nvs_utilities.c 8.2 KB

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  1. //#define LOG_LOCAL_LEVEL ESP_LOG_VERBOSE
  2. #include "nvs_utilities.h"
  3. #include <stdio.h>
  4. #include <string.h>
  5. #include "esp_system.h"
  6. #include "esp_log.h"
  7. #include "esp_console.h"
  8. #include "esp_vfs_dev.h"
  9. #include "driver/uart.h"
  10. #include "linenoise/linenoise.h"
  11. #include "argtable3/argtable3.h"
  12. #include "cmd_decl.h"
  13. #include "esp_vfs_fat.h"
  14. #include "nvs.h"
  15. #include "nvs_flash.h"
  16. #include "nvs_utilities.h"
  17. const char current_namespace[] = "config";
  18. const char settings_partition[] = "settings";
  19. static const char * TAG = "nvs_utilities";
  20. void initialize_nvs() {
  21. ESP_LOGI(TAG, "Initializing flash nvs ");
  22. esp_err_t err = nvs_flash_init();
  23. if (err == ESP_ERR_NVS_NO_FREE_PAGES || err == ESP_ERR_NVS_NEW_VERSION_FOUND) {
  24. ESP_LOGW(TAG, "%s. Erasing nvs flash", esp_err_to_name(err));
  25. ESP_ERROR_CHECK(nvs_flash_erase());
  26. err = nvs_flash_init();
  27. }
  28. if(err != ESP_OK){
  29. ESP_LOGE(TAG, "nvs_flash_init failed. %s.", esp_err_to_name(err));
  30. }
  31. ESP_ERROR_CHECK(err);
  32. ESP_LOGI(TAG, "Initializing nvs partition %s",settings_partition);
  33. err = nvs_flash_init_partition(settings_partition);
  34. if (err == ESP_ERR_NVS_NO_FREE_PAGES || err == ESP_ERR_NVS_NEW_VERSION_FOUND) {
  35. ESP_LOGW(TAG, "%s. Erasing nvs on partition %s",esp_err_to_name(err),settings_partition);
  36. ESP_ERROR_CHECK(nvs_flash_erase_partition(settings_partition));
  37. err = nvs_flash_init_partition(settings_partition);
  38. }
  39. if(err!=ESP_OK){
  40. ESP_LOGE(TAG, "nvs_flash_init_partition failed. %s",esp_err_to_name(err));
  41. }
  42. ESP_ERROR_CHECK(err);
  43. ESP_LOGD(TAG, "nvs init completed");
  44. }
  45. esp_err_t nvs_load_config(){
  46. nvs_entry_info_t info;
  47. esp_err_t err = ESP_OK;
  48. size_t malloc_int = heap_caps_get_free_size(MALLOC_CAP_INTERNAL);
  49. size_t malloc_spiram = heap_caps_get_free_size(MALLOC_CAP_SPIRAM);
  50. nvs_iterator_t it = nvs_entry_find(settings_partition, NULL, NVS_TYPE_ANY);
  51. if(it == NULL) {
  52. ESP_LOGW(TAG, "empty nvs partition %s, namespace %s",settings_partition,current_namespace );
  53. }
  54. while (it != NULL) {
  55. nvs_entry_info(it, &info);
  56. if(strstr(info.namespace_name, current_namespace)) {
  57. void * value = get_nvs_value_alloc(info.type,info.key);
  58. if(value==NULL)
  59. {
  60. ESP_LOGE(TAG, "nvs read failed.");
  61. return ESP_FAIL;
  62. }
  63. config_set_value(info.type, info.key, value);
  64. free(value );
  65. }
  66. it = nvs_entry_next(it);
  67. }
  68. char * json_string= config_alloc_get_json(false);
  69. if(json_string!=NULL) {
  70. ESP_LOGD(TAG, "config json : %s\n", json_string);
  71. free(json_string);
  72. }
  73. ESP_LOGD(TAG,"Config memory usage. Heap internal:%zu (min:%zu) (used:%zu) external:%zu (min:%zu) (used:%zd)",
  74. heap_caps_get_free_size(MALLOC_CAP_INTERNAL),
  75. heap_caps_get_minimum_free_size(MALLOC_CAP_INTERNAL),
  76. malloc_int-heap_caps_get_free_size(MALLOC_CAP_INTERNAL),
