cmd_regulator.c 9.8 KB

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  1. /*
  2. * Copyright (C) 2014-2015 Samsung Electronics
  3. * Przemyslaw Marczak <p.marczak@samsung.com>
  4. *
  5. * SPDX-License-Identifier: GPL-2.0+
  6. */
  7. #include <common.h>
  8. #include <errno.h>
  9. #include <dm.h>
  10. #include <dm/uclass-internal.h>
  11. #include <power/regulator.h>
  12. #define LIMIT_DEVNAME 20
  13. #define LIMIT_OFNAME 32
  14. #define LIMIT_INFO 18
  15. static struct udevice *currdev;
  16. static int failure(int ret)
  17. {
  18. printf("Error: %d (%s)\n", ret, errno_str(ret));
  19. return CMD_RET_FAILURE;
  20. }
  21. static int do_dev(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  22. {
  23. struct dm_regulator_uclass_platdata *uc_pdata;
  24. const char *name;
  25. int ret = -ENXIO;
  26. switch (argc) {
  27. case 2:
  28. name = argv[1];
  29. ret = regulator_get_by_platname(name, &currdev);
  30. if (ret) {
  31. printf("Can't get the regulator: %s!\n", name);
  32. return failure(ret);
  33. }
  34. case 1:
  35. if (!currdev) {
  36. printf("Regulator device is not set!\n\n");
  37. return CMD_RET_USAGE;
  38. }
  39. uc_pdata = dev_get_uclass_platdata(currdev);
  40. if (!uc_pdata) {
  41. printf("%s: no regulator platform data!\n", currdev->name);
  42. return failure(ret);
  43. }
  44. printf("dev: %s @ %s\n", uc_pdata->name, currdev->name);
  45. }
  46. return CMD_RET_SUCCESS;
  47. }
  48. static int curr_dev_and_platdata(struct udevice **devp,
  49. struct dm_regulator_uclass_platdata **uc_pdata,
  50. bool allow_type_fixed)
  51. {
  52. *devp = NULL;
  53. *uc_pdata = NULL;
  54. if (!currdev) {
  55. printf("First, set the regulator device!\n");
  56. return CMD_RET_FAILURE;
  57. }
  58. *devp = currdev;
  59. *uc_pdata = dev_get_uclass_platdata(*devp);
  60. if (!*uc_pdata) {
  61. error("Regulator: %s - missing platform data!", currdev->name);
  62. return CMD_RET_FAILURE;
  63. }
  64. if (!allow_type_fixed && (*uc_pdata)->type == REGULATOR_TYPE_FIXED) {
  65. printf("Operation not allowed for fixed regulator!\n");
  66. return CMD_RET_FAILURE;
  67. }
  68. return CMD_RET_SUCCESS;
  69. }
  70. static int do_list(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  71. {
  72. struct dm_regulator_uclass_platdata *uc_pdata;
  73. struct udevice *dev;
  74. int ret;
  75. printf("| %-*.*s| %-*.*s| %s\n",
  76. LIMIT_DEVNAME, LIMIT_DEVNAME, "Device",
  77. LIMIT_OFNAME, LIMIT_OFNAME, "regulator-name",
  78. "Parent");
  79. for (ret = uclass_find_first_device(UCLASS_REGULATOR, &dev); dev;
  80. ret = uclass_find_next_device(&dev)) {
  81. if (ret)
  82. continue;
  83. uc_pdata = dev_get_uclass_platdata(dev);
  84. printf("| %-*.*s| %-*.*s| %s\n",
  85. LIMIT_DEVNAME, LIMIT_DEVNAME, dev->name,
  86. LIMIT_OFNAME, LIMIT_OFNAME, uc_pdata->name,
  87. dev->parent->name);
  88. }
  89. return ret;
  90. }
  91. static int constraint(const char *name, int val, const char *val_name)
  92. {
  93. printf("%-*s", LIMIT_INFO, name);
  94. if (val < 0) {
  95. printf(" %s (err: %d)\n", errno_str(val), val);
  96. return val;
  97. }
  98. if (val_name)
  99. printf(" %d (%s)\n", val, val_name);
  100. else
  101. printf(" %d\n", val);
  102. return 0;
  103. }
  104. static const char *get_mode_name(struct dm_regulator_mode *mode,
  105. int mode_count,
  106. int mode_id)
  107. {
  108. while (mode_count--) {
  109. if (mode->id == mode_id)
  110. return mode->name;
  111. mode++;
  112. }
  113. return NULL;
  114. }
  115. static int do_info(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  116. {
  117. struct udevice *dev;
  118. struct dm_regulator_uclass_platdata *uc_pdata;
  119. struct dm_regulator_mode *modes;
  120. const char *parent_uc;
  121. int mode_count;
  122. int ret;
  123. int i;
