rcar_lvds.c 14 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * rcar_lvds.c -- R-Car LVDS Encoder
  4. *
  5. * Copyright (C) 2013-2018 Renesas Electronics Corporation
  6. *
  7. * Contact: Laurent Pinchart (laurent.pinchart@ideasonboard.com)
  8. */
  9. #include <linux/clk.h>
  10. #include <linux/delay.h>
  11. #include <linux/io.h>
  12. #include <linux/of.h>
  13. #include <linux/of_device.h>
  14. #include <linux/of_graph.h>
  15. #include <linux/platform_device.h>
  16. #include <linux/slab.h>
  17. #include <drm/drm_atomic.h>
  18. #include <drm/drm_atomic_helper.h>
  19. #include <drm/drm_bridge.h>
  20. #include <drm/drm_crtc_helper.h>
  21. #include <drm/drm_panel.h>
  22. #include "rcar_lvds_regs.h"
  23. /* Keep in sync with the LVDCR0.LVMD hardware register values. */
  24. enum rcar_lvds_mode {
  25. RCAR_LVDS_MODE_JEIDA = 0,
  26. RCAR_LVDS_MODE_MIRROR = 1,
  27. RCAR_LVDS_MODE_VESA = 4,
  28. };
  29. #define RCAR_LVDS_QUIRK_LANES (1 << 0) /* LVDS lanes 1 and 3 inverted */
  30. #define RCAR_LVDS_QUIRK_GEN2_PLLCR (1 << 1) /* LVDPLLCR has gen2 layout */
  31. #define RCAR_LVDS_QUIRK_GEN3_LVEN (1 << 2) /* LVEN bit needs to be set */
  32. /* on R8A77970/R8A7799x */
  33. struct rcar_lvds_device_info {
  34. unsigned int gen;
  35. unsigned int quirks;
  36. };
  37. struct rcar_lvds {
  38. struct device *dev;
  39. const struct rcar_lvds_device_info *info;
  40. struct drm_bridge bridge;
  41. struct drm_bridge *next_bridge;
  42. struct drm_connector connector;
  43. struct drm_panel *panel;
  44. void __iomem *mmio;
  45. struct clk *clock;
  46. bool enabled;
  47. struct drm_display_mode display_mode;
  48. enum rcar_lvds_mode mode;
  49. };
  50. #define bridge_to_rcar_lvds(bridge) \
  51. container_of(bridge, struct rcar_lvds, bridge)
  52. #define connector_to_rcar_lvds(connector) \
  53. container_of(connector, struct rcar_lvds, connector)
  54. static void rcar_lvds_write(struct rcar_lvds *lvds, u32 reg, u32 data)
  55. {
  56. iowrite32(data, lvds->mmio + reg);
  57. }
  58. /* -----------------------------------------------------------------------------
  59. * Connector & Panel
  60. */
  61. static int rcar_lvds_connector_get_modes(struct drm_connector *connector)
  62. {
  63. struct rcar_lvds *lvds = connector_to_rcar_lvds(connector);
  64. return drm_panel_get_modes(lvds->panel);
  65. }
  66. static int rcar_lvds_connector_atomic_check(struct drm_connector *connector,
  67. struct drm_connector_state *state)
  68. {
  69. struct rcar_lvds *lvds = connector_to_rcar_lvds(connector);
  70. const struct drm_display_mode *panel_mode;
  71. struct drm_crtc_state *crtc_state;
  72. if (!state->crtc)
  73. return 0;
  74. if (list_empty(&connector->modes)) {
  75. dev_dbg(lvds->dev, "connector: empty modes list\n");
  76. return -EINVAL;
  77. }
  78. panel_mode = list_first_entry(&connector->modes,
  79. struct drm_display_mode, head);
  80. /* We're not allowed to modify the resolution. */
