增加状态管理

This commit is contained in:
2026-07-30 19:43:39 +08:00
parent cef702dba0
commit b1e8ffbf85
6 changed files with 250 additions and 2 deletions
+1 -1
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@@ -1,3 +1,3 @@
idf_component_register(SRCS "hello_world_main.c" "iic.c" "oled.c" idf_component_register(SRCS "hello_world_main.c" "iic.c" "oled.c" "state.c"
PRIV_REQUIRES spi_flash esp_driver_i2c log PRIV_REQUIRES spi_flash esp_driver_i2c log
INCLUDE_DIRS ".") INCLUDE_DIRS ".")
+2 -1
View File
@@ -15,6 +15,7 @@
#include "iic.h" #include "iic.h"
#include "oled.h" #include "oled.h"
#include "state.h"
void app_main(void) void app_main(void)
{ {
@@ -45,11 +46,11 @@ void app_main(void)
printf("Minimum free heap size: %" PRIu32 " bytes\n", esp_get_minimum_free_heap_size()); printf("Minimum free heap size: %" PRIu32 " bytes\n", esp_get_minimum_free_heap_size());
state_init();
iic_init(); iic_init();
oled_init(); oled_init();
while(1){ while(1){
vTaskDelay(1000 / portTICK_PERIOD_MS); vTaskDelay(1000 / portTICK_PERIOD_MS);
} }
} }
+21
View File
@@ -1,4 +1,5 @@
#include "iic.h" #include "iic.h"
#include "state.h"
#include "driver/i2c_master.h" #include "driver/i2c_master.h"
#include "esp_log.h" #include "esp_log.h"
#include <stdint.h> #include <stdint.h>
@@ -36,6 +37,7 @@ esp_err_t iic_init(void)
return ret; return ret;
} }
ESP_LOGI(TAG, "IIC IO总线初始化成功"); ESP_LOGI(TAG, "IIC IO总线初始化成功");
iic_scan();
return ESP_OK; return ESP_OK;
} }
@@ -63,3 +65,22 @@ unsigned char iic_read_byte(unsigned char addr)
i2c_master_receive(s_iic_dev, &byte, 1, IIC_TIMEOUT_MS); i2c_master_receive(s_iic_dev, &byte, 1, IIC_TIMEOUT_MS);
return (unsigned char)byte; return (unsigned char)byte;
} }
void iic_scan(void)
{
if (s_iic_bus == NULL) {
ESP_LOGE(TAG, "scan: bus not initialized");
return;
}
ESP_LOGI(TAG, "IIC bus scan start");
state_clear_iic_devices();
unsigned char count = 0;
for (unsigned char addr = 0x01; addr <= 0x7F; addr++) {
if (i2c_master_probe(s_iic_bus, addr, IIC_SCAN_TIMEOUT_MS) == ESP_OK) {
ESP_LOGI(TAG, " found @ 0x%02X", (unsigned)addr);
state_add_iic_device(addr);
count++;
}
}
ESP_LOGI(TAG, "IIC scan done, %u device(s) found", (unsigned)count);
}
+2
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@@ -7,8 +7,10 @@
#define IIC_SCL_IO 1 #define IIC_SCL_IO 1
#define IIC_FREQ_HZ 100000 #define IIC_FREQ_HZ 100000
#define IIC_TIMEOUT_MS 1000 #define IIC_TIMEOUT_MS 1000
#define IIC_SCAN_TIMEOUT_MS 50
esp_err_t iic_init(void); esp_err_t iic_init(void);
void iic_scan(void);
esp_err_t iic_send_bytes(unsigned char addr, unsigned char *txd, unsigned int len); esp_err_t iic_send_bytes(unsigned char addr, unsigned char *txd, unsigned int len);
unsigned char iic_read_byte(unsigned char addr); unsigned char iic_read_byte(unsigned char addr);
+178
View File
@@ -0,0 +1,178 @@
#include "state.h"
#include "freertos/FreeRTOS.h"
#include "freertos/semphr.h"
#include "esp_log.h"
#include <string.h>
#include <stdlib.h>
static const char *TAG = "STATE";
static SemaphoreHandle_t s_mutex = NULL;
static system_state_t s_state = {
.battery_percent = 0,
.battery_valid = false,
.iic_device_count = 0,
.wifi_ssid_head = NULL,
.wifi_ssid_count = 0,
.wifi_connected_ssid = {0},
};
static void state_lock(void)
{
if (s_mutex != NULL) {
xSemaphoreTake(s_mutex, portMAX_DELAY);
}
}
static void state_unlock(void)
{
if (s_mutex != NULL) {
xSemaphoreGive(s_mutex);
}
}
void state_init(void)
{
s_mutex = xSemaphoreCreateMutex();
if (s_mutex == NULL) {
ESP_LOGE(TAG, "互斥锁创建失败");
}
}
void state_set_battery(uint8_t percent)
{
if (percent > 100) {
percent = 100;
}
state_lock();
s_state.battery_percent = percent;
