fdtdec.h 19 KB

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  1. /*
  2. * Copyright (c) 2011 The Chromium OS Authors.
  3. * See file CREDITS for list of people who contributed to this
  4. * project.
  5. *
  6. * This program is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU General Public License as
  8. * published by the Free Software Foundation; either version 2 of
  9. * the License, or (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  19. * MA 02111-1307 USA
  20. */
  21. #ifndef __fdtdec_h
  22. #define __fdtdec_h
  23. /*
  24. * This file contains convenience functions for decoding useful and
  25. * enlightening information from FDTs. It is intended to be used by device
  26. * drivers and board-specific code within U-Boot. It aims to reduce the
  27. * amount of FDT munging required within U-Boot itself, so that driver code
  28. * changes to support FDT are minimized.
  29. */
  30. #include <libfdt.h>
  31. /*
  32. * A typedef for a physical address. Note that fdt data is always big
  33. * endian even on a litle endian machine.
  34. */
  35. #ifdef CONFIG_PHYS_64BIT
  36. typedef u64 fdt_addr_t;
  37. #define FDT_ADDR_T_NONE (-1ULL)
  38. #define fdt_addr_to_cpu(reg) be64_to_cpu(reg)
  39. #define fdt_size_to_cpu(reg) be64_to_cpu(reg)
  40. #else
  41. typedef u32 fdt_addr_t;
  42. #define FDT_ADDR_T_NONE (-1U)
  43. #define fdt_addr_to_cpu(reg) be32_to_cpu(reg)
  44. #define fdt_size_to_cpu(reg) be32_to_cpu(reg)
  45. #endif
  46. /* Information obtained about memory from the FDT */
  47. struct fdt_memory {
  48. fdt_addr_t start;
  49. fdt_addr_t end;
  50. };
  51. /**
  52. * Compat types that we know about and for which we might have drivers.
  53. * Each is named COMPAT_<dir>_<filename> where <dir> is the directory
  54. * within drivers.
  55. */
  56. enum fdt_compat_id {
  57. COMPAT_UNKNOWN,
  58. COMPAT_NVIDIA_TEGRA20_USB, /* Tegra20 USB port */
  59. COMPAT_NVIDIA_TEGRA114_I2C, /* Tegra114 I2C w/single clock source */
  60. COMPAT_NVIDIA_TEGRA20_I2C, /* Tegra20 i2c */
  61. COMPAT_NVIDIA_TEGRA20_DVC, /* Tegra20 dvc (really just i2c) */
  62. COMPAT_NVIDIA_TEGRA20_EMC, /* Tegra20 memory controller */
  63. COMPAT_NVIDIA_TEGRA20_EMC_TABLE, /* Tegra20 memory timing table */
  64. COMPAT_NVIDIA_TEGRA20_KBC, /* Tegra20 Keyboard */
  65. COMPAT_NVIDIA_TEGRA20_NAND, /* Tegra2 NAND controller */
  66. COMPAT_NVIDIA_TEGRA20_PWM, /* Tegra 2 PWM controller */
  67. COMPAT_NVIDIA_TEGRA20_DC, /* Tegra 2 Display controller */
  68. COMPAT_NVIDIA_TEGRA30_SDMMC, /* Tegra30 SDMMC controller */
  69. COMPAT_NVIDIA_TEGRA20_SDMMC, /* Tegra20 SDMMC controller */
  70. COMPAT_NVIDIA_TEGRA20_SFLASH, /* Tegra 2 SPI flash controller */
  71. COMPAT_NVIDIA_TEGRA20_SLINK, /* Tegra 2 SPI SLINK controller */
  72. COMPAT_NVIDIA_TEGRA114_SPI, /* Tegra 114 SPI controller */
  73. COMPAT_SMSC_LAN9215, /* SMSC 10/100 Ethernet LAN9215 */
  74. COMPAT_SAMSUNG_EXYNOS5_SROMC, /* Exynos5 SROMC */
  75. COMPAT_SAMSUNG_S3C2440_I2C, /* Exynos I2C Controller */
  76. COMPAT_SAMSUNG_EXYNOS5_SOUND, /* Exynos Sound */
  77. COMPAT_WOLFSON_WM8994_CODEC, /* Wolfson WM8994 Sound Codec */
  78. COMPAT_SAMSUNG_EXYNOS_SPI, /* Exynos SPI */
  79. COMPAT_SAMSUNG_EXYNOS_EHCI, /* Exynos EHCI controller */
  80. COMPAT_SAMSUNG_EXYNOS_USB_PHY, /* Exynos phy controller for usb2.0 */
  81. COMPAT_SAMSUNG_EXYNOS_TMU, /* Exynos TMU */
  82. COMPAT_SAMSUNG_EXYNOS_FIMD, /* Exynos Display controller */
  83. COMPAT_SAMSUNG_EXYNOS5_DP, /* Exynos Display port controller */
  84. COMPAT_MAXIM_MAX77686_PMIC, /* MAX77686 PMIC */
  85. COMPAT_MAXIM_98095_CODEC, /* MAX98095 Codec */
