1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Copyright (c) 2018, The Linux Foundation. All rights reserved.
4 * Copyright (c) 2019-2020. Linaro Limited.
5 */
6
7 #include <linux/gpio/consumer.h>
8 #include <linux/interrupt.h>
9 #include <linux/module.h>
10 #include <linux/of_graph.h>
11 #include <linux/platform_device.h>
12 #include <linux/regmap.h>
13 #include <linux/regulator/consumer.h>
14
15 #include <sound/hdmi-codec.h>
16
17 #include <drm/drm_atomic_helper.h>
18 #include <drm/drm_bridge.h>
19 #include <drm/drm_mipi_dsi.h>
20 #include <drm/drm_print.h>
21 #include <drm/drm_probe_helper.h>
22
23 #define EDID_SEG_SIZE 256
24 #define EDID_LEN 32
25 #define EDID_LOOP 8
26 #define KEY_DDC_ACCS_DONE 0x02
27 #define DDC_NO_ACK 0x50
28
29 #define LT9611_4LANES 0
30
31 struct lt9611 {
32 struct device *dev;
33 struct drm_bridge bridge;
34 struct drm_connector connector;
35
36 struct regmap *regmap;
37
38 struct device_node *dsi0_node;
39 struct device_node *dsi1_node;
40 struct mipi_dsi_device *dsi0;
41 struct mipi_dsi_device *dsi1;
42 struct platform_device *audio_pdev;
43
44 bool ac_mode;
45
46 struct gpio_desc *reset_gpio;
47 struct gpio_desc *enable_gpio;
48
49 bool power_on;
50 bool sleep;
51
52 struct regulator_bulk_data supplies[2];
53
54 struct i2c_client *client;
55
56 enum drm_connector_status status;
57
58 u8 edid_buf[EDID_SEG_SIZE];
59 u32 vic;
60 };
61
62 #define LT9611_PAGE_CONTROL 0xff
63
64 static const struct regmap_range_cfg lt9611_ranges[] = {
65 {
66 .name = "register_range",
67 .range_min = 0,
68 .range_max = 0x85ff,
69 .selector_reg = LT9611_PAGE_CONTROL,
70 .selector_mask = 0xff,
71 .selector_shift = 0,
72 .window_start = 0,
73 .window_len = 0x100,
74 },
75 };
76
77 static const struct regmap_config lt9611_regmap_config = {
78 .reg_bits = 8,
79 .val_bits = 8,
80 .max_register = 0xffff,
81 .ranges = lt9611_ranges,
82 .num_ranges = ARRAY_SIZE(lt9611_ranges),
83 };
84
85 struct lt9611_mode {
86 u16 hdisplay;
87 u16 vdisplay;
88 u8 vrefresh;
89 u8 lanes;
90 u8 intfs;
91 };
92
93 static struct lt9611_mode lt9611_modes[] = {
94 { 3840, 2160, 30, 4, 2 }, /* 3840x2160 24bit 30Hz 4Lane 2ports */
95 { 1920, 1080, 60, 4, 1 }, /* 1080P 24bit 60Hz 4lane 1port */
96 { 1920, 1080, 30, 3, 1 }, /* 1080P 24bit 30Hz 3lane 1port */
97 { 1920, 1080, 24, 3, 1 },
98 { 720, 480, 60, 4, 1 },
99 { 720, 576, 50, 2, 1 },
100 { 640, 480, 60, 2, 1 },
101 };
102
bridge_to_lt9611(struct drm_bridge *bridge)103 static struct lt9611 *bridge_to_lt9611(struct drm_bridge *bridge)
104 {
105 return container_of(bridge, struct lt9611, bridge);
106 }
107
connector_to_lt9611(struct drm_connector *connector)108 static struct lt9611 *connector_to_lt9611(struct drm_connector *connector)
109 {
110 return container_of(connector, struct lt9611, connector);
111 }
112
lt9611_mipi_input_analog(struct lt9611 *lt9611)113 static int lt9611_mipi_input_analog(struct lt9611 *lt9611)
114 {
115 const struct reg_sequence reg_cfg[] = {
116 { 0x8106, 0x40 }, /* port A rx current */
117 { 0x810a, 0xfe }, /* port A ldo voltage set */
118 { 0x810b, 0xbf }, /* enable port A lprx */
119 { 0x8111, 0x40 }, /* port B rx current */
120 { 0x8115, 0xfe }, /* port B ldo voltage set */
121 { 0x8116, 0xbf }, /* enable port B lprx */
122
123 { 0x811c, 0x03 }, /* PortA clk lane no-LP mode */
124 { 0x8120, 0x03 }, /* PortB clk lane with-LP mode */
125 };
126
127 return regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
128 }
129
lt9611_mipi_input_digital(struct lt9611 *lt9611, const struct drm_display_mode *mode)130 static int lt9611_mipi_input_digital(struct lt9611 *lt9611,
131 const struct drm_display_mode *mode)
132 {
133 struct reg_sequence reg_cfg[] = {
134 { 0x8300, LT9611_4LANES },
135 { 0x830a, 0x00 },
136 { 0x824f, 0x80 },
137 { 0x8250, 0x10 },
138 { 0x8302, 0x0a },
139 { 0x8306, 0x0a },
140 };
141
142 if (mode->hdisplay == 3840)
143 reg_cfg[1].def = 0x03;
144
145 return regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
146 }
147
lt9611_mipi_video_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode)148 static void lt9611_mipi_video_setup(struct lt9611 *lt9611,
149 const struct drm_display_mode *mode)
150 {
151 u32 h_total, hactive, hsync_len, hfront_porch, hsync_porch;
152 u32 v_total, vactive, vsync_len, vfront_porch, vsync_porch;
153
154 h_total = mode->htotal;
155 v_total = mode->vtotal;
156
157 hactive = mode->hdisplay;
158 hsync_len = mode->hsync_end - mode->hsync_start;
159 hfront_porch = mode->hsync_start - mode->hdisplay;
160 hsync_porch = hsync_len + mode->htotal - mode->hsync_end;
161
162 vactive = mode->vdisplay;
