board-mop500.c 12 KB

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  1. /*
  2. * Copyright (C) 2008-2009 ST-Ericsson
  3. *
  4. * Author: Srinidhi KASAGAR <srinidhi.kasagar@stericsson.com>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License version 2, as
  8. * published by the Free Software Foundation.
  9. *
  10. */
  11. #include <linux/kernel.h>
  12. #include <linux/init.h>
  13. #include <linux/interrupt.h>
  14. #include <linux/platform_device.h>
  15. #include <linux/io.h>
  16. #include <linux/i2c.h>
  17. #include <linux/gpio.h>
  18. #include <linux/amba/bus.h>
  19. #include <linux/amba/pl022.h>
  20. #include <linux/amba/serial.h>
  21. #include <linux/spi/spi.h>
  22. #include <linux/mfd/ab8500.h>
  23. #include <linux/regulator/ab8500.h>
  24. #include <linux/mfd/tc3589x.h>
  25. #include <linux/mfd/ab8500/gpio.h>
  26. #include <linux/leds-lp5521.h>
  27. #include <linux/input.h>
  28. #include <linux/gpio_keys.h>
  29. #include <asm/mach-types.h>
  30. #include <asm/mach/arch.h>
  31. #include <plat/i2c.h>
  32. #include <plat/ste_dma40.h>
  33. #include <mach/hardware.h>
  34. #include <mach/setup.h>
  35. #include <mach/devices.h>
  36. #include <mach/irqs.h>
  37. #include "ste-dma40-db8500.h"
  38. #include "devices-db8500.h"
  39. #include "board-mop500.h"
  40. #include "board-mop500-regulators.h"
  41. static struct ab8500_gpio_platform_data ab8500_gpio_pdata = {
  42. .gpio_base = MOP500_AB8500_GPIO(0),
  43. .irq_base = MOP500_AB8500_VIR_GPIO_IRQ_BASE,
  44. /* config_reg is the initial configuration of ab8500 pins.
  45. * The pins can be configured as GPIO or alt functions based
  46. * on value present in GpioSel1 to GpioSel6 and AlternatFunction
  47. * register. This is the array of 7 configuration settings.
  48. * One has to compile time decide these settings. Below is the
  49. * explaination of these setting
  50. * GpioSel1 = 0x00 => Pins GPIO1 to GPIO8 are not used as GPIO
  51. * GpioSel2 = 0x1E => Pins GPIO10 to GPIO13 are configured as GPIO
  52. * GpioSel3 = 0x80 => Pin GPIO24 is configured as GPIO
  53. * GpioSel4 = 0x01 => Pin GPIo25 is configured as GPIO
  54. * GpioSel5 = 0x7A => Pins GPIO34, GPIO36 to GPIO39 are conf as GPIO
  55. * GpioSel6 = 0x00 => Pins GPIO41 & GPIo42 are not configured as GPIO
  56. * AlternaFunction = 0x00 => If Pins GPIO10 to 13 are not configured
  57. * as GPIO then this register selectes the alternate fucntions
  58. */
  59. .config_reg = {0x00, 0x1E, 0x80, 0x01,
  60. 0x7A, 0x00, 0x00},
  61. };
  62. static struct ab8500_platform_data ab8500_platdata = {
  63. .irq_base = MOP500_AB8500_IRQ_BASE,
  64. .regulator_reg_init = ab8500_regulator_reg_init,
  65. .num_regulator_reg_init = ARRAY_SIZE(ab8500_regulator_reg_init),
  66. .regulator = ab8500_regulators,
  67. .num_regulator = ARRAY_SIZE(ab8500_regulators),