  86. COMPAT_COUNT,
  87. };
  88. /* GPIOs are numbered from 0 */
  89. enum {
  90. FDT_GPIO_NONE = -1U, /* an invalid GPIO used to end our list */
  91. FDT_GPIO_ACTIVE_LOW = 1 << 0, /* input is active low (else high) */
  92. };
  93. /* This is the state of a GPIO pin as defined by the fdt */
  94. struct fdt_gpio_state {
  95. const char *name; /* name of the fdt property defining this */
  96. uint gpio; /* GPIO number, or FDT_GPIO_NONE if none */
  97. u8 flags; /* FDT_GPIO_... flags */
  98. };
  99. /* This tells us whether a fdt_gpio_state record is valid or not */
  100. #define fdt_gpio_isvalid(x) ((x)->gpio != FDT_GPIO_NONE)
  101. /**
  102. * Read the GPIO taking into account the polarity of the pin.
  103. *
  104. * @param gpio pointer to the decoded gpio
  105. * @return value of the gpio if successful, < 0 if unsuccessful
  106. */
  107. int fdtdec_get_gpio(struct fdt_gpio_state *gpio);
  108. /**
  109. * Write the GPIO taking into account the polarity of the pin.
  110. *
  111. * @param gpio pointer to the decoded gpio
  112. * @return 0 if successful
  113. */
  114. int fdtdec_set_gpio(struct fdt_gpio_state *gpio, int val);
  115. /**
  116. * Find the next numbered alias for a peripheral. This is used to enumerate
  117. * all the peripherals of a certain type.
  118. *
  119. * Do the first call with *upto = 0. Assuming /aliases/<name>0 exists then
  120. * this function will return a pointer to the node the alias points to, and
  121. * then update *upto to 1. Next time you call this function, the next node
  122. * will be returned.
  123. *
  124. * All nodes returned will match the compatible ID, as it is assumed that
  125. * all peripherals use the same driver.
  126. *
  127. * @param blob FDT blob to use
  128. * @param name Root name of alias to search for
  129. * @param id Compatible ID to look for
  130. * @return offset of next compatible node, or -FDT_ERR_NOTFOUND if no more
  131. */
  132. int fdtdec_next_alias(const void *blob, const char *name,
  133. enum fdt_compat_id id, int *upto);
  134. /**
  135. * Find the compatible ID for a given node.
  136. *
  137. * Generally each node has at least one compatible string attached to it.
  138. * This function looks through our list of known compatible strings and
  139. * returns the corresponding ID which matches the compatible string.
  140. *
  141. * @param blob FDT blob to use
  142. * @param node Node containing compatible string to find
  143. * @return compatible ID, or COMPAT_UNKNOWN if we cannot find a match
  144. */
  145. enum fdt_compat_id fdtdec_lookup(const void *blob, int node);
  146. /**
  147. * Find the next compatible node for a peripheral.
  148. *
  149. * Do the first call with node = 0. This function will return a pointer to
  150. * the next compatible node. Next time you call this function, pass the
  151. * value returned, and the next node will be provided.
  152. *
  153. * @param blob FDT blob to use
  154. * @param node Start node for search
  155. * @param id Compatible ID to look for (enum fdt_compat_id)
  156. * @return offset of next compatible node, or -FDT_ERR_NOTFOUND if no more
  157. */
  158. int fdtdec_next_compatible(const void *blob, int node,
  159. enum fdt_compat_id id);
  160. /**
  161. * Find the next compatible subnode for a peripheral.
  162. *
  163. * Do the first call with node set to the parent and depth = 0. This
  164. * function will return the offset of the next compatible node. Next time
  165. * you call this function, pass the node value returned last time, with
  166. * depth unchanged, and the next node will be provided.
