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On 32 bits platforms, timer_get_us() returns an unsigned long which is a 32 bits. timer_get_us() wraps around every 72 minutes (2 ^ 32 / 1000000 =~ 4295 sec =~ 72 min). So the test "if time_after_eq64(now, cyclic->next_call)" is no more true when cyclic->next_call becomes above 32 bits max value (4294967295). At this point after 72 min, no more cyclic function are executed included watchdog one. Instead of using timer_get_us(), use get_timer_us() which returns a uint64_t, this allows a rollover every 584942 years. Signed-off-by: Patrice Chotard <patrice.chotard@foss.st.com> Reviewed-by: Stefan Roese <sr@denx.de>
114 lines
2.8 KiB
C
114 lines
2.8 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* A general-purpose cyclic execution infrastructure, to allow "small"
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* (run-time wise) functions to be executed at a specified frequency.
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* Things like LED blinking or watchdog triggering are examples for such
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* tasks.
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*
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* Copyright (C) 2022 Stefan Roese <sr@denx.de>
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*/
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#include <cyclic.h>
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#include <log.h>
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#include <malloc.h>
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#include <time.h>
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#include <linux/errno.h>
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#include <linux/list.h>
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#include <asm/global_data.h>
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#include <u-boot/schedule.h>
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DECLARE_GLOBAL_DATA_PTR;
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void hw_watchdog_reset(void);
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struct hlist_head *cyclic_get_list(void)
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{
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/* Silence "discards 'volatile' qualifier" warning. */
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return (struct hlist_head *)&gd->cyclic_list;
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}
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void cyclic_register(struct cyclic_info *cyclic, cyclic_func_t func,
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uint64_t delay_us, const char *name)
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{
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memset(cyclic, 0, sizeof(*cyclic));
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/* Store values in struct */
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cyclic->func = func;
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cyclic->name = name;
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cyclic->delay_us = delay_us;
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cyclic->start_time_us = get_timer_us(0);
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hlist_add_head(&cyclic->list, cyclic_get_list());
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}
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void cyclic_unregister(struct cyclic_info *cyclic)
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{
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hlist_del(&cyclic->list);
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}
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static void cyclic_run(void)
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{
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struct cyclic_info *cyclic;
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struct hlist_node *tmp;
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uint64_t now, cpu_time;
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/* Prevent recursion */
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if (gd->flags & GD_FLG_CYCLIC_RUNNING)
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return;
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gd->flags |= GD_FLG_CYCLIC_RUNNING;
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hlist_for_each_entry_safe(cyclic, tmp, cyclic_get_list(), list) {
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/*
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* Check if this cyclic function needs to get called, e.g.
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* do not call the cyclic func too often
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*/
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now = get_timer_us(0);
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if (time_after_eq64(now, cyclic->next_call)) {
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/* Call cyclic function and account it's cpu-time */
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cyclic->next_call = now + cyclic->delay_us;
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cyclic->func(cyclic);
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cyclic->run_cnt++;
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cpu_time = get_timer_us(0) - now;
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cyclic->cpu_time_us += cpu_time;
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/* Check if cpu-time exceeds max allowed time */
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if ((cpu_time > CONFIG_CYCLIC_MAX_CPU_TIME_US) &&
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(!cyclic->already_warned)) {
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pr_err("cyclic function %s took too long: %lldus vs %dus max\n",
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cyclic->name, cpu_time,
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CONFIG_CYCLIC_MAX_CPU_TIME_US);
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/*
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* Don't disable this function, just warn once
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* about this exceeding CPU time usage
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*/
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cyclic->already_warned = true;
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}
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}
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}
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gd->flags &= ~GD_FLG_CYCLIC_RUNNING;
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}
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void schedule(void)
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{
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/* The HW watchdog is not integrated into the cyclic IF (yet) */
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if (IS_ENABLED(CONFIG_HW_WATCHDOG))
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hw_watchdog_reset();
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/*
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* schedule() might get called very early before the cyclic IF is
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* ready. Make sure to only call cyclic_run() when it's initalized.
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*/
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if (gd)
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cyclic_run();
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}
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int cyclic_unregister_all(void)
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{
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struct cyclic_info *cyclic;
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struct hlist_node *tmp;
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hlist_for_each_entry_safe(cyclic, tmp, cyclic_get_list(), list)
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cyclic_unregister(cyclic);
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return 0;
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}
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