sprom.c 29 KB

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  1. /*
  2. * Copyright (C) 2004 Florian Schirmer <jolt@tuxbox.org>
  3. * Copyright (C) 2006 Felix Fietkau <nbd@openwrt.org>
  4. * Copyright (C) 2006 Michael Buesch <m@bues.ch>
  5. * Copyright (C) 2010 Waldemar Brodkorb <wbx@openadk.org>
  6. * Copyright (C) 2010-2012 Hauke Mehrtens <hauke@hauke-m.de>
  7. *
  8. * This program is free software; you can redistribute it and/or modify it
  9. * under the terms of the GNU General Public License as published by the
  10. * Free Software Foundation; either version 2 of the License, or (at your
  11. * option) any later version.
  12. *
  13. * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
  14. * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
  15. * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN
  16. * NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
  17. * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
  18. * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
  19. * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
  20. * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  21. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
  22. * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  23. *
  24. * You should have received a copy of the GNU General Public License along
  25. * with this program; if not, write to the Free Software Foundation, Inc.,
  26. * 675 Mass Ave, Cambridge, MA 02139, USA.
  27. */
  28. #include <bcm47xx.h>
  29. #include <bcm47xx_nvram.h>
  30. static void create_key(const char *prefix, const char *postfix,
  31. const char *name, char *buf, int len)
  32. {
  33. if (prefix && postfix)
  34. snprintf(buf, len, "%s%s%s", prefix, name, postfix);
  35. else if (prefix)
  36. snprintf(buf, len, "%s%s", prefix, name);
  37. else if (postfix)
  38. snprintf(buf, len, "%s%s", name, postfix);
  39. else
  40. snprintf(buf, len, "%s", name);
  41. }
  42. static int get_nvram_var(const char *prefix, const char *postfix,
  43. const char *name, char *buf, int len, bool fallback)
  44. {
  45. char key[40];
  46. int err;
  47. create_key(prefix, postfix, name, key, sizeof(key));
  48. err = bcm47xx_nvram_getenv(key, buf, len);
  49. if (fallback && err == -ENOENT && prefix) {
  50. create_key(NULL, postfix, name, key, sizeof(key));
  51. err = bcm47xx_nvram_getenv(key, buf, len);
  52. }
  53. return err;
  54. }
  55. #define NVRAM_READ_VAL(type) \
  56. static void nvram_read_ ## type (const char *prefix, \
  57. const char *postfix, const char *name, \
  58. type *val, type allset, bool fallback) \
  59. { \
  60. char buf[100]; \
  61. int err; \
  62. type var; \
  63. \
  64. err = get_nvram_var(prefix, postfix, name, buf, sizeof(buf), \
  65. fallback); \
  66. if (err < 0) \
  67. return; \
  68. err = kstrto ## type(strim(buf), 0, &var); \
  69. if (err) { \
  70. pr_warn("can not parse nvram name %s%s%s with value %s got %i\n", \
  71. prefix, name, postfix, buf, err); \
  72. return; \
  73. } \
  74. if (allset && var == allset) \
  75. return; \
  76. *val = var; \
  77. }
  78. NVRAM_READ_VAL(u8)
  79. NVRAM_READ_VAL(s8)
  80. NVRAM_READ_VAL(u16)
  81. NVRAM_READ_VAL(u32)
  82. #undef NVRAM_READ_VAL
  83. static void nvram_read_u32_2(const char *prefix, const char *name,
  84. u16 *val_lo, u16 *val_hi, bool fallback)
  85. {
  86. char buf[100];
  87. int err;
  88. u32 val;
  89. err = get_nvram_var(prefix, NULL, name, buf, sizeof(buf), fallback);
  90. if (err < 0)
  91. return;
  92. err = kstrtou32(strim(buf), 0, &val);
  93. if (err) {
  94. pr_warn("can not parse nvram name %s%s with value %s got %i\n",
  95. prefix, name, buf, err);
  96. return;
  97. }
  98. *val_lo = (val & 0x0000FFFFU);
  99. *val_hi = (val & 0xFFFF0000U) >> 16;
  100. }
  101. static void nvram_read_leddc(const char *prefix, const char *name,
  102. u8 *leddc_on_time, u8 *leddc_off_time,
  103. bool fallback)
  104. {
  105. char buf[100];
