esp_partition.h 17 KB

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  1. // Copyright 2015-2016 Espressif Systems (Shanghai) PTE LTD
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. // http://www.apache.org/licenses/LICENSE-2.0
  7. //
  8. // Unless required by applicable law or agreed to in writing, software
  9. // distributed under the License is distributed on an "AS IS" BASIS,
  10. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  11. // See the License for the specific language governing permissions and
  12. // limitations under the License.
  13. #ifndef __ESP_PARTITION_H__
  14. #define __ESP_PARTITION_H__
  15. #include <stdint.h>
  16. #include <stdbool.h>
  17. #include <stddef.h>
  18. #include "esp_err.h"
  19. #include "esp_flash.h"
  20. #include "esp_spi_flash.h"
  21. #ifdef __cplusplus
  22. extern "C" {
  23. #endif
  24. /**
  25. * @file esp_partition.h
  26. * @brief Partition APIs
  27. */
  28. /**
  29. * @brief Partition type
  30. * @note Keep this enum in sync with PartitionDefinition class gen_esp32part.py
  31. */
  32. typedef enum {
  33. ESP_PARTITION_TYPE_APP = 0x00, //!< Application partition type
  34. ESP_PARTITION_TYPE_DATA = 0x01, //!< Data partition type
  35. } esp_partition_type_t;
  36. /**
  37. * @brief Partition subtype
  38. * @note Keep this enum in sync with PartitionDefinition class gen_esp32part.py
  39. */
  40. typedef enum {
  41. ESP_PARTITION_SUBTYPE_APP_FACTORY = 0x00, //!< Factory application partition
  42. ESP_PARTITION_SUBTYPE_APP_OTA_MIN = 0x10, //!< Base for OTA partition subtypes
  43. ESP_PARTITION_SUBTYPE_APP_OTA_0 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 0, //!< OTA partition 0
  44. ESP_PARTITION_SUBTYPE_APP_OTA_1 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 1, //!< OTA partition 1
  45. ESP_PARTITION_SUBTYPE_APP_OTA_2 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 2, //!< OTA partition 2
  46. ESP_PARTITION_SUBTYPE_APP_OTA_3 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 3, //!< OTA partition 3
  47. ESP_PARTITION_SUBTYPE_APP_OTA_4 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 4, //!< OTA partition 4
  48. ESP_PARTITION_SUBTYPE_APP_OTA_5 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 5, //!< OTA partition 5
  49. ESP_PARTITION_SUBTYPE_APP_OTA_6 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 6, //!< OTA partition 6
  50. ESP_PARTITION_SUBTYPE_APP_OTA_7 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 7, //!< OTA partition 7
  51. ESP_PARTITION_SUBTYPE_APP_OTA_8 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 8, //!< OTA partition 8
  52. ESP_PARTITION_SUBTYPE_APP_OTA_9 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 9, //!< OTA partition 9
  53. ESP_PARTITION_SUBTYPE_APP_OTA_10 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 10,//!< OTA partition 10
  54. ESP_PARTITION_SUBTYPE_APP_OTA_11 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 11,//!< OTA partition 11
  55. ESP_PARTITION_SUBTYPE_APP_OTA_12 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 12,//!< OTA partition 12
  56. ESP_PARTITION_SUBTYPE_APP_OTA_13 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 13,//!< OTA partition 13
  57. ESP_PARTITION_SUBTYPE_APP_OTA_14 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 14,//!< OTA partition 14
  58. ESP_PARTITION_SUBTYPE_APP_OTA_15 = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 15,//!< OTA partition 15
  59. ESP_PARTITION_SUBTYPE_APP_OTA_MAX = ESP_PARTITION_SUBTYPE_APP_OTA_MIN + 16,//!< Max subtype of OTA partition
  60. ESP_PARTITION_SUBTYPE_APP_TEST = 0x20, //!< Test application partition
  61. ESP_PARTITION_SUBTYPE_DATA_OTA = 0x00, //!< OTA selection partition
  62. ESP_PARTITION_SUBTYPE_DATA_PHY = 0x01, //!< PHY init data partition
  63. ESP_PARTITION_SUBTYPE_DATA_NVS = 0x02, //!< NVS partition
  64. ESP_PARTITION_SUBTYPE_DATA_COREDUMP = 0x03, //!< COREDUMP partition
  65. ESP_PARTITION_SUBTYPE_DATA_NVS_KEYS = 0x04, //!< Partition for NVS keys
  66. ESP_PARTITION_SUBTYPE_DATA_EFUSE_EM = 0x05, //!< Partition for emulate eFuse bits
  67. ESP_PARTITION_SUBTYPE_DATA_ESPHTTPD = 0x80, //!< ESPHTTPD partition
  68. ESP_PARTITION_SUBTYPE_DATA_FAT = 0x81, //!< FAT partition
  69. ESP_PARTITION_SUBTYPE_DATA_SPIFFS = 0x82, //!< SPIFFS partition
  70. ESP_PARTITION_SUBTYPE_ANY = 0xff, //!< Used to search for partitions with any subtype
  71. } esp_partition_subtype_t;
  72. /**
  73. * @brief Convenience macro to get esp_partition_subtype_t value for the i-th OTA partition
  74. */
  75. #define ESP_PARTITION_SUBTYPE_OTA(i) ((esp_partition_subtype_t)(ESP_PARTITION_SUBTYPE_APP_OTA_MIN + ((i) & 0xf)))
  76. /**
  77. * @brief Opaque partition iterator type
  78. */
  79. typedef struct esp_partition_iterator_opaque_* esp_partition_iterator_t;
  80. /**
  81. * @brief partition information structure
  82. *
  83. * This is not the format in flash, that format is esp_partition_info_t.