  77. heap_caps_get_free_size(MALLOC_CAP_SPIRAM),
  78. heap_caps_get_minimum_free_size(MALLOC_CAP_SPIRAM),
  79. malloc_spiram -heap_caps_get_free_size(MALLOC_CAP_SPIRAM));
  80. return err;
  81. }
  82. esp_err_t store_nvs_value(nvs_type_t type, const char *key, void * data) {
  83. if (type == NVS_TYPE_BLOB)
  84. return ESP_ERR_NVS_TYPE_MISMATCH;
  85. return store_nvs_value_len(type, key, data,0);
  86. }
  87. esp_err_t store_nvs_value_len(nvs_type_t type, const char *key, void * data,
  88. size_t data_len) {
  89. esp_err_t err;
  90. nvs_handle nvs;
  91. if (type == NVS_TYPE_ANY) {
  92. return ESP_ERR_NVS_TYPE_MISMATCH;
  93. }
  94. err = nvs_open_from_partition(settings_partition, current_namespace, NVS_READWRITE, &nvs);
  95. if (err != ESP_OK) {
  96. return err;
  97. }
  98. if (type == NVS_TYPE_I8) {
  99. err = nvs_set_i8(nvs, key, *(int8_t *) data);
  100. } else if (type == NVS_TYPE_U8) {
  101. err = nvs_set_u8(nvs, key, *(uint8_t *) data);
  102. } else if (type == NVS_TYPE_I16) {
  103. err = nvs_set_i16(nvs, key, *(int16_t *) data);
  104. } else if (type == NVS_TYPE_U16) {
  105. err = nvs_set_u16(nvs, key, *(uint16_t *) data);
  106. } else if (type == NVS_TYPE_I32) {
  107. err = nvs_set_i32(nvs, key, *(int32_t *) data);
  108. } else if (type == NVS_TYPE_U32) {
  109. err = nvs_set_u32(nvs, key, *(uint32_t *) data);
  110. } else if (type == NVS_TYPE_I64) {
  111. err = nvs_set_i64(nvs, key, *(int64_t *) data);
  112. } else if (type == NVS_TYPE_U64) {
  113. err = nvs_set_u64(nvs, key, *(uint64_t *) data);
  114. } else if (type == NVS_TYPE_STR) {
  115. err = nvs_set_str(nvs, key, data);
  116. } else if (type == NVS_TYPE_BLOB) {
  117. err = nvs_set_blob(nvs, key, (void *) data, data_len);
  118. }
  119. if (err == ESP_OK) {
  120. err = nvs_commit(nvs);
  121. if (err == ESP_OK) {
  122. ESP_LOGI(TAG, "Value stored under key '%s'", key);
  123. }
  124. }
  125. nvs_close(nvs);
  126. return err;
  127. }
  128. void * get_nvs_value_alloc(nvs_type_t type, const char *key) {
  129. nvs_handle nvs;
  130. esp_err_t err;
  131. void * value=NULL;
  132. err = nvs_open_from_partition(settings_partition, current_namespace, NVS_READONLY, &nvs);
  133. if (err != ESP_OK) {
  134. ESP_LOGE(TAG, "Could not open the nvs storage.");
  135. return NULL;
  136. }
  137. if (type == NVS_TYPE_I8) {
  138. value=malloc(sizeof(int8_t));
  139. err = nvs_get_i8(nvs, key, (int8_t *) value);
  140. } else if (type == NVS_TYPE_U8) {
  141. value=malloc(sizeof(uint8_t));
  142. err = nvs_get_u8(nvs, key, (uint8_t *) value);
  143. } else if (type == NVS_TYPE_I16) {
  144. value=malloc(sizeof(int16_t));
  145. err = nvs_get_i16(nvs, key, (int16_t *) value);
  146. } else if (type == NVS_TYPE_U16) {
  147. value=malloc(sizeof(uint16_t));
  148. err = nvs_get_u16(nvs, key, (uint16_t *) value);
  149. } else if (type == NVS_TYPE_I32) {
  150. value=malloc(sizeof(int32_t));
  151. err = nvs_get_i32(nvs, key, (int32_t *) value);
  152. } else if (type == NVS_TYPE_U32) {
  153. value=malloc(sizeof(uint32_t));
  154. err = nvs_get_u32(nvs, key, (uint32_t *) value);
  155. } else if (type == NVS_TYPE_I64) {
  156. value=malloc(sizeof(int64_t));