  167. *
  168. * @param blob FDT blob to use
  169. * @param node Start node for search
  170. * @param id Compatible ID to look for (enum fdt_compat_id)
  171. * @param depthp Current depth (set to 0 before first call)
  172. * @return offset of next compatible node, or -FDT_ERR_NOTFOUND if no more
  173. */
  174. int fdtdec_next_compatible_subnode(const void *blob, int node,
  175. enum fdt_compat_id id, int *depthp);
  176. /**
  177. * Look up an address property in a node and return it as an address.
  178. * The property must hold either one address with no trailing data or
  179. * one address with a length. This is only tested on 32-bit machines.
  180. *
  181. * @param blob FDT blob
  182. * @param node node to examine
  183. * @param prop_name name of property to find
  184. * @return address, if found, or FDT_ADDR_T_NONE if not
  185. */
  186. fdt_addr_t fdtdec_get_addr(const void *blob, int node,
  187. const char *prop_name);
  188. /**
  189. * Look up a 32-bit integer property in a node and return it. The property
  190. * must have at least 4 bytes of data. The value of the first cell is
  191. * returned.
  192. *
  193. * @param blob FDT blob
  194. * @param node node to examine
  195. * @param prop_name name of property to find
  196. * @param default_val default value to return if the property is not found
  197. * @return integer value, if found, or default_val if not
  198. */
  199. s32 fdtdec_get_int(const void *blob, int node, const char *prop_name,
  200. s32 default_val);
  201. /**
  202. * Look up a 64-bit integer property in a node and return it. The property
  203. * must have at least 8 bytes of data (2 cells). The first two cells are
  204. * concatenated to form a 8 bytes value, where the first cell is top half and
  205. * the second cell is bottom half.
  206. *
  207. * @param blob FDT blob
  208. * @param node node to examine
  209. * @param prop_name name of property to find
  210. * @param default_val default value to return if the property is not found
  211. * @return integer value, if found, or default_val if not
  212. */
  213. uint64_t fdtdec_get_uint64(const void *blob, int node, const char *prop_name,
  214. uint64_t default_val);
  215. /**
  216. * Checks whether a node is enabled.
  217. * This looks for a 'status' property. If this exists, then returns 1 if
  218. * the status is 'ok' and 0 otherwise. If there is no status property,
  219. * it returns 1 on the assumption that anything mentioned should be enabled
  220. * by default.
  221. *
  222. * @param blob FDT blob
  223. * @param node node to examine
  224. * @return integer value 0 (not enabled) or 1 (enabled)
  225. */
  226. int fdtdec_get_is_enabled(const void *blob, int node);
  227. /**
  228. * Make sure we have a valid fdt available to control U-Boot.
  229. *
  230. * If not, a message is printed to the console if the console is ready.
  231. *
  232. * @return 0 if all ok, -1 if not
  233. */
  234. int fdtdec_prepare_fdt(void);
  235. /**
  236. * Checks that we have a valid fdt available to control U-Boot.
  237. * However, if not then for the moment nothing is done, since this function
  238. * is called too early to panic().
  239. *
  240. * @returns 0
  241. */
  242. int fdtdec_check_fdt(void);
  243. /**
  244. * Find the nodes for a peripheral and return a list of them in the correct
  245. * order. This is used to enumerate all the peripherals of a certain type.
  246. *
  247. * To use this, optionally set up a /aliases node with alias properties for
  248. * a peripheral. For example, for usb you could have:
  249. *
  250. * aliases {
  251. * usb0 = "/ehci@c5008000";
  252. * usb1 = "/ehci@c5000000";
  253. * };
  254. *
  255. * Pass "usb" as the name to this function and will return a list of two
  256. * nodes offsets: /ehci@c5008000 and ehci@c5000000.
  257. *
  258. * All nodes returned will match the compatible ID, as it is assumed that
  259. * all peripherals use the same driver.
  260. *
  261. * If no alias node is found, then the node list will be returned in the
  262. * order found in the fdt. If the aliases mention a node which doesn't
  263. * exist, then this will be ignored. If nodes are found with no aliases,
  264. * they will be added in any order.
  265. *
  266. * If there is a gap in the aliases, then this function return a 0 node at
  267. * that position. The return value will also count these gaps.
  268. *
  269. * This function checks node properties and will not return nodes which are
  270. * marked disabled (status = "disabled").
