kernel: Implement k_sleep for Single Thread
The current z_tick_sleep return directly when building kernel for Single Thread model. This reorganize the code to use k_busy_wait() to be time coherent since subsystems may depend on it. In the case of a K_FOREVER timeout is selected the Single Thread the implementation will invoke k_cpu_idle() and the system will wait for an interrupt saving power. Signed-off-by: Gerson Fernando Budke <gerson.budke@ossystems.com.br>
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@ -1527,26 +1527,28 @@ static inline void z_vrfy_k_yield(void)
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static int32_t z_tick_sleep(k_ticks_t ticks)
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{
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#ifdef CONFIG_MULTITHREADING
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uint32_t expected_wakeup_ticks;
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__ASSERT(!arch_is_in_isr(), "");
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LOG_DBG("thread %p for %lu ticks", _current, (unsigned long)ticks);
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#ifdef CONFIG_MULTITHREADING
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/* wait of 0 ms is treated as a 'yield' */
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if (ticks == 0) {
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k_yield();
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return 0;
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}
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#endif
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k_timeout_t timeout = Z_TIMEOUT_TICKS(ticks);
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if (Z_TICK_ABS(ticks) <= 0) {
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expected_wakeup_ticks = ticks + sys_clock_tick_get_32();
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} else {
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expected_wakeup_ticks = Z_TICK_ABS(ticks);
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}
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#ifdef CONFIG_MULTITHREADING
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k_timeout_t timeout = Z_TIMEOUT_TICKS(ticks);
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k_spinlock_key_t key = k_spin_lock(&sched_spinlock);
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#if defined(CONFIG_TIMESLICING) && defined(CONFIG_SWAP_NONATOMIC)
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@ -1564,6 +1566,9 @@ static int32_t z_tick_sleep(k_ticks_t ticks)
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if (ticks > 0) {
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return ticks;
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}
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#else
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/* busy wait to be time coherent since subsystems may depend on it */
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z_impl_k_busy_wait(k_ticks_to_us_ceil32(expected_wakeup_ticks));
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#endif
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return 0;
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@ -1579,8 +1584,12 @@ int32_t z_impl_k_sleep(k_timeout_t timeout)
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/* in case of K_FOREVER, we suspend */
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if (K_TIMEOUT_EQ(timeout, K_FOREVER)) {
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#ifdef CONFIG_MULTITHREADING
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k_thread_suspend(_current);
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#else
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/* In Single Thread, just wait for an interrupt saving power */
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k_cpu_idle();
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#endif
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SYS_PORT_TRACING_FUNC_EXIT(k_thread, sleep, timeout, (int32_t) K_TICKS_FOREVER);
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return (int32_t) K_TICKS_FOREVER;
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