1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copyright (C) Rockchip Electronics Co., Ltd.
4 * Author: Chris Zhong <zyw@rock-chips.com>
5 */
6
7 #include <linux/clk.h>
8 #include <linux/component.h>
9 #include <linux/extcon.h>
10 #include <linux/firmware.h>
11 #include <linux/mfd/syscon.h>
12 #include <linux/phy/phy.h>
13 #include <linux/regmap.h>
14 #include <linux/reset.h>
15
16 #include <sound/hdmi-codec.h>
17
18 #include <drm/display/drm_dp_helper.h>
19 #include <drm/display/drm_hdmi_audio_helper.h>
20 #include <drm/drm_atomic_helper.h>
21 #include <drm/drm_bridge_connector.h>
22 #include <drm/drm_edid.h>
23 #include <drm/drm_of.h>
24 #include <drm/drm_print.h>
25 #include <drm/drm_probe_helper.h>
26 #include <drm/drm_simple_kms_helper.h>
27
28 #include "cdn-dp-core.h"
29 #include "cdn-dp-reg.h"
30
bridge_to_dp(struct drm_bridge * bridge)31 static inline struct cdn_dp_device *bridge_to_dp(struct drm_bridge *bridge)
32 {
33 return container_of(bridge, struct cdn_dp_device, bridge);
34 }
35
encoder_to_dp(struct drm_encoder * encoder)36 static inline struct cdn_dp_device *encoder_to_dp(struct drm_encoder *encoder)
37 {
38 struct rockchip_encoder *rkencoder = to_rockchip_encoder(encoder);
39
40 return container_of(rkencoder, struct cdn_dp_device, encoder);
41 }
42
43 #define GRF_SOC_CON9 0x6224
44 #define DP_SEL_VOP_LIT BIT(12)
45 #define GRF_SOC_CON26 0x6268
46 #define DPTX_HPD_SEL (3 << 12)
47 #define DPTX_HPD_DEL (2 << 12)
48 #define DPTX_HPD_SEL_MASK (3 << 28)
49
50 #define CDN_FW_TIMEOUT_MS (64 * 1000)
51 #define CDN_DPCD_TIMEOUT_MS 5000
52 #define CDN_DP_FIRMWARE "rockchip/dptx.bin"
53 MODULE_FIRMWARE(CDN_DP_FIRMWARE);
54
55 struct cdn_dp_data {
56 u8 max_phy;
57 };
58
59 static struct cdn_dp_data rk3399_cdn_dp = {
60 .max_phy = 2,
61 };
62
63 static const struct of_device_id cdn_dp_dt_ids[] = {
64 { .compatible = "rockchip,rk3399-cdn-dp",
65 .data = (void *)&rk3399_cdn_dp },
66 {}
67 };
68
69 MODULE_DEVICE_TABLE(of, cdn_dp_dt_ids);
70
cdn_dp_grf_write(struct cdn_dp_device * dp,unsigned int reg,unsigned int val)71 static int cdn_dp_grf_write(struct cdn_dp_device *dp,
72 unsigned int reg, unsigned int val)
73 {
74 int ret;
75
76 ret = clk_prepare_enable(dp->grf_clk);
77 if (ret) {
78 DRM_DEV_ERROR(dp->dev, "Failed to prepare_enable grf clock\n");
79 return ret;
80 }
81
82 ret = regmap_write(dp->grf, reg, val);
83 if (ret) {
84 DRM_DEV_ERROR(dp->dev, "Could not write to GRF: %d\n", ret);
85 clk_disable_unprepare(dp->grf_clk);
86 return ret;
87 }
88
89 clk_disable_unprepare(dp->grf_clk);
90
91 return 0;
92 }
93
cdn_dp_clk_enable(struct cdn_dp_device * dp)94 static int cdn_dp_clk_enable(struct cdn_dp_device *dp)
95 {
96 int ret;
97 unsigned long rate;
98
99 ret = clk_prepare_enable(dp->pclk);
100 if (ret < 0) {
101 DRM_DEV_ERROR(dp->dev, "cannot enable dp pclk %d\n", ret);
102 goto err_pclk;
103 }
104
105 ret = clk_prepare_enable(dp->core_clk);
106 if (ret < 0) {
107 DRM_DEV_ERROR(dp->dev, "cannot enable core_clk %d\n", ret);
108 goto err_core_clk;
109 }
110
111 ret = pm_runtime_get_sync(dp->dev);