  106. int err;
  107. u32 val;
  108. err = get_nvram_var(prefix, NULL, name, buf, sizeof(buf), fallback);
  109. if (err < 0)
  110. return;
  111. err = kstrtou32(strim(buf), 0, &val);
  112. if (err) {
  113. pr_warn("can not parse nvram name %s%s with value %s got %i\n",
  114. prefix, name, buf, err);
  115. return;
  116. }
  117. if (val == 0xffff || val == 0xffffffff)
  118. return;
  119. *leddc_on_time = val & 0xff;
  120. *leddc_off_time = (val >> 16) & 0xff;
  121. }
  122. static void nvram_read_macaddr(const char *prefix, const char *name,
  123. u8 val[6], bool fallback)
  124. {
  125. char buf[100];
  126. int err;
  127. err = get_nvram_var(prefix, NULL, name, buf, sizeof(buf), fallback);
  128. if (err < 0)
  129. return;
  130. bcm47xx_nvram_parse_macaddr(buf, val);
  131. }
  132. static void nvram_read_alpha2(const char *prefix, const char *name,
  133. char val[2], bool fallback)
  134. {
  135. char buf[10];
  136. int err;
  137. err = get_nvram_var(prefix, NULL, name, buf, sizeof(buf), fallback);
  138. if (err < 0)
  139. return;
  140. if (buf[0] == '0')
  141. return;
  142. if (strlen(buf) > 2) {
  143. pr_warn("alpha2 is too long %s\n", buf);
  144. return;
  145. }
  146. memcpy(val, buf, 2);
  147. }
  148. static void bcm47xx_fill_sprom_r1234589(struct ssb_sprom *sprom,
  149. const char *prefix, bool fallback)
  150. {
  151. nvram_read_u16(prefix, NULL, "devid", &sprom->dev_id, 0, fallback);
  152. nvram_read_u8(prefix, NULL, "ledbh0", &sprom->gpio0, 0xff, fallback);
  153. nvram_read_u8(prefix, NULL, "ledbh1", &sprom->gpio1, 0xff, fallback);
  154. nvram_read_u8(prefix, NULL, "ledbh2", &sprom->gpio2, 0xff, fallback);
  155. nvram_read_u8(prefix, NULL, "ledbh3", &sprom->gpio3, 0xff, fallback);
  156. nvram_read_u8(prefix, NULL, "aa2g", &sprom->ant_available_bg, 0,
  157. fallback);
  158. nvram_read_u8(prefix, NULL, "aa5g", &sprom->ant_available_a, 0,
  159. fallback);
  160. nvram_read_s8(prefix, NULL, "ag0", &sprom->antenna_gain.a0, 0,
  161. fallback);
  162. nvram_read_s8(prefix, NULL, "ag1", &sprom->antenna_gain.a1, 0,
  163. fallback);
  164. nvram_read_alpha2(prefix, "ccode", sprom->alpha2, fallback);
  165. }
  166. static void bcm47xx_fill_sprom_r12389(struct ssb_sprom *sprom,
  167. const char *prefix, bool fallback)
  168. {
  169. nvram_read_u16(prefix, NULL, "pa0b0", &sprom->pa0b0, 0, fallback);
  170. nvram_read_u16(prefix, NULL, "pa0b1", &sprom->pa0b1, 0, fallback);
  171. nvram_read_u16(prefix, NULL, "pa0b2", &sprom->pa0b2, 0, fallback);
  172. nvram_read_u8(prefix, NULL, "pa0itssit", &sprom->itssi_bg, 0, fallback);
  173. nvram_read_u8(prefix, NULL, "pa0maxpwr", &sprom->maxpwr_bg, 0,
  174. fallback);
  175. nvram_read_u16(prefix, NULL, "pa1b0", &sprom->pa1b0, 0, fallback);
  176. nvram_read_u16(prefix, NULL, "pa1b1", &sprom->pa1b1, 0, fallback);
  177. nvram_read_u16(prefix, NULL, "pa1b2", &sprom->pa1b2, 0, fallback);
  178. nvram_read_u8(prefix, NULL, "pa1itssit", &sprom->itssi_a, 0, fallback);
  179. nvram_read_u8(prefix, NULL, "pa1maxpwr", &sprom->maxpwr_a, 0, fallback);
  180. }
  181. static void bcm47xx_fill_sprom_r1(struct ssb_sprom *sprom, const char *prefix,
  182. bool fallback)
  183. {
  184. nvram_read_u16(prefix, NULL, "boardflags", &sprom->boardflags_lo, 0,
  185. fallback);
  186. nvram_read_u8(prefix, NULL, "cc", &sprom->country_code, 0, fallback);
  187. }
  188. static void bcm47xx_fill_sprom_r2389(struct ssb_sprom *sprom,
  189. const char *prefix, bool fallback)
  190. {
  191. nvram_read_u8(prefix, NULL, "opo", &sprom->opo, 0, fallback);
  192. nvram_read_u16(prefix, NULL, "pa1lob0", &sprom->pa1lob0, 0, fallback);
  193. nvram_read_u16(prefix, NULL, "pa1lob1", &sprom->pa1lob1, 0, fallback);
  194. nvram_read_u16(prefix, NULL, "pa1lob2", &sprom->pa1lob2, 0, fallback);
  195. nvram_read_u16(prefix, NULL, "pa1hib0", &sprom->pa1hib0, 0, fallback);
  196. nvram_read_u16(prefix, NULL, "pa1hib1", &sprom->pa1hib1, 0, fallback);
