sh_mobile_hdmi.c 46 KB

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  1. /*
  2. * SH-Mobile High-Definition Multimedia Interface (HDMI) driver
  3. * for SLISHDMI13T and SLIPHDMIT IP cores
  4. *
  5. * Copyright (C) 2010, Guennadi Liakhovetski <g.liakhovetski@gmx.de>
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License version 2 as
  9. * published by the Free Software Foundation.
  10. */
  11. #include <linux/clk.h>
  12. #include <linux/console.h>
  13. #include <linux/delay.h>
  14. #include <linux/err.h>
  15. #include <linux/init.h>
  16. #include <linux/interrupt.h>
  17. #include <linux/io.h>
  18. #include <linux/module.h>
  19. #include <linux/platform_device.h>
  20. #include <linux/pm_runtime.h>
  21. #include <linux/slab.h>
  22. #include <linux/types.h>
  23. #include <linux/workqueue.h>
  24. #include <sound/soc.h>
  25. #include <sound/soc-dapm.h>
  26. #include <sound/initval.h>
  27. #include <video/sh_mobile_hdmi.h>
  28. #include <video/sh_mobile_lcdc.h>
  29. #include "sh_mobile_lcdcfb.h"
  30. #define HDMI_SYSTEM_CTRL 0x00 /* System control */
  31. #define HDMI_L_R_DATA_SWAP_CTRL_RPKT 0x01 /* L/R data swap control,
  32. bits 19..16 of 20-bit N for Audio Clock Regeneration packet */
  33. #define HDMI_20_BIT_N_FOR_AUDIO_RPKT_15_8 0x02 /* bits 15..8 of 20-bit N for Audio Clock Regeneration packet */
  34. #define HDMI_20_BIT_N_FOR_AUDIO_RPKT_7_0 0x03 /* bits 7..0 of 20-bit N for Audio Clock Regeneration packet */
  35. #define HDMI_SPDIF_AUDIO_SAMP_FREQ_CTS 0x04 /* SPDIF audio sampling frequency,
  36. bits 19..16 of Internal CTS */
  37. #define HDMI_INTERNAL_CTS_15_8 0x05 /* bits 15..8 of Internal CTS */
  38. #define HDMI_INTERNAL_CTS_7_0 0x06 /* bits 7..0 of Internal CTS */
  39. #define HDMI_EXTERNAL_CTS_19_16 0x07 /* External CTS */
  40. #define HDMI_EXTERNAL_CTS_15_8 0x08 /* External CTS */
  41. #define HDMI_EXTERNAL_CTS_7_0 0x09 /* External CTS */
  42. #define HDMI_AUDIO_SETTING_1 0x0A /* Audio setting.1 */
  43. #define HDMI_AUDIO_SETTING_2 0x0B /* Audio setting.2 */
  44. #define HDMI_I2S_AUDIO_SET 0x0C /* I2S audio setting */
  45. #define HDMI_DSD_AUDIO_SET 0x0D /* DSD audio setting */
  46. #define HDMI_DEBUG_MONITOR_1 0x0E /* Debug monitor.1 */
  47. #define HDMI_DEBUG_MONITOR_2 0x0F /* Debug monitor.2 */
  48. #define HDMI_I2S_INPUT_PIN_SWAP 0x10 /* I2S input pin swap */
  49. #define HDMI_AUDIO_STATUS_BITS_SETTING_1 0x11 /* Audio status bits setting.1 */
  50. #define HDMI_AUDIO_STATUS_BITS_SETTING_2 0x12 /* Audio status bits setting.2 */
  51. #define HDMI_CATEGORY_CODE 0x13 /* Category code */
  52. #define HDMI_SOURCE_NUM_AUDIO_WORD_LEN 0x14 /* Source number/Audio word length */
  53. #define HDMI_AUDIO_VIDEO_SETTING_1 0x15 /* Audio/Video setting.1 */
  54. #define HDMI_VIDEO_SETTING_1 0x16 /* Video setting.1 */
  55. #define HDMI_DEEP_COLOR_MODES 0x17 /* Deep Color Modes */
  56. /* 12 16- and 10-bit Color space conversion parameters: 0x18..0x2f */
  57. #define HDMI_COLOR_SPACE_CONVERSION_PARAMETERS 0x18
  58. #define HDMI_EXTERNAL_VIDEO_PARAM_SETTINGS 0x30 /* External video parameter settings */
  59. #define HDMI_EXTERNAL_H_TOTAL_7_0 0x31 /* External horizontal total (LSB) */
  60. #define HDMI_EXTERNAL_H_TOTAL_11_8 0x32 /* External horizontal total (MSB) */
  61. #define HDMI_EXTERNAL_H_BLANK_7_0 0x33 /* External horizontal blank (LSB) */
  62. #define HDMI_EXTERNAL_H_BLANK_9_8 0x34 /* External horizontal blank (MSB) */
  63. #define HDMI_EXTERNAL_H_DELAY_7_0 0x35 /* External horizontal delay (LSB) */
  64. #define HDMI_EXTERNAL_H_DELAY_9_8 0x36 /* External horizontal delay (MSB) */
  65. #define HDMI_EXTERNAL_H_DURATION_7_0 0x37 /* External horizontal duration (LSB) */
  66. #define HDMI_EXTERNAL_H_DURATION_9_8 0x38 /* External horizontal duration (MSB) */
  67. #define HDMI_EXTERNAL_V_TOTAL_7_0 0x39 /* External vertical total (LSB) */
  68. #define HDMI_EXTERNAL_V_TOTAL_9_8 0x3A /* External vertical total (MSB) */
  69. #define HDMI_AUDIO_VIDEO_SETTING_2 0x3B /* Audio/Video setting.2 */
  70. #define HDMI_EXTERNAL_V_BLANK 0x3D /* External vertical blank */
  71. #define HDMI_EXTERNAL_V_DELAY 0x3E /* External vertical delay */
  72. #define HDMI_EXTERNAL_V_DURATION 0x3F /* External vertical duration */
  73. #define HDMI_CTRL_PKT_MANUAL_SEND_CONTROL 0x40 /* Control packet manual send control */
  74. #define HDMI_CTRL_PKT_AUTO_SEND 0x41 /* Control packet auto send with VSYNC control */
  75. #define HDMI_AUTO_CHECKSUM_OPTION 0x42 /* Auto checksum option */
  76. #define HDMI_VIDEO_SETTING_2 0x45 /* Video setting.2 */
  77. #define HDMI_OUTPUT_OPTION 0x46 /* Output option */
  78. #define HDMI_SLIPHDMIT_PARAM_OPTION 0x51 /* SLIPHDMIT parameter option */
  79. #define HDMI_HSYNC_PMENT_AT_EMB_7_0 0x52 /* HSYNC placement at embedded sync (LSB) */
  80. #define HDMI_HSYNC_PMENT_AT_EMB_15_8 0x53 /* HSYNC placement at embedded sync (MSB) */
  81. #define HDMI_VSYNC_PMENT_AT_EMB_7_0 0x54 /* VSYNC placement at embedded sync (LSB) */
  82. #define HDMI_VSYNC_PMENT_AT_EMB_14_8 0x55 /* VSYNC placement at embedded sync (MSB) */
  83. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_1 0x56 /* SLIPHDMIT parameter settings.1 */
  84. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_2 0x57 /* SLIPHDMIT parameter settings.2 */
  85. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_3 0x58 /* SLIPHDMIT parameter settings.3 */
  86. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_5 0x59 /* SLIPHDMIT parameter settings.5 */
  87. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_6 0x5A /* SLIPHDMIT parameter settings.6 */
  88. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_7 0x5B /* SLIPHDMIT parameter settings.7 */
  89. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_8 0x5C /* SLIPHDMIT parameter settings.8 */
  90. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_9 0x5D /* SLIPHDMIT parameter settings.9 */
  91. #define HDMI_SLIPHDMIT_PARAM_SETTINGS_10 0x5E /* SLIPHDMIT parameter settings.10 */
  92. #define HDMI_CTRL_PKT_BUF_INDEX 0x5F /* Control packet buffer index */
  93. #define HDMI_CTRL_PKT_BUF_ACCESS_HB0 0x60 /* Control packet data buffer access window - HB0 */
  94. #define HDMI_CTRL_PKT_BUF_ACCESS_HB1 0x61 /* Control packet data buffer access window - HB1 */
  95. #define HDMI_CTRL_PKT_BUF_ACCESS_HB2 0x62 /* Control packet data buffer access window - HB2 */
  96. #define HDMI_CTRL_PKT_BUF_ACCESS_PB0 0x63 /* Control packet data buffer access window - PB0 */
  97. #define HDMI_CTRL_PKT_BUF_ACCESS_PB1 0x64 /* Control packet data buffer access window - PB1 */
  98. #define HDMI_CTRL_PKT_BUF_ACCESS_PB2 0x65 /* Control packet data buffer access window - PB2 */
  99. #define HDMI_CTRL_PKT_BUF_ACCESS_PB3 0x66 /* Control packet data buffer access window - PB3 */
  100. #define HDMI_CTRL_PKT_BUF_ACCESS_PB4 0x67 /* Control packet data buffer access window - PB4 */
  101. #define HDMI_CTRL_PKT_BUF_ACCESS_PB5 0x68 /* Control packet data buffer access window - PB5 */