163 vsync_len = mode->vsync_end - mode->vsync_start;
164 vfront_porch = mode->vsync_start - mode->vdisplay;
165 vsync_porch = vsync_len + mode->vtotal - mode->vsync_end;
166
167 regmap_write(lt9611->regmap, 0x830d, (u8)(v_total / 256));
168 regmap_write(lt9611->regmap, 0x830e, (u8)(v_total % 256));
169
170 regmap_write(lt9611->regmap, 0x830f, (u8)(vactive / 256));
171 regmap_write(lt9611->regmap, 0x8310, (u8)(vactive % 256));
172
173 regmap_write(lt9611->regmap, 0x8311, (u8)(h_total / 256));
174 regmap_write(lt9611->regmap, 0x8312, (u8)(h_total % 256));
175
176 regmap_write(lt9611->regmap, 0x8313, (u8)(hactive / 256));
177 regmap_write(lt9611->regmap, 0x8314, (u8)(hactive % 256));
178
179 regmap_write(lt9611->regmap, 0x8315, (u8)(vsync_len % 256));
180 regmap_write(lt9611->regmap, 0x8316, (u8)(hsync_len % 256));
181
182 regmap_write(lt9611->regmap, 0x8317, (u8)(vfront_porch % 256));
183
184 regmap_write(lt9611->regmap, 0x8318, (u8)(vsync_porch % 256));
185
186 regmap_write(lt9611->regmap, 0x8319, (u8)(hfront_porch % 256));
187
188 regmap_write(lt9611->regmap, 0x831a, (u8)(hsync_porch / 256) |
189 ((hfront_porch / 256) << 4));
190 regmap_write(lt9611->regmap, 0x831b, (u8)(hsync_porch % 256));
191 }
192
lt9611_pcr_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode, unsigned int postdiv)193 static void lt9611_pcr_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode, unsigned int postdiv)
194 {
195 unsigned int pcr_m = mode->clock * 5 * postdiv / 27000;
196 const struct reg_sequence reg_cfg[] = {
197 { 0x830b, 0x01 },
198 { 0x830c, 0x10 },
199 { 0x8348, 0x00 },
200 { 0x8349, 0x81 },
201
202 /* stage 1 */
203 { 0x8321, 0x4a },
204 { 0x8324, 0x71 },
205 { 0x8325, 0x30 },
206 { 0x832a, 0x01 },
207
208 /* stage 2 */
209 { 0x834a, 0x40 },
210
211 /* MK limit */
212 { 0x832d, 0x38 },
213 { 0x8331, 0x08 },
214 };
215 const struct reg_sequence reg_cfg2[] = {
216 { 0x830b, 0x03 },
217 { 0x830c, 0xd0 },
218 { 0x8348, 0x03 },
219 { 0x8349, 0xe0 },
220 { 0x8324, 0x72 },
221 { 0x8325, 0x00 },
222 { 0x832a, 0x01 },
223 { 0x834a, 0x10 },
224 };
225 u8 pol = 0x10;
226
227 if (mode->flags & DRM_MODE_FLAG_NHSYNC)
228 pol |= 0x2;
229 if (mode->flags & DRM_MODE_FLAG_NVSYNC)
230 pol |= 0x1;
231 regmap_write(lt9611->regmap, 0x831d, pol);
232
233 if (mode->hdisplay == 3840)
234 regmap_multi_reg_write(lt9611->regmap, reg_cfg2, ARRAY_SIZE(reg_cfg2));
235 else
236 regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
237
238 regmap_write(lt9611->regmap, 0x8326, pcr_m);
239
240 /* pcr rst */
241 regmap_write(lt9611->regmap, 0x8011, 0x5a);
242 regmap_write(lt9611->regmap, 0x8011, 0xfa);
243 }
244
lt9611_pll_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode, unsigned int *postdiv)245 static int lt9611_pll_setup(struct lt9611 *lt9611, const struct drm_display_mode *mode, unsigned int *postdiv)
246 {
247 unsigned int pclk = mode->clock;
248 const struct reg_sequence reg_cfg[] = {
249 /* txpll init */
250 { 0x8123, 0x40 },
251 { 0x8124, 0x64 },
252 { 0x8125, 0x80 },
253 { 0x8126, 0x55 },
254 { 0x812c, 0x37 },
255 { 0x812f, 0x01 },
256 { 0x8126, 0x55 },
257 { 0x8127, 0x66 },
258 { 0x8128, 0x88 },
259 { 0x812a, 0x20 },
260 };
261
262 regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
263
264 if (pclk > 150000) {
265 regmap_write(lt9611->regmap, 0x812d, 0x88);
266 *postdiv = 1;
267 } else if (pclk > 70000) {
268 regmap_write(lt9611->regmap, 0x812d, 0x99);
269 *postdiv = 2;
270 } else {
271 regmap_write(lt9611->regmap, 0x812d, 0xaa);
272 *postdiv = 4;
273 }
274
275 /*
276 * first divide pclk by 2 first
277 * - write divide by 64k to 19:16 bits which means shift by 17
278 * - write divide by 256 to 15:8 bits which means shift by 9
279 * - write remainder to 7:0 bits, which means shift by 1
280 */
281 regmap_write(lt9611->regmap, 0x82e3, pclk >> 17); /* pclk[19:16] */
282 regmap_write(lt9611->regmap, 0x82e4, pclk >> 9); /* pclk[15:8] */
283 regmap_write(lt9611->regmap, 0x82e5, pclk >> 1); /* pclk[7:0] */
284
285 regmap_write(lt9611->regmap, 0x82de, 0x20);
286 regmap_write(lt9611->regmap, 0x82de, 0xe0);
287
288 regmap_write(lt9611->regmap, 0x8016, 0xf1);
289 regmap_write(lt9611->regmap, 0x8016, 0xf3);
290
291 return 0;
292 }
293
lt9611_read_video_check(struct lt9611 *lt9611, unsigned int reg)294 static int lt9611_read_video_check(struct lt9611 *lt9611, unsigned int reg)
295 {
296 unsigned int temp, temp2;
297 int ret;
298
299 ret = regmap_read(lt9611->regmap, reg, &temp);
300 if (ret)
301 return ret;
302 temp <<= 8;
303 ret = regmap_read(lt9611->regmap, reg + 1, &temp2);
304 if (ret)
305 return ret;
306
