test_nvs.c 18 KB

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  1. #include <stdio.h>
  2. #include <ctype.h>
  3. #include <errno.h>
  4. #include <stdlib.h>
  5. #include <time.h>
  6. #include "unity.h"
  7. #include "nvs.h"
  8. #include "nvs_flash.h"
  9. #include "esp_partition.h"
  10. #include "esp_flash_encrypt.h"
  11. #include "esp_log.h"
  12. #include <string.h>
  13. #include "esp_system.h"
  14. #ifdef CONFIG_NVS_ENCRYPTION
  15. #include "mbedtls/aes.h"
  16. #endif
  17. static const char* TAG = "test_nvs";
  18. TEST_CASE("various nvs tests", "[nvs]")
  19. {
  20. nvs_handle handle_1;
  21. esp_err_t err = nvs_flash_init();
  22. if (err == ESP_ERR_NVS_NO_FREE_PAGES || err == ESP_ERR_NVS_NEW_VERSION_FOUND) {
  23. ESP_LOGW(TAG, "nvs_flash_init failed (0x%x), erasing partition and retrying", err);
  24. const esp_partition_t* nvs_partition = esp_partition_find_first(
  25. ESP_PARTITION_TYPE_DATA, ESP_PARTITION_SUBTYPE_DATA_NVS, NULL);
  26. assert(nvs_partition && "partition table must have an NVS partition");
  27. ESP_ERROR_CHECK( esp_partition_erase_range(nvs_partition, 0, nvs_partition->size) );
  28. err = nvs_flash_init();
  29. }
  30. ESP_ERROR_CHECK( err );
  31. TEST_ESP_ERR(nvs_open("test_namespace1", NVS_READONLY, &handle_1), ESP_ERR_NVS_NOT_FOUND);
  32. TEST_ESP_ERR(nvs_set_i32(handle_1, "foo", 0x12345678), ESP_ERR_NVS_INVALID_HANDLE);
  33. nvs_close(handle_1);
  34. TEST_ESP_OK(nvs_open("test_namespace2", NVS_READWRITE, &handle_1));
  35. TEST_ESP_OK(nvs_erase_all(handle_1));
  36. TEST_ESP_OK(nvs_set_i32(handle_1, "foo", 0x12345678));
  37. TEST_ESP_OK(nvs_set_i32(handle_1, "foo", 0x23456789));
  38. nvs_handle handle_2;
  39. TEST_ESP_OK(nvs_open("test_namespace3", NVS_READWRITE, &handle_2));
  40. TEST_ESP_OK(nvs_erase_all(handle_2));
  41. TEST_ESP_OK(nvs_set_i32(handle_2, "foo", 0x3456789a));
  42. const char* str = "value 0123456789abcdef0123456789abcdef";
  43. TEST_ESP_OK(nvs_set_str(handle_2, "key", str));
  44. int32_t v1;
  45. TEST_ESP_OK(nvs_get_i32(handle_1, "foo", &v1));
  46. TEST_ASSERT_EQUAL_INT32(0x23456789, v1);
  47. int32_t v2;
  48. TEST_ESP_OK(nvs_get_i32(handle_2, "foo", &v2));
  49. TEST_ASSERT_EQUAL_INT32(0x3456789a, v2);
  50. char buf[strlen(str) + 1];
  51. size_t buf_len = sizeof(buf);
  52. TEST_ESP_OK(nvs_get_str(handle_2, "key", buf, &buf_len));
  53. TEST_ASSERT_EQUAL_INT32(0, strcmp(buf, str));
  54. nvs_close(handle_1);
  55. // check that deinit does not leak memory if some handles are still open
  56. nvs_flash_deinit();
  57. nvs_close(handle_2);
  58. }
  59. TEST_CASE("calculate used and free space", "[nvs]")
  60. {
  61. TEST_ESP_ERR(nvs_get_stats(NULL, NULL), ESP_ERR_INVALID_ARG);
  62. nvs_stats_t stat1;
  63. nvs_stats_t stat2;
