sti_tvout.c 25 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * Copyright (C) STMicroelectronics SA 2014
  4. * Authors: Benjamin Gaignard <[email protected]>
  5. * Vincent Abriou <[email protected]>
  6. * for STMicroelectronics.
  7. */
  8. #include <linux/clk.h>
  9. #include <linux/component.h>
  10. #include <linux/io.h>
  11. #include <linux/module.h>
  12. #include <linux/of_platform.h>
  13. #include <linux/platform_device.h>
  14. #include <linux/reset.h>
  15. #include <linux/seq_file.h>
  16. #include <drm/drm_atomic_helper.h>
  17. #include <drm/drm_debugfs.h>
  18. #include <drm/drm_device.h>
  19. #include <drm/drm_file.h>
  20. #include <drm/drm_print.h>
  21. #include "sti_crtc.h"
  22. #include "sti_drv.h"
  23. #include "sti_vtg.h"
  24. /* glue registers */
  25. #define TVO_CSC_MAIN_M0 0x000
  26. #define TVO_CSC_MAIN_M1 0x004
  27. #define TVO_CSC_MAIN_M2 0x008
  28. #define TVO_CSC_MAIN_M3 0x00c
  29. #define TVO_CSC_MAIN_M4 0x010
  30. #define TVO_CSC_MAIN_M5 0x014
  31. #define TVO_CSC_MAIN_M6 0x018
  32. #define TVO_CSC_MAIN_M7 0x01c
  33. #define TVO_MAIN_IN_VID_FORMAT 0x030
  34. #define TVO_CSC_AUX_M0 0x100
  35. #define TVO_CSC_AUX_M1 0x104
  36. #define TVO_CSC_AUX_M2 0x108
  37. #define TVO_CSC_AUX_M3 0x10c
  38. #define TVO_CSC_AUX_M4 0x110
  39. #define TVO_CSC_AUX_M5 0x114
  40. #define TVO_CSC_AUX_M6 0x118
  41. #define TVO_CSC_AUX_M7 0x11c
  42. #define TVO_AUX_IN_VID_FORMAT 0x130
  43. #define TVO_VIP_HDF 0x400
  44. #define TVO_HD_SYNC_SEL 0x418
  45. #define TVO_HD_DAC_CFG_OFF 0x420
  46. #define TVO_VIP_HDMI 0x500
  47. #define TVO_HDMI_FORCE_COLOR_0 0x504
  48. #define TVO_HDMI_FORCE_COLOR_1 0x508
  49. #define TVO_HDMI_CLIP_VALUE_B_CB 0x50c
  50. #define TVO_HDMI_CLIP_VALUE_Y_G 0x510
  51. #define TVO_HDMI_CLIP_VALUE_R_CR 0x514
  52. #define TVO_HDMI_SYNC_SEL 0x518
  53. #define TVO_HDMI_DFV_OBS 0x540
  54. #define TVO_VIP_DVO 0x600
  55. #define TVO_DVO_SYNC_SEL 0x618
  56. #define TVO_DVO_CONFIG 0x620
  57. #define TVO_IN_FMT_SIGNED BIT(0)
  58. #define TVO_SYNC_EXT BIT(4)
  59. #define TVO_VIP_REORDER_R_SHIFT 24
  60. #define TVO_VIP_REORDER_G_SHIFT 20
  61. #define TVO_VIP_REORDER_B_SHIFT 16
  62. #define TVO_VIP_REORDER_MASK 0x3
  63. #define TVO_VIP_REORDER_Y_G_SEL 0
  64. #define TVO_VIP_REORDER_CB_B_SEL 1
  65. #define TVO_VIP_REORDER_CR_R_SEL 2
  66. #define TVO_VIP_CLIP_SHIFT 8
  67. #define TVO_VIP_CLIP_MASK 0x7
  68. #define TVO_VIP_CLIP_DISABLED 0
  69. #define TVO_VIP_CLIP_EAV_SAV 1
  70. #define TVO_VIP_CLIP_LIMITED_RANGE_RGB_Y 2
  71. #define TVO_VIP_CLIP_LIMITED_RANGE_CB_CR 3
  72. #define TVO_VIP_CLIP_PROG_RANGE 4
  73. #define TVO_VIP_RND_SHIFT 4
  74. #define TVO_VIP_RND_MASK 0x3
  75. #define TVO_VIP_RND_8BIT_ROUNDED 0
  76. #define TVO_VIP_RND_10BIT_ROUNDED 1
  77. #define TVO_VIP_RND_12BIT_ROUNDED 2
  78. #define TVO_VIP_SEL_INPUT_MASK 0xf
  79. #define TVO_VIP_SEL_INPUT_MAIN 0x0
  80. #define TVO_VIP_SEL_INPUT_AUX 0x8
  81. #define TVO_VIP_SEL_INPUT_FORCE_COLOR 0xf
  82. #define TVO_VIP_SEL_INPUT_BYPASS_MASK 0x1
  83. #define TVO_VIP_SEL_INPUT_BYPASSED 1
  84. #define TVO_SYNC_MAIN_VTG_SET_REF 0x00
  85. #define TVO_SYNC_AUX_VTG_SET_REF 0x10
  86. #define TVO_SYNC_HD_DCS_SHIFT 8
  87. #define TVO_SYNC_DVO_PAD_HSYNC_SHIFT 8
  88. #define TVO_SYNC_DVO_PAD_VSYNC_SHIFT 16
  89. #define ENCODER_CRTC_MASK (BIT(0) | BIT(1))
  90. #define TVO_MIN_HD_HEIGHT 720
  91. /* enum listing the supported output data format */
  92. enum sti_tvout_video_out_type {
  93. STI_TVOUT_VIDEO_OUT_RGB,
  94. STI_TVOUT_VIDEO_OUT_YUV,
  95. };
  96. struct sti_tvout {
  97. struct device *dev;
  98. struct drm_device *drm_dev;
