read.c 11 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. /*
  3. * Copyright (c) 2017 Google, Inc
  4. * Written by Simon Glass <sjg@chromium.org>
  5. */
  6. #include <common.h>
  7. #include <dm.h>
  8. #include <dm/of_access.h>
  9. #include <mapmem.h>
  10. #include <asm/global_data.h>
  11. #include <asm/types.h>
  12. #include <asm/io.h>
  13. #include <linux/ioport.h>
  14. int dev_read_u8(const struct udevice *dev, const char *propname, u8 *outp)
  15. {
  16. return ofnode_read_u8(dev_ofnode(dev), propname, outp);
  17. }
  18. u8 dev_read_u8_default(const struct udevice *dev, const char *propname, u8 def)
  19. {
  20. return ofnode_read_u8_default(dev_ofnode(dev), propname, def);
  21. }
  22. int dev_read_u16(const struct udevice *dev, const char *propname, u16 *outp)
  23. {
  24. return ofnode_read_u16(dev_ofnode(dev), propname, outp);
  25. }
  26. u16 dev_read_u16_default(const struct udevice *dev, const char *propname,
  27. u16 def)
  28. {
  29. return ofnode_read_u16_default(dev_ofnode(dev), propname, def);
  30. }
  31. int dev_read_u32(const struct udevice *dev, const char *propname, u32 *outp)
  32. {
  33. return ofnode_read_u32(dev_ofnode(dev), propname, outp);
  34. }
  35. int dev_read_u32_default(const struct udevice *dev, const char *propname,
  36. int def)
  37. {
  38. return ofnode_read_u32_default(dev_ofnode(dev), propname, def);
  39. }
  40. int dev_read_u32_index(struct udevice *dev, const char *propname, int index,
  41. u32 *outp)
  42. {
  43. return ofnode_read_u32_index(dev_ofnode(dev), propname, index, outp);
  44. }
  45. u32 dev_read_u32_index_default(struct udevice *dev, const char *propname,
  46. int index, u32 def)
  47. {
  48. return ofnode_read_u32_index_default(dev_ofnode(dev), propname, index,
  49. def);
  50. }
  51. int dev_read_s32(const struct udevice *dev, const char *propname, s32 *outp)
  52. {
  53. return ofnode_read_u32(dev_ofnode(dev), propname, (u32 *)outp);
  54. }
  55. int dev_read_s32_default(const struct udevice *dev, const char *propname,
  56. int def)
  57. {
  58. return ofnode_read_u32_default(dev_ofnode(dev), propname, def);
  59. }
  60. int dev_read_u32u(const struct udevice *dev, const char *propname, uint *outp)
  61. {
  62. u32 val;
  63. int ret;
  64. ret = ofnode_read_u32(dev_ofnode(dev), propname, &val);
  65. if (ret)
  66. return ret;
  67. *outp = val;
  68. return 0;
  69. }
  70. int dev_read_u64(const struct udevice *dev, const char *propname, u64 *outp)
  71. {
  72. return ofnode_read_u64(dev_ofnode(dev), propname, outp);
  73. }
  74. u64 dev_read_u64_default(const struct udevice *dev, const char *propname,
  75. u64 def)
  76. {
  77. return ofnode_read_u64_default(dev_ofnode(dev), propname, def);
  78. }
  79. const char *dev_read_string(const struct udevice *dev, const char *propname)
  80. {
  81. return ofnode_read_string(dev_ofnode(dev), propname);
  82. }
  83. bool dev_read_bool(const struct udevice *dev, const char *propname)
  84. {
  85. return ofnode_read_bool(dev_ofnode(dev), propname);
  86. }
  87. ofnode dev_read_subnode(const struct udevice *dev, const char *subnode_name)
  88. {
  89. return ofnode_find_subnode(dev_ofnode(dev), subnode_name);
  90. }
  91. ofnode dev_read_first_subnode(const struct udevice *dev)
  92. {