  84. *
  85. * However, this is the format used by this API.
  86. */
  87. typedef struct {
  88. esp_flash_t* flash_chip; /*!< SPI flash chip on which the partition resides */
  89. esp_partition_type_t type; /*!< partition type (app/data) */
  90. esp_partition_subtype_t subtype; /*!< partition subtype */
  91. uint32_t address; /*!< starting address of the partition in flash */
  92. uint32_t size; /*!< size of the partition, in bytes */
  93. char label[17]; /*!< partition label, zero-terminated ASCII string */
  94. bool encrypted; /*!< flag is set to true if partition is encrypted */
  95. } esp_partition_t;
  96. /**
  97. * @brief Find partition based on one or more parameters
  98. *
  99. * @param type Partition type, one of esp_partition_type_t values
  100. * @param subtype Partition subtype, one of esp_partition_subtype_t values.
  101. * To find all partitions of given type, use
  102. * ESP_PARTITION_SUBTYPE_ANY.
  103. * @param label (optional) Partition label. Set this value if looking
  104. * for partition with a specific name. Pass NULL otherwise.
  105. *
  106. * @return iterator which can be used to enumerate all the partitions found,
  107. * or NULL if no partitions were found.
  108. * Iterator obtained through this function has to be released
  109. * using esp_partition_iterator_release when not used any more.
  110. */
  111. esp_partition_iterator_t esp_partition_find(esp_partition_type_t type, esp_partition_subtype_t subtype, const char* label);
  112. /**
  113. * @brief Find first partition based on one or more parameters
  114. *
  115. * @param type Partition type, one of esp_partition_type_t values
  116. * @param subtype Partition subtype, one of esp_partition_subtype_t values.
  117. * To find all partitions of given type, use
  118. * ESP_PARTITION_SUBTYPE_ANY.
  119. * @param label (optional) Partition label. Set this value if looking
  120. * for partition with a specific name. Pass NULL otherwise.
  121. *
  122. * @return pointer to esp_partition_t structure, or NULL if no partition is found.
  123. * This pointer is valid for the lifetime of the application.
  124. */
  125. const esp_partition_t* esp_partition_find_first(esp_partition_type_t type, esp_partition_subtype_t subtype, const char* label);
  126. /**
  127. * @brief Get esp_partition_t structure for given partition
  128. *
  129. * @param iterator Iterator obtained using esp_partition_find. Must be non-NULL.
  130. *
  131. * @return pointer to esp_partition_t structure. This pointer is valid for the lifetime
  132. * of the application.
  133. */
  134. const esp_partition_t* esp_partition_get(esp_partition_iterator_t iterator);
  135. /**
  136. * @brief Move partition iterator to the next partition found
  137. *
  138. * Any copies of the iterator will be invalid after this call.
  139. *
  140. * @param iterator Iterator obtained using esp_partition_find. Must be non-NULL.
  141. *
  142. * @return NULL if no partition was found, valid esp_partition_iterator_t otherwise.
  143. */
  144. esp_partition_iterator_t esp_partition_next(esp_partition_iterator_t iterator);
  145. /**
  146. * @brief Release partition iterator
  147. *
  148. * @param iterator Iterator obtained using esp_partition_find. Must be non-NULL.
  149. *
  150. */
  151. void esp_partition_iterator_release(esp_partition_iterator_t iterator);
  152. /**
  153. * @brief Verify partition data
  154. *
  155. * Given a pointer to partition data, verify this partition exists in the partition table (all fields match.)
  156. *
  157. * This function is also useful to take partition data which may be in a RAM buffer and convert it to a pointer to the
  158. * permanent partition data stored in flash.
  159. *
  160. * Pointers returned from this function can be compared directly to the address of any pointer returned from
  161. * esp_partition_get(), as a test for equality.