  271. *
  272. * @param blob FDT blob to use
  273. * @param name Root name of alias to search for
  274. * @param id Compatible ID to look for
  275. * @param node_list Place to put list of found nodes
  276. * @param maxcount Maximum number of nodes to find
  277. * @return number of nodes found on success, FTD_ERR_... on error
  278. */
  279. int fdtdec_find_aliases_for_id(const void *blob, const char *name,
  280. enum fdt_compat_id id, int *node_list, int maxcount);
  281. /*
  282. * This function is similar to fdtdec_find_aliases_for_id() except that it
  283. * adds to the node_list that is passed in. Any 0 elements are considered
  284. * available for allocation - others are considered already used and are
  285. * skipped.
  286. *
  287. * You can use this by calling fdtdec_find_aliases_for_id() with an
  288. * uninitialised array, then setting the elements that are returned to -1,
  289. * say, then calling this function, perhaps with a different compat id.
  290. * Any elements you get back that are >0 are new nodes added by the call
  291. * to this function.
  292. *
  293. * Note that if you have some nodes with aliases and some without, you are
  294. * sailing close to the wind. The call to fdtdec_find_aliases_for_id() with
  295. * one compat_id may fill in positions for which you have aliases defined
  296. * for another compat_id. When you later call *this* function with the second
  297. * compat_id, the alias positions may already be used. A debug warning may
  298. * be generated in this case, but it is safest to define aliases for all
  299. * nodes when you care about the ordering.
  300. */
  301. int fdtdec_add_aliases_for_id(const void *blob, const char *name,
  302. enum fdt_compat_id id, int *node_list, int maxcount);
  303. /*
  304. * Get the name for a compatible ID
  305. *
  306. * @param id Compatible ID to look for
  307. * @return compatible string for that id
  308. */
  309. const char *fdtdec_get_compatible(enum fdt_compat_id id);
  310. /* Look up a phandle and follow it to its node. Then return the offset
  311. * of that node.
  312. *
  313. * @param blob FDT blob
  314. * @param node node to examine
  315. * @param prop_name name of property to find
  316. * @return node offset if found, -ve error code on error
  317. */
  318. int fdtdec_lookup_phandle(const void *blob, int node, const char *prop_name);
  319. /**
  320. * Look up a property in a node and return its contents in an integer
  321. * array of given length. The property must have at least enough data for
  322. * the array (4*count bytes). It may have more, but this will be ignored.
  323. *
  324. * @param blob FDT blob
  325. * @param node node to examine
  326. * @param prop_name name of property to find
  327. * @param array array to fill with data
  328. * @param count number of array elements
  329. * @return 0 if ok, or -FDT_ERR_NOTFOUND if the property is not found,
  330. * or -FDT_ERR_BADLAYOUT if not enough data
  331. */
  332. int fdtdec_get_int_array(const void *blob, int node, const char *prop_name,
  333. u32 *array, int count);
  334. /**
  335. * Look up a property in a node and return a pointer to its contents as a
  336. * unsigned int array of given length. The property must have at least enough
  337. * data for the array ('count' cells). It may have more, but this will be
  338. * ignored. The data is not copied.
  339. *
  340. * Note that you must access elements of the array with fdt32_to_cpu(),
  341. * since the elements will be big endian even on a little endian machine.
  342. *
  343. * @param blob FDT blob
  344. * @param node node to examine
  345. * @param prop_name name of property to find
  346. * @param count number of array elements
  347. * @return pointer to array if found, or NULL if the property is not
  348. * found or there is not enough data
  349. */
  350. const u32 *fdtdec_locate_array(const void *blob, int node,
  351. const char *prop_name, int count);
  352. /**
  353. * Look up a boolean property in a node and return it.
  354. *
  355. * A boolean properly is true if present in the device tree and false if not
  356. * present, regardless of its value.
  357. *
  358. * @param blob FDT blob
  359. * @param node node to examine
  360. * @param prop_name name of property to find
  361. * @return 1 if the properly is present; 0 if it isn't present
  362. */
  363. int fdtdec_get_bool(const void *blob, int node, const char *prop_name);
  364. /**
  365. * Decode a single GPIOs from an FDT.
  366. *
  367. * If the property is not found, then the GPIO structure will still be
  368. * initialised, with gpio set to FDT_GPIO_NONE. This makes it easy to
  369. * provide optional GPIOs.
  370. *
  371. * @param blob FDT blob to use
  372. * @param node Node to look at
  373. * @param prop_name Node property name
  374. * @param gpio gpio elements to fill from FDT
  375. * @return 0 if ok, -FDT_ERR_NOTFOUND if the property is missing.