  64. TEST_ESP_ERR(nvs_get_stats(NULL, &stat1), ESP_ERR_NVS_NOT_INITIALIZED);
  65. TEST_ASSERT_TRUE(stat1.free_entries == 0);
  66. TEST_ASSERT_TRUE(stat1.namespace_count == 0);
  67. TEST_ASSERT_TRUE(stat1.total_entries == 0);
  68. TEST_ASSERT_TRUE(stat1.used_entries == 0);
  69. nvs_handle handle = 0;
  70. size_t h_count_entries;
  71. TEST_ESP_ERR(nvs_get_used_entry_count(handle, &h_count_entries), ESP_ERR_NVS_INVALID_HANDLE);
  72. TEST_ASSERT_TRUE(h_count_entries == 0);
  73. esp_err_t err = nvs_flash_init();
  74. if (err == ESP_ERR_NVS_NO_FREE_PAGES || err == ESP_ERR_NVS_NEW_VERSION_FOUND) {
  75. ESP_LOGW(TAG, "nvs_flash_init failed (0x%x), erasing partition and retrying", err);
  76. const esp_partition_t* nvs_partition = esp_partition_find_first(
  77. ESP_PARTITION_TYPE_DATA, ESP_PARTITION_SUBTYPE_DATA_NVS, NULL);
  78. assert(nvs_partition && "partition table must have an NVS partition");
  79. ESP_ERROR_CHECK( esp_partition_erase_range(nvs_partition, 0, nvs_partition->size) );
  80. err = nvs_flash_init();
  81. }
  82. ESP_ERROR_CHECK( err );
  83. // erase if have any namespace
  84. TEST_ESP_OK(nvs_get_stats(NULL, &stat1));
  85. if(stat1.namespace_count != 0) {
  86. TEST_ESP_OK(nvs_flash_erase());
  87. TEST_ESP_OK(nvs_flash_deinit());
  88. TEST_ESP_OK(nvs_flash_init());
  89. }
  90. // after erase. empty partition
  91. TEST_ESP_OK(nvs_get_stats(NULL, &stat1));
  92. TEST_ASSERT_TRUE(stat1.free_entries != 0);
  93. TEST_ASSERT_TRUE(stat1.namespace_count == 0);
  94. TEST_ASSERT_TRUE(stat1.total_entries != 0);
  95. TEST_ASSERT_TRUE(stat1.used_entries == 0);
  96. // create namespace test_k1
  97. nvs_handle handle_1;
  98. TEST_ESP_OK(nvs_open("test_k1", NVS_READWRITE, &handle_1));
  99. TEST_ESP_OK(nvs_get_stats(NULL, &stat2));
  100. TEST_ASSERT_TRUE(stat2.free_entries + 1 == stat1.free_entries);
  101. TEST_ASSERT_TRUE(stat2.namespace_count == 1);
  102. TEST_ASSERT_TRUE(stat2.total_entries == stat1.total_entries);
  103. TEST_ASSERT_TRUE(stat2.used_entries == 1);
  104. // create pair key-value com
  105. TEST_ESP_OK(nvs_set_i32(handle_1, "com", 0x12345678));
  106. TEST_ESP_OK(nvs_get_stats(NULL, &stat1));
  107. TEST_ASSERT_TRUE(stat1.free_entries + 1 == stat2.free_entries);
  108. TEST_ASSERT_TRUE(stat1.namespace_count == 1);
  109. TEST_ASSERT_TRUE(stat1.total_entries == stat2.total_entries);
  110. TEST_ASSERT_TRUE(stat1.used_entries == 2);
  111. // change value in com
  112. TEST_ESP_OK(nvs_set_i32(handle_1, "com", 0x01234567));
  113. TEST_ESP_OK(nvs_get_stats(NULL, &stat2));
  114. TEST_ASSERT_TRUE(stat2.free_entries == stat1.free_entries);
  115. TEST_ASSERT_TRUE(stat2.namespace_count == 1);
  116. TEST_ASSERT_TRUE(stat2.total_entries != 0);
  117. TEST_ASSERT_TRUE(stat2.used_entries == 2);
