fdt_support.c 47 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. /*
  3. * (C) Copyright 2007
  4. * Gerald Van Baren, Custom IDEAS, vanbaren@cideas.com
  5. *
  6. * Copyright 2010-2011 Freescale Semiconductor, Inc.
  7. */
  8. #include <common.h>
  9. #include <env.h>
  10. #include <log.h>
  11. #include <mapmem.h>
  12. #include <net.h>
  13. #include <stdio_dev.h>
  14. #include <linux/ctype.h>
  15. #include <linux/types.h>
  16. #include <asm/global_data.h>
  17. #include <linux/libfdt.h>
  18. #include <fdt_support.h>
  19. #include <exports.h>
  20. #include <fdtdec.h>
  21. /**
  22. * fdt_getprop_u32_default_node - Return a node's property or a default
  23. *
  24. * @fdt: ptr to device tree
  25. * @off: offset of node
  26. * @cell: cell offset in property
  27. * @prop: property name
  28. * @dflt: default value if the property isn't found
  29. *
  30. * Convenience function to return a node's property or a default value if
  31. * the property doesn't exist.
  32. */
  33. u32 fdt_getprop_u32_default_node(const void *fdt, int off, int cell,
  34. const char *prop, const u32 dflt)
  35. {
  36. const fdt32_t *val;
  37. int len;
  38. val = fdt_getprop(fdt, off, prop, &len);
  39. /* Check if property exists */
  40. if (!val)
  41. return dflt;
  42. /* Check if property is long enough */
  43. if (len < ((cell + 1) * sizeof(uint32_t)))
  44. return dflt;
  45. return fdt32_to_cpu(*val);
  46. }
  47. /**
  48. * fdt_getprop_u32_default - Find a node and return it's property or a default
  49. *
  50. * @fdt: ptr to device tree
  51. * @path: path of node
  52. * @prop: property name
  53. * @dflt: default value if the property isn't found
  54. *
  55. * Convenience function to find a node and return it's property or a
  56. * default value if it doesn't exist.
  57. */
  58. u32 fdt_getprop_u32_default(const void *fdt, const char *path,
  59. const char *prop, const u32 dflt)
  60. {
  61. int off;
  62. off = fdt_path_offset(fdt, path);
  63. if (off < 0)
  64. return dflt;
  65. return fdt_getprop_u32_default_node(fdt, off, 0, prop, dflt);
  66. }
  67. /**
  68. * fdt_find_and_setprop: Find a node and set it's property
  69. *
  70. * @fdt: ptr to device tree
  71. * @node: path of node
  72. * @prop: property name
  73. * @val: ptr to new value
  74. * @len: length of new property value
  75. * @create: flag to create the property if it doesn't exist
  76. *
  77. * Convenience function to directly set a property given the path to the node.
  78. */
  79. int fdt_find_and_setprop(void *fdt, const char *node, const char *prop,
  80. const void *val, int len, int create)
  81. {
  82. int nodeoff = fdt_path_offset(fdt, node);
  83. if (nodeoff < 0)
  84. return nodeoff;
  85. if ((!create) && (fdt_get_property(fdt, nodeoff, prop, NULL) == NULL))
  86. return 0; /* create flag not set; so exit quietly */
  87. return fdt_setprop(fdt, nodeoff, prop, val, len);
  88. }
  89. /**
  90. * fdt_find_or_add_subnode() - find or possibly add a subnode of a given node
  91. *
  92. * @fdt: pointer to the device tree blob
  93. * @parentoffset: structure block offset of a node
  94. * @name: name of the subnode to locate
  95. *
  96. * fdt_subnode_offset() finds a subnode of the node with a given name.
  97. * If the subnode does not exist, it will be created.
  98. */
  99. int fdt_find_or_add_subnode(void *fdt, int parentoffset, const char *name)
  100. {
  101. int offset;
  102. offset = fdt_subnode_offset(fdt, parentoffset, name);
  103. if (offset == -FDT_ERR_NOTFOUND)
  104. offset = fdt_add_subnode(fdt, parentoffset, name);
  105. if (offset < 0)
  106. printf("%s: %s: %s\n", __func__, name, fdt_strerror(offset));
  107. return offset;
  108. }
  109. #if defined(CONFIG_OF_STDOUT_VIA_ALIAS) && defined(CONFIG_CONS_INDEX)
  110. static int fdt_fixup_stdout(void *fdt, int chosenoff)
  111. {
  112. int err;
  113. int aliasoff;
  114. char sername[9] = { 0 };
  115. const void *path;
  116. int len;
  117. char tmp[256]; /* long enough */
  118. sprintf(sername, "serial%d", CONFIG_CONS_INDEX - 1);
  119. aliasoff = fdt_path_offset(fdt, "/aliases");
  120. if (aliasoff < 0) {
  121. err = aliasoff;
  122. goto noalias;
  123. }
  124. path = fdt_getprop(fdt, aliasoff, sername, &len);
  125. if (!path) {
  126. err = len;
  127. goto noalias;
  128. }
  129. /* fdt_setprop may break "path" so we copy it to tmp buffer */
  130. memcpy(tmp, path, len);
  131. err = fdt_setprop(fdt, chosenoff, "linux,stdout-path", tmp, len);
  132. if (err < 0)
  133. printf("WARNING: could not set linux,stdout-path %s.\n",
  134. fdt_strerror(err));
  135. return err;
  136. noalias:
  137. printf("WARNING: %s: could not read %s alias: %s\n",
  138. __func__, sername, fdt_strerror(err));
  139. return 0;
  140. }
  141. #else
  142. static int fdt_fixup_stdout(void *fdt, int chosenoff)
  143. {
  144. return 0;
  145. }
  146. #endif
  147. static inline int fdt_setprop_uxx(void *fdt, int nodeoffset, const char *name,
  148. uint64_t val, int is_u64)
  149. {
  150. if (is_u64)
  151. return fdt_setprop_u64(fdt, nodeoffset, name, val);
  152. else
  153. return fdt_setprop_u32(fdt, nodeoffset, name, (uint32_t)val);
  154. }
  155. int fdt_root(void *fdt)
  156. {
  157. char *serial;
  158. int err;
  159. err = fdt_check_header(fdt);
  160. if (err < 0) {
  161. printf("fdt_root: %s\n", fdt_strerror(err));
  162. return err;
  163. }
  164. serial = env_get("serial#");
  165. if (serial) {
  166. err = fdt_setprop(fdt, 0, "serial-number", serial,
  167. strlen(serial) + 1);
  168. if (err < 0) {
  169. printf("WARNING: could not set serial-number %s.\n",
  170. fdt_strerror(err));
  171. return err;
  172. }
  173. }
  174. return 0;
  175. }
  176. int fdt_initrd(void *fdt, ulong initrd_start, ulong initrd_end)
  177. {
  178. int nodeoffset;
  179. int err, j, total;
  180. int is_u64;
  181. uint64_t addr, size;
  182. /* just return if the size of initrd is zero */
  183. if (initrd_start == initrd_end)
  184. return 0;
  185. /* find or create "/chosen" node. */
  186. nodeoffset = fdt_find_or_add_subnode(fdt, 0, "chosen");
  187. if (nodeoffset < 0)
  188. return nodeoffset;
  189. total = fdt_num_mem_rsv(fdt);
  190. /*
  191. * Look for an existing entry and update it. If we don't find
  192. * the entry, we will j be the next available slot.
