1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright (c) 2014 MediaTek Inc.
4  * Author: Jie Qiu <[email protected]>
5  */
6 
7 #include <linux/clk.h>
8 #include <linux/component.h>
9 #include <linux/interrupt.h>
10 #include <linux/kernel.h>
11 #include <linux/media-bus-format.h>
12 #include <linux/of.h>
13 #include <linux/of_graph.h>
14 #include <linux/pinctrl/consumer.h>
15 #include <linux/platform_device.h>
16 #include <linux/soc/mediatek/mtk-mmsys.h>
17 #include <linux/types.h>
18 
19 #include <video/videomode.h>
20 
21 #include <drm/drm_atomic_helper.h>
22 #include <drm/drm_bridge.h>
23 #include <drm/drm_bridge_connector.h>
24 #include <drm/drm_crtc.h>
25 #include <drm/drm_edid.h>
26 #include <drm/drm_of.h>
27 #include <drm/drm_simple_kms_helper.h>
28 
29 #include "mtk_ddp_comp.h"
30 #include "mtk_disp_drv.h"
31 #include "mtk_dpi_regs.h"
32 #include "mtk_drm_drv.h"
33 
34 enum mtk_dpi_out_bit_num {
35 	MTK_DPI_OUT_BIT_NUM_8BITS,
36 	MTK_DPI_OUT_BIT_NUM_10BITS,
37 	MTK_DPI_OUT_BIT_NUM_12BITS,
38 	MTK_DPI_OUT_BIT_NUM_16BITS
39 };
40 
41 enum mtk_dpi_out_yc_map {
42 	MTK_DPI_OUT_YC_MAP_RGB,
43 	MTK_DPI_OUT_YC_MAP_CYCY,
44 	MTK_DPI_OUT_YC_MAP_YCYC,
45 	MTK_DPI_OUT_YC_MAP_CY,
46 	MTK_DPI_OUT_YC_MAP_YC
47 };
48 
49 enum mtk_dpi_out_channel_swap {
50 	MTK_DPI_OUT_CHANNEL_SWAP_RGB,
51 	MTK_DPI_OUT_CHANNEL_SWAP_GBR,
52 	MTK_DPI_OUT_CHANNEL_SWAP_BRG,
53 	MTK_DPI_OUT_CHANNEL_SWAP_RBG,
54 	MTK_DPI_OUT_CHANNEL_SWAP_GRB,
55 	MTK_DPI_OUT_CHANNEL_SWAP_BGR
56 };
57 
58 enum mtk_dpi_out_color_format {
59 	MTK_DPI_COLOR_FORMAT_RGB,
60 	MTK_DPI_COLOR_FORMAT_YCBCR_422
61 };
62 
63 struct mtk_dpi {
64 	struct drm_encoder encoder;
65 	struct drm_bridge bridge;
66 	struct drm_bridge *next_bridge;
67 	struct drm_connector *connector;
68 	void __iomem *regs;
69 	struct device *dev;
70 	struct device *mmsys_dev;
71 	struct clk *engine_clk;
72 	struct clk *pixel_clk;
73 	struct clk *tvd_clk;
74 	int irq;
75 	struct drm_display_mode mode;
76 	const struct mtk_dpi_conf *conf;
77 	enum mtk_dpi_out_color_format color_format;
78 	enum mtk_dpi_out_yc_map yc_map;
79 	enum mtk_dpi_out_bit_num bit_num;
80 	enum mtk_dpi_out_channel_swap channel_swap;
81 	struct pinctrl *pinctrl;
82 	struct pinctrl_state *pins_gpio;
83 	struct pinctrl_state *pins_dpi;
84 	u32 output_fmt;
85 	int refcount;
86 };
87 
bridge_to_dpi(struct drm_bridge * b)88 static inline struct mtk_dpi *bridge_to_dpi(struct drm_bridge *b)
89 {
90 	return container_of(b, struct mtk_dpi, bridge);
91 }
92 
93 enum mtk_dpi_polarity {
94 	MTK_DPI_POLARITY_RISING,
95 	MTK_DPI_POLARITY_FALLING,
96 };
97 
98 struct mtk_dpi_polarities {
99 	enum mtk_dpi_polarity de_pol;
100 	enum mtk_dpi_polarity ck_pol;
101 	enum mtk_dpi_polarity hsync_pol;
102 	enum mtk_dpi_polarity vsync_pol;
103 };
104 
105 struct mtk_dpi_sync_param {
106 	u32 sync_width;
107 	u32 front_porch;
108 	u32 back_porch;
109 	bool shift_half_line;
110 };
111 
112 struct mtk_dpi_yc_limit {
113 	u16 y_top;
114 	u16 y_bottom;
115 	u16 c_top;
116 	u16 c_bottom;
117 };
118 
119 /**
120  * struct mtk_dpi_conf - Configuration of mediatek dpi.
121  * @cal_factor: Callback function to calculate factor value.
122  * @reg_h_fre_con: Register address of frequency control.
123  * @max_clock_khz: Max clock frequency supported for this SoCs in khz units.
124  * @edge_sel_en: Enable of edge selection.
125  * @output_fmts: Array of supported output formats.
126  * @num_output_fmts: Quantity of supported output formats.
127  * @is_ck_de_pol: Support CK/DE polarity.
128  * @swap_input_support: Support input swap function.
129  * @support_direct_pin: IP supports direct connection to dpi panels.
130  * @dimension_mask: Mask used for HWIDTH, HPORCH, VSYNC_WIDTH and VSYNC_PORCH
131  *		    (no shift).
132  * @hvsize_mask: Mask of HSIZE and VSIZE mask (no shift).
133  * @channel_swap_shift: Shift value of channel swap.
134  * @yuv422_en_bit: Enable bit of yuv422.
135  * @csc_enable_bit: Enable bit of CSC.
136  * @input_2p_en_bit: Enable bit for input two pixel per round feature.
137  *		     If present, implies that the feature must be enabled.
138  * @pixels_per_iter: Quantity of transferred pixels per iteration.
139  * @edge_cfg_in_mmsys: If the edge configuration for DPI's output needs to be set in MMSYS.