  118. // create pair key-value ru
  119. TEST_ESP_OK(nvs_set_i32(handle_1, "ru", 0x00FF00FF));
  120. TEST_ESP_OK(nvs_get_stats(NULL, &stat1));
  121. TEST_ASSERT_TRUE(stat1.free_entries + 1 == stat2.free_entries);
  122. TEST_ASSERT_TRUE(stat1.namespace_count == 1);
  123. TEST_ASSERT_TRUE(stat1.total_entries != 0);
  124. TEST_ASSERT_TRUE(stat1.used_entries == 3);
  125. // amount valid pair in namespace 1
  126. size_t h1_count_entries;
  127. TEST_ESP_OK(nvs_get_used_entry_count(handle_1, &h1_count_entries));
  128. TEST_ASSERT_TRUE(h1_count_entries == 2);
  129. nvs_handle handle_2;
  130. // create namespace test_k2
  131. TEST_ESP_OK(nvs_open("test_k2", NVS_READWRITE, &handle_2));
  132. TEST_ESP_OK(nvs_get_stats(NULL, &stat2));
  133. TEST_ASSERT_TRUE(stat2.free_entries + 1 == stat1.free_entries);
  134. TEST_ASSERT_TRUE(stat2.namespace_count == 2);
  135. TEST_ASSERT_TRUE(stat2.total_entries == stat1.total_entries);
  136. TEST_ASSERT_TRUE(stat2.used_entries == 4);
  137. // create pair key-value
  138. TEST_ESP_OK(nvs_set_i32(handle_2, "su1", 0x00000001));
  139. TEST_ESP_OK(nvs_set_i32(handle_2, "su2", 0x00000002));
  140. TEST_ESP_OK(nvs_set_i32(handle_2, "sus", 0x00000003));
  141. TEST_ESP_OK(nvs_get_stats(NULL, &stat1));
  142. TEST_ASSERT_TRUE(stat1.free_entries + 3 == stat2.free_entries);
  143. TEST_ASSERT_TRUE(stat1.namespace_count == 2);
  144. TEST_ASSERT_TRUE(stat1.total_entries == stat2.total_entries);
  145. TEST_ASSERT_TRUE(stat1.used_entries == 7);
  146. TEST_ASSERT_TRUE(stat1.total_entries == (stat1.used_entries + stat1.free_entries));
  147. // amount valid pair in namespace 2
  148. size_t h2_count_entries;
  149. TEST_ESP_OK(nvs_get_used_entry_count(handle_2, &h2_count_entries));
  150. TEST_ASSERT_TRUE(h2_count_entries == 3);
  151. TEST_ASSERT_TRUE(stat1.used_entries == (h1_count_entries + h2_count_entries + stat1.namespace_count));
  152. nvs_close(handle_1);
  153. nvs_close(handle_2);
  154. size_t temp = h2_count_entries;
  155. TEST_ESP_ERR(nvs_get_used_entry_count(handle_1, &h2_count_entries), ESP_ERR_NVS_INVALID_HANDLE);
  156. TEST_ASSERT_TRUE(h2_count_entries == 0);
  157. h2_count_entries = temp;
  158. TEST_ESP_ERR(nvs_get_used_entry_count(handle_1, NULL), ESP_ERR_INVALID_ARG);
  159. nvs_handle handle_3;
  160. // create namespace test_k3
  161. TEST_ESP_OK(nvs_open("test_k3", NVS_READWRITE, &handle_3));
  162. TEST_ESP_OK(nvs_get_stats(NULL, &stat2));
  163. TEST_ASSERT_TRUE(stat2.free_entries + 1 == stat1.free_entries);
  164. TEST_ASSERT_TRUE(stat2.namespace_count == 3);
  165. TEST_ASSERT_TRUE(stat2.total_entries == stat1.total_entries);
  166. TEST_ASSERT_TRUE(stat2.used_entries == 8);
  167. // create pair blobs
  168. uint32_t blob[12];