307 return (temp + temp2);
308 }
309
lt9611_video_check(struct lt9611 *lt9611)310 static int lt9611_video_check(struct lt9611 *lt9611)
311 {
312 u32 v_total, vactive, hactive_a, hactive_b, h_total_sysclk;
313 int temp;
314
315 /* top module video check */
316
317 /* vactive */
318 temp = lt9611_read_video_check(lt9611, 0x8282);
319 if (temp < 0)
320 goto end;
321 vactive = temp;
322
323 /* v_total */
324 temp = lt9611_read_video_check(lt9611, 0x826c);
325 if (temp < 0)
326 goto end;
327 v_total = temp;
328
329 /* h_total_sysclk */
330 temp = lt9611_read_video_check(lt9611, 0x8286);
331 if (temp < 0)
332 goto end;
333 h_total_sysclk = temp;
334
335 /* hactive_a */
336 temp = lt9611_read_video_check(lt9611, 0x8382);
337 if (temp < 0)
338 goto end;
339 hactive_a = temp / 3;
340
341 /* hactive_b */
342 temp = lt9611_read_video_check(lt9611, 0x8386);
343 if (temp < 0)
344 goto end;
345 hactive_b = temp / 3;
346
347 dev_info(lt9611->dev,
348 "video check: hactive_a=%d, hactive_b=%d, vactive=%d, v_total=%d, h_total_sysclk=%d\n",
349 hactive_a, hactive_b, vactive, v_total, h_total_sysclk);
350
351 return 0;
352
353 end:
354 dev_err(lt9611->dev, "read video check error\n");
355 return temp;
356 }
357
lt9611_hdmi_tx_digital(struct lt9611 *lt9611)358 static void lt9611_hdmi_tx_digital(struct lt9611 *lt9611)
359 {
360 regmap_write(lt9611->regmap, 0x8443, 0x46 - lt9611->vic);
361 regmap_write(lt9611->regmap, 0x8447, lt9611->vic);
362 regmap_write(lt9611->regmap, 0x843d, 0x0a); /* UD1 infoframe */
363
364 regmap_write(lt9611->regmap, 0x82d6, 0x8c);
365 regmap_write(lt9611->regmap, 0x82d7, 0x04);
366 }
367
lt9611_hdmi_tx_phy(struct lt9611 *lt9611)368 static void lt9611_hdmi_tx_phy(struct lt9611 *lt9611)
369 {
370 struct reg_sequence reg_cfg[] = {
371 { 0x8130, 0x6a },
372 { 0x8131, 0x44 }, /* HDMI DC mode */
373 { 0x8132, 0x4a },
374 { 0x8133, 0x0b },
375 { 0x8134, 0x00 },
376 { 0x8135, 0x00 },
377 { 0x8136, 0x00 },
378 { 0x8137, 0x44 },
379 { 0x813f, 0x0f },
380 { 0x8140, 0xa0 },
381 { 0x8141, 0xa0 },
382 { 0x8142, 0xa0 },
383 { 0x8143, 0xa0 },
384 { 0x8144, 0x0a },
385 };
386
387 /* HDMI AC mode */
388 if (lt9611->ac_mode)
389 reg_cfg[2].def = 0x73;
390
391 regmap_multi_reg_write(lt9611->regmap, reg_cfg, ARRAY_SIZE(reg_cfg));
392 }
393
lt9611_irq_thread_handler(int irq, void *dev_id)394 static irqreturn_t lt9611_irq_thread_handler(int irq, void *dev_id)
395 {
396 struct lt9611 *lt9611 = dev_id;
397 unsigned int irq_flag0 = 0;
398 unsigned int irq_flag3 = 0;
399
400 regmap_read(lt9611->regmap, 0x820f, &irq_flag3);
401 regmap_read(lt9611->regmap, 0x820c, &irq_flag0);
402
403 /* hpd changed low */
404 if (irq_flag3 & 0x80) {
405 dev_info(lt9611->dev, "hdmi cable disconnected\n");
406
407 regmap_write(lt9611->regmap, 0x8207, 0xbf);
408 regmap_write(lt9611->regmap, 0x8207, 0x3f);
409 }
410
411 /* hpd changed high */
412 if (irq_flag3 & 0x40) {
413 dev_info(lt9611->dev, "hdmi cable connected\n");
414
415 regmap_write(lt9611->regmap, 0x8207, 0x7f);
416 regmap_write(lt9611->regmap, 0x8207, 0x3f);
417 }
418
419 if (irq_flag3 & 0xc0 && lt9611->bridge.dev)
420 drm_kms_helper_hotplug_event(lt9611->bridge.dev);
421
422 /* video input changed */
423 if (irq_flag0 & 0x01) {
424 dev_info(lt9611->dev, "video input changed\n");
425 regmap_write(lt9611->regmap, 0x829e, 0xff);
426 regmap_write(lt9611->regmap, 0x829e, 0xf7);
427 regmap_write(lt9611->regmap, 0x8204, 0xff);
428 regmap_write(lt9611->regmap, 0x8204, 0xfe);
429 }
430
431 return IRQ_HANDLED;
432 }
433
lt9611_enable_hpd_interrupts(struct lt9611 *lt9611)434 static void lt9611_enable_hpd_interrupts(struct lt9611 *lt9611)
435 {
436 unsigned int val;
437
438 regmap_read(lt9611->regmap, 0x8203, &val);
439
440 val &= ~0xc0;
441 regmap_write(lt9611->regmap, 0x8203, val);
442 regmap_write(lt9611->regmap, 0x8207, 0xff); /* clear */
443 regmap_write(lt9611->regmap, 0x8207, 0x3f);
444 }
445
lt9611_sleep_setup(struct lt9611 *lt9611)446 static void lt9611_sleep_setup(struct lt9611 *lt9611)
447 {
448 const struct reg_sequence sleep_setup[] = {
449 { 0x8024, 0x76 },
450 { 0x8023, 0x01 },
451 { 0x8157, 0x03 }, /* set addr pin as output */
452 { 0x8149, 0x0b },
453
454 { 0x8102, 0x48 }, /* MIPI Rx power down */
455 { 0x8123, 0x80 },
456 { 0x8130, 0x00 },
457 { 0x8011, 0x0a },
458 };
459
460 regmap_multi_reg_write(lt9611->regmap,
461 sleep_setup, ARRAY_SIZE(sleep_setup));
462 lt9611->sleep = true;
463 }
464
lt9611_power_on(struct lt9611 *lt9611)465 static int lt9611_power_on(struct lt9611 *lt9611)
466 {
467 int ret;
468 const struct reg_sequence seq[] = {
469 /* LT9611_System_Init */