  68. .gpio = &ab8500_gpio_pdata,
  69. };
  70. static struct resource ab8500_resources[] = {
  71. [0] = {
  72. .start = IRQ_DB8500_AB8500,
  73. .end = IRQ_DB8500_AB8500,
  74. .flags = IORESOURCE_IRQ
  75. }
  76. };
  77. struct platform_device ab8500_device = {
  78. .name = "ab8500-i2c",
  79. .id = 0,
  80. .dev = {
  81. .platform_data = &ab8500_platdata,
  82. },
  83. .num_resources = 1,
  84. .resource = ab8500_resources,
  85. };
  86. /*
  87. * TC35892
  88. */
  89. static void mop500_tc35892_init(struct tc3589x *tc3589x, unsigned int base)
  90. {
  91. mop500_sdi_tc35892_init();
  92. }
  93. static struct tc3589x_gpio_platform_data mop500_tc35892_gpio_data = {
  94. .gpio_base = MOP500_EGPIO(0),
  95. .setup = mop500_tc35892_init,
  96. };
  97. static struct tc3589x_platform_data mop500_tc35892_data = {
  98. .block = TC3589x_BLOCK_GPIO,
  99. .gpio = &mop500_tc35892_gpio_data,
  100. .irq_base = MOP500_EGPIO_IRQ_BASE,
  101. };
  102. static struct lp5521_led_config lp5521_pri_led[] = {
  103. [0] = {
  104. .chan_nr = 0,
  105. .led_current = 0x2f,
  106. .max_current = 0x5f,
  107. },
  108. [1] = {
  109. .chan_nr = 1,
  110. .led_current = 0x2f,
  111. .max_current = 0x5f,
  112. },
  113. [2] = {
  114. .chan_nr = 2,
  115. .led_current = 0x2f,
  116. .max_current = 0x5f,
  117. },
  118. };
  119. static struct lp5521_platform_data __initdata lp5521_pri_data = {
  120. .label = "lp5521_pri",
  121. .led_config = &lp5521_pri_led[0],
  122. .num_channels = 3,
  123. .clock_mode = LP5521_CLOCK_EXT,
  124. };
  125. static struct lp5521_led_config lp5521_sec_led[] = {
  126. [0] = {
  127. .chan_nr = 0,
  128. .led_current = 0x2f,
  129. .max_current = 0x5f,
  130. },
  131. [1] = {
  132. .chan_nr = 1,
  133. .led_current = 0x2f,
  134. .max_current = 0x5f,
  135. },
  136. [2] = {
  137. .chan_nr = 2,
  138. .led_current = 0x2f,
  139. .max_current = 0x5f,
  140. },
  141. };
  142. static struct lp5521_platform_data __initdata lp5521_sec_data = {
  143. .label = "lp5521_sec",
  144. .led_config = &lp5521_sec_led[0],
  145. .num_channels = 3,
  146. .clock_mode = LP5521_CLOCK_EXT,
  147. };
  148. static struct i2c_board_info mop500_i2c0_devices[] = {
  149. {
  150. I2C_BOARD_INFO("tc3589x", 0x42),
  151. .irq = NOMADIK_GPIO_TO_IRQ(217),
  152. .platform_data = &mop500_tc35892_data,
  153. },
  154. };
  155. static struct i2c_board_info __initdata mop500_i2c2_devices[] = {
  156. {
  157. /* lp5521 LED driver, 1st device */
  158. I2C_BOARD_INFO("lp5521", 0x33),
  159. .platform_data = &lp5521_pri_data,
  160. },
  161. {
  162. /* lp5521 LED driver, 2st device */
  163. I2C_BOARD_INFO("lp5521", 0x34),
  164. .platform_data = &lp5521_sec_data,
  165. },
  166. {
  167. /* Light sensor Rohm BH1780GLI */
  168. I2C_BOARD_INFO("bh1780", 0x29),
  169. },
  170. };