s_state.battery_valid = true;
state_unlock();
}
uint8_t state_get_battery(void)
{
state_lock();
uint8_t val = s_state.battery_percent;
state_unlock();
return val;
}
void state_clear_iic_devices(void)
{
state_lock();
s_state.iic_device_count = 0;
state_unlock();
}
void state_add_iic_device(uint8_t addr)
{
state_lock();
if (s_state.iic_device_count < STATE_IIC_MAX_DEVICES) {
s_state.iic_devices[s_state.iic_device_count] = addr;
s_state.iic_device_count++;
}
state_unlock();
}
uint8_t state_get_iic_device_count(void)
{
state_lock();
uint8_t count = s_state.iic_device_count;
state_unlock();
return count;
}
uint8_t state_get_iic_device(uint8_t index)
{
state_lock();
uint8_t addr = 0;
if (index < s_state.iic_device_count) {
addr = s_state.iic_devices[index];
}
state_unlock();
return addr;
}
void state_clear_wifi_ssids(void)
{
state_lock();
wifi_ssid_node_t *node = s_state.wifi_ssid_head;
while (node != NULL) {
wifi_ssid_node_t *next = node->next;
free(node);
node = next;
}
s_state.wifi_ssid_head = NULL;
s_state.wifi_ssid_count = 0;
state_unlock();
}
esp_err_t state_add_wifi_ssid(const char *ssid)
{
if (ssid == NULL) {
return ESP_ERR_INVALID_ARG;
}
wifi_ssid_node_t *node = (wifi_ssid_node_t *)malloc(sizeof(wifi_ssid_node_t));
if (node == NULL) {
ESP_LOGE(TAG, "WiFi SSID节点分配失败");
return ESP_ERR_NO_MEM;
}
strncpy(node->ssid, ssid, STATE_WIFI_SSID_MAX_LEN);
node->ssid[STATE_WIFI_SSID_MAX_LEN] = '\0';
node->next = NULL;
state_lock();
if (s_state.wifi_ssid_head == NULL) {
s_state.wifi_ssid_head = node;
} else {
wifi_ssid_node_t *tail = s_state.wifi_ssid_head;
while (tail->next != NULL) {
tail = tail->next;
}
tail->next = node;
}
s_state.wifi_ssid_count++;
state_unlock();
return ESP_OK;
}
uint8_t state_get_wifi_ssid_count(void)
{
state_lock();
uint8_t count = s_state.wifi_ssid_count;
state_unlock();
return count;
}
const wifi_ssid_node_t *state_wifi_ssids_lock(void)
{
state_lock();
return s_state.wifi_ssid_head;
}
void state_wifi_ssids_unlock(void)
{
state_unlock();
}
void state_set_wifi_connected_ssid(const char *ssid)
{
state_lock();
if (ssid != NULL) {
strncpy(s_state.wifi_connected_ssid, ssid, STATE_WIFI_SSID_MAX_LEN);
s_state.wifi_connected_ssid[STATE_WIFI_SSID_MAX_LEN] = '\0';
} else {
s_state.wifi_connected_ssid[0] = '\0';
}
state_unlock();
}
const char *state_get_wifi_connected_ssid(void)
{
state_lock();
const char *ssid = s_state.wifi_connected_ssid;
state_unlock();
return ssid;
}
+46
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@@ -0,0 +1,46 @@
#ifndef STATE_H_
#define STATE_H_
#include <stdint.h>
#include <stdbool.h>
#include "esp_err.h"
#define STATE_IIC_MAX_DEVICES 16
#define STATE_WIFI_SSID_MAX_LEN 32
typedef struct wifi_ssid_node {
char ssid[STATE_WIFI_SSID_MAX_LEN + 1];
struct wifi_ssid_node *next;
} wifi_ssid_node_t;
typedef struct {
uint8_t battery_percent;
bool battery_valid;
uint8_t iic_devices[STATE_IIC_MAX_DEVICES];
uint8_t iic_device_count;
wifi_ssid_node_t *wifi_ssid_head;
uint8_t wifi_ssid_count;
char wifi_connected_ssid[STATE_WIFI_SSID_MAX_LEN + 1];
} system_state_t;
void state_init(void);
void state_set_battery(uint8_t percent);
uint8_t state_get_battery(void);
void state_clear_iic_devices(void);
void state_add_iic_device(uint8_t addr);
uint8_t state_get_iic_device_count(void);
uint8_t state_get_iic_device(uint8_t index);
void state_clear_wifi_ssids(void);
esp_err_t state_add_wifi_ssid(const char *ssid);
uint8_t state_get_wifi_ssid_count(void);
const wifi_ssid_node_t *state_wifi_ssids_lock(void);
void state_wifi_ssids_unlock(void);
void state_set_wifi_connected_ssid(const char *ssid);
const char *state_get_wifi_connected_ssid(void);
#endif