  197. nvram_read_u16(prefix, NULL, "pa1hib2", &sprom->pa1hib2, 0, fallback);
  198. nvram_read_u8(prefix, NULL, "pa1lomaxpwr", &sprom->maxpwr_al, 0,
  199. fallback);
  200. nvram_read_u8(prefix, NULL, "pa1himaxpwr", &sprom->maxpwr_ah, 0,
  201. fallback);
  202. }
  203. static void bcm47xx_fill_sprom_r389(struct ssb_sprom *sprom, const char *prefix,
  204. bool fallback)
  205. {
  206. nvram_read_u8(prefix, NULL, "bxa2g", &sprom->bxa2g, 0, fallback);
  207. nvram_read_u8(prefix, NULL, "rssisav2g", &sprom->rssisav2g, 0,
  208. fallback);
  209. nvram_read_u8(prefix, NULL, "rssismc2g", &sprom->rssismc2g, 0,
  210. fallback);
  211. nvram_read_u8(prefix, NULL, "rssismf2g", &sprom->rssismf2g, 0,
  212. fallback);
  213. nvram_read_u8(prefix, NULL, "bxa5g", &sprom->bxa5g, 0, fallback);
  214. nvram_read_u8(prefix, NULL, "rssisav5g", &sprom->rssisav5g, 0,
  215. fallback);
  216. nvram_read_u8(prefix, NULL, "rssismc5g", &sprom->rssismc5g, 0,
  217. fallback);
  218. nvram_read_u8(prefix, NULL, "rssismf5g", &sprom->rssismf5g, 0,
  219. fallback);
  220. nvram_read_u8(prefix, NULL, "tri2g", &sprom->tri2g, 0, fallback);
  221. nvram_read_u8(prefix, NULL, "tri5g", &sprom->tri5g, 0, fallback);
  222. nvram_read_u8(prefix, NULL, "tri5gl", &sprom->tri5gl, 0, fallback);
  223. nvram_read_u8(prefix, NULL, "tri5gh", &sprom->tri5gh, 0, fallback);
  224. nvram_read_s8(prefix, NULL, "rxpo2g", &sprom->rxpo2g, 0, fallback);
  225. nvram_read_s8(prefix, NULL, "rxpo5g", &sprom->rxpo5g, 0, fallback);
  226. }
  227. static void bcm47xx_fill_sprom_r3(struct ssb_sprom *sprom, const char *prefix,
  228. bool fallback)
  229. {
  230. nvram_read_u8(prefix, NULL, "regrev", &sprom->regrev, 0, fallback);
  231. nvram_read_leddc(prefix, "leddc", &sprom->leddc_on_time,
  232. &sprom->leddc_off_time, fallback);
  233. }
  234. static void bcm47xx_fill_sprom_r4589(struct ssb_sprom *sprom,
  235. const char *prefix, bool fallback)
  236. {
  237. nvram_read_u8(prefix, NULL, "regrev", &sprom->regrev, 0, fallback);
  238. nvram_read_s8(prefix, NULL, "ag2", &sprom->antenna_gain.a2, 0,
  239. fallback);
  240. nvram_read_s8(prefix, NULL, "ag3", &sprom->antenna_gain.a3, 0,
  241. fallback);
  242. nvram_read_u8(prefix, NULL, "txchain", &sprom->txchain, 0xf, fallback);
  243. nvram_read_u8(prefix, NULL, "rxchain", &sprom->rxchain, 0xf, fallback);
  244. nvram_read_u8(prefix, NULL, "antswitch", &sprom->antswitch, 0xff,
  245. fallback);
  246. nvram_read_leddc(prefix, "leddc", &sprom->leddc_on_time,
  247. &sprom->leddc_off_time, fallback);
  248. }
  249. static void bcm47xx_fill_sprom_r458(struct ssb_sprom *sprom, const char *prefix,
  250. bool fallback)
  251. {
  252. nvram_read_u16(prefix, NULL, "cck2gpo", &sprom->cck2gpo, 0, fallback);
  253. nvram_read_u32(prefix, NULL, "ofdm2gpo", &sprom->ofdm2gpo, 0, fallback);
  254. nvram_read_u32(prefix, NULL, "ofdm5gpo", &sprom->ofdm5gpo, 0, fallback);
  255. nvram_read_u32(prefix, NULL, "ofdm5glpo", &sprom->ofdm5glpo, 0,
  256. fallback);
  257. nvram_read_u32(prefix, NULL, "ofdm5ghpo", &sprom->ofdm5ghpo, 0,
  258. fallback);
  259. nvram_read_u16(prefix, NULL, "cddpo", &sprom->cddpo, 0, fallback);
  260. nvram_read_u16(prefix, NULL, "stbcpo", &sprom->stbcpo, 0, fallback);
  261. nvram_read_u16(prefix, NULL, "bw40po", &sprom->bw40po, 0, fallback);
  262. nvram_read_u16(prefix, NULL, "bwduppo", &sprom->bwduppo, 0, fallback);
  263. nvram_read_u16(prefix, NULL, "mcs2gpo0", &sprom->mcs2gpo[0], 0,
  264. fallback);
  265. nvram_read_u16(prefix, NULL, "mcs2gpo1", &sprom->mcs2gpo[1], 0,
  266. fallback);
  267. nvram_read_u16(prefix, NULL, "mcs2gpo2", &sprom->mcs2gpo[2], 0,
  268. fallback);
  269. nvram_read_u16(prefix, NULL, "mcs2gpo3", &sprom->mcs2gpo[3], 0,
  270. fallback);
  271. nvram_read_u16(prefix, NULL, "mcs2gpo4", &sprom->mcs2gpo[4], 0,
  272. fallback);
  273. nvram_read_u16(prefix, NULL, "mcs2gpo5", &sprom->mcs2gpo[5], 0,
  274. fallback);
  275. nvram_read_u16(prefix, NULL, "mcs2gpo6", &sprom->mcs2gpo[6], 0,
  276. fallback);