  102. #define HDMI_CTRL_PKT_BUF_ACCESS_PB6 0x69 /* Control packet data buffer access window - PB6 */
  103. #define HDMI_CTRL_PKT_BUF_ACCESS_PB7 0x6A /* Control packet data buffer access window - PB7 */
  104. #define HDMI_CTRL_PKT_BUF_ACCESS_PB8 0x6B /* Control packet data buffer access window - PB8 */
  105. #define HDMI_CTRL_PKT_BUF_ACCESS_PB9 0x6C /* Control packet data buffer access window - PB9 */
  106. #define HDMI_CTRL_PKT_BUF_ACCESS_PB10 0x6D /* Control packet data buffer access window - PB10 */
  107. #define HDMI_CTRL_PKT_BUF_ACCESS_PB11 0x6E /* Control packet data buffer access window - PB11 */
  108. #define HDMI_CTRL_PKT_BUF_ACCESS_PB12 0x6F /* Control packet data buffer access window - PB12 */
  109. #define HDMI_CTRL_PKT_BUF_ACCESS_PB13 0x70 /* Control packet data buffer access window - PB13 */
  110. #define HDMI_CTRL_PKT_BUF_ACCESS_PB14 0x71 /* Control packet data buffer access window - PB14 */
  111. #define HDMI_CTRL_PKT_BUF_ACCESS_PB15 0x72 /* Control packet data buffer access window - PB15 */
  112. #define HDMI_CTRL_PKT_BUF_ACCESS_PB16 0x73 /* Control packet data buffer access window - PB16 */
  113. #define HDMI_CTRL_PKT_BUF_ACCESS_PB17 0x74 /* Control packet data buffer access window - PB17 */
  114. #define HDMI_CTRL_PKT_BUF_ACCESS_PB18 0x75 /* Control packet data buffer access window - PB18 */
  115. #define HDMI_CTRL_PKT_BUF_ACCESS_PB19 0x76 /* Control packet data buffer access window - PB19 */
  116. #define HDMI_CTRL_PKT_BUF_ACCESS_PB20 0x77 /* Control packet data buffer access window - PB20 */
  117. #define HDMI_CTRL_PKT_BUF_ACCESS_PB21 0x78 /* Control packet data buffer access window - PB21 */
  118. #define HDMI_CTRL_PKT_BUF_ACCESS_PB22 0x79 /* Control packet data buffer access window - PB22 */
  119. #define HDMI_CTRL_PKT_BUF_ACCESS_PB23 0x7A /* Control packet data buffer access window - PB23 */
  120. #define HDMI_CTRL_PKT_BUF_ACCESS_PB24 0x7B /* Control packet data buffer access window - PB24 */
  121. #define HDMI_CTRL_PKT_BUF_ACCESS_PB25 0x7C /* Control packet data buffer access window - PB25 */
  122. #define HDMI_CTRL_PKT_BUF_ACCESS_PB26 0x7D /* Control packet data buffer access window - PB26 */
  123. #define HDMI_CTRL_PKT_BUF_ACCESS_PB27 0x7E /* Control packet data buffer access window - PB27 */
  124. #define HDMI_EDID_KSV_FIFO_ACCESS_WINDOW 0x80 /* EDID/KSV FIFO access window */
  125. #define HDMI_DDC_BUS_ACCESS_FREQ_CTRL_7_0 0x81 /* DDC bus access frequency control (LSB) */
  126. #define HDMI_DDC_BUS_ACCESS_FREQ_CTRL_15_8 0x82 /* DDC bus access frequency control (MSB) */
  127. #define HDMI_INTERRUPT_MASK_1 0x92 /* Interrupt mask.1 */
  128. #define HDMI_INTERRUPT_MASK_2 0x93 /* Interrupt mask.2 */
  129. #define HDMI_INTERRUPT_STATUS_1 0x94 /* Interrupt status.1 */
  130. #define HDMI_INTERRUPT_STATUS_2 0x95 /* Interrupt status.2 */
  131. #define HDMI_INTERRUPT_MASK_3 0x96 /* Interrupt mask.3 */
  132. #define HDMI_INTERRUPT_MASK_4 0x97 /* Interrupt mask.4 */
  133. #define HDMI_INTERRUPT_STATUS_3 0x98 /* Interrupt status.3 */
  134. #define HDMI_INTERRUPT_STATUS_4 0x99 /* Interrupt status.4 */
  135. #define HDMI_SOFTWARE_HDCP_CONTROL_1 0x9A /* Software HDCP control.1 */
  136. #define HDMI_FRAME_COUNTER 0x9C /* Frame counter */
  137. #define HDMI_FRAME_COUNTER_FOR_RI_CHECK 0x9D /* Frame counter for Ri check */
  138. #define HDMI_HDCP_CONTROL 0xAF /* HDCP control */
  139. #define HDMI_RI_FRAME_COUNT_REGISTER 0xB2 /* Ri frame count register */
  140. #define HDMI_DDC_BUS_CONTROL 0xB7 /* DDC bus control */
  141. #define HDMI_HDCP_STATUS 0xB8 /* HDCP status */
  142. #define HDMI_SHA0 0xB9 /* sha0 */
  143. #define HDMI_SHA1 0xBA /* sha1 */
  144. #define HDMI_SHA2 0xBB /* sha2 */
  145. #define HDMI_SHA3 0xBC /* sha3 */
  146. #define HDMI_SHA4 0xBD /* sha4 */
  147. #define HDMI_BCAPS_READ 0xBE /* BCAPS read / debug */
  148. #define HDMI_AKSV_BKSV_7_0_MONITOR 0xBF /* AKSV/BKSV[7:0] monitor */
  149. #define HDMI_AKSV_BKSV_15_8_MONITOR 0xC0 /* AKSV/BKSV[15:8] monitor */
  150. #define HDMI_AKSV_BKSV_23_16_MONITOR 0xC1 /* AKSV/BKSV[23:16] monitor */
  151. #define HDMI_AKSV_BKSV_31_24_MONITOR 0xC2 /* AKSV/BKSV[31:24] monitor */
  152. #define HDMI_AKSV_BKSV_39_32_MONITOR 0xC3 /* AKSV/BKSV[39:32] monitor */
  153. #define HDMI_EDID_SEGMENT_POINTER 0xC4 /* EDID segment pointer */
  154. #define HDMI_EDID_WORD_ADDRESS 0xC5 /* EDID word address */
  155. #define HDMI_EDID_DATA_FIFO_ADDRESS 0xC6 /* EDID data FIFO address */
  156. #define HDMI_NUM_OF_HDMI_DEVICES 0xC7 /* Number of HDMI devices */
  157. #define HDMI_HDCP_ERROR_CODE 0xC8 /* HDCP error code */
  158. #define HDMI_100MS_TIMER_SET 0xC9 /* 100ms timer setting */
  159. #define HDMI_5SEC_TIMER_SET 0xCA /* 5sec timer setting */
  160. #define HDMI_RI_READ_COUNT 0xCB /* Ri read count */
  161. #define HDMI_AN_SEED 0xCC /* An seed */
  162. #define HDMI_MAX_NUM_OF_RCIVRS_ALLOWED 0xCD /* Maximum number of receivers allowed */
  163. #define HDMI_HDCP_MEMORY_ACCESS_CONTROL_1 0xCE /* HDCP memory access control.1 */
  164. #define HDMI_HDCP_MEMORY_ACCESS_CONTROL_2 0xCF /* HDCP memory access control.2 */
  165. #define HDMI_HDCP_CONTROL_2 0xD0 /* HDCP Control 2 */
  166. #define HDMI_HDCP_KEY_MEMORY_CONTROL 0xD2 /* HDCP Key Memory Control */
  167. #define HDMI_COLOR_SPACE_CONV_CONFIG_1 0xD3 /* Color space conversion configuration.1 */
  168. #define HDMI_VIDEO_SETTING_3 0xD4 /* Video setting.3 */
  169. #define HDMI_RI_7_0 0xD5 /* Ri[7:0] */
  170. #define HDMI_RI_15_8 0xD6 /* Ri[15:8] */
  171. #define HDMI_PJ 0xD7 /* Pj */
  172. #define HDMI_SHA_RD 0xD8 /* sha_rd */
  173. #define HDMI_RI_7_0_SAVED 0xD9 /* Ri[7:0] saved */
  174. #define HDMI_RI_15_8_SAVED 0xDA /* Ri[15:8] saved */
  175. #define HDMI_PJ_SAVED 0xDB /* Pj saved */
  176. #define HDMI_NUM_OF_DEVICES 0xDC /* Number of devices */
  177. #define HDMI_HOT_PLUG_MSENS_STATUS 0xDF /* Hot plug/MSENS status */
  178. #define HDMI_BCAPS_WRITE 0xE0 /* bcaps */
  179. #define HDMI_BSTAT_7_0 0xE1 /* bstat[7:0] */
  180. #define HDMI_BSTAT_15_8 0xE2 /* bstat[15:8] */
  181. #define HDMI_BKSV_7_0 0xE3 /* bksv[7:0] */
  182. #define HDMI_BKSV_15_8 0xE4 /* bksv[15:8] */
  183. #define HDMI_BKSV_23_16 0xE5 /* bksv[23:16] */
  184. #define HDMI_BKSV_31_24 0xE6 /* bksv[31:24] */
  185. #define HDMI_BKSV_39_32 0xE7 /* bksv[39:32] */
  186. #define HDMI_AN_7_0 0xE8 /* An[7:0] */
  187. #define HDMI_AN_15_8 0xE9 /* An [15:8] */
  188. #define HDMI_AN_23_16 0xEA /* An [23:16] */
  189. #define HDMI_AN_31_24 0xEB /* An [31:24] */
  190. #define HDMI_AN_39_32 0xEC /* An [39:32] */
  191. #define HDMI_AN_47_40 0xED /* An [47:40] */
  192. #define HDMI_AN_55_48 0xEE /* An [55:48] */
  193. #define HDMI_AN_63_56 0xEF /* An [63:56] */
  194. #define HDMI_PRODUCT_ID 0xF0 /* Product ID */
  195. #define HDMI_REVISION_ID 0xF1 /* Revision ID */
  196. #define HDMI_TEST_MODE 0xFE /* Test mode */
  197. enum hotplug_state {
  198. HDMI_HOTPLUG_DISCONNECTED,
  199. HDMI_HOTPLUG_CONNECTED,
  200. HDMI_HOTPLUG_EDID_DONE,
  201. };
  202. struct sh_hdmi {