  162. *
  163. * @param partition Pointer to partition data to verify. Must be non-NULL. All fields of this structure must match the
  164. * partition table entry in flash for this function to return a successful match.
  165. *
  166. * @return
  167. * - If partition not found, returns NULL.
  168. * - If found, returns a pointer to the esp_partition_t structure in flash. This pointer is always valid for the lifetime of the application.
  169. */
  170. const esp_partition_t *esp_partition_verify(const esp_partition_t *partition);
  171. /**
  172. * @brief Read data from the partition
  173. *
  174. * @param partition Pointer to partition structure obtained using
  175. * esp_partition_find_first or esp_partition_get.
  176. * Must be non-NULL.
  177. * @param dst Pointer to the buffer where data should be stored.
  178. * Pointer must be non-NULL and buffer must be at least 'size' bytes long.
  179. * @param src_offset Address of the data to be read, relative to the
  180. * beginning of the partition.
  181. * @param size Size of data to be read, in bytes.
  182. *
  183. * @return ESP_OK, if data was read successfully;
  184. * ESP_ERR_INVALID_ARG, if src_offset exceeds partition size;
  185. * ESP_ERR_INVALID_SIZE, if read would go out of bounds of the partition;
  186. * or one of error codes from lower-level flash driver.
  187. */
  188. esp_err_t esp_partition_read(const esp_partition_t* partition,
  189. size_t src_offset, void* dst, size_t size);
  190. /**
  191. * @brief Write data to the partition
  192. *
  193. * Before writing data to flash, corresponding region of flash needs to be erased.
  194. * This can be done using esp_partition_erase_range function.
  195. *
  196. * Partitions marked with an encryption flag will automatically be
  197. * written via the spi_flash_write_encrypted() function. If writing to
  198. * an encrypted partition, all write offsets and lengths must be
  199. * multiples of 16 bytes. See the spi_flash_write_encrypted() function
  200. * for more details. Unencrypted partitions do not have this
  201. * restriction.
  202. *
  203. * @param partition Pointer to partition structure obtained using
  204. * esp_partition_find_first or esp_partition_get.
  205. * Must be non-NULL.
  206. * @param dst_offset Address where the data should be written, relative to the
  207. * beginning of the partition.
  208. * @param src Pointer to the source buffer. Pointer must be non-NULL and
  209. * buffer must be at least 'size' bytes long.
  210. * @param size Size of data to be written, in bytes.
  211. *
  212. * @note Prior to writing to flash memory, make sure it has been erased with
  213. * esp_partition_erase_range call.
  214. *
  215. * @return ESP_OK, if data was written successfully;
  216. * ESP_ERR_INVALID_ARG, if dst_offset exceeds partition size;
  217. * ESP_ERR_INVALID_SIZE, if write would go out of bounds of the partition;
  218. * or one of error codes from lower-level flash driver.
  219. */
  220. esp_err_t esp_partition_write(const esp_partition_t* partition,
  221. size_t dst_offset, const void* src, size_t size);
  222. /**
  223. * @brief Erase part of the partition
  224. *
  225. * @param partition Pointer to partition structure obtained using
  226. * esp_partition_find_first or esp_partition_get.
  227. * Must be non-NULL.
  228. * @param offset Offset from the beginning of partition where erase operation
  229. * should start. Must be aligned to 4 kilobytes.
  230. * @param size Size of the range which should be erased, in bytes.
  231. * Must be divisible by 4 kilobytes.
  232. *
  233. * @return ESP_OK, if the range was erased successfully;
  234. * ESP_ERR_INVALID_ARG, if iterator or dst are NULL;
  235. * ESP_ERR_INVALID_SIZE, if erase would go out of bounds of the partition;
  236. * or one of error codes from lower-level flash driver.
  237. */
  238. esp_err_t esp_partition_erase_range(const esp_partition_t* partition,
  239. size_t offset, size_t size);
  240. /**
  241. * @brief Configure MMU to map partition into data memory
  242. *
  243. * Unlike spi_flash_mmap function, which requires a 64kB aligned base address,
  244. * this function doesn't impose such a requirement.
  245. * If offset results in a flash address which is not aligned to 64kB boundary,
  246. * address will be rounded to the lower 64kB boundary, so that mapped region
  247. * includes requested range.
  248. * Pointer returned via out_ptr argument will be adjusted to point to the
  249. * requested offset (not necessarily to the beginning of mmap-ed region).
  250. *
  251. * To release mapped memory, pass handle returned via out_handle argument to
  252. * spi_flash_munmap function.
  253. *
  254. * @param partition Pointer to partition structure obtained using
  255. * esp_partition_find_first or esp_partition_get.
  256. * Must be non-NULL.
  257. * @param offset Offset from the beginning of partition where mapping should start.