  277. nvram_read_u16(prefix, NULL, "mcs2gpo7", &sprom->mcs2gpo[7], 0,
  278. fallback);
  279. nvram_read_u16(prefix, NULL, "mcs5gpo0", &sprom->mcs5gpo[0], 0,
  280. fallback);
  281. nvram_read_u16(prefix, NULL, "mcs5gpo1", &sprom->mcs5gpo[1], 0,
  282. fallback);
  283. nvram_read_u16(prefix, NULL, "mcs5gpo2", &sprom->mcs5gpo[2], 0,
  284. fallback);
  285. nvram_read_u16(prefix, NULL, "mcs5gpo3", &sprom->mcs5gpo[3], 0,
  286. fallback);
  287. nvram_read_u16(prefix, NULL, "mcs5gpo4", &sprom->mcs5gpo[4], 0,
  288. fallback);
  289. nvram_read_u16(prefix, NULL, "mcs5gpo5", &sprom->mcs5gpo[5], 0,
  290. fallback);
  291. nvram_read_u16(prefix, NULL, "mcs5gpo6", &sprom->mcs5gpo[6], 0,
  292. fallback);
  293. nvram_read_u16(prefix, NULL, "mcs5gpo7", &sprom->mcs5gpo[7], 0,
  294. fallback);
  295. nvram_read_u16(prefix, NULL, "mcs5glpo0", &sprom->mcs5glpo[0], 0,
  296. fallback);
  297. nvram_read_u16(prefix, NULL, "mcs5glpo1", &sprom->mcs5glpo[1], 0,
  298. fallback);
  299. nvram_read_u16(prefix, NULL, "mcs5glpo2", &sprom->mcs5glpo[2], 0,
  300. fallback);
  301. nvram_read_u16(prefix, NULL, "mcs5glpo3", &sprom->mcs5glpo[3], 0,
  302. fallback);
  303. nvram_read_u16(prefix, NULL, "mcs5glpo4", &sprom->mcs5glpo[4], 0,
  304. fallback);
  305. nvram_read_u16(prefix, NULL, "mcs5glpo5", &sprom->mcs5glpo[5], 0,
  306. fallback);
  307. nvram_read_u16(prefix, NULL, "mcs5glpo6", &sprom->mcs5glpo[6], 0,
  308. fallback);
  309. nvram_read_u16(prefix, NULL, "mcs5glpo7", &sprom->mcs5glpo[7], 0,
  310. fallback);
  311. nvram_read_u16(prefix, NULL, "mcs5ghpo0", &sprom->mcs5ghpo[0], 0,
  312. fallback);
  313. nvram_read_u16(prefix, NULL, "mcs5ghpo1", &sprom->mcs5ghpo[1], 0,
  314. fallback);
  315. nvram_read_u16(prefix, NULL, "mcs5ghpo2", &sprom->mcs5ghpo[2], 0,
  316. fallback);
  317. nvram_read_u16(prefix, NULL, "mcs5ghpo3", &sprom->mcs5ghpo[3], 0,
  318. fallback);
  319. nvram_read_u16(prefix, NULL, "mcs5ghpo4", &sprom->mcs5ghpo[4], 0,
  320. fallback);
  321. nvram_read_u16(prefix, NULL, "mcs5ghpo5", &sprom->mcs5ghpo[5], 0,
  322. fallback);
  323. nvram_read_u16(prefix, NULL, "mcs5ghpo6", &sprom->mcs5ghpo[6], 0,
  324. fallback);
  325. nvram_read_u16(prefix, NULL, "mcs5ghpo7", &sprom->mcs5ghpo[7], 0,
  326. fallback);
  327. }
  328. static void bcm47xx_fill_sprom_r45(struct ssb_sprom *sprom, const char *prefix,
  329. bool fallback)
  330. {
  331. nvram_read_u8(prefix, NULL, "txpid2ga0", &sprom->txpid2g[0], 0,
  332. fallback);
  333. nvram_read_u8(prefix, NULL, "txpid2ga1", &sprom->txpid2g[1], 0,
  334. fallback);
  335. nvram_read_u8(prefix, NULL, "txpid2ga2", &sprom->txpid2g[2], 0,
  336. fallback);
  337. nvram_read_u8(prefix, NULL, "txpid2ga3", &sprom->txpid2g[3], 0,
  338. fallback);
  339. nvram_read_u8(prefix, NULL, "txpid5ga0", &sprom->txpid5g[0], 0,
  340. fallback);
  341. nvram_read_u8(prefix, NULL, "txpid5ga1", &sprom->txpid5g[1], 0,
  342. fallback);
  343. nvram_read_u8(prefix, NULL, "txpid5ga2", &sprom->txpid5g[2], 0,
  344. fallback);
  345. nvram_read_u8(prefix, NULL, "txpid5ga3", &sprom->txpid5g[3], 0,
  346. fallback);
  347. nvram_read_u8(prefix, NULL, "txpid5gla0", &sprom->txpid5gl[0], 0,
  348. fallback);
  349. nvram_read_u8(prefix, NULL, "txpid5gla1", &sprom->txpid5gl[1], 0,
  350. fallback);
  351. nvram_read_u8(prefix, NULL, "txpid5gla2", &sprom->txpid5gl[2], 0,
  352. fallback);
  353. nvram_read_u8(prefix, NULL, "txpid5gla3", &sprom->txpid5gl[3], 0,
  354. fallback);
  355. nvram_read_u8(prefix, NULL, "txpid5gha0", &sprom->txpid5gh[0], 0,
  356. fallback);
  357. nvram_read_u8(prefix, NULL, "txpid5gha1", &sprom->txpid5gh[1], 0,
  358. fallback);
  359. nvram_read_u8(prefix, NULL, "txpid5gha2", &sprom->txpid5gh[2], 0,
  360. fallback);
  361. nvram_read_u8(prefix, NULL, "txpid5gha3", &sprom->txpid5gh[3], 0,
  362. fallback);
  363. }
  364. static void bcm47xx_fill_sprom_r89(struct ssb_sprom *sprom, const char *prefix,
  365. bool fallback)
  366. {
  367. nvram_read_u8(prefix, NULL, "tssipos2g", &sprom->fem.ghz2.tssipos, 0,
