board-mackerel.c 39 KB

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  1. /*
  2. * mackerel board support
  3. *
  4. * Copyright (C) 2010 Renesas Solutions Corp.
  5. * Kuninori Morimoto <kuninori.morimoto.gx@renesas.com>
  6. *
  7. * based on ap4evb
  8. * Copyright (C) 2010 Magnus Damm
  9. * Copyright (C) 2008 Yoshihiro Shimoda
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License as published by
  13. * the Free Software Foundation; version 2 of the License.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  23. */
  24. #include <linux/delay.h>
  25. #include <linux/kernel.h>
  26. #include <linux/init.h>
  27. #include <linux/interrupt.h>
  28. #include <linux/irq.h>
  29. #include <linux/platform_device.h>
  30. #include <linux/gpio.h>
  31. #include <linux/input.h>
  32. #include <linux/io.h>
  33. #include <linux/i2c.h>
  34. #include <linux/leds.h>
  35. #include <linux/mfd/tmio.h>
  36. #include <linux/mmc/host.h>
  37. #include <linux/mmc/sh_mmcif.h>
  38. #include <linux/mmc/sh_mobile_sdhi.h>
  39. #include <linux/mtd/mtd.h>
  40. #include <linux/mtd/partitions.h>
  41. #include <linux/mtd/physmap.h>
  42. #include <linux/mtd/sh_flctl.h>
  43. #include <linux/pm_clock.h>
  44. #include <linux/regulator/fixed.h>
  45. #include <linux/regulator/machine.h>
  46. #include <linux/smsc911x.h>
  47. #include <linux/sh_intc.h>
  48. #include <linux/tca6416_keypad.h>
  49. #include <linux/usb/renesas_usbhs.h>
  50. #include <linux/dma-mapping.h>
  51. #include <video/sh_mobile_hdmi.h>
  52. #include <video/sh_mobile_lcdc.h>
  53. #include <media/sh_mobile_ceu.h>
  54. #include <media/soc_camera.h>
  55. #include <media/soc_camera_platform.h>
  56. #include <sound/sh_fsi.h>
  57. #include <sound/simple_card.h>
  58. #include <mach/common.h>
  59. #include <mach/irqs.h>
  60. #include <mach/sh7372.h>
  61. #include <asm/mach/arch.h>
  62. #include <asm/mach-types.h>
  63. #include "sh-gpio.h"
  64. /*
  65. * Address Interface BusWidth note
  66. * ------------------------------------------------------------------
  67. * 0x0000_0000 NOR Flash ROM (MCP) 16bit SW7 : bit1 = ON
  68. * 0x0800_0000 user area -
  69. * 0x1000_0000 NOR Flash ROM (MCP) 16bit SW7 : bit1 = OFF
  70. * 0x1400_0000 Ether (LAN9220) 16bit
  71. * 0x1600_0000 user area - cannot use with NAND
  72. * 0x1800_0000 user area -
  73. * 0x1A00_0000 -
  74. * 0x4000_0000 LPDDR2-SDRAM (POP) 32bit
  75. */
  76. /*
  77. * CPU mode
  78. *
  79. * SW4 | Boot Area| Master | Remarks
  80. * 1 | 2 | 3 | 4 | 5 | 6 | 8 | | Processor|
  81. * ----+-----+-----+-----+-----+-----+-----+----------+----------+--------------
  82. * ON | ON | OFF | ON | ON | OFF | OFF | External | System | External ROM
  83. * ON | ON | ON | ON | ON | OFF | OFF | External | System | ROM Debug
  84. * ON | ON | X | ON | OFF | OFF | OFF | Built-in | System | ROM Debug
  85. * X | OFF | X | X | X | X | OFF | Built-in | System | MaskROM
  86. * OFF | X | X | X | X | X | OFF | Built-in | System | MaskROM
  87. * X | X | X | OFF | X | X | OFF | Built-in | System | MaskROM
  88. * OFF | ON | OFF | X | X | OFF | ON | External | System | Standalone
  89. * ON | OFF | OFF | X | X | OFF | ON | External | Realtime | Standalone
  90. */
  91. /*
  92. * NOR Flash ROM
  93. *
  94. * SW1 | SW2 | SW7 | NOR Flash ROM
  95. * bit1 | bit1 bit2 | bit1 | Memory allocation
  96. * ------+------------+------+------------------
  97. * OFF | ON OFF | ON | Area 0
  98. * OFF | ON OFF | OFF | Area 4
  99. */
  100. /*
  101. * SMSC 9220
  102. *
  103. * SW1 SMSC 9220
  104. * -----------------------
  105. * ON access disable
  106. * OFF access enable
  107. */
  108. /*
  109. * NAND Flash ROM
  110. *
  111. * SW1 | SW2 | SW7 | NAND Flash ROM
  112. * bit1 | bit1 bit2 | bit2 | Memory allocation
  113. * ------+------------+------+------------------
  114. * OFF | ON OFF | ON | FCE 0
  115. * OFF | ON OFF | OFF | FCE 1
  116. */
  117. /*
  118. * External interrupt pin settings
  119. *
  120. * IRQX | pin setting | device | level
  121. * ------+--------------------+--------------------+-------
  122. * IRQ0 | ICR1A.IRQ0SA=0010 | SDHI2 card detect | Low
  123. * IRQ6 | ICR1A.IRQ6SA=0011 | Ether(LAN9220) | High
  124. * IRQ7 | ICR1A.IRQ7SA=0010 | LCD Touch Panel | Low
  125. * IRQ8 | ICR2A.IRQ8SA=0010 | MMC/SD card detect | Low
  126. * IRQ9 | ICR2A.IRQ9SA=0010 | KEY(TCA6408) | Low
  127. * IRQ21 | ICR4A.IRQ21SA=0011 | Sensor(ADXL345) | High
  128. * IRQ22 | ICR4A.IRQ22SA=0011 | Sensor(AK8975) | High
  129. */
  130. /*
  131. * USB
  132. *
  133. * USB0 : CN22 : Function
  134. * USB1 : CN31 : Function/Host *1
  135. *
  136. * J30 (for CN31) *1
  137. * ----------+---------------+-------------
  138. * 1-2 short | VBUS 5V | Host
  139. * open | external VBUS | Function
  140. *
  141. * CAUTION
  142. *
  143. * renesas_usbhs driver can use external interrupt mode
  144. * (which come from USB-PHY) or autonomy mode (it use own interrupt)
  145. * for detecting connection/disconnection when Function.
  146. * USB will be power OFF while it has been disconnecting
  147. * if external interrupt mode, and it is always power ON if autonomy mode,
  148. *
  149. * mackerel can not use external interrupt (IRQ7-PORT167) mode on "USB0",
  150. * because Touchscreen is using IRQ7-PORT40.
  151. * It is impossible to use IRQ7 demux on this board.
  152. */
  153. /*
  154. * SDHI0 (CN12)
  155. *
  156. * SW56 : OFF
  157. *
  158. */
  159. /* MMC /SDHI1 (CN7)
  160. *
  161. * I/O voltage : 1.8v
  162. *
  163. * Power voltage : 1.8v or 3.3v
  164. * J22 : select power voltage *1
  165. * 1-2 pin : 1.8v
  166. * 2-3 pin : 3.3v
  167. *
  168. * *1
  169. * Please change J22 depends the card to be used.
  170. * MMC's OCR field set to support either voltage for the card inserted.