  171. #define U8500_I2C_CONTROLLER(id, _slsu, _tft, _rft, clk, _sm) \
  172. static struct nmk_i2c_controller u8500_i2c##id##_data = { \
  173. /* \
  174. * slave data setup time, which is \
  175. * 250 ns,100ns,10ns which is 14,6,2 \
  176. * respectively for a 48 Mhz \
  177. * i2c clock \
  178. */ \
  179. .slsu = _slsu, \
  180. /* Tx FIFO threshold */ \
  181. .tft = _tft, \
  182. /* Rx FIFO threshold */ \
  183. .rft = _rft, \
  184. /* std. mode operation */ \
  185. .clk_freq = clk, \
  186. .sm = _sm, \
  187. }
  188. /*
  189. * The board uses 4 i2c controllers, initialize all of
  190. * them with slave data setup time of 250 ns,
  191. * Tx & Rx FIFO threshold values as 1 and standard
  192. * mode of operation
  193. */
  194. U8500_I2C_CONTROLLER(0, 0xe, 1, 1, 100000, I2C_FREQ_MODE_STANDARD);
  195. U8500_I2C_CONTROLLER(1, 0xe, 1, 1, 100000, I2C_FREQ_MODE_STANDARD);
  196. U8500_I2C_CONTROLLER(2, 0xe, 1, 1, 100000, I2C_FREQ_MODE_STANDARD);
  197. U8500_I2C_CONTROLLER(3, 0xe, 1, 1, 100000, I2C_FREQ_MODE_STANDARD);
  198. static void __init mop500_i2c_init(void)
  199. {
  200. db8500_add_i2c0(&u8500_i2c0_data);
  201. db8500_add_i2c1(&u8500_i2c1_data);
  202. db8500_add_i2c2(&u8500_i2c2_data);
  203. db8500_add_i2c3(&u8500_i2c3_data);
  204. }
  205. static struct gpio_keys_button mop500_gpio_keys[] = {
  206. {
  207. .desc = "SFH7741 Proximity Sensor",
  208. .type = EV_SW,
  209. .code = SW_FRONT_PROXIMITY,
  210. .active_low = 0,
  211. .can_disable = 1,
  212. }
  213. };
  214. static struct regulator *prox_regulator;
  215. static int mop500_prox_activate(struct device *dev);
  216. static void mop500_prox_deactivate(struct device *dev);
  217. static struct gpio_keys_platform_data mop500_gpio_keys_data = {
  218. .buttons = mop500_gpio_keys,
  219. .nbuttons = ARRAY_SIZE(mop500_gpio_keys),
  220. .enable = mop500_prox_activate,
  221. .disable = mop500_prox_deactivate,
  222. };
  223. static struct platform_device mop500_gpio_keys_device = {
  224. .name = "gpio-keys",
  225. .id = 0,
  226. .dev = {
  227. .platform_data = &mop500_gpio_keys_data,
  228. },
  229. };
  230. static int mop500_prox_activate(struct device *dev)
  231. {
  232. prox_regulator = regulator_get(&mop500_gpio_keys_device.dev,
  233. "vcc");
  234. if (IS_ERR(prox_regulator)) {
  235. dev_err(&mop500_gpio_keys_device.dev,
  236. "no regulator\n");
  237. return PTR_ERR(prox_regulator);
  238. }
  239. regulator_enable(prox_regulator);
  240. return 0;
  241. }
  242. static void mop500_prox_deactivate(struct device *dev)
  243. {
  244. regulator_disable(prox_regulator);
  245. regulator_put(prox_regulator);
  246. }
  247. /* add any platform devices here - TODO */
  248. static struct platform_device *platform_devs[] __initdata = {
  249. &mop500_gpio_keys_device,
  250. };
  251. #ifdef CONFIG_STE_DMA40
