}
}
static void test_resubmit(void)
{
TC_PRINT("Starting resubmit test\n");
tests[0].key = 1;
tests[0].work.work.handler = resubmit_work_handler;
TC_PRINT(" - Submitting work\n");
k_work_submit(&tests[0].work.work);
TC_PRINT(" - Waiting for work to finish\n");
k_sleep((NUM_TEST_ITEMS + 1) * WORK_ITEM_WAIT);
TC_PRINT(" - Checking results\n");
check_results(NUM_TEST_ITEMS);
reset_results();
}
static void delayed_work_handler(struct k_work *work)
{
struct test_item *ti = CONTAINER_OF(work, struct test_item, work);
TC_PRINT(" - Running delayed test item %d\n", ti->key);
results[num_results++] = ti->key;
}
static void test_delayed_init(void)
{
int i;
for (i = 0; i < NUM_TEST_ITEMS; i++) {
tests[i].key = i + 1;
k_delayed_work_init(&tests[i].work, delayed_work_handler);
}
}
static void coop_delayed_work_main(int arg1, int arg2)
{
int i;
ARG_UNUSED(arg1);
ARG_UNUSED(arg2);
/* Let the preempt thread submit the first work item. */
k_sleep(SUBMIT_WAIT / 2);
for (i = 1; i < NUM_TEST_ITEMS; i += 2) {
TC_PRINT(" - Submitting delayed work %d from"
" coop thread\n", i + 1);
k_delayed_work_submit(&tests[i].work,
(i + 1) * WORK_ITEM_WAIT);
}
}
static void test_delayed_submit(void)
{
int i;
k_thread_create(&co_op_data, co_op_stack, STACK_SIZE,
(k_thread_entry_t)coop_delayed_work_main,
NULL, NULL, NULL, K_PRIO_COOP(10), 0, 0);
for (i = 0; i < NUM_TEST_ITEMS; i += 2) {
TC_PRINT(" - Submitting delayed work %d from"
" preempt thread\n", i + 1);
zassert_true(k_delayed_work_submit(&tests[i].work,
(i + 1) * WORK_ITEM_WAIT) == 0, NULL);
}
}
static void coop_delayed_work_cancel_main(int arg1, int arg2)
{
ARG_UNUSED(arg1);
ARG_UNUSED(arg2);
k_delayed_work_submit(&tests[1].work, WORK_ITEM_WAIT);
TC_PRINT(" - Cancel delayed work from coop thread\n");
k_delayed_work_cancel(&tests[1].work);
#if defined(CONFIG_POLL)
k_delayed_work_submit(&tests[2].work, 0 /* Submit immeditelly */);
TC_PRINT(" - Cancel pending delayed work from coop thread\n");
k_delayed_work_cancel(&tests[2].work);
#endif
}
static void test_delayed_cancel(void)
{
TC_PRINT("Starting delayed cancel test\n");
k_delayed_work_submit(&tests[0].work, WORK_ITEM_WAIT);
TC_PRINT(" - Cancel delayed work from preempt thread\n");
k_delayed_work_cancel(&tests[0].work);
k_thread_create(&co_op_data, co_op_stack, STACK_SIZE,
(k_thread_entry_t)coop_delayed_work_cancel_main,
NULL, NULL, NULL, K_HIGHEST_THREAD_PRIO, 0, 0);
TC_PRINT(" - Waiting for work to finish\n");
k_sleep(2 * WORK_ITEM_WAIT);
TC_PRINT(" - Checking results\n");
check_results(0);
}
static void delayed_resubmit_work_handler(struct k_work *work)
{
struct test_item *ti = CONTAINER_OF(work, struct test_item, work);
results[num_results++] = ti->key;
if (ti->key < NUM_TEST_ITEMS) {
ti->key++;
TC_PRINT(" - Resubmitting delayed work\n");
k_delayed_work_submit(&ti->work, WORK_ITEM_WAIT);
}
}
static void test_delayed_resubmit(void)
{
TC_PRINT("Starting delayed resubmit test\n");
tests[0].key = 1;
k_delayed_work_init(&tests[0].work, delayed_resubmit_work_handler);
TC_PRINT(" - Submitting delayed work\n");
k_delayed_work_submit(&tests[0].work, WORK_ITEM_WAIT);
TC_PRINT(" - Waiting for work to finish\n");
k_sleep((NUM_TEST_ITEMS + 1) * WORK_ITEM_WAIT);
TC_PRINT(" - Checking results\n");
check_results(NUM_TEST_ITEMS);
reset_results();
}
static void coop_delayed_work_resubmit(void)
{
int i;
for (i = 0; i < NUM_TEST_ITEMS; i++) {
TC_PRINT(" - Resubmitting delayed work with 1 ms\n");
k_delayed_work_submit(&tests[0].work, 1);
/* Busy wait 1 ms to force a clash with workqueue */
#if defined(CONFIG_ARCH_POSIX)
k_busy_wait(1000);
#else
volatile u32_t uptime;
uptime = k_uptime_get_32();
while (k_uptime_get_32() == uptime) {
}
#endif
}
}
static void test_delayed_resubmit_thread(void)
{
TC_PRINT("Starting delayed resubmit from coop thread test\n");
tests[0].key = 1;
k_delayed_work_init(&tests[0].work, delayed_work_handler);
k_thread_create(&co_op_data, co_op_stack, STACK_SIZE,
(k_thread_entry_t)coop_delayed_work_resubmit,
NULL, NULL, NULL, K_PRIO_COOP(10), 0, 0);
TC_PRINT(" - Waiting for work to finish\n");
k_sleep(WORK_ITEM_WAIT);
TC_PRINT(" - Checking results\n");
check_results(1);
reset_results();
}
static void test_delayed(void)
{
TC_PRINT("Starting delayed test\n");
TC_PRINT(" - Initializing delayed test items\n");
test_delayed_init();
TC_PRINT(" - Submitting delayed test items\n");
test_delayed_submit();
TC_PRINT(" - Waiting for delayed work to finish\n");
k_sleep((NUM_TEST_ITEMS + 2) * WORK_ITEM_WAIT);
TC_PRINT(" - Checking results\n");
check_results(NUM_TEST_ITEMS);
reset_results();
}
/*test case main entry*/
void test_main(void)
{
k_thread_priority_set(k_current_get(), 0);
ztest_test_suite(test_workq,
ztest_unit_test(test_sequence),
ztest_unit_test(test_resubmit),
ztest_unit_test(test_delayed),
ztest_unit_test(test_delayed_resubmit),
ztest_unit_test(test_delayed_resubmit_thread),
ztest_unit_test(test_delayed_cancel)
);
ztest_run_test_suite(test_workq);
}