  171. *
  172. * SW1 | SW33
  173. * | bit1 | bit2 | bit3 | bit4
  174. * -------------+------+------+------+-------
  175. * MMC0 OFF | OFF | X | ON | X (Use MMCIF)
  176. * SDHI1 OFF | ON | X | OFF | X (Use MFD_SH_MOBILE_SDHI)
  177. *
  178. */
  179. /*
  180. * SDHI2 (CN23)
  181. *
  182. * microSD card sloct
  183. *
  184. */
  185. /*
  186. * FSI - AK4642
  187. *
  188. * it needs amixer settings for playing
  189. *
  190. * amixer set "Headphone" on
  191. * amixer set "HPOUTL Mixer DACH" on
  192. * amixer set "HPOUTR Mixer DACH" on
  193. */
  194. /* Fixed 3.3V and 1.8V regulators to be used by multiple devices */
  195. static struct regulator_consumer_supply fixed1v8_power_consumers[] =
  196. {
  197. /*
  198. * J22 on mackerel switches mmcif.0 and sdhi.1 between 1.8V and 3.3V
  199. * Since we cannot support both voltages, we support the default 1.8V
  200. */
  201. REGULATOR_SUPPLY("vmmc", "sh_mobile_sdhi.1"),
  202. REGULATOR_SUPPLY("vqmmc", "sh_mobile_sdhi.1"),
  203. REGULATOR_SUPPLY("vmmc", "sh_mmcif.0"),
  204. REGULATOR_SUPPLY("vqmmc", "sh_mmcif.0"),
  205. };
  206. static struct regulator_consumer_supply fixed3v3_power_consumers[] =
  207. {
  208. REGULATOR_SUPPLY("vmmc", "sh_mobile_sdhi.0"),
  209. REGULATOR_SUPPLY("vqmmc", "sh_mobile_sdhi.0"),
  210. REGULATOR_SUPPLY("vmmc", "sh_mobile_sdhi.2"),
  211. REGULATOR_SUPPLY("vqmmc", "sh_mobile_sdhi.2"),
  212. };
  213. /* Dummy supplies, where voltage doesn't matter */
  214. static struct regulator_consumer_supply dummy_supplies[] = {
  215. REGULATOR_SUPPLY("vddvario", "smsc911x"),
  216. REGULATOR_SUPPLY("vdd33a", "smsc911x"),
  217. };
  218. /* MTD */
  219. static struct mtd_partition nor_flash_partitions[] = {
  220. {
  221. .name = "loader",
  222. .offset = 0x00000000,
  223. .size = 512 * 1024,
  224. .mask_flags = MTD_WRITEABLE,
  225. },
  226. {
  227. .name = "bootenv",
  228. .offset = MTDPART_OFS_APPEND,
  229. .size = 512 * 1024,
  230. .mask_flags = MTD_WRITEABLE,
  231. },
  232. {
  233. .name = "kernel_ro",
  234. .offset = MTDPART_OFS_APPEND,
  235. .size = 8 * 1024 * 1024,
  236. .mask_flags = MTD_WRITEABLE,
  237. },
  238. {
  239. .name = "kernel",
  240. .offset = MTDPART_OFS_APPEND,
  241. .size = 8 * 1024 * 1024,
  242. },
  243. {
  244. .name = "data",
  245. .offset = MTDPART_OFS_APPEND,
  246. .size = MTDPART_SIZ_FULL,
  247. },
  248. };
  249. static struct physmap_flash_data nor_flash_data = {
  250. .width = 2,
  251. .parts = nor_flash_partitions,
  252. .nr_parts = ARRAY_SIZE(nor_flash_partitions),
  253. };
  254. static struct resource nor_flash_resources[] = {
  255. [0] = {
  256. .start = 0x20000000, /* CS0 shadow instead of regular CS0 */
  257. .end = 0x28000000 - 1, /* needed by USB MASK ROM boot */
  258. .flags = IORESOURCE_MEM,
  259. }
  260. };
  261. static struct platform_device nor_flash_device = {
  262. .name = "physmap-flash",
  263. .dev = {
  264. .platform_data = &nor_flash_data,
  265. },
  266. .num_resources = ARRAY_SIZE(nor_flash_resources),
  267. .resource = nor_flash_resources,
  268. };
  269. /* SMSC */
  270. static struct resource smc911x_resources[] = {
  271. {
  272. .start = 0x14000000,
  273. .end = 0x16000000 - 1,
  274. .flags = IORESOURCE_MEM,
  275. }, {
  276. .start = evt2irq(0x02c0) /* IRQ6A */,
  277. .flags = IORESOURCE_IRQ | IORESOURCE_IRQ_LOWLEVEL,
  278. },
  279. };
  280. static struct smsc911x_platform_config smsc911x_info = {
  281. .flags = SMSC911X_USE_16BIT | SMSC911X_SAVE_MAC_ADDRESS,
  282. .irq_polarity = SMSC911X_IRQ_POLARITY_ACTIVE_LOW,
  283. .irq_type = SMSC911X_IRQ_TYPE_PUSH_PULL,
  284. };
  285. static struct platform_device smc911x_device = {
  286. .name = "smsc911x",
  287. .id = -1,
  288. .num_resources = ARRAY_SIZE(smc911x_resources),
  289. .resource = smc911x_resources,
  290. .dev = {
  291. .platform_data = &smsc911x_info,
  292. },
  293. };
  294. /* MERAM */
  295. static struct sh_mobile_meram_info mackerel_meram_info = {
  296. .addr_mode = SH_MOBILE_MERAM_MODE1,
  297. };
  298. static struct resource meram_resources[] = {
  299. [0] = {
  300. .name = "regs",
  301. .start = 0xe8000000,
  302. .end = 0xe807ffff,
  303. .flags = IORESOURCE_MEM,
  304. },
  305. [1] = {
  306. .name = "meram",
  307. .start = 0xe8080000,
  308. .end = 0xe81fffff,
  309. .flags = IORESOURCE_MEM,
  310. },
  311. };
  312. static struct platform_device meram_device = {
  313. .name = "sh_mobile_meram",
  314. .id = 0,
  315. .num_resources = ARRAY_SIZE(meram_resources),
  316. .resource = meram_resources,
  317. .dev = {
  318. .platform_data = &mackerel_meram_info,
  319. },
  320. };
  321. /* LCDC */
  322. static struct fb_videomode mackerel_lcdc_modes[] = {
  323. {
  324. .name = "WVGA Panel",
  325. .xres = 800,
  326. .yres = 480,
  327. .left_margin = 220,
  328. .right_margin = 110,
  329. .hsync_len = 70,
  330. .upper_margin = 20,
  331. .lower_margin = 5,
  332. .vsync_len = 5,
  333. .sync = 0,
  334. },
  335. };
  336. static int mackerel_set_brightness(int brightness)
  337. {
  338. gpio_set_value(GPIO_PORT31, brightness);
  339. return 0;
  340. }
  341. static const struct sh_mobile_meram_cfg lcd_meram_cfg = {
  342. .icb[0] = {
  343. .meram_size = 0x40,
  344. },
  345. .icb[1] = {
  346. .meram_size = 0x40,
  347. },
  348. };
  349. static struct sh_mobile_lcdc_info lcdc_info = {
  350. .meram_dev = &mackerel_meram_info,
  351. .clock_source = LCDC_CLK_BUS,
  352. .ch[0] = {
  353. .chan = LCDC_CHAN_MAINLCD,
  354. .fourcc = V4L2_PIX_FMT_RGB565,
  355. .lcd_modes = mackerel_lcdc_modes,
  356. .num_modes = ARRAY_SIZE(mackerel_lcdc_modes),
  357. .interface_type = RGB24,
  358. .clock_divider = 3,
  359. .flags = 0,
  360. .panel_cfg = {
  361. .width = 152,
  362. .height = 91,
  363. },
  364. .bl_info = {
  365. .name = "sh_mobile_lcdc_bl",
  366. .max_brightness = 1,
  367. .set_brightness = mackerel_set_brightness,
  368. },
  369. .meram_cfg = &lcd_meram_cfg,
  370. }
  371. };
  372. static struct resource lcdc_resources[] = {
  373. [0] = {
  374. .name = "LCDC",
  375. .start = 0xfe940000,
  376. .end = 0xfe943fff,
  377. .flags = IORESOURCE_MEM,
  378. },
  379. [1] = {
  380. .start = intcs_evt2irq(0x580),
  381. .flags = IORESOURCE_IRQ,
  382. },
  383. };
  384. static struct platform_device lcdc_device = {
  385. .name = "sh_mobile_lcdc_fb",
  386. .num_resources = ARRAY_SIZE(lcdc_resources),
  387. .resource = lcdc_resources,
  388. .dev = {
  389. .platform_data = &lcdc_info,
  390. .coherent_dma_mask = ~0,
  391. },
  392. };
  393. /* HDMI */
  394. static struct sh_mobile_hdmi_info hdmi_info = {
  395. .flags = HDMI_SND_SRC_SPDIF,
  396. };
  397. static struct resource hdmi_resources[] = {
  398. [0] = {
  399. .name = "HDMI",
  400. .start = 0xe6be0000,
  401. .end = 0xe6be00ff,
  402. .flags = IORESOURCE_MEM,