140  */
141 struct mtk_dpi_conf {
142 	unsigned int (*cal_factor)(int clock);
143 	u32 reg_h_fre_con;
144 	u32 max_clock_khz;
145 	bool edge_sel_en;
146 	const u32 *output_fmts;
147 	u32 num_output_fmts;
148 	bool is_ck_de_pol;
149 	bool swap_input_support;
150 	bool support_direct_pin;
151 	u32 dimension_mask;
152 	u32 hvsize_mask;
153 	u32 channel_swap_shift;
154 	u32 yuv422_en_bit;
155 	u32 csc_enable_bit;
156 	u32 input_2p_en_bit;
157 	u32 pixels_per_iter;
158 	bool edge_cfg_in_mmsys;
159 };
160 
mtk_dpi_mask(struct mtk_dpi * dpi,u32 offset,u32 val,u32 mask)161 static void mtk_dpi_mask(struct mtk_dpi *dpi, u32 offset, u32 val, u32 mask)
162 {
163 	u32 tmp = readl(dpi->regs + offset) & ~mask;
164 
165 	tmp |= (val & mask);
166 	writel(tmp, dpi->regs + offset);
167 }
168 
mtk_dpi_sw_reset(struct mtk_dpi * dpi,bool reset)169 static void mtk_dpi_sw_reset(struct mtk_dpi *dpi, bool reset)
170 {
171 	mtk_dpi_mask(dpi, DPI_RET, reset ? RST : 0, RST);
172 }
173 
mtk_dpi_enable(struct mtk_dpi * dpi)174 static void mtk_dpi_enable(struct mtk_dpi *dpi)
175 {
176 	mtk_dpi_mask(dpi, DPI_EN, EN, EN);
177 }
178 
mtk_dpi_disable(struct mtk_dpi * dpi)179 static void mtk_dpi_disable(struct mtk_dpi *dpi)
180 {
181 	mtk_dpi_mask(dpi, DPI_EN, 0, EN);
182 }
183 
mtk_dpi_config_hsync(struct mtk_dpi * dpi,struct mtk_dpi_sync_param * sync)184 static void mtk_dpi_config_hsync(struct mtk_dpi *dpi,
185 				 struct mtk_dpi_sync_param *sync)
186 {
187 	mtk_dpi_mask(dpi, DPI_TGEN_HWIDTH, sync->sync_width << HPW,
188 		     dpi->conf->dimension_mask << HPW);
189 	mtk_dpi_mask(dpi, DPI_TGEN_HPORCH, sync->back_porch << HBP,
190 		     dpi->conf->dimension_mask << HBP);
191 	mtk_dpi_mask(dpi, DPI_TGEN_HPORCH, sync->front_porch << HFP,
192 		     dpi->conf->dimension_mask << HFP);
193 }
194 
mtk_dpi_config_vsync(struct mtk_dpi * dpi,struct mtk_dpi_sync_param * sync,u32 width_addr,u32 porch_addr)195 static void mtk_dpi_config_vsync(struct mtk_dpi *dpi,
196 				 struct mtk_dpi_sync_param *sync,
197 				 u32 width_addr, u32 porch_addr)
198 {
199 	mtk_dpi_mask(dpi, width_addr,
200 		     sync->shift_half_line << VSYNC_HALF_LINE_SHIFT,
201 		     VSYNC_HALF_LINE_MASK);
202 	mtk_dpi_mask(dpi, width_addr,
203 		     sync->sync_width << VSYNC_WIDTH_SHIFT,
204 		     dpi->conf->dimension_mask << VSYNC_WIDTH_SHIFT);
205 	mtk_dpi_mask(dpi, porch_addr,
206 		     sync->back_porch << VSYNC_BACK_PORCH_SHIFT,
207 		     dpi->conf->dimension_mask << VSYNC_BACK_PORCH_SHIFT);
208 	mtk_dpi_mask(dpi, porch_addr,
209 		     sync->front_porch << VSYNC_FRONT_PORCH_SHIFT,
210 		     dpi->conf->dimension_mask << VSYNC_FRONT_PORCH_SHIFT);
211 }
212 
mtk_dpi_config_vsync_lodd(struct mtk_dpi * dpi,struct mtk_dpi_sync_param * sync)213 static void mtk_dpi_config_vsync_lodd(struct mtk_dpi *dpi,
214 				      struct mtk_dpi_sync_param *sync)
215 {
216 	mtk_dpi_config_vsync(dpi, sync, DPI_TGEN_VWIDTH, DPI_TGEN_VPORCH);
217 }
218 
mtk_dpi_config_vsync_leven(struct mtk_dpi * dpi,struct mtk_dpi_sync_param * sync)219 static void mtk_dpi_config_vsync_leven(struct mtk_dpi *dpi,
220 				       struct mtk_dpi_sync_param *sync)
221 {
222 	mtk_dpi_config_vsync(dpi, sync, DPI_TGEN_VWIDTH_LEVEN,
223 			     DPI_TGEN_VPORCH_LEVEN);
224 }
225 
mtk_dpi_config_vsync_rodd(struct mtk_dpi * dpi,struct mtk_dpi_sync_param * sync)226 static void mtk_dpi_config_vsync_rodd(struct mtk_dpi *dpi,
227 				      struct mtk_dpi_sync_param *sync)
228 {
229 	mtk_dpi_config_vsync(dpi, sync, DPI_TGEN_VWIDTH_RODD,
230 			     DPI_TGEN_VPORCH_RODD);
231 }
232 
mtk_dpi_config_vsync_reven(struct mtk_dpi * dpi,struct mtk_dpi_sync_param * sync)233 static void mtk_dpi_config_vsync_reven(struct mtk_dpi *dpi,
234 				       struct mtk_dpi_sync_param *sync)
235 {
236 	mtk_dpi_config_vsync(dpi, sync, DPI_TGEN_VWIDTH_REVEN,
237 			     DPI_TGEN_VPORCH_REVEN);
238 }
239 
mtk_dpi_config_pol(struct mtk_dpi * dpi,struct mtk_dpi_polarities * dpi_pol)240 static void mtk_dpi_config_pol(struct mtk_dpi *dpi,
241 			       struct mtk_dpi_polarities *dpi_pol)
242 {
243 	unsigned int pol;
244 	unsigned int mask;
245 
246 	mask = HSYNC_POL | VSYNC_POL;
247 	pol = (dpi_pol->hsync_pol == MTK_DPI_POLARITY_RISING ? 0 : HSYNC_POL) |
248 	      (dpi_pol->vsync_pol == MTK_DPI_POLARITY_RISING ? 0 : VSYNC_POL);
249 	if (dpi->conf->is_ck_de_pol) {
250 		mask |= CK_POL | DE_POL;
251 		pol |= (dpi_pol->ck_pol == MTK_DPI_POLARITY_RISING ?
252 			0 : CK_POL) |
253 		       (dpi_pol->de_pol == MTK_DPI_POLARITY_RISING ?