  99. void __iomem *regs;
  100. struct reset_control *reset;
  101. struct drm_encoder *hdmi;
  102. struct drm_encoder *hda;
  103. struct drm_encoder *dvo;
  104. bool debugfs_registered;
  105. };
  106. struct sti_tvout_encoder {
  107. struct drm_encoder encoder;
  108. struct sti_tvout *tvout;
  109. };
  110. #define to_sti_tvout_encoder(x) \
  111. container_of(x, struct sti_tvout_encoder, encoder)
  112. #define to_sti_tvout(x) to_sti_tvout_encoder(x)->tvout
  113. /* preformatter conversion matrix */
  114. static const u32 rgb_to_ycbcr_601[8] = {
  115. 0xF927082E, 0x04C9FEAB, 0x01D30964, 0xFA95FD3D,
  116. 0x0000082E, 0x00002000, 0x00002000, 0x00000000
  117. };
  118. /* 709 RGB to YCbCr */
  119. static const u32 rgb_to_ycbcr_709[8] = {
  120. 0xF891082F, 0x0367FF40, 0x01280B71, 0xF9B1FE20,
  121. 0x0000082F, 0x00002000, 0x00002000, 0x00000000
  122. };
  123. static u32 tvout_read(struct sti_tvout *tvout, int offset)
  124. {
  125. return readl(tvout->regs + offset);
  126. }
  127. static void tvout_write(struct sti_tvout *tvout, u32 val, int offset)
  128. {
  129. writel(val, tvout->regs + offset);
  130. }
  131. /**
  132. * tvout_vip_set_color_order - Set the clipping mode of a VIP
  133. *
  134. * @tvout: tvout structure
  135. * @reg: register to set
  136. * @cr_r: red chroma or red order
  137. * @y_g: y or green order
  138. * @cb_b: blue chroma or blue order
  139. */
  140. static void tvout_vip_set_color_order(struct sti_tvout *tvout, int reg,
  141. u32 cr_r, u32 y_g, u32 cb_b)
  142. {
  143. u32 val = tvout_read(tvout, reg);
  144. val &= ~(TVO_VIP_REORDER_MASK << TVO_VIP_REORDER_R_SHIFT);
  145. val &= ~(TVO_VIP_REORDER_MASK << TVO_VIP_REORDER_G_SHIFT);
  146. val &= ~(TVO_VIP_REORDER_MASK << TVO_VIP_REORDER_B_SHIFT);
  147. val |= cr_r << TVO_VIP_REORDER_R_SHIFT;
  148. val |= y_g << TVO_VIP_REORDER_G_SHIFT;
  149. val |= cb_b << TVO_VIP_REORDER_B_SHIFT;
  150. tvout_write(tvout, val, reg);
  151. }
  152. /**
  153. * tvout_vip_set_clip_mode - Set the clipping mode of a VIP
  154. *
  155. * @tvout: tvout structure
  156. * @reg: register to set
  157. * @range: clipping range
  158. */
  159. static void tvout_vip_set_clip_mode(struct sti_tvout *tvout, int reg, u32 range)
  160. {
  161. u32 val = tvout_read(tvout, reg);
  162. val &= ~(TVO_VIP_CLIP_MASK << TVO_VIP_CLIP_SHIFT);
  163. val |= range << TVO_VIP_CLIP_SHIFT;
  164. tvout_write(tvout, val, reg);
  165. }
  166. /**
  167. * tvout_vip_set_rnd - Set the rounded value of a VIP
  168. *
  169. * @tvout: tvout structure
  170. * @reg: register to set
  171. * @rnd: rounded val per component
  172. */
  173. static void tvout_vip_set_rnd(struct sti_tvout *tvout, int reg, u32 rnd)
  174. {
  175. u32 val = tvout_read(tvout, reg);
  176. val &= ~(TVO_VIP_RND_MASK << TVO_VIP_RND_SHIFT);
  177. val |= rnd << TVO_VIP_RND_SHIFT;
  178. tvout_write(tvout, val, reg);
  179. }
  180. /**
  181. * tvout_vip_set_sel_input - Select the VIP input
  182. *
  183. * @tvout: tvout structure
  184. * @reg: register to set
  185. * @main_path: main or auxiliary path
  186. * @video_out: selected_input (main/aux + conv)
  187. */
  188. static void tvout_vip_set_sel_input(struct sti_tvout *tvout,
  189. int reg,
  190. bool main_path,
  191. enum sti_tvout_video_out_type video_out)
  192. {
  193. u32 sel_input;
  194. u32 val = tvout_read(tvout, reg);
  195. if (main_path)
  196. sel_input = TVO_VIP_SEL_INPUT_MAIN;
  197. else
  198. sel_input = TVO_VIP_SEL_INPUT_AUX;
  199. switch (video_out) {
  200. case STI_TVOUT_VIDEO_OUT_RGB:
  201. sel_input |= TVO_VIP_SEL_INPUT_BYPASSED;
  202. break;