  403. },
  404. [1] = {
  405. /* There's also an HDMI interrupt on INTCS @ 0x18e0 */
  406. .start = evt2irq(0x17e0),
  407. .flags = IORESOURCE_IRQ,
  408. },
  409. };
  410. static struct platform_device hdmi_device = {
  411. .name = "sh-mobile-hdmi",
  412. .num_resources = ARRAY_SIZE(hdmi_resources),
  413. .resource = hdmi_resources,
  414. .id = -1,
  415. .dev = {
  416. .platform_data = &hdmi_info,
  417. },
  418. };
  419. static const struct sh_mobile_meram_cfg hdmi_meram_cfg = {
  420. .icb[0] = {
  421. .meram_size = 0x100,
  422. },
  423. .icb[1] = {
  424. .meram_size = 0x100,
  425. },
  426. };
  427. static struct sh_mobile_lcdc_info hdmi_lcdc_info = {
  428. .meram_dev = &mackerel_meram_info,
  429. .clock_source = LCDC_CLK_EXTERNAL,
  430. .ch[0] = {
  431. .chan = LCDC_CHAN_MAINLCD,
  432. .fourcc = V4L2_PIX_FMT_RGB565,
  433. .interface_type = RGB24,
  434. .clock_divider = 1,
  435. .flags = LCDC_FLAGS_DWPOL,
  436. .meram_cfg = &hdmi_meram_cfg,
  437. .tx_dev = &hdmi_device,
  438. }
  439. };
  440. static struct resource hdmi_lcdc_resources[] = {
  441. [0] = {
  442. .name = "LCDC1",
  443. .start = 0xfe944000,
  444. .end = 0xfe947fff,
  445. .flags = IORESOURCE_MEM,
  446. },
  447. [1] = {
  448. .start = intcs_evt2irq(0x1780),
  449. .flags = IORESOURCE_IRQ,
  450. },
  451. };
  452. static struct platform_device hdmi_lcdc_device = {
  453. .name = "sh_mobile_lcdc_fb",
  454. .num_resources = ARRAY_SIZE(hdmi_lcdc_resources),
  455. .resource = hdmi_lcdc_resources,
  456. .id = 1,
  457. .dev = {
  458. .platform_data = &hdmi_lcdc_info,
  459. .coherent_dma_mask = ~0,
  460. },
  461. };
  462. static struct asoc_simple_dai_init_info fsi2_hdmi_init_info = {
  463. .cpu_daifmt = SND_SOC_DAIFMT_CBM_CFM,
  464. };
  465. static struct asoc_simple_card_info fsi2_hdmi_info = {
  466. .name = "HDMI",
  467. .card = "FSI2B-HDMI",
  468. .cpu_dai = "fsib-dai",
  469. .codec = "sh-mobile-hdmi",
  470. .platform = "sh_fsi2",
  471. .codec_dai = "sh_mobile_hdmi-hifi",
  472. .init = &fsi2_hdmi_init_info,
  473. };
  474. static struct platform_device fsi_hdmi_device = {
  475. .name = "asoc-simple-card",
  476. .id = 1,
  477. .dev = {
  478. .platform_data = &fsi2_hdmi_info,
  479. },
  480. };
  481. static void __init hdmi_init_pm_clock(void)
  482. {
  483. struct clk *hdmi_ick = clk_get(&hdmi_device.dev, "ick");
  484. int ret;
  485. long rate;
  486. if (IS_ERR(hdmi_ick)) {
  487. ret = PTR_ERR(hdmi_ick);
  488. pr_err("Cannot get HDMI ICK: %d\n", ret);
  489. goto out;
  490. }
  491. ret = clk_set_parent(&sh7372_pllc2_clk, &sh7372_dv_clki_div2_clk);
  492. if (ret < 0) {
  493. pr_err("Cannot set PLLC2 parent: %d, %d users\n",
  494. ret, sh7372_pllc2_clk.usecount);
  495. goto out;
  496. }
  497. pr_debug("PLLC2 initial frequency %lu\n",
  498. clk_get_rate(&sh7372_pllc2_clk));
  499. rate = clk_round_rate(&sh7372_pllc2_clk, 594000000);
  500. if (rate < 0) {
  501. pr_err("Cannot get suitable rate: %ld\n", rate);
  502. ret = rate;
  503. goto out;
  504. }
  505. ret = clk_set_rate(&sh7372_pllc2_clk, rate);
  506. if (ret < 0) {
  507. pr_err("Cannot set rate %ld: %d\n", rate, ret);
  508. goto out;
  509. }
  510. pr_debug("PLLC2 set frequency %lu\n", rate);
  511. ret = clk_set_parent(hdmi_ick, &sh7372_pllc2_clk);
  512. if (ret < 0)
  513. pr_err("Cannot set HDMI parent: %d\n", ret);
  514. out:
  515. if (!IS_ERR(hdmi_ick))
  516. clk_put(hdmi_ick);
  517. }
  518. /* USBHS0 is connected to CN22 which takes a USB Mini-B plug
  519. *
  520. * The sh7372 SoC has IRQ7 set aside for USBHS0 hotplug,
  521. * but on this particular board IRQ7 is already used by
  522. * the touch screen. This leaves us with software polling.
  523. */
  524. #define USBHS0_POLL_INTERVAL (HZ * 5)
  525. struct usbhs_private {
  526. void __iomem *usbphyaddr;
  527. void __iomem *usbcrcaddr;
  528. struct renesas_usbhs_platform_info info;
  529. struct delayed_work work;
  530. struct platform_device *pdev;
  531. };
  532. #define usbhs_get_priv(pdev) \
  533. container_of(renesas_usbhs_get_info(pdev), \
  534. struct usbhs_private, info)
  535. #define usbhs_is_connected(priv) \
  536. (!((1 << 7) & __raw_readw(priv->usbcrcaddr)))
  537. static int usbhs_get_vbus(struct platform_device *pdev)
  538. {
  539. return usbhs_is_connected(usbhs_get_priv(pdev));
  540. }
  541. static void usbhs_phy_reset(struct platform_device *pdev)
  542. {
  543. struct usbhs_private *priv = usbhs_get_priv(pdev);
  544. /* init phy */
  545. __raw_writew(0x8a0a, priv->usbcrcaddr);
  546. }
  547. static int usbhs0_get_id(struct platform_device *pdev)
  548. {
  549. return USBHS_GADGET;
  550. }
  551. static void usbhs0_work_function(struct work_struct *work)
  552. {
  553. struct usbhs_private *priv = container_of(work, struct usbhs_private,
  554. work.work);
  555. renesas_usbhs_call_notify_hotplug(priv->pdev);
  556. schedule_delayed_work(&priv->work, USBHS0_POLL_INTERVAL);
  557. }
  558. static int usbhs0_hardware_init(struct platform_device *pdev)
  559. {
  560. struct usbhs_private *priv = usbhs_get_priv(pdev);
  561. priv->pdev = pdev;
  562. INIT_DELAYED_WORK(&priv->work, usbhs0_work_function);
  563. schedule_delayed_work(&priv->work, USBHS0_POLL_INTERVAL);
  564. return 0;
  565. }
  566. static void usbhs0_hardware_exit(struct platform_device *pdev)
  567. {
  568. struct usbhs_private *priv = usbhs_get_priv(pdev);
  569. cancel_delayed_work_sync(&priv->work);
  570. }
  571. static struct usbhs_private usbhs0_private = {
  572. .usbcrcaddr = IOMEM(0xe605810c), /* USBCR2 */
  573. .info = {
  574. .platform_callback = {
  575. .hardware_init = usbhs0_hardware_init,
  576. .hardware_exit = usbhs0_hardware_exit,
  577. .phy_reset = usbhs_phy_reset,
  578. .get_id = usbhs0_get_id,
  579. .get_vbus = usbhs_get_vbus,
  580. },
  581. .driver_param = {
  582. .buswait_bwait = 4,
  583. .d0_tx_id = SHDMA_SLAVE_USB0_TX,
  584. .d1_rx_id = SHDMA_SLAVE_USB0_RX,
  585. },
  586. },
  587. };
  588. static struct resource usbhs0_resources[] = {
  589. [0] = {
  590. .name = "USBHS0",
  591. .start = 0xe6890000,
  592. .end = 0xe68900e6 - 1,
  593. .flags = IORESOURCE_MEM,
  594. },
  595. [1] = {
  596. .start = evt2irq(0x1ca0) /* USB0_USB0I0 */,
  597. .flags = IORESOURCE_IRQ,
  598. },
  599. };
  600. static struct platform_device usbhs0_device = {
  601. .name = "renesas_usbhs",
  602. .id = 0,
  603. .dev = {
  604. .platform_data = &usbhs0_private.info,
  605. },
  606. .num_resources = ARRAY_SIZE(usbhs0_resources),
  607. .resource = usbhs0_resources,
  608. };
  609. /* USBHS1 is connected to CN31 which takes a USB Mini-AB plug
  610. *
  611. * Use J30 to select between Host and Function. This setting
  612. * can however not be detected by software. Hotplug of USBHS1
  613. * is provided via IRQ8.