  193. */
  194. for (j = 0; j < total; j++) {
  195. err = fdt_get_mem_rsv(fdt, j, &addr, &size);
  196. if (addr == initrd_start) {
  197. fdt_del_mem_rsv(fdt, j);
  198. break;
  199. }
  200. }
  201. err = fdt_add_mem_rsv(fdt, initrd_start, initrd_end - initrd_start);
  202. if (err < 0) {
  203. printf("fdt_initrd: %s\n", fdt_strerror(err));
  204. return err;
  205. }
  206. is_u64 = (fdt_address_cells(fdt, 0) == 2);
  207. err = fdt_setprop_uxx(fdt, nodeoffset, "linux,initrd-start",
  208. (uint64_t)initrd_start, is_u64);
  209. if (err < 0) {
  210. printf("WARNING: could not set linux,initrd-start %s.\n",
  211. fdt_strerror(err));
  212. return err;
  213. }
  214. err = fdt_setprop_uxx(fdt, nodeoffset, "linux,initrd-end",
  215. (uint64_t)initrd_end, is_u64);
  216. if (err < 0) {
  217. printf("WARNING: could not set linux,initrd-end %s.\n",
  218. fdt_strerror(err));
  219. return err;
  220. }
  221. return 0;
  222. }
  223. /**
  224. * board_fdt_chosen_bootargs - boards may override this function to use
  225. * alternative kernel command line arguments
  226. */
  227. __weak char *board_fdt_chosen_bootargs(void)
  228. {
  229. return env_get("bootargs");
  230. }
  231. int fdt_chosen(void *fdt)
  232. {
  233. int nodeoffset;
  234. int err;
  235. char *str; /* used to set string properties */
  236. err = fdt_check_header(fdt);
  237. if (err < 0) {
  238. printf("fdt_chosen: %s\n", fdt_strerror(err));
  239. return err;
  240. }
  241. /* find or create "/chosen" node. */
  242. nodeoffset = fdt_find_or_add_subnode(fdt, 0, "chosen");
  243. if (nodeoffset < 0)
  244. return nodeoffset;
  245. str = board_fdt_chosen_bootargs();
  246. if (str) {
  247. err = fdt_setprop(fdt, nodeoffset, "bootargs", str,
  248. strlen(str) + 1);
  249. if (err < 0) {
  250. printf("WARNING: could not set bootargs %s.\n",
  251. fdt_strerror(err));
  252. return err;
  253. }
  254. }
  255. return fdt_fixup_stdout(fdt, nodeoffset);
  256. }
  257. void do_fixup_by_path(void *fdt, const char *path, const char *prop,
  258. const void *val, int len, int create)
  259. {
  260. #if defined(DEBUG)
  261. int i;
  262. debug("Updating property '%s/%s' = ", path, prop);
  263. for (i = 0; i < len; i++)
  264. debug(" %.2x", *(u8*)(val+i));
  265. debug("\n");
  266. #endif
  267. int rc = fdt_find_and_setprop(fdt, path, prop, val, len, create);
  268. if (rc)
  269. printf("Unable to update property %s:%s, err=%s\n",
  270. path, prop, fdt_strerror(rc));
  271. }
  272. void do_fixup_by_path_u32(void *fdt, const char *path, const char *prop,
  273. u32 val, int create)
  274. {
  275. fdt32_t tmp = cpu_to_fdt32(val);
  276. do_fixup_by_path(fdt, path, prop, &tmp, sizeof(tmp), create);
  277. }
  278. void do_fixup_by_prop(void *fdt,
  279. const char *pname, const void *pval, int plen,
  280. const char *prop, const void *val, int len,
  281. int create)
  282. {
  283. int off;
  284. #if defined(DEBUG)
  285. int i;
  286. debug("Updating property '%s' = ", prop);
  287. for (i = 0; i < len; i++)
  288. debug(" %.2x", *(u8*)(val+i));
  289. debug("\n");
  290. #endif
  291. off = fdt_node_offset_by_prop_value(fdt, -1, pname, pval, plen);
  292. while (off != -FDT_ERR_NOTFOUND) {
  293. if (create || (fdt_get_property(fdt, off, prop, NULL) != NULL))
  294. fdt_setprop(fdt, off, prop, val, len);
  295. off = fdt_node_offset_by_prop_value(fdt, off, pname, pval, plen);
  296. }
  297. }
  298. void do_fixup_by_prop_u32(void *fdt,
  299. const char *pname, const void *pval, int plen,
  300. const char *prop, u32 val, int create)
  301. {
  302. fdt32_t tmp = cpu_to_fdt32(val);
  303. do_fixup_by_prop(fdt, pname, pval, plen, prop, &tmp, 4, create);
  304. }
  305. void do_fixup_by_compat(void *fdt, const char *compat,
  306. const char *prop, const void *val, int len, int create)
  307. {
  308. int off = -1;
  309. #if defined(DEBUG)
  310. int i;
  311. debug("Updating property '%s' = ", prop);
  312. for (i = 0; i < len; i++)
  313. debug(" %.2x", *(u8*)(val+i));
  314. debug("\n");
  315. #endif
  316. off = fdt_node_offset_by_compatible(fdt, -1, compat);
  317. while (off != -FDT_ERR_NOTFOUND) {
  318. if (create || (fdt_get_property(fdt, off, prop, NULL) != NULL))
  319. fdt_setprop(fdt, off, prop, val, len);
  320. off = fdt_node_offset_by_compatible(fdt, off, compat);
  321. }
  322. }
  323. void do_fixup_by_compat_u32(void *fdt, const char *compat,
  324. const char *prop, u32 val, int create)
  325. {
  326. fdt32_t tmp = cpu_to_fdt32(val);
  327. do_fixup_by_compat(fdt, compat, prop, &tmp, 4, create);
  328. }
  329. #ifdef CONFIG_ARCH_FIXUP_FDT_MEMORY
  330. /*
  331. * fdt_pack_reg - pack address and size array into the "reg"-suitable stream
  332. */
  333. static int fdt_pack_reg(const void *fdt, void *buf, u64 *address, u64 *size,
  334. int n)
  335. {
  336. int i;
  337. int address_cells = fdt_address_cells(fdt, 0);
  338. int size_cells = fdt_size_cells(fdt, 0);
  339. char *p = buf;
  340. for (i = 0; i < n; i++) {
  341. if (address_cells == 2)
  342. *(fdt64_t *)p = cpu_to_fdt64(address[i]);
  343. else
  344. *(fdt32_t *)p = cpu_to_fdt32(address[i]);
  345. p += 4 * address_cells;
  346. if (size_cells == 2)
  347. *(fdt64_t *)p = cpu_to_fdt64(size[i]);
  348. else
  349. *(fdt32_t *)p = cpu_to_fdt32(size[i]);
  350. p += 4 * size_cells;
  351. }
  352. return p - (char *)buf;
  353. }
  354. #if CONFIG_NR_DRAM_BANKS > 4
  355. #define MEMORY_BANKS_MAX CONFIG_NR_DRAM_BANKS
  356. #else
  357. #define MEMORY_BANKS_MAX 4
  358. #endif
  359. int fdt_fixup_memory_banks(void *blob, u64 start[], u64 size[], int banks)
  360. {
  361. int err, nodeoffset;
  362. int len, i;
  363. u8 tmp[MEMORY_BANKS_MAX * 16]; /* Up to 64-bit address + 64-bit size */
  364. if (banks > MEMORY_BANKS_MAX) {
  365. printf("%s: num banks %d exceeds hardcoded limit %d."
  366. " Recompile with higher MEMORY_BANKS_MAX?\n",
  367. __FUNCTION__, banks, MEMORY_BANKS_MAX);
  368. return -1;
  369. }
  370. err = fdt_check_header(blob);
  371. if (err < 0) {
  372. printf("%s: %s\n", __FUNCTION__, fdt_strerror(err));
  373. return err;
  374. }
  375. /* find or create "/memory" node. */
  376. nodeoffset = fdt_find_or_add_subnode(blob, 0, "memory");
  377. if (nodeoffset < 0)
  378. return nodeoffset;
  379. err = fdt_setprop(blob, nodeoffset, "device_type", "memory",
  380. sizeof("memory"));
  381. if (err < 0) {
  382. printf("WARNING: could not set %s %s.\n", "device_type",
  383. fdt_strerror(err));
  384. return err;
  385. }
  386. for (i = 0; i < banks; i++) {
  387. if (start[i] == 0 && size[i] == 0)
  388. break;
  389. }
  390. banks = i;
  391. if (!banks)
  392. return 0;
  393. len = fdt_pack_reg(blob, tmp, start, size, banks);
  394. err = fdt_setprop(blob, nodeoffset, "reg", tmp, len);
  395. if (err < 0) {
  396. printf("WARNING: could not set %s %s.\n",
  397. "reg", fdt_strerror(err));
  398. return err;
  399. }
  400. return 0;
  401. }
  402. int fdt_set_usable_memory(void *blob, u64 start[], u64 size[], int areas)
  403. {
  404. int err, nodeoffset;
  405. int len;
  406. u8 tmp[8 * 16]; /* Up to 64-bit address + 64-bit size */
  407. if (areas > 8) {
  408. printf("%s: num areas %d exceeds hardcoded limit %d\n",
  409. __func__, areas, 8);
  410. return -1;
  411. }
  412. err = fdt_check_header(blob);
  413. if (err < 0) {
  414. printf("%s: %s\n", __func__, fdt_strerror(err));
  415. return err;
  416. }
  417. /* find or create "/memory" node. */
  418. nodeoffset = fdt_find_or_add_subnode(blob, 0, "memory");
  419. if (nodeoffset < 0)
  420. return nodeoffset;
  421. len = fdt_pack_reg(blob, tmp, start, size, areas);
  422. err = fdt_setprop(blob, nodeoffset, "linux,usable-memory", tmp, len);
  423. if (err < 0) {
  424. printf("WARNING: could not set %s %s.\n",
  425. "reg", fdt_strerror(err));
  426. return err;
  427. }
  428. return 0;
  429. }
  430. #endif
  431. int fdt_fixup_memory(void *blob, u64 start, u64 size)
  432. {
  433. return fdt_fixup_memory_banks(blob, &start, &size, 1);
  434. }
  435. void fdt_fixup_ethernet(void *fdt)
  436. {
  437. int i = 0, j, prop;
  438. char *tmp, *end;
  439. char mac[16];
  440. const char *path;
  441. unsigned char mac_addr[ARP_HLEN];
  442. int offset;
  443. #ifdef FDT_SEQ_MACADDR_FROM_ENV
  444. int nodeoff;
  445. const struct fdt_property *fdt_prop;
  446. #endif
  447. if (fdt_path_offset(fdt, "/aliases") < 0)
  448. return;
  449. /* Cycle through all aliases */
  450. for (prop = 0; ; prop++) {
  451. const char *name;
  452. /* FDT might have been edited, recompute the offset */
  453. offset = fdt_first_property_offset(fdt,
  454. fdt_path_offset(fdt, "/aliases"));
  455. /* Select property number 'prop' */
  456. for (j = 0; j < prop; j++)
  457. offset = fdt_next_property_offset(fdt, offset);
  458. if (offset < 0)
  459. break;
  460. path = fdt_getprop_by_offset(fdt, offset, &name, NULL);
  461. if (!strncmp(name, "ethernet", 8)) {
  462. /* Treat plain "ethernet" same as "ethernet0". */
  463. if (!strcmp(name, "ethernet")
  464. #ifdef FDT_SEQ_MACADDR_FROM_ENV
  465. || !strcmp(name, "ethernet0")
  466. #endif
  467. )
  468. i = 0;
  469. #ifndef FDT_SEQ_MACADDR_FROM_ENV
  470. else
  471. i = trailing_strtol(name);
  472. #endif
  473. if (i != -1) {
  474. if (i == 0)
  475. strcpy(mac, "ethaddr");
  476. else
  477. sprintf(mac, "eth%daddr", i);
  478. } else {
  479. continue;
  480. }
  481. #ifdef FDT_SEQ_MACADDR_FROM_ENV
  482. nodeoff = fdt_path_offset(fdt, path);
  483. fdt_prop = fdt_get_property(fdt, nodeoff, "status",
  484. NULL);
  485. if (fdt_prop && !strcmp(fdt_prop->data, "disabled"))
  486. continue;
  487. i++;
  488. #endif
  489. tmp = env_get(mac);
  490. if (!tmp)
  491. continue;
  492. for (j = 0; j < 6; j++) {
  493. mac_addr[j] = tmp ?