  368. fallback);
  369. nvram_read_u8(prefix, NULL, "extpagain2g",
  370. &sprom->fem.ghz2.extpa_gain, 0, fallback);
  371. nvram_read_u8(prefix, NULL, "pdetrange2g",
  372. &sprom->fem.ghz2.pdet_range, 0, fallback);
  373. nvram_read_u8(prefix, NULL, "triso2g", &sprom->fem.ghz2.tr_iso, 0,
  374. fallback);
  375. nvram_read_u8(prefix, NULL, "antswctl2g", &sprom->fem.ghz2.antswlut, 0,
  376. fallback);
  377. nvram_read_u8(prefix, NULL, "tssipos5g", &sprom->fem.ghz5.tssipos, 0,
  378. fallback);
  379. nvram_read_u8(prefix, NULL, "extpagain5g",
  380. &sprom->fem.ghz5.extpa_gain, 0, fallback);
  381. nvram_read_u8(prefix, NULL, "pdetrange5g",
  382. &sprom->fem.ghz5.pdet_range, 0, fallback);
  383. nvram_read_u8(prefix, NULL, "triso5g", &sprom->fem.ghz5.tr_iso, 0,
  384. fallback);
  385. nvram_read_u8(prefix, NULL, "antswctl5g", &sprom->fem.ghz5.antswlut, 0,
  386. fallback);
  387. nvram_read_u8(prefix, NULL, "tempthresh", &sprom->tempthresh, 0,
  388. fallback);
  389. nvram_read_u8(prefix, NULL, "tempoffset", &sprom->tempoffset, 0,
  390. fallback);
  391. nvram_read_u16(prefix, NULL, "rawtempsense", &sprom->rawtempsense, 0,
  392. fallback);
  393. nvram_read_u8(prefix, NULL, "measpower", &sprom->measpower, 0,
  394. fallback);
  395. nvram_read_u8(prefix, NULL, "tempsense_slope",
  396. &sprom->tempsense_slope, 0, fallback);
  397. nvram_read_u8(prefix, NULL, "tempcorrx", &sprom->tempcorrx, 0,
  398. fallback);
  399. nvram_read_u8(prefix, NULL, "tempsense_option",
  400. &sprom->tempsense_option, 0, fallback);
  401. nvram_read_u8(prefix, NULL, "freqoffset_corr",
  402. &sprom->freqoffset_corr, 0, fallback);
  403. nvram_read_u8(prefix, NULL, "iqcal_swp_dis", &sprom->iqcal_swp_dis, 0,
  404. fallback);
  405. nvram_read_u8(prefix, NULL, "hw_iqcal_en", &sprom->hw_iqcal_en, 0,
  406. fallback);
  407. nvram_read_u8(prefix, NULL, "elna2g", &sprom->elna2g, 0, fallback);
  408. nvram_read_u8(prefix, NULL, "elna5g", &sprom->elna5g, 0, fallback);
  409. nvram_read_u8(prefix, NULL, "phycal_tempdelta",
  410. &sprom->phycal_tempdelta, 0, fallback);
  411. nvram_read_u8(prefix, NULL, "temps_period", &sprom->temps_period, 0,
  412. fallback);
  413. nvram_read_u8(prefix, NULL, "temps_hysteresis",
  414. &sprom->temps_hysteresis, 0, fallback);
  415. nvram_read_u8(prefix, NULL, "measpower1", &sprom->measpower1, 0,
  416. fallback);
  417. nvram_read_u8(prefix, NULL, "measpower2", &sprom->measpower2, 0,
  418. fallback);
  419. nvram_read_u8(prefix, NULL, "rxgainerr2ga0",
  420. &sprom->rxgainerr2ga[0], 0, fallback);
  421. nvram_read_u8(prefix, NULL, "rxgainerr2ga1",
  422. &sprom->rxgainerr2ga[1], 0, fallback);
  423. nvram_read_u8(prefix, NULL, "rxgainerr2ga2",
  424. &sprom->rxgainerr2ga[2], 0, fallback);
  425. nvram_read_u8(prefix, NULL, "rxgainerr5gla0",
  426. &sprom->rxgainerr5gla[0], 0, fallback);
  427. nvram_read_u8(prefix, NULL, "rxgainerr5gla1",
  428. &sprom->rxgainerr5gla[1], 0, fallback);
  429. nvram_read_u8(prefix, NULL, "rxgainerr5gla2",
  430. &sprom->rxgainerr5gla[2], 0, fallback);
  431. nvram_read_u8(prefix, NULL, "rxgainerr5gma0",
  432. &sprom->rxgainerr5gma[0], 0, fallback);
  433. nvram_read_u8(prefix, NULL, "rxgainerr5gma1",
  434. &sprom->rxgainerr5gma[1], 0, fallback);
  435. nvram_read_u8(prefix, NULL, "rxgainerr5gma2",
  436. &sprom->rxgainerr5gma[2], 0, fallback);
  437. nvram_read_u8(prefix, NULL, "rxgainerr5gha0",
  438. &sprom->rxgainerr5gha[0], 0, fallback);
  439. nvram_read_u8(prefix, NULL, "rxgainerr5gha1",
  440. &sprom->rxgainerr5gha[1], 0, fallback);
  441. nvram_read_u8(prefix, NULL, "rxgainerr5gha2",
  442. &sprom->rxgainerr5gha[2], 0, fallback);
  443. nvram_read_u8(prefix, NULL, "rxgainerr5gua0",
  444. &sprom->rxgainerr5gua[0], 0, fallback);
  445. nvram_read_u8(prefix, NULL, "rxgainerr5gua1",
  446. &sprom->rxgainerr5gua[1], 0, fallback);
  447. nvram_read_u8(prefix, NULL, "rxgainerr5gua2",
  448. &sprom->rxgainerr5gua[2], 0, fallback);