  258. * @param size Size of the area to be mapped.
  259. * @param memory Memory space where the region should be mapped
  260. * @param out_ptr Output, pointer to the mapped memory region
  261. * @param out_handle Output, handle which should be used for spi_flash_munmap call
  262. *
  263. * @return ESP_OK, if successful
  264. */
  265. esp_err_t esp_partition_mmap(const esp_partition_t* partition, size_t offset, size_t size,
  266. spi_flash_mmap_memory_t memory,
  267. const void** out_ptr, spi_flash_mmap_handle_t* out_handle);
  268. /**
  269. * @brief Get SHA-256 digest for required partition.
  270. *
  271. * For apps with SHA-256 appended to the app image, the result is the appended SHA-256 value for the app image content.
  272. * The hash is verified before returning, if app content is invalid then the function returns ESP_ERR_IMAGE_INVALID.
  273. * For apps without SHA-256 appended to the image, the result is the SHA-256 of all bytes in the app image.
  274. * For other partition types, the result is the SHA-256 of the entire partition.
  275. *
  276. * @param[in] partition Pointer to info for partition containing app or data. (fields: address, size and type, are required to be filled).
  277. * @param[out] sha_256 Returned SHA-256 digest for a given partition.
  278. *
  279. * @return
  280. * - ESP_OK: In case of successful operation.
  281. * - ESP_ERR_INVALID_ARG: The size was 0 or the sha_256 was NULL.
  282. * - ESP_ERR_NO_MEM: Cannot allocate memory for sha256 operation.
  283. * - ESP_ERR_IMAGE_INVALID: App partition doesn't contain a valid app image.
  284. * - ESP_FAIL: An allocation error occurred.
  285. */
  286. esp_err_t esp_partition_get_sha256(const esp_partition_t *partition, uint8_t *sha_256);
  287. /**
  288. * @brief Check for the identity of two partitions by SHA-256 digest.
  289. *
  290. * @param[in] partition_1 Pointer to info for partition 1 containing app or data. (fields: address, size and type, are required to be filled).
  291. * @param[in] partition_2 Pointer to info for partition 2 containing app or data. (fields: address, size and type, are required to be filled).
  292. *
  293. * @return
  294. * - True: In case of the two firmware is equal.
  295. * - False: Otherwise
  296. */
  297. bool esp_partition_check_identity(const esp_partition_t *partition_1, const esp_partition_t *partition_2);
  298. /**
  299. * @brief Register a partition on an external flash chip
  300. *
  301. * This API allows designating certain areas of external flash chips (identified by the esp_flash_t structure)
  302. * as partitions. This allows using them with components which access SPI flash through the esp_partition API.
  303. *
  304. * @param flash_chip Pointer to the structure identifying the flash chip
  305. * @param offset Address in bytes, where the partition starts
  306. * @param size Size of the partition in bytes
  307. * @param label Partition name
  308. * @param type One of the partition types (ESP_PARTITION_TYPE_*). Note that applications can not be booted from external flash
  309. * chips, so using ESP_PARTITION_TYPE_APP is not supported.
  310. * @param subtype One of the partition subtypes (ESP_PARTITION_SUBTYPE_*)
  311. * @param[out] out_partition Output, if non-NULL, receives the pointer to the resulting esp_partition_t structure
  312. * @return
  313. * - ESP_OK on success
  314. * - ESP_ERR_NOT_SUPPORTED if CONFIG_CONFIG_SPI_FLASH_USE_LEGACY_IMPL is enabled
  315. * - ESP_ERR_NO_MEM if memory allocation has failed
  316. * - ESP_ERR_INVALID_ARG if the new partition overlaps another partition on the same flash chip
  317. * - ESP_ERR_INVALID_SIZE if the partition doesn't fit into the flash chip size
  318. */
  319. esp_err_t esp_partition_register_external(esp_flash_t* flash_chip, size_t offset, size_t size,
  320. const char* label, esp_partition_type_t type, esp_partition_subtype_t subtype,
  321. const esp_partition_t** out_partition);
  322. /**
  323. * @brief Deregister the partition previously registered using esp_partition_register_external
  324. * @param partition pointer to the partition structure obtained from esp_partition_register_external,
  325. * @return
  326. * - ESP_OK on success
  327. * - ESP_ERR_NOT_FOUND if the partition pointer is not found
  328. * - ESP_ERR_INVALID_ARG if the partition comes from the partition table
  329. * - ESP_ERR_INVALID_ARG if the partition was not registered using
  330. * esp_partition_register_external function.
  331. */
  332. esp_err_t esp_partition_deregister_external(const esp_partition_t* partition);
  333. #ifdef __cplusplus
  334. }
  335. #endif
  336. #endif /* __ESP_PARTITION_H__ */