  494. hextoul(tmp, &end) : 0;
  495. if (tmp)
  496. tmp = (*end) ? end + 1 : end;
  497. }
  498. do_fixup_by_path(fdt, path, "mac-address",
  499. &mac_addr, 6, 0);
  500. do_fixup_by_path(fdt, path, "local-mac-address",
  501. &mac_addr, 6, 1);
  502. }
  503. }
  504. }
  505. int fdt_record_loadable(void *blob, u32 index, const char *name,
  506. uintptr_t load_addr, u32 size, uintptr_t entry_point,
  507. const char *type, const char *os, const char *arch)
  508. {
  509. int err, node;
  510. err = fdt_check_header(blob);
  511. if (err < 0) {
  512. printf("%s: %s\n", __func__, fdt_strerror(err));
  513. return err;
  514. }
  515. /* find or create "/fit-images" node */
  516. node = fdt_find_or_add_subnode(blob, 0, "fit-images");
  517. if (node < 0)
  518. return node;
  519. /* find or create "/fit-images/<name>" node */
  520. node = fdt_find_or_add_subnode(blob, node, name);
  521. if (node < 0)
  522. return node;
  523. fdt_setprop_u64(blob, node, "load", load_addr);
  524. if (entry_point != -1)
  525. fdt_setprop_u64(blob, node, "entry", entry_point);
  526. fdt_setprop_u32(blob, node, "size", size);
  527. if (type)
  528. fdt_setprop_string(blob, node, "type", type);
  529. if (os)
  530. fdt_setprop_string(blob, node, "os", os);
  531. if (arch)
  532. fdt_setprop_string(blob, node, "arch", arch);
  533. return node;
  534. }
  535. /* Resize the fdt to its actual size + a bit of padding */
  536. int fdt_shrink_to_minimum(void *blob, uint extrasize)
  537. {
  538. int i;
  539. uint64_t addr, size;
  540. int total, ret;
  541. uint actualsize;
  542. int fdt_memrsv = 0;
  543. if (!blob)
  544. return 0;
  545. total = fdt_num_mem_rsv(blob);
  546. for (i = 0; i < total; i++) {
  547. fdt_get_mem_rsv(blob, i, &addr, &size);
  548. if (addr == (uintptr_t)blob) {
  549. fdt_del_mem_rsv(blob, i);
  550. fdt_memrsv = 1;
  551. break;
  552. }
  553. }
  554. /*
  555. * Calculate the actual size of the fdt
  556. * plus the size needed for 5 fdt_add_mem_rsv, one
  557. * for the fdt itself and 4 for a possible initrd
  558. * ((initrd-start + initrd-end) * 2 (name & value))
  559. */
  560. actualsize = fdt_off_dt_strings(blob) +
  561. fdt_size_dt_strings(blob) + 5 * sizeof(struct fdt_reserve_entry);
  562. actualsize += extrasize;
  563. /* Make it so the fdt ends on a page boundary */
  564. actualsize = ALIGN(actualsize + ((uintptr_t)blob & 0xfff), 0x1000);
  565. actualsize = actualsize - ((uintptr_t)blob & 0xfff);
  566. /* Change the fdt header to reflect the correct size */
  567. fdt_set_totalsize(blob, actualsize);
  568. if (fdt_memrsv) {
  569. /* Add the new reservation */
  570. ret = fdt_add_mem_rsv(blob, map_to_sysmem(blob), actualsize);
  571. if (ret < 0)
  572. return ret;
  573. }
  574. return actualsize;
  575. }
  576. #ifdef CONFIG_PCI
  577. #define CONFIG_SYS_PCI_NR_INBOUND_WIN 4
  578. #define FDT_PCI_PREFETCH (0x40000000)
  579. #define FDT_PCI_MEM32 (0x02000000)
  580. #define FDT_PCI_IO (0x01000000)
  581. #define FDT_PCI_MEM64 (0x03000000)
  582. int fdt_pci_dma_ranges(void *blob, int phb_off, struct pci_controller *hose) {
  583. int addrcell, sizecell, len, r;
  584. u32 *dma_range;
  585. /* sized based on pci addr cells, size-cells, & address-cells */
  586. u32 dma_ranges[(3 + 2 + 2) * CONFIG_SYS_PCI_NR_INBOUND_WIN];
  587. addrcell = fdt_getprop_u32_default(blob, "/", "#address-cells", 1);
  588. sizecell = fdt_getprop_u32_default(blob, "/", "#size-cells", 1);
  589. dma_range = &dma_ranges[0];
  590. for (r = 0; r < hose->region_count; r++) {
  591. u64 bus_start, phys_start, size;
  592. /* skip if !PCI_REGION_SYS_MEMORY */
  593. if (!(hose->regions[r].flags & PCI_REGION_SYS_MEMORY))
  594. continue;
  595. bus_start = (u64)hose->regions[r].bus_start;
  596. phys_start = (u64)hose->regions[r].phys_start;
  597. size = (u64)hose->regions[r].size;
  598. dma_range[0] = 0;
  599. if (size >= 0x100000000ull)
  600. dma_range[0] |= cpu_to_fdt32(FDT_PCI_MEM64);
  601. else
  602. dma_range[0] |= cpu_to_fdt32(FDT_PCI_MEM32);
  603. if (hose->regions[r].flags & PCI_REGION_PREFETCH)
  604. dma_range[0] |= cpu_to_fdt32(FDT_PCI_PREFETCH);
  605. #ifdef CONFIG_SYS_PCI_64BIT
  606. dma_range[1] = cpu_to_fdt32(bus_start >> 32);
  607. #else
  608. dma_range[1] = 0;
  609. #endif
  610. dma_range[2] = cpu_to_fdt32(bus_start & 0xffffffff);
  611. if (addrcell == 2) {
  612. dma_range[3] = cpu_to_fdt32(phys_start >> 32);
  613. dma_range[4] = cpu_to_fdt32(phys_start & 0xffffffff);
  614. } else {
  615. dma_range[3] = cpu_to_fdt32(phys_start & 0xffffffff);
  616. }
  617. if (sizecell == 2) {
  618. dma_range[3 + addrcell + 0] =
  619. cpu_to_fdt32(size >> 32);
  620. dma_range[3 + addrcell + 1] =
  621. cpu_to_fdt32(size & 0xffffffff);
  622. } else {
  623. dma_range[3 + addrcell + 0] =
  624. cpu_to_fdt32(size & 0xffffffff);
  625. }
  626. dma_range += (3 + addrcell + sizecell);
  627. }
  628. len = dma_range - &dma_ranges[0];
  629. if (len)
  630. fdt_setprop(blob, phb_off, "dma-ranges", &dma_ranges[0], len*4);
  631. return 0;
  632. }
  633. #endif
  634. int fdt_increase_size(void *fdt, int add_len)
  635. {
  636. int newlen;
  637. newlen = fdt_totalsize(fdt) + add_len;
  638. /* Open in place with a new len */
  639. return fdt_open_into(fdt, fdt, newlen);
  640. }
  641. #ifdef CONFIG_FDT_FIXUP_PARTITIONS
  642. #include <jffs2/load_kernel.h>
  643. #include <mtd_node.h>
  644. static int fdt_del_subnodes(const void *blob, int parent_offset)
  645. {
  646. int off, ndepth;
  647. int ret;
  648. for (ndepth = 0, off = fdt_next_node(blob, parent_offset, &ndepth);
  649. (off >= 0) && (ndepth > 0);
  650. off = fdt_next_node(blob, off, &ndepth)) {
  651. if (ndepth == 1) {
  652. debug("delete %s: offset: %x\n",
  653. fdt_get_name(blob, off, 0), off);
  654. ret = fdt_del_node((void *)blob, off);
  655. if (ret < 0) {
  656. printf("Can't delete node: %s\n",
  657. fdt_strerror(ret));
  658. return ret;
  659. } else {
  660. ndepth = 0;
  661. off = parent_offset;
  662. }
  663. }
  664. }
  665. return 0;
  666. }
  667. static int fdt_del_partitions(void *blob, int parent_offset)
  668. {
  669. const void *prop;
  670. int ndepth = 0;
  671. int off;
  672. int ret;
  673. off = fdt_next_node(blob, parent_offset, &ndepth);
  674. if (off > 0 && ndepth == 1) {
  675. prop = fdt_getprop(blob, off, "label", NULL);
  676. if (prop == NULL) {
  677. /*
  678. * Could not find label property, nand {}; node?