  124. ret = curr_dev_and_platdata(&dev, &uc_pdata, true);
  125. if (ret)
  126. return ret;
  127. parent_uc = dev_get_uclass_name(dev->parent);
  128. printf("%s\n%-*s %s\n%-*s %s\n%-*s %s\n%-*s %s\n%-*s\n",
  129. "Regulator info:",
  130. LIMIT_INFO, "* regulator-name:", uc_pdata->name,
  131. LIMIT_INFO, "* device name:", dev->name,
  132. LIMIT_INFO, "* parent name:", dev->parent->name,
  133. LIMIT_INFO, "* parent uclass:", parent_uc,
  134. LIMIT_INFO, "* constraints:");
  135. constraint(" - min uV:", uc_pdata->min_uV, NULL);
  136. constraint(" - max uV:", uc_pdata->max_uV, NULL);
  137. constraint(" - min uA:", uc_pdata->min_uA, NULL);
  138. constraint(" - max uA:", uc_pdata->max_uA, NULL);
  139. constraint(" - always on:", uc_pdata->always_on,
  140. uc_pdata->always_on ? "true" : "false");
  141. constraint(" - boot on:", uc_pdata->boot_on,
  142. uc_pdata->boot_on ? "true" : "false");
  143. mode_count = regulator_mode(dev, &modes);
  144. constraint("* op modes:", mode_count, NULL);
  145. for (i = 0; i < mode_count; i++, modes++)
  146. constraint(" - mode id:", modes->id, modes->name);
  147. return CMD_RET_SUCCESS;
  148. }
  149. static int do_status(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  150. {
  151. struct dm_regulator_uclass_platdata *uc_pdata;
  152. int current, value, mode, ret;
  153. const char *mode_name = NULL;
  154. struct udevice *dev;
  155. bool enabled;
  156. ret = curr_dev_and_platdata(&dev, &uc_pdata, true);
  157. if (ret)
  158. return ret;
  159. printf("Regulator %s status:\n", uc_pdata->name);
  160. enabled = regulator_get_enable(dev);
  161. constraint(" * enable:", enabled, enabled ? "true" : "false");
  162. value = regulator_get_value(dev);
  163. constraint(" * value uV:", value, NULL);
  164. current = regulator_get_current(dev);
  165. constraint(" * current uA:", current, NULL);
  166. mode = regulator_get_mode(dev);
  167. mode_name = get_mode_name(uc_pdata->mode, uc_pdata->mode_count, mode);
  168. constraint(" * mode id:", mode, mode_name);
  169. return CMD_RET_SUCCESS;
  170. }
  171. static int do_value(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  172. {
  173. struct udevice *dev;
  174. struct dm_regulator_uclass_platdata *uc_pdata;
  175. int value;
  176. int force;
  177. int ret;
  178. ret = curr_dev_and_platdata(&dev, &uc_pdata, argc == 1);
  179. if (ret)
  180. return ret;
  181. if (argc == 1) {
  182. ret = regulator_get_value(dev);
  183. if (ret < 0) {
  184. printf("Regulator: %s - can't get the Voltage!\n",
  185. uc_pdata->name);
  186. return failure(ret);
  187. }
  188. printf("%d uV\n", ret);
  189. return CMD_RET_SUCCESS;
  190. }
  191. if (argc == 3)
  192. force = !strcmp("-f", argv[2]);
  193. else
  194. force = 0;
  195. value = simple_strtoul(argv[1], NULL, 0);
  196. if ((value < uc_pdata->min_uV || value > uc_pdata->max_uV) && !force) {
  197. printf("Value exceeds regulator constraint limits\n");
  198. return CMD_RET_FAILURE;
  199. }
  200. ret = regulator_set_value(dev, value);
  201. if (ret) {
  202. printf("Regulator: %s - can't set the Voltage!\n",
  203. uc_pdata->name);
  204. return failure(ret);
  205. }
  206. return CMD_RET_SUCCESS;
  207. }
  208. static int do_current(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  209. {
  210. struct udevice *dev;
  211. struct dm_regulator_uclass_platdata *uc_pdata;
  212. int current;
  213. int ret;
  214. ret = curr_dev_and_platdata(&dev, &uc_pdata, argc == 1);
  215. if (ret)
  216. return ret;
  217. if (argc == 1) {
  218. ret = regulator_get_current(dev);
  219. if (ret < 0) {
  220. printf("Regulator: %s - can't get the Current!\n",
  221. uc_pdata->name);
  222. return failure(ret);
  223. }
  224. printf("%d uA\n", ret);
  225. return CMD_RET_SUCCESS;
  226. }
  227. current = simple_strtoul(argv[1], NULL, 0);