  169. TEST_ESP_OK(nvs_set_blob(handle_3, "bl1", &blob, sizeof(blob)));
  170. TEST_ESP_OK(nvs_get_stats(NULL, &stat1));
  171. TEST_ASSERT_TRUE(stat1.free_entries + 4 == stat2.free_entries);
  172. TEST_ASSERT_TRUE(stat1.namespace_count == 3);
  173. TEST_ASSERT_TRUE(stat1.total_entries == stat2.total_entries);
  174. TEST_ASSERT_TRUE(stat1.used_entries == 12);
  175. // amount valid pair in namespace 2
  176. size_t h3_count_entries;
  177. TEST_ESP_OK(nvs_get_used_entry_count(handle_3, &h3_count_entries));
  178. TEST_ASSERT_TRUE(h3_count_entries == 4);
  179. TEST_ASSERT_TRUE(stat1.used_entries == (h1_count_entries + h2_count_entries + h3_count_entries + stat1.namespace_count));
  180. nvs_close(handle_3);
  181. TEST_ESP_OK(nvs_flash_erase());
  182. TEST_ESP_OK(nvs_flash_deinit());
  183. }
  184. TEST_CASE("check for memory leaks in nvs_set_blob", "[nvs]")
  185. {
  186. esp_err_t err = nvs_flash_init();
  187. if (err == ESP_ERR_NVS_NO_FREE_PAGES || err == ESP_ERR_NVS_NEW_VERSION_FOUND) {
  188. ESP_ERROR_CHECK(nvs_flash_erase());
  189. err = nvs_flash_init();
  190. }
  191. TEST_ESP_OK( err );
  192. for (int i = 0; i < 500; ++i) {
  193. nvs_handle my_handle;
  194. uint8_t key[20] = {0};
  195. TEST_ESP_OK( nvs_open("test_namespace1", NVS_READWRITE, &my_handle) );
  196. TEST_ESP_OK( nvs_set_blob(my_handle, "key", key, sizeof(key)) );
  197. TEST_ESP_OK( nvs_commit(my_handle) );
  198. nvs_close(my_handle);
  199. printf("%d\n", esp_get_free_heap_size());
  200. }
  201. nvs_flash_deinit();
  202. printf("%d\n", esp_get_free_heap_size());
  203. /* heap leaks will be checked in unity_platform.c */
  204. }
  205. #ifdef CONFIG_NVS_ENCRYPTION
  206. TEST_CASE("check underlying xts code for 32-byte size sector encryption", "[nvs]")
  207. {
  208. uint8_t eky_hex[2 * NVS_KEY_SIZE] = { 0x11,0x11,0x11,0x11,0x11,0x11,0x11,0x11,
  209. 0x11,0x11,0x11,0x11,0x11,0x11,0x11,0x11,
  210. 0x11,0x11,0x11,0x11,0x11,0x11,0x11,0x11,
  211. 0x11,0x11,0x11,0x11,0x11,0x11,0x11,0x11,
  212. /* Tweak key below*/
  213. 0x22,0x22,0x22,0x22,0x22,0x22,0x22,0x22,
  214. 0x22,0x22,0x22,0x22,0x22,0x22,0x22,0x22,
  215. 0x22,0x22,0x22,0x22,0x22,0x22,0x22,0x22,
  216. 0x22,0x22,0x22,0x22,0x22,0x22,0x22,0x22 };
  217. uint8_t ba_hex[16] = { 0x33,0x33,0x33,0x33,0x33,0x00,0x00,0x00,
  218. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00 };
  219. uint8_t ptxt_hex[32] = { 0x44,0x44,0x44,0x44,0x44,0x44,0x44,0x44,
  220. 0x44,0x44,0x44,0x44,0x44,0x44,0x44,0x44,
  221. 0x44,0x44,0x44,0x44,0x44,0x44,0x44,0x44,
  222. 0x44,0x44,0x44,0x44,0x44,0x44,0x44,0x44 };
  223. uint8_t ctxt_hex[32] = { 0xe6,0x22,0x33,0x4f,0x18,0x4b,0xbc,0xe1,
  224. 0x29,0xa2,0x5b,0x2a,0xc7,0x6b,0x3d,0x92,
  225. 0xab,0xf9,0x8e,0x22,0xdf,0x5b,0xdd,0x15,