  203. case STI_TVOUT_VIDEO_OUT_YUV:
  204. sel_input &= ~TVO_VIP_SEL_INPUT_BYPASSED;
  205. break;
  206. }
  207. /* on stih407 chip the sel_input bypass mode logic is inverted */
  208. sel_input = sel_input ^ TVO_VIP_SEL_INPUT_BYPASS_MASK;
  209. val &= ~TVO_VIP_SEL_INPUT_MASK;
  210. val |= sel_input;
  211. tvout_write(tvout, val, reg);
  212. }
  213. /**
  214. * tvout_vip_set_in_vid_fmt - Select the input video signed or unsigned
  215. *
  216. * @tvout: tvout structure
  217. * @reg: register to set
  218. * @in_vid_fmt: used video input format
  219. */
  220. static void tvout_vip_set_in_vid_fmt(struct sti_tvout *tvout,
  221. int reg, u32 in_vid_fmt)
  222. {
  223. u32 val = tvout_read(tvout, reg);
  224. val &= ~TVO_IN_FMT_SIGNED;
  225. val |= in_vid_fmt;
  226. tvout_write(tvout, val, reg);
  227. }
  228. /**
  229. * tvout_preformatter_set_matrix - Set preformatter matrix
  230. *
  231. * @tvout: tvout structure
  232. * @mode: display mode structure
  233. */
  234. static void tvout_preformatter_set_matrix(struct sti_tvout *tvout,
  235. struct drm_display_mode *mode)
  236. {
  237. unsigned int i;
  238. const u32 *pf_matrix;
  239. if (mode->vdisplay >= TVO_MIN_HD_HEIGHT)
  240. pf_matrix = rgb_to_ycbcr_709;
  241. else
  242. pf_matrix = rgb_to_ycbcr_601;
  243. for (i = 0; i < 8; i++) {
  244. tvout_write(tvout, *(pf_matrix + i),
  245. TVO_CSC_MAIN_M0 + (i * 4));
  246. tvout_write(tvout, *(pf_matrix + i),
  247. TVO_CSC_AUX_M0 + (i * 4));
  248. }
  249. }
  250. /**
  251. * tvout_dvo_start - Start VIP block for DVO output
  252. *
  253. * @tvout: pointer on tvout structure
  254. * @main_path: true if main path has to be used in the vip configuration
  255. * else aux path is used.
  256. */
  257. static void tvout_dvo_start(struct sti_tvout *tvout, bool main_path)
  258. {
  259. u32 tvo_in_vid_format;
  260. int val, tmp;
  261. dev_dbg(tvout->dev, "%s\n", __func__);
  262. if (main_path) {
  263. DRM_DEBUG_DRIVER("main vip for DVO\n");
  264. /* Select the input sync for dvo */
  265. tmp = TVO_SYNC_MAIN_VTG_SET_REF | VTG_SYNC_ID_DVO;
  266. val = tmp << TVO_SYNC_DVO_PAD_VSYNC_SHIFT;
  267. val |= tmp << TVO_SYNC_DVO_PAD_HSYNC_SHIFT;
  268. val |= tmp;
  269. tvout_write(tvout, val, TVO_DVO_SYNC_SEL);
  270. tvo_in_vid_format = TVO_MAIN_IN_VID_FORMAT;
  271. } else {
  272. DRM_DEBUG_DRIVER("aux vip for DVO\n");
  273. /* Select the input sync for dvo */
  274. tmp = TVO_SYNC_AUX_VTG_SET_REF | VTG_SYNC_ID_DVO;
  275. val = tmp << TVO_SYNC_DVO_PAD_VSYNC_SHIFT;
  276. val |= tmp << TVO_SYNC_DVO_PAD_HSYNC_SHIFT;
  277. val |= tmp;
  278. tvout_write(tvout, val, TVO_DVO_SYNC_SEL);
  279. tvo_in_vid_format = TVO_AUX_IN_VID_FORMAT;
  280. }
  281. /* Set color channel order */
  282. tvout_vip_set_color_order(tvout, TVO_VIP_DVO,
  283. TVO_VIP_REORDER_CR_R_SEL,
  284. TVO_VIP_REORDER_Y_G_SEL,
  285. TVO_VIP_REORDER_CB_B_SEL);
  286. /* Set clipping mode */
  287. tvout_vip_set_clip_mode(tvout, TVO_VIP_DVO, TVO_VIP_CLIP_DISABLED);
  288. /* Set round mode (rounded to 8-bit per component) */
  289. tvout_vip_set_rnd(tvout, TVO_VIP_DVO, TVO_VIP_RND_8BIT_ROUNDED);
  290. /* Set input video format */
  291. tvout_vip_set_in_vid_fmt(tvout, tvo_in_vid_format, TVO_IN_FMT_SIGNED);
  292. /* Input selection */
  293. tvout_vip_set_sel_input(tvout, TVO_VIP_DVO, main_path,
  294. STI_TVOUT_VIDEO_OUT_RGB);
  295. }
  296. /**
  297. * tvout_hdmi_start - Start VIP block for HDMI output
  298. *
  299. * @tvout: pointer on tvout structure
  300. * @main_path: true if main path has to be used in the vip configuration
  301. * else aux path is used.