  81. crtc_state = drm_atomic_get_crtc_state(state->state, state->crtc);
  82. if (IS_ERR(crtc_state))
  83. return PTR_ERR(crtc_state);
  84. if (crtc_state->mode.hdisplay != panel_mode->hdisplay ||
  85. crtc_state->mode.vdisplay != panel_mode->vdisplay)
  86. return -EINVAL;
  87. /* The flat panel mode is fixed, just copy it to the adjusted mode. */
  88. drm_mode_copy(&crtc_state->adjusted_mode, panel_mode);
  89. return 0;
  90. }
  91. static const struct drm_connector_helper_funcs rcar_lvds_conn_helper_funcs = {
  92. .get_modes = rcar_lvds_connector_get_modes,
  93. .atomic_check = rcar_lvds_connector_atomic_check,
  94. };
  95. static const struct drm_connector_funcs rcar_lvds_conn_funcs = {
  96. .reset = drm_atomic_helper_connector_reset,
  97. .fill_modes = drm_helper_probe_single_connector_modes,
  98. .destroy = drm_connector_cleanup,
  99. .atomic_duplicate_state = drm_atomic_helper_connector_duplicate_state,
  100. .atomic_destroy_state = drm_atomic_helper_connector_destroy_state,
  101. };
  102. /* -----------------------------------------------------------------------------
  103. * Bridge
  104. */
  105. static u32 rcar_lvds_lvdpllcr_gen2(unsigned int freq)
  106. {
  107. if (freq < 39000)
  108. return LVDPLLCR_CEEN | LVDPLLCR_COSEL | LVDPLLCR_PLLDLYCNT_38M;
  109. else if (freq < 61000)
  110. return LVDPLLCR_CEEN | LVDPLLCR_COSEL | LVDPLLCR_PLLDLYCNT_60M;
  111. else if (freq < 121000)
  112. return LVDPLLCR_CEEN | LVDPLLCR_COSEL | LVDPLLCR_PLLDLYCNT_121M;
  113. else
  114. return LVDPLLCR_PLLDLYCNT_150M;
  115. }
  116. static u32 rcar_lvds_lvdpllcr_gen3(unsigned int freq)
  117. {
  118. if (freq < 42000)
  119. return LVDPLLCR_PLLDIVCNT_42M;
  120. else if (freq < 85000)
  121. return LVDPLLCR_PLLDIVCNT_85M;
  122. else if (freq < 128000)
  123. return LVDPLLCR_PLLDIVCNT_128M;
  124. else
  125. return LVDPLLCR_PLLDIVCNT_148M;
  126. }
  127. static void rcar_lvds_enable(struct drm_bridge *bridge)
  128. {
  129. struct rcar_lvds *lvds = bridge_to_rcar_lvds(bridge);
  130. const struct drm_display_mode *mode = &lvds->display_mode;
  131. /*
  132. * FIXME: We should really retrieve the CRTC through the state, but how
  133. * do we get a state pointer?
  134. */
  135. struct drm_crtc *crtc = lvds->bridge.encoder->crtc;
  136. u32 lvdpllcr;
  137. u32 lvdhcr;
  138. u32 lvdcr0;
  139. int ret;
  140. WARN_ON(lvds->enabled);
  141. ret = clk_prepare_enable(lvds->clock);
  142. if (ret < 0)
  143. return;
  144. /*
  145. * Hardcode the channels and control signals routing for now.
  146. *
  147. * HSYNC -> CTRL0
  148. * VSYNC -> CTRL1
  149. * DISP -> CTRL2
  150. * 0 -> CTRL3
  151. */
  152. rcar_lvds_write(lvds, LVDCTRCR, LVDCTRCR_CTR3SEL_ZERO |
  153. LVDCTRCR_CTR2SEL_DISP | LVDCTRCR_CTR1SEL_VSYNC |
  154. LVDCTRCR_CTR0SEL_HSYNC);
  155. if (lvds->info->quirks & RCAR_LVDS_QUIRK_LANES)
  156. lvdhcr = LVDCHCR_CHSEL_CH(0, 0) | LVDCHCR_CHSEL_CH(1, 3)
  157. | LVDCHCR_CHSEL_CH(2, 2) | LVDCHCR_CHSEL_CH(3, 1);