  614. *
  615. * Current USB1 works as "USB Host".
  616. * - set J30 "short"
  617. *
  618. * If you want to use it as "USB gadget",
  619. * - J30 "open"
  620. * - modify usbhs1_get_id() USBHS_HOST -> USBHS_GADGET
  621. * - add .get_vbus = usbhs_get_vbus in usbhs1_private
  622. * - check usbhs0_device(pio)/usbhs1_device(irq) order in mackerel_devices.
  623. */
  624. #define IRQ8 evt2irq(0x0300)
  625. #define USB_PHY_MODE (1 << 4)
  626. #define USB_PHY_INT_EN ((1 << 3) | (1 << 2))
  627. #define USB_PHY_ON (1 << 1)
  628. #define USB_PHY_OFF (1 << 0)
  629. #define USB_PHY_INT_CLR (USB_PHY_ON | USB_PHY_OFF)
  630. static irqreturn_t usbhs1_interrupt(int irq, void *data)
  631. {
  632. struct platform_device *pdev = data;
  633. struct usbhs_private *priv = usbhs_get_priv(pdev);
  634. dev_dbg(&pdev->dev, "%s\n", __func__);
  635. renesas_usbhs_call_notify_hotplug(pdev);
  636. /* clear status */
  637. __raw_writew(__raw_readw(priv->usbphyaddr) | USB_PHY_INT_CLR,
  638. priv->usbphyaddr);
  639. return IRQ_HANDLED;
  640. }
  641. static int usbhs1_hardware_init(struct platform_device *pdev)
  642. {
  643. struct usbhs_private *priv = usbhs_get_priv(pdev);
  644. int ret;
  645. /* clear interrupt status */
  646. __raw_writew(USB_PHY_MODE | USB_PHY_INT_CLR, priv->usbphyaddr);
  647. ret = request_irq(IRQ8, usbhs1_interrupt, IRQF_TRIGGER_HIGH,
  648. dev_name(&pdev->dev), pdev);
  649. if (ret) {
  650. dev_err(&pdev->dev, "request_irq err\n");
  651. return ret;
  652. }
  653. /* enable USB phy interrupt */
  654. __raw_writew(USB_PHY_MODE | USB_PHY_INT_EN, priv->usbphyaddr);
  655. return 0;
  656. }
  657. static void usbhs1_hardware_exit(struct platform_device *pdev)
  658. {
  659. struct usbhs_private *priv = usbhs_get_priv(pdev);
  660. /* clear interrupt status */
  661. __raw_writew(USB_PHY_MODE | USB_PHY_INT_CLR, priv->usbphyaddr);
  662. free_irq(IRQ8, pdev);
  663. }
  664. static int usbhs1_get_id(struct platform_device *pdev)
  665. {
  666. return USBHS_HOST;
  667. }
  668. static u32 usbhs1_pipe_cfg[] = {
  669. USB_ENDPOINT_XFER_CONTROL,
  670. USB_ENDPOINT_XFER_ISOC,
  671. USB_ENDPOINT_XFER_ISOC,
  672. USB_ENDPOINT_XFER_BULK,
  673. USB_ENDPOINT_XFER_BULK,
  674. USB_ENDPOINT_XFER_BULK,
  675. USB_ENDPOINT_XFER_INT,
  676. USB_ENDPOINT_XFER_INT,
  677. USB_ENDPOINT_XFER_INT,
  678. USB_ENDPOINT_XFER_BULK,
  679. USB_ENDPOINT_XFER_BULK,
  680. USB_ENDPOINT_XFER_BULK,
  681. USB_ENDPOINT_XFER_BULK,
  682. USB_ENDPOINT_XFER_BULK,
  683. USB_ENDPOINT_XFER_BULK,
  684. USB_ENDPOINT_XFER_BULK,
  685. };
  686. static struct usbhs_private usbhs1_private = {
  687. .usbphyaddr = IOMEM(0xe60581e2), /* USBPHY1INTAP */
  688. .usbcrcaddr = IOMEM(0xe6058130), /* USBCR4 */
  689. .info = {
  690. .platform_callback = {
  691. .hardware_init = usbhs1_hardware_init,
  692. .hardware_exit = usbhs1_hardware_exit,
  693. .get_id = usbhs1_get_id,
  694. .phy_reset = usbhs_phy_reset,
  695. },
  696. .driver_param = {
  697. .buswait_bwait = 4,
  698. .has_otg = 1,
  699. .pipe_type = usbhs1_pipe_cfg,
  700. .pipe_size = ARRAY_SIZE(usbhs1_pipe_cfg),
  701. .d0_tx_id = SHDMA_SLAVE_USB1_TX,
  702. .d1_rx_id = SHDMA_SLAVE_USB1_RX,
  703. },
  704. },
  705. };
  706. static struct resource usbhs1_resources[] = {
  707. [0] = {
  708. .name = "USBHS1",
  709. .start = 0xe68b0000,
  710. .end = 0xe68b00e6 - 1,
  711. .flags = IORESOURCE_MEM,
  712. },
  713. [1] = {
  714. .start = evt2irq(0x1ce0) /* USB1_USB1I0 */,
  715. .flags = IORESOURCE_IRQ,
  716. },
  717. };
  718. static struct platform_device usbhs1_device = {
  719. .name = "renesas_usbhs",
  720. .id = 1,
  721. .dev = {
  722. .platform_data = &usbhs1_private.info,
  723. .dma_mask = &usbhs1_device.dev.coherent_dma_mask,
  724. .coherent_dma_mask = DMA_BIT_MASK(32),
  725. },
  726. .num_resources = ARRAY_SIZE(usbhs1_resources),
  727. .resource = usbhs1_resources,
  728. };
  729. /* LED */
  730. static struct gpio_led mackerel_leds[] = {
  731. {
  732. .name = "led0",
  733. .gpio = GPIO_PORT0,
  734. .default_state = LEDS_GPIO_DEFSTATE_ON,
  735. },
  736. {
  737. .name = "led1",
  738. .gpio = GPIO_PORT1,
  739. .default_state = LEDS_GPIO_DEFSTATE_ON,
  740. },
  741. {
  742. .name = "led2",
  743. .gpio = GPIO_PORT2,
  744. .default_state = LEDS_GPIO_DEFSTATE_ON,
  745. },
  746. {
  747. .name = "led3",
  748. .gpio = GPIO_PORT159,
  749. .default_state = LEDS_GPIO_DEFSTATE_ON,
  750. }
  751. };
  752. static struct gpio_led_platform_data mackerel_leds_pdata = {
  753. .leds = mackerel_leds,
  754. .num_leds = ARRAY_SIZE(mackerel_leds),
  755. };
  756. static struct platform_device leds_device = {
  757. .name = "leds-gpio",
  758. .id = 0,
  759. .dev = {
  760. .platform_data = &mackerel_leds_pdata,
  761. },
  762. };
  763. /* FSI */
  764. #define IRQ_FSI evt2irq(0x1840)
  765. static struct sh_fsi_platform_info fsi_info = {
  766. .port_a = {
  767. .flags = SH_FSI_BRS_INV,
  768. .tx_id = SHDMA_SLAVE_FSIA_TX,
  769. .rx_id = SHDMA_SLAVE_FSIA_RX,
  770. },
  771. .port_b = {
  772. .flags = SH_FSI_BRS_INV |
  773. SH_FSI_BRM_INV |
  774. SH_FSI_LRS_INV |
  775. SH_FSI_CLK_CPG |
  776. SH_FSI_FMT_SPDIF,
  777. }
  778. };
  779. static struct resource fsi_resources[] = {
  780. [0] = {
  781. /* we need 0xFE1F0000 to access DMA
  782. * instead of 0xFE3C0000 */
  783. .name = "FSI",