  93. return ofnode_first_subnode(dev_ofnode(dev));
  94. }
  95. ofnode dev_read_next_subnode(ofnode node)
  96. {
  97. return ofnode_next_subnode(node);
  98. }
  99. int dev_read_size(const struct udevice *dev, const char *propname)
  100. {
  101. return ofnode_read_size(dev_ofnode(dev), propname);
  102. }
  103. fdt_addr_t dev_read_addr_index(const struct udevice *dev, int index)
  104. {
  105. if (ofnode_is_np(dev_ofnode(dev)))
  106. return ofnode_get_addr_index(dev_ofnode(dev), index);
  107. else
  108. return devfdt_get_addr_index(dev, index);
  109. }
  110. void *dev_read_addr_index_ptr(const struct udevice *dev, int index)
  111. {
  112. fdt_addr_t addr = dev_read_addr_index(dev, index);
  113. if (addr == FDT_ADDR_T_NONE)
  114. return NULL;
  115. return map_sysmem(addr, 0);
  116. }
  117. fdt_addr_t dev_read_addr_size_index(const struct udevice *dev, int index,
  118. fdt_size_t *size)
  119. {
  120. if (ofnode_is_np(dev_ofnode(dev)))
  121. return ofnode_get_addr_size_index(dev_ofnode(dev), index, size);
  122. else
  123. return devfdt_get_addr_size_index(dev, index, size);
  124. }
  125. void *dev_read_addr_size_index_ptr(const struct udevice *dev, int index,
  126. fdt_size_t *size)
  127. {
  128. fdt_addr_t addr = dev_read_addr_size_index(dev, index, size);
  129. if (addr == FDT_ADDR_T_NONE)
  130. return NULL;
  131. return map_sysmem(addr, 0);
  132. }
  133. void *dev_remap_addr_index(const struct udevice *dev, int index)
  134. {
  135. fdt_addr_t addr = dev_read_addr_index(dev, index);
  136. if (addr == FDT_ADDR_T_NONE)
  137. return NULL;
  138. return map_physmem(addr, 0, MAP_NOCACHE);
  139. }
  140. fdt_addr_t dev_read_addr_name(const struct udevice *dev, const char *name)
  141. {
  142. int index = dev_read_stringlist_search(dev, "reg-names", name);
  143. if (index < 0)
  144. return FDT_ADDR_T_NONE;
  145. else
  146. return dev_read_addr_index(dev, index);
  147. }
  148. fdt_addr_t dev_read_addr_size_name(const struct udevice *dev, const char *name,
  149. fdt_size_t *size)
  150. {
  151. int index = dev_read_stringlist_search(dev, "reg-names", name);
  152. if (index < 0)
  153. return FDT_ADDR_T_NONE;
  154. else
  155. return dev_read_addr_size_index(dev, index, size);
  156. }
  157. void *dev_remap_addr_name(const struct udevice *dev, const char *name)
  158. {
  159. fdt_addr_t addr = dev_read_addr_name(dev, name);
  160. if (addr == FDT_ADDR_T_NONE)
  161. return NULL;
  162. return map_physmem(addr, 0, MAP_NOCACHE);
  163. }
  164. fdt_addr_t dev_read_addr(const struct udevice *dev)
  165. {
  166. return dev_read_addr_index(dev, 0);
  167. }
  168. void *dev_read_addr_ptr(const struct udevice *dev)
  169. {
  170. fdt_addr_t addr = dev_read_addr(dev);
  171. if (addr == FDT_ADDR_T_NONE)
  172. return NULL;
  173. return map_sysmem(addr, 0);
  174. }
  175. void *dev_remap_addr(const struct udevice *dev)
  176. {
  177. return dev_remap_addr_index(dev, 0);
  178. }
  179. fdt_addr_t dev_read_addr_size(const struct udevice *dev, fdt_size_t *sizep)
  180. {
  181. return dev_read_addr_size_index(dev, 0, sizep);
  182. }
  183. const char *dev_read_name(const struct udevice *dev)
  184. {
  185. return ofnode_get_name(dev_ofnode(dev));
  186. }