  158. else
  159. lvdhcr = LVDCHCR_CHSEL_CH(0, 0) | LVDCHCR_CHSEL_CH(1, 1)
  160. | LVDCHCR_CHSEL_CH(2, 2) | LVDCHCR_CHSEL_CH(3, 3);
  161. rcar_lvds_write(lvds, LVDCHCR, lvdhcr);
  162. /* PLL clock configuration. */
  163. if (lvds->info->quirks & RCAR_LVDS_QUIRK_GEN2_PLLCR)
  164. lvdpllcr = rcar_lvds_lvdpllcr_gen2(mode->clock);
  165. else
  166. lvdpllcr = rcar_lvds_lvdpllcr_gen3(mode->clock);
  167. rcar_lvds_write(lvds, LVDPLLCR, lvdpllcr);
  168. /* Set the LVDS mode and select the input. */
  169. lvdcr0 = lvds->mode << LVDCR0_LVMD_SHIFT;
  170. if (drm_crtc_index(crtc) == 2)
  171. lvdcr0 |= LVDCR0_DUSEL;
  172. rcar_lvds_write(lvds, LVDCR0, lvdcr0);
  173. /* Turn all the channels on. */
  174. rcar_lvds_write(lvds, LVDCR1,
  175. LVDCR1_CHSTBY(3) | LVDCR1_CHSTBY(2) |
  176. LVDCR1_CHSTBY(1) | LVDCR1_CHSTBY(0) | LVDCR1_CLKSTBY);
  177. if (lvds->info->gen < 3) {
  178. /* Enable LVDS operation and turn the bias circuitry on. */
  179. lvdcr0 |= LVDCR0_BEN | LVDCR0_LVEN;
  180. rcar_lvds_write(lvds, LVDCR0, lvdcr0);
  181. }
  182. /* Turn the PLL on. */
  183. lvdcr0 |= LVDCR0_PLLON;
  184. rcar_lvds_write(lvds, LVDCR0, lvdcr0);
  185. if (lvds->info->gen > 2) {
  186. /* Set LVDS normal mode. */
  187. lvdcr0 |= LVDCR0_PWD;
  188. rcar_lvds_write(lvds, LVDCR0, lvdcr0);
  189. }
  190. if (lvds->info->quirks & RCAR_LVDS_QUIRK_GEN3_LVEN) {
  191. /* Turn on the LVDS PHY. */
  192. lvdcr0 |= LVDCR0_LVEN;
  193. rcar_lvds_write(lvds, LVDCR0, lvdcr0);
  194. }
  195. /* Wait for the startup delay. */
  196. usleep_range(100, 150);
  197. /* Turn the output on. */
  198. lvdcr0 |= LVDCR0_LVRES;
  199. rcar_lvds_write(lvds, LVDCR0, lvdcr0);
  200. if (lvds->panel) {
  201. drm_panel_prepare(lvds->panel);
  202. drm_panel_enable(lvds->panel);
  203. }
  204. lvds->enabled = true;
  205. }
  206. static void rcar_lvds_disable(struct drm_bridge *bridge)
  207. {
  208. struct rcar_lvds *lvds = bridge_to_rcar_lvds(bridge);
  209. WARN_ON(!lvds->enabled);
  210. if (lvds->panel) {
  211. drm_panel_disable(lvds->panel);
  212. drm_panel_unprepare(lvds->panel);
  213. }
  214. rcar_lvds_write(lvds, LVDCR0, 0);
  215. rcar_lvds_write(lvds, LVDCR1, 0);
  216. clk_disable_unprepare(lvds->clock);
  217. lvds->enabled = false;
  218. }
  219. static bool rcar_lvds_mode_fixup(struct drm_bridge *bridge,
  220. const struct drm_display_mode *mode,
  221. struct drm_display_mode *adjusted_mode)
  222. {
  223. /*
  224. * The internal LVDS encoder has a restricted clock frequency operating
  225. * range (31MHz to 148.5MHz). Clamp the clock accordingly.
  226. */
  227. adjusted_mode->clock = clamp(adjusted_mode->clock, 31000, 148500);
  228. return true;
  229. }
  230. static void rcar_lvds_get_lvds_mode(struct rcar_lvds *lvds)
  231. {
  232. struct drm_display_info *info = &lvds->connector.display_info;
  233. enum rcar_lvds_mode mode;
  234. /*
  235. * There is no API yet to retrieve LVDS mode from a bridge, only panels
  236. * are supported.