  679. * Check subnode, delete partitions there if any.
  680. */
  681. return fdt_del_partitions(blob, off);
  682. } else {
  683. ret = fdt_del_subnodes(blob, parent_offset);
  684. if (ret < 0) {
  685. printf("Can't remove subnodes: %s\n",
  686. fdt_strerror(ret));
  687. return ret;
  688. }
  689. }
  690. }
  691. return 0;
  692. }
  693. static int fdt_node_set_part_info(void *blob, int parent_offset,
  694. struct mtd_device *dev)
  695. {
  696. struct list_head *pentry;
  697. struct part_info *part;
  698. int off, ndepth = 0;
  699. int part_num, ret;
  700. int sizecell;
  701. char buf[64];
  702. ret = fdt_del_partitions(blob, parent_offset);
  703. if (ret < 0)
  704. return ret;
  705. /*
  706. * Check if size/address is 1 or 2 cells.
  707. * We assume #address-cells and #size-cells have same value.
  708. */
  709. sizecell = fdt_getprop_u32_default_node(blob, parent_offset,
  710. 0, "#size-cells", 1);
  711. /*
  712. * Check if it is nand {}; subnode, adjust
  713. * the offset in this case
  714. */
  715. off = fdt_next_node(blob, parent_offset, &ndepth);
  716. if (off > 0 && ndepth == 1)
  717. parent_offset = off;
  718. part_num = 0;
  719. list_for_each_prev(pentry, &dev->parts) {
  720. int newoff;
  721. part = list_entry(pentry, struct part_info, link);
  722. debug("%2d: %-20s0x%08llx\t0x%08llx\t%d\n",
  723. part_num, part->name, part->size,
  724. part->offset, part->mask_flags);
  725. sprintf(buf, "partition@%llx", part->offset);
  726. add_sub:
  727. ret = fdt_add_subnode(blob, parent_offset, buf);
  728. if (ret == -FDT_ERR_NOSPACE) {
  729. ret = fdt_increase_size(blob, 512);
  730. if (!ret)
  731. goto add_sub;
  732. else
  733. goto err_size;
  734. } else if (ret < 0) {
  735. printf("Can't add partition node: %s\n",
  736. fdt_strerror(ret));
  737. return ret;
  738. }
  739. newoff = ret;
  740. /* Check MTD_WRITEABLE_CMD flag */
  741. if (part->mask_flags & 1) {
  742. add_ro:
  743. ret = fdt_setprop(blob, newoff, "read_only", NULL, 0);
  744. if (ret == -FDT_ERR_NOSPACE) {
  745. ret = fdt_increase_size(blob, 512);
  746. if (!ret)
  747. goto add_ro;
  748. else
  749. goto err_size;
  750. } else if (ret < 0)
  751. goto err_prop;
  752. }
  753. add_reg:
  754. if (sizecell == 2) {
  755. ret = fdt_setprop_u64(blob, newoff,
  756. "reg", part->offset);
  757. if (!ret)
  758. ret = fdt_appendprop_u64(blob, newoff,
  759. "reg", part->size);
  760. } else {
  761. ret = fdt_setprop_u32(blob, newoff,
  762. "reg", part->offset);
  763. if (!ret)
  764. ret = fdt_appendprop_u32(blob, newoff,
  765. "reg", part->size);
  766. }
  767. if (ret == -FDT_ERR_NOSPACE) {
  768. ret = fdt_increase_size(blob, 512);
  769. if (!ret)
  770. goto add_reg;
  771. else
  772. goto err_size;
  773. } else if (ret < 0)
  774. goto err_prop;
  775. add_label:
  776. ret = fdt_setprop_string(blob, newoff, "label", part->name);
  777. if (ret == -FDT_ERR_NOSPACE) {
  778. ret = fdt_increase_size(blob, 512);
  779. if (!ret)
  780. goto add_label;
  781. else
  782. goto err_size;
  783. } else if (ret < 0)
  784. goto err_prop;
  785. part_num++;
  786. }
  787. return 0;
  788. err_size:
  789. printf("Can't increase blob size: %s\n", fdt_strerror(ret));
  790. return ret;
  791. err_prop:
  792. printf("Can't add property: %s\n", fdt_strerror(ret));
  793. return ret;
  794. }
  795. /*
  796. * Update partitions in nor/nand nodes using info from
  797. * mtdparts environment variable. The nodes to update are
  798. * specified by node_info structure which contains mtd device
  799. * type and compatible string: E. g. the board code in
  800. * ft_board_setup() could use:
  801. *
  802. * struct node_info nodes[] = {
  803. * { "fsl,mpc5121-nfc", MTD_DEV_TYPE_NAND, },
  804. * { "cfi-flash", MTD_DEV_TYPE_NOR, },
  805. * };
  806. *
  807. * fdt_fixup_mtdparts(blob, nodes, ARRAY_SIZE(nodes));
  808. */
  809. void fdt_fixup_mtdparts(void *blob, const struct node_info *node_info,
  810. int node_info_size)
  811. {
  812. struct mtd_device *dev;
  813. int i, idx;
  814. int noff;
  815. bool inited = false;
  816. for (i = 0; i < node_info_size; i++) {
  817. idx = 0;
  818. noff = -1;
  819. while ((noff = fdt_node_offset_by_compatible(blob, noff,
  820. node_info[i].compat)) >= 0) {
  821. const char *prop;
  822. prop = fdt_getprop(blob, noff, "status", NULL);
  823. if (prop && !strcmp(prop, "disabled"))
  824. continue;
  825. debug("%s: %s, mtd dev type %d\n",
  826. fdt_get_name(blob, noff, 0),
  827. node_info[i].compat, node_info[i].type);
  828. if (!inited) {
  829. if (mtdparts_init() != 0)
  830. return;
  831. inited = true;
  832. }
  833. dev = device_find(node_info[i].type, idx++);
  834. if (dev) {
  835. if (fdt_node_set_part_info(blob, noff, dev))
  836. return; /* return on error */
  837. }
  838. }
  839. }
  840. }
  841. #endif
  842. void fdt_del_node_and_alias(void *blob, const char *alias)
  843. {
  844. int off = fdt_path_offset(blob, alias);
  845. if (off < 0)
  846. return;
  847. fdt_del_node(blob, off);
  848. off = fdt_path_offset(blob, "/aliases");
  849. fdt_delprop(blob, off, alias);
  850. }
  851. /* Max address size we deal with */
  852. #define OF_MAX_ADDR_CELLS 4
  853. #define OF_BAD_ADDR FDT_ADDR_T_NONE
  854. #define OF_CHECK_COUNTS(na, ns) ((na) > 0 && (na) <= OF_MAX_ADDR_CELLS && \
  855. (ns) > 0)
  856. /* Debug utility */
  857. #ifdef DEBUG
  858. static void of_dump_addr(const char *s, const fdt32_t *addr, int na)
  859. {
  860. printf("%s", s);
  861. while(na--)
  862. printf(" %08x", *(addr++));
  863. printf("\n");
  864. }
  865. #else
  866. static void of_dump_addr(const char *s, const fdt32_t *addr, int na) { }
  867. #endif
  868. /**
  869. * struct of_bus - Callbacks for bus specific translators
  870. * @name: A string used to identify this bus in debug output.