  203. void __iomem *base;
  204. enum hotplug_state hp_state; /* hot-plug status */
  205. u8 preprogrammed_vic; /* use a pre-programmed VIC or
  206. the external mode */
  207. u8 edid_block_addr;
  208. u8 edid_segment_nr;
  209. u8 edid_blocks;
  210. struct clk *hdmi_clk;
  211. struct device *dev;
  212. struct fb_info *info;
  213. struct mutex mutex; /* Protect the info pointer */
  214. struct delayed_work edid_work;
  215. struct fb_var_screeninfo var;
  216. struct fb_monspecs monspec;
  217. struct notifier_block notifier;
  218. };
  219. static void hdmi_write(struct sh_hdmi *hdmi, u8 data, u8 reg)
  220. {
  221. iowrite8(data, hdmi->base + reg);
  222. }
  223. static u8 hdmi_read(struct sh_hdmi *hdmi, u8 reg)
  224. {
  225. return ioread8(hdmi->base + reg);
  226. }
  227. /*
  228. * HDMI sound
  229. */
  230. static unsigned int sh_hdmi_snd_read(struct snd_soc_codec *codec,
  231. unsigned int reg)
  232. {
  233. struct sh_hdmi *hdmi = snd_soc_codec_get_drvdata(codec);
  234. return hdmi_read(hdmi, reg);
  235. }
  236. static int sh_hdmi_snd_write(struct snd_soc_codec *codec,
  237. unsigned int reg,
  238. unsigned int value)
  239. {
  240. struct sh_hdmi *hdmi = snd_soc_codec_get_drvdata(codec);
  241. hdmi_write(hdmi, value, reg);
  242. return 0;
  243. }
  244. static struct snd_soc_dai_driver sh_hdmi_dai = {
  245. .name = "sh_mobile_hdmi-hifi",
  246. .playback = {
  247. .stream_name = "Playback",
  248. .channels_min = 2,
  249. .channels_max = 8,
  250. .rates = SNDRV_PCM_RATE_32000 | SNDRV_PCM_RATE_44100 |
  251. SNDRV_PCM_RATE_48000 | SNDRV_PCM_RATE_88200 |
  252. SNDRV_PCM_RATE_96000 | SNDRV_PCM_RATE_176400 |
  253. SNDRV_PCM_RATE_192000,
  254. .formats = SNDRV_PCM_FMTBIT_S16_LE | SNDRV_PCM_FMTBIT_S24_LE,
  255. },
  256. };
  257. static int sh_hdmi_snd_probe(struct snd_soc_codec *codec)
  258. {
  259. dev_info(codec->dev, "SH Mobile HDMI Audio Codec");
  260. return 0;
  261. }
  262. static struct snd_soc_codec_driver soc_codec_dev_sh_hdmi = {
  263. .probe = sh_hdmi_snd_probe,
  264. .read = sh_hdmi_snd_read,
  265. .write = sh_hdmi_snd_write,
  266. };
  267. /*
  268. * HDMI video
  269. */
  270. /* External video parameter settings */
  271. static void sh_hdmi_external_video_param(struct sh_hdmi *hdmi)
  272. {
  273. struct fb_var_screeninfo *var = &hdmi->var;
  274. u16 htotal, hblank, hdelay, vtotal, vblank, vdelay, voffset;
  275. u8 sync = 0;
  276. htotal = var->xres + var->right_margin + var->left_margin + var->hsync_len;
  277. hdelay = var->hsync_len + var->left_margin;
  278. hblank = var->right_margin + hdelay;
  279. /*
  280. * Vertical timing looks a bit different in Figure 18,
  281. * but let's try the same first by setting offset = 0
  282. */
  283. vtotal = var->yres + var->upper_margin + var->lower_margin + var->vsync_len;
  284. vdelay = var->vsync_len + var->upper_margin;
  285. vblank = var->lower_margin + vdelay;
  286. voffset = min(var->upper_margin / 2, 6U);
  287. /*
  288. * [3]: VSYNC polarity: Positive
  289. * [2]: HSYNC polarity: Positive
  290. * [1]: Interlace/Progressive: Progressive
  291. * [0]: External video settings enable: used.
  292. */
  293. if (var->sync & FB_SYNC_HOR_HIGH_ACT)
  294. sync |= 4;
  295. if (var->sync & FB_SYNC_VERT_HIGH_ACT)
  296. sync |= 8;
  297. dev_dbg(hdmi->dev, "H: %u, %u, %u, %u; V: %u, %u, %u, %u; sync 0x%x\n",
  298. htotal, hblank, hdelay, var->hsync_len,
  299. vtotal, vblank, vdelay, var->vsync_len, sync);
  300. hdmi_write(hdmi, sync | (voffset << 4), HDMI_EXTERNAL_VIDEO_PARAM_SETTINGS);
  301. hdmi_write(hdmi, htotal, HDMI_EXTERNAL_H_TOTAL_7_0);
  302. hdmi_write(hdmi, htotal >> 8, HDMI_EXTERNAL_H_TOTAL_11_8);
  303. hdmi_write(hdmi, hblank, HDMI_EXTERNAL_H_BLANK_7_0);
  304. hdmi_write(hdmi, hblank >> 8, HDMI_EXTERNAL_H_BLANK_9_8);
  305. hdmi_write(hdmi, hdelay, HDMI_EXTERNAL_H_DELAY_7_0);
  306. hdmi_write(hdmi, hdelay >> 8, HDMI_EXTERNAL_H_DELAY_9_8);
  307. hdmi_write(hdmi, var->hsync_len, HDMI_EXTERNAL_H_DURATION_7_0);
  308. hdmi_write(hdmi, var->hsync_len >> 8, HDMI_EXTERNAL_H_DURATION_9_8);
  309. hdmi_write(hdmi, vtotal, HDMI_EXTERNAL_V_TOTAL_7_0);
  310. hdmi_write(hdmi, vtotal >> 8, HDMI_EXTERNAL_V_TOTAL_9_8);
  311. hdmi_write(hdmi, vblank, HDMI_EXTERNAL_V_BLANK);
  312. hdmi_write(hdmi, vdelay, HDMI_EXTERNAL_V_DELAY);
  313. hdmi_write(hdmi, var->vsync_len, HDMI_EXTERNAL_V_DURATION);
  314. /* Set bit 0 of HDMI_EXTERNAL_VIDEO_PARAM_SETTINGS here for external mode */
  315. if (!hdmi->preprogrammed_vic)
  316. hdmi_write(hdmi, sync | 1 | (voffset << 4),
  317. HDMI_EXTERNAL_VIDEO_PARAM_SETTINGS);
  318. }
  319. /**
  320. * sh_hdmi_video_config()
  321. */
  322. static void sh_hdmi_video_config(struct sh_hdmi *hdmi)
  323. {
  324. /*
  325. * [7:4]: Audio sampling frequency: 48kHz
  326. * [3:1]: Input video format: RGB and YCbCr 4:4:4 (Y on Green)
  327. * [0]: Internal/External DE select: internal
  328. */
  329. hdmi_write(hdmi, 0x20, HDMI_AUDIO_VIDEO_SETTING_1);
  330. /*
  331. * [7:6]: Video output format: RGB 4:4:4
  332. * [5:4]: Input video data width: 8 bit
  333. * [3:1]: EAV/SAV location: channel 1
  334. * [0]: Video input color space: RGB
  335. */
  336. hdmi_write(hdmi, 0x34, HDMI_VIDEO_SETTING_1);
  337. /*
  338. * [7:6]: Together with bit [6] of HDMI_AUDIO_VIDEO_SETTING_2, which is
  339. * left at 0 by default, this configures 24bpp and sets the Color Depth
  340. * (CD) field in the General Control Packet
  341. */
  342. hdmi_write(hdmi, 0x20, HDMI_DEEP_COLOR_MODES);
  343. }
  344. /**
  345. * sh_hdmi_audio_config()
  346. */
  347. static void sh_hdmi_audio_config(struct sh_hdmi *hdmi)
  348. {
  349. u8 data;
  350. struct sh_mobile_hdmi_info *pdata = hdmi->dev->platform_data;
  351. /*
  352. * [7:4] L/R data swap control
  353. * [3:0] appropriate N[19:16]
  354. */
  355. hdmi_write(hdmi, 0x00, HDMI_L_R_DATA_SWAP_CTRL_RPKT);
  356. /* appropriate N[15:8] */
  357. hdmi_write(hdmi, 0x18, HDMI_20_BIT_N_FOR_AUDIO_RPKT_15_8);
  358. /* appropriate N[7:0] */
  359. hdmi_write(hdmi, 0x00, HDMI_20_BIT_N_FOR_AUDIO_RPKT_7_0);
  360. /* [7:4] 48 kHz SPDIF not used */
  361. hdmi_write(hdmi, 0x20, HDMI_SPDIF_AUDIO_SAMP_FREQ_CTS);
  362. /*
  363. * [6:5] set required down sampling rate if required
  364. * [4:3] set required audio source
  365. */
  366. switch (pdata->flags & HDMI_SND_SRC_MASK) {
  367. default:
  368. /* fall through */
  369. case HDMI_SND_SRC_I2S:
  370. data = 0x0 << 3;
  371. break;
  372. case HDMI_SND_SRC_SPDIF:
  373. data = 0x1 << 3;
  374. break;
  375. case HDMI_SND_SRC_DSD:
  376. data = 0x2 << 3;
  377. break;
  378. case HDMI_SND_SRC_HBR:
  379. data = 0x3 << 3;
  380. break;
  381. }
  382. hdmi_write(hdmi, data, HDMI_AUDIO_SETTING_1);
  383. /* [3:0] set sending channel number for channel status */
  384. hdmi_write(hdmi, 0x40, HDMI_AUDIO_SETTING_2);
  385. /*
  386. * [5:2] set valid I2S source input pin
  387. * [1:0] set input I2S source mode
  388. */