254 			0 : DE_POL);
255 	}
256 
257 	mtk_dpi_mask(dpi, DPI_OUTPUT_SETTING, pol, mask);
258 }
259 
mtk_dpi_config_3d(struct mtk_dpi * dpi,bool en_3d)260 static void mtk_dpi_config_3d(struct mtk_dpi *dpi, bool en_3d)
261 {
262 	mtk_dpi_mask(dpi, DPI_CON, en_3d ? TDFP_EN : 0, TDFP_EN);
263 }
264 
mtk_dpi_config_interface(struct mtk_dpi * dpi,bool inter)265 static void mtk_dpi_config_interface(struct mtk_dpi *dpi, bool inter)
266 {
267 	mtk_dpi_mask(dpi, DPI_CON, inter ? INTL_EN : 0, INTL_EN);
268 }
269 
mtk_dpi_config_fb_size(struct mtk_dpi * dpi,u32 width,u32 height)270 static void mtk_dpi_config_fb_size(struct mtk_dpi *dpi, u32 width, u32 height)
271 {
272 	mtk_dpi_mask(dpi, DPI_SIZE, width << HSIZE,
273 		     dpi->conf->hvsize_mask << HSIZE);
274 	mtk_dpi_mask(dpi, DPI_SIZE, height << VSIZE,
275 		     dpi->conf->hvsize_mask << VSIZE);
276 }
277 
mtk_dpi_config_channel_limit(struct mtk_dpi * dpi)278 static void mtk_dpi_config_channel_limit(struct mtk_dpi *dpi)
279 {
280 	struct mtk_dpi_yc_limit limit;
281 
282 	if (drm_default_rgb_quant_range(&dpi->mode) ==
283 	    HDMI_QUANTIZATION_RANGE_LIMITED) {
284 		limit.y_bottom = 0x10;
285 		limit.y_top = 0xfe0;
286 		limit.c_bottom = 0x10;
287 		limit.c_top = 0xfe0;
288 	} else {
289 		limit.y_bottom = 0;
290 		limit.y_top = 0xfff;
291 		limit.c_bottom = 0;
292 		limit.c_top = 0xfff;
293 	}
294 
295 	mtk_dpi_mask(dpi, DPI_Y_LIMIT, limit.y_bottom << Y_LIMINT_BOT,
296 		     Y_LIMINT_BOT_MASK);
297 	mtk_dpi_mask(dpi, DPI_Y_LIMIT, limit.y_top << Y_LIMINT_TOP,
298 		     Y_LIMINT_TOP_MASK);
299 	mtk_dpi_mask(dpi, DPI_C_LIMIT, limit.c_bottom << C_LIMIT_BOT,
300 		     C_LIMIT_BOT_MASK);
301 	mtk_dpi_mask(dpi, DPI_C_LIMIT, limit.c_top << C_LIMIT_TOP,
302 		     C_LIMIT_TOP_MASK);
303 }
304 
mtk_dpi_config_bit_num(struct mtk_dpi * dpi,enum mtk_dpi_out_bit_num num)305 static void mtk_dpi_config_bit_num(struct mtk_dpi *dpi,
306 				   enum mtk_dpi_out_bit_num num)
307 {
308 	u32 val;
309 
310 	switch (num) {
311 	case MTK_DPI_OUT_BIT_NUM_8BITS:
312 		val = OUT_BIT_8;
313 		break;
314 	case MTK_DPI_OUT_BIT_NUM_10BITS:
315 		val = OUT_BIT_10;
316 		break;
317 	case MTK_DPI_OUT_BIT_NUM_12BITS:
318 		val = OUT_BIT_12;
319 		break;
320 	case MTK_DPI_OUT_BIT_NUM_16BITS:
321 		val = OUT_BIT_16;
322 		break;
323 	default:
324 		val = OUT_BIT_8;
325 		break;
326 	}
327 	mtk_dpi_mask(dpi, DPI_OUTPUT_SETTING, val << OUT_BIT,
328 		     OUT_BIT_MASK);
329 }
330 
mtk_dpi_config_yc_map(struct mtk_dpi * dpi,enum mtk_dpi_out_yc_map map)331 static void mtk_dpi_config_yc_map(struct mtk_dpi *dpi,
332 				  enum mtk_dpi_out_yc_map map)
333 {
334 	u32 val;
335 
336 	switch (map) {
337 	case MTK_DPI_OUT_YC_MAP_RGB:
338 		val = YC_MAP_RGB;
339 		break;
340 	case MTK_DPI_OUT_YC_MAP_CYCY:
341 		val = YC_MAP_CYCY;
342 		break;
343 	case MTK_DPI_OUT_YC_MAP_YCYC:
344 		val = YC_MAP_YCYC;
345 		break;
346 	case MTK_DPI_OUT_YC_MAP_CY:
347 		val = YC_MAP_CY;
348 		break;
349 	case MTK_DPI_OUT_YC_MAP_YC:
350 		val = YC_MAP_YC;
351 		break;
352 	default:
353 		val = YC_MAP_RGB;
354 		break;
355 	}
356 
357 	mtk_dpi_mask(dpi, DPI_OUTPUT_SETTING, val << YC_MAP, YC_MAP_MASK);
358 }
359 
mtk_dpi_config_channel_swap(struct mtk_dpi * dpi,enum mtk_dpi_out_channel_swap swap)360 static void mtk_dpi_config_channel_swap(struct mtk_dpi *dpi,
361 					enum mtk_dpi_out_channel_swap swap)
362 {
363 	u32 val;
364 
365 	switch (swap) {
366 	case MTK_DPI_OUT_CHANNEL_SWAP_RGB:
367 		val = SWAP_RGB;
368 		break;
369 	case MTK_DPI_OUT_CHANNEL_SWAP_GBR:
370 		val = SWAP_GBR;
371 		break;
372 	case MTK_DPI_OUT_CHANNEL_SWAP_BRG:
373 		val = SWAP_BRG;
374 		break;
375 	case MTK_DPI_OUT_CHANNEL_SWAP_RBG:
376 		val = SWAP_RBG;
377 		break;
378 	case MTK_DPI_OUT_CHANNEL_SWAP_GRB:
379 		val = SWAP_GRB;
380 		break;
381 	case MTK_DPI_OUT_CHANNEL_SWAP_BGR:
382 		val = SWAP_BGR;
383 		break;
384 	default:
385 		val = SWAP_RGB;
386 		break;
387 	}
388 
389 	mtk_dpi_mask(dpi, DPI_OUTPUT_SETTING,
390 		     val << dpi->conf->channel_swap_shift,
391 		     CH_SWAP_MASK << dpi->conf->channel_swap_shift);
392 }
393 
mtk_dpi_config_yuv422_enable(struct mtk_dpi * dpi,bool enable)394 static void mtk_dpi_config_yuv422_enable(struct mtk_dpi *dpi, bool enable)
395 {
396 	mtk_dpi_mask(dpi, DPI_CON, enable ? dpi->conf->yuv422_en_bit : 0,
397 		     dpi->conf->yuv422_en_bit);
398 }
399 
mtk_dpi_config_csc_enable(struct mtk_dpi * dpi,bool enable)400 static void mtk_dpi_config_csc_enable(struct mtk_dpi *dpi, bool enable)
401 {
402 	mtk_dpi_mask(dpi, DPI_CON, enable ? dpi->conf->csc_enable_bit : 0,
403 		     dpi->conf->csc_enable_bit);
404 }
405 
mtk_dpi_config_swap_input(struct mtk_dpi * dpi,bool enable)406 static void mtk_dpi_config_swap_input(struct mtk_dpi *dpi, bool enable)
407 {
408 	mtk_dpi_mask(dpi, DPI_CON, enable ? IN_RB_SWAP : 0, IN_RB_SWAP);
409 }
410 
mtk_dpi_config_2n_h_fre(struct mtk_dpi * dpi)411 static void mtk_dpi_config_2n_h_fre(struct mtk_dpi *dpi)
412 {
413 	mtk_dpi_mask(dpi, dpi->conf->reg_h_fre_con, H_FRE_2N, H_FRE_2N);
414 }
415 
mtk_dpi_config_disable_edge(struct mtk_dpi * dpi)416 static void mtk_dpi_config_disable_edge(struct mtk_dpi *dpi)
417 {
418 	if (dpi->conf->edge_sel_en)
419 		mtk_dpi_mask(dpi, dpi->conf->reg_h_fre_con, 0, EDGE_SEL_EN);
420 }
421 
mtk_dpi_config_color_format(struct mtk_dpi * dpi,enum mtk_dpi_out_color_format format)422 static void mtk_dpi_config_color_format(struct mtk_dpi *dpi,
423 					enum mtk_dpi_out_color_format format)
424 {
425 	mtk_dpi_config_channel_swap(dpi, MTK_DPI_OUT_CHANNEL_SWAP_RGB);
426 
427 	if (format == MTK_DPI_COLOR_FORMAT_YCBCR_422) {
428 		mtk_dpi_config_yuv422_enable(dpi, true);
429 		mtk_dpi_config_csc_enable(dpi, true);
430 
431 		/*
432 		 * If height is smaller than 720, we need to use RGB_TO_BT601
433 		 * to transfer to yuv422. Otherwise, we use RGB_TO_JPEG.