  871. * @addresses: The name of the DT property from which addresses are
  872. * to be read, typically "reg".
  873. * @match: Return non-zero if the node whose parent is at
  874. * parentoffset in the FDT blob corresponds to a bus
  875. * of this type, otherwise return zero. If NULL a match
  876. * is assumed.
  877. * @count_cells:Count how many cells (be32 values) a node whose parent
  878. * is at parentoffset in the FDT blob will require to
  879. * represent its address (written to *addrc) & size
  880. * (written to *sizec).
  881. * @map: Map the address addr from the address space of this
  882. * bus to that of its parent, making use of the ranges
  883. * read from DT to an array at range. na and ns are the
  884. * number of cells (be32 values) used to hold and address
  885. * or size, respectively, for this bus. pna is the number
  886. * of cells used to hold an address for the parent bus.
  887. * Returns the address in the address space of the parent
  888. * bus.
  889. * @translate: Update the value of the address cells at addr within an
  890. * FDT by adding offset to it. na specifies the number of
  891. * cells used to hold the address being translated. Returns
  892. * zero on success, non-zero on error.
  893. *
  894. * Each bus type will include a struct of_bus in the of_busses array,
  895. * providing implementations of some or all of the functions used to
  896. * match the bus & handle address translation for its children.
  897. */
  898. struct of_bus {
  899. const char *name;
  900. const char *addresses;
  901. int (*match)(const void *blob, int parentoffset);
  902. void (*count_cells)(const void *blob, int parentoffset,
  903. int *addrc, int *sizec);
  904. u64 (*map)(fdt32_t *addr, const fdt32_t *range,
  905. int na, int ns, int pna);
  906. int (*translate)(fdt32_t *addr, u64 offset, int na);
  907. };
  908. /* Default translator (generic bus) */
  909. void fdt_support_default_count_cells(const void *blob, int parentoffset,
  910. int *addrc, int *sizec)
  911. {
  912. const fdt32_t *prop;
  913. if (addrc)
  914. *addrc = fdt_address_cells(blob, parentoffset);
  915. if (sizec) {
  916. prop = fdt_getprop(blob, parentoffset, "#size-cells", NULL);
  917. if (prop)
  918. *sizec = be32_to_cpup(prop);
  919. else
  920. *sizec = 1;
  921. }
  922. }
  923. static u64 of_bus_default_map(fdt32_t *addr, const fdt32_t *range,
  924. int na, int ns, int pna)
  925. {
  926. u64 cp, s, da;
  927. cp = fdt_read_number(range, na);
  928. s = fdt_read_number(range + na + pna, ns);
  929. da = fdt_read_number(addr, na);
  930. debug("OF: default map, cp=%llx, s=%llx, da=%llx\n", cp, s, da);
  931. if (da < cp || da >= (cp + s))
  932. return OF_BAD_ADDR;
  933. return da - cp;
  934. }
  935. static int of_bus_default_translate(fdt32_t *addr, u64 offset, int na)
  936. {
  937. u64 a = fdt_read_number(addr, na);
  938. memset(addr, 0, na * 4);
  939. a += offset;
  940. if (na > 1)
  941. addr[na - 2] = cpu_to_fdt32(a >> 32);
  942. addr[na - 1] = cpu_to_fdt32(a & 0xffffffffu);
  943. return 0;
  944. }
  945. #ifdef CONFIG_OF_ISA_BUS
  946. /* ISA bus translator */
  947. static int of_bus_isa_match(const void *blob, int parentoffset)
  948. {
  949. const char *name;
  950. name = fdt_get_name(blob, parentoffset, NULL);
  951. if (!name)
  952. return 0;
  953. return !strcmp(name, "isa");
  954. }
  955. static void of_bus_isa_count_cells(const void *blob, int parentoffset,
  956. int *addrc, int *sizec)
  957. {
  958. if (addrc)
  959. *addrc = 2;
  960. if (sizec)
  961. *sizec = 1;
  962. }
  963. static u64 of_bus_isa_map(fdt32_t *addr, const fdt32_t *range,
  964. int na, int ns, int pna)
  965. {
  966. u64 cp, s, da;
  967. /* Check address type match */
  968. if ((addr[0] ^ range[0]) & cpu_to_be32(1))
  969. return OF_BAD_ADDR;
  970. cp = fdt_read_number(range + 1, na - 1);
  971. s = fdt_read_number(range + na + pna, ns);
  972. da = fdt_read_number(addr + 1, na - 1);
  973. debug("OF: ISA map, cp=%llx, s=%llx, da=%llx\n", cp, s, da);
  974. if (da < cp || da >= (cp + s))
  975. return OF_BAD_ADDR;
  976. return da - cp;
  977. }
  978. static int of_bus_isa_translate(fdt32_t *addr, u64 offset, int na)
  979. {
  980. return of_bus_default_translate(addr + 1, offset, na - 1);
  981. }
  982. #endif /* CONFIG_OF_ISA_BUS */
  983. /* Array of bus specific translators */
  984. static struct of_bus of_busses[] = {
  985. #ifdef CONFIG_OF_ISA_BUS
  986. /* ISA */
  987. {
  988. .name = "isa",
  989. .addresses = "reg",
  990. .match = of_bus_isa_match,
  991. .count_cells = of_bus_isa_count_cells,
  992. .map = of_bus_isa_map,
  993. .translate = of_bus_isa_translate,
  994. },
  995. #endif /* CONFIG_OF_ISA_BUS */
  996. /* Default */
  997. {
  998. .name = "default",
  999. .addresses = "reg",
  1000. .count_cells = fdt_support_default_count_cells,
  1001. .map = of_bus_default_map,
  1002. .translate = of_bus_default_translate,
  1003. },
  1004. };
  1005. static struct of_bus *of_match_bus(const void *blob, int parentoffset)
  1006. {
  1007. struct of_bus *bus;
  1008. if (ARRAY_SIZE(of_busses) == 1)
  1009. return of_busses;
  1010. for (bus = of_busses; bus; bus++) {
  1011. if (!bus->match || bus->match(blob, parentoffset))
  1012. return bus;
  1013. }
  1014. /*
  1015. * We should always have matched the default bus at least, since
  1016. * it has a NULL match field. If we didn't then it somehow isn't
  1017. * in the of_busses array or something equally catastrophic has
  1018. * gone wrong.
  1019. */
  1020. assert(0);
  1021. return NULL;
  1022. }
  1023. static int of_translate_one(const void *blob, int parent, struct of_bus *bus,
  1024. struct of_bus *pbus, fdt32_t *addr,
  1025. int na, int ns, int pna, const char *rprop)
  1026. {
  1027. const fdt32_t *ranges;
  1028. int rlen;
  1029. int rone;
  1030. u64 offset = OF_BAD_ADDR;
  1031. /* Normally, an absence of a "ranges" property means we are
  1032. * crossing a non-translatable boundary, and thus the addresses
  1033. * below the current not cannot be converted to CPU physical ones.
  1034. * Unfortunately, while this is very clear in the spec, it's not
  1035. * what Apple understood, and they do have things like /uni-n or
  1036. * /ht nodes with no "ranges" property and a lot of perfectly
  1037. * useable mapped devices below them. Thus we treat the absence of
  1038. * "ranges" as equivalent to an empty "ranges" property which means
  1039. * a 1:1 translation at that level. It's up to the caller not to try
  1040. * to translate addresses that aren't supposed to be translated in
  1041. * the first place. --BenH.
  1042. */
  1043. ranges = fdt_getprop(blob, parent, rprop, &rlen);
  1044. if (ranges == NULL || rlen == 0) {
  1045. offset = fdt_read_number(addr, na);
  1046. memset(addr, 0, pna * 4);
  1047. debug("OF: no ranges, 1:1 translation\n");
  1048. goto finish;
  1049. }
  1050. debug("OF: walking ranges...\n");
  1051. /* Now walk through the ranges */
  1052. rlen /= 4;
  1053. rone = na + pna + ns;
  1054. for (; rlen >= rone; rlen -= rone, ranges += rone) {
  1055. offset = bus->map(addr, ranges, na, ns, pna);
  1056. if (offset != OF_BAD_ADDR)
  1057. break;
  1058. }
  1059. if (offset == OF_BAD_ADDR) {
  1060. debug("OF: not found !\n");
  1061. return 1;
  1062. }
  1063. memcpy(addr, ranges + na, 4 * pna);
  1064. finish:
  1065. of_dump_addr("OF: parent translation for:", addr, pna);
  1066. debug("OF: with offset: %llu\n", offset);
  1067. /* Translate it into parent bus space */
  1068. return pbus->translate(addr, offset, pna);
  1069. }
  1070. /*
  1071. * Translate an address from the device-tree into a CPU physical address,
  1072. * this walks up the tree and applies the various bus mappings on the
  1073. * way.