470 { 0x8101, 0x18 }, /* sel xtal clock */
471
472 /* timer for frequency meter */
473 { 0x821b, 0x69 }, /* timer 2 */
474 { 0x821c, 0x78 },
475 { 0x82cb, 0x69 }, /* timer 1 */
476 { 0x82cc, 0x78 },
477
478 /* irq init */
479 { 0x8251, 0x01 },
480 { 0x8258, 0x0a }, /* hpd irq */
481 { 0x8259, 0x80 }, /* hpd debounce width */
482 { 0x829e, 0xf7 }, /* video check irq */
483
484 /* power consumption for work */
485 { 0x8004, 0xf0 },
486 { 0x8006, 0xf0 },
487 { 0x800a, 0x80 },
488 { 0x800b, 0x40 },
489 { 0x800d, 0xef },
490 { 0x8011, 0xfa },
491 };
492
493 if (lt9611->power_on)
494 return 0;
495
496 ret = regmap_multi_reg_write(lt9611->regmap, seq, ARRAY_SIZE(seq));
497 if (!ret)
498 lt9611->power_on = true;
499
500 return ret;
501 }
502
lt9611_power_off(struct lt9611 *lt9611)503 static int lt9611_power_off(struct lt9611 *lt9611)
504 {
505 int ret;
506
507 ret = regmap_write(lt9611->regmap, 0x8130, 0x6a);
508 if (!ret)
509 lt9611->power_on = false;
510
511 return ret;
512 }
513
lt9611_reset(struct lt9611 *lt9611)514 static void lt9611_reset(struct lt9611 *lt9611)
515 {
516 gpiod_set_value_cansleep(lt9611->reset_gpio, 1);
517 msleep(20);
518
519 gpiod_set_value_cansleep(lt9611->reset_gpio, 0);
520 msleep(20);
521
522 gpiod_set_value_cansleep(lt9611->reset_gpio, 1);
523 msleep(100);
524 }
525
lt9611_assert_5v(struct lt9611 *lt9611)526 static void lt9611_assert_5v(struct lt9611 *lt9611)
527 {
528 if (!lt9611->enable_gpio)
529 return;
530
531 gpiod_set_value_cansleep(lt9611->enable_gpio, 1);
532 msleep(20);
533 }
534
lt9611_regulator_init(struct lt9611 *lt9611)535 static int lt9611_regulator_init(struct lt9611 *lt9611)
536 {
537 int ret;
538
539 lt9611->supplies[0].supply = "vdd";
540 lt9611->supplies[1].supply = "vcc";
541
542 ret = devm_regulator_bulk_get(lt9611->dev, 2, lt9611->supplies);
543 if (ret < 0)
544 return ret;
545
546 return regulator_set_load(lt9611->supplies[0].consumer, 300000);
547 }
548
lt9611_regulator_enable(struct lt9611 *lt9611)549 static int lt9611_regulator_enable(struct lt9611 *lt9611)
550 {
551 int ret;
552
553 ret = regulator_enable(lt9611->supplies[0].consumer);
554 if (ret < 0)
555 return ret;
556
557 usleep_range(1000, 10000);
558
559 ret = regulator_enable(lt9611->supplies[1].consumer);
560 if (ret < 0) {
561 regulator_disable(lt9611->supplies[0].consumer);
562 return ret;
563 }
564
565 return 0;
566 }
567
lt9611_find_mode(const struct drm_display_mode *mode)568 static struct lt9611_mode *lt9611_find_mode(const struct drm_display_mode *mode)
569 {
570 int i;
571
572 for (i = 0; i < ARRAY_SIZE(lt9611_modes); i++) {
573 if (lt9611_modes[i].hdisplay == mode->hdisplay &&
574 lt9611_modes[i].vdisplay == mode->vdisplay &&
575 lt9611_modes[i].vrefresh == drm_mode_vrefresh(mode)) {
576 return <9611_modes[i];
577 }
578 }
579
580 return NULL;
581 }
582
583 /* connector funcs */
584 static enum drm_connector_status
lt9611_connector_detect(struct drm_connector *connector, bool force)585 lt9611_connector_detect(struct drm_connector *connector, bool force)
586 {
587 struct lt9611 *lt9611 = connector_to_lt9611(connector);
588 unsigned int reg_val = 0;
589 int connected = 0;
590
591 regmap_read(lt9611->regmap, 0x825e, ®_val);
592 connected = (reg_val & BIT(2));
593
594 lt9611->status = connected ? connector_status_connected :
595 connector_status_disconnected;
596
597 return lt9611->status;
598 }
599
lt9611_read_edid(struct lt9611 *lt9611)600 static int lt9611_read_edid(struct lt9611 *lt9611)
601 {
602 unsigned int temp;
603 int ret = 0;
604 int i, j;
605
606 /* memset to clear old buffer, if any */
607 memset(lt9611->edid_buf, 0, sizeof(lt9611->edid_buf));
608
609 regmap_write(lt9611->regmap, 0x8503, 0xc9);
610
611 /* 0xA0 is EDID device address */
612 regmap_write(lt9611->regmap, 0x8504, 0xa0);
613 /* 0x00 is EDID offset address */
614 regmap_write(lt9611->regmap, 0x8505, 0x00);
615
616 /* length for read */
617 regmap_write(lt9611->regmap, 0x8506, EDID_LEN);
618 regmap_write(lt9611->regmap, 0x8514, 0x7f);
619
620 for (i = 0; i < EDID_LOOP; i++) {
621 /* offset address */
622 regmap_write(lt9611->regmap, 0x8505, i * EDID_LEN);
623 regmap_write(lt9611->regmap, 0x8507, 0x36);
624 regmap_write(lt9611->regmap, 0x8507, 0x31);
625 regmap_write(lt9611->regmap, 0x8507, 0x37);
626 usleep_range(5000, 10000);
627
628 regmap_read(lt9611->regmap, 0x8540, &temp);
629
630 if (temp & KEY_DDC_ACCS_DONE) {
631 for (j = 0; j < EDID_LEN; j++) {
632 regmap_read(lt9611->regmap, 0x8583, &temp);
633 lt9611->edid_buf[i * EDID_LEN + j] = temp;
634 }
635
636 } else if (temp & DDC_NO_ACK) { /* DDC No Ack or Abitration lost */