  226. 0xaf,0x47,0x1f,0x3d,0xb8,0x94,0x6a,0x85 };
  227. mbedtls_aes_xts_context ectx[1];
  228. mbedtls_aes_xts_context dctx[1];
  229. mbedtls_aes_xts_init(ectx);
  230. mbedtls_aes_xts_init(dctx);
  231. TEST_ASSERT_TRUE(!mbedtls_aes_xts_setkey_enc(ectx, eky_hex, 2 * NVS_KEY_SIZE * 8));
  232. TEST_ASSERT_TRUE(!mbedtls_aes_xts_setkey_enc(dctx, eky_hex, 2 * NVS_KEY_SIZE * 8));
  233. TEST_ASSERT_TRUE(!mbedtls_aes_crypt_xts(ectx, MBEDTLS_AES_ENCRYPT, 32, ba_hex, ptxt_hex, ptxt_hex));
  234. TEST_ASSERT_TRUE(!memcmp(ptxt_hex, ctxt_hex, 32));
  235. }
  236. TEST_CASE("Check nvs key partition APIs (read and generate keys)", "[nvs]")
  237. {
  238. nvs_sec_cfg_t cfg, cfg2;
  239. const esp_partition_t* key_part = esp_partition_find_first(
  240. ESP_PARTITION_TYPE_DATA, ESP_PARTITION_SUBTYPE_DATA_NVS_KEYS, NULL);
  241. if (!esp_flash_encryption_enabled()) {
  242. TEST_IGNORE_MESSAGE("flash encryption disabled, skipping nvs_key partition related tests");
  243. }
  244. TEST_ESP_OK(esp_partition_erase_range(key_part, 0, key_part->size));
  245. TEST_ESP_ERR(nvs_flash_read_security_cfg(key_part, &cfg), ESP_ERR_NVS_KEYS_NOT_INITIALIZED);
  246. TEST_ESP_OK(nvs_flash_generate_keys(key_part, &cfg));
  247. TEST_ESP_OK(nvs_flash_read_security_cfg(key_part, &cfg2));
  248. TEST_ASSERT_TRUE(!memcmp(&cfg, &cfg2, sizeof(nvs_sec_cfg_t)));
  249. }
  250. TEST_CASE("test nvs apis with encryption enabled", "[nvs]")
  251. {
  252. if (!esp_flash_encryption_enabled()) {
  253. TEST_IGNORE_MESSAGE("flash encryption disabled, skipping nvs_api tests with encryption enabled");
  254. }
  255. const esp_partition_t* key_part = esp_partition_find_first(
  256. ESP_PARTITION_TYPE_DATA, ESP_PARTITION_SUBTYPE_DATA_NVS_KEYS, NULL);
  257. const esp_partition_t* nvs_partition = esp_partition_find_first(
  258. ESP_PARTITION_TYPE_DATA, ESP_PARTITION_SUBTYPE_DATA_NVS, NULL);
  259. assert(nvs_partition && "partition table must have an NVS partition");
  260. ESP_ERROR_CHECK( esp_partition_erase_range(nvs_partition, 0, nvs_partition->size) );
  261. nvs_sec_cfg_t cfg;
  262. esp_err_t err = nvs_flash_read_security_cfg(key_part, &cfg);
  263. if(err == ESP_ERR_NVS_KEYS_NOT_INITIALIZED) {
  264. TEST_ESP_OK(nvs_flash_generate_keys(key_part, &cfg));
  265. } else {
  266. ESP_ERROR_CHECK(err);
  267. }
  268. TEST_ESP_OK(nvs_flash_secure_init(&cfg));
  269. nvs_handle handle_1;
  270. TEST_ESP_ERR(nvs_open("namespace1", NVS_READONLY, &handle_1), ESP_ERR_NVS_NOT_FOUND);
  271. TEST_ESP_OK(nvs_open("namespace1", NVS_READWRITE, &handle_1));
  272. TEST_ESP_OK(nvs_set_i32(handle_1, "foo", 0x12345678));
  273. TEST_ESP_OK(nvs_set_i32(handle_1, "foo", 0x23456789));
  274. nvs_handle handle_2;
  275. TEST_ESP_OK(nvs_open("namespace2", NVS_READWRITE, &handle_2));