  784. .start = 0xFE1F0000,
  785. .end = 0xFE1F0400 - 1,
  786. .flags = IORESOURCE_MEM,
  787. },
  788. [1] = {
  789. .start = IRQ_FSI,
  790. .flags = IORESOURCE_IRQ,
  791. },
  792. };
  793. static struct platform_device fsi_device = {
  794. .name = "sh_fsi2",
  795. .id = -1,
  796. .num_resources = ARRAY_SIZE(fsi_resources),
  797. .resource = fsi_resources,
  798. .dev = {
  799. .platform_data = &fsi_info,
  800. },
  801. };
  802. static struct asoc_simple_dai_init_info fsi2_ak4643_init_info = {
  803. .fmt = SND_SOC_DAIFMT_LEFT_J,
  804. .codec_daifmt = SND_SOC_DAIFMT_CBM_CFM,
  805. .cpu_daifmt = SND_SOC_DAIFMT_CBS_CFS,
  806. .sysclk = 11289600,
  807. };
  808. static struct asoc_simple_card_info fsi2_ak4643_info = {
  809. .name = "AK4643",
  810. .card = "FSI2A-AK4643",
  811. .cpu_dai = "fsia-dai",
  812. .codec = "ak4642-codec.0-0013",
  813. .platform = "sh_fsi2",
  814. .codec_dai = "ak4642-hifi",
  815. .init = &fsi2_ak4643_init_info,
  816. };
  817. static struct platform_device fsi_ak4643_device = {
  818. .name = "asoc-simple-card",
  819. .dev = {
  820. .platform_data = &fsi2_ak4643_info,
  821. },
  822. };
  823. /* FLCTL */
  824. static struct mtd_partition nand_partition_info[] = {
  825. {
  826. .name = "system",
  827. .offset = 0,
  828. .size = 128 * 1024 * 1024,
  829. },
  830. {
  831. .name = "userdata",
  832. .offset = MTDPART_OFS_APPEND,
  833. .size = 256 * 1024 * 1024,
  834. },
  835. {
  836. .name = "cache",
  837. .offset = MTDPART_OFS_APPEND,
  838. .size = 128 * 1024 * 1024,
  839. },
  840. };
  841. static struct resource nand_flash_resources[] = {
  842. [0] = {
  843. .start = 0xe6a30000,
  844. .end = 0xe6a3009b,
  845. .flags = IORESOURCE_MEM,
  846. },
  847. [1] = {
  848. .start = evt2irq(0x0d80), /* flstei: status error irq */
  849. .flags = IORESOURCE_IRQ,
  850. },
  851. };
  852. static struct sh_flctl_platform_data nand_flash_data = {
  853. .parts = nand_partition_info,
  854. .nr_parts = ARRAY_SIZE(nand_partition_info),
  855. .flcmncr_val = CLK_16B_12L_4H | TYPESEL_SET
  856. | SHBUSSEL | SEL_16BIT | SNAND_E,
  857. .use_holden = 1,
  858. };
  859. static struct platform_device nand_flash_device = {
  860. .name = "sh_flctl",
  861. .resource = nand_flash_resources,
  862. .num_resources = ARRAY_SIZE(nand_flash_resources),
  863. .dev = {
  864. .platform_data = &nand_flash_data,
  865. },
  866. };
  867. /*
  868. * The card detect pin of the top SD/MMC slot (CN7) is active low and is
  869. * connected to GPIO A22 of SH7372 (GPIO_PORT41).
  870. */
  871. static int slot_cn7_get_cd(struct platform_device *pdev)
  872. {
  873. return !gpio_get_value(GPIO_PORT41);
  874. }
  875. /* SDHI0 */
  876. static struct sh_mobile_sdhi_info sdhi0_info = {
  877. .dma_slave_tx = SHDMA_SLAVE_SDHI0_TX,
  878. .dma_slave_rx = SHDMA_SLAVE_SDHI0_RX,
  879. .tmio_flags = TMIO_MMC_USE_GPIO_CD,
  880. .tmio_caps = MMC_CAP_SD_HIGHSPEED | MMC_CAP_SDIO_IRQ,
  881. .cd_gpio = GPIO_PORT172,
  882. };
  883. static struct resource sdhi0_resources[] = {
  884. [0] = {
  885. .name = "SDHI0",
  886. .start = 0xe6850000,
  887. .end = 0xe68500ff,
  888. .flags = IORESOURCE_MEM,
  889. },
  890. [1] = {
  891. .start = evt2irq(0x0e00) /* SDHI0_SDHI0I0 */,
  892. .flags = IORESOURCE_IRQ,
  893. },
  894. [2] = {
  895. .start = evt2irq(0x0e20) /* SDHI0_SDHI0I1 */,
  896. .flags = IORESOURCE_IRQ,
  897. },
  898. [3] = {
  899. .start = evt2irq(0x0e40) /* SDHI0_SDHI0I2 */,
  900. .flags = IORESOURCE_IRQ,
  901. },
  902. };
  903. static struct platform_device sdhi0_device = {
  904. .name = "sh_mobile_sdhi",
  905. .num_resources = ARRAY_SIZE(sdhi0_resources),
  906. .resource = sdhi0_resources,
  907. .id = 0,
  908. .dev = {
  909. .platform_data = &sdhi0_info,
  910. },
  911. };
  912. #if !defined(CONFIG_MMC_SH_MMCIF) && !defined(CONFIG_MMC_SH_MMCIF_MODULE)
  913. /* SDHI1 */
  914. static struct sh_mobile_sdhi_info sdhi1_info = {
  915. .dma_slave_tx = SHDMA_SLAVE_SDHI1_TX,
  916. .dma_slave_rx = SHDMA_SLAVE_SDHI1_RX,
  917. .tmio_ocr_mask = MMC_VDD_165_195,
  918. .tmio_flags = TMIO_MMC_WRPROTECT_DISABLE,
  919. .tmio_caps = MMC_CAP_SD_HIGHSPEED | MMC_CAP_SDIO_IRQ |
  920. MMC_CAP_NEEDS_POLL,
  921. .get_cd = slot_cn7_get_cd,
  922. };
  923. static struct resource sdhi1_resources[] = {
  924. [0] = {
  925. .name = "SDHI1",
  926. .start = 0xe6860000,
  927. .end = 0xe68600ff,
  928. .flags = IORESOURCE_MEM,
  929. },
  930. [1] = {
  931. .name = SH_MOBILE_SDHI_IRQ_CARD_DETECT,
  932. .start = evt2irq(0x0e80), /* SDHI1_SDHI1I0 */
  933. .flags = IORESOURCE_IRQ,
  934. },
  935. [2] = {
  936. .name = SH_MOBILE_SDHI_IRQ_SDCARD,
  937. .start = evt2irq(0x0ea0), /* SDHI1_SDHI1I1 */
  938. .flags = IORESOURCE_IRQ,
  939. },
  940. [3] = {
  941. .name = SH_MOBILE_SDHI_IRQ_SDIO,
  942. .start = evt2irq(0x0ec0), /* SDHI1_SDHI1I2 */
  943. .flags = IORESOURCE_IRQ,
  944. },
  945. };
  946. static struct platform_device sdhi1_device = {
  947. .name = "sh_mobile_sdhi",
  948. .num_resources = ARRAY_SIZE(sdhi1_resources),
  949. .resource = sdhi1_resources,
  950. .id = 1,
  951. .dev = {
  952. .platform_data = &sdhi1_info,
  953. },
  954. };
  955. #endif
  956. /*
  957. * The card detect pin of the top SD/MMC slot (CN23) is active low and is
  958. * connected to GPIO SCIFB_SCK of SH7372 (GPIO_PORT162).