637 dev_err(lt9611->dev, "read edid failed: no ack\n");
638 ret = -EIO;
639 goto end;
640
641 } else {
642 dev_err(lt9611->dev, "read edid failed: access not done\n");
643 ret = -EIO;
644 goto end;
645 }
646 }
647
648 end:
649 regmap_write(lt9611->regmap, 0x8507, 0x1f);
650 return ret;
651 }
652
653 static int
lt9611_get_edid_block(void *data, u8 *buf, unsigned int block, size_t len)654 lt9611_get_edid_block(void *data, u8 *buf, unsigned int block, size_t len)
655 {
656 struct lt9611 *lt9611 = data;
657 int ret;
658
659 if (len > 128)
660 return -EINVAL;
661
662 /* supports up to 1 extension block */
663 /* TODO: add support for more extension blocks */
664 if (block > 1)
665 return -EINVAL;
666
667 if (block == 0) {
668 ret = lt9611_read_edid(lt9611);
669 if (ret) {
670 dev_err(lt9611->dev, "edid read failed\n");
671 return ret;
672 }
673 }
674
675 block %= 2;
676 memcpy(buf, lt9611->edid_buf + (block * 128), len);
677
678 return 0;
679 }
680
lt9611_connector_get_modes(struct drm_connector *connector)681 static int lt9611_connector_get_modes(struct drm_connector *connector)
682 {
683 struct lt9611 *lt9611 = connector_to_lt9611(connector);
684 unsigned int count;
685 struct edid *edid;
686
687 lt9611_power_on(lt9611);
688 edid = drm_do_get_edid(connector, lt9611_get_edid_block, lt9611);
689 drm_connector_update_edid_property(connector, edid);
690 count = drm_add_edid_modes(connector, edid);
691 kfree(edid);
692
693 return count;
694 }
695
696 static enum drm_mode_status
lt9611_connector_mode_valid(struct drm_connector *connector, struct drm_display_mode *mode)697 lt9611_connector_mode_valid(struct drm_connector *connector,
698 struct drm_display_mode *mode)
699 {
700 struct lt9611_mode *lt9611_mode = lt9611_find_mode(mode);
701
702 return lt9611_mode ? MODE_OK : MODE_BAD;
703 }
704
705 /* bridge funcs */
lt9611_bridge_enable(struct drm_bridge *bridge)706 static void lt9611_bridge_enable(struct drm_bridge *bridge)
707 {
708 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
709
710 if (lt9611_power_on(lt9611)) {
711 dev_err(lt9611->dev, "power on failed\n");
712 return;
713 }
714
715 lt9611_mipi_input_analog(lt9611);
716 lt9611_hdmi_tx_digital(lt9611);
717 lt9611_hdmi_tx_phy(lt9611);
718
719 msleep(500);
720
721 lt9611_video_check(lt9611);
722
723 /* Enable HDMI output */
724 regmap_write(lt9611->regmap, 0x8130, 0xea);
725 }
726
lt9611_bridge_disable(struct drm_bridge *bridge)727 static void lt9611_bridge_disable(struct drm_bridge *bridge)
728 {
729 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
730 int ret;
731
732 /* Disable HDMI output */
733 ret = regmap_write(lt9611->regmap, 0x8130, 0x6a);
734 if (ret) {
735 dev_err(lt9611->dev, "video on failed\n");
736 return;
737 }
738
739 if (lt9611_power_off(lt9611)) {
740 dev_err(lt9611->dev, "power on failed\n");
741 return;
742 }
743 }
744
745 static struct
746 drm_connector_helper_funcs lt9611_bridge_connector_helper_funcs = {
747 .get_modes = lt9611_connector_get_modes,
748 .mode_valid = lt9611_connector_mode_valid,
749 };
750
751 static const struct drm_connector_funcs lt9611_bridge_connector_funcs = {
752 .fill_modes = drm_helper_probe_single_connector_modes,
753 .detect = lt9611_connector_detect,
754 .destroy = drm_connector_cleanup,
755 .reset = drm_atomic_helper_connector_reset,
756 .atomic_duplicate_state = drm_atomic_helper_connector_duplicate_state,
757 .atomic_destroy_state = drm_atomic_helper_connector_destroy_state,
758 };
759
lt9611_attach_dsi(struct lt9611 *lt9611, struct device_node *dsi_node)760 static struct mipi_dsi_device *lt9611_attach_dsi(struct lt9611 *lt9611,
761 struct device_node *dsi_node)
762 {
763 const struct mipi_dsi_device_info info = { "lt9611", 0, lt9611->dev->of_node};
764 struct mipi_dsi_device *dsi;
765 struct mipi_dsi_host *host;
766 int ret;
767
768 host = of_find_mipi_dsi_host_by_node(dsi_node);
769 if (!host) {
770 dev_err(lt9611->dev, "failed to find dsi host\n");
771 return ERR_PTR(-EPROBE_DEFER);
772 }
773
774 dsi = mipi_dsi_device_register_full(host, &info);
775 if (IS_ERR(dsi)) {
776 dev_err(lt9611->dev, "failed to create dsi device\n");
777 return dsi;
778 }
779
780 dsi->lanes = 4;
781 dsi->format = MIPI_DSI_FMT_RGB888;
782 dsi->mode_flags = MIPI_DSI_MODE_VIDEO | MIPI_DSI_MODE_VIDEO_SYNC_PULSE |
783 MIPI_DSI_MODE_VIDEO_HSE;
784
785 ret = mipi_dsi_attach(dsi);
786 if (ret < 0) {
787 dev_err(lt9611->dev, "failed to attach dsi to host\n");
788 mipi_dsi_device_unregister(dsi);
789 return ERR_PTR(ret);
790 }
791
792 return dsi;
793 }
794
lt9611_bridge_detach(struct drm_bridge *bridge)795 static void lt9611_bridge_detach(struct drm_bridge *bridge)