  187. int dev_read_stringlist_search(const struct udevice *dev, const char *property,
  188. const char *string)
  189. {
  190. return ofnode_stringlist_search(dev_ofnode(dev), property, string);
  191. }
  192. int dev_read_string_index(const struct udevice *dev, const char *propname,
  193. int index, const char **outp)
  194. {
  195. return ofnode_read_string_index(dev_ofnode(dev), propname, index, outp);
  196. }
  197. int dev_read_string_count(const struct udevice *dev, const char *propname)
  198. {
  199. return ofnode_read_string_count(dev_ofnode(dev), propname);
  200. }
  201. int dev_read_string_list(const struct udevice *dev, const char *propname,
  202. const char ***listp)
  203. {
  204. return ofnode_read_string_list(dev_ofnode(dev), propname, listp);
  205. }
  206. int dev_read_phandle_with_args(const struct udevice *dev, const char *list_name,
  207. const char *cells_name, int cell_count,
  208. int index, struct ofnode_phandle_args *out_args)
  209. {
  210. return ofnode_parse_phandle_with_args(dev_ofnode(dev), list_name,
  211. cells_name, cell_count, index,
  212. out_args);
  213. }
  214. int dev_count_phandle_with_args(const struct udevice *dev,
  215. const char *list_name, const char *cells_name,
  216. int cell_count)
  217. {
  218. return ofnode_count_phandle_with_args(dev_ofnode(dev), list_name,
  219. cells_name, cell_count);
  220. }
  221. int dev_read_addr_cells(const struct udevice *dev)
  222. {
  223. return ofnode_read_addr_cells(dev_ofnode(dev));
  224. }
  225. int dev_read_size_cells(const struct udevice *dev)
  226. {
  227. return ofnode_read_size_cells(dev_ofnode(dev));
  228. }
  229. int dev_read_simple_addr_cells(const struct udevice *dev)
  230. {
  231. return ofnode_read_simple_addr_cells(dev_ofnode(dev));
  232. }
  233. int dev_read_simple_size_cells(const struct udevice *dev)
  234. {
  235. return ofnode_read_simple_size_cells(dev_ofnode(dev));
  236. }
  237. int dev_read_phandle(const struct udevice *dev)
  238. {
  239. ofnode node = dev_ofnode(dev);
  240. if (ofnode_is_np(node))
  241. return ofnode_to_np(node)->phandle;
  242. else
  243. return fdt_get_phandle(gd->fdt_blob, ofnode_to_offset(node));
  244. }
  245. const void *dev_read_prop(const struct udevice *dev, const char *propname,
  246. int *lenp)
  247. {
  248. return ofnode_get_property(dev_ofnode(dev), propname, lenp);
  249. }
  250. int dev_read_first_prop(const struct udevice *dev, struct ofprop *prop)
  251. {
  252. return ofnode_first_property(dev_ofnode(dev), prop);
  253. }
  254. int dev_read_next_prop(struct ofprop *prop)
  255. {
  256. return ofnode_next_property(prop);
  257. }
  258. const void *dev_read_prop_by_prop(struct ofprop *prop,
  259. const char **propname, int *lenp)
  260. {
  261. return ofprop_get_property(prop, propname, lenp);
  262. }
  263. int dev_read_alias_seq(const struct udevice *dev, int *devnump)
  264. {
  265. ofnode node = dev_ofnode(dev);
  266. const char *uc_name = dev->uclass->uc_drv->name;
  267. int ret = -ENOTSUPP;
  268. if (ofnode_is_np(node)) {
  269. ret = of_alias_get_id(ofnode_to_np(node), uc_name);
  270. if (ret >= 0) {
  271. *devnump = ret;
  272. ret = 0;
  273. }
  274. } else {
  275. #if CONFIG_IS_ENABLED(OF_CONTROL)
  276. ret = fdtdec_get_alias_seq(gd->fdt_blob, uc_name,