  449. nvram_read_u8(prefix, NULL, "noiselvl2ga0", &sprom->noiselvl2ga[0], 0,
  450. fallback);
  451. nvram_read_u8(prefix, NULL, "noiselvl2ga1", &sprom->noiselvl2ga[1], 0,
  452. fallback);
  453. nvram_read_u8(prefix, NULL, "noiselvl2ga2", &sprom->noiselvl2ga[2], 0,
  454. fallback);
  455. nvram_read_u8(prefix, NULL, "noiselvl5gla0",
  456. &sprom->noiselvl5gla[0], 0, fallback);
  457. nvram_read_u8(prefix, NULL, "noiselvl5gla1",
  458. &sprom->noiselvl5gla[1], 0, fallback);
  459. nvram_read_u8(prefix, NULL, "noiselvl5gla2",
  460. &sprom->noiselvl5gla[2], 0, fallback);
  461. nvram_read_u8(prefix, NULL, "noiselvl5gma0",
  462. &sprom->noiselvl5gma[0], 0, fallback);
  463. nvram_read_u8(prefix, NULL, "noiselvl5gma1",
  464. &sprom->noiselvl5gma[1], 0, fallback);
  465. nvram_read_u8(prefix, NULL, "noiselvl5gma2",
  466. &sprom->noiselvl5gma[2], 0, fallback);
  467. nvram_read_u8(prefix, NULL, "noiselvl5gha0",
  468. &sprom->noiselvl5gha[0], 0, fallback);
  469. nvram_read_u8(prefix, NULL, "noiselvl5gha1",
  470. &sprom->noiselvl5gha[1], 0, fallback);
  471. nvram_read_u8(prefix, NULL, "noiselvl5gha2",
  472. &sprom->noiselvl5gha[2], 0, fallback);
  473. nvram_read_u8(prefix, NULL, "noiselvl5gua0",
  474. &sprom->noiselvl5gua[0], 0, fallback);
  475. nvram_read_u8(prefix, NULL, "noiselvl5gua1",
  476. &sprom->noiselvl5gua[1], 0, fallback);
  477. nvram_read_u8(prefix, NULL, "noiselvl5gua2",
  478. &sprom->noiselvl5gua[2], 0, fallback);
  479. nvram_read_u8(prefix, NULL, "pcieingress_war",
  480. &sprom->pcieingress_war, 0, fallback);
  481. }
  482. static void bcm47xx_fill_sprom_r9(struct ssb_sprom *sprom, const char *prefix,
  483. bool fallback)
  484. {
  485. nvram_read_u16(prefix, NULL, "cckbw202gpo", &sprom->cckbw202gpo, 0,
  486. fallback);
  487. nvram_read_u16(prefix, NULL, "cckbw20ul2gpo", &sprom->cckbw20ul2gpo, 0,
  488. fallback);
  489. nvram_read_u32(prefix, NULL, "legofdmbw202gpo",
  490. &sprom->legofdmbw202gpo, 0, fallback);
  491. nvram_read_u32(prefix, NULL, "legofdmbw20ul2gpo",
  492. &sprom->legofdmbw20ul2gpo, 0, fallback);
  493. nvram_read_u32(prefix, NULL, "legofdmbw205glpo",
  494. &sprom->legofdmbw205glpo, 0, fallback);
  495. nvram_read_u32(prefix, NULL, "legofdmbw20ul5glpo",
  496. &sprom->legofdmbw20ul5glpo, 0, fallback);
  497. nvram_read_u32(prefix, NULL, "legofdmbw205gmpo",
  498. &sprom->legofdmbw205gmpo, 0, fallback);
  499. nvram_read_u32(prefix, NULL, "legofdmbw20ul5gmpo",
  500. &sprom->legofdmbw20ul5gmpo, 0, fallback);
  501. nvram_read_u32(prefix, NULL, "legofdmbw205ghpo",
  502. &sprom->legofdmbw205ghpo, 0, fallback);
  503. nvram_read_u32(prefix, NULL, "legofdmbw20ul5ghpo",
  504. &sprom->legofdmbw20ul5ghpo, 0, fallback);
  505. nvram_read_u32(prefix, NULL, "mcsbw202gpo", &sprom->mcsbw202gpo, 0,
  506. fallback);
  507. nvram_read_u32(prefix, NULL, "mcsbw20ul2gpo", &sprom->mcsbw20ul2gpo, 0,
  508. fallback);
  509. nvram_read_u32(prefix, NULL, "mcsbw402gpo", &sprom->mcsbw402gpo, 0,
  510. fallback);
  511. nvram_read_u32(prefix, NULL, "mcsbw205glpo", &sprom->mcsbw205glpo, 0,
  512. fallback);
  513. nvram_read_u32(prefix, NULL, "mcsbw20ul5glpo",
  514. &sprom->mcsbw20ul5glpo, 0, fallback);
  515. nvram_read_u32(prefix, NULL, "mcsbw405glpo", &sprom->mcsbw405glpo, 0,
  516. fallback);
  517. nvram_read_u32(prefix, NULL, "mcsbw205gmpo", &sprom->mcsbw205gmpo, 0,
  518. fallback);
  519. nvram_read_u32(prefix, NULL, "mcsbw20ul5gmpo",
  520. &sprom->mcsbw20ul5gmpo, 0, fallback);
  521. nvram_read_u32(prefix, NULL, "mcsbw405gmpo", &sprom->mcsbw405gmpo, 0,
  522. fallback);
  523. nvram_read_u32(prefix, NULL, "mcsbw205ghpo", &sprom->mcsbw205ghpo, 0,
  524. fallback);
  525. nvram_read_u32(prefix, NULL, "mcsbw20ul5ghpo",
  526. &sprom->mcsbw20ul5ghpo, 0, fallback);
  527. nvram_read_u32(prefix, NULL, "mcsbw405ghpo", &sprom->mcsbw405ghpo, 0,
  528. fallback);
  529. nvram_read_u16(prefix, NULL, "mcs32po", &sprom->mcs32po, 0, fallback);
  530. nvram_read_u16(prefix, NULL, "legofdm40duppo",