  237. */
  238. if (!lvds->panel)
  239. return;
  240. if (!info->num_bus_formats || !info->bus_formats) {
  241. dev_err(lvds->dev, "no LVDS bus format reported\n");
  242. return;
  243. }
  244. switch (info->bus_formats[0]) {
  245. case MEDIA_BUS_FMT_RGB666_1X7X3_SPWG:
  246. case MEDIA_BUS_FMT_RGB888_1X7X4_JEIDA:
  247. mode = RCAR_LVDS_MODE_JEIDA;
  248. break;
  249. case MEDIA_BUS_FMT_RGB888_1X7X4_SPWG:
  250. mode = RCAR_LVDS_MODE_VESA;
  251. break;
  252. default:
  253. dev_err(lvds->dev, "unsupported LVDS bus format 0x%04x\n",
  254. info->bus_formats[0]);
  255. return;
  256. }
  257. if (info->bus_flags & DRM_BUS_FLAG_DATA_LSB_TO_MSB)
  258. mode |= RCAR_LVDS_MODE_MIRROR;
  259. lvds->mode = mode;
  260. }
  261. static void rcar_lvds_mode_set(struct drm_bridge *bridge,
  262. struct drm_display_mode *mode,
  263. struct drm_display_mode *adjusted_mode)
  264. {
  265. struct rcar_lvds *lvds = bridge_to_rcar_lvds(bridge);
  266. WARN_ON(lvds->enabled);
  267. lvds->display_mode = *adjusted_mode;
  268. rcar_lvds_get_lvds_mode(lvds);
  269. }
  270. static int rcar_lvds_attach(struct drm_bridge *bridge)
  271. {
  272. struct rcar_lvds *lvds = bridge_to_rcar_lvds(bridge);
  273. struct drm_connector *connector = &lvds->connector;
  274. struct drm_encoder *encoder = bridge->encoder;
  275. int ret;
  276. /* If we have a next bridge just attach it. */
  277. if (lvds->next_bridge)
  278. return drm_bridge_attach(bridge->encoder, lvds->next_bridge,
  279. bridge);
  280. /* Otherwise we have a panel, create a connector. */
  281. ret = drm_connector_init(bridge->dev, connector, &rcar_lvds_conn_funcs,
  282. DRM_MODE_CONNECTOR_LVDS);
  283. if (ret < 0)
  284. return ret;
  285. drm_connector_helper_add(connector, &rcar_lvds_conn_helper_funcs);
  286. ret = drm_mode_connector_attach_encoder(connector, encoder);
  287. if (ret < 0)
  288. return ret;
  289. return drm_panel_attach(lvds->panel, connector);
  290. }
  291. static void rcar_lvds_detach(struct drm_bridge *bridge)
  292. {
  293. struct rcar_lvds *lvds = bridge_to_rcar_lvds(bridge);
  294. if (lvds->panel)
  295. drm_panel_detach(lvds->panel);
  296. }
  297. static const struct drm_bridge_funcs rcar_lvds_bridge_ops = {
  298. .attach = rcar_lvds_attach,
  299. .detach = rcar_lvds_detach,
  300. .enable = rcar_lvds_enable,
  301. .disable = rcar_lvds_disable,
  302. .mode_fixup = rcar_lvds_mode_fixup,
  303. .mode_set = rcar_lvds_mode_set,
  304. };
  305. /* -----------------------------------------------------------------------------
  306. * Probe & Remove
  307. */
  308. static int rcar_lvds_parse_dt(struct rcar_lvds *lvds)
  309. {
  310. struct device_node *local_output = NULL;
  311. struct device_node *remote_input = NULL;
  312. struct device_node *remote = NULL;
  313. struct device_node *node;
  314. bool is_bridge = false;
  315. int ret = 0;
  316. local_output = of_graph_get_endpoint_by_regs(lvds->dev->of_node, 1, 0);
  317. if (!local_output) {
  318. dev_dbg(lvds->dev, "unconnected port@1\n");
  319. return -ENODEV;
  320. }
  321. /*
  322. * Locate the connected entity and infer its type from the number of
  323. * endpoints.
  324. */
  325. remote = of_graph_get_remote_port_parent(local_output);
  326. if (!remote) {
  327. dev_dbg(lvds->dev, "unconnected endpoint %pOF\n", local_output);
  328. ret = -ENODEV;
  329. goto done;
  330. }
  331. if (!of_device_is_available(remote)) {
  332. dev_dbg(lvds->dev, "connected entity %pOF is disabled\n",
  333. remote);
  334. ret = -ENODEV;
  335. goto done;
  336. }
  337. remote_input = of_graph_get_remote_endpoint(local_output);
  338. for_each_endpoint_of_node(remote, node) {
  339. if (node != remote_input) {
  340. /*
  341. * We've found one endpoint other than the input, this
  342. * must be a bridge.