  157. err = nvs_get_i64(nvs, key, (int64_t *) value);
  158. } else if (type == NVS_TYPE_U64) {
  159. value=malloc(sizeof(uint64_t));
  160. err = nvs_get_u64(nvs, key, (uint64_t *) value);
  161. } else if (type == NVS_TYPE_STR) {
  162. size_t len=0;
  163. err = nvs_get_str(nvs, key, NULL, &len);
  164. if (err == ESP_OK) {
  165. value=malloc(len);
  166. err = nvs_get_str(nvs, key, value, &len);
  167. }
  168. } else if (type == NVS_TYPE_BLOB) {
  169. size_t len;
  170. err = nvs_get_blob(nvs, key, NULL, &len);
  171. if (err == ESP_OK) {
  172. value=malloc(len+1);
  173. err = nvs_get_blob(nvs, key, value, &len);
  174. }
  175. }
  176. if(err!=ESP_OK){
  177. ESP_LOGD(TAG, "Value not found for key %s",key);
  178. if(value!=NULL)
  179. free(value);
  180. value=NULL;
  181. }
  182. nvs_close(nvs);
  183. return value;
  184. }
  185. esp_err_t get_nvs_value(nvs_type_t type, const char *key, void*value, const uint8_t buf_size) {
  186. nvs_handle nvs;
  187. esp_err_t err;
  188. err = nvs_open_from_partition(settings_partition, current_namespace, NVS_READONLY, &nvs);
  189. if (err != ESP_OK) {
  190. return err;
  191. }
  192. if (type == NVS_TYPE_I8) {
  193. err = nvs_get_i8(nvs, key, (int8_t *) value);
  194. } else if (type == NVS_TYPE_U8) {
  195. err = nvs_get_u8(nvs, key, (uint8_t *) value);
  196. } else if (type == NVS_TYPE_I16) {
  197. err = nvs_get_i16(nvs, key, (int16_t *) value);
  198. } else if (type == NVS_TYPE_U16) {
  199. err = nvs_get_u16(nvs, key, (uint16_t *) value);
  200. } else if (type == NVS_TYPE_I32) {
  201. err = nvs_get_i32(nvs, key, (int32_t *) value);
  202. } else if (type == NVS_TYPE_U32) {
  203. err = nvs_get_u32(nvs, key, (uint32_t *) value);
  204. } else if (type == NVS_TYPE_I64) {
  205. err = nvs_get_i64(nvs, key, (int64_t *) value);
  206. } else if (type == NVS_TYPE_U64) {
  207. err = nvs_get_u64(nvs, key, (uint64_t *) value);
  208. } else if (type == NVS_TYPE_STR) {
  209. size_t len;
  210. if ((err = nvs_get_str(nvs, key, NULL, &len)) == ESP_OK) {
  211. if (len > buf_size) {
  212. //ESP_LOGE("Error reading value for %s. Buffer size: %d, Value Length: %d", key, buf_size, len);
  213. err = ESP_FAIL;
  214. } else {
  215. err = nvs_get_str(nvs, key, value, &len);
  216. }
  217. }
  218. } else if (type == NVS_TYPE_BLOB) {
  219. size_t len;
  220. if ((err = nvs_get_blob(nvs, key, NULL, &len)) == ESP_OK) {
  221. if (len > buf_size) {
  222. //ESP_LOGE("Error reading value for %s. Buffer size: %d, Value Length: %d",
  223. // key, buf_size, len);
  224. err = ESP_FAIL;
  225. } else {
  226. err = nvs_get_blob(nvs, key, value, &len);
  227. }
  228. }
  229. }
  230. nvs_close(nvs);
  231. return err;
  232. }
  233. esp_err_t erase_nvs(const char *key)
  234. {
  235. nvs_handle nvs;
  236. esp_err_t err = nvs_open(current_namespace, NVS_READWRITE, &nvs);
  237. if (err == ESP_OK) {
  238. err = nvs_erase_key(nvs, key);
  239. if (err == ESP_OK) {
  240. err = nvs_commit(nvs);
  241. if (err == ESP_OK) {
  242. ESP_LOGI(TAG, "Value with key '%s' erased", key);
  243. }
  244. }
  245. nvs_close(nvs);
  246. }
  247. return err;
  248. }