  389. hdmi_write(hdmi, 0x04, HDMI_I2S_AUDIO_SET);
  390. /* [7:4] set valid DSD source input pin */
  391. hdmi_write(hdmi, 0x00, HDMI_DSD_AUDIO_SET);
  392. /* [7:0] set appropriate I2S input pin swap settings if required */
  393. hdmi_write(hdmi, 0x00, HDMI_I2S_INPUT_PIN_SWAP);
  394. /*
  395. * [7] set validity bit for channel status
  396. * [3:0] set original sample frequency for channel status
  397. */
  398. hdmi_write(hdmi, 0x00, HDMI_AUDIO_STATUS_BITS_SETTING_1);
  399. /*
  400. * [7] set value for channel status
  401. * [6] set value for channel status
  402. * [5] set copyright bit for channel status
  403. * [4:2] set additional information for channel status
  404. * [1:0] set clock accuracy for channel status
  405. */
  406. hdmi_write(hdmi, 0x00, HDMI_AUDIO_STATUS_BITS_SETTING_2);
  407. /* [7:0] set category code for channel status */
  408. hdmi_write(hdmi, 0x00, HDMI_CATEGORY_CODE);
  409. /*
  410. * [7:4] set source number for channel status
  411. * [3:0] set word length for channel status
  412. */
  413. hdmi_write(hdmi, 0x00, HDMI_SOURCE_NUM_AUDIO_WORD_LEN);
  414. /* [7:4] set sample frequency for channel status */
  415. hdmi_write(hdmi, 0x20, HDMI_AUDIO_VIDEO_SETTING_1);
  416. }
  417. /**
  418. * sh_hdmi_phy_config() - configure the HDMI PHY for the used video mode
  419. */
  420. static void sh_hdmi_phy_config(struct sh_hdmi *hdmi)
  421. {
  422. if (hdmi->var.pixclock < 10000) {
  423. /* for 1080p8bit 148MHz */
  424. hdmi_write(hdmi, 0x1d, HDMI_SLIPHDMIT_PARAM_SETTINGS_1);
  425. hdmi_write(hdmi, 0x00, HDMI_SLIPHDMIT_PARAM_SETTINGS_2);
  426. hdmi_write(hdmi, 0x00, HDMI_SLIPHDMIT_PARAM_SETTINGS_3);
  427. hdmi_write(hdmi, 0x4c, HDMI_SLIPHDMIT_PARAM_SETTINGS_5);
  428. hdmi_write(hdmi, 0x1e, HDMI_SLIPHDMIT_PARAM_SETTINGS_6);
  429. hdmi_write(hdmi, 0x48, HDMI_SLIPHDMIT_PARAM_SETTINGS_7);
  430. hdmi_write(hdmi, 0x0e, HDMI_SLIPHDMIT_PARAM_SETTINGS_8);
  431. hdmi_write(hdmi, 0x25, HDMI_SLIPHDMIT_PARAM_SETTINGS_9);
  432. hdmi_write(hdmi, 0x04, HDMI_SLIPHDMIT_PARAM_SETTINGS_10);
  433. } else if (hdmi->var.pixclock < 30000) {
  434. /* 720p, 8bit, 74.25MHz. Might need to be adjusted for other formats */
  435. /*
  436. * [1:0] Speed_A
  437. * [3:2] Speed_B
  438. * [4] PLLA_Bypass
  439. * [6] DRV_TEST_EN
  440. * [7] DRV_TEST_IN
  441. */
  442. hdmi_write(hdmi, 0x0f, HDMI_SLIPHDMIT_PARAM_SETTINGS_1);
  443. /* PLLB_CONFIG[17], PLLA_CONFIG[17] - not in PHY datasheet */
  444. hdmi_write(hdmi, 0x00, HDMI_SLIPHDMIT_PARAM_SETTINGS_2);
  445. /*
  446. * [2:0] BGR_I_OFFSET
  447. * [6:4] BGR_V_OFFSET
  448. */
  449. hdmi_write(hdmi, 0x00, HDMI_SLIPHDMIT_PARAM_SETTINGS_3);
  450. /* PLLA_CONFIG[7:0]: VCO gain, VCO offset, LPF resistance[0] */
  451. hdmi_write(hdmi, 0x44, HDMI_SLIPHDMIT_PARAM_SETTINGS_5);
  452. /*
  453. * PLLA_CONFIG[15:8]: regulator voltage[0], CP current,
  454. * LPF capacitance, LPF resistance[1]
  455. */
  456. hdmi_write(hdmi, 0x32, HDMI_SLIPHDMIT_PARAM_SETTINGS_6);
  457. /* PLLB_CONFIG[7:0]: LPF resistance[0], VCO offset, VCO gain */
  458. hdmi_write(hdmi, 0x4A, HDMI_SLIPHDMIT_PARAM_SETTINGS_7);
  459. /*
  460. * PLLB_CONFIG[15:8]: regulator voltage[0], CP current,
  461. * LPF capacitance, LPF resistance[1]
  462. */
  463. hdmi_write(hdmi, 0x00, HDMI_SLIPHDMIT_PARAM_SETTINGS_8);
  464. /* DRV_CONFIG, PE_CONFIG */
  465. hdmi_write(hdmi, 0x25, HDMI_SLIPHDMIT_PARAM_SETTINGS_9);
  466. /*
  467. * [2:0] AMON_SEL (4 == LPF voltage)
  468. * [4] PLLA_CONFIG[16]
  469. * [5] PLLB_CONFIG[16]
  470. */
  471. hdmi_write(hdmi, 0x04, HDMI_SLIPHDMIT_PARAM_SETTINGS_10);
  472. } else {
  473. /* for 480p8bit 27MHz */
  474. hdmi_write(hdmi, 0x19, HDMI_SLIPHDMIT_PARAM_SETTINGS_1);
  475. hdmi_write(hdmi, 0x00, HDMI_SLIPHDMIT_PARAM_SETTINGS_2);
  476. hdmi_write(hdmi, 0x00, HDMI_SLIPHDMIT_PARAM_SETTINGS_3);
  477. hdmi_write(hdmi, 0x44, HDMI_SLIPHDMIT_PARAM_SETTINGS_5);
  478. hdmi_write(hdmi, 0x32, HDMI_SLIPHDMIT_PARAM_SETTINGS_6);
  479. hdmi_write(hdmi, 0x48, HDMI_SLIPHDMIT_PARAM_SETTINGS_7);
  480. hdmi_write(hdmi, 0x0F, HDMI_SLIPHDMIT_PARAM_SETTINGS_8);
  481. hdmi_write(hdmi, 0x20, HDMI_SLIPHDMIT_PARAM_SETTINGS_9);
  482. hdmi_write(hdmi, 0x04, HDMI_SLIPHDMIT_PARAM_SETTINGS_10);
  483. }
  484. }
  485. /**
  486. * sh_hdmi_avi_infoframe_setup() - Auxiliary Video Information InfoFrame CONTROL PACKET
  487. */
  488. static void sh_hdmi_avi_infoframe_setup(struct sh_hdmi *hdmi)
  489. {
  490. u8 vic;
  491. /* AVI InfoFrame */
  492. hdmi_write(hdmi, 0x06, HDMI_CTRL_PKT_BUF_INDEX);
  493. /* Packet Type = 0x82 */
  494. hdmi_write(hdmi, 0x82, HDMI_CTRL_PKT_BUF_ACCESS_HB0);
  495. /* Version = 0x02 */
  496. hdmi_write(hdmi, 0x02, HDMI_CTRL_PKT_BUF_ACCESS_HB1);
  497. /* Length = 13 (0x0D) */
  498. hdmi_write(hdmi, 0x0D, HDMI_CTRL_PKT_BUF_ACCESS_HB2);
  499. /* N. A. Checksum */
  500. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB0);
  501. /*
  502. * Y = RGB
  503. * A0 = No Data
  504. * B = Bar Data not valid
  505. * S = No Data
  506. */
  507. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB1);
  508. /*
  509. * [7:6] C = Colorimetry: no data
  510. * [5:4] M = 2: 16:9, 1: 4:3 Picture Aspect Ratio
  511. * [3:0] R = 8: Active Frame Aspect Ratio: same as picture aspect ratio
  512. */
  513. hdmi_write(hdmi, 0x28, HDMI_CTRL_PKT_BUF_ACCESS_PB2);
  514. /*
  515. * ITC = No Data
  516. * EC = xvYCC601
  517. * Q = Default (depends on video format)
  518. * SC = No Known non_uniform Scaling
  519. */
  520. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB3);
  521. /*
  522. * VIC should be ignored if external config is used, so, we could just use 0,
  523. * but play safe and use a valid value in any case just in case
  524. */
  525. if (hdmi->preprogrammed_vic)
  526. vic = hdmi->preprogrammed_vic;
  527. else
  528. vic = 4;
  529. hdmi_write(hdmi, vic, HDMI_CTRL_PKT_BUF_ACCESS_PB4);
  530. /* PR = No Repetition */
  531. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB5);
  532. /* Line Number of End of Top Bar (lower 8 bits) */
  533. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB6);
  534. /* Line Number of End of Top Bar (upper 8 bits) */
  535. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB7);
  536. /* Line Number of Start of Bottom Bar (lower 8 bits) */
  537. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB8);
  538. /* Line Number of Start of Bottom Bar (upper 8 bits) */
  539. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB9);
  540. /* Pixel Number of End of Left Bar (lower 8 bits) */
  541. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB10);
  542. /* Pixel Number of End of Left Bar (upper 8 bits) */
  543. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB11);
  544. /* Pixel Number of Start of Right Bar (lower 8 bits) */
  545. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB12);
  546. /* Pixel Number of Start of Right Bar (upper 8 bits) */
  547. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB13);
  548. }
  549. /**