  276. TEST_ESP_OK(nvs_set_i32(handle_2, "foo", 0x3456789a));
  277. const char* str = "value 0123456789abcdef0123456789abcdef";
  278. TEST_ESP_OK(nvs_set_str(handle_2, "key", str));
  279. int32_t v1;
  280. TEST_ESP_OK(nvs_get_i32(handle_1, "foo", &v1));
  281. TEST_ASSERT_TRUE(0x23456789 == v1);
  282. int32_t v2;
  283. TEST_ESP_OK(nvs_get_i32(handle_2, "foo", &v2));
  284. TEST_ASSERT_TRUE(0x3456789a == v2);
  285. char buf[strlen(str) + 1];
  286. size_t buf_len = sizeof(buf);
  287. size_t buf_len_needed;
  288. TEST_ESP_OK(nvs_get_str(handle_2, "key", NULL, &buf_len_needed));
  289. TEST_ASSERT_TRUE(buf_len_needed == buf_len);
  290. size_t buf_len_short = buf_len - 1;
  291. TEST_ESP_ERR(ESP_ERR_NVS_INVALID_LENGTH, nvs_get_str(handle_2, "key", buf, &buf_len_short));
  292. TEST_ASSERT_TRUE(buf_len_short == buf_len);
  293. size_t buf_len_long = buf_len + 1;
  294. TEST_ESP_OK(nvs_get_str(handle_2, "key", buf, &buf_len_long));
  295. TEST_ASSERT_TRUE(buf_len_long == buf_len);
  296. TEST_ESP_OK(nvs_get_str(handle_2, "key", buf, &buf_len));
  297. TEST_ASSERT_TRUE(0 == strcmp(buf, str));
  298. nvs_close(handle_1);
  299. nvs_close(handle_2);
  300. TEST_ESP_OK(nvs_flash_deinit());
  301. }
  302. TEST_CASE("test nvs apis for nvs partition generator utility with encryption enabled", "[nvs_part_gen]")
  303. {
  304. if (!esp_flash_encryption_enabled()) {
  305. TEST_IGNORE_MESSAGE("flash encryption disabled, skipping nvs_api tests with encryption enabled");
  306. }
  307. nvs_handle handle;
  308. nvs_sec_cfg_t xts_cfg;
  309. extern const char nvs_key_start[] asm("_binary_encryption_keys_bin_start");
  310. extern const char nvs_key_end[] asm("_binary_encryption_keys_bin_end");
  311. extern const char nvs_data_start[] asm("_binary_partition_encrypted_bin_start");
  312. extern const char sample_bin_start[] asm("_binary_sample_bin_start");
  313. const esp_partition_t* key_part = esp_partition_find_first(
  314. ESP_PARTITION_TYPE_DATA, ESP_PARTITION_SUBTYPE_DATA_NVS_KEYS, NULL);
  315. const esp_partition_t* nvs_part = esp_partition_find_first(
  316. ESP_PARTITION_TYPE_DATA, ESP_PARTITION_SUBTYPE_DATA_NVS, NULL);
  317. assert(key_part && "partition table must have a KEY partition");
  318. TEST_ASSERT_TRUE((nvs_key_end - nvs_key_start - 1) == SPI_FLASH_SEC_SIZE);
  319. assert(nvs_part && "partition table must have an NVS partition");
  320. printf("\n nvs_part size:%d\n", nvs_part->size);
  321. ESP_ERROR_CHECK(esp_partition_erase_range(key_part, 0, key_part->size));
  322. ESP_ERROR_CHECK( esp_partition_erase_range(nvs_part, 0, nvs_part->size) );
  323. for (int i = 0; i < key_part->size; i+= SPI_FLASH_SEC_SIZE) {
  324. ESP_ERROR_CHECK( esp_partition_write(key_part, i, nvs_key_start + i, SPI_FLASH_SEC_SIZE) );