  277. ofnode_to_offset(node), devnump);
  278. #endif
  279. }
  280. return ret;
  281. }
  282. int dev_read_u32_array(const struct udevice *dev, const char *propname,
  283. u32 *out_values, size_t sz)
  284. {
  285. return ofnode_read_u32_array(dev_ofnode(dev), propname, out_values, sz);
  286. }
  287. const uint8_t *dev_read_u8_array_ptr(const struct udevice *dev,
  288. const char *propname, size_t sz)
  289. {
  290. return ofnode_read_u8_array_ptr(dev_ofnode(dev), propname, sz);
  291. }
  292. int dev_read_enabled(const struct udevice *dev)
  293. {
  294. ofnode node = dev_ofnode(dev);
  295. if (ofnode_is_np(node))
  296. return of_device_is_available(ofnode_to_np(node));
  297. else
  298. return fdtdec_get_is_enabled(gd->fdt_blob,
  299. ofnode_to_offset(node));
  300. }
  301. int dev_read_resource(const struct udevice *dev, uint index,
  302. struct resource *res)
  303. {
  304. return ofnode_read_resource(dev_ofnode(dev), index, res);
  305. }
  306. int dev_read_resource_byname(const struct udevice *dev, const char *name,
  307. struct resource *res)
  308. {
  309. return ofnode_read_resource_byname(dev_ofnode(dev), name, res);
  310. }
  311. u64 dev_translate_address(const struct udevice *dev, const fdt32_t *in_addr)
  312. {
  313. return ofnode_translate_address(dev_ofnode(dev), in_addr);
  314. }
  315. u64 dev_translate_dma_address(const struct udevice *dev, const fdt32_t *in_addr)
  316. {
  317. return ofnode_translate_dma_address(dev_ofnode(dev), in_addr);
  318. }
  319. int dev_get_dma_range(const struct udevice *dev, phys_addr_t *cpu,
  320. dma_addr_t *bus, u64 *size)
  321. {
  322. return ofnode_get_dma_range(dev_ofnode(dev), cpu, bus, size);
  323. }
  324. int dev_read_alias_highest_id(const char *stem)
  325. {
  326. if (of_live_active())
  327. return of_alias_get_highest_id(stem);
  328. return fdtdec_get_alias_highest_id(gd->fdt_blob, stem);
  329. }
  330. fdt_addr_t dev_read_addr_pci(const struct udevice *dev)
  331. {
  332. ulong addr;
  333. addr = dev_read_addr(dev);
  334. if (addr == FDT_ADDR_T_NONE && !of_live_active())
  335. addr = devfdt_get_addr_pci(dev);
  336. return addr;
  337. }
  338. int dev_get_child_count(const struct udevice *dev)
  339. {
  340. return ofnode_get_child_count(dev_ofnode(dev));
  341. }
  342. int dev_read_pci_bus_range(const struct udevice *dev,
  343. struct resource *res)
  344. {
  345. const u32 *values;
  346. int len;
  347. values = dev_read_prop(dev, "bus-range", &len);
  348. if (!values || len < sizeof(*values) * 2)
  349. return -EINVAL;
  350. res->start = *values++;
  351. res->end = *values;
  352. return 0;
  353. }
  354. int dev_decode_display_timing(const struct udevice *dev, int index,
  355. struct display_timing *config)
  356. {
  357. return ofnode_decode_display_timing(dev_ofnode(dev), index, config);
  358. }
  359. int dev_decode_panel_timing(const struct udevice *dev,
  360. struct display_timing *config)
  361. {
  362. return ofnode_decode_panel_timing(dev_ofnode(dev), config);
  363. }
  364. ofnode dev_get_phy_node(const struct udevice *dev)
  365. {
  366. return ofnode_get_phy_node(dev_ofnode(dev));
  367. }
  368. phy_interface_t dev_read_phy_mode(const struct udevice *dev)
  369. {
  370. return ofnode_read_phy_mode(dev_ofnode(dev));
  371. }