  959. */
  960. static int slot_cn23_get_cd(struct platform_device *pdev)
  961. {
  962. return !gpio_get_value(GPIO_PORT162);
  963. }
  964. /* SDHI2 */
  965. static struct sh_mobile_sdhi_info sdhi2_info = {
  966. .dma_slave_tx = SHDMA_SLAVE_SDHI2_TX,
  967. .dma_slave_rx = SHDMA_SLAVE_SDHI2_RX,
  968. .tmio_flags = TMIO_MMC_WRPROTECT_DISABLE,
  969. .tmio_caps = MMC_CAP_SD_HIGHSPEED | MMC_CAP_SDIO_IRQ |
  970. MMC_CAP_NEEDS_POLL,
  971. .get_cd = slot_cn23_get_cd,
  972. };
  973. static struct resource sdhi2_resources[] = {
  974. [0] = {
  975. .name = "SDHI2",
  976. .start = 0xe6870000,
  977. .end = 0xe68700ff,
  978. .flags = IORESOURCE_MEM,
  979. },
  980. [1] = {
  981. .name = SH_MOBILE_SDHI_IRQ_CARD_DETECT,
  982. .start = evt2irq(0x1200), /* SDHI2_SDHI2I0 */
  983. .flags = IORESOURCE_IRQ,
  984. },
  985. [2] = {
  986. .name = SH_MOBILE_SDHI_IRQ_SDCARD,
  987. .start = evt2irq(0x1220), /* SDHI2_SDHI2I1 */
  988. .flags = IORESOURCE_IRQ,
  989. },
  990. [3] = {
  991. .name = SH_MOBILE_SDHI_IRQ_SDIO,
  992. .start = evt2irq(0x1240), /* SDHI2_SDHI2I2 */
  993. .flags = IORESOURCE_IRQ,
  994. },
  995. };
  996. static struct platform_device sdhi2_device = {
  997. .name = "sh_mobile_sdhi",
  998. .num_resources = ARRAY_SIZE(sdhi2_resources),
  999. .resource = sdhi2_resources,
  1000. .id = 2,
  1001. .dev = {
  1002. .platform_data = &sdhi2_info,
  1003. },
  1004. };
  1005. /* SH_MMCIF */
  1006. static struct resource sh_mmcif_resources[] = {
  1007. [0] = {
  1008. .name = "MMCIF",
  1009. .start = 0xE6BD0000,
  1010. .end = 0xE6BD00FF,
  1011. .flags = IORESOURCE_MEM,
  1012. },
  1013. [1] = {
  1014. /* MMC ERR */
  1015. .start = evt2irq(0x1ac0),
  1016. .flags = IORESOURCE_IRQ,
  1017. },
  1018. [2] = {
  1019. /* MMC NOR */
  1020. .start = evt2irq(0x1ae0),
  1021. .flags = IORESOURCE_IRQ,
  1022. },
  1023. };
  1024. static struct sh_mmcif_plat_data sh_mmcif_plat = {
  1025. .sup_pclk = 0,
  1026. .ocr = MMC_VDD_165_195 | MMC_VDD_32_33 | MMC_VDD_33_34,
  1027. .caps = MMC_CAP_4_BIT_DATA |
  1028. MMC_CAP_8_BIT_DATA |
  1029. MMC_CAP_NEEDS_POLL,
  1030. .get_cd = slot_cn7_get_cd,
  1031. .slave_id_tx = SHDMA_SLAVE_MMCIF_TX,
  1032. .slave_id_rx = SHDMA_SLAVE_MMCIF_RX,
  1033. };
  1034. static struct platform_device sh_mmcif_device = {
  1035. .name = "sh_mmcif",
  1036. .id = 0,
  1037. .dev = {
  1038. .dma_mask = NULL,
  1039. .coherent_dma_mask = 0xffffffff,
  1040. .platform_data = &sh_mmcif_plat,
  1041. },
  1042. .num_resources = ARRAY_SIZE(sh_mmcif_resources),
  1043. .resource = sh_mmcif_resources,
  1044. };
  1045. static int mackerel_camera_add(struct soc_camera_device *icd);
  1046. static void mackerel_camera_del(struct soc_camera_device *icd);
  1047. static int camera_set_capture(struct soc_camera_platform_info *info,
  1048. int enable)
  1049. {
  1050. return 0; /* camera sensor always enabled */
  1051. }
  1052. static struct soc_camera_platform_info camera_info = {
  1053. .format_name = "UYVY",
  1054. .format_depth = 16,
  1055. .format = {
  1056. .code = V4L2_MBUS_FMT_UYVY8_2X8,
  1057. .colorspace = V4L2_COLORSPACE_SMPTE170M,
  1058. .field = V4L2_FIELD_NONE,
  1059. .width = 640,
  1060. .height = 480,
  1061. },
  1062. .mbus_param = V4L2_MBUS_PCLK_SAMPLE_RISING | V4L2_MBUS_MASTER |
  1063. V4L2_MBUS_VSYNC_ACTIVE_HIGH | V4L2_MBUS_HSYNC_ACTIVE_HIGH |
  1064. V4L2_MBUS_DATA_ACTIVE_HIGH,
  1065. .mbus_type = V4L2_MBUS_PARALLEL,
  1066. .set_capture = camera_set_capture,
  1067. };
  1068. static struct soc_camera_link camera_link = {
  1069. .bus_id = 0,
  1070. .add_device = mackerel_camera_add,
  1071. .del_device = mackerel_camera_del,
  1072. .module_name = "soc_camera_platform",
  1073. .priv = &camera_info,
  1074. };
  1075. static struct platform_device *camera_device;
  1076. static void mackerel_camera_release(struct device *dev)
  1077. {
  1078. soc_camera_platform_release(&camera_device);
  1079. }
  1080. static int mackerel_camera_add(struct soc_camera_device *icd)
  1081. {
  1082. return soc_camera_platform_add(icd, &camera_device, &camera_link,
  1083. mackerel_camera_release, 0);
  1084. }
  1085. static void mackerel_camera_del(struct soc_camera_device *icd)
  1086. {
  1087. soc_camera_platform_del(icd, camera_device, &camera_link);
  1088. }
  1089. static struct sh_mobile_ceu_info sh_mobile_ceu_info = {
  1090. .flags = SH_CEU_FLAG_USE_8BIT_BUS,
  1091. .max_width = 8188,
  1092. .max_height = 8188,
  1093. };
  1094. static struct resource ceu_resources[] = {
  1095. [0] = {
  1096. .name = "CEU",
  1097. .start = 0xfe910000,
  1098. .end = 0xfe91009f,
  1099. .flags = IORESOURCE_MEM,
  1100. },
  1101. [1] = {
  1102. .start = intcs_evt2irq(0x880),
  1103. .flags = IORESOURCE_IRQ,
  1104. },
  1105. [2] = {
  1106. /* place holder for contiguous memory */
  1107. },
  1108. };
  1109. static struct platform_device ceu_device = {
  1110. .name = "sh_mobile_ceu",
  1111. .id = 0, /* "ceu0" clock */
  1112. .num_resources = ARRAY_SIZE(ceu_resources),
  1113. .resource = ceu_resources,
  1114. .dev = {
  1115. .platform_data = &sh_mobile_ceu_info,
  1116. .coherent_dma_mask = 0xffffffff,
  1117. },
  1118. };
  1119. static struct platform_device mackerel_camera = {
  1120. .name = "soc-camera-pdrv",
  1121. .id = 0,
  1122. .dev = {
  1123. .platform_data = &camera_link,
  1124. },
  1125. };
  1126. static struct platform_device *mackerel_devices[] __initdata = {
  1127. &nor_flash_device,
  1128. &smc911x_device,
  1129. &lcdc_device,
  1130. &usbhs0_device,
  1131. &usbhs1_device,
  1132. &leds_device,
  1133. &fsi_device,
  1134. &fsi_ak4643_device,
  1135. &fsi_hdmi_device,
  1136. &nand_flash_device,
  1137. &sdhi0_device,
  1138. #if !defined(CONFIG_MMC_SH_MMCIF) && !defined(CONFIG_MMC_SH_MMCIF_MODULE)