434 		 */
435 		mtk_dpi_mask(dpi, DPI_MATRIX_SET, dpi->mode.hdisplay <= 720 ?
436 			     MATRIX_SEL_RGB_TO_BT601 : MATRIX_SEL_RGB_TO_JPEG,
437 			     INT_MATRIX_SEL_MASK);
438 	} else {
439 		mtk_dpi_config_yuv422_enable(dpi, false);
440 		mtk_dpi_config_csc_enable(dpi, false);
441 		if (dpi->conf->swap_input_support)
442 			mtk_dpi_config_swap_input(dpi, false);
443 	}
444 }
445 
mtk_dpi_dual_edge(struct mtk_dpi * dpi)446 static void mtk_dpi_dual_edge(struct mtk_dpi *dpi)
447 {
448 	if ((dpi->output_fmt == MEDIA_BUS_FMT_RGB888_2X12_LE) ||
449 	    (dpi->output_fmt == MEDIA_BUS_FMT_RGB888_2X12_BE)) {
450 		mtk_dpi_mask(dpi, DPI_DDR_SETTING, DDR_EN | DDR_4PHASE,
451 			     DDR_EN | DDR_4PHASE);
452 		mtk_dpi_mask(dpi, DPI_OUTPUT_SETTING,
453 			     dpi->output_fmt == MEDIA_BUS_FMT_RGB888_2X12_LE ?
454 			     EDGE_SEL : 0, EDGE_SEL);
455 		if (dpi->conf->edge_cfg_in_mmsys)
456 			mtk_mmsys_ddp_dpi_fmt_config(dpi->mmsys_dev, MTK_DPI_RGB888_DDR_CON);
457 	} else {
458 		mtk_dpi_mask(dpi, DPI_DDR_SETTING, DDR_EN | DDR_4PHASE, 0);
459 		if (dpi->conf->edge_cfg_in_mmsys)
460 			mtk_mmsys_ddp_dpi_fmt_config(dpi->mmsys_dev, MTK_DPI_RGB888_SDR_CON);
461 	}
462 }
463 
mtk_dpi_power_off(struct mtk_dpi * dpi)464 static void mtk_dpi_power_off(struct mtk_dpi *dpi)
465 {
466 	if (WARN_ON(dpi->refcount == 0))
467 		return;
468 
469 	if (--dpi->refcount != 0)
470 		return;
471 
472 	mtk_dpi_disable(dpi);
473 	clk_disable_unprepare(dpi->pixel_clk);
474 	clk_disable_unprepare(dpi->tvd_clk);
475 	clk_disable_unprepare(dpi->engine_clk);
476 }
477 
mtk_dpi_power_on(struct mtk_dpi * dpi)478 static int mtk_dpi_power_on(struct mtk_dpi *dpi)
479 {
480 	int ret;
481 
482 	if (++dpi->refcount != 1)
483 		return 0;
484 
485 	ret = clk_prepare_enable(dpi->engine_clk);
486 	if (ret) {
487 		dev_err(dpi->dev, "Failed to enable engine clock: %d\n", ret);
488 		goto err_refcount;
489 	}
490 
491 	ret = clk_prepare_enable(dpi->tvd_clk);
492 	if (ret) {
493 		dev_err(dpi->dev, "Failed to enable tvd pll: %d\n", ret);
494 		goto err_engine;
495 	}
496 
497 	ret = clk_prepare_enable(dpi->pixel_clk);
498 	if (ret) {
499 		dev_err(dpi->dev, "Failed to enable pixel clock: %d\n", ret);
500 		goto err_pixel;
501 	}
502 
503 	return 0;
504 
505 err_pixel:
506 	clk_disable_unprepare(dpi->tvd_clk);
507 err_engine:
508 	clk_disable_unprepare(dpi->engine_clk);
509 err_refcount:
510 	dpi->refcount--;
511 	return ret;
512 }
513 
mtk_dpi_set_display_mode(struct mtk_dpi * dpi,struct drm_display_mode * mode)514 static int mtk_dpi_set_display_mode(struct mtk_dpi *dpi,
515 				    struct drm_display_mode *mode)
516 {
517 	struct mtk_dpi_polarities dpi_pol;
518 	struct mtk_dpi_sync_param hsync;
519 	struct mtk_dpi_sync_param vsync_lodd = { 0 };
520 	struct mtk_dpi_sync_param vsync_leven = { 0 };
521 	struct mtk_dpi_sync_param vsync_rodd = { 0 };
522 	struct mtk_dpi_sync_param vsync_reven = { 0 };
523 	struct videomode vm = { 0 };
524 	unsigned long pll_rate;
525 	unsigned int factor;
526 
527 	/* let pll_rate can fix the valid range of tvdpll (1G~2GHz) */
528 	factor = dpi->conf->cal_factor(mode->clock);
529 	drm_display_mode_to_videomode(mode, &vm);
530 	pll_rate = vm.pixelclock * factor;
531 
532 	dev_dbg(dpi->dev, "Want PLL %lu Hz, pixel clock %lu Hz\n",
533 		pll_rate, vm.pixelclock);
534 
535 	clk_set_rate(dpi->tvd_clk, pll_rate);
536 	pll_rate = clk_get_rate(dpi->tvd_clk);
537 
538 	/*
539 	 * Depending on the IP version, we may output a different amount of
540 	 * pixels for each iteration: divide the clock by this number and
541 	 * adjust the display porches accordingly.
542 	 */
543 	vm.pixelclock = pll_rate / factor;
544 	vm.pixelclock /= dpi->conf->pixels_per_iter;
545 
546 	if ((dpi->output_fmt == MEDIA_BUS_FMT_RGB888_2X12_LE) ||
547 	    (dpi->output_fmt == MEDIA_BUS_FMT_RGB888_2X12_BE))
548 		clk_set_rate(dpi->pixel_clk, vm.pixelclock * 2);
549 	else
550 		clk_set_rate(dpi->pixel_clk, vm.pixelclock);
551 
552 
553 	vm.pixelclock = clk_get_rate(dpi->pixel_clk);
554 
555 	dev_dbg(dpi->dev, "Got  PLL %lu Hz, pixel clock %lu Hz\n",
556 		pll_rate, vm.pixelclock);
557 
558 	dpi_pol.ck_pol = MTK_DPI_POLARITY_FALLING;
559 	dpi_pol.de_pol = MTK_DPI_POLARITY_RISING;
560 	dpi_pol.hsync_pol = vm.flags & DISPLAY_FLAGS_HSYNC_HIGH ?