  531. &sprom->legofdm40duppo, 0, fallback);
  532. nvram_read_u8(prefix, NULL, "sar2g", &sprom->sar2g, 0, fallback);
  533. nvram_read_u8(prefix, NULL, "sar5g", &sprom->sar5g, 0, fallback);
  534. }
  535. static void bcm47xx_fill_sprom_path_r4589(struct ssb_sprom *sprom,
  536. const char *prefix, bool fallback)
  537. {
  538. char postfix[2];
  539. int i;
  540. for (i = 0; i < ARRAY_SIZE(sprom->core_pwr_info); i++) {
  541. struct ssb_sprom_core_pwr_info *pwr_info = &sprom->core_pwr_info[i];
  542. snprintf(postfix, sizeof(postfix), "%i", i);
  543. nvram_read_u8(prefix, postfix, "maxp2ga",
  544. &pwr_info->maxpwr_2g, 0, fallback);
  545. nvram_read_u8(prefix, postfix, "itt2ga",
  546. &pwr_info->itssi_2g, 0, fallback);
  547. nvram_read_u8(prefix, postfix, "itt5ga",
  548. &pwr_info->itssi_5g, 0, fallback);
  549. nvram_read_u16(prefix, postfix, "pa2gw0a",
  550. &pwr_info->pa_2g[0], 0, fallback);
  551. nvram_read_u16(prefix, postfix, "pa2gw1a",
  552. &pwr_info->pa_2g[1], 0, fallback);
  553. nvram_read_u16(prefix, postfix, "pa2gw2a",
  554. &pwr_info->pa_2g[2], 0, fallback);
  555. nvram_read_u8(prefix, postfix, "maxp5ga",
  556. &pwr_info->maxpwr_5g, 0, fallback);
  557. nvram_read_u8(prefix, postfix, "maxp5gha",
  558. &pwr_info->maxpwr_5gh, 0, fallback);
  559. nvram_read_u8(prefix, postfix, "maxp5gla",
  560. &pwr_info->maxpwr_5gl, 0, fallback);
  561. nvram_read_u16(prefix, postfix, "pa5gw0a",
  562. &pwr_info->pa_5g[0], 0, fallback);
  563. nvram_read_u16(prefix, postfix, "pa5gw1a",
  564. &pwr_info->pa_5g[1], 0, fallback);
  565. nvram_read_u16(prefix, postfix, "pa5gw2a",
  566. &pwr_info->pa_5g[2], 0, fallback);
  567. nvram_read_u16(prefix, postfix, "pa5glw0a",
  568. &pwr_info->pa_5gl[0], 0, fallback);
  569. nvram_read_u16(prefix, postfix, "pa5glw1a",
  570. &pwr_info->pa_5gl[1], 0, fallback);
  571. nvram_read_u16(prefix, postfix, "pa5glw2a",
  572. &pwr_info->pa_5gl[2], 0, fallback);
  573. nvram_read_u16(prefix, postfix, "pa5ghw0a",
  574. &pwr_info->pa_5gh[0], 0, fallback);
  575. nvram_read_u16(prefix, postfix, "pa5ghw1a",
  576. &pwr_info->pa_5gh[1], 0, fallback);
  577. nvram_read_u16(prefix, postfix, "pa5ghw2a",
  578. &pwr_info->pa_5gh[2], 0, fallback);
  579. }
  580. }
  581. static void bcm47xx_fill_sprom_path_r45(struct ssb_sprom *sprom,
  582. const char *prefix, bool fallback)
  583. {
  584. char postfix[2];
  585. int i;
  586. for (i = 0; i < ARRAY_SIZE(sprom->core_pwr_info); i++) {
  587. struct ssb_sprom_core_pwr_info *pwr_info = &sprom->core_pwr_info[i];
  588. snprintf(postfix, sizeof(postfix), "%i", i);
  589. nvram_read_u16(prefix, postfix, "pa2gw3a",
  590. &pwr_info->pa_2g[3], 0, fallback);
  591. nvram_read_u16(prefix, postfix, "pa5gw3a",
  592. &pwr_info->pa_5g[3], 0, fallback);
  593. nvram_read_u16(prefix, postfix, "pa5glw3a",
  594. &pwr_info->pa_5gl[3], 0, fallback);
  595. nvram_read_u16(prefix, postfix, "pa5ghw3a",
  596. &pwr_info->pa_5gh[3], 0, fallback);
  597. }
  598. }
  599. static void bcm47xx_fill_sprom_ethernet(struct ssb_sprom *sprom,
  600. const char *prefix, bool fallback)
  601. {
  602. nvram_read_macaddr(prefix, "et0macaddr", sprom->et0mac, fallback);
  603. nvram_read_u8(prefix, NULL, "et0mdcport", &sprom->et0mdcport, 0,
  604. fallback);
  605. nvram_read_u8(prefix, NULL, "et0phyaddr", &sprom->et0phyaddr, 0,
  606. fallback);
  607. nvram_read_macaddr(prefix, "et1macaddr", sprom->et1mac, fallback);
  608. nvram_read_u8(prefix, NULL, "et1mdcport", &sprom->et1mdcport, 0,
  609. fallback);
  610. nvram_read_u8(prefix, NULL, "et1phyaddr", &sprom->et1phyaddr, 0,
  611. fallback);
  612. nvram_read_macaddr(prefix, "macaddr", sprom->il0mac, fallback);
  613. nvram_read_macaddr(prefix, "il0macaddr", sprom->il0mac, fallback);
  614. }
  615. static void bcm47xx_fill_board_data(struct ssb_sprom *sprom, const char *prefix,
  616. bool fallback)
  617. {
  618. nvram_read_u16(prefix, NULL, "boardrev", &sprom->board_rev, 0, true);