  325. }
  326. for (int i = 0; i < nvs_part->size; i+= SPI_FLASH_SEC_SIZE) {
  327. ESP_ERROR_CHECK( spi_flash_write(nvs_part->address + i, nvs_data_start + i, SPI_FLASH_SEC_SIZE) );
  328. }
  329. esp_err_t err = nvs_flash_read_security_cfg(key_part, &xts_cfg);
  330. ESP_ERROR_CHECK(err);
  331. TEST_ESP_OK(nvs_flash_secure_init(&xts_cfg));
  332. TEST_ESP_OK(nvs_open("dummyNamespace", NVS_READONLY, &handle));
  333. uint8_t u8v;
  334. TEST_ESP_OK( nvs_get_u8(handle, "dummyU8Key", &u8v));
  335. TEST_ASSERT_TRUE(u8v == 127);
  336. int8_t i8v;
  337. TEST_ESP_OK( nvs_get_i8(handle, "dummyI8Key", &i8v));
  338. TEST_ASSERT_TRUE(i8v == -128);
  339. uint16_t u16v;
  340. TEST_ESP_OK( nvs_get_u16(handle, "dummyU16Key", &u16v));
  341. TEST_ASSERT_TRUE(u16v == 32768);
  342. uint32_t u32v;
  343. TEST_ESP_OK( nvs_get_u32(handle, "dummyU32Key", &u32v));
  344. TEST_ASSERT_TRUE(u32v == 4294967295);
  345. int32_t i32v;
  346. TEST_ESP_OK( nvs_get_i32(handle, "dummyI32Key", &i32v));
  347. TEST_ASSERT_TRUE(i32v == -2147483648);
  348. char buf[64] = {0};
  349. size_t buflen = 64;
  350. TEST_ESP_OK( nvs_get_str(handle, "dummyStringKey", buf, &buflen));
  351. TEST_ASSERT_TRUE(strncmp(buf, "0A:0B:0C:0D:0E:0F", buflen) == 0);
  352. uint8_t hexdata[] = {0x01, 0x02, 0x03, 0xab, 0xcd, 0xef};
  353. buflen = 64;
  354. TEST_ESP_OK( nvs_get_blob(handle, "dummyHex2BinKey", buf, &buflen));
  355. TEST_ASSERT_TRUE(memcmp(buf, hexdata, buflen) == 0);
  356. uint8_t base64data[] = {'1', '2', '3', 'a', 'b', 'c'};
  357. buflen = 64;
  358. TEST_ESP_OK( nvs_get_blob(handle, "dummyBase64Key", buf, &buflen));
  359. TEST_ASSERT_TRUE(memcmp(buf, base64data, buflen) == 0);
  360. uint8_t hexfiledata[] = {0x01, 0x23, 0x45, 0x67, 0x89, 0xab, 0xcd, 0xef};
  361. buflen = 64;
  362. TEST_ESP_OK( nvs_get_blob(handle, "hexFileKey", buf, &buflen));
  363. TEST_ASSERT_TRUE(memcmp(buf, hexfiledata, buflen) == 0);
  364. uint8_t base64filedata[] = {0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08, 0x09, 0xab, 0xcd, 0xef};
  365. buflen = 64;
  366. TEST_ESP_OK( nvs_get_blob(handle, "base64FileKey", buf, &buflen));
  367. TEST_ASSERT_TRUE(memcmp(buf, base64filedata, buflen) == 0);
  368. uint8_t strfiledata[64] = "abcdefghijklmnopqrstuvwxyz\0";
  369. buflen = 64;
  370. TEST_ESP_OK( nvs_get_str(handle, "stringFileKey", buf, &buflen));
  371. TEST_ASSERT_TRUE(memcmp(buf, strfiledata, buflen) == 0);
  372. char bin_data[5120];
  373. size_t bin_len = sizeof(bin_data);
  374. TEST_ESP_OK( nvs_get_blob(handle, "binFileKey", bin_data, &bin_len));
  375. TEST_ASSERT_TRUE(memcmp(bin_data, sample_bin_start, bin_len) == 0);
  376. nvs_close(handle);
  377. TEST_ESP_OK(nvs_flash_deinit());
  378. }
  379. #endif