  1139. &sdhi1_device,
  1140. #endif
  1141. &sdhi2_device,
  1142. &sh_mmcif_device,
  1143. &ceu_device,
  1144. &mackerel_camera,
  1145. &hdmi_device,
  1146. &hdmi_lcdc_device,
  1147. &meram_device,
  1148. };
  1149. /* Keypad Initialization */
  1150. #define KEYPAD_BUTTON(ev_type, ev_code, act_low) \
  1151. { \
  1152. .type = ev_type, \
  1153. .code = ev_code, \
  1154. .active_low = act_low, \
  1155. }
  1156. #define KEYPAD_BUTTON_LOW(event_code) KEYPAD_BUTTON(EV_KEY, event_code, 1)
  1157. static struct tca6416_button mackerel_gpio_keys[] = {
  1158. KEYPAD_BUTTON_LOW(KEY_HOME),
  1159. KEYPAD_BUTTON_LOW(KEY_MENU),
  1160. KEYPAD_BUTTON_LOW(KEY_BACK),
  1161. KEYPAD_BUTTON_LOW(KEY_POWER),
  1162. };
  1163. static struct tca6416_keys_platform_data mackerel_tca6416_keys_info = {
  1164. .buttons = mackerel_gpio_keys,
  1165. .nbuttons = ARRAY_SIZE(mackerel_gpio_keys),
  1166. .rep = 1,
  1167. .use_polling = 0,
  1168. .pinmask = 0x000F,
  1169. };
  1170. /* I2C */
  1171. #define IRQ7 evt2irq(0x02e0)
  1172. #define IRQ9 evt2irq(0x0320)
  1173. static struct i2c_board_info i2c0_devices[] = {
  1174. {
  1175. I2C_BOARD_INFO("ak4643", 0x13),
  1176. },
  1177. /* Keypad */
  1178. {
  1179. I2C_BOARD_INFO("tca6408-keys", 0x20),
  1180. .platform_data = &mackerel_tca6416_keys_info,
  1181. .irq = IRQ9,
  1182. },
  1183. /* Touchscreen */
  1184. {
  1185. I2C_BOARD_INFO("st1232-ts", 0x55),
  1186. .irq = IRQ7,
  1187. },
  1188. };
  1189. #define IRQ21 evt2irq(0x32a0)
  1190. static struct i2c_board_info i2c1_devices[] = {
  1191. /* Accelerometer */
  1192. {
  1193. I2C_BOARD_INFO("adxl34x", 0x53),
  1194. .irq = IRQ21,
  1195. },
  1196. };
  1197. #define GPIO_PORT9CR IOMEM(0xE6051009)
  1198. #define GPIO_PORT10CR IOMEM(0xE605100A)
  1199. #define GPIO_PORT167CR IOMEM(0xE60520A7)
  1200. #define GPIO_PORT168CR IOMEM(0xE60520A8)
  1201. #define SRCR4 IOMEM(0xe61580bc)
  1202. #define USCCR1 IOMEM(0xE6058144)
  1203. static void __init mackerel_init(void)
  1204. {
  1205. struct pm_domain_device domain_devices[] = {
  1206. { "A4LC", &lcdc_device, },
  1207. { "A4LC", &hdmi_lcdc_device, },
  1208. { "A4LC", &meram_device, },
  1209. { "A4MP", &fsi_device, },
  1210. { "A3SP", &usbhs0_device, },
  1211. { "A3SP", &usbhs1_device, },
  1212. { "A3SP", &nand_flash_device, },
  1213. { "A3SP", &sh_mmcif_device, },
  1214. { "A3SP", &sdhi0_device, },
  1215. #if !defined(CONFIG_MMC_SH_MMCIF) && !defined(CONFIG_MMC_SH_MMCIF_MODULE)
  1216. { "A3SP", &sdhi1_device, },
  1217. #endif
  1218. { "A3SP", &sdhi2_device, },
  1219. { "A4R", &ceu_device, },
  1220. };
  1221. u32 srcr4;
  1222. struct clk *clk;
  1223. regulator_register_always_on(0, "fixed-1.8V", fixed1v8_power_consumers,
  1224. ARRAY_SIZE(fixed1v8_power_consumers), 1800000);
  1225. regulator_register_always_on(1, "fixed-3.3V", fixed3v3_power_consumers,
  1226. ARRAY_SIZE(fixed3v3_power_consumers), 3300000);
  1227. regulator_register_fixed(2, dummy_supplies, ARRAY_SIZE(dummy_supplies));
  1228. /* External clock source */
  1229. clk_set_rate(&sh7372_dv_clki_clk, 27000000);
  1230. sh7372_pinmux_init();
  1231. /* enable SCIFA0 */
  1232. gpio_request(GPIO_FN_SCIFA0_TXD, NULL);
  1233. gpio_request(GPIO_FN_SCIFA0_RXD, NULL);
  1234. /* enable SMSC911X */
  1235. gpio_request(GPIO_FN_CS5A, NULL);
  1236. gpio_request(GPIO_FN_IRQ6_39, NULL);
  1237. /* LCDC */
  1238. gpio_request(GPIO_FN_LCDD23, NULL);
  1239. gpio_request(GPIO_FN_LCDD22, NULL);
  1240. gpio_request(GPIO_FN_LCDD21, NULL);
  1241. gpio_request(GPIO_FN_LCDD20, NULL);
  1242. gpio_request(GPIO_FN_LCDD19, NULL);
  1243. gpio_request(GPIO_FN_LCDD18, NULL);
  1244. gpio_request(GPIO_FN_LCDD17, NULL);
  1245. gpio_request(GPIO_FN_LCDD16, NULL);
  1246. gpio_request(GPIO_FN_LCDD15, NULL);
  1247. gpio_request(GPIO_FN_LCDD14, NULL);
  1248. gpio_request(GPIO_FN_LCDD13, NULL);
  1249. gpio_request(GPIO_FN_LCDD12, NULL);
  1250. gpio_request(GPIO_FN_LCDD11, NULL);
  1251. gpio_request(GPIO_FN_LCDD10, NULL);
  1252. gpio_request(GPIO_FN_LCDD9, NULL);
  1253. gpio_request(GPIO_FN_LCDD8, NULL);
  1254. gpio_request(GPIO_FN_LCDD7, NULL);
  1255. gpio_request(GPIO_FN_LCDD6, NULL);
  1256. gpio_request(GPIO_FN_LCDD5, NULL);
  1257. gpio_request(GPIO_FN_LCDD4, NULL);
  1258. gpio_request(GPIO_FN_LCDD3, NULL);
  1259. gpio_request(GPIO_FN_LCDD2, NULL);
  1260. gpio_request(GPIO_FN_LCDD1, NULL);
  1261. gpio_request(GPIO_FN_LCDD0, NULL);
  1262. gpio_request(GPIO_FN_LCDDISP, NULL);
  1263. gpio_request(GPIO_FN_LCDDCK, NULL);
  1264. gpio_request(GPIO_PORT31, NULL); /* backlight */
  1265. gpio_direction_output(GPIO_PORT31, 0); /* off by default */
  1266. gpio_request(GPIO_PORT151, NULL); /* LCDDON */
  1267. gpio_direction_output(GPIO_PORT151, 1);
  1268. /* USBHS0 */
  1269. gpio_request(GPIO_FN_VBUS0_0, NULL);
  1270. gpio_request_pulldown(GPIO_PORT168CR); /* VBUS0_0 pull down */
  1271. /* USBHS1 */
  1272. gpio_request(GPIO_FN_VBUS0_1, NULL);
  1273. gpio_request_pulldown(GPIO_PORT167CR); /* VBUS0_1 pull down */
  1274. gpio_request(GPIO_FN_IDIN_1_113, NULL);
  1275. /* enable FSI2 port A (ak4643) */
  1276. gpio_request(GPIO_FN_FSIAIBT, NULL);
  1277. gpio_request(GPIO_FN_FSIAILR, NULL);
  1278. gpio_request(GPIO_FN_FSIAISLD, NULL);
  1279. gpio_request(GPIO_FN_FSIAOSLD, NULL);
  1280. gpio_request(GPIO_PORT161, NULL);
  1281. gpio_direction_output(GPIO_PORT161, 0); /* slave */
  1282. gpio_request(GPIO_PORT9, NULL);
  1283. gpio_request(GPIO_PORT10, NULL);
  1284. gpio_direction_none(GPIO_PORT9CR); /* FSIAOBT needs no direction */
  1285. gpio_direction_none(GPIO_PORT10CR); /* FSIAOLR needs no direction */
  1286. intc_set_priority(IRQ_FSI, 3); /* irq priority FSI(3) > SMSC911X(2) */