  376. */
  377. int fdtdec_decode_gpio(const void *blob, int node, const char *prop_name,
  378. struct fdt_gpio_state *gpio);
  379. /**
  380. * Decode a list of GPIOs from an FDT. This creates a list of GPIOs with no
  381. * terminating item.
  382. *
  383. * @param blob FDT blob to use
  384. * @param node Node to look at
  385. * @param prop_name Node property name
  386. * @param gpio Array of gpio elements to fill from FDT. This will be
  387. * untouched if either 0 or an error is returned
  388. * @param max_count Maximum number of elements allowed
  389. * @return number of GPIOs read if ok, -FDT_ERR_BADLAYOUT if max_count would
  390. * be exceeded, or -FDT_ERR_NOTFOUND if the property is missing.
  391. */
  392. int fdtdec_decode_gpios(const void *blob, int node, const char *prop_name,
  393. struct fdt_gpio_state *gpio, int max_count);
  394. /**
  395. * Set up a GPIO pin according to the provided gpio information. At present this
  396. * just requests the GPIO.
  397. *
  398. * If the gpio is FDT_GPIO_NONE, no action is taken. This makes it easy to
  399. * deal with optional GPIOs.
  400. *
  401. * @param gpio GPIO info to use for set up
  402. * @return 0 if all ok or gpio was FDT_GPIO_NONE; -1 on error
  403. */
  404. int fdtdec_setup_gpio(struct fdt_gpio_state *gpio);
  405. /**
  406. * Look in the FDT for a config item with the given name and return its value
  407. * as a 32-bit integer. The property must have at least 4 bytes of data. The
  408. * value of the first cell is returned.
  409. *
  410. * @param blob FDT blob to use
  411. * @param prop_name Node property name
  412. * @param default_val default value to return if the property is not found
  413. * @return integer value, if found, or default_val if not
  414. */
  415. int fdtdec_get_config_int(const void *blob, const char *prop_name,
  416. int default_val);
  417. /**
  418. * Look in the FDT for a config item with the given name
  419. * and return whether it exists.
  420. *
  421. * @param blob FDT blob
  422. * @param prop_name property name to look up
  423. * @return 1, if it exists, or 0 if not
  424. */
  425. int fdtdec_get_config_bool(const void *blob, const char *prop_name);
  426. /**
  427. * Look in the FDT for a config item with the given name and return its value
  428. * as a string.
  429. *
  430. * @param blob FDT blob
  431. * @param prop_name property name to look up
  432. * @returns property string, NULL on error.
  433. */
  434. char *fdtdec_get_config_string(const void *blob, const char *prop_name);
  435. /*
  436. * Look up a property in a node and return its contents in a byte
  437. * array of given length. The property must have at least enough data for
  438. * the array (count bytes). It may have more, but this will be ignored.
  439. *
  440. * @param blob FDT blob
  441. * @param node node to examine
  442. * @param prop_name name of property to find
  443. * @param array array to fill with data
  444. * @param count number of array elements
  445. * @return 0 if ok, or -FDT_ERR_MISSING if the property is not found,
  446. * or -FDT_ERR_BADLAYOUT if not enough data
  447. */
  448. int fdtdec_get_byte_array(const void *blob, int node, const char *prop_name,
  449. u8 *array, int count);
  450. /**
  451. * Look up a property in a node and return a pointer to its contents as a
  452. * byte array of given length. The property must have at least enough data
  453. * for the array (count bytes). It may have more, but this will be ignored.
  454. * The data is not copied.
  455. *
  456. * @param blob FDT blob
  457. * @param node node to examine
  458. * @param prop_name name of property to find
  459. * @param count number of array elements
  460. * @return pointer to byte array if found, or NULL if the property is not
  461. * found or there is not enough data
  462. */
  463. const u8 *fdtdec_locate_byte_array(const void *blob, int node,
  464. const char *prop_name, int count);
  465. /**
  466. * Look up a property in a node which contains a memory region address and
  467. * size. Then return a pointer to this address.
  468. *
  469. * The property must hold one address with a length. This is only tested on
  470. * 32-bit machines.
  471. *
  472. * @param blob FDT blob
  473. * @param node node to examine
  474. * @param prop_name name of property to find
  475. * @param ptrp returns pointer to region, or NULL if no address
  476. * @param size returns size of region
  477. * @return 0 if ok, -1 on error (propery not found)
  478. */
  479. int fdtdec_decode_region(const void *blob, int node,
  480. const char *prop_name, void **ptrp, size_t *size);
  481. #endif