Files
esp-idf/components/esp_driver_ana_cmpr/ana_cmpr_private.h
T
morris 38c4f27102 fix(iomux): move clock source gating to IOMUX consumers
Remove io_mux_set_clock_source internal source enabling and make SDM,
ana_cmpr, and gpio glitch filter drivers explicitly manage clock source
enable/disable with safe cleanup paths.
2026-05-22 19:10:08 +08:00

250 lines
9.8 KiB
C

/*
* SPDX-FileCopyrightText: 2023-2026 Espressif Systems (Shanghai) CO LTD
*
* SPDX-License-Identifier: Apache-2.0
*/
#pragma once
#include <stdlib.h>
#include <string.h>
#include <stdbool.h>
#include <inttypes.h>
#include <stdatomic.h>
#include "sdkconfig.h"
#include "freertos/FreeRTOS.h"
#if CONFIG_ANA_CMPR_ENABLE_DEBUG_LOG
// The local log level must be defined before including esp_log.h
// Set the maximum log level for this source file
#define LOG_LOCAL_LEVEL ESP_LOG_DEBUG
#endif
#include "esp_log.h"
#include "esp_check.h"
#include "esp_heap_caps.h"
#include "esp_intr_alloc.h"
#include "esp_pm.h"
#include "driver/ana_cmpr_types.h"
#include "soc/soc_caps.h"
#include "hal/ana_cmpr_ll.h"
#include "hal/ana_cmpr_periph.h"
#define TAG "ana_cmpr"
#if CONFIG_ANA_CMPR_OBJ_CACHE_SAFE
#define ANA_CMPR_MEM_ALLOC_CAPS (MALLOC_CAP_INTERNAL | MALLOC_CAP_8BIT)
#else
#define ANA_CMPR_MEM_ALLOC_CAPS MALLOC_CAP_DEFAULT
#endif
#if CONFIG_ANA_CMPR_ISR_CACHE_SAFE
// the interrupt source of Analog Comparator is marked as shared because
// it may share with other GPIO interrupt events
// it may share with different analog comparator units
#define ANA_CMPR_INTR_FLAG (ESP_INTR_FLAG_IRAM | ESP_INTR_FLAG_SHARED)
#else
#define ANA_CMPR_INTR_FLAG (ESP_INTR_FLAG_SHARED)
#endif
#define ANA_CMPR_ALLOW_INTR_PRIORITY_MASK ESP_INTR_FLAG_LOWMED
#ifdef __cplusplus
extern "C" {
#endif
/*
* This driver uses two state machines at different layers:
* 1) ana_cmpr_fsm_t (per handle): functional state of a published comparator object.
* It protects transitions among init/config/enable operations after users get a valid handle.
* 2) ana_cmpr_unit_slot_state_t (per unit slot): lifecycle ownership of the global unit slot.
* It protects create/delete in-flight windows before publish and after unpublish.
*
* Keeping these state machines separated avoids overloading a single field for both
* object runtime behavior and global slot allocation lifecycle.