  1074. *
  1075. * Note: We consider that crossing any level with #size-cells == 0 to mean
  1076. * that translation is impossible (that is we are not dealing with a value
  1077. * that can be mapped to a cpu physical address). This is not really specified
  1078. * that way, but this is traditionally the way IBM at least do things
  1079. */
  1080. static u64 __of_translate_address(const void *blob, int node_offset,
  1081. const fdt32_t *in_addr, const char *rprop)
  1082. {
  1083. int parent;
  1084. struct of_bus *bus, *pbus;
  1085. fdt32_t addr[OF_MAX_ADDR_CELLS];
  1086. int na, ns, pna, pns;
  1087. u64 result = OF_BAD_ADDR;
  1088. debug("OF: ** translation for device %s **\n",
  1089. fdt_get_name(blob, node_offset, NULL));
  1090. /* Get parent & match bus type */
  1091. parent = fdt_parent_offset(blob, node_offset);
  1092. if (parent < 0)
  1093. goto bail;
  1094. bus = of_match_bus(blob, parent);
  1095. /* Cound address cells & copy address locally */
  1096. bus->count_cells(blob, parent, &na, &ns);
  1097. if (!OF_CHECK_COUNTS(na, ns)) {
  1098. printf("%s: Bad cell count for %s\n", __FUNCTION__,
  1099. fdt_get_name(blob, node_offset, NULL));
  1100. goto bail;
  1101. }
  1102. memcpy(addr, in_addr, na * 4);
  1103. debug("OF: bus is %s (na=%d, ns=%d) on %s\n",
  1104. bus->name, na, ns, fdt_get_name(blob, parent, NULL));
  1105. of_dump_addr("OF: translating address:", addr, na);
  1106. /* Translate */
  1107. for (;;) {
  1108. /* Switch to parent bus */
  1109. node_offset = parent;
  1110. parent = fdt_parent_offset(blob, node_offset);
  1111. /* If root, we have finished */
  1112. if (parent < 0) {
  1113. debug("OF: reached root node\n");
  1114. result = fdt_read_number(addr, na);
  1115. break;
  1116. }
  1117. /* Get new parent bus and counts */
  1118. pbus = of_match_bus(blob, parent);
  1119. pbus->count_cells(blob, parent, &pna, &pns);
  1120. if (!OF_CHECK_COUNTS(pna, pns)) {
  1121. printf("%s: Bad cell count for %s\n", __FUNCTION__,
  1122. fdt_get_name(blob, node_offset, NULL));
  1123. break;
  1124. }
  1125. debug("OF: parent bus is %s (na=%d, ns=%d) on %s\n",
  1126. pbus->name, pna, pns, fdt_get_name(blob, parent, NULL));
  1127. /* Apply bus translation */
  1128. if (of_translate_one(blob, node_offset, bus, pbus,
  1129. addr, na, ns, pna, rprop))
  1130. break;
  1131. /* Complete the move up one level */
  1132. na = pna;
  1133. ns = pns;
  1134. bus = pbus;
  1135. of_dump_addr("OF: one level translation:", addr, na);
  1136. }
  1137. bail:
  1138. return result;
  1139. }
  1140. u64 fdt_translate_address(const void *blob, int node_offset,
  1141. const fdt32_t *in_addr)
  1142. {
  1143. return __of_translate_address(blob, node_offset, in_addr, "ranges");
  1144. }
  1145. u64 fdt_translate_dma_address(const void *blob, int node_offset,
  1146. const fdt32_t *in_addr)
  1147. {
  1148. return __of_translate_address(blob, node_offset, in_addr, "dma-ranges");
  1149. }
  1150. int fdt_get_dma_range(const void *blob, int node, phys_addr_t *cpu,
  1151. dma_addr_t *bus, u64 *size)
  1152. {
  1153. bool found_dma_ranges = false;
  1154. struct of_bus *bus_node;
  1155. const fdt32_t *ranges;
  1156. int na, ns, pna, pns;
  1157. int parent = node;
  1158. int ret = 0;
  1159. int len;
  1160. /* Find the closest dma-ranges property */
  1161. while (parent >= 0) {
  1162. ranges = fdt_getprop(blob, parent, "dma-ranges", &len);
  1163. /* Ignore empty ranges, they imply no translation required */
  1164. if (ranges && len > 0)
  1165. break;
  1166. /* Once we find 'dma-ranges', then a missing one is an error */
  1167. if (found_dma_ranges && !ranges) {
  1168. ret = -EINVAL;
  1169. goto out;
  1170. }
  1171. if (ranges)
  1172. found_dma_ranges = true;
  1173. parent = fdt_parent_offset(blob, parent);
  1174. }
  1175. if (!ranges || parent < 0) {
  1176. debug("no dma-ranges found for node %s\n",
  1177. fdt_get_name(blob, node, NULL));
  1178. ret = -ENOENT;
  1179. goto out;
  1180. }
  1181. /* switch to that node */
  1182. node = parent;
  1183. parent = fdt_parent_offset(blob, node);
  1184. if (parent < 0) {
  1185. printf("Found dma-ranges in root node, shoudln't happen\n");
  1186. ret = -EINVAL;
  1187. goto out;
  1188. }
  1189. /* Get the address sizes both for the bus and its parent */
  1190. bus_node = of_match_bus(blob, node);
  1191. bus_node->count_cells(blob, node, &na, &ns);
  1192. if (!OF_CHECK_COUNTS(na, ns)) {
  1193. printf("%s: Bad cell count for %s\n", __FUNCTION__,
  1194. fdt_get_name(blob, node, NULL));
  1195. return -EINVAL;
  1196. goto out;
  1197. }
  1198. bus_node = of_match_bus(blob, parent);
  1199. bus_node->count_cells(blob, parent, &pna, &pns);
  1200. if (!OF_CHECK_COUNTS(pna, pns)) {
  1201. printf("%s: Bad cell count for %s\n", __FUNCTION__,
  1202. fdt_get_name(blob, parent, NULL));
  1203. return -EINVAL;
  1204. goto out;
  1205. }
  1206. *bus = fdt_read_number(ranges, na);
  1207. *cpu = fdt_translate_dma_address(blob, node, ranges + na);
  1208. *size = fdt_read_number(ranges + na + pna, ns);
  1209. out:
  1210. return ret;
  1211. }
  1212. /**
  1213. * fdt_node_offset_by_compat_reg: Find a node that matches compatiable and
  1214. * who's reg property matches a physical cpu address
  1215. *
  1216. * @blob: ptr to device tree
  1217. * @compat: compatiable string to match
  1218. * @compat_off: property name
  1219. *
  1220. */
  1221. int fdt_node_offset_by_compat_reg(void *blob, const char *compat,
  1222. phys_addr_t compat_off)
  1223. {
  1224. int len, off = fdt_node_offset_by_compatible(blob, -1, compat);
  1225. while (off != -FDT_ERR_NOTFOUND) {
  1226. const fdt32_t *reg = fdt_getprop(blob, off, "reg", &len);
  1227. if (reg) {
  1228. if (compat_off == fdt_translate_address(blob, off, reg))
  1229. return off;
  1230. }
  1231. off = fdt_node_offset_by_compatible(blob, off, compat);
  1232. }
  1233. return -FDT_ERR_NOTFOUND;
  1234. }
  1235. /**
  1236. * fdt_alloc_phandle: Return next free phandle value
  1237. *
  1238. * @blob: ptr to device tree
  1239. */
  1240. int fdt_alloc_phandle(void *blob)
  1241. {
  1242. int offset;
  1243. uint32_t phandle = 0;
  1244. for (offset = fdt_next_node(blob, -1, NULL); offset >= 0;
  1245. offset = fdt_next_node(blob, offset, NULL)) {
  1246. phandle = max(phandle, fdt_get_phandle(blob, offset));
  1247. }
  1248. return phandle + 1;
  1249. }
  1250. /*
  1251. * fdt_set_phandle: Create a phandle property for the given node
  1252. *
  1253. * @fdt: ptr to device tree
  1254. * @nodeoffset: node to update
  1255. * @phandle: phandle value to set (must be unique)
  1256. */
  1257. int fdt_set_phandle(void *fdt, int nodeoffset, uint32_t phandle)
  1258. {
  1259. int ret;
  1260. #ifdef DEBUG
  1261. int off = fdt_node_offset_by_phandle(fdt, phandle);
  1262. if ((off >= 0) && (off != nodeoffset)) {
  1263. char buf[64];
  1264. fdt_get_path(fdt, nodeoffset, buf, sizeof(buf));
  1265. printf("Trying to update node %s with phandle %u ",
  1266. buf, phandle);
  1267. fdt_get_path(fdt, off, buf, sizeof(buf));
  1268. printf("that already exists in node %s.\n", buf);
  1269. return -FDT_ERR_BADPHANDLE;
  1270. }
  1271. #endif
  1272. ret = fdt_setprop_cell(fdt, nodeoffset, "phandle", phandle);
  1273. if (ret < 0)
  1274. return ret;
  1275. /*
  1276. * For now, also set the deprecated "linux,phandle" property, so that we
  1277. * don't break older kernels.