796 {
797 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
798
799 if (lt9611->dsi1) {
800 mipi_dsi_detach(lt9611->dsi1);
801 mipi_dsi_device_unregister(lt9611->dsi1);
802 }
803
804 mipi_dsi_detach(lt9611->dsi0);
805 mipi_dsi_device_unregister(lt9611->dsi0);
806 }
807
lt9611_connector_init(struct drm_bridge *bridge, struct lt9611 *lt9611)808 static int lt9611_connector_init(struct drm_bridge *bridge, struct lt9611 *lt9611)
809 {
810 int ret;
811
812 ret = drm_connector_init(bridge->dev, <9611->connector,
813 <9611_bridge_connector_funcs,
814 DRM_MODE_CONNECTOR_HDMIA);
815 if (ret) {
816 DRM_ERROR("Failed to initialize connector with drm\n");
817 return ret;
818 }
819
820 drm_connector_helper_add(<9611->connector,
821 <9611_bridge_connector_helper_funcs);
822
823 if (!bridge->encoder) {
824 DRM_ERROR("Parent encoder object not found");
825 return -ENODEV;
826 }
827
828 drm_connector_attach_encoder(<9611->connector, bridge->encoder);
829
830 return 0;
831 }
832
lt9611_bridge_attach(struct drm_bridge *bridge, enum drm_bridge_attach_flags flags)833 static int lt9611_bridge_attach(struct drm_bridge *bridge,
834 enum drm_bridge_attach_flags flags)
835 {
836 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
837 int ret;
838
839 if (!(flags & DRM_BRIDGE_ATTACH_NO_CONNECTOR)) {
840 ret = lt9611_connector_init(bridge, lt9611);
841 if (ret < 0)
842 return ret;
843 }
844
845 /* Attach primary DSI */
846 lt9611->dsi0 = lt9611_attach_dsi(lt9611, lt9611->dsi0_node);
847 if (IS_ERR(lt9611->dsi0))
848 return PTR_ERR(lt9611->dsi0);
849
850 /* Attach secondary DSI, if specified */
851 if (lt9611->dsi1_node) {
852 lt9611->dsi1 = lt9611_attach_dsi(lt9611, lt9611->dsi1_node);
853 if (IS_ERR(lt9611->dsi1)) {
854 ret = PTR_ERR(lt9611->dsi1);
855 goto err_unregister_dsi0;
856 }
857 }
858
859 return 0;
860
861 err_unregister_dsi0:
862 lt9611_bridge_detach(bridge);
863 drm_connector_cleanup(<9611->connector);
864 mipi_dsi_device_unregister(lt9611->dsi0);
865
866 return ret;
867 }
868
lt9611_bridge_mode_valid(struct drm_bridge *bridge, const struct drm_display_info *info, const struct drm_display_mode *mode)869 static enum drm_mode_status lt9611_bridge_mode_valid(struct drm_bridge *bridge,
870 const struct drm_display_info *info,
871 const struct drm_display_mode *mode)
872 {
873 struct lt9611_mode *lt9611_mode = lt9611_find_mode(mode);
874 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
875
876 if (!lt9611_mode)
877 return MODE_BAD;
878 else if (lt9611_mode->intfs > 1 && !lt9611->dsi1)
879 return MODE_PANEL;
880 else
881 return MODE_OK;
882 }
883
lt9611_bridge_pre_enable(struct drm_bridge *bridge)884 static void lt9611_bridge_pre_enable(struct drm_bridge *bridge)
885 {
886 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
887 static const struct reg_sequence reg_cfg[] = {
888 { 0x8102, 0x12 },
889 { 0x8123, 0x40 },
890 { 0x8130, 0xea },
891 { 0x8011, 0xfa },
892 };
893
894 if (!lt9611->sleep)
895 return;
896
897 regmap_multi_reg_write(lt9611->regmap,
898 reg_cfg, ARRAY_SIZE(reg_cfg));
899
900 lt9611->sleep = false;
901 }
902
lt9611_bridge_post_disable(struct drm_bridge *bridge)903 static void lt9611_bridge_post_disable(struct drm_bridge *bridge)
904 {
905 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
906
907 lt9611_sleep_setup(lt9611);
908 }
909
lt9611_bridge_mode_set(struct drm_bridge *bridge, const struct drm_display_mode *mode, const struct drm_display_mode *adj_mode)910 static void lt9611_bridge_mode_set(struct drm_bridge *bridge,
911 const struct drm_display_mode *mode,
912 const struct drm_display_mode *adj_mode)
913 {
914 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
915 struct hdmi_avi_infoframe avi_frame;
916 unsigned int postdiv;
917 int ret;
918
919 lt9611_bridge_pre_enable(bridge);
920
921 lt9611_mipi_input_digital(lt9611, mode);
922 lt9611_pll_setup(lt9611, mode, &postdiv);
923 lt9611_mipi_video_setup(lt9611, mode);
924 lt9611_pcr_setup(lt9611, mode, postdiv);
925
926 ret = drm_hdmi_avi_infoframe_from_display_mode(&avi_frame,
927 <9611->connector,
928 mode);
929 if (!ret)
930 lt9611->vic = avi_frame.video_code;
931 }
932
lt9611_bridge_detect(struct drm_bridge *bridge)933 static enum drm_connector_status lt9611_bridge_detect(struct drm_bridge *bridge)
934 {
935 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
936 unsigned int reg_val = 0;
937 int connected;
938
939 regmap_read(lt9611->regmap, 0x825e, ®_val);
940 connected = reg_val & BIT(2);
941
942 lt9611->status = connected ? connector_status_connected :
943 connector_status_disconnected;