  302. */
  303. static void tvout_hdmi_start(struct sti_tvout *tvout, bool main_path)
  304. {
  305. u32 tvo_in_vid_format;
  306. dev_dbg(tvout->dev, "%s\n", __func__);
  307. if (main_path) {
  308. DRM_DEBUG_DRIVER("main vip for hdmi\n");
  309. /* select the input sync for hdmi */
  310. tvout_write(tvout,
  311. TVO_SYNC_MAIN_VTG_SET_REF | VTG_SYNC_ID_HDMI,
  312. TVO_HDMI_SYNC_SEL);
  313. tvo_in_vid_format = TVO_MAIN_IN_VID_FORMAT;
  314. } else {
  315. DRM_DEBUG_DRIVER("aux vip for hdmi\n");
  316. /* select the input sync for hdmi */
  317. tvout_write(tvout,
  318. TVO_SYNC_AUX_VTG_SET_REF | VTG_SYNC_ID_HDMI,
  319. TVO_HDMI_SYNC_SEL);
  320. tvo_in_vid_format = TVO_AUX_IN_VID_FORMAT;
  321. }
  322. /* set color channel order */
  323. tvout_vip_set_color_order(tvout, TVO_VIP_HDMI,
  324. TVO_VIP_REORDER_CR_R_SEL,
  325. TVO_VIP_REORDER_Y_G_SEL,
  326. TVO_VIP_REORDER_CB_B_SEL);
  327. /* set clipping mode */
  328. tvout_vip_set_clip_mode(tvout, TVO_VIP_HDMI, TVO_VIP_CLIP_DISABLED);
  329. /* set round mode (rounded to 8-bit per component) */
  330. tvout_vip_set_rnd(tvout, TVO_VIP_HDMI, TVO_VIP_RND_8BIT_ROUNDED);
  331. /* set input video format */
  332. tvout_vip_set_in_vid_fmt(tvout, tvo_in_vid_format, TVO_IN_FMT_SIGNED);
  333. /* input selection */
  334. tvout_vip_set_sel_input(tvout, TVO_VIP_HDMI, main_path,
  335. STI_TVOUT_VIDEO_OUT_RGB);
  336. }
  337. /**
  338. * tvout_hda_start - Start HDF VIP and HD DAC
  339. *
  340. * @tvout: pointer on tvout structure
  341. * @main_path: true if main path has to be used in the vip configuration
  342. * else aux path is used.
  343. */
  344. static void tvout_hda_start(struct sti_tvout *tvout, bool main_path)
  345. {
  346. u32 tvo_in_vid_format;
  347. int val;
  348. dev_dbg(tvout->dev, "%s\n", __func__);
  349. if (main_path) {
  350. DRM_DEBUG_DRIVER("main vip for HDF\n");
  351. /* Select the input sync for HD analog and HD DCS */
  352. val = TVO_SYNC_MAIN_VTG_SET_REF | VTG_SYNC_ID_HDDCS;
  353. val = val << TVO_SYNC_HD_DCS_SHIFT;
  354. val |= TVO_SYNC_MAIN_VTG_SET_REF | VTG_SYNC_ID_HDF;
  355. tvout_write(tvout, val, TVO_HD_SYNC_SEL);
  356. tvo_in_vid_format = TVO_MAIN_IN_VID_FORMAT;
  357. } else {
  358. DRM_DEBUG_DRIVER("aux vip for HDF\n");
  359. /* Select the input sync for HD analog and HD DCS */
  360. val = TVO_SYNC_AUX_VTG_SET_REF | VTG_SYNC_ID_HDDCS;
  361. val = val << TVO_SYNC_HD_DCS_SHIFT;
  362. val |= TVO_SYNC_AUX_VTG_SET_REF | VTG_SYNC_ID_HDF;
  363. tvout_write(tvout, val, TVO_HD_SYNC_SEL);
  364. tvo_in_vid_format = TVO_AUX_IN_VID_FORMAT;
  365. }
  366. /* set color channel order */
  367. tvout_vip_set_color_order(tvout, TVO_VIP_HDF,
  368. TVO_VIP_REORDER_CR_R_SEL,
  369. TVO_VIP_REORDER_Y_G_SEL,
  370. TVO_VIP_REORDER_CB_B_SEL);
  371. /* set clipping mode */
  372. tvout_vip_set_clip_mode(tvout, TVO_VIP_HDF, TVO_VIP_CLIP_DISABLED);
  373. /* set round mode (rounded to 10-bit per component) */
  374. tvout_vip_set_rnd(tvout, TVO_VIP_HDF, TVO_VIP_RND_10BIT_ROUNDED);
  375. /* Set input video format */
  376. tvout_vip_set_in_vid_fmt(tvout, tvo_in_vid_format, TVO_IN_FMT_SIGNED);
  377. /* Input selection */
  378. tvout_vip_set_sel_input(tvout, TVO_VIP_HDF, main_path,
  379. STI_TVOUT_VIDEO_OUT_YUV);
  380. /* power up HD DAC */
  381. tvout_write(tvout, 0, TVO_HD_DAC_CFG_OFF);
  382. }
  383. #define DBGFS_DUMP(reg) seq_printf(s, "\n %-25s 0x%08X", #reg, \
  384. readl(tvout->regs + reg))
  385. static void tvout_dbg_vip(struct seq_file *s, int val)