561 			    MTK_DPI_POLARITY_FALLING : MTK_DPI_POLARITY_RISING;
562 	dpi_pol.vsync_pol = vm.flags & DISPLAY_FLAGS_VSYNC_HIGH ?
563 			    MTK_DPI_POLARITY_FALLING : MTK_DPI_POLARITY_RISING;
564 
565 	/*
566 	 * Depending on the IP version, we may output a different amount of
567 	 * pixels for each iteration: divide the clock by this number and
568 	 * adjust the display porches accordingly.
569 	 */
570 	hsync.sync_width = vm.hsync_len / dpi->conf->pixels_per_iter;
571 	hsync.back_porch = vm.hback_porch / dpi->conf->pixels_per_iter;
572 	hsync.front_porch = vm.hfront_porch / dpi->conf->pixels_per_iter;
573 
574 	hsync.shift_half_line = false;
575 	vsync_lodd.sync_width = vm.vsync_len;
576 	vsync_lodd.back_porch = vm.vback_porch;
577 	vsync_lodd.front_porch = vm.vfront_porch;
578 	vsync_lodd.shift_half_line = false;
579 
580 	if (vm.flags & DISPLAY_FLAGS_INTERLACED &&
581 	    mode->flags & DRM_MODE_FLAG_3D_MASK) {
582 		vsync_leven = vsync_lodd;
583 		vsync_rodd = vsync_lodd;
584 		vsync_reven = vsync_lodd;
585 		vsync_leven.shift_half_line = true;
586 		vsync_reven.shift_half_line = true;
587 	} else if (vm.flags & DISPLAY_FLAGS_INTERLACED &&
588 		   !(mode->flags & DRM_MODE_FLAG_3D_MASK)) {
589 		vsync_leven = vsync_lodd;
590 		vsync_leven.shift_half_line = true;
591 	} else if (!(vm.flags & DISPLAY_FLAGS_INTERLACED) &&
592 		   mode->flags & DRM_MODE_FLAG_3D_MASK) {
593 		vsync_rodd = vsync_lodd;
594 	}
595 	mtk_dpi_sw_reset(dpi, true);
596 	mtk_dpi_config_pol(dpi, &dpi_pol);
597 
598 	mtk_dpi_config_hsync(dpi, &hsync);
599 	mtk_dpi_config_vsync_lodd(dpi, &vsync_lodd);
600 	mtk_dpi_config_vsync_rodd(dpi, &vsync_rodd);
601 	mtk_dpi_config_vsync_leven(dpi, &vsync_leven);
602 	mtk_dpi_config_vsync_reven(dpi, &vsync_reven);
603 
604 	mtk_dpi_config_3d(dpi, !!(mode->flags & DRM_MODE_FLAG_3D_MASK));
605 	mtk_dpi_config_interface(dpi, !!(vm.flags &
606 					 DISPLAY_FLAGS_INTERLACED));
607 	if (vm.flags & DISPLAY_FLAGS_INTERLACED)
608 		mtk_dpi_config_fb_size(dpi, vm.hactive, vm.vactive >> 1);
609 	else
610 		mtk_dpi_config_fb_size(dpi, vm.hactive, vm.vactive);
611 
612 	mtk_dpi_config_channel_limit(dpi);
613 	mtk_dpi_config_bit_num(dpi, dpi->bit_num);
614 	mtk_dpi_config_channel_swap(dpi, dpi->channel_swap);
615 	mtk_dpi_config_color_format(dpi, dpi->color_format);
616 	if (dpi->conf->support_direct_pin) {
617 		mtk_dpi_config_yc_map(dpi, dpi->yc_map);
618 		mtk_dpi_config_2n_h_fre(dpi);
619 		mtk_dpi_dual_edge(dpi);
620 		mtk_dpi_config_disable_edge(dpi);
621 	}
622 	if (dpi->conf->input_2p_en_bit) {
623 		mtk_dpi_mask(dpi, DPI_CON, dpi->conf->input_2p_en_bit,
624 			     dpi->conf->input_2p_en_bit);
625 	}
626 	mtk_dpi_sw_reset(dpi, false);
627 
628 	return 0;
629 }
630 
mtk_dpi_bridge_atomic_get_output_bus_fmts(struct drm_bridge * bridge,struct drm_bridge_state * bridge_state,struct drm_crtc_state * crtc_state,struct drm_connector_state * conn_state,unsigned int * num_output_fmts)631 static u32 *mtk_dpi_bridge_atomic_get_output_bus_fmts(struct drm_bridge *bridge,
632 						      struct drm_bridge_state *bridge_state,
633 						      struct drm_crtc_state *crtc_state,
634 						      struct drm_connector_state *conn_state,
635 						      unsigned int *num_output_fmts)
636 {
637 	struct mtk_dpi *dpi = bridge_to_dpi(bridge);
638 	u32 *output_fmts;
639 
640 	*num_output_fmts = 0;
641 
642 	if (!dpi->conf->output_fmts) {
643 		dev_err(dpi->dev, "output_fmts should not be null\n");
644 		return NULL;
645 	}
646 
647 	output_fmts = kcalloc(dpi->conf->num_output_fmts, sizeof(*output_fmts),
648 			     GFP_KERNEL);
649 	if (!output_fmts)
650 		return NULL;
651 
652 	*num_output_fmts = dpi->conf->num_output_fmts;
653 
654 	memcpy(output_fmts, dpi->conf->output_fmts,
655 	       sizeof(*output_fmts) * dpi->conf->num_output_fmts);
656 
657 	return output_fmts;
658 }
659 
mtk_dpi_bridge_atomic_get_input_bus_fmts(struct drm_bridge * bridge,struct drm_bridge_state * bridge_state,struct drm_crtc_state * crtc_state,struct drm_connector_state * conn_state,u32 output_fmt,unsigned int * num_input_fmts)660 static u32 *mtk_dpi_bridge_atomic_get_input_bus_fmts(struct drm_bridge *bridge,
661 						     struct drm_bridge_state *bridge_state,
662 						     struct drm_crtc_state *crtc_state,
663 						     struct drm_connector_state *conn_state,
664 						     u32 output_fmt,
665 						     unsigned int *num_input_fmts)
666 {
667 	u32 *input_fmts;
668 
669 	*num_input_fmts = 0;
670 
671 	input_fmts = kcalloc(1, sizeof(*input_fmts),
672 			     GFP_KERNEL);
673 	if (!input_fmts)
674 		return NULL;
675 
676 	*num_input_fmts = 1;
677 	input_fmts[0] = MEDIA_BUS_FMT_RGB888_1X24;
678 
679 	return input_fmts;
680 }
681 
mtk_dpi_bridge_atomic_check(struct drm_bridge * bridge,struct drm_bridge_state * bridge_state,struct drm_crtc_state * crtc_state,struct drm_connector_state * conn_state)682 static int mtk_dpi_bridge_atomic_check(struct drm_bridge *bridge,