  619. nvram_read_u16(prefix, NULL, "boardnum", &sprom->board_num, 0,
  620. fallback);
  621. nvram_read_u16(prefix, NULL, "boardtype", &sprom->board_type, 0, true);
  622. nvram_read_u32_2(prefix, "boardflags", &sprom->boardflags_lo,
  623. &sprom->boardflags_hi, fallback);
  624. nvram_read_u32_2(prefix, "boardflags2", &sprom->boardflags2_lo,
  625. &sprom->boardflags2_hi, fallback);
  626. }
  627. void bcm47xx_fill_sprom(struct ssb_sprom *sprom, const char *prefix,
  628. bool fallback)
  629. {
  630. bcm47xx_fill_sprom_ethernet(sprom, prefix, fallback);
  631. bcm47xx_fill_board_data(sprom, prefix, fallback);
  632. nvram_read_u8(prefix, NULL, "sromrev", &sprom->revision, 0, fallback);
  633. switch (sprom->revision) {
  634. case 1:
  635. bcm47xx_fill_sprom_r1234589(sprom, prefix, fallback);
  636. bcm47xx_fill_sprom_r12389(sprom, prefix, fallback);
  637. bcm47xx_fill_sprom_r1(sprom, prefix, fallback);
  638. break;
  639. case 2:
  640. bcm47xx_fill_sprom_r1234589(sprom, prefix, fallback);
  641. bcm47xx_fill_sprom_r12389(sprom, prefix, fallback);
  642. bcm47xx_fill_sprom_r2389(sprom, prefix, fallback);
  643. break;
  644. case 3:
  645. bcm47xx_fill_sprom_r1234589(sprom, prefix, fallback);
  646. bcm47xx_fill_sprom_r12389(sprom, prefix, fallback);
  647. bcm47xx_fill_sprom_r2389(sprom, prefix, fallback);
  648. bcm47xx_fill_sprom_r389(sprom, prefix, fallback);
  649. bcm47xx_fill_sprom_r3(sprom, prefix, fallback);
  650. break;
  651. case 4:
  652. case 5:
  653. bcm47xx_fill_sprom_r1234589(sprom, prefix, fallback);
  654. bcm47xx_fill_sprom_r4589(sprom, prefix, fallback);
  655. bcm47xx_fill_sprom_r458(sprom, prefix, fallback);
  656. bcm47xx_fill_sprom_r45(sprom, prefix, fallback);
  657. bcm47xx_fill_sprom_path_r4589(sprom, prefix, fallback);
  658. bcm47xx_fill_sprom_path_r45(sprom, prefix, fallback);
  659. break;
  660. case 8:
  661. bcm47xx_fill_sprom_r1234589(sprom, prefix, fallback);
  662. bcm47xx_fill_sprom_r12389(sprom, prefix, fallback);
  663. bcm47xx_fill_sprom_r2389(sprom, prefix, fallback);
  664. bcm47xx_fill_sprom_r389(sprom, prefix, fallback);
  665. bcm47xx_fill_sprom_r4589(sprom, prefix, fallback);
  666. bcm47xx_fill_sprom_r458(sprom, prefix, fallback);
  667. bcm47xx_fill_sprom_r89(sprom, prefix, fallback);
  668. bcm47xx_fill_sprom_path_r4589(sprom, prefix, fallback);
  669. break;
  670. case 9:
  671. bcm47xx_fill_sprom_r1234589(sprom, prefix, fallback);
  672. bcm47xx_fill_sprom_r12389(sprom, prefix, fallback);
  673. bcm47xx_fill_sprom_r2389(sprom, prefix, fallback);
  674. bcm47xx_fill_sprom_r389(sprom, prefix, fallback);
  675. bcm47xx_fill_sprom_r4589(sprom, prefix, fallback);
  676. bcm47xx_fill_sprom_r89(sprom, prefix, fallback);
  677. bcm47xx_fill_sprom_r9(sprom, prefix, fallback);
  678. bcm47xx_fill_sprom_path_r4589(sprom, prefix, fallback);
  679. break;
  680. default:
  681. pr_warn("Unsupported SPROM revision %d detected. Will extract"
  682. " v1\n", sprom->revision);
  683. sprom->revision = 1;
  684. bcm47xx_fill_sprom_r1234589(sprom, prefix, fallback);
  685. bcm47xx_fill_sprom_r12389(sprom, prefix, fallback);
  686. bcm47xx_fill_sprom_r1(sprom, prefix, fallback);
  687. }
  688. }
  689. #ifdef CONFIG_BCM47XX_SSB
  690. void bcm47xx_fill_ssb_boardinfo(struct ssb_boardinfo *boardinfo,
  691. const char *prefix)
  692. {
  693. nvram_read_u16(prefix, NULL, "boardvendor", &boardinfo->vendor, 0,
  694. true);
  695. if (!boardinfo->vendor)
  696. boardinfo->vendor = SSB_BOARDVENDOR_BCM;
  697. nvram_read_u16(prefix, NULL, "boardtype", &boardinfo->type, 0, true);
  698. }
  699. #endif
  700. #ifdef CONFIG_BCM47XX_BCMA
  701. void bcm47xx_fill_bcma_boardinfo(struct bcma_boardinfo *boardinfo,
  702. const char *prefix)
  703. {
  704. nvram_read_u16(prefix, NULL, "boardvendor", &boardinfo->vendor, 0,
  705. true);
  706. if (!boardinfo->vendor)
  707. boardinfo->vendor = SSB_BOARDVENDOR_BCM;
  708. nvram_read_u16(prefix, NULL, "boardtype", &boardinfo->type, 0, true);
  709. }
  710. #endif