*/
typedef enum {
ANA_CMPR_FSM_INIT, // Comparator is in the initialization stage, not enabled yet
ANA_CMPR_FSM_ENABLE, // Comparator is enabled
ANA_CMPR_FSM_WAIT, // Comparator is in the middle of state change, so busy, other operations should wait
} ana_cmpr_fsm_t;
typedef enum {
ANA_CMPR_UNIT_SLOT_FREE = 0, // no handle published, slot can be allocated
ANA_CMPR_UNIT_SLOT_ALLOCATING, // unit create is in progress
ANA_CMPR_UNIT_SLOT_READY, // handle published and available
ANA_CMPR_UNIT_SLOT_DELETING, // unit delete is in progress
} ana_cmpr_unit_slot_state_t;
typedef struct ana_cmpr_t ana_cmpr_t;
typedef struct ana_cmpr_ref_chan_t {
ana_cmpr_ref_source_t ref_src; // the reference source type of this reference channel, internal or external
// for internal reference channel
ana_cmpr_ref_voltage_t ref_volt;
ana_cmpr_ref_hys_t ref_hys_level;
// for external reference channel
int gpio_num;
int pad_id; // the pad id corresponding to the gpio_num
} ana_cmpr_ref_chan_t;
typedef struct ana_cmpr_src_chan_t {
uint8_t chan_id; // there're multiple source channels in the analog comparator unit
int pad_id; // the pad id corresponding to the gpio_num
ana_cmpr_cross_type_t cross_type;
int gpio_num;
bool configured;
} ana_cmpr_src_chan_t;
struct ana_cmpr_t {
int unit_id; // Analog comparator unit id
analog_cmpr_dev_t *dev; // Analog comparator unit device address
_Atomic ana_cmpr_fsm_t fsm; // The state machine of the Analog Comparator unit
ana_cmpr_event_callbacks_t cbs; // The callback group that set by user
void *user_data; // User data that passed to the callbacks
intr_handle_t intr_handle; // Interrupt handle
uint32_t intr_mask; // Interrupt mask
int intr_priority; // Interrupt priority
soc_module_clk_t clk_src; // Clock source of the Analog Comparator unit
bool io_mux_acquired; // Whether IO MUX clock source was acquired (IP v1 only)
uint32_t src_clk_freq_hz; // Source clock frequency of the Analog Comparator unit
ana_cmpr_src_chan_t src_chans[ANALOG_CMPR_LL_GET(SRC_CHANNEL_NUM)]; // The source channel objects in the unit
ana_cmpr_ref_chan_t ref_chan; // The reference channel object in the unit
#if CONFIG_PM_ENABLE
esp_pm_lock_handle_t pm_lock; // The Power Management lock that used to avoid unexpected power down of the clock domain
#endif
};
__attribute__((always_inline))
static inline bool _ana_cmpr_is_src_chan_id_valid(int src_chan_id)
{
return (src_chan_id >= 0) && (src_chan_id < ANALOG_CMPR_LL_GET(SRC_CHANNEL_NUM));
}
extern portMUX_TYPE s_ana_cmpr_spinlock;
__attribute__((always_inline))
static inline void _ana_cmpr_enter_critical(void)
{
portENTER_CRITICAL_SAFE(&s_ana_cmpr_spinlock);
}
__attribute__((always_inline))
static inline void _ana_cmpr_exit_critical(void)
{
portEXIT_CRITICAL_SAFE(&s_ana_cmpr_spinlock);
}
__attribute__((always_inline))
static inline bool _ana_cmpr_try_acquire_state(ana_cmpr_handle_t cmpr, ana_cmpr_fsm_t expected_state)
{
return atomic_compare_exchange_strong(&cmpr->fsm, &expected_state, ANA_CMPR_FSM_WAIT);
}
__attribute__((always_inline))
static inline void _ana_cmpr_release_state(ana_cmpr_handle_t cmpr, ana_cmpr_fsm_t target_state)
{
atomic_store(&cmpr->fsm, target_state);
}
/*
* Centralized FSM transition rules.
*
* We only model externally visible states here (INIT/ENABLE).
* WAIT is an internal transient state managed by the transition macro.
* It is never a stable/public state, so it doesn't appear in allowed table.
*/
__attribute__((always_inline))
static inline bool _ana_cmpr_is_transition_allowed(ana_cmpr_fsm_t expected_state, ana_cmpr_fsm_t target_state)
{
switch (expected_state) {
case ANA_CMPR_FSM_INIT:
return (target_state == ANA_CMPR_FSM_INIT || target_state == ANA_CMPR_FSM_ENABLE);
case ANA_CMPR_FSM_ENABLE:
return (target_state == ANA_CMPR_FSM_ENABLE || target_state == ANA_CMPR_FSM_INIT);
default:
return false;
}
}
/*
* Finalize a scoped transition with centralized rule checking.