  550. * sh_hdmi_audio_infoframe_setup() - Audio InfoFrame of CONTROL PACKET
  551. */
  552. static void sh_hdmi_audio_infoframe_setup(struct sh_hdmi *hdmi)
  553. {
  554. /* Audio InfoFrame */
  555. hdmi_write(hdmi, 0x08, HDMI_CTRL_PKT_BUF_INDEX);
  556. /* Packet Type = 0x84 */
  557. hdmi_write(hdmi, 0x84, HDMI_CTRL_PKT_BUF_ACCESS_HB0);
  558. /* Version Number = 0x01 */
  559. hdmi_write(hdmi, 0x01, HDMI_CTRL_PKT_BUF_ACCESS_HB1);
  560. /* 0 Length = 10 (0x0A) */
  561. hdmi_write(hdmi, 0x0A, HDMI_CTRL_PKT_BUF_ACCESS_HB2);
  562. /* n. a. Checksum */
  563. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB0);
  564. /* Audio Channel Count = Refer to Stream Header */
  565. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB1);
  566. /* Refer to Stream Header */
  567. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB2);
  568. /* Format depends on coding type (i.e. CT0...CT3) */
  569. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB3);
  570. /* Speaker Channel Allocation = Front Right + Front Left */
  571. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB4);
  572. /* Level Shift Value = 0 dB, Down - mix is permitted or no information */
  573. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB5);
  574. /* Reserved (0) */
  575. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB6);
  576. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB7);
  577. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB8);
  578. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB9);
  579. hdmi_write(hdmi, 0x00, HDMI_CTRL_PKT_BUF_ACCESS_PB10);
  580. }
  581. /**
  582. * sh_hdmi_configure() - Initialise HDMI for output
  583. */
  584. static void sh_hdmi_configure(struct sh_hdmi *hdmi)
  585. {
  586. /* Configure video format */
  587. sh_hdmi_video_config(hdmi);
  588. /* Configure audio format */
  589. sh_hdmi_audio_config(hdmi);
  590. /* Configure PHY */
  591. sh_hdmi_phy_config(hdmi);
  592. /* Auxiliary Video Information (AVI) InfoFrame */
  593. sh_hdmi_avi_infoframe_setup(hdmi);
  594. /* Audio InfoFrame */
  595. sh_hdmi_audio_infoframe_setup(hdmi);
  596. /*
  597. * Control packet auto send with VSYNC control: auto send
  598. * General control, Gamut metadata, ISRC, and ACP packets
  599. */
  600. hdmi_write(hdmi, 0x8E, HDMI_CTRL_PKT_AUTO_SEND);
  601. /* FIXME */
  602. msleep(10);
  603. /* PS mode b->d, reset PLLA and PLLB */
  604. hdmi_write(hdmi, 0x4C, HDMI_SYSTEM_CTRL);
  605. udelay(10);
  606. hdmi_write(hdmi, 0x40, HDMI_SYSTEM_CTRL);
  607. }
  608. static unsigned long sh_hdmi_rate_error(struct sh_hdmi *hdmi,
  609. const struct fb_videomode *mode,
  610. unsigned long *hdmi_rate, unsigned long *parent_rate)
  611. {
  612. unsigned long target = PICOS2KHZ(mode->pixclock) * 1000, rate_error;
  613. struct sh_mobile_hdmi_info *pdata = hdmi->dev->platform_data;
  614. *hdmi_rate = clk_round_rate(hdmi->hdmi_clk, target);
  615. if ((long)*hdmi_rate < 0)
  616. *hdmi_rate = clk_get_rate(hdmi->hdmi_clk);
  617. rate_error = (long)*hdmi_rate > 0 ? abs(*hdmi_rate - target) : ULONG_MAX;
  618. if (rate_error && pdata->clk_optimize_parent)
  619. rate_error = pdata->clk_optimize_parent(target, hdmi_rate, parent_rate);
  620. else if (clk_get_parent(hdmi->hdmi_clk))
  621. *parent_rate = clk_get_rate(clk_get_parent(hdmi->hdmi_clk));
  622. dev_dbg(hdmi->dev, "%u-%u-%u-%u x %u-%u-%u-%u\n",
  623. mode->left_margin, mode->xres,
  624. mode->right_margin, mode->hsync_len,
  625. mode->upper_margin, mode->yres,
  626. mode->lower_margin, mode->vsync_len);
  627. dev_dbg(hdmi->dev, "\t@%lu(+/-%lu)Hz, e=%lu / 1000, r=%uHz, p=%luHz\n", target,
  628. rate_error, rate_error ? 10000 / (10 * target / rate_error) : 0,
  629. mode->refresh, *parent_rate);
  630. return rate_error;
  631. }
  632. static int sh_hdmi_read_edid(struct sh_hdmi *hdmi, unsigned long *hdmi_rate,
  633. unsigned long *parent_rate)
  634. {
  635. struct fb_var_screeninfo tmpvar;
  636. struct fb_var_screeninfo *var = &tmpvar;
  637. const struct fb_videomode *mode, *found = NULL;
  638. struct fb_info *info = hdmi->info;
  639. struct fb_modelist *modelist = NULL;
  640. unsigned int f_width = 0, f_height = 0, f_refresh = 0;
  641. unsigned long found_rate_error = ULONG_MAX; /* silly compiler... */
  642. bool scanning = false, preferred_bad = false;
  643. u8 edid[128];
  644. char *forced;
  645. int i;
  646. /* Read EDID */
  647. dev_dbg(hdmi->dev, "Read back EDID code:");
  648. for (i = 0; i < 128; i++) {
  649. edid[i] = hdmi_read(hdmi, HDMI_EDID_KSV_FIFO_ACCESS_WINDOW);
  650. #ifdef DEBUG
  651. if ((i % 16) == 0) {
  652. printk(KERN_CONT "\n");
  653. printk(KERN_DEBUG "%02X | %02X", i, edid[i]);
  654. } else {
  655. printk(KERN_CONT " %02X", edid[i]);
  656. }
  657. #endif
  658. }
  659. #ifdef DEBUG
  660. printk(KERN_CONT "\n");
  661. #endif
  662. if (!hdmi->edid_blocks) {
  663. fb_edid_to_monspecs(edid, &hdmi->monspec);
  664. hdmi->edid_blocks = edid[126] + 1;
  665. dev_dbg(hdmi->dev, "%d main modes, %d extension blocks\n",
  666. hdmi->monspec.modedb_len, hdmi->edid_blocks - 1);
  667. } else {
  668. dev_dbg(hdmi->dev, "Extension %u detected, DTD start %u\n",
  669. edid[0], edid[2]);
  670. fb_edid_add_monspecs(edid, &hdmi->monspec);
  671. }
  672. if (hdmi->edid_blocks > hdmi->edid_segment_nr * 2 +
  673. (hdmi->edid_block_addr >> 7) + 1) {
  674. /* More blocks to read */
  675. if (hdmi->edid_block_addr) {
  676. hdmi->edid_block_addr = 0;
  677. hdmi->edid_segment_nr++;
  678. } else {
  679. hdmi->edid_block_addr = 0x80;
  680. }
  681. /* Set EDID word address */
  682. hdmi_write(hdmi, hdmi->edid_block_addr, HDMI_EDID_WORD_ADDRESS);
  683. /* Enable EDID interrupt */
  684. hdmi_write(hdmi, 0xC6, HDMI_INTERRUPT_MASK_1);
  685. /* Set EDID segment pointer - starts reading EDID */
  686. hdmi_write(hdmi, hdmi->edid_segment_nr, HDMI_EDID_SEGMENT_POINTER);
  687. return -EAGAIN;
  688. }
  689. /* All E-EDID blocks ready */
  690. dev_dbg(hdmi->dev, "%d main and extended modes\n", hdmi->monspec.modedb_len);
  691. fb_get_options("sh_mobile_lcdc", &forced);
  692. if (forced && *forced) {
  693. /* Only primitive parsing so far */
  694. i = sscanf(forced, "%ux%u@%u",
  695. &f_width, &f_height, &f_refresh);
  696. if (i < 2) {
  697. f_width = 0;
  698. f_height = 0;
  699. } else {
  700. /* The user wants us to use the EDID data */
  701. scanning = true;
  702. }
  703. dev_dbg(hdmi->dev, "Forced mode %ux%u@%uHz\n",
  704. f_width, f_height, f_refresh);
  705. }
  706. /* Walk monitor modes to find the best or the exact match */
  707. for (i = 0, mode = hdmi->monspec.modedb;
  708. i < hdmi->monspec.modedb_len && scanning;
  709. i++, mode++) {
  710. unsigned long rate_error;
  711. if (!f_width && !f_height) {
  712. /*
  713. * A parameter string "video=sh_mobile_lcdc:0x0" means
  714. * use the preferred EDID mode. If it is rejected by
  715. * .fb_check_var(), keep looking, until an acceptable
  716. * one is found.