  1287. /* setup FSI2 port B (HDMI) */
  1288. gpio_request(GPIO_FN_FSIBCK, NULL);
  1289. __raw_writew(__raw_readw(USCCR1) & ~(1 << 6), USCCR1); /* use SPDIF */
  1290. /* set SPU2 clock to 119.6 MHz */
  1291. clk = clk_get(NULL, "spu_clk");
  1292. if (!IS_ERR(clk)) {
  1293. clk_set_rate(clk, clk_round_rate(clk, 119600000));
  1294. clk_put(clk);
  1295. }
  1296. /* enable Keypad */
  1297. gpio_request(GPIO_FN_IRQ9_42, NULL);
  1298. irq_set_irq_type(IRQ9, IRQ_TYPE_LEVEL_HIGH);
  1299. /* enable Touchscreen */
  1300. gpio_request(GPIO_FN_IRQ7_40, NULL);
  1301. irq_set_irq_type(IRQ7, IRQ_TYPE_LEVEL_LOW);
  1302. /* enable Accelerometer */
  1303. gpio_request(GPIO_FN_IRQ21, NULL);
  1304. irq_set_irq_type(IRQ21, IRQ_TYPE_LEVEL_HIGH);
  1305. /* enable SDHI0 */
  1306. gpio_request(GPIO_FN_SDHIWP0, NULL);
  1307. gpio_request(GPIO_FN_SDHICMD0, NULL);
  1308. gpio_request(GPIO_FN_SDHICLK0, NULL);
  1309. gpio_request(GPIO_FN_SDHID0_3, NULL);
  1310. gpio_request(GPIO_FN_SDHID0_2, NULL);
  1311. gpio_request(GPIO_FN_SDHID0_1, NULL);
  1312. gpio_request(GPIO_FN_SDHID0_0, NULL);
  1313. /* SDHI0 PORT172 card-detect IRQ26 */
  1314. gpio_request(GPIO_FN_IRQ26_172, NULL);
  1315. #if !defined(CONFIG_MMC_SH_MMCIF) && !defined(CONFIG_MMC_SH_MMCIF_MODULE)
  1316. /* enable SDHI1 */
  1317. gpio_request(GPIO_FN_SDHICMD1, NULL);
  1318. gpio_request(GPIO_FN_SDHICLK1, NULL);
  1319. gpio_request(GPIO_FN_SDHID1_3, NULL);
  1320. gpio_request(GPIO_FN_SDHID1_2, NULL);
  1321. gpio_request(GPIO_FN_SDHID1_1, NULL);
  1322. gpio_request(GPIO_FN_SDHID1_0, NULL);
  1323. #endif
  1324. /* card detect pin for MMC slot (CN7) */
  1325. gpio_request(GPIO_PORT41, NULL);
  1326. gpio_direction_input(GPIO_PORT41);
  1327. /* enable SDHI2 */
  1328. gpio_request(GPIO_FN_SDHICMD2, NULL);
  1329. gpio_request(GPIO_FN_SDHICLK2, NULL);
  1330. gpio_request(GPIO_FN_SDHID2_3, NULL);
  1331. gpio_request(GPIO_FN_SDHID2_2, NULL);
  1332. gpio_request(GPIO_FN_SDHID2_1, NULL);
  1333. gpio_request(GPIO_FN_SDHID2_0, NULL);
  1334. /* card detect pin for microSD slot (CN23) */
  1335. gpio_request(GPIO_PORT162, NULL);
  1336. gpio_direction_input(GPIO_PORT162);
  1337. /* MMCIF */
  1338. gpio_request(GPIO_FN_MMCD0_0, NULL);
  1339. gpio_request(GPIO_FN_MMCD0_1, NULL);
  1340. gpio_request(GPIO_FN_MMCD0_2, NULL);
  1341. gpio_request(GPIO_FN_MMCD0_3, NULL);
  1342. gpio_request(GPIO_FN_MMCD0_4, NULL);
  1343. gpio_request(GPIO_FN_MMCD0_5, NULL);
  1344. gpio_request(GPIO_FN_MMCD0_6, NULL);
  1345. gpio_request(GPIO_FN_MMCD0_7, NULL);
  1346. gpio_request(GPIO_FN_MMCCMD0, NULL);
  1347. gpio_request(GPIO_FN_MMCCLK0, NULL);
  1348. /* FLCTL */
  1349. gpio_request(GPIO_FN_D0_NAF0, NULL);
  1350. gpio_request(GPIO_FN_D1_NAF1, NULL);
  1351. gpio_request(GPIO_FN_D2_NAF2, NULL);
  1352. gpio_request(GPIO_FN_D3_NAF3, NULL);
  1353. gpio_request(GPIO_FN_D4_NAF4, NULL);
  1354. gpio_request(GPIO_FN_D5_NAF5, NULL);
  1355. gpio_request(GPIO_FN_D6_NAF6, NULL);
  1356. gpio_request(GPIO_FN_D7_NAF7, NULL);
  1357. gpio_request(GPIO_FN_D8_NAF8, NULL);
  1358. gpio_request(GPIO_FN_D9_NAF9, NULL);
  1359. gpio_request(GPIO_FN_D10_NAF10, NULL);
  1360. gpio_request(GPIO_FN_D11_NAF11, NULL);
  1361. gpio_request(GPIO_FN_D12_NAF12, NULL);
  1362. gpio_request(GPIO_FN_D13_NAF13, NULL);
  1363. gpio_request(GPIO_FN_D14_NAF14, NULL);
  1364. gpio_request(GPIO_FN_D15_NAF15, NULL);
  1365. gpio_request(GPIO_FN_FCE0, NULL);
  1366. gpio_request(GPIO_FN_WE0_FWE, NULL);
  1367. gpio_request(GPIO_FN_FRB, NULL);
  1368. gpio_request(GPIO_FN_A4_FOE, NULL);
  1369. gpio_request(GPIO_FN_A5_FCDE, NULL);
  1370. gpio_request(GPIO_FN_RD_FSC, NULL);
  1371. /* enable GPS module (GT-720F) */
  1372. gpio_request(GPIO_FN_SCIFA2_TXD1, NULL);
  1373. gpio_request(GPIO_FN_SCIFA2_RXD1, NULL);
  1374. /* CEU */
  1375. gpio_request(GPIO_FN_VIO_CLK, NULL);
  1376. gpio_request(GPIO_FN_VIO_VD, NULL);
  1377. gpio_request(GPIO_FN_VIO_HD, NULL);
  1378. gpio_request(GPIO_FN_VIO_FIELD, NULL);
  1379. gpio_request(GPIO_FN_VIO_CKO, NULL);
  1380. gpio_request(GPIO_FN_VIO_D7, NULL);
  1381. gpio_request(GPIO_FN_VIO_D6, NULL);
  1382. gpio_request(GPIO_FN_VIO_D5, NULL);
  1383. gpio_request(GPIO_FN_VIO_D4, NULL);
  1384. gpio_request(GPIO_FN_VIO_D3, NULL);
  1385. gpio_request(GPIO_FN_VIO_D2, NULL);
  1386. gpio_request(GPIO_FN_VIO_D1, NULL);
  1387. gpio_request(GPIO_FN_VIO_D0, NULL);
  1388. /* HDMI */
  1389. gpio_request(GPIO_FN_HDMI_HPD, NULL);
  1390. gpio_request(GPIO_FN_HDMI_CEC, NULL);
  1391. /* Reset HDMI, must be held at least one EXTALR (32768Hz) period */
  1392. srcr4 = __raw_readl(SRCR4);
  1393. __raw_writel(srcr4 | (1 << 13), SRCR4);
  1394. udelay(50);
  1395. __raw_writel(srcr4 & ~(1 << 13), SRCR4);
  1396. i2c_register_board_info(0, i2c0_devices,
  1397. ARRAY_SIZE(i2c0_devices));
  1398. i2c_register_board_info(1, i2c1_devices,
  1399. ARRAY_SIZE(i2c1_devices));
  1400. sh7372_add_standard_devices();
  1401. platform_add_devices(mackerel_devices, ARRAY_SIZE(mackerel_devices));
  1402. rmobile_add_devices_to_domains(domain_devices,
  1403. ARRAY_SIZE(domain_devices));
  1404. hdmi_init_pm_clock();
  1405. sh7372_pm_init();
  1406. pm_clk_add(&fsi_device.dev, "spu2");
  1407. pm_clk_add(&hdmi_lcdc_device.dev, "hdmi");
  1408. }
  1409. static const char *mackerel_boards_compat_dt[] __initdata = {
  1410. "renesas,mackerel",
  1411. NULL,
  1412. };
  1413. DT_MACHINE_START(MACKEREL_DT, "mackerel")
  1414. .map_io = sh7372_map_io,
  1415. .init_early = sh7372_add_early_devices,
  1416. .init_irq = sh7372_init_irq,
  1417. .handle_irq = shmobile_handle_irq_intc,
  1418. .init_machine = mackerel_init,
  1419. .init_late = sh7372_pm_init_late,
  1420. .timer = &shmobile_timer,
  1421. .dt_compat = mackerel_boards_compat_dt,
  1422. MACHINE_END