683 				       struct drm_bridge_state *bridge_state,
684 				       struct drm_crtc_state *crtc_state,
685 				       struct drm_connector_state *conn_state)
686 {
687 	struct mtk_dpi *dpi = bridge_to_dpi(bridge);
688 	unsigned int out_bus_format;
689 
690 	out_bus_format = bridge_state->output_bus_cfg.format;
691 
692 	if (out_bus_format == MEDIA_BUS_FMT_FIXED)
693 		if (dpi->conf->num_output_fmts)
694 			out_bus_format = dpi->conf->output_fmts[0];
695 
696 	dev_dbg(dpi->dev, "input format 0x%04x, output format 0x%04x\n",
697 		bridge_state->input_bus_cfg.format,
698 		bridge_state->output_bus_cfg.format);
699 
700 	dpi->output_fmt = out_bus_format;
701 	dpi->bit_num = MTK_DPI_OUT_BIT_NUM_8BITS;
702 	dpi->channel_swap = MTK_DPI_OUT_CHANNEL_SWAP_RGB;
703 	dpi->yc_map = MTK_DPI_OUT_YC_MAP_RGB;
704 	if (out_bus_format == MEDIA_BUS_FMT_YUYV8_1X16)
705 		dpi->color_format = MTK_DPI_COLOR_FORMAT_YCBCR_422;
706 	else
707 		dpi->color_format = MTK_DPI_COLOR_FORMAT_RGB;
708 
709 	return 0;
710 }
711 
mtk_dpi_bridge_attach(struct drm_bridge * bridge,enum drm_bridge_attach_flags flags)712 static int mtk_dpi_bridge_attach(struct drm_bridge *bridge,
713 				 enum drm_bridge_attach_flags flags)
714 {
715 	struct mtk_dpi *dpi = bridge_to_dpi(bridge);
716 	int ret;
717 
718 	dpi->next_bridge = devm_drm_of_get_bridge(dpi->dev, dpi->dev->of_node, 1, -1);
719 	if (IS_ERR(dpi->next_bridge)) {
720 		ret = PTR_ERR(dpi->next_bridge);
721 		if (ret == -EPROBE_DEFER)
722 			return ret;
723 
724 		/* Old devicetree has only one endpoint */
725 		dpi->next_bridge = devm_drm_of_get_bridge(dpi->dev, dpi->dev->of_node, 0, 0);
726 		if (IS_ERR(dpi->next_bridge))
727 			return dev_err_probe(dpi->dev, PTR_ERR(dpi->next_bridge),
728 					     "Failed to get bridge\n");
729 	}
730 
731 	return drm_bridge_attach(bridge->encoder, dpi->next_bridge,
732 				 &dpi->bridge, flags);
733 }
734 
mtk_dpi_bridge_mode_set(struct drm_bridge * bridge,const struct drm_display_mode * mode,const struct drm_display_mode * adjusted_mode)735 static void mtk_dpi_bridge_mode_set(struct drm_bridge *bridge,
736 				const struct drm_display_mode *mode,
737 				const struct drm_display_mode *adjusted_mode)
738 {
739 	struct mtk_dpi *dpi = bridge_to_dpi(bridge);
740 
741 	drm_mode_copy(&dpi->mode, adjusted_mode);
742 }
743 
mtk_dpi_bridge_disable(struct drm_bridge * bridge)744 static void mtk_dpi_bridge_disable(struct drm_bridge *bridge)
745 {
746 	struct mtk_dpi *dpi = bridge_to_dpi(bridge);
747 
748 	mtk_dpi_power_off(dpi);
749 
750 	if (dpi->pinctrl && dpi->pins_gpio)
751 		pinctrl_select_state(dpi->pinctrl, dpi->pins_gpio);
752 }
753 
mtk_dpi_bridge_enable(struct drm_bridge * bridge)754 static void mtk_dpi_bridge_enable(struct drm_bridge *bridge)
755 {
756 	struct mtk_dpi *dpi = bridge_to_dpi(bridge);
757 
758 	if (dpi->pinctrl && dpi->pins_dpi)
759 		pinctrl_select_state(dpi->pinctrl, dpi->pins_dpi);
760 
761 	mtk_dpi_power_on(dpi);
762 	mtk_dpi_set_display_mode(dpi, &dpi->mode);
763 	mtk_dpi_enable(dpi);
764 }
765 
766 static enum drm_mode_status
mtk_dpi_bridge_mode_valid(struct drm_bridge * bridge,const struct drm_display_info * info,const struct drm_display_mode * mode)767 mtk_dpi_bridge_mode_valid(struct drm_bridge *bridge,
768 			  const struct drm_display_info *info,
769 			  const struct drm_display_mode *mode)
770 {
771 	struct mtk_dpi *dpi = bridge_to_dpi(bridge);
772 
773 	if (mode->clock > dpi->conf->max_clock_khz)
774 		return MODE_CLOCK_HIGH;
775 
776 	return MODE_OK;
777 }
778 
779 static const struct drm_bridge_funcs mtk_dpi_bridge_funcs = {
780 	.attach = mtk_dpi_bridge_attach,
781 	.mode_set = mtk_dpi_bridge_mode_set,
782 	.mode_valid = mtk_dpi_bridge_mode_valid,
783 	.disable = mtk_dpi_bridge_disable,
784 	.enable = mtk_dpi_bridge_enable,
785 	.atomic_check = mtk_dpi_bridge_atomic_check,
786 	.atomic_get_output_bus_fmts = mtk_dpi_bridge_atomic_get_output_bus_fmts,
787 	.atomic_get_input_bus_fmts = mtk_dpi_bridge_atomic_get_input_bus_fmts,
788 	.atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
789 	.atomic_destroy_state = drm_atomic_helper_bridge_destroy_state,
790 	.atomic_reset = drm_atomic_helper_bridge_reset,
791 };
792 
mtk_dpi_start(struct device * dev)793 void mtk_dpi_start(struct device *dev)
794 {
795 	struct mtk_dpi *dpi = dev_get_drvdata(dev);
796 
797 	mtk_dpi_power_on(dpi);
798 }
799 
mtk_dpi_stop(struct device * dev)800 void mtk_dpi_stop(struct device *dev)
801 {
802 	struct mtk_dpi *dpi = dev_get_drvdata(dev);
803 
804 	mtk_dpi_power_off(dpi);
805 }
806 
mtk_dpi_encoder_index(struct device * dev)807 unsigned int mtk_dpi_encoder_index(struct device *dev)
808 {
809 	struct mtk_dpi *dpi = dev_get_drvdata(dev);
810 	unsigned int encoder_index = drm_encoder_index(&dpi->encoder);
811 
812 	dev_dbg(dev, "encoder index:%d\n", encoder_index);
813 	return encoder_index;
814 }
815 
mtk_dpi_bind(struct device * dev,struct device * master,void * data)816 static int mtk_dpi_bind(struct device *dev, struct device *master, void *data)