  717. */
  718. if ((mode->flag & FB_MODE_IS_FIRST) || preferred_bad)
  719. scanning = false;
  720. else
  721. continue;
  722. } else if (f_width != mode->xres || f_height != mode->yres) {
  723. /* No interest in unmatching modes */
  724. continue;
  725. }
  726. rate_error = sh_hdmi_rate_error(hdmi, mode, hdmi_rate, parent_rate);
  727. if (scanning) {
  728. if (f_refresh == mode->refresh || (!f_refresh && !rate_error))
  729. /*
  730. * Exact match if either the refresh rate
  731. * matches or it hasn't been specified and we've
  732. * found a mode, for which we can configure the
  733. * clock precisely
  734. */
  735. scanning = false;
  736. else if (found && found_rate_error <= rate_error)
  737. /*
  738. * We otherwise search for the closest matching
  739. * clock rate - either if no refresh rate has
  740. * been specified or we cannot find an exactly
  741. * matching one
  742. */
  743. continue;
  744. }
  745. /* Check if supported: sufficient fb memory, supported clock-rate */
  746. fb_videomode_to_var(var, mode);
  747. var->bits_per_pixel = info->var.bits_per_pixel;
  748. if (info && info->fbops->fb_check_var &&
  749. info->fbops->fb_check_var(var, info)) {
  750. scanning = true;
  751. preferred_bad = true;
  752. continue;
  753. }
  754. found = mode;
  755. found_rate_error = rate_error;
  756. }
  757. hdmi->var.width = hdmi->monspec.max_x * 10;
  758. hdmi->var.height = hdmi->monspec.max_y * 10;
  759. /*
  760. * TODO 1: if no ->info is present, postpone running the config until
  761. * after ->info first gets registered.
  762. * TODO 2: consider registering the HDMI platform device from the LCDC
  763. * driver, and passing ->info with HDMI platform data.
  764. */
  765. if (info && !found) {
  766. modelist = info->modelist.next &&
  767. !list_empty(&info->modelist) ?
  768. list_entry(info->modelist.next,
  769. struct fb_modelist, list) :
  770. NULL;
  771. if (modelist) {
  772. found = &modelist->mode;
  773. found_rate_error = sh_hdmi_rate_error(hdmi, found, hdmi_rate, parent_rate);
  774. }
  775. }
  776. /* No cookie today */
  777. if (!found)
  778. return -ENXIO;
  779. if (found->xres == 640 && found->yres == 480 && found->refresh == 60)
  780. hdmi->preprogrammed_vic = 1;
  781. else if (found->xres == 720 && found->yres == 480 && found->refresh == 60)
  782. hdmi->preprogrammed_vic = 2;
  783. else if (found->xres == 720 && found->yres == 576 && found->refresh == 50)
  784. hdmi->preprogrammed_vic = 17;
  785. else if (found->xres == 1280 && found->yres == 720 && found->refresh == 60)
  786. hdmi->preprogrammed_vic = 4;
  787. else if (found->xres == 1920 && found->yres == 1080 && found->refresh == 24)
  788. hdmi->preprogrammed_vic = 32;
  789. else if (found->xres == 1920 && found->yres == 1080 && found->refresh == 50)
  790. hdmi->preprogrammed_vic = 31;
  791. else if (found->xres == 1920 && found->yres == 1080 && found->refresh == 60)
  792. hdmi->preprogrammed_vic = 16;
  793. else
  794. hdmi->preprogrammed_vic = 0;
  795. dev_dbg(hdmi->dev, "Using %s %s mode %ux%u@%uHz (%luHz), clock error %luHz\n",
  796. modelist ? "default" : "EDID", hdmi->preprogrammed_vic ? "VIC" : "external",
  797. found->xres, found->yres, found->refresh,
  798. PICOS2KHZ(found->pixclock) * 1000, found_rate_error);
  799. fb_videomode_to_var(&hdmi->var, found);
  800. sh_hdmi_external_video_param(hdmi);
  801. return 0;
  802. }
  803. static irqreturn_t sh_hdmi_hotplug(int irq, void *dev_id)
  804. {
  805. struct sh_hdmi *hdmi = dev_id;
  806. u8 status1, status2, mask1, mask2;
  807. /* mode_b and PLLA and PLLB reset */
  808. hdmi_write(hdmi, 0x2C, HDMI_SYSTEM_CTRL);
  809. /* How long shall reset be held? */
  810. udelay(10);
  811. /* mode_b and PLLA and PLLB reset release */
  812. hdmi_write(hdmi, 0x20, HDMI_SYSTEM_CTRL);
  813. status1 = hdmi_read(hdmi, HDMI_INTERRUPT_STATUS_1);
  814. status2 = hdmi_read(hdmi, HDMI_INTERRUPT_STATUS_2);
  815. mask1 = hdmi_read(hdmi, HDMI_INTERRUPT_MASK_1);
  816. mask2 = hdmi_read(hdmi, HDMI_INTERRUPT_MASK_2);
  817. /* Correct would be to ack only set bits, but the datasheet requires 0xff */
  818. hdmi_write(hdmi, 0xFF, HDMI_INTERRUPT_STATUS_1);
  819. hdmi_write(hdmi, 0xFF, HDMI_INTERRUPT_STATUS_2);
  820. if (printk_ratelimit())
  821. dev_dbg(hdmi->dev, "IRQ #%d: Status #1: 0x%x & 0x%x, #2: 0x%x & 0x%x\n",
  822. irq, status1, mask1, status2, mask2);
  823. if (!((status1 & mask1) | (status2 & mask2))) {
  824. return IRQ_NONE;
  825. } else if (status1 & 0xc0) {
  826. u8 msens;
  827. /* Datasheet specifies 10ms... */
  828. udelay(500);
  829. msens = hdmi_read(hdmi, HDMI_HOT_PLUG_MSENS_STATUS);
  830. dev_dbg(hdmi->dev, "MSENS 0x%x\n", msens);
  831. /* Check, if hot plug & MSENS pin status are both high */
  832. if ((msens & 0xC0) == 0xC0) {
  833. /* Display plug in */
  834. hdmi->edid_segment_nr = 0;
  835. hdmi->edid_block_addr = 0;
  836. hdmi->edid_blocks = 0;
  837. hdmi->hp_state = HDMI_HOTPLUG_CONNECTED;
  838. /* Set EDID word address */
  839. hdmi_write(hdmi, 0x00, HDMI_EDID_WORD_ADDRESS);
  840. /* Enable EDID interrupt */
  841. hdmi_write(hdmi, 0xC6, HDMI_INTERRUPT_MASK_1);
  842. /* Set EDID segment pointer - starts reading EDID */
  843. hdmi_write(hdmi, 0x00, HDMI_EDID_SEGMENT_POINTER);
  844. } else if (!(status1 & 0x80)) {
  845. /* Display unplug, beware multiple interrupts */
  846. if (hdmi->hp_state != HDMI_HOTPLUG_DISCONNECTED) {
  847. hdmi->hp_state = HDMI_HOTPLUG_DISCONNECTED;
  848. schedule_delayed_work(&hdmi->edid_work, 0);
  849. }
  850. /* display_off will switch back to mode_a */
  851. }
  852. } else if (status1 & 2) {
  853. /* EDID error interrupt: retry */
  854. /* Set EDID word address */
  855. hdmi_write(hdmi, hdmi->edid_block_addr, HDMI_EDID_WORD_ADDRESS);
  856. /* Set EDID segment pointer */
  857. hdmi_write(hdmi, hdmi->edid_segment_nr, HDMI_EDID_SEGMENT_POINTER);
  858. } else if (status1 & 4) {
  859. /* Disable EDID interrupt */
  860. hdmi_write(hdmi, 0xC0, HDMI_INTERRUPT_MASK_1);
  861. schedule_delayed_work(&hdmi->edid_work, msecs_to_jiffies(10));
  862. }
  863. return IRQ_HANDLED;
  864. }
  865. /* locking: called with info->lock held, or before register_framebuffer() */
  866. static void sh_hdmi_display_on(void *arg, struct fb_info *info)
  867. {
  868. /*
  869. * info is guaranteed to be valid, when we are called, because our
  870. * FB_EVENT_FB_UNBIND notify is also called with info->lock held
  871. */
  872. struct sh_hdmi *hdmi = arg;
  873. struct sh_mobile_hdmi_info *pdata = hdmi->dev->platform_data;
  874. struct sh_mobile_lcdc_chan *ch = info->par;
  875. dev_dbg(hdmi->dev, "%s(%p): state %x\n", __func__,
  876. pdata->lcd_dev, info->state);
  877. /* No need to lock */
