cm_t35.c 15 KB

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  1. /*
  2. * (C) Copyright 2011 CompuLab, Ltd. <www.compulab.co.il>
  3. *
  4. * Authors: Mike Rapoport <mike@compulab.co.il>
  5. * Igor Grinberg <grinberg@compulab.co.il>
  6. *
  7. * Derived from omap3evm and Beagle Board by
  8. * Manikandan Pillai <mani.pillai@ti.com>
  9. * Richard Woodruff <r-woodruff2@ti.com>
  10. * Syed Mohammed Khasim <x0khasim@ti.com>
  11. *
  12. * See file CREDITS for list of people who contributed to this
  13. * project.
  14. *
  15. * This program is free software; you can redistribute it and/or
  16. * modify it under the terms of the GNU General Public License as
  17. * published by the Free Software Foundation; either version 2 of
  18. * the License, or (at your option) any later version.
  19. *
  20. * This program is distributed in the hope that it will be useful,
  21. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  22. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  23. * GNU General Public License for more details.
  24. *
  25. * You should have received a copy of the GNU General Public License
  26. * along with this program; if not, write to the Free Software
  27. * Foundation, Inc.
  28. */
  29. #include <common.h>
  30. #include <status_led.h>
  31. #include <netdev.h>
  32. #include <net.h>
  33. #include <i2c.h>
  34. #include <twl4030.h>
  35. #include <linux/compiler.h>
  36. #include <asm/io.h>
  37. #include <asm/arch/mem.h>
  38. #include <asm/arch/mux.h>
  39. #include <asm/arch/mmc_host_def.h>
  40. #include <asm/arch/sys_proto.h>
  41. #include <asm/mach-types.h>
  42. #include "eeprom.h"
  43. DECLARE_GLOBAL_DATA_PTR;
  44. const omap3_sysinfo sysinfo = {
  45. DDR_DISCRETE,
  46. "CM-T3x board",
  47. "NAND",
  48. };
  49. static u32 gpmc_net_config[GPMC_MAX_REG] = {
  50. NET_GPMC_CONFIG1,
  51. NET_GPMC_CONFIG2,
  52. NET_GPMC_CONFIG3,
  53. NET_GPMC_CONFIG4,
  54. NET_GPMC_CONFIG5,
  55. NET_GPMC_CONFIG6,
  56. 0
  57. };
  58. static u32 gpmc_nand_config[GPMC_MAX_REG] = {
  59. SMNAND_GPMC_CONFIG1,
  60. SMNAND_GPMC_CONFIG2,
  61. SMNAND_GPMC_CONFIG3,
  62. SMNAND_GPMC_CONFIG4,
  63. SMNAND_GPMC_CONFIG5,
  64. SMNAND_GPMC_CONFIG6,
  65. 0,
  66. };
  67. /*
  68. * Routine: board_init
  69. * Description: Early hardware init.
  70. */
  71. int board_init(void)
  72. {
  73. gpmc_init(); /* in SRAM or SDRAM, finish GPMC */
  74. enable_gpmc_cs_config(gpmc_nand_config, &gpmc_cfg->cs[0],
  75. CONFIG_SYS_NAND_BASE, GPMC_SIZE_16M);
  76. /* board id for Linux */
  77. if (get_cpu_family() == CPU_OMAP34XX)
  78. gd->bd->bi_arch_number = MACH_TYPE_CM_T35;
  79. else
  80. gd->bd->bi_arch_number = MACH_TYPE_CM_T3730;
  81. /* boot param addr */
  82. gd->bd->bi_boot_params = (OMAP34XX_SDRC_CS0 + 0x100);
  83. #if defined(CONFIG_STATUS_LED) && defined(STATUS_LED_BOOT)
  84. status_led_set(STATUS_LED_BOOT, STATUS_LED_ON);
  85. #endif
  86. return 0;
  87. }
  88. /*
  89. * Routine: misc_init_r
  90. * Description: display die ID
  91. */
  92. int misc_init_r(void)
  93. {
  94. dieid_num_r();
  95. return 0;
  96. }
  97. /*
  98. * Routine: set_muxconf_regs
  99. * Description: Setting up the configuration Mux registers specific to the
  100. * hardware. Many pins need to be moved from protect to primary
  101. * mode.
  102. */
  103. static void cm_t3x_set_common_muxconf(void)
  104. {
  105. /* SDRC */
  106. MUX_VAL(CP(SDRC_D0), (IEN | PTD | DIS | M0)); /*SDRC_D0*/
  107. MUX_VAL(CP(SDRC_D1), (IEN | PTD | DIS | M0)); /*SDRC_D1*/
  108. MUX_VAL(CP(SDRC_D2), (IEN | PTD | DIS | M0)); /*SDRC_D2*/
  109. MUX_VAL(CP(SDRC_D3), (IEN | PTD | DIS | M0)); /*SDRC_D3*/
  110. MUX_VAL(CP(SDRC_D4), (IEN | PTD | DIS | M0)); /*SDRC_D4*/
  111. MUX_VAL(CP(SDRC_D5), (IEN | PTD | DIS | M0)); /*SDRC_D5*/
  112. MUX_VAL(CP(SDRC_D6), (IEN | PTD | DIS | M0)); /*SDRC_D6*/
  113. MUX_VAL(CP(SDRC_D7), (IEN | PTD | DIS | M0)); /*SDRC_D7*/
  114. MUX_VAL(CP(SDRC_D8), (IEN | PTD | DIS | M0)); /*SDRC_D8*/
  115. MUX_VAL(CP(SDRC_D9), (IEN | PTD | DIS | M0)); /*SDRC_D9*/
  116. MUX_VAL(CP(SDRC_D10), (IEN | PTD | DIS | M0)); /*SDRC_D10*/
  117. MUX_VAL(CP(SDRC_D11), (IEN | PTD | DIS | M0)); /*SDRC_D11*/
  118. MUX_VAL(CP(SDRC_D12), (IEN | PTD | DIS | M0)); /*SDRC_D12*/
  119. MUX_VAL(CP(SDRC_D13), (IEN | PTD | DIS | M0)); /*SDRC_D13*/
  120. MUX_VAL(CP(SDRC_D14), (IEN | PTD | DIS | M0)); /*SDRC_D14*/
  121. MUX_VAL(CP(SDRC_D15), (IEN | PTD | DIS | M0)); /*SDRC_D15*/
  122. MUX_VAL(CP(SDRC_D16), (IEN | PTD | DIS | M0)); /*SDRC_D16*/
  123. MUX_VAL(CP(SDRC_D17), (IEN | PTD | DIS | M0)); /*SDRC_D17*/
  124. MUX_VAL(CP(SDRC_D18), (IEN | PTD | DIS | M0)); /*SDRC_D18*/
  125. MUX_VAL(CP(SDRC_D19), (IEN | PTD | DIS | M0)); /*SDRC_D19*/
  126. MUX_VAL(CP(SDRC_D20), (IEN | PTD | DIS | M0)); /*SDRC_D20*/
  127. MUX_VAL(CP(SDRC_D21), (IEN | PTD | DIS | M0)); /*SDRC_D21*/
  128. MUX_VAL(CP(SDRC_D22), (IEN | PTD | DIS | M0)); /*SDRC_D22*/
  129. MUX_VAL(CP(SDRC_D23), (IEN | PTD | DIS | M0)); /*SDRC_D23*/
  130. MUX_VAL(CP(SDRC_D24), (IEN | PTD | DIS | M0)); /*SDRC_D24*/
  131. MUX_VAL(CP(SDRC_D25), (IEN | PTD | DIS | M0)); /*SDRC_D25*/
  132. MUX_VAL(CP(SDRC_D26), (IEN | PTD | DIS | M0)); /*SDRC_D26*/
  133. MUX_VAL(CP(SDRC_D27), (IEN | PTD | DIS | M0)); /*SDRC_D27*/
  134. MUX_VAL(CP(SDRC_D28), (IEN | PTD | DIS | M0)); /*SDRC_D28*/
  135. MUX_VAL(CP(SDRC_D29), (IEN | PTD | DIS | M0)); /*SDRC_D29*/
  136. MUX_VAL(CP(SDRC_D30), (IEN | PTD | DIS | M0)); /*SDRC_D30*/
  137. MUX_VAL(CP(SDRC_D31), (IEN | PTD | DIS | M0)); /*SDRC_D31*/
  138. MUX_VAL(CP(SDRC_CLK), (IEN | PTD | DIS | M0)); /*SDRC_CLK*/
  139. MUX_VAL(CP(SDRC_DQS0), (IEN | PTD | DIS | M0)); /*SDRC_DQS0*/
  140. MUX_VAL(CP(SDRC_DQS1), (IEN | PTD | DIS | M0)); /*SDRC_DQS1*/
  141. MUX_VAL(CP(SDRC_DQS2), (IEN | PTD | DIS | M0)); /*SDRC_DQS2*/
  142. MUX_VAL(CP(SDRC_DQS3), (IEN | PTD | DIS | M0)); /*SDRC_DQS3*/
  143. MUX_VAL(CP(SDRC_CKE0), (IDIS | PTU | EN | M0)); /*SDRC_CKE0*/
  144. MUX_VAL(CP(SDRC_CKE1), (IDIS | PTD | DIS | M7)); /*SDRC_CKE1*/
  145. /* GPMC */
  146. MUX_VAL(CP(GPMC_A1), (IDIS | PTU | EN | M0)); /*GPMC_A1*/
  147. MUX_VAL(CP(GPMC_A2), (IDIS | PTU | EN | M0)); /*GPMC_A2*/
  148. MUX_VAL(CP(GPMC_A3), (IDIS | PTU | EN | M0)); /*GPMC_A3*/
  149. MUX_VAL(CP(GPMC_A4), (IDIS | PTU | EN | M0)); /*GPMC_A4*/
  150. MUX_VAL(CP(GPMC_A5), (IDIS | PTU | EN | M0)); /*GPMC_A5*/
  151. MUX_VAL(CP(GPMC_A6), (IDIS | PTU | EN | M0)); /*GPMC_A6*/
  152. MUX_VAL(CP(GPMC_A7), (IDIS | PTU | EN | M0)); /*GPMC_A7*/
  153. MUX_VAL(CP(GPMC_A8), (IDIS | PTU | EN | M0)); /*GPMC_A8*/
  154. MUX_VAL(CP(GPMC_A9), (IDIS | PTU | EN | M0)); /*GPMC_A9*/
  155. MUX_VAL(CP(GPMC_A10), (IDIS | PTU | EN | M0)); /*GPMC_A10*/
  156. MUX_VAL(CP(GPMC_D0), (IEN | PTU | EN | M0)); /*GPMC_D0*/
  157. MUX_VAL(CP(GPMC_D1), (IEN | PTU | EN | M0)); /*GPMC_D1*/
  158. MUX_VAL(CP(GPMC_D2), (IEN | PTU | EN | M0)); /*GPMC_D2*/
  159. MUX_VAL(CP(GPMC_D3), (IEN | PTU | EN | M0)); /*GPMC_D3*/
  160. MUX_VAL(CP(GPMC_D4), (IEN | PTU | EN | M0)); /*GPMC_D4*/
  161. MUX_VAL(CP(GPMC_D5), (IEN | PTU | EN | M0)); /*GPMC_D5*/
  162. MUX_VAL(CP(GPMC_D6), (IEN | PTU | EN | M0)); /*GPMC_D6*/
  163. MUX_VAL(CP(GPMC_D7), (IEN | PTU | EN | M0)); /*GPMC_D7*/
  164. MUX_VAL(CP(GPMC_D8), (IEN | PTU | EN | M0)); /*GPMC_D8*/
  165. MUX_VAL(CP(GPMC_D9), (IEN | PTU | EN | M0)); /*GPMC_D9*/
  166. MUX_VAL(CP(GPMC_D10), (IEN | PTU | EN | M0)); /*GPMC_D10*/
  167. MUX_VAL(CP(GPMC_D11), (IEN | PTU | EN | M0)); /*GPMC_D11*/
  168. MUX_VAL(CP(GPMC_D12), (IEN | PTU | EN | M0)); /*GPMC_D12*/
  169. MUX_VAL(CP(GPMC_D13), (IEN | PTU | EN | M0)); /*GPMC_D13*/
  170. MUX_VAL(CP(GPMC_D14), (IEN | PTU | EN | M0)); /*GPMC_D14*/
  171. MUX_VAL(CP(GPMC_D15), (IEN | PTU | EN | M0)); /*GPMC_D15*/
  172. MUX_VAL(CP(GPMC_NCS0), (IDIS | PTU | EN | M0)); /*GPMC_nCS0*/
  173. /* SB-T35 Ethernet */
  174. MUX_VAL(CP(GPMC_NCS4), (IEN | PTU | EN | M0)); /*GPMC_nCS4*/
  175. /* CM-T3x Ethernet */
  176. MUX_VAL(CP(GPMC_NCS5), (IDIS | PTU | DIS | M0)); /*GPMC_nCS5*/
  177. MUX_VAL(CP(GPMC_CLK), (IEN | PTD | DIS | M4)); /*GPIO_59*/
  178. MUX_VAL(CP(GPMC_NADV_ALE), (IDIS | PTD | DIS | M0)); /*nADV_ALE*/
  179. MUX_VAL(CP(GPMC_NOE), (IDIS | PTD | DIS | M0)); /*nOE*/
  180. MUX_VAL(CP(GPMC_NWE), (IDIS | PTD | DIS | M0)); /*nWE*/
  181. MUX_VAL(CP(GPMC_NBE0_CLE), (IDIS | PTU | EN | M0)); /*nBE0_CLE*/
  182. MUX_VAL(CP(GPMC_NBE1), (IDIS | PTD | DIS | M4)); /*GPIO_61*/
  183. MUX_VAL(CP(GPMC_NWP), (IEN | PTD | DIS | M0)); /*nWP*/
  184. MUX_VAL(CP(GPMC_WAIT0), (IEN | PTU | EN | M0)); /*WAIT0*/
  185. /* DSS */
  186. MUX_VAL(CP(DSS_PCLK), (IDIS | PTD | DIS | M0)); /*DSS_PCLK*/
  187. MUX_VAL(CP(DSS_HSYNC), (IDIS | PTD | DIS | M0)); /*DSS_HSYNC*/
  188. MUX_VAL(CP(DSS_VSYNC), (IDIS | PTD | DIS | M0)); /*DSS_VSYNC*/
  189. MUX_VAL(CP(DSS_ACBIAS), (IDIS | PTD | DIS | M0)); /*DSS_ACBIAS*/
  190. MUX_VAL(CP(DSS_DATA6), (IDIS | PTD | DIS | M0)); /*DSS_DATA6*/
  191. MUX_VAL(CP(DSS_DATA7), (IDIS | PTD | DIS | M0)); /*DSS_DATA7*/
  192. MUX_VAL(CP(DSS_DATA8), (IDIS | PTD | DIS | M0)); /*DSS_DATA8*/
  193. MUX_VAL(CP(DSS_DATA9), (IDIS | PTD | DIS | M0)); /*DSS_DATA9*/
  194. MUX_VAL(CP(DSS_DATA10), (IDIS | PTD | DIS | M0)); /*DSS_DATA10*/
  195. MUX_VAL(CP(DSS_DATA11), (IDIS | PTD | DIS | M0)); /*DSS_DATA11*/
  196. MUX_VAL(CP(DSS_DATA12), (IDIS | PTD | DIS | M0)); /*DSS_DATA12*/
  197. MUX_VAL(CP(DSS_DATA13), (IDIS | PTD | DIS | M0)); /*DSS_DATA13*/
  198. MUX_VAL(CP(DSS_DATA14), (IDIS | PTD | DIS | M0)); /*DSS_DATA14*/
  199. MUX_VAL(CP(DSS_DATA15), (IDIS | PTD | DIS | M0)); /*DSS_DATA15*/
  200. MUX_VAL(CP(DSS_DATA16), (IDIS | PTD | DIS | M0)); /*DSS_DATA16*/
  201. MUX_VAL(CP(DSS_DATA17), (IDIS | PTD | DIS | M0)); /*DSS_DATA17*/
  202. /* serial interface */
  203. MUX_VAL(CP(UART3_RX_IRRX), (IEN | PTD | DIS | M0)); /*UART3_RX*/
  204. MUX_VAL(CP(UART3_TX_IRTX), (IDIS | PTD | DIS | M0)); /*UART3_TX*/
  205. /* mUSB */
  206. MUX_VAL(CP(HSUSB0_CLK), (IEN | PTD | DIS | M0)); /*HSUSB0_CLK*/
  207. MUX_VAL(CP(HSUSB0_STP), (IDIS | PTU | EN | M0)); /*HSUSB0_STP*/
  208. MUX_VAL(CP(HSUSB0_DIR), (IEN | PTD | DIS | M0)); /*HSUSB0_DIR*/
  209. MUX_VAL(CP(HSUSB0_NXT), (IEN | PTD | DIS | M0)); /*HSUSB0_NXT*/
  210. MUX_VAL(CP(HSUSB0_DATA0), (IEN | PTD | DIS | M0)); /*HSUSB0_DATA0*/
  211. MUX_VAL(CP(HSUSB0_DATA1), (IEN | PTD | DIS | M0)); /*HSUSB0_DATA1*/
  212. MUX_VAL(CP(HSUSB0_DATA2), (IEN | PTD | DIS | M0)); /*HSUSB0_DATA2*/
  213. MUX_VAL(CP(HSUSB0_DATA3), (IEN | PTD | DIS | M0)); /*HSUSB0_DATA3*/
  214. MUX_VAL(CP(HSUSB0_DATA4), (IEN | PTD | DIS | M0)); /*HSUSB0_DATA4*/
  215. MUX_VAL(CP(HSUSB0_DATA5), (IEN | PTD | DIS | M0)); /*HSUSB0_DATA5*/
  216. MUX_VAL(CP(HSUSB0_DATA6), (IEN | PTD | DIS | M0)); /*HSUSB0_DATA6*/
  217. MUX_VAL(CP(HSUSB0_DATA7), (IEN | PTD | DIS | M0)); /*HSUSB0_DATA7*/
  218. /* I2C1 */
  219. MUX_VAL(CP(I2C1_SCL), (IEN | PTU | EN | M0)); /*I2C1_SCL*/
  220. MUX_VAL(CP(I2C1_SDA), (IEN | PTU | EN | M0)); /*I2C1_SDA*/
  221. /* control and debug */
  222. MUX_VAL(CP(SYS_32K), (IEN | PTD | DIS | M0)); /*SYS_32K*/
  223. MUX_VAL(CP(SYS_CLKREQ), (IEN | PTD | DIS | M0)); /*SYS_CLKREQ*/
  224. MUX_VAL(CP(SYS_NIRQ), (IEN | PTU | EN | M0)); /*SYS_nIRQ*/
  225. MUX_VAL(CP(SYS_OFF_MODE), (IEN | PTD | DIS | M0)); /*OFF_MODE*/
  226. MUX_VAL(CP(SYS_CLKOUT1), (IEN | PTD | DIS | M0)); /*CLKOUT1*/
  227. MUX_VAL(CP(SYS_CLKOUT2), (IDIS | PTU | DIS | M4)); /*green LED*/
  228. MUX_VAL(CP(JTAG_nTRST), (IEN | PTD | DIS | M0)); /*JTAG_nTRST*/
  229. MUX_VAL(CP(JTAG_TCK), (IEN | PTD | DIS | M0)); /*JTAG_TCK*/
  230. MUX_VAL(CP(JTAG_TMS), (IEN | PTD | DIS | M0)); /*JTAG_TMS*/
  231. MUX_VAL(CP(JTAG_TDI), (IEN | PTD | DIS | M0)); /*JTAG_TDI*/
  232. /* MMC1 */
  233. MUX_VAL(CP(MMC1_CLK), (IDIS | PTU | EN | M0)); /*MMC1_CLK*/
  234. MUX_VAL(CP(MMC1_CMD), (IEN | PTU | EN | M0)); /*MMC1_CMD*/
  235. MUX_VAL(CP(MMC1_DAT0), (IEN | PTU | EN | M0)); /*MMC1_DAT0*/
  236. MUX_VAL(CP(MMC1_DAT1), (IEN | PTU | EN | M0)); /*MMC1_DAT1*/
  237. MUX_VAL(CP(MMC1_DAT2), (IEN | PTU | EN | M0)); /*MMC1_DAT2*/
  238. MUX_VAL(CP(MMC1_DAT3), (IEN | PTU | EN | M0)); /*MMC1_DAT3*/
  239. }
  240. static void cm_t35_set_muxconf(void)
  241. {
  242. /* DSS */
  243. MUX_VAL(CP(DSS_DATA0), (IDIS | PTD | DIS | M0)); /*DSS_DATA0*/
  244. MUX_VAL(CP(DSS_DATA1), (IDIS | PTD | DIS | M0)); /*DSS_DATA1*/
  245. MUX_VAL(CP(DSS_DATA2), (IDIS | PTD | DIS | M0)); /*DSS_DATA2*/
  246. MUX_VAL(CP(DSS_DATA3), (IDIS | PTD | DIS | M0)); /*DSS_DATA3*/
  247. MUX_VAL(CP(DSS_DATA4), (IDIS | PTD | DIS | M0)); /*DSS_DATA4*/
  248. MUX_VAL(CP(DSS_DATA5), (IDIS | PTD | DIS | M0)); /*DSS_DATA5*/
  249. MUX_VAL(CP(DSS_DATA18), (IDIS | PTD | DIS | M0)); /*DSS_DATA18*/
  250. MUX_VAL(CP(DSS_DATA19), (IDIS | PTD | DIS | M0)); /*DSS_DATA19*/
  251. MUX_VAL(CP(DSS_DATA20), (IDIS | PTD | DIS | M0)); /*DSS_DATA20*/
  252. MUX_VAL(CP(DSS_DATA21), (IDIS | PTD | DIS | M0)); /*DSS_DATA21*/
  253. MUX_VAL(CP(DSS_DATA22), (IDIS | PTD | DIS | M0)); /*DSS_DATA22*/
  254. MUX_VAL(CP(DSS_DATA23), (IDIS | PTD | DIS | M0)); /*DSS_DATA23*/
  255. /* MMC1 */
  256. MUX_VAL(CP(MMC1_DAT4), (IEN | PTU | EN | M0)); /*MMC1_DAT4*/
  257. MUX_VAL(CP(MMC1_DAT5), (IEN | PTU | EN | M0)); /*MMC1_DAT5*/
  258. MUX_VAL(CP(MMC1_DAT6), (IEN | PTU | EN | M0)); /*MMC1_DAT6*/
  259. MUX_VAL(CP(MMC1_DAT7), (IEN | PTU | EN | M0)); /*MMC1_DAT7*/
  260. }
  261. static void cm_t3730_set_muxconf(void)
  262. {
  263. /* DSS */
  264. MUX_VAL(CP(DSS_DATA18), (IDIS | PTD | DIS | M3)); /*DSS_DATA0*/
  265. MUX_VAL(CP(DSS_DATA19), (IDIS | PTD | DIS | M3)); /*DSS_DATA1*/
  266. MUX_VAL(CP(DSS_DATA20), (IDIS | PTD | DIS | M3)); /*DSS_DATA2*/
  267. MUX_VAL(CP(DSS_DATA21), (IDIS | PTD | DIS | M3)); /*DSS_DATA3*/
  268. MUX_VAL(CP(DSS_DATA22), (IDIS | PTD | DIS | M3)); /*DSS_DATA4*/
  269. MUX_VAL(CP(DSS_DATA23), (IDIS | PTD | DIS | M3)); /*DSS_DATA5*/
  270. MUX_VAL(CP(SYS_BOOT0), (IDIS | PTD | DIS | M3)); /*DSS_DATA18*/
  271. MUX_VAL(CP(SYS_BOOT1), (IDIS | PTD | DIS | M3)); /*DSS_DATA19*/
  272. MUX_VAL(CP(SYS_BOOT3), (IDIS | PTD | DIS | M3)); /*DSS_DATA20*/
  273. MUX_VAL(CP(SYS_BOOT4), (IDIS | PTD | DIS | M3)); /*DSS_DATA21*/
  274. MUX_VAL(CP(SYS_BOOT5), (IDIS | PTD | DIS | M3)); /*DSS_DATA22*/
  275. MUX_VAL(CP(SYS_BOOT6), (IDIS | PTD | DIS | M3)); /*DSS_DATA23*/
  276. }
  277. void set_muxconf_regs(void)
  278. {
  279. cm_t3x_set_common_muxconf();
  280. if (get_cpu_family() == CPU_OMAP34XX)
  281. cm_t35_set_muxconf();
  282. else
  283. cm_t3730_set_muxconf();
  284. }
  285. #ifdef CONFIG_GENERIC_MMC
  286. int board_mmc_init(bd_t *bis)
  287. {
  288. return omap_mmc_init(0, 0, 0);
  289. }
  290. #endif
  291. /*
  292. * Routine: setup_net_chip_gmpc
  293. * Description: Setting up the configuration GPMC registers specific to the
  294. * Ethernet hardware.
  295. */
  296. static void setup_net_chip_gmpc(void)
  297. {
  298. struct ctrl *ctrl_base = (struct ctrl *)OMAP34XX_CTRL_BASE;
  299. enable_gpmc_cs_config(gpmc_net_config, &gpmc_cfg->cs[5],
  300. CM_T3X_SMC911X_BASE, GPMC_SIZE_16M);
  301. enable_gpmc_cs_config(gpmc_net_config, &gpmc_cfg->cs[4],
  302. SB_T35_SMC911X_BASE, GPMC_SIZE_16M);
  303. /* Enable off mode for NWE in PADCONF_GPMC_NWE register */
  304. writew(readw(&ctrl_base->gpmc_nwe) | 0x0E00, &ctrl_base->gpmc_nwe);
  305. /* Enable off mode for NOE in PADCONF_GPMC_NADV_ALE register */
  306. writew(readw(&ctrl_base->gpmc_noe) | 0x0E00, &ctrl_base->gpmc_noe);
  307. /* Enable off mode for ALE in PADCONF_GPMC_NADV_ALE register */
  308. writew(readw(&ctrl_base->gpmc_nadv_ale) | 0x0E00,
  309. &ctrl_base->gpmc_nadv_ale);
  310. }
  311. #ifdef CONFIG_DRIVER_OMAP34XX_I2C
  312. /*
  313. * Routine: reset_net_chip
  314. * Description: reset the Ethernet controller via TPS65930 GPIO
  315. */
  316. static void reset_net_chip(void)
  317. {
  318. /* Set GPIO1 of TPS65930 as output */
  319. twl4030_i2c_write_u8(TWL4030_CHIP_GPIO, 0x02,
  320. TWL4030_BASEADD_GPIO + 0x03);
  321. /* Send a pulse on the GPIO pin */
  322. twl4030_i2c_write_u8(TWL4030_CHIP_GPIO, 0x02,
  323. TWL4030_BASEADD_GPIO + 0x0C);
  324. udelay(1);
  325. twl4030_i2c_write_u8(TWL4030_CHIP_GPIO, 0x02,
  326. TWL4030_BASEADD_GPIO + 0x09);
  327. mdelay(40);
  328. twl4030_i2c_write_u8(TWL4030_CHIP_GPIO, 0x02,
  329. TWL4030_BASEADD_GPIO + 0x0C);
  330. mdelay(1);
  331. }
  332. #else
  333. static inline void reset_net_chip(void) {}
  334. #endif
  335. #ifdef CONFIG_SMC911X
  336. /*
  337. * Routine: handle_mac_address
  338. * Description: prepare MAC address for on-board Ethernet.
  339. */
  340. static int handle_mac_address(void)
  341. {
  342. unsigned char enetaddr[6];
  343. int rc;
  344. rc = eth_getenv_enetaddr("ethaddr", enetaddr);
  345. if (rc)
  346. return 0;
  347. rc = cm_t3x_eeprom_read_mac_addr(enetaddr);
  348. if (rc)
  349. return rc;
  350. if (!is_valid_ether_addr(enetaddr))
  351. return -1;
  352. return eth_setenv_enetaddr("ethaddr", enetaddr);
  353. }
  354. /*
  355. * Routine: board_eth_init
  356. * Description: initialize module and base-board Ethernet chips
  357. */
  358. int board_eth_init(bd_t *bis)
  359. {
  360. int rc = 0, rc1 = 0;
  361. setup_net_chip_gmpc();
  362. reset_net_chip();
  363. rc1 = handle_mac_address();
  364. if (rc1)
  365. printf("CM-T3x: No MAC address found\n");
  366. rc1 = smc911x_initialize(0, CM_T3X_SMC911X_BASE);
  367. if (rc1 > 0)
  368. rc++;
  369. rc1 = smc911x_initialize(1, SB_T35_SMC911X_BASE);
  370. if (rc1 > 0)
  371. rc++;
  372. return rc;
  373. }
  374. #endif
  375. void __weak get_board_serial(struct tag_serialnr *serialnr)
  376. {
  377. /*
  378. * This corresponds to what happens when we can communicate with the
  379. * eeprom but don't get a valid board serial value.
  380. */
  381. serialnr->low = 0;
  382. serialnr->high = 0;
  383. };