944
945 return lt9611->status;
946 }
947
lt9611_bridge_get_edid(struct drm_bridge *bridge, struct drm_connector *connector)948 static struct edid *lt9611_bridge_get_edid(struct drm_bridge *bridge,
949 struct drm_connector *connector)
950 {
951 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
952
953 lt9611_power_on(lt9611);
954 return drm_do_get_edid(connector, lt9611_get_edid_block, lt9611);
955 }
956
lt9611_bridge_hpd_enable(struct drm_bridge *bridge)957 static void lt9611_bridge_hpd_enable(struct drm_bridge *bridge)
958 {
959 struct lt9611 *lt9611 = bridge_to_lt9611(bridge);
960
961 lt9611_enable_hpd_interrupts(lt9611);
962 }
963
964 static const struct drm_bridge_funcs lt9611_bridge_funcs = {
965 .attach = lt9611_bridge_attach,
966 .detach = lt9611_bridge_detach,
967 .mode_valid = lt9611_bridge_mode_valid,
968 .enable = lt9611_bridge_enable,
969 .disable = lt9611_bridge_disable,
970 .post_disable = lt9611_bridge_post_disable,
971 .mode_set = lt9611_bridge_mode_set,
972 .detect = lt9611_bridge_detect,
973 .get_edid = lt9611_bridge_get_edid,
974 .hpd_enable = lt9611_bridge_hpd_enable,
975 };
976
lt9611_parse_dt(struct device *dev, struct lt9611 *lt9611)977 static int lt9611_parse_dt(struct device *dev,
978 struct lt9611 *lt9611)
979 {
980 lt9611->dsi0_node = of_graph_get_remote_node(dev->of_node, 0, -1);
981 if (!lt9611->dsi0_node) {
982 dev_err(lt9611->dev, "failed to get remote node for primary dsi\n");
983 return -ENODEV;
984 }
985
986 lt9611->dsi1_node = of_graph_get_remote_node(dev->of_node, 1, -1);
987
988 lt9611->ac_mode = of_property_read_bool(dev->of_node, "lt,ac-mode");
989
990 return 0;
991 }
992
lt9611_gpio_init(struct lt9611 *lt9611)993 static int lt9611_gpio_init(struct lt9611 *lt9611)
994 {
995 struct device *dev = lt9611->dev;
996
997 lt9611->reset_gpio = devm_gpiod_get(dev, "reset", GPIOD_OUT_HIGH);
998 if (IS_ERR(lt9611->reset_gpio)) {
999 dev_err(dev, "failed to acquire reset gpio\n");
1000 return PTR_ERR(lt9611->reset_gpio);
1001 }
1002
1003 lt9611->enable_gpio = devm_gpiod_get_optional(dev, "enable",
1004 GPIOD_OUT_LOW);
1005 if (IS_ERR(lt9611->enable_gpio)) {
1006 dev_err(dev, "failed to acquire enable gpio\n");
1007 return PTR_ERR(lt9611->enable_gpio);
1008 }
1009
1010 return 0;
1011 }
1012
lt9611_read_device_rev(struct lt9611 *lt9611)1013 static int lt9611_read_device_rev(struct lt9611 *lt9611)
1014 {
1015 unsigned int rev;
1016 int ret;
1017
1018 regmap_write(lt9611->regmap, 0x80ee, 0x01);
1019 ret = regmap_read(lt9611->regmap, 0x8002, &rev);
1020 if (ret)
1021 dev_err(lt9611->dev, "failed to read revision: %d\n", ret);
1022 else
1023 dev_info(lt9611->dev, "LT9611 revision: 0x%x\n", rev);
1024
1025 return ret;
1026 }
1027
lt9611_hdmi_hw_params(struct device *dev, void *data, struct hdmi_codec_daifmt *fmt, struct hdmi_codec_params *hparms)1028 static int lt9611_hdmi_hw_params(struct device *dev, void *data,
1029 struct hdmi_codec_daifmt *fmt,
1030 struct hdmi_codec_params *hparms)
1031 {
1032 struct lt9611 *lt9611 = data;
1033
1034 if (hparms->sample_rate == 48000)
1035 regmap_write(lt9611->regmap, 0x840f, 0x2b);
1036 else if (hparms->sample_rate == 96000)
1037 regmap_write(lt9611->regmap, 0x840f, 0xab);
1038 else
1039 return -EINVAL;
1040
1041 regmap_write(lt9611->regmap, 0x8435, 0x00);
1042 regmap_write(lt9611->regmap, 0x8436, 0x18);
1043 regmap_write(lt9611->regmap, 0x8437, 0x00);
1044
1045 return 0;
1046 }
1047
lt9611_audio_startup(struct device *dev, void *data)1048 static int lt9611_audio_startup(struct device *dev, void *data)
1049 {
1050 struct lt9611 *lt9611 = data;
1051
1052 regmap_write(lt9611->regmap, 0x82d6, 0x8c);
1053 regmap_write(lt9611->regmap, 0x82d7, 0x04);
1054
1055 regmap_write(lt9611->regmap, 0x8406, 0x08);
1056 regmap_write(lt9611->regmap, 0x8407, 0x10);
1057
1058 regmap_write(lt9611->regmap, 0x8434, 0xd5);
1059
1060 return 0;
1061 }
1062
lt9611_audio_shutdown(struct device *dev, void *data)1063 static void lt9611_audio_shutdown(struct device *dev, void *data)
1064 {
1065 struct lt9611 *lt9611 = data;
1066
1067 regmap_write(lt9611->regmap, 0x8406, 0x00);
1068 regmap_write(lt9611->regmap, 0x8407, 0x00);
1069 }
1070
lt9611_hdmi_i2s_get_dai_id(struct snd_soc_component *component, struct device_node *endpoint)1071 static int lt9611_hdmi_i2s_get_dai_id(struct snd_soc_component *component,
1072 struct device_node *endpoint)
1073 {
1074 struct of_endpoint of_ep;
1075 int ret;
1076
1077 ret = of_graph_parse_endpoint(endpoint, &of_ep);
1078 if (ret < 0)
1079 return ret;
1080
1081 /*
1082 * HDMI sound should be located as reg = <2>
1083 * Then, it is sound port 0