  386. {
  387. int r, g, b, tmp, mask;
  388. char *const reorder[] = {"Y_G", "Cb_B", "Cr_R"};
  389. char *const clipping[] = {"No", "EAV/SAV", "Limited range RGB/Y",
  390. "Limited range Cb/Cr", "decided by register"};
  391. char *const round[] = {"8-bit", "10-bit", "12-bit"};
  392. char *const input_sel[] = {"Main (color matrix enabled)",
  393. "Main (color matrix by-passed)",
  394. "", "", "", "", "", "",
  395. "Aux (color matrix enabled)",
  396. "Aux (color matrix by-passed)",
  397. "", "", "", "", "", "Force value"};
  398. seq_putc(s, '\t');
  399. mask = TVO_VIP_REORDER_MASK << TVO_VIP_REORDER_R_SHIFT;
  400. r = (val & mask) >> TVO_VIP_REORDER_R_SHIFT;
  401. mask = TVO_VIP_REORDER_MASK << TVO_VIP_REORDER_G_SHIFT;
  402. g = (val & mask) >> TVO_VIP_REORDER_G_SHIFT;
  403. mask = TVO_VIP_REORDER_MASK << TVO_VIP_REORDER_B_SHIFT;
  404. b = (val & mask) >> TVO_VIP_REORDER_B_SHIFT;
  405. seq_printf(s, "%-24s %s->%s %s->%s %s->%s\n", "Reorder:",
  406. reorder[r], reorder[TVO_VIP_REORDER_CR_R_SEL],
  407. reorder[g], reorder[TVO_VIP_REORDER_Y_G_SEL],
  408. reorder[b], reorder[TVO_VIP_REORDER_CB_B_SEL]);
  409. seq_puts(s, "\t\t\t\t\t");
  410. mask = TVO_VIP_CLIP_MASK << TVO_VIP_CLIP_SHIFT;
  411. tmp = (val & mask) >> TVO_VIP_CLIP_SHIFT;
  412. seq_printf(s, "%-24s %s\n", "Clipping:", clipping[tmp]);
  413. seq_puts(s, "\t\t\t\t\t");
  414. mask = TVO_VIP_RND_MASK << TVO_VIP_RND_SHIFT;
  415. tmp = (val & mask) >> TVO_VIP_RND_SHIFT;
  416. seq_printf(s, "%-24s input data rounded to %s per component\n",
  417. "Round:", round[tmp]);
  418. seq_puts(s, "\t\t\t\t\t");
  419. tmp = (val & TVO_VIP_SEL_INPUT_MASK);
  420. seq_printf(s, "%-24s %s", "Input selection:", input_sel[tmp]);
  421. }
  422. static void tvout_dbg_hd_dac_cfg(struct seq_file *s, int val)
  423. {
  424. seq_printf(s, "\t%-24s %s", "HD DAC:",
  425. val & 1 ? "disabled" : "enabled");
  426. }
  427. static int tvout_dbg_show(struct seq_file *s, void *data)
  428. {
  429. struct drm_info_node *node = s->private;
  430. struct sti_tvout *tvout = (struct sti_tvout *)node->info_ent->data;
  431. struct drm_crtc *crtc;
  432. seq_printf(s, "TVOUT: (vaddr = 0x%p)", tvout->regs);
  433. seq_puts(s, "\n\n HDMI encoder: ");
  434. crtc = tvout->hdmi->crtc;
  435. if (crtc) {
  436. seq_printf(s, "connected to %s path",
  437. sti_crtc_is_main(crtc) ? "main" : "aux");
  438. DBGFS_DUMP(TVO_HDMI_SYNC_SEL);
  439. DBGFS_DUMP(TVO_VIP_HDMI);
  440. tvout_dbg_vip(s, readl(tvout->regs + TVO_VIP_HDMI));
  441. } else {
  442. seq_puts(s, "disabled");
  443. }
  444. seq_puts(s, "\n\n DVO encoder: ");
  445. crtc = tvout->dvo->crtc;
  446. if (crtc) {
  447. seq_printf(s, "connected to %s path",
  448. sti_crtc_is_main(crtc) ? "main" : "aux");
  449. DBGFS_DUMP(TVO_DVO_SYNC_SEL);
  450. DBGFS_DUMP(TVO_DVO_CONFIG);
  451. DBGFS_DUMP(TVO_VIP_DVO);
  452. tvout_dbg_vip(s, readl(tvout->regs + TVO_VIP_DVO));
  453. } else {
  454. seq_puts(s, "disabled");
  455. }
  456. seq_puts(s, "\n\n HDA encoder: ");
  457. crtc = tvout->hda->crtc;
  458. if (crtc) {
  459. seq_printf(s, "connected to %s path",
  460. sti_crtc_is_main(crtc) ? "main" : "aux");
  461. DBGFS_DUMP(TVO_HD_SYNC_SEL);
  462. DBGFS_DUMP(TVO_HD_DAC_CFG_OFF);
  463. tvout_dbg_hd_dac_cfg(s,
  464. readl(tvout->regs + TVO_HD_DAC_CFG_OFF));
  465. DBGFS_DUMP(TVO_VIP_HDF);
  466. tvout_dbg_vip(s, readl(tvout->regs + TVO_VIP_HDF));
  467. } else {
  468. seq_puts(s, "disabled");
  469. }