817 {
818 	struct mtk_dpi *dpi = dev_get_drvdata(dev);
819 	struct drm_device *drm_dev = data;
820 	struct mtk_drm_private *priv = drm_dev->dev_private;
821 	int ret;
822 
823 	dpi->mmsys_dev = priv->mmsys_dev;
824 	ret = drm_simple_encoder_init(drm_dev, &dpi->encoder,
825 				      DRM_MODE_ENCODER_TMDS);
826 	if (ret) {
827 		dev_err(dev, "Failed to initialize decoder: %d\n", ret);
828 		return ret;
829 	}
830 
831 	ret = mtk_find_possible_crtcs(drm_dev, dpi->dev);
832 	if (ret < 0)
833 		goto err_cleanup;
834 	dpi->encoder.possible_crtcs = ret;
835 
836 	ret = drm_bridge_attach(&dpi->encoder, &dpi->bridge, NULL,
837 				DRM_BRIDGE_ATTACH_NO_CONNECTOR);
838 	if (ret)
839 		goto err_cleanup;
840 
841 	dpi->connector = drm_bridge_connector_init(drm_dev, &dpi->encoder);
842 	if (IS_ERR(dpi->connector)) {
843 		dev_err(dev, "Unable to create bridge connector\n");
844 		ret = PTR_ERR(dpi->connector);
845 		goto err_cleanup;
846 	}
847 	drm_connector_attach_encoder(dpi->connector, &dpi->encoder);
848 
849 	return 0;
850 
851 err_cleanup:
852 	drm_encoder_cleanup(&dpi->encoder);
853 	return ret;
854 }
855 
mtk_dpi_unbind(struct device * dev,struct device * master,void * data)856 static void mtk_dpi_unbind(struct device *dev, struct device *master,
857 			   void *data)
858 {
859 	struct mtk_dpi *dpi = dev_get_drvdata(dev);
860 
861 	drm_encoder_cleanup(&dpi->encoder);
862 }
863 
864 static const struct component_ops mtk_dpi_component_ops = {
865 	.bind = mtk_dpi_bind,
866 	.unbind = mtk_dpi_unbind,
867 };
868 
mt8173_calculate_factor(int clock)869 static unsigned int mt8173_calculate_factor(int clock)
870 {
871 	if (clock <= 27000)
872 		return 3 << 4;
873 	else if (clock <= 84000)
874 		return 3 << 3;
875 	else if (clock <= 167000)
876 		return 3 << 2;
877 	else
878 		return 3 << 1;
879 }
880 
mt2701_calculate_factor(int clock)881 static unsigned int mt2701_calculate_factor(int clock)
882 {
883 	if (clock <= 64000)
884 		return 4;
885 	else if (clock <= 128000)
886 		return 2;
887 	else
888 		return 1;
889 }
890 
mt8183_calculate_factor(int clock)891 static unsigned int mt8183_calculate_factor(int clock)
892 {
893 	if (clock <= 27000)
894 		return 8;
895 	else if (clock <= 167000)
896 		return 4;
897 	else
898 		return 2;
899 }
900 
mt8195_dpintf_calculate_factor(int clock)901 static unsigned int mt8195_dpintf_calculate_factor(int clock)
902 {
903 	if (clock < 70000)
904 		return 4;
905 	else if (clock < 200000)
906 		return 2;
907 	else
908 		return 1;
909 }
910 
911 static const u32 mt8173_output_fmts[] = {
912 	MEDIA_BUS_FMT_RGB888_1X24,
913 };
914 
915 static const u32 mt8183_output_fmts[] = {
916 	MEDIA_BUS_FMT_RGB888_2X12_LE,
917 	MEDIA_BUS_FMT_RGB888_2X12_BE,
918 };
919 
920 static const u32 mt8195_output_fmts[] = {
921 	MEDIA_BUS_FMT_RGB888_1X24,
922 	MEDIA_BUS_FMT_YUYV8_1X16,
923 };
924 
925 static const struct mtk_dpi_conf mt8173_conf = {
926 	.cal_factor = mt8173_calculate_factor,
927 	.reg_h_fre_con = 0xe0,
928 	.max_clock_khz = 300000,
929 	.output_fmts = mt8173_output_fmts,
930 	.num_output_fmts = ARRAY_SIZE(mt8173_output_fmts),
931 	.pixels_per_iter = 1,
932 	.is_ck_de_pol = true,
933 	.swap_input_support = true,
934 	.support_direct_pin = true,
935 	.dimension_mask = HPW_MASK,
936 	.hvsize_mask = HSIZE_MASK,
937 	.channel_swap_shift = CH_SWAP,
938 	.yuv422_en_bit = YUV422_EN,
939 	.csc_enable_bit = CSC_ENABLE,
940 };
941 
942 static const struct mtk_dpi_conf mt2701_conf = {
943 	.cal_factor = mt2701_calculate_factor,
944 	.reg_h_fre_con = 0xb0,
945 	.edge_sel_en = true,
946 	.max_clock_khz = 150000,
947 	.output_fmts = mt8173_output_fmts,
948 	.num_output_fmts = ARRAY_SIZE(mt8173_output_fmts),
949 	.pixels_per_iter = 1,
950 	.is_ck_de_pol = true,
951 	.swap_input_support = true,
952 	.support_direct_pin = true,
953 	.dimension_mask = HPW_MASK,
954 	.hvsize_mask = HSIZE_MASK,
955 	.channel_swap_shift = CH_SWAP,
956 	.yuv422_en_bit = YUV422_EN,
957 	.csc_enable_bit = CSC_ENABLE,
958 };
959 
960 static const struct mtk_dpi_conf mt8183_conf = {
961 	.cal_factor = mt8183_calculate_factor,
962 	.reg_h_fre_con = 0xe0,
963 	.max_clock_khz = 100000,
964 	.output_fmts = mt8183_output_fmts,
965 	.num_output_fmts = ARRAY_SIZE(mt8183_output_fmts),
966 	.pixels_per_iter = 1,
967 	.is_ck_de_pol = true,
968 	.swap_input_support = true,
969 	.support_direct_pin = true,
970 	.dimension_mask = HPW_MASK,
971 	.hvsize_mask = HSIZE_MASK,
972 	.channel_swap_shift = CH_SWAP,
973 	.yuv422_en_bit = YUV422_EN,
974 	.csc_enable_bit = CSC_ENABLE,
975 };
976 
977 static const struct mtk_dpi_conf mt8186_conf = {
978 	.cal_factor = mt8183_calculate_factor,
979 	.reg_h_fre_con = 0xe0,
980 	.max_clock_khz = 150000,
981 	.output_fmts = mt8183_output_fmts,
982 	.num_output_fmts = ARRAY_SIZE(mt8183_output_fmts),
983 	.edge_cfg_in_mmsys = true,
984 	.pixels_per_iter = 1,
