205 lines
5.0 KiB
C
205 lines
5.0 KiB
C
/*
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* Copyright (c) 2018 Intel Corporation.
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <zephyr.h>
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#include <kernel.h>
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#include <init.h>
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#include <string.h>
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#include <power/power.h>
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#include "policy/pm_policy.h"
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#define LOG_LEVEL CONFIG_SYS_PM_LOG_LEVEL
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#include <logging/log.h>
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LOG_MODULE_REGISTER(power);
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static int post_ops_done = 1;
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static enum power_states forced_pm_state = SYS_POWER_STATE_AUTO;
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static enum power_states pm_state;
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#ifdef CONFIG_SYS_PM_DEBUG
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struct pm_debug_info {
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uint32_t count;
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uint32_t last_res;
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uint32_t total_res;
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};
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static struct pm_debug_info pm_dbg_info[SYS_POWER_STATE_MAX];
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static uint32_t timer_start, timer_end;
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static inline void sys_pm_debug_start_timer(void)
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{
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timer_start = k_cycle_get_32();
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}
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static inline void sys_pm_debug_stop_timer(void)
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{
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timer_end = k_cycle_get_32();
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}
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static void sys_pm_log_debug_info(enum power_states state)
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{
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uint32_t res = timer_end - timer_start;
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pm_dbg_info[state].count++;
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pm_dbg_info[state].last_res = res;
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pm_dbg_info[state].total_res += res;
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}
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void sys_pm_dump_debug_info(void)
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{
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for (int i = 0; i < SYS_POWER_STATE_MAX; i++) {
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LOG_DBG("PM:state = %d, count = %d last_res = %d, "
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"total_res = %d\n", i, pm_dbg_info[i].count,
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pm_dbg_info[i].last_res, pm_dbg_info[i].total_res);
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}
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}
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#else
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static inline void sys_pm_debug_start_timer(void) { }
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static inline void sys_pm_debug_stop_timer(void) { }
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static void sys_pm_log_debug_info(enum power_states state) { }
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void sys_pm_dump_debug_info(void) { }
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#endif
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__weak void sys_pm_notify_power_state_entry(enum power_states state)
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{
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/* This function can be overridden by the application. */
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}
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__weak void sys_pm_notify_power_state_exit(enum power_states state)
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{
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/* This function can be overridden by the application. */
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}
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void sys_pm_force_power_state(enum power_states state)
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{
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__ASSERT(state >= SYS_POWER_STATE_AUTO &&
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state < SYS_POWER_STATE_MAX,
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"Invalid power state %d!", state);
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#ifdef CONFIG_SYS_PM_DIRECT_FORCE_MODE
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(void)arch_irq_lock();
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forced_pm_state = state;
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_sys_suspend(K_TICKS_FOREVER);
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#else
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forced_pm_state = state;
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#endif
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}
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enum power_states _sys_suspend(int32_t ticks)
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{
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bool deep_sleep;
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#if CONFIG_DEVICE_POWER_MANAGEMENT
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bool low_power = false;
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#endif
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pm_state = (forced_pm_state == SYS_POWER_STATE_AUTO) ?
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sys_pm_policy_next_state(ticks) : forced_pm_state;
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if (pm_state == SYS_POWER_STATE_ACTIVE) {
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LOG_DBG("No PM operations done.");
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return pm_state;
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}
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deep_sleep = IS_ENABLED(CONFIG_SYS_POWER_DEEP_SLEEP_STATES) ?
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sys_pm_is_deep_sleep_state(pm_state) : 0;
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post_ops_done = 0;
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sys_pm_notify_power_state_entry(pm_state);
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if (deep_sleep) {
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#if CONFIG_DEVICE_POWER_MANAGEMENT
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/* Suspend peripherals. */
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if (sys_pm_suspend_devices()) {
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LOG_DBG("Some devices didn't enter suspend state!");
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sys_pm_resume_devices();
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sys_pm_notify_power_state_exit(pm_state);
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pm_state = SYS_POWER_STATE_ACTIVE;
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return pm_state;
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}
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#endif
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/*
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* Disable idle exit notification as it is not needed
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* in deep sleep mode.
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*/
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_sys_pm_idle_exit_notification_disable();
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#if CONFIG_DEVICE_POWER_MANAGEMENT
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} else {
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if (sys_pm_policy_low_power_devices(pm_state)) {
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/* low power peripherals. */
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if (sys_pm_low_power_devices()) {
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LOG_DBG("Someone didn't enter low power state");
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sys_pm_resume_devices();
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sys_pm_notify_power_state_exit(pm_state);
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pm_state = SYS_POWER_STATE_ACTIVE;
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return pm_state;
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}
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low_power = true;
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}
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#endif
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}
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/* Enter power state */
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sys_pm_debug_start_timer();
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sys_set_power_state(pm_state);
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sys_pm_debug_stop_timer();
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#if CONFIG_DEVICE_POWER_MANAGEMENT
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if (deep_sleep || low_power) {
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/* Turn on peripherals and restore device states as necessary */
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sys_pm_resume_devices();
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}
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#endif
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sys_pm_log_debug_info(pm_state);
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if (!post_ops_done) {
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post_ops_done = 1;
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/* clear forced_pm_state */
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forced_pm_state = SYS_POWER_STATE_AUTO;
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sys_pm_notify_power_state_exit(pm_state);
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_sys_pm_power_state_exit_post_ops(pm_state);
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}
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return pm_state;
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}
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void _sys_resume(void)
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{
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/*
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* This notification is called from the ISR of the event
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* that caused exit from kernel idling after PM operations.
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*
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* Some CPU low power states require enabling of interrupts
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* atomically when entering those states. The wake up from
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* such a state first executes code in the ISR of the interrupt
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* that caused the wake. This hook will be called from the ISR.
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* For such CPU LPS states, do post operations and restores here.
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* The kernel scheduler will get control after the ISR finishes
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* and it may schedule another thread.
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*
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* Call _sys_pm_idle_exit_notification_disable() if this
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* notification is not required.
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*/
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if (!post_ops_done) {
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post_ops_done = 1;
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sys_pm_notify_power_state_exit(pm_state);
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_sys_pm_power_state_exit_post_ops(pm_state);
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}
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}
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#if CONFIG_DEVICE_POWER_MANAGEMENT
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static int sys_pm_init(struct device *dev)
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{
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ARG_UNUSED(dev);
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sys_pm_create_device_list();
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return 0;
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}
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SYS_INIT(sys_pm_init, APPLICATION, CONFIG_KERNEL_INIT_PRIORITY_DEFAULT);
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#endif /* CONFIG_DEVICE_POWER_MANAGEMENT */
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