  878. hdmi->info = info;
  879. /*
  880. * hp_state can be set to
  881. * HDMI_HOTPLUG_DISCONNECTED: on monitor unplug
  882. * HDMI_HOTPLUG_CONNECTED: on monitor plug-in
  883. * HDMI_HOTPLUG_EDID_DONE: on EDID read completion
  884. */
  885. switch (hdmi->hp_state) {
  886. case HDMI_HOTPLUG_EDID_DONE:
  887. /* PS mode d->e. All functions are active */
  888. hdmi_write(hdmi, 0x80, HDMI_SYSTEM_CTRL);
  889. dev_dbg(hdmi->dev, "HDMI running\n");
  890. break;
  891. case HDMI_HOTPLUG_DISCONNECTED:
  892. info->state = FBINFO_STATE_SUSPENDED;
  893. default:
  894. hdmi->var = ch->display_var;
  895. }
  896. }
  897. /* locking: called with info->lock held */
  898. static void sh_hdmi_display_off(void *arg)
  899. {
  900. struct sh_hdmi *hdmi = arg;
  901. struct sh_mobile_hdmi_info *pdata = hdmi->dev->platform_data;
  902. dev_dbg(hdmi->dev, "%s(%p)\n", __func__, pdata->lcd_dev);
  903. /* PS mode e->a */
  904. hdmi_write(hdmi, 0x10, HDMI_SYSTEM_CTRL);
  905. }
  906. static bool sh_hdmi_must_reconfigure(struct sh_hdmi *hdmi)
  907. {
  908. struct fb_info *info = hdmi->info;
  909. struct sh_mobile_lcdc_chan *ch = info->par;
  910. struct fb_var_screeninfo *new_var = &hdmi->var, *old_var = &ch->display_var;
  911. struct fb_videomode mode1, mode2;
  912. fb_var_to_videomode(&mode1, old_var);
  913. fb_var_to_videomode(&mode2, new_var);
  914. dev_dbg(info->dev, "Old %ux%u, new %ux%u\n",
  915. mode1.xres, mode1.yres, mode2.xres, mode2.yres);
  916. if (fb_mode_is_equal(&mode1, &mode2)) {
  917. /* It can be a different monitor with an equal video-mode */
  918. old_var->width = new_var->width;
  919. old_var->height = new_var->height;
  920. return false;
  921. }
  922. dev_dbg(info->dev, "Switching %u -> %u lines\n",
  923. mode1.yres, mode2.yres);
  924. *old_var = *new_var;
  925. return true;
  926. }
  927. /**
  928. * sh_hdmi_clk_configure() - set HDMI clock frequency and enable the clock
  929. * @hdmi: driver context
  930. * @hdmi_rate: HDMI clock frequency in Hz
  931. * @parent_rate: if != 0 - set parent clock rate for optimal precision
  932. * return: configured positive rate if successful
  933. * 0 if couldn't set the rate, but managed to enable the
  934. * clock, negative error, if couldn't enable the clock
  935. */
  936. static long sh_hdmi_clk_configure(struct sh_hdmi *hdmi, unsigned long hdmi_rate,
  937. unsigned long parent_rate)
  938. {
  939. int ret;
  940. if (parent_rate && clk_get_parent(hdmi->hdmi_clk)) {
  941. ret = clk_set_rate(clk_get_parent(hdmi->hdmi_clk), parent_rate);
  942. if (ret < 0) {
  943. dev_warn(hdmi->dev, "Cannot set parent rate %ld: %d\n", parent_rate, ret);
  944. hdmi_rate = clk_round_rate(hdmi->hdmi_clk, hdmi_rate);
  945. } else {
  946. dev_dbg(hdmi->dev, "HDMI set parent frequency %lu\n", parent_rate);
  947. }
  948. }
  949. ret = clk_set_rate(hdmi->hdmi_clk, hdmi_rate);
  950. if (ret < 0) {
  951. dev_warn(hdmi->dev, "Cannot set rate %ld: %d\n", hdmi_rate, ret);
  952. hdmi_rate = 0;
  953. } else {
  954. dev_dbg(hdmi->dev, "HDMI set frequency %lu\n", hdmi_rate);
  955. }
  956. return hdmi_rate;
  957. }
  958. /* Hotplug interrupt occurred, read EDID */
  959. static void sh_hdmi_edid_work_fn(struct work_struct *work)
  960. {
  961. struct sh_hdmi *hdmi = container_of(work, struct sh_hdmi, edid_work.work);
  962. struct fb_info *info;
  963. struct sh_mobile_hdmi_info *pdata = hdmi->dev->platform_data;
  964. struct sh_mobile_lcdc_chan *ch;
  965. int ret;
  966. dev_dbg(hdmi->dev, "%s(%p): begin, hotplug status %d\n", __func__,
  967. pdata->lcd_dev, hdmi->hp_state);
  968. if (!pdata->lcd_dev)
  969. return;
  970. mutex_lock(&hdmi->mutex);
  971. info = hdmi->info;
  972. if (hdmi->hp_state == HDMI_HOTPLUG_CONNECTED) {
  973. unsigned long parent_rate = 0, hdmi_rate;
  974. ret = sh_hdmi_read_edid(hdmi, &hdmi_rate, &parent_rate);
  975. if (ret < 0)
  976. goto out;
  977. hdmi->hp_state = HDMI_HOTPLUG_EDID_DONE;
  978. /* Reconfigure the clock */
  979. ret = sh_hdmi_clk_configure(hdmi, hdmi_rate, parent_rate);
  980. if (ret < 0)
  981. goto out;
  982. msleep(10);
  983. sh_hdmi_configure(hdmi);
  984. /* Switched to another (d) power-save mode */
  985. msleep(10);
  986. if (!info)
  987. goto out;
  988. ch = info->par;
  989. if (lock_fb_info(info)) {
  990. console_lock();
  991. /* HDMI plug in */
  992. if (!sh_hdmi_must_reconfigure(hdmi) &&
  993. info->state == FBINFO_STATE_RUNNING) {
  994. /*
  995. * First activation with the default monitor - just turn
  996. * on, if we run a resume here, the logo disappears
  997. */
  998. info->var.width = hdmi->var.width;
  999. info->var.height = hdmi->var.height;
  1000. sh_hdmi_display_on(hdmi, info);
  1001. } else {
  1002. /* New monitor or have to wake up */
  1003. fb_set_suspend(info, 0);
  1004. }
  1005. console_unlock();
  1006. unlock_fb_info(info);
  1007. }
  1008. } else {
  1009. ret = 0;
  1010. if (!info)
  1011. goto out;
  1012. hdmi->monspec.modedb_len = 0;
  1013. fb_destroy_modedb(hdmi->monspec.modedb);
  1014. hdmi->monspec.modedb = NULL;
  1015. if (lock_fb_info(info)) {
  1016. console_lock();
  1017. /* HDMI disconnect */
  1018. fb_set_suspend(info, 1);
  1019. console_unlock();
  1020. unlock_fb_info(info);
  1021. }
  1022. }
  1023. out:
  1024. if (ret < 0 && ret != -EAGAIN)
  1025. hdmi->hp_state = HDMI_HOTPLUG_DISCONNECTED;
  1026. mutex_unlock(&hdmi->mutex);
  1027. dev_dbg(hdmi->dev, "%s(%p): end\n", __func__, pdata->lcd_dev);
  1028. }
  1029. static int sh_hdmi_notify(struct notifier_block *nb,
  1030. unsigned long action, void *data)
  1031. {
  1032. struct fb_event *event = data;
  1033. struct fb_info *info = event->info;
  1034. struct sh_mobile_lcdc_chan *ch = info->par;
  1035. struct sh_mobile_lcdc_board_cfg *board_cfg = &ch->cfg.board_cfg;
  1036. struct sh_hdmi *hdmi = board_cfg->board_data;
  1037. if (!hdmi || nb != &hdmi->notifier || hdmi->info != info)
  1038. return NOTIFY_DONE;
  1039. switch(action) {
  1040. case FB_EVENT_FB_REGISTERED:
  1041. /* Unneeded, activation taken care by sh_hdmi_display_on() */
  1042. break;
  1043. case FB_EVENT_FB_UNREGISTERED:
  1044. /*
  1045. * We are called from unregister_framebuffer() with the
  1046. * info->lock held. This is bad for us, because we can race with
  1047. * the scheduled work, which has to call fb_set_suspend(), which
  1048. * takes info->lock internally, so, sh_hdmi_edid_work_fn()
  1049. * cannot take and hold info->lock for the whole function
  1050. * duration. Using an additional lock creates a classical AB-BA
  1051. * lock up. Therefore, we have to release the info->lock
  1052. * temporarily, synchronise with the work queue and re-acquire
  1053. * the info->lock.