  252. static struct stedma40_chan_cfg ssp0_dma_cfg_rx = {
  253. .mode = STEDMA40_MODE_LOGICAL,
  254. .dir = STEDMA40_PERIPH_TO_MEM,
  255. .src_dev_type = DB8500_DMA_DEV8_SSP0_RX,
  256. .dst_dev_type = STEDMA40_DEV_DST_MEMORY,
  257. .src_info.data_width = STEDMA40_BYTE_WIDTH,
  258. .dst_info.data_width = STEDMA40_BYTE_WIDTH,
  259. };
  260. static struct stedma40_chan_cfg ssp0_dma_cfg_tx = {
  261. .mode = STEDMA40_MODE_LOGICAL,
  262. .dir = STEDMA40_MEM_TO_PERIPH,
  263. .src_dev_type = STEDMA40_DEV_SRC_MEMORY,
  264. .dst_dev_type = DB8500_DMA_DEV8_SSP0_TX,
  265. .src_info.data_width = STEDMA40_BYTE_WIDTH,
  266. .dst_info.data_width = STEDMA40_BYTE_WIDTH,
  267. };
  268. #endif
  269. static struct pl022_ssp_controller ssp0_platform_data = {
  270. .bus_id = 0,
  271. #ifdef CONFIG_STE_DMA40
  272. .enable_dma = 1,
  273. .dma_filter = stedma40_filter,
  274. .dma_rx_param = &ssp0_dma_cfg_rx,
  275. .dma_tx_param = &ssp0_dma_cfg_tx,
  276. #else
  277. .enable_dma = 0,
  278. #endif
  279. /* on this platform, gpio 31,142,144,214 &
  280. * 224 are connected as chip selects
  281. */
  282. .num_chipselect = 5,
  283. };
  284. static void __init mop500_spi_init(void)
  285. {
  286. db8500_add_ssp0(&ssp0_platform_data);
  287. }
  288. #ifdef CONFIG_STE_DMA40
  289. static struct stedma40_chan_cfg uart0_dma_cfg_rx = {
  290. .mode = STEDMA40_MODE_LOGICAL,
  291. .dir = STEDMA40_PERIPH_TO_MEM,
  292. .src_dev_type = DB8500_DMA_DEV13_UART0_RX,
  293. .dst_dev_type = STEDMA40_DEV_DST_MEMORY,
  294. .src_info.data_width = STEDMA40_BYTE_WIDTH,
  295. .dst_info.data_width = STEDMA40_BYTE_WIDTH,
  296. };
  297. static struct stedma40_chan_cfg uart0_dma_cfg_tx = {
  298. .mode = STEDMA40_MODE_LOGICAL,
  299. .dir = STEDMA40_MEM_TO_PERIPH,
  300. .src_dev_type = STEDMA40_DEV_SRC_MEMORY,
  301. .dst_dev_type = DB8500_DMA_DEV13_UART0_TX,
  302. .src_info.data_width = STEDMA40_BYTE_WIDTH,
  303. .dst_info.data_width = STEDMA40_BYTE_WIDTH,
  304. };
  305. static struct stedma40_chan_cfg uart1_dma_cfg_rx = {
  306. .mode = STEDMA40_MODE_LOGICAL,
  307. .dir = STEDMA40_PERIPH_TO_MEM,
  308. .src_dev_type = DB8500_DMA_DEV12_UART1_RX,
  309. .dst_dev_type = STEDMA40_DEV_DST_MEMORY,
  310. .src_info.data_width = STEDMA40_BYTE_WIDTH,
  311. .dst_info.data_width = STEDMA40_BYTE_WIDTH,
  312. };
  313. static struct stedma40_chan_cfg uart1_dma_cfg_tx = {
  314. .mode = STEDMA40_MODE_LOGICAL,
  315. .dir = STEDMA40_MEM_TO_PERIPH,
  316. .src_dev_type = STEDMA40_DEV_SRC_MEMORY,
  317. .dst_dev_type = DB8500_DMA_DEV12_UART1_TX,
  318. .src_info.data_width = STEDMA40_BYTE_WIDTH,
  319. .dst_info.data_width = STEDMA40_BYTE_WIDTH,
  320. };
  321. static struct stedma40_chan_cfg uart2_dma_cfg_rx = {
  322. .mode = STEDMA40_MODE_LOGICAL,
  323. .dir = STEDMA40_PERIPH_TO_MEM,
  324. .src_dev_type = DB8500_DMA_DEV11_UART2_RX,