  228. if (current < uc_pdata->min_uA || current > uc_pdata->max_uA) {
  229. printf("Current exceeds regulator constraint limits\n");
  230. return CMD_RET_FAILURE;
  231. }
  232. ret = regulator_set_current(dev, current);
  233. if (ret) {
  234. printf("Regulator: %s - can't set the Current!\n",
  235. uc_pdata->name);
  236. return failure(ret);
  237. }
  238. return CMD_RET_SUCCESS;
  239. }
  240. static int do_mode(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  241. {
  242. struct udevice *dev;
  243. struct dm_regulator_uclass_platdata *uc_pdata;
  244. int mode;
  245. int ret;
  246. ret = curr_dev_and_platdata(&dev, &uc_pdata, false);
  247. if (ret)
  248. return ret;
  249. if (argc == 1) {
  250. ret = regulator_get_mode(dev);
  251. if (ret < 0) {
  252. printf("Regulator: %s - can't get the operation mode!\n",
  253. uc_pdata->name);
  254. return failure(ret);
  255. }
  256. printf("mode id: %d\n", ret);
  257. return CMD_RET_SUCCESS;
  258. }
  259. mode = simple_strtoul(argv[1], NULL, 0);
  260. ret = regulator_set_mode(dev, mode);
  261. if (ret) {
  262. printf("Regulator: %s - can't set the operation mode!\n",
  263. uc_pdata->name);
  264. return failure(ret);
  265. }
  266. return CMD_RET_SUCCESS;
  267. }
  268. static int do_enable(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  269. {
  270. struct udevice *dev;
  271. struct dm_regulator_uclass_platdata *uc_pdata;
  272. int ret;
  273. ret = curr_dev_and_platdata(&dev, &uc_pdata, true);
  274. if (ret)
  275. return ret;
  276. ret = regulator_set_enable(dev, true);
  277. if (ret) {
  278. printf("Regulator: %s - can't enable!\n", uc_pdata->name);
  279. return failure(ret);
  280. }
  281. return CMD_RET_SUCCESS;
  282. }
  283. static int do_disable(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  284. {
  285. struct udevice *dev;
  286. struct dm_regulator_uclass_platdata *uc_pdata;
  287. int ret;
  288. ret = curr_dev_and_platdata(&dev, &uc_pdata, true);
  289. if (ret)
  290. return ret;
  291. ret = regulator_set_enable(dev, false);
  292. if (ret) {
  293. printf("Regulator: %s - can't disable!\n", uc_pdata->name);
  294. return failure(ret);
  295. }
  296. return CMD_RET_SUCCESS;
  297. }
  298. static cmd_tbl_t subcmd[] = {
  299. U_BOOT_CMD_MKENT(dev, 2, 1, do_dev, "", ""),
  300. U_BOOT_CMD_MKENT(list, 1, 1, do_list, "", ""),
  301. U_BOOT_CMD_MKENT(info, 2, 1, do_info, "", ""),
  302. U_BOOT_CMD_MKENT(status, 2, 1, do_status, "", ""),
  303. U_BOOT_CMD_MKENT(value, 3, 1, do_value, "", ""),
  304. U_BOOT_CMD_MKENT(current, 3, 1, do_current, "", ""),
  305. U_BOOT_CMD_MKENT(mode, 2, 1, do_mode, "", ""),
  306. U_BOOT_CMD_MKENT(enable, 1, 1, do_enable, "", ""),
  307. U_BOOT_CMD_MKENT(disable, 1, 1, do_disable, "", ""),
  308. };
  309. static int do_regulator(cmd_tbl_t *cmdtp, int flag, int argc,
  310. char * const argv[])
  311. {
  312. cmd_tbl_t *cmd;
  313. argc--;
  314. argv++;
  315. cmd = find_cmd_tbl(argv[0], subcmd, ARRAY_SIZE(subcmd));
  316. if (cmd == NULL || argc > cmd->maxargs)
  317. return CMD_RET_USAGE;
  318. return cmd->cmd(cmdtp, flag, argc, argv);
  319. }
  320. U_BOOT_CMD(regulator, CONFIG_SYS_MAXARGS, 1, do_regulator,
  321. "uclass operations",
  322. "list - list UCLASS regulator devices\n"
  323. "regulator dev [regulator-name] - show/[set] operating regulator device\n"
  324. "regulator info - print constraints info\n"
  325. "regulator status - print operating status\n"
  326. "regulator value [val] [-f] - print/[set] voltage value [uV] (force)\n"
  327. "regulator current [val] - print/[set] current value [uA]\n"
  328. "regulator mode [id] - print/[set] operating mode id\n"
  329. "regulator enable - enable the regulator output\n"
  330. "regulator disable - disable the regulator output\n"
  331. );