  470. seq_puts(s, "\n\n main path configuration");
  471. DBGFS_DUMP(TVO_CSC_MAIN_M0);
  472. DBGFS_DUMP(TVO_CSC_MAIN_M1);
  473. DBGFS_DUMP(TVO_CSC_MAIN_M2);
  474. DBGFS_DUMP(TVO_CSC_MAIN_M3);
  475. DBGFS_DUMP(TVO_CSC_MAIN_M4);
  476. DBGFS_DUMP(TVO_CSC_MAIN_M5);
  477. DBGFS_DUMP(TVO_CSC_MAIN_M6);
  478. DBGFS_DUMP(TVO_CSC_MAIN_M7);
  479. DBGFS_DUMP(TVO_MAIN_IN_VID_FORMAT);
  480. seq_puts(s, "\n\n auxiliary path configuration");
  481. DBGFS_DUMP(TVO_CSC_AUX_M0);
  482. DBGFS_DUMP(TVO_CSC_AUX_M2);
  483. DBGFS_DUMP(TVO_CSC_AUX_M3);
  484. DBGFS_DUMP(TVO_CSC_AUX_M4);
  485. DBGFS_DUMP(TVO_CSC_AUX_M5);
  486. DBGFS_DUMP(TVO_CSC_AUX_M6);
  487. DBGFS_DUMP(TVO_CSC_AUX_M7);
  488. DBGFS_DUMP(TVO_AUX_IN_VID_FORMAT);
  489. seq_putc(s, '\n');
  490. return 0;
  491. }
  492. static struct drm_info_list tvout_debugfs_files[] = {
  493. { "tvout", tvout_dbg_show, 0, NULL },
  494. };
  495. static void tvout_debugfs_init(struct sti_tvout *tvout, struct drm_minor *minor)
  496. {
  497. unsigned int i;
  498. for (i = 0; i < ARRAY_SIZE(tvout_debugfs_files); i++)
  499. tvout_debugfs_files[i].data = tvout;
  500. drm_debugfs_create_files(tvout_debugfs_files,
  501. ARRAY_SIZE(tvout_debugfs_files),
  502. minor->debugfs_root, minor);
  503. }
  504. static void sti_tvout_encoder_dpms(struct drm_encoder *encoder, int mode)
  505. {
  506. }
  507. static void sti_tvout_encoder_mode_set(struct drm_encoder *encoder,
  508. struct drm_display_mode *mode,
  509. struct drm_display_mode *adjusted_mode)
  510. {
  511. }
  512. static void sti_tvout_encoder_destroy(struct drm_encoder *encoder)
  513. {
  514. struct sti_tvout_encoder *sti_encoder = to_sti_tvout_encoder(encoder);
  515. drm_encoder_cleanup(encoder);
  516. kfree(sti_encoder);
  517. }
  518. static int sti_tvout_late_register(struct drm_encoder *encoder)
  519. {
  520. struct sti_tvout *tvout = to_sti_tvout(encoder);
  521. if (tvout->debugfs_registered)
  522. return 0;
  523. tvout_debugfs_init(tvout, encoder->dev->primary);
  524. tvout->debugfs_registered = true;
  525. return 0;
  526. }
  527. static void sti_tvout_early_unregister(struct drm_encoder *encoder)
  528. {
  529. struct sti_tvout *tvout = to_sti_tvout(encoder);
  530. if (!tvout->debugfs_registered)
  531. return;
  532. tvout->debugfs_registered = false;
  533. }
  534. static const struct drm_encoder_funcs sti_tvout_encoder_funcs = {
  535. .destroy = sti_tvout_encoder_destroy,
  536. .late_register = sti_tvout_late_register,
  537. .early_unregister = sti_tvout_early_unregister,
  538. };
  539. static void sti_dvo_encoder_enable(struct drm_encoder *encoder)
  540. {
  541. struct sti_tvout *tvout = to_sti_tvout(encoder);
  542. tvout_preformatter_set_matrix(tvout, &encoder->crtc->mode);
  543. tvout_dvo_start(tvout, sti_crtc_is_main(encoder->crtc));
  544. }
  545. static void sti_dvo_encoder_disable(struct drm_encoder *encoder)
  546. {
  547. struct sti_tvout *tvout = to_sti_tvout(encoder);
  548. /* Reset VIP register */
  549. tvout_write(tvout, 0x0, TVO_VIP_DVO);
  550. }
  551. static const struct drm_encoder_helper_funcs sti_dvo_encoder_helper_funcs = {
  552. .dpms = sti_tvout_encoder_dpms,
  553. .mode_set = sti_tvout_encoder_mode_set,
  554. .enable = sti_dvo_encoder_enable,
  555. .disable = sti_dvo_encoder_disable,
  556. };
  557. static struct drm_encoder *
  558. sti_tvout_create_dvo_encoder(struct drm_device *dev,
  559. struct sti_tvout *tvout)
  560. {
  561. struct sti_tvout_encoder *encoder;