112 if (ret < 0) {
113 DRM_DEV_ERROR(dp->dev, "cannot get pm runtime %d\n", ret);
114 goto err_pm_runtime_get;
115 }
116
117 reset_control_assert(dp->core_rst);
118 reset_control_assert(dp->dptx_rst);
119 reset_control_assert(dp->apb_rst);
120 reset_control_deassert(dp->core_rst);
121 reset_control_deassert(dp->dptx_rst);
122 reset_control_deassert(dp->apb_rst);
123
124 rate = clk_get_rate(dp->core_clk);
125 if (!rate) {
126 DRM_DEV_ERROR(dp->dev, "get clk rate failed\n");
127 ret = -EINVAL;
128 goto err_set_rate;
129 }
130
131 cdn_dp_set_fw_clk(dp, rate);
132 cdn_dp_clock_reset(dp);
133
134 return 0;
135
136 err_set_rate:
137 pm_runtime_put(dp->dev);
138 err_pm_runtime_get:
139 clk_disable_unprepare(dp->core_clk);
140 err_core_clk:
141 clk_disable_unprepare(dp->pclk);
142 err_pclk:
143 return ret;
144 }
145
cdn_dp_clk_disable(struct cdn_dp_device * dp)146 static void cdn_dp_clk_disable(struct cdn_dp_device *dp)
147 {
148 pm_runtime_put_sync(dp->dev);
149 clk_disable_unprepare(dp->pclk);
150 clk_disable_unprepare(dp->core_clk);
151 }
152
cdn_dp_get_port_lanes(struct cdn_dp_port * port)153 static int cdn_dp_get_port_lanes(struct cdn_dp_port *port)
154 {
155 struct extcon_dev *edev = port->extcon;
156 union extcon_property_value property;
157 int dptx;
158 u8 lanes;
159
160 dptx = extcon_get_state(edev, EXTCON_DISP_DP);
161 if (dptx > 0) {
162 extcon_get_property(edev, EXTCON_DISP_DP,
163 EXTCON_PROP_USB_SS, &property);
164 if (property.intval)
165 lanes = 2;
166 else
167 lanes = 4;
168 } else {
169 lanes = 0;
170 }
171
172 return lanes;
173 }
174
cdn_dp_get_sink_count(struct cdn_dp_device * dp,u8 * sink_count)175 static int cdn_dp_get_sink_count(struct cdn_dp_device *dp, u8 *sink_count)
176 {
177 int ret;
178 u8 value;
179
180 *sink_count = 0;
181 ret = cdn_dp_dpcd_read(dp, DP_SINK_COUNT, &value, 1);
182 if (ret)
183 return ret;
184
185 *sink_count = DP_GET_SINK_COUNT(value);
186 return 0;
187 }
188
cdn_dp_connected_port(struct cdn_dp_device * dp)189 static struct cdn_dp_port *cdn_dp_connected_port(struct cdn_dp_device *dp)
190 {
191 struct cdn_dp_port *port;
192 int i, lanes;
193
194 for (i = 0; i < dp->ports; i++) {
195 port = dp->port[i];
196 lanes = cdn_dp_get_port_lanes(port);
197 if (lanes)
198 return port;
199 }
200 return NULL;
201 }
202
cdn_dp_check_sink_connection(struct cdn_dp_device * dp)203 static bool cdn_dp_check_sink_connection(struct cdn_dp_device *dp)
204 {
205 unsigned long timeout = jiffies + msecs_to_jiffies(CDN_DPCD_TIMEOUT_MS);
206 struct cdn_dp_port *port;
207 u8 sink_count = 0;
208
209 if (dp->active_port < 0 || dp->active_port >= dp->ports) {
210 DRM_DEV_ERROR(dp->dev, "active_port is wrong!\n");
211 return false;
212 }
213
214 port = dp->port[dp->active_port];
215
216 /*
217 * Attempt to read sink count, retry in case the sink may not be ready.
218 *
219 * Sinks are *supposed* to come up within 1ms from an off state, but
220 * some docks need more time to power up.
221 */
222 while (time_before(jiffies, timeout)) {
223 if (!extcon_get_state(port->extