mach-mx28evk.c 8.5 KB

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  1. /*
  2. * Copyright 2010 Freescale Semiconductor, Inc. All Rights Reserved.
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation; either version 2 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. */
  14. #include <linux/delay.h>
  15. #include <linux/platform_device.h>
  16. #include <linux/gpio.h>
  17. #include <linux/irq.h>
  18. #include <linux/clk.h>
  19. #include <asm/mach-types.h>
  20. #include <asm/mach/arch.h>
  21. #include <asm/mach/time.h>
  22. #include <mach/common.h>
  23. #include <mach/iomux-mx28.h>
  24. #include "devices-mx28.h"
  25. #include "gpio.h"
  26. #define MX28EVK_FLEXCAN_SWITCH MXS_GPIO_NR(2, 13)
  27. #define MX28EVK_FEC_PHY_POWER MXS_GPIO_NR(2, 15)
  28. #define MX28EVK_BL_ENABLE MXS_GPIO_NR(3, 18)
  29. #define MX28EVK_LCD_ENABLE MXS_GPIO_NR(3, 30)
  30. #define MX28EVK_FEC_PHY_RESET MXS_GPIO_NR(4, 13)
  31. static const iomux_cfg_t mx28evk_pads[] __initconst = {
  32. /* duart */
  33. MX28_PAD_PWM0__DUART_RX | MXS_PAD_CTRL,
  34. MX28_PAD_PWM1__DUART_TX | MXS_PAD_CTRL,
  35. /* auart0 */
  36. MX28_PAD_AUART0_RX__AUART0_RX | MXS_PAD_CTRL,
  37. MX28_PAD_AUART0_TX__AUART0_TX | MXS_PAD_CTRL,
  38. MX28_PAD_AUART0_CTS__AUART0_CTS | MXS_PAD_CTRL,
  39. MX28_PAD_AUART0_RTS__AUART0_RTS | MXS_PAD_CTRL,
  40. /* auart3 */
  41. MX28_PAD_AUART3_RX__AUART3_RX | MXS_PAD_CTRL,
  42. MX28_PAD_AUART3_TX__AUART3_TX | MXS_PAD_CTRL,
  43. MX28_PAD_AUART3_CTS__AUART3_CTS | MXS_PAD_CTRL,
  44. MX28_PAD_AUART3_RTS__AUART3_RTS | MXS_PAD_CTRL,
  45. #define MXS_PAD_FEC (MXS_PAD_8MA | MXS_PAD_3V3 | MXS_PAD_PULLUP)
  46. /* fec0 */
  47. MX28_PAD_ENET0_MDC__ENET0_MDC | MXS_PAD_FEC,
  48. MX28_PAD_ENET0_MDIO__ENET0_MDIO | MXS_PAD_FEC,
  49. MX28_PAD_ENET0_RX_EN__ENET0_RX_EN | MXS_PAD_FEC,
  50. MX28_PAD_ENET0_RXD0__ENET0_RXD0 | MXS_PAD_FEC,
  51. MX28_PAD_ENET0_RXD1__ENET0_RXD1 | MXS_PAD_FEC,
  52. MX28_PAD_ENET0_TX_EN__ENET0_TX_EN | MXS_PAD_FEC,
  53. MX28_PAD_ENET0_TXD0__ENET0_TXD0 | MXS_PAD_FEC,
  54. MX28_PAD_ENET0_TXD1__ENET0_TXD1 | MXS_PAD_FEC,
  55. MX28_PAD_ENET_CLK__CLKCTRL_ENET | MXS_PAD_FEC,
  56. /* fec1 */
  57. MX28_PAD_ENET0_CRS__ENET1_RX_EN | MXS_PAD_FEC,
  58. MX28_PAD_ENET0_RXD2__ENET1_RXD0 | MXS_PAD_FEC,
  59. MX28_PAD_ENET0_RXD3__ENET1_RXD1 | MXS_PAD_FEC,
  60. MX28_PAD_ENET0_COL__ENET1_TX_EN | MXS_PAD_FEC,
  61. MX28_PAD_ENET0_TXD2__ENET1_TXD0 | MXS_PAD_FEC,
  62. MX28_PAD_ENET0_TXD3__ENET1_TXD1 | MXS_PAD_FEC,
  63. /* phy power line */
  64. MX28_PAD_SSP1_DATA3__GPIO_2_15 | MXS_PAD_CTRL,
  65. /* phy reset line */
  66. MX28_PAD_ENET0_RX_CLK__GPIO_4_13 | MXS_PAD_CTRL,
  67. /* flexcan0 */
  68. MX28_PAD_GPMI_RDY2__CAN0_TX,
  69. MX28_PAD_GPMI_RDY3__CAN0_RX,
  70. /* flexcan1 */
  71. MX28_PAD_GPMI_CE2N__CAN1_TX,
  72. MX28_PAD_GPMI_CE3N__CAN1_RX,
  73. /* transceiver power control */
  74. MX28_PAD_SSP1_CMD__GPIO_2_13,
  75. /* mxsfb (lcdif) */
  76. MX28_PAD_LCD_D00__LCD_D0 | MXS_PAD_CTRL,
  77. MX28_PAD_LCD_D01__LCD_D1 | MXS_PAD_CTRL,
  78. MX28_PAD_LCD_D02__LCD_D2 | MXS_PAD_CTRL,
  79. MX28_PAD_LCD_D03__LCD_D3 | MXS_PAD_CTRL,
  80. MX28_PAD_LCD_D04__LCD_D4 | MXS_PAD_CTRL,
  81. MX28_PAD_LCD_D05__LCD_D5 | MXS_PAD_CTRL,
  82. MX28_PAD_LCD_D06__LCD_D6 | MXS_PAD_CTRL,
  83. MX28_PAD_LCD_D07__LCD_D7 | MXS_PAD_CTRL,
  84. MX28_PAD_LCD_D08__LCD_D8 | MXS_PAD_CTRL,
  85. MX28_PAD_LCD_D09__LCD_D9 | MXS_PAD_CTRL,
  86. MX28_PAD_LCD_D10__LCD_D10 | MXS_PAD_CTRL,
  87. MX28_PAD_LCD_D11__LCD_D11 | MXS_PAD_CTRL,
  88. MX28_PAD_LCD_D12__LCD_D12 | MXS_PAD_CTRL,
  89. MX28_PAD_LCD_D13__LCD_D13 | MXS_PAD_CTRL,
  90. MX28_PAD_LCD_D14__LCD_D14 | MXS_PAD_CTRL,
  91. MX28_PAD_LCD_D15__LCD_D15 | MXS_PAD_CTRL,
  92. MX28_PAD_LCD_D16__LCD_D16 | MXS_PAD_CTRL,
  93. MX28_PAD_LCD_D17__LCD_D17 | MXS_PAD_CTRL,
  94. MX28_PAD_LCD_D18__LCD_D18 | MXS_PAD_CTRL,
  95. MX28_PAD_LCD_D19__LCD_D19 | MXS_PAD_CTRL,
  96. MX28_PAD_LCD_D20__LCD_D20 | MXS_PAD_CTRL,
  97. MX28_PAD_LCD_D21__LCD_D21 | MXS_PAD_CTRL,
  98. MX28_PAD_LCD_D22__LCD_D22 | MXS_PAD_CTRL,
  99. MX28_PAD_LCD_D23__LCD_D23 | MXS_PAD_CTRL,
  100. MX28_PAD_LCD_RD_E__LCD_VSYNC | MXS_PAD_CTRL,
  101. MX28_PAD_LCD_WR_RWN__LCD_HSYNC | MXS_PAD_CTRL,
  102. MX28_PAD_LCD_RS__LCD_DOTCLK | MXS_PAD_CTRL,
  103. MX28_PAD_LCD_CS__LCD_ENABLE | MXS_PAD_CTRL,
  104. /* LCD panel enable */
  105. MX28_PAD_LCD_RESET__GPIO_3_30 | MXS_PAD_CTRL,
  106. /* backlight control */
  107. MX28_PAD_PWM2__GPIO_3_18 | MXS_PAD_CTRL,
  108. };
  109. /* fec */
  110. static void __init mx28evk_fec_reset(void)
  111. {
  112. int ret;
  113. struct clk *clk;
  114. /* Enable fec phy clock */
  115. clk = clk_get_sys("pll2", NULL);
  116. if (!IS_ERR(clk))
  117. clk_enable(clk);
  118. /* Power up fec phy */
  119. ret = gpio_request(MX28EVK_FEC_PHY_POWER, "fec-phy-power");
  120. if (ret) {
  121. pr_err("Failed to request gpio fec-phy-%s: %d\n", "power", ret);
  122. return;
  123. }
  124. ret = gpio_direction_output(MX28EVK_FEC_PHY_POWER, 0);
  125. if (ret) {
  126. pr_err("Failed to drive gpio fec-phy-%s: %d\n", "power", ret);
  127. return;
  128. }
  129. /* Reset fec phy */
  130. ret = gpio_request(MX28EVK_FEC_PHY_RESET, "fec-phy-reset");
  131. if (ret) {
  132. pr_err("Failed to request gpio fec-phy-%s: %d\n", "reset", ret);
  133. return;
  134. }
  135. gpio_direction_output(MX28EVK_FEC_PHY_RESET, 0);
  136. if (ret) {
  137. pr_err("Failed to drive gpio fec-phy-%s: %d\n", "reset", ret);
  138. return;
  139. }
  140. mdelay(1);
  141. gpio_set_value(MX28EVK_FEC_PHY_RESET, 1);
  142. }
  143. static struct fec_platform_data mx28_fec_pdata[] __initdata = {
  144. {
  145. /* fec0 */
  146. .phy = PHY_INTERFACE_MODE_RMII,
  147. }, {
  148. /* fec1 */
  149. .phy = PHY_INTERFACE_MODE_RMII,
  150. },
  151. };
  152. static int __init mx28evk_fec_get_mac(void)
  153. {
  154. int i;
  155. u32 val;
  156. const u32 *ocotp = mxs_get_ocotp();
  157. if (!ocotp)
  158. goto error;
  159. /*
  160. * OCOTP only stores the last 4 octets for each mac address,
  161. * so hard-code Freescale OUI (00:04:9f) here.
  162. */
  163. for (i = 0; i < 2; i++) {
  164. val = ocotp[i * 4];
  165. mx28_fec_pdata[i].mac[0] = 0x00;
  166. mx28_fec_pdata[i].mac[1] = 0x04;
  167. mx28_fec_pdata[i].mac[2] = 0x9f;
  168. mx28_fec_pdata[i].mac[3] = (val >> 16) & 0xff;
  169. mx28_fec_pdata[i].mac[4] = (val >> 8) & 0xff;
  170. mx28_fec_pdata[i].mac[5] = (val >> 0) & 0xff;
  171. }
  172. return 0;
  173. error:
  174. pr_err("%s: timeout when reading fec mac from OCOTP\n", __func__);
  175. return -ETIMEDOUT;
  176. }
  177. /*
  178. * MX28EVK_FLEXCAN_SWITCH is shared between both flexcan controllers
  179. */
  180. static int flexcan0_en, flexcan1_en;
  181. static void mx28evk_flexcan_switch(void)
  182. {
  183. if (flexcan0_en || flexcan1_en)
  184. gpio_set_value(MX28EVK_FLEXCAN_SWITCH, 1);
  185. else
  186. gpio_set_value(MX28EVK_FLEXCAN_SWITCH, 0);
  187. }
  188. static void mx28evk_flexcan0_switch(int enable)
  189. {
  190. flexcan0_en = enable;
  191. mx28evk_flexcan_switch();
  192. }
  193. static void mx28evk_flexcan1_switch(int enable)
  194. {
  195. flexcan1_en = enable;
  196. mx28evk_flexcan_switch();
  197. }
  198. static const struct flexcan_platform_data
  199. mx28evk_flexcan_pdata[] __initconst = {
  200. {
  201. .transceiver_switch = mx28evk_flexcan0_switch,
  202. }, {
  203. .transceiver_switch = mx28evk_flexcan1_switch,
  204. }
  205. };
  206. /* mxsfb (lcdif) */
  207. static struct fb_videomode mx28evk_video_modes[] = {
  208. {
  209. .name = "Seiko-43WVF1G",
  210. .refresh = 60,
  211. .xres = 800,
  212. .yres = 480,
  213. .pixclock = 29851, /* picosecond (33.5 MHz) */
  214. .left_margin = 89,
  215. .right_margin = 164,
  216. .upper_margin = 23,
  217. .lower_margin = 10,
  218. .hsync_len = 10,
  219. .vsync_len = 10,
  220. .sync = FB_SYNC_DATA_ENABLE_HIGH_ACT |
  221. FB_SYNC_DOTCLK_FAILING_ACT,
  222. },
  223. };
  224. static const struct mxsfb_platform_data mx28evk_mxsfb_pdata __initconst = {
  225. .mode_list = mx28evk_video_modes,
  226. .mode_count = ARRAY_SIZE(mx28evk_video_modes),
  227. .default_bpp = 32,
  228. .ld_intf_width = STMLCDIF_24BIT,
  229. };
  230. static void __init mx28evk_init(void)
  231. {
  232. int ret;
  233. mxs_iomux_setup_multiple_pads(mx28evk_pads, ARRAY_SIZE(mx28evk_pads));
  234. mx28_add_duart();
  235. mx28_add_auart0();
  236. mx28_add_auart3();
  237. if (mx28evk_fec_get_mac())
  238. pr_warn("%s: failed on fec mac setup\n", __func__);
  239. mx28evk_fec_reset();
  240. mx28_add_fec(0, &mx28_fec_pdata[0]);
  241. mx28_add_fec(1, &mx28_fec_pdata[1]);
  242. ret = gpio_request_one(MX28EVK_FLEXCAN_SWITCH, GPIOF_DIR_OUT,
  243. "flexcan-switch");
  244. if (ret) {
  245. pr_err("failed to request gpio flexcan-switch: %d\n", ret);
  246. } else {
  247. mx28_add_flexcan(0, &mx28evk_flexcan_pdata[0]);
  248. mx28_add_flexcan(1, &mx28evk_flexcan_pdata[1]);
  249. }
  250. ret = gpio_request_one(MX28EVK_LCD_ENABLE, GPIOF_DIR_OUT, "lcd-enable");
  251. if (ret)
  252. pr_warn("failed to request gpio lcd-enable: %d\n", ret);
  253. else
  254. gpio_set_value(MX28EVK_LCD_ENABLE, 1);
  255. ret = gpio_request_one(MX28EVK_BL_ENABLE, GPIOF_DIR_OUT, "bl-enable");
  256. if (ret)
  257. pr_warn("failed to request gpio bl-enable: %d\n", ret);
  258. else
  259. gpio_set_value(MX28EVK_BL_ENABLE, 1);
  260. mx28_add_mxsfb(&mx28evk_mxsfb_pdata);
  261. }
  262. static void __init mx28evk_timer_init(void)
  263. {
  264. mx28_clocks_init();
  265. }
  266. static struct sys_timer mx28evk_timer = {
  267. .init = mx28evk_timer_init,
  268. };
  269. MACHINE_START(MX28EVK, "Freescale MX28 EVK")
  270. /* Maintainer: Freescale Semiconductor, Inc. */
  271. .map_io = mx28_map_io,
  272. .init_irq = mx28_init_irq,
  273. .init_machine = mx28evk_init,
  274. .timer = &mx28evk_timer,
  275. MACHINE_END