  562. struct drm_encoder *drm_encoder;
  563. encoder = devm_kzalloc(tvout->dev, sizeof(*encoder), GFP_KERNEL);
  564. if (!encoder)
  565. return NULL;
  566. encoder->tvout = tvout;
  567. drm_encoder = &encoder->encoder;
  568. drm_encoder->possible_crtcs = ENCODER_CRTC_MASK;
  569. drm_encoder_init(dev, drm_encoder,
  570. &sti_tvout_encoder_funcs, DRM_MODE_ENCODER_LVDS,
  571. NULL);
  572. drm_encoder_helper_add(drm_encoder, &sti_dvo_encoder_helper_funcs);
  573. return drm_encoder;
  574. }
  575. static void sti_hda_encoder_enable(struct drm_encoder *encoder)
  576. {
  577. struct sti_tvout *tvout = to_sti_tvout(encoder);
  578. tvout_preformatter_set_matrix(tvout, &encoder->crtc->mode);
  579. tvout_hda_start(tvout, sti_crtc_is_main(encoder->crtc));
  580. }
  581. static void sti_hda_encoder_disable(struct drm_encoder *encoder)
  582. {
  583. struct sti_tvout *tvout = to_sti_tvout(encoder);
  584. /* reset VIP register */
  585. tvout_write(tvout, 0x0, TVO_VIP_HDF);
  586. /* power down HD DAC */
  587. tvout_write(tvout, 1, TVO_HD_DAC_CFG_OFF);
  588. }
  589. static const struct drm_encoder_helper_funcs sti_hda_encoder_helper_funcs = {
  590. .dpms = sti_tvout_encoder_dpms,
  591. .mode_set = sti_tvout_encoder_mode_set,
  592. .commit = sti_hda_encoder_enable,
  593. .disable = sti_hda_encoder_disable,
  594. };
  595. static struct drm_encoder *sti_tvout_create_hda_encoder(struct drm_device *dev,
  596. struct sti_tvout *tvout)
  597. {
  598. struct sti_tvout_encoder *encoder;
  599. struct drm_encoder *drm_encoder;
  600. encoder = devm_kzalloc(tvout->dev, sizeof(*encoder), GFP_KERNEL);
  601. if (!encoder)
  602. return NULL;
  603. encoder->tvout = tvout;
  604. drm_encoder = &encoder->encoder;
  605. drm_encoder->possible_crtcs = ENCODER_CRTC_MASK;
  606. drm_encoder_init(dev, drm_encoder,
  607. &sti_tvout_encoder_funcs, DRM_MODE_ENCODER_DAC, NULL);
  608. drm_encoder_helper_add(drm_encoder, &sti_hda_encoder_helper_funcs);
  609. return drm_encoder;
  610. }
  611. static void sti_hdmi_encoder_enable(struct drm_encoder *encoder)
  612. {
  613. struct sti_tvout *tvout = to_sti_tvout(encoder);
  614. tvout_preformatter_set_matrix(tvout, &encoder->crtc->mode);
  615. tvout_hdmi_start(tvout, sti_crtc_is_main(encoder->crtc));
  616. }
  617. static void sti_hdmi_encoder_disable(struct drm_encoder *encoder)
  618. {
  619. struct sti_tvout *tvout = to_sti_tvout(encoder);
  620. /* reset VIP register */
  621. tvout_write(tvout, 0x0, TVO_VIP_HDMI);
  622. }
  623. static const struct drm_encoder_helper_funcs sti_hdmi_encoder_helper_funcs = {
  624. .dpms = sti_tvout_encoder_dpms,
  625. .mode_set = sti_tvout_encoder_mode_set,
  626. .commit = sti_hdmi_encoder_enable,
  627. .disable = sti_hdmi_encoder_disable,
  628. };
  629. static struct drm_encoder *sti_tvout_create_hdmi_encoder(struct drm_device *dev,
  630. struct sti_tvout *tvout)
  631. {
  632. struct sti_tvout_encoder *encoder;
  633. struct drm_encoder *drm_encoder;
  634. encoder = devm_kzalloc(tvout->dev, sizeof(*encoder), GFP_KERNEL);
  635. if (!encoder)
  636. return NULL;
  637. encoder->tvout = tvout;
  638. drm_encoder = &encoder->encoder;
  639. drm_encoder->possible_crtcs = ENCODER_CRTC_MASK;
  640. drm_encoder_init(dev, drm_encoder,
  641. &sti_tvout_encoder_funcs, DRM_MODE_ENCODER_TMDS, NULL);
  642. drm_encoder_helper_add(drm_encoder, &sti_hdmi_encoder_helper_funcs);
  643. return drm_encoder;
  644. }
  645. static void sti_tvout_create_encoders(struct drm_device *dev,