  1054. */
  1055. unlock_fb_info(info);
  1056. mutex_lock(&hdmi->mutex);
  1057. hdmi->info = NULL;
  1058. mutex_unlock(&hdmi->mutex);
  1059. lock_fb_info(info);
  1060. return NOTIFY_OK;
  1061. }
  1062. return NOTIFY_DONE;
  1063. }
  1064. static int __init sh_hdmi_probe(struct platform_device *pdev)
  1065. {
  1066. struct sh_mobile_hdmi_info *pdata = pdev->dev.platform_data;
  1067. struct resource *res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
  1068. struct sh_mobile_lcdc_board_cfg *board_cfg;
  1069. int irq = platform_get_irq(pdev, 0), ret;
  1070. struct sh_hdmi *hdmi;
  1071. long rate;
  1072. if (!res || !pdata || irq < 0)
  1073. return -ENODEV;
  1074. hdmi = kzalloc(sizeof(*hdmi), GFP_KERNEL);
  1075. if (!hdmi) {
  1076. dev_err(&pdev->dev, "Cannot allocate device data\n");
  1077. return -ENOMEM;
  1078. }
  1079. mutex_init(&hdmi->mutex);
  1080. hdmi->dev = &pdev->dev;
  1081. hdmi->hdmi_clk = clk_get(&pdev->dev, "ick");
  1082. if (IS_ERR(hdmi->hdmi_clk)) {
  1083. ret = PTR_ERR(hdmi->hdmi_clk);
  1084. dev_err(&pdev->dev, "Unable to get clock: %d\n", ret);
  1085. goto egetclk;
  1086. }
  1087. /* An arbitrary relaxed pixclock just to get things started: from standard 480p */
  1088. rate = clk_round_rate(hdmi->hdmi_clk, PICOS2KHZ(37037));
  1089. if (rate > 0)
  1090. rate = sh_hdmi_clk_configure(hdmi, rate, 0);
  1091. if (rate < 0) {
  1092. ret = rate;
  1093. goto erate;
  1094. }
  1095. ret = clk_enable(hdmi->hdmi_clk);
  1096. if (ret < 0) {
  1097. dev_err(hdmi->dev, "Cannot enable clock: %d\n", ret);
  1098. goto erate;
  1099. }
  1100. dev_dbg(&pdev->dev, "Enabled HDMI clock at %luHz\n", rate);
  1101. if (!request_mem_region(res->start, resource_size(res), dev_name(&pdev->dev))) {
  1102. dev_err(&pdev->dev, "HDMI register region already claimed\n");
  1103. ret = -EBUSY;
  1104. goto ereqreg;
  1105. }
  1106. hdmi->base = ioremap(res->start, resource_size(res));
  1107. if (!hdmi->base) {
  1108. dev_err(&pdev->dev, "HDMI register region already claimed\n");
  1109. ret = -ENOMEM;
  1110. goto emap;
  1111. }
  1112. platform_set_drvdata(pdev, hdmi);
  1113. /* Set up LCDC callbacks */
  1114. board_cfg = &pdata->lcd_chan->board_cfg;
  1115. board_cfg->owner = THIS_MODULE;
  1116. board_cfg->board_data = hdmi;
  1117. board_cfg->display_on = sh_hdmi_display_on;
  1118. board_cfg->display_off = sh_hdmi_display_off;
  1119. INIT_DELAYED_WORK(&hdmi->edid_work, sh_hdmi_edid_work_fn);
  1120. pm_runtime_enable(&pdev->dev);
  1121. pm_runtime_get_sync(&pdev->dev);
  1122. /* Product and revision IDs are 0 in sh-mobile version */
  1123. dev_info(&pdev->dev, "Detected HDMI controller 0x%x:0x%x\n",
  1124. hdmi_read(hdmi, HDMI_PRODUCT_ID), hdmi_read(hdmi, HDMI_REVISION_ID));
  1125. ret = request_irq(irq, sh_hdmi_hotplug, 0,
  1126. dev_name(&pdev->dev), hdmi);
  1127. if (ret < 0) {
  1128. dev_err(&pdev->dev, "Unable to request irq: %d\n", ret);
  1129. goto ereqirq;
  1130. }
  1131. ret = snd_soc_register_codec(&pdev->dev,
  1132. &soc_codec_dev_sh_hdmi, &sh_hdmi_dai, 1);
  1133. if (ret < 0) {
  1134. dev_err(&pdev->dev, "codec registration failed\n");
  1135. goto ecodec;
  1136. }
  1137. hdmi->notifier.notifier_call = sh_hdmi_notify;
  1138. fb_register_client(&hdmi->notifier);
  1139. return 0;
  1140. ecodec:
  1141. free_irq(irq, hdmi);
  1142. ereqirq:
  1143. pm_runtime_put(&pdev->dev);
  1144. pm_runtime_disable(&pdev->dev);
  1145. iounmap(hdmi->base);
  1146. emap:
  1147. release_mem_region(res->start, resource_size(res));
  1148. ereqreg:
  1149. clk_disable(hdmi->hdmi_clk);
  1150. erate:
  1151. clk_put(hdmi->hdmi_clk);
  1152. egetclk:
  1153. mutex_destroy(&hdmi->mutex);
  1154. kfree(hdmi);
  1155. return ret;
  1156. }
  1157. static int __exit sh_hdmi_remove(struct platform_device *pdev)
  1158. {
  1159. struct sh_mobile_hdmi_info *pdata = pdev->dev.platform_data;
  1160. struct sh_hdmi *hdmi = platform_get_drvdata(pdev);
  1161. struct resource *res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
  1162. struct sh_mobile_lcdc_board_cfg *board_cfg = &pdata->lcd_chan->board_cfg;
  1163. int irq = platform_get_irq(pdev, 0);
  1164. snd_soc_unregister_codec(&pdev->dev);
  1165. fb_unregister_client(&hdmi->notifier);
  1166. board_cfg->display_on = NULL;
  1167. board_cfg->display_off = NULL;
  1168. board_cfg->board_data = NULL;
  1169. board_cfg->owner = NULL;
  1170. /* No new work will be scheduled, wait for running ISR */
  1171. free_irq(irq, hdmi);
  1172. /* Wait for already scheduled work */
  1173. cancel_delayed_work_sync(&hdmi->edid_work);
  1174. pm_runtime_put(&pdev->dev);
  1175. pm_runtime_disable(&pdev->dev);
  1176. clk_disable(hdmi->hdmi_clk);
  1177. clk_put(hdmi->hdmi_clk);
  1178. iounmap(hdmi->base);
  1179. release_mem_region(res->start, resource_size(res));
  1180. mutex_destroy(&hdmi->mutex);
  1181. kfree(hdmi);
  1182. return 0;
  1183. }
  1184. static struct platform_driver sh_hdmi_driver = {
  1185. .remove = __exit_p(sh_hdmi_remove),
  1186. .driver = {
  1187. .name = "sh-mobile-hdmi",
  1188. },
  1189. };
  1190. static int __init sh_hdmi_init(void)
  1191. {
  1192. return platform_driver_probe(&sh_hdmi_driver, sh_hdmi_probe);
  1193. }
  1194. module_init(sh_hdmi_init);
  1195. static void __exit sh_hdmi_exit(void)
  1196. {
  1197. platform_driver_unregister(&sh_hdmi_driver);
  1198. }
  1199. module_exit(sh_hdmi_exit);
  1200. MODULE_AUTHOR("Guennadi Liakhovetski <g.liakhovetski@gmx.de>");
  1201. MODULE_DESCRIPTION("SuperH / ARM-shmobile HDMI driver");
  1202. MODULE_LICENSE("GPL v2");