  325. .dst_dev_type = STEDMA40_DEV_DST_MEMORY,
  326. .src_info.data_width = STEDMA40_BYTE_WIDTH,
  327. .dst_info.data_width = STEDMA40_BYTE_WIDTH,
  328. };
  329. static struct stedma40_chan_cfg uart2_dma_cfg_tx = {
  330. .mode = STEDMA40_MODE_LOGICAL,
  331. .dir = STEDMA40_MEM_TO_PERIPH,
  332. .src_dev_type = STEDMA40_DEV_SRC_MEMORY,
  333. .dst_dev_type = DB8500_DMA_DEV11_UART2_TX,
  334. .src_info.data_width = STEDMA40_BYTE_WIDTH,
  335. .dst_info.data_width = STEDMA40_BYTE_WIDTH,
  336. };
  337. #endif
  338. static struct amba_pl011_data uart0_plat = {
  339. #ifdef CONFIG_STE_DMA40
  340. .dma_filter = stedma40_filter,
  341. .dma_rx_param = &uart0_dma_cfg_rx,
  342. .dma_tx_param = &uart0_dma_cfg_tx,
  343. #endif
  344. };
  345. static struct amba_pl011_data uart1_plat = {
  346. #ifdef CONFIG_STE_DMA40
  347. .dma_filter = stedma40_filter,
  348. .dma_rx_param = &uart1_dma_cfg_rx,
  349. .dma_tx_param = &uart1_dma_cfg_tx,
  350. #endif
  351. };
  352. static struct amba_pl011_data uart2_plat = {
  353. #ifdef CONFIG_STE_DMA40
  354. .dma_filter = stedma40_filter,
  355. .dma_rx_param = &uart2_dma_cfg_rx,
  356. .dma_tx_param = &uart2_dma_cfg_tx,
  357. #endif
  358. };
  359. static void __init mop500_uart_init(void)
  360. {
  361. db8500_add_uart0(&uart0_plat);
  362. db8500_add_uart1(&uart1_plat);
  363. db8500_add_uart2(&uart2_plat);
  364. }
  365. static void __init mop500_init_machine(void)
  366. {
  367. /*
  368. * The HREFv60 board removed a GPIO expander and routed
  369. * all these GPIO pins to the internal GPIO controller
  370. * instead.
  371. */
  372. if (machine_is_hrefv60())
  373. mop500_gpio_keys[0].gpio = HREFV60_PROX_SENSE_GPIO;
  374. else
  375. mop500_gpio_keys[0].gpio = GPIO_PROX_SENSOR;
  376. u8500_init_devices();
  377. mop500_pins_init();
  378. platform_add_devices(platform_devs, ARRAY_SIZE(platform_devs));
  379. mop500_i2c_init();
  380. mop500_sdi_init();
  381. mop500_spi_init();
  382. mop500_uart_init();
  383. platform_device_register(&ab8500_device);
  384. i2c_register_board_info(0, mop500_i2c0_devices,
  385. ARRAY_SIZE(mop500_i2c0_devices));
  386. i2c_register_board_info(2, mop500_i2c2_devices,
  387. ARRAY_SIZE(mop500_i2c2_devices));
  388. }
  389. MACHINE_START(U8500, "ST-Ericsson MOP500 platform")
  390. /* Maintainer: Srinidhi Kasagar <srinidhi.kasagar@stericsson.com> */
  391. .boot_params = 0x100,
  392. .map_io = u8500_map_io,
  393. .init_irq = ux500_init_irq,
  394. /* we re-use nomadik timer here */
  395. .timer = &ux500_timer,
  396. .init_machine = mop500_init_machine,
  397. MACHINE_END
  398. MACHINE_START(HREFV60, "ST-Ericsson U8500 Platform HREFv60+")
  399. .boot_params = 0x100,
  400. .map_io = u8500_map_io,
  401. .init_irq = ux500_init_irq,
  402. .timer = &ux500_timer,
  403. .init_machine = mop500_init_machine,
  404. MACHINE_END