1084 */
1085 if (of_ep.port == 2)
1086 return 0;
1087
1088 return -EINVAL;
1089 }
1090
1091 static const struct hdmi_codec_ops lt9611_codec_ops = {
1092 .hw_params = lt9611_hdmi_hw_params,
1093 .audio_shutdown = lt9611_audio_shutdown,
1094 .audio_startup = lt9611_audio_startup,
1095 .get_dai_id = lt9611_hdmi_i2s_get_dai_id,
1096 };
1097
1098 static struct hdmi_codec_pdata codec_data = {
1099 .ops = <9611_codec_ops,
1100 .max_i2s_channels = 8,
1101 .i2s = 1,
1102 };
1103
lt9611_audio_init(struct device *dev, struct lt9611 *lt9611)1104 static int lt9611_audio_init(struct device *dev, struct lt9611 *lt9611)
1105 {
1106 codec_data.data = lt9611;
1107 lt9611->audio_pdev =
1108 platform_device_register_data(dev, HDMI_CODEC_DRV_NAME,
1109 PLATFORM_DEVID_AUTO,
1110 &codec_data, sizeof(codec_data));
1111
1112 return PTR_ERR_OR_ZERO(lt9611->audio_pdev);
1113 }
1114
lt9611_audio_exit(struct lt9611 *lt9611)1115 static void lt9611_audio_exit(struct lt9611 *lt9611)
1116 {
1117 if (lt9611->audio_pdev) {
1118 platform_device_unregister(lt9611->audio_pdev);
1119 lt9611->audio_pdev = NULL;
1120 }
1121 }
1122
lt9611_probe(struct i2c_client *client, const struct i2c_device_id *id)1123 static int lt9611_probe(struct i2c_client *client,
1124 const struct i2c_device_id *id)
1125 {
1126 struct lt9611 *lt9611;
1127 struct device *dev = &client->dev;
1128 int ret;
1129
1130 if (!i2c_check_functionality(client->adapter, I2C_FUNC_I2C)) {
1131 dev_err(dev, "device doesn't support I2C\n");
1132 return -ENODEV;
1133 }
1134
1135 lt9611 = devm_kzalloc(dev, sizeof(*lt9611), GFP_KERNEL);
1136 if (!lt9611)
1137 return -ENOMEM;
1138
1139 lt9611->dev = &client->dev;
1140 lt9611->client = client;
1141 lt9611->sleep = false;
1142
1143 lt9611->regmap = devm_regmap_init_i2c(client, <9611_regmap_config);
1144 if (IS_ERR(lt9611->regmap)) {
1145 dev_err(lt9611->dev, "regmap i2c init failed\n");
1146 return PTR_ERR(lt9611->regmap);
1147 }
1148
1149 ret = lt9611_parse_dt(&client->dev, lt9611);
1150 if (ret) {
1151 dev_err(dev, "failed to parse device tree\n");
1152 return ret;
1153 }
1154
1155 ret = lt9611_gpio_init(lt9611);
1156 if (ret < 0)
1157 goto err_of_put;
1158
1159 ret = lt9611_regulator_init(lt9611);
1160 if (ret < 0)
1161 goto err_of_put;
1162
1163 lt9611_assert_5v(lt9611);
1164
1165 ret = lt9611_regulator_enable(lt9611);
1166 if (ret)
1167 goto err_of_put;
1168
1169 lt9611_reset(lt9611);
1170
1171 ret = lt9611_read_device_rev(lt9611);
1172 if (ret) {
1173 dev_err(dev, "failed to read chip rev\n");
1174 goto err_disable_regulators;
1175 }
1176
1177 ret = devm_request_threaded_irq(dev, client->irq, NULL,
1178 lt9611_irq_thread_handler,
1179 IRQF_ONESHOT, "lt9611", lt9611);
1180 if (ret) {
1181 dev_err(dev, "failed to request irq\n");
1182 goto err_disable_regulators;
1183 }
1184
1185 i2c_set_clientdata(client, lt9611);
1186
1187 lt9611->bridge.funcs = <9611_bridge_funcs;
1188 lt9611->bridge.of_node = client->dev.of_node;
1189 lt9611->bridge.ops = DRM_BRIDGE_OP_DETECT | DRM_BRIDGE_OP_EDID |
1190 DRM_BRIDGE_OP_HPD | DRM_BRIDGE_OP_MODES;
1191 lt9611->bridge.type = DRM_MODE_CONNECTOR_HDMIA;
1192
1193 drm_bridge_add(<9611->bridge);
1194
1195 lt9611_enable_hpd_interrupts(lt9611);
1196
1197 return lt9611_audio_init(dev, lt9611);
1198
1199 err_disable_regulators:
1200 regulator_bulk_disable(ARRAY_SIZE(lt9611->supplies), lt9611->supplies);
1201
1202 err_of_put:
1203 of_node_put(lt9611->dsi1_node);
1204 of_node_put(lt9611->dsi0_node);
1205
1206 return ret;
1207 }
1208
lt9611_remove(struct i2c_client *client)1209 static int lt9611_remove(struct i2c_client *client)
1210 {
1211 struct lt9611 *lt9611 = i2c_get_clientdata(client);
1212
1213 disable_irq(client->irq);
1214 lt9611_audio_exit(lt9611);
1215 drm_bridge_remove(<9611->bridge);
1216
1217 regulator_bulk_disable(ARRAY_SIZE(lt9611->supplies), lt9611->supplies);
1218
1219 of_node_put(lt9611->dsi1_node);
1220 of_node_put(lt9611->dsi0_node);
1221
1222 return 0;
1223 }
1224
1225 static struct i2c_device_id lt9611_id[] = {
1226 { "lontium,lt9611", 0 },
1227 {}
1228 };
1229 MODULE_DEVICE_TABLE(i2c, lt9611_id);
1230
1231 static const struct of_device_id lt9611_match_table[] = {
1232 { .compatible = "lontium,lt9611" },
1233 { }
1234 };
1235 MODULE_DEVICE_TABLE(of, lt9611_match_table);
1236
1237 static struct i2c_driver lt9611_driver = {
1238 .driver = {
1239 .name = "lt9611",
1240 .of_match_table = lt9611_match_table,
1241 },
1242 .probe = lt9611_probe,
1243 .remove = lt9611_remove,
1244 .id_table = lt9611_id,
1245 };
1246 module_i2c_driver(lt9611_driver);
1247
1248 MODULE_LICENSE("GPL v2");
1249