985 	.is_ck_de_pol = true,
986 	.swap_input_support = true,
987 	.support_direct_pin = true,
988 	.dimension_mask = HPW_MASK,
989 	.hvsize_mask = HSIZE_MASK,
990 	.channel_swap_shift = CH_SWAP,
991 	.yuv422_en_bit = YUV422_EN,
992 	.csc_enable_bit = CSC_ENABLE,
993 };
994 
995 static const struct mtk_dpi_conf mt8192_conf = {
996 	.cal_factor = mt8183_calculate_factor,
997 	.reg_h_fre_con = 0xe0,
998 	.max_clock_khz = 150000,
999 	.output_fmts = mt8183_output_fmts,
1000 	.num_output_fmts = ARRAY_SIZE(mt8183_output_fmts),
1001 	.pixels_per_iter = 1,
1002 	.is_ck_de_pol = true,
1003 	.swap_input_support = true,
1004 	.support_direct_pin = true,
1005 	.dimension_mask = HPW_MASK,
1006 	.hvsize_mask = HSIZE_MASK,
1007 	.channel_swap_shift = CH_SWAP,
1008 	.yuv422_en_bit = YUV422_EN,
1009 	.csc_enable_bit = CSC_ENABLE,
1010 };
1011 
1012 static const struct mtk_dpi_conf mt8195_dpintf_conf = {
1013 	.cal_factor = mt8195_dpintf_calculate_factor,
1014 	.max_clock_khz = 600000,
1015 	.output_fmts = mt8195_output_fmts,
1016 	.num_output_fmts = ARRAY_SIZE(mt8195_output_fmts),
1017 	.pixels_per_iter = 4,
1018 	.dimension_mask = DPINTF_HPW_MASK,
1019 	.hvsize_mask = DPINTF_HSIZE_MASK,
1020 	.channel_swap_shift = DPINTF_CH_SWAP,
1021 	.yuv422_en_bit = DPINTF_YUV422_EN,
1022 	.csc_enable_bit = DPINTF_CSC_ENABLE,
1023 	.input_2p_en_bit = DPINTF_INPUT_2P_EN,
1024 };
1025 
mtk_dpi_probe(struct platform_device * pdev)1026 static int mtk_dpi_probe(struct platform_device *pdev)
1027 {
1028 	struct device *dev = &pdev->dev;
1029 	struct mtk_dpi *dpi;
1030 	int ret;
1031 
1032 	dpi = devm_kzalloc(dev, sizeof(*dpi), GFP_KERNEL);
1033 	if (!dpi)
1034 		return -ENOMEM;
1035 
1036 	dpi->dev = dev;
1037 	dpi->conf = (struct mtk_dpi_conf *)of_device_get_match_data(dev);
1038 	dpi->output_fmt = MEDIA_BUS_FMT_RGB888_1X24;
1039 
1040 	dpi->pinctrl = devm_pinctrl_get(&pdev->dev);
1041 	if (IS_ERR(dpi->pinctrl)) {
1042 		dpi->pinctrl = NULL;
1043 		dev_dbg(&pdev->dev, "Cannot find pinctrl!\n");
1044 	}
1045 	if (dpi->pinctrl) {
1046 		dpi->pins_gpio = pinctrl_lookup_state(dpi->pinctrl, "sleep");
1047 		if (IS_ERR(dpi->pins_gpio)) {
1048 			dpi->pins_gpio = NULL;
1049 			dev_dbg(&pdev->dev, "Cannot find pinctrl idle!\n");
1050 		}
1051 		if (dpi->pins_gpio)
1052 			pinctrl_select_state(dpi->pinctrl, dpi->pins_gpio);
1053 
1054 		dpi->pins_dpi = pinctrl_lookup_state(dpi->pinctrl, "default");
1055 		if (IS_ERR(dpi->pins_dpi)) {
1056 			dpi->pins_dpi = NULL;
1057 			dev_dbg(&pdev->dev, "Cannot find pinctrl active!\n");
1058 		}
1059 	}
1060 	dpi->regs = devm_platform_ioremap_resource(pdev, 0);
1061 	if (IS_ERR(dpi->regs))
1062 		return dev_err_probe(dev, PTR_ERR(dpi->regs),
1063 				     "Failed to ioremap mem resource\n");
1064 
1065 	dpi->engine_clk = devm_clk_get(dev, "engine");
1066 	if (IS_ERR(dpi->engine_clk))
1067 		return dev_err_probe(dev, PTR_ERR(dpi->engine_clk),
1068 				     "Failed to get engine clock\n");
1069 
1070 	dpi->pixel_clk = devm_clk_get(dev, "pixel");
1071 	if (IS_ERR(dpi->pixel_clk))
1072 		return dev_err_probe(dev, PTR_ERR(dpi->pixel_clk),
1073 				     "Failed to get pixel clock\n");
1074 
1075 	dpi->tvd_clk = devm_clk_get(dev, "pll");
1076 	if (IS_ERR(dpi->tvd_clk))
1077 		return dev_err_probe(dev, PTR_ERR(dpi->tvd_clk),
1078 				     "Failed to get tvdpll clock\n");
1079 
1080 	dpi->irq = platform_get_irq(pdev, 0);
1081 	if (dpi->irq < 0)
1082 		return dpi->irq;
1083 
1084 	platform_set_drvdata(pdev, dpi);
1085 
1086 	dpi->bridge.funcs = &mtk_dpi_bridge_funcs;
1087 	dpi->bridge.of_node = dev->of_node;
1088 	dpi->bridge.type = DRM_MODE_CONNECTOR_DPI;
1089 
1090 	ret = devm_drm_bridge_add(dev, &dpi->bridge);
1091 	if (ret)
1092 		return ret;
1093 
1094 	ret = component_add(dev, &mtk_dpi_component_ops);
1095 	if (ret)
1096 		return dev_err_probe(dev, ret, "Failed to add component.\n");
1097 
1098 	return 0;
1099 }
1100 
mtk_dpi_remove(struct platform_device * pdev)1101 static void mtk_dpi_remove(struct platform_device *pdev)
1102 {
1103 	component_del(&pdev->dev, &mtk_dpi_component_ops);
1104 }
1105 
1106 static const struct of_device_id mtk_dpi_of_ids[] = {
1107 	{ .compatible = "mediatek,mt2701-dpi", .data = &mt2701_conf },
1108 	{ .compatible = "mediatek,mt8173-dpi", .data = &mt8173_conf },
1109 	{ .compatible = "mediatek,mt8183-dpi", .data = &mt8183_conf },
1110 	{ .compatible = "mediatek,mt8186-dpi", .data = &mt8186_conf },
1111 	{ .compatible = "mediatek,mt8188-dp-intf", .data = &mt8195_dpintf_conf },
1112 	{ .compatible = "mediatek,mt8192-dpi", .data = &mt8192_conf },
1113 	{ .compatible = "mediatek,mt8195-dp-intf", .data = &mt8195_dpintf_conf },
1114 	{ /* sentinel */ },
1115 };
1116 MODULE_DEVICE_TABLE(of, mtk_dpi_of_ids);
1117 
1118 struct platform_driver mtk_dpi_driver = {
1119 	.probe = mtk_dpi_probe,
1120 	.remove = mtk_dpi_remove,
1121 	.driver = {
1122 		.name = "mediatek-dpi",
1123 		.of_match_table = mtk_dpi_of_ids,
1124 	},
1125 };
1126