  1278. */
  1279. ret = fdt_setprop_cell(fdt, nodeoffset, "linux,phandle", phandle);
  1280. return ret;
  1281. }
  1282. /*
  1283. * fdt_create_phandle: Create a phandle property for the given node
  1284. *
  1285. * @fdt: ptr to device tree
  1286. * @nodeoffset: node to update
  1287. */
  1288. unsigned int fdt_create_phandle(void *fdt, int nodeoffset)
  1289. {
  1290. /* see if there is a phandle already */
  1291. int phandle = fdt_get_phandle(fdt, nodeoffset);
  1292. /* if we got 0, means no phandle so create one */
  1293. if (phandle == 0) {
  1294. int ret;
  1295. phandle = fdt_alloc_phandle(fdt);
  1296. ret = fdt_set_phandle(fdt, nodeoffset, phandle);
  1297. if (ret < 0) {
  1298. printf("Can't set phandle %u: %s\n", phandle,
  1299. fdt_strerror(ret));
  1300. return 0;
  1301. }
  1302. }
  1303. return phandle;
  1304. }
  1305. /*
  1306. * fdt_set_node_status: Set status for the given node
  1307. *
  1308. * @fdt: ptr to device tree
  1309. * @nodeoffset: node to update
  1310. * @status: FDT_STATUS_OKAY, FDT_STATUS_DISABLED,
  1311. * FDT_STATUS_FAIL, FDT_STATUS_FAIL_ERROR_CODE
  1312. * @error_code: optional, only used if status is FDT_STATUS_FAIL_ERROR_CODE
  1313. */
  1314. int fdt_set_node_status(void *fdt, int nodeoffset,
  1315. enum fdt_status status, unsigned int error_code)
  1316. {
  1317. char buf[16];
  1318. int ret = 0;
  1319. if (nodeoffset < 0)
  1320. return nodeoffset;
  1321. switch (status) {
  1322. case FDT_STATUS_OKAY:
  1323. ret = fdt_setprop_string(fdt, nodeoffset, "status", "okay");
  1324. break;
  1325. case FDT_STATUS_DISABLED:
  1326. ret = fdt_setprop_string(fdt, nodeoffset, "status", "disabled");
  1327. break;
  1328. case FDT_STATUS_FAIL:
  1329. ret = fdt_setprop_string(fdt, nodeoffset, "status", "fail");
  1330. break;
  1331. case FDT_STATUS_FAIL_ERROR_CODE:
  1332. sprintf(buf, "fail-%d", error_code);
  1333. ret = fdt_setprop_string(fdt, nodeoffset, "status", buf);
  1334. break;
  1335. default:
  1336. printf("Invalid fdt status: %x\n", status);
  1337. ret = -1;
  1338. break;
  1339. }
  1340. return ret;
  1341. }
  1342. /*
  1343. * fdt_set_status_by_alias: Set status for the given node given an alias
  1344. *
  1345. * @fdt: ptr to device tree
  1346. * @alias: alias of node to update
  1347. * @status: FDT_STATUS_OKAY, FDT_STATUS_DISABLED,
  1348. * FDT_STATUS_FAIL, FDT_STATUS_FAIL_ERROR_CODE
  1349. * @error_code: optional, only used if status is FDT_STATUS_FAIL_ERROR_CODE
  1350. */
  1351. int fdt_set_status_by_alias(void *fdt, const char* alias,
  1352. enum fdt_status status, unsigned int error_code)
  1353. {
  1354. int offset = fdt_path_offset(fdt, alias);
  1355. return fdt_set_node_status(fdt, offset, status, error_code);
  1356. }
  1357. #if defined(CONFIG_VIDEO) || defined(CONFIG_LCD)
  1358. int fdt_add_edid(void *blob, const char *compat, unsigned char *edid_buf)
  1359. {
  1360. int noff;
  1361. int ret;
  1362. noff = fdt_node_offset_by_compatible(blob, -1, compat);
  1363. if (noff != -FDT_ERR_NOTFOUND) {
  1364. debug("%s: %s\n", fdt_get_name(blob, noff, 0), compat);
  1365. add_edid:
  1366. ret = fdt_setprop(blob, noff, "edid", edid_buf, 128);
  1367. if (ret == -FDT_ERR_NOSPACE) {
  1368. ret = fdt_increase_size(blob, 512);
  1369. if (!ret)
  1370. goto add_edid;
  1371. else
  1372. goto err_size;
  1373. } else if (ret < 0) {
  1374. printf("Can't add property: %s\n", fdt_strerror(ret));
  1375. return ret;
  1376. }
  1377. }
  1378. return 0;
  1379. err_size:
  1380. printf("Can't increase blob size: %s\n", fdt_strerror(ret));
  1381. return ret;
  1382. }
  1383. #endif
  1384. /*
  1385. * Verify the physical address of device tree node for a given alias
  1386. *
  1387. * This function locates the device tree node of a given alias, and then
  1388. * verifies that the physical address of that device matches the given
  1389. * parameter. It displays a message if there is a mismatch.
  1390. *
  1391. * Returns 1 on success, 0 on failure
  1392. */
  1393. int fdt_verify_alias_address(void *fdt, int anode, const char *alias, u64 addr)
  1394. {
  1395. const char *path;
  1396. const fdt32_t *reg;
  1397. int node, len;
  1398. u64 dt_addr;
  1399. path = fdt_getprop(fdt, anode, alias, NULL);
  1400. if (!path) {
  1401. /* If there's no such alias, then it's not a failure */
  1402. return 1;
  1403. }
  1404. node = fdt_path_offset(fdt, path);
  1405. if (node < 0) {
  1406. printf("Warning: device tree alias '%s' points to invalid "
  1407. "node %s.\n", alias, path);
  1408. return 0;
  1409. }
  1410. reg = fdt_getprop(fdt, node, "reg", &len);
  1411. if (!reg) {
  1412. printf("Warning: device tree node '%s' has no address.\n",
  1413. path);
  1414. return 0;
  1415. }
  1416. dt_addr = fdt_translate_address(fdt, node, reg);
  1417. if (addr != dt_addr) {
  1418. printf("Warning: U-Boot configured device %s at address %llu,\n"
  1419. "but the device tree has it address %llx.\n",
  1420. alias, addr, dt_addr);
  1421. return 0;
  1422. }
  1423. return 1;
  1424. }
  1425. /*
  1426. * Returns the base address of an SOC or PCI node
  1427. */
  1428. u64 fdt_get_base_address(const void *fdt, int node)
  1429. {
  1430. int size;
  1431. const fdt32_t *prop;
  1432. prop = fdt_getprop(fdt, node, "reg", &size);
  1433. return prop ? fdt_translate_address(fdt, node, prop) : OF_BAD_ADDR;
  1434. }
  1435. /*
  1436. * Read a property of size <prop_len>. Currently only supports 1 or 2 cells,
  1437. * or 3 cells specially for a PCI address.
  1438. */
  1439. static int fdt_read_prop(const fdt32_t *prop, int prop_len, int cell_off,
  1440. uint64_t *val, int cells)
  1441. {
  1442. const fdt32_t *prop32;
  1443. const unaligned_fdt64_t *prop64;
  1444. if ((cell_off + cells) > prop_len)
  1445. return -FDT_ERR_NOSPACE;
  1446. prop32 = &prop[cell_off];
  1447. /*
  1448. * Special handling for PCI address in PCI bus <ranges>
  1449. *
  1450. * PCI child address is made up of 3 cells. Advance the cell offset
  1451. * by 1 so that the PCI child address can be correctly read.