  646. struct sti_tvout *tvout)
  647. {
  648. tvout->hdmi = sti_tvout_create_hdmi_encoder(dev, tvout);
  649. tvout->hda = sti_tvout_create_hda_encoder(dev, tvout);
  650. tvout->dvo = sti_tvout_create_dvo_encoder(dev, tvout);
  651. tvout->hdmi->possible_clones = drm_encoder_mask(tvout->hdmi) |
  652. drm_encoder_mask(tvout->hda) | drm_encoder_mask(tvout->dvo);
  653. tvout->hda->possible_clones = drm_encoder_mask(tvout->hdmi) |
  654. drm_encoder_mask(tvout->hda) | drm_encoder_mask(tvout->dvo);
  655. tvout->dvo->possible_clones = drm_encoder_mask(tvout->hdmi) |
  656. drm_encoder_mask(tvout->hda) | drm_encoder_mask(tvout->dvo);
  657. }
  658. static void sti_tvout_destroy_encoders(struct sti_tvout *tvout)
  659. {
  660. if (tvout->hdmi)
  661. drm_encoder_cleanup(tvout->hdmi);
  662. tvout->hdmi = NULL;
  663. if (tvout->hda)
  664. drm_encoder_cleanup(tvout->hda);
  665. tvout->hda = NULL;
  666. if (tvout->dvo)
  667. drm_encoder_cleanup(tvout->dvo);
  668. tvout->dvo = NULL;
  669. }
  670. static int sti_tvout_bind(struct device *dev, struct device *master, void *data)
  671. {
  672. struct sti_tvout *tvout = dev_get_drvdata(dev);
  673. struct drm_device *drm_dev = data;
  674. tvout->drm_dev = drm_dev;
  675. sti_tvout_create_encoders(drm_dev, tvout);
  676. return 0;
  677. }
  678. static void sti_tvout_unbind(struct device *dev, struct device *master,
  679. void *data)
  680. {
  681. struct sti_tvout *tvout = dev_get_drvdata(dev);
  682. sti_tvout_destroy_encoders(tvout);
  683. }
  684. static const struct component_ops sti_tvout_ops = {
  685. .bind = sti_tvout_bind,
  686. .unbind = sti_tvout_unbind,
  687. };
  688. static int sti_tvout_probe(struct platform_device *pdev)
  689. {
  690. struct device *dev = &pdev->dev;
  691. struct device_node *node = dev->of_node;
  692. struct sti_tvout *tvout;
  693. struct resource *res;
  694. DRM_INFO("%s\n", __func__);
  695. if (!node)
  696. return -ENODEV;
  697. tvout = devm_kzalloc(dev, sizeof(*tvout), GFP_KERNEL);
  698. if (!tvout)
  699. return -ENOMEM;
  700. tvout->dev = dev;
  701. /* get memory resources */
  702. res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "tvout-reg");
  703. if (!res) {
  704. DRM_ERROR("Invalid glue resource\n");
  705. return -ENOMEM;
  706. }
  707. tvout->regs = devm_ioremap(dev, res->start, resource_size(res));
  708. if (!tvout->regs)
  709. return -ENOMEM;
  710. /* get reset resources */
  711. tvout->reset = devm_reset_control_get(dev, "tvout");
  712. /* take tvout out of reset */
  713. if (!IS_ERR(tvout->reset))
  714. reset_control_deassert(tvout->reset);
  715. platform_set_drvdata(pdev, tvout);
  716. return component_add(dev, &sti_tvout_ops);
  717. }
  718. static int sti_tvout_remove(struct platform_device *pdev)
  719. {
  720. component_del(&pdev->dev, &sti_tvout_ops);
  721. return 0;
  722. }
  723. static const struct of_device_id tvout_of_match[] = {
  724. { .compatible = "st,stih407-tvout", },
  725. { /* end node */ }
  726. };
  727. MODULE_DEVICE_TABLE(of, tvout_of_match);
  728. struct platform_driver sti_tvout_driver = {
  729. .driver = {
  730. .name = "sti-tvout",
  731. .owner = THIS_MODULE,
  732. .of_match_table = tvout_of_match,
  733. },
  734. .probe = sti_tvout_probe,
  735. .remove = sti_tvout_remove,
  736. };
  737. MODULE_AUTHOR("Benjamin Gaignard <[email protected]>");
  738. MODULE_DESCRIPTION("STMicroelectronics SoC DRM driver");
  739. MODULE_LICENSE("GPL");