* If caller provides an invalid target, fail-safe to expected_state.
*/
__attribute__((always_inline))
static inline void _ana_cmpr_complete_transition(ana_cmpr_handle_t cmpr, ana_cmpr_fsm_t expected_state, ana_cmpr_fsm_t target_state)
{
// only do the validation in debug build, in release build we trust the caller to provide the correct target_state to avoid extra overhead
assert(_ana_cmpr_is_transition_allowed(expected_state, target_state) && "invalid ana_cmpr fsm transition target");
_ana_cmpr_release_state(cmpr, target_state);
}
/*
* Token concatenation helpers used by scoped macros below.
*
* We append __LINE__ to guard variable names so each macro expansion gets a
* unique local variable and can be used multiple times in one function.
*/
#define _ANA_CMPR_CONCAT_IMPL(x, y) x##y
#define _ANA_CMPR_CONCAT(x, y) _ANA_CMPR_CONCAT_IMPL(x, y)
/*
* Scoped critical section helper (RAII-like in C).
*
* Usage:
* ANA_CMPR_CRITICAL_SECTION() {
* // protected code
* }
*
* Expansion model:
* - Enter critical section in for-loop initializer.
* - Run loop body exactly once while guard == true.
* - Exit critical section in for-loop increment expression.
*
* Important:
* - Do NOT use early return/goto/break/continue in this block, otherwise
* _ana_cmpr_exit_critical() may be skipped.
*/
#define ANA_CMPR_CRITICAL_SECTION() \
for (bool _ANA_CMPR_CONCAT(_ana_cmpr_critical_guard_, __LINE__) = (_ana_cmpr_enter_critical(), true); \
_ANA_CMPR_CONCAT(_ana_cmpr_critical_guard_, __LINE__); \
_ana_cmpr_exit_critical(), _ANA_CMPR_CONCAT(_ana_cmpr_critical_guard_, __LINE__) = false)
/*
* Scoped FSM transition helper.
*
* Semantics:
* - Write whether acquisition succeeds to acquired_var.
* - If acquired, run body once and complete transition using target_state_expr.
* - target_state_expr can be either a value or a mutable variable.
*
* Typical usage:
* bool acquired = false;
* ana_cmpr_fsm_t final_state = ANA_CMPR_FSM_INIT;
* ANA_CMPR_WITH_STATE_TRANSITION(cmpr, ANA_CMPR_FSM_INIT, final_state, acquired) {
* // configure HW before making FSM visible as ENABLE
* final_state = ANA_CMPR_FSM_ENABLE;
* }
* if (!acquired) { return ESP_ERR_INVALID_STATE; }
*
* Important:
* - Do NOT use early return/goto/break/continue in this block, otherwise
* restore/transition step may be skipped.
*/
#define ANA_CMPR_WITH_STATE_TRANSITION(cmpr, expected_state, target_state_var, acquired_var) \
for (bool _ANA_CMPR_CONCAT(_ana_cmpr_temp_state_guard_, __LINE__) = (((acquired_var) = _ana_cmpr_try_acquire_state((cmpr), (expected_state))), \
(acquired_var)); \
_ANA_CMPR_CONCAT(_ana_cmpr_temp_state_guard_, __LINE__); \
_ana_cmpr_complete_transition((cmpr), (expected_state), (target_state_var)), _ANA_CMPR_CONCAT(_ana_cmpr_temp_state_guard_, __LINE__) = false)
/*
* Backward-compatible shorthand:
* - expected_state -> WAIT -> expected_state
* - writes acquisition result to acquired_var
* - implemented on top of ANA_CMPR_WITH_STATE_TRANSITION
*/
#define ANA_CMPR_WITH_TEMP_STATE(cmpr, expected_state, acquired_var) \
ANA_CMPR_WITH_STATE_TRANSITION((cmpr), (expected_state), (expected_state), (acquired_var))
#ifdef __cplusplus
}
#endif