  1452. */
  1453. if (cells == 3)
  1454. cell_off += 1;
  1455. prop64 = (const fdt64_t *)&prop[cell_off];
  1456. switch (cells) {
  1457. case 1:
  1458. *val = fdt32_to_cpu(*prop32);
  1459. break;
  1460. case 2:
  1461. case 3:
  1462. *val = fdt64_to_cpu(*prop64);
  1463. break;
  1464. default:
  1465. return -FDT_ERR_NOSPACE;
  1466. }
  1467. return 0;
  1468. }
  1469. /**
  1470. * fdt_read_range - Read a node's n'th range property
  1471. *
  1472. * @fdt: ptr to device tree
  1473. * @node: offset of node
  1474. * @n: range index
  1475. * @child_addr: pointer to storage for the "child address" field
  1476. * @addr: pointer to storage for the CPU view translated physical start
  1477. * @len: pointer to storage for the range length
  1478. *
  1479. * Convenience function that reads and interprets a specific range out of
  1480. * a number of the "ranges" property array.
  1481. */
  1482. int fdt_read_range(void *fdt, int node, int n, uint64_t *child_addr,
  1483. uint64_t *addr, uint64_t *len)
  1484. {
  1485. int pnode = fdt_parent_offset(fdt, node);
  1486. const fdt32_t *ranges;
  1487. int pacells;
  1488. int acells;
  1489. int scells;
  1490. int ranges_len;
  1491. int cell = 0;
  1492. int r = 0;
  1493. /*
  1494. * The "ranges" property is an array of
  1495. * { <child address> <parent address> <size in child address space> }
  1496. *
  1497. * All 3 elements can span a diffent number of cells. Fetch their size.
  1498. */
  1499. pacells = fdt_getprop_u32_default_node(fdt, pnode, 0, "#address-cells", 1);
  1500. acells = fdt_getprop_u32_default_node(fdt, node, 0, "#address-cells", 1);
  1501. scells = fdt_getprop_u32_default_node(fdt, node, 0, "#size-cells", 1);
  1502. /* Now try to get the ranges property */
  1503. ranges = fdt_getprop(fdt, node, "ranges", &ranges_len);
  1504. if (!ranges)
  1505. return -FDT_ERR_NOTFOUND;
  1506. ranges_len /= sizeof(uint32_t);
  1507. /* Jump to the n'th entry */
  1508. cell = n * (pacells + acells + scells);
  1509. /* Read <child address> */
  1510. if (child_addr) {
  1511. r = fdt_read_prop(ranges, ranges_len, cell, child_addr,
  1512. acells);
  1513. if (r)
  1514. return r;
  1515. }
  1516. cell += acells;
  1517. /* Read <parent address> */
  1518. if (addr)
  1519. *addr = fdt_translate_address(fdt, node, ranges + cell);
  1520. cell += pacells;
  1521. /* Read <size in child address space> */
  1522. if (len) {
  1523. r = fdt_read_prop(ranges, ranges_len, cell, len, scells);
  1524. if (r)
  1525. return r;
  1526. }
  1527. return 0;
  1528. }
  1529. /**
  1530. * fdt_setup_simplefb_node - Fill and enable a simplefb node
  1531. *
  1532. * @fdt: ptr to device tree
  1533. * @node: offset of the simplefb node
  1534. * @base_address: framebuffer base address
  1535. * @width: width in pixels
  1536. * @height: height in pixels
  1537. * @stride: bytes per line
  1538. * @format: pixel format string
  1539. *
  1540. * Convenience function to fill and enable a simplefb node.
  1541. */
  1542. int fdt_setup_simplefb_node(void *fdt, int node, u64 base_address, u32 width,
  1543. u32 height, u32 stride, const char *format)
  1544. {
  1545. char name[32];
  1546. fdt32_t cells[4];
  1547. int i, addrc, sizec, ret;
  1548. fdt_support_default_count_cells(fdt, fdt_parent_offset(fdt, node),
  1549. &addrc, &sizec);
  1550. i = 0;
  1551. if (addrc == 2)
  1552. cells[i++] = cpu_to_fdt32(base_address >> 32);
  1553. cells[i++] = cpu_to_fdt32(base_address);
  1554. if (sizec == 2)
  1555. cells[i++] = 0;
  1556. cells[i++] = cpu_to_fdt32(height * stride);
  1557. ret = fdt_setprop(fdt, node, "reg", cells, sizeof(cells[0]) * i);
  1558. if (ret < 0)
  1559. return ret;
  1560. snprintf(name, sizeof(name), "framebuffer@%llx", base_address);
  1561. ret = fdt_set_name(fdt, node, name);
  1562. if (ret < 0)
  1563. return ret;
  1564. ret = fdt_setprop_u32(fdt, node, "width", width);
  1565. if (ret < 0)
  1566. return ret;
  1567. ret = fdt_setprop_u32(fdt, node, "height", height);
  1568. if (ret < 0)
  1569. return ret;
  1570. ret = fdt_setprop_u32(fdt, node, "stride", stride);
  1571. if (ret < 0)
  1572. return ret;
  1573. ret = fdt_setprop_string(fdt, node, "format", format);
  1574. if (ret < 0)
  1575. return ret;
  1576. ret = fdt_setprop_string(fdt, node, "status", "okay");
  1577. if (ret < 0)
  1578. return ret;
  1579. return 0;
  1580. }
  1581. /*
  1582. * Update native-mode in display-timings from display environment variable.
  1583. * The node to update are specified by path.
  1584. */
  1585. int fdt_fixup_display(void *blob, const char *path, const char *display)
  1586. {
  1587. int off, toff;
  1588. if (!display || !path)
  1589. return -FDT_ERR_NOTFOUND;
  1590. toff = fdt_path_offset(blob, path);
  1591. if (toff >= 0)
  1592. toff = fdt_subnode_offset(blob, toff, "display-timings");
  1593. if (toff < 0)
  1594. return toff;
  1595. for (off = fdt_first_subnode(blob, toff);
  1596. off >= 0;
  1597. off = fdt_next_subnode(blob, off)) {
  1598. uint32_t h = fdt_get_phandle(blob, off);
  1599. debug("%s:0x%x\n", fdt_get_name(blob, off, NULL),
  1600. fdt32_to_cpu(h));
  1601. if (strcasecmp(fdt_get_name(blob, off, NULL), display) == 0)
  1602. return fdt_setprop_u32(blob, toff, "native-mode", h);
  1603. }
  1604. return toff;
  1605. }
  1606. #ifdef CONFIG_OF_LIBFDT_OVERLAY
  1607. /**
  1608. * fdt_overlay_apply_verbose - Apply an overlay with verbose error reporting
  1609. *
  1610. * @fdt: ptr to device tree
  1611. * @fdto: ptr to device tree overlay
  1612. *
  1613. * Convenience function to apply an overlay and display helpful messages
  1614. * in the case of an error
  1615. */
  1616. int fdt_overlay_apply_verbose(void *fdt, void *fdto)
  1617. {
  1618. int err;
  1619. bool has_symbols;
  1620. err = fdt_path_offset(fdt, "/__symbols__");
  1621. has_symbols = err >= 0;
  1622. err = fdt_overlay_apply(fdt, fdto);
  1623. if (err < 0) {
  1624. printf("failed on fdt_overlay_apply(): %s\n",
  1625. fdt_strerror(err));
  1626. if (!has_symbols) {
  1627. printf("base fdt does did not have a /__symbols__ node\n");
  1628. printf("make sure you've compiled with -@\n");
  1629. }
  1630. }
  1631. return err;
  1632. }
  1633. #endif
  1634. /**
  1635. * fdt_valid() - Check if an FDT is valid. If not, change it to NULL
  1636. *
  1637. * @blobp: Pointer to FDT pointer
  1638. * @return 1 if OK, 0 if bad (in which case *blobp is set to NULL)
  1639. */
  1640. int fdt_valid(struct fdt_header **blobp)
  1641. {
  1642. const void *blob = *blobp;
  1643. int err;
  1644. if (!blob) {
  1645. printf("The address of the fdt is invalid (NULL).\n");
  1646. return 0;
  1647. }
  1648. err = fdt_check_header(blob);
  1649. if (err == 0)
  1650. return 1; /* valid */
  1651. if (err < 0) {
  1652. printf("libfdt fdt_check_header(): %s", fdt_strerror(err));
  1653. /*
  1654. * Be more informative on bad version.
  1655. */
  1656. if (err == -FDT_ERR_BADVERSION) {
  1657. if (fdt_version(blob) <
  1658. FDT_FIRST_SUPPORTED_VERSION) {
  1659. printf(" - too old, fdt %d < %d",
  1660. fdt_version(blob),
  1661. FDT_FIRST_SUPPORTED_VERSION);
  1662. }
  1663. if (fdt_last_comp_version(blob) >
  1664. FDT_LAST_SUPPORTED_VERSION) {
  1665. printf(" - too new, fdt %d > %d",
  1666. fdt_version(blob),
  1667. FDT_LAST_SUPPORTED_VERSION);
  1668. }
  1669. }
  1670. printf("\n");
  1671. *blobp = NULL;
  1672. return 0;
  1673. }
  1674. return 1;
  1675. }