  343. */
  344. is_bridge = true;
  345. of_node_put(node);
  346. break;
  347. }
  348. }
  349. if (is_bridge) {
  350. lvds->next_bridge = of_drm_find_bridge(remote);
  351. if (!lvds->next_bridge)
  352. ret = -EPROBE_DEFER;
  353. } else {
  354. lvds->panel = of_drm_find_panel(remote);
  355. if (!lvds->panel)
  356. ret = -EPROBE_DEFER;
  357. }
  358. done:
  359. of_node_put(local_output);
  360. of_node_put(remote_input);
  361. of_node_put(remote);
  362. return ret;
  363. }
  364. static int rcar_lvds_probe(struct platform_device *pdev)
  365. {
  366. struct rcar_lvds *lvds;
  367. struct resource *mem;
  368. int ret;
  369. lvds = devm_kzalloc(&pdev->dev, sizeof(*lvds), GFP_KERNEL);
  370. if (lvds == NULL)
  371. return -ENOMEM;
  372. platform_set_drvdata(pdev, lvds);
  373. lvds->dev = &pdev->dev;
  374. lvds->info = of_device_get_match_data(&pdev->dev);
  375. lvds->enabled = false;
  376. ret = rcar_lvds_parse_dt(lvds);
  377. if (ret < 0)
  378. return ret;
  379. lvds->bridge.driver_private = lvds;
  380. lvds->bridge.funcs = &rcar_lvds_bridge_ops;
  381. lvds->bridge.of_node = pdev->dev.of_node;
  382. mem = platform_get_resource(pdev, IORESOURCE_MEM, 0);
  383. lvds->mmio = devm_ioremap_resource(&pdev->dev, mem);
  384. if (IS_ERR(lvds->mmio))
  385. return PTR_ERR(lvds->mmio);
  386. lvds->clock = devm_clk_get(&pdev->dev, NULL);
  387. if (IS_ERR(lvds->clock)) {
  388. dev_err(&pdev->dev, "failed to get clock\n");
  389. return PTR_ERR(lvds->clock);
  390. }
  391. drm_bridge_add(&lvds->bridge);
  392. return 0;
  393. }
  394. static int rcar_lvds_remove(struct platform_device *pdev)
  395. {
  396. struct rcar_lvds *lvds = platform_get_drvdata(pdev);
  397. drm_bridge_remove(&lvds->bridge);
  398. return 0;
  399. }
  400. static const struct rcar_lvds_device_info rcar_lvds_gen2_info = {
  401. .gen = 2,
  402. .quirks = RCAR_LVDS_QUIRK_GEN2_PLLCR,
  403. };
  404. static const struct rcar_lvds_device_info rcar_lvds_r8a7790_info = {
  405. .gen = 2,
  406. .quirks = RCAR_LVDS_QUIRK_GEN2_PLLCR | RCAR_LVDS_QUIRK_LANES,
  407. };
  408. static const struct rcar_lvds_device_info rcar_lvds_gen3_info = {
  409. .gen = 3,
  410. };
  411. static const struct rcar_lvds_device_info rcar_lvds_r8a77970_info = {
  412. .gen = 3,
  413. .quirks = RCAR_LVDS_QUIRK_GEN2_PLLCR | RCAR_LVDS_QUIRK_GEN3_LVEN,
  414. };
  415. static const struct of_device_id rcar_lvds_of_table[] = {
  416. { .compatible = "renesas,r8a7743-lvds", .data = &rcar_lvds_gen2_info },
  417. { .compatible = "renesas,r8a7790-lvds", .data = &rcar_lvds_r8a7790_info },
  418. { .compatible = "renesas,r8a7791-lvds", .data = &rcar_lvds_gen2_info },
  419. { .compatible = "renesas,r8a7793-lvds", .data = &rcar_lvds_gen2_info },
  420. { .compatible = "renesas,r8a7795-lvds", .data = &rcar_lvds_gen3_info },
  421. { .compatible = "renesas,r8a7796-lvds", .data = &rcar_lvds_gen3_info },
  422. { .compatible = "renesas,r8a77970-lvds", .data = &rcar_lvds_r8a77970_info },
  423. { }
  424. };
  425. MODULE_DEVICE_TABLE(of, rcar_lvds_of_table);
  426. static struct platform_driver rcar_lvds_platform_driver = {
  427. .probe = rcar_lvds_probe,
  428. .remove = rcar_lvds_remove,
  429. .driver = {
  430. .name = "rcar-lvds",
  431. .of_match_table = rcar_lvds_of_table,
  432. },
  433. };
  434. module_platform_driver(rcar_lvds_platform_driver);
  435. MODULE_AUTHOR("Laurent Pinchart <laurent.pinchart@ideasonboard.com>");
  436. MODULE_DESCRIPTION("Renesas R-Car LVDS Encoder Driver");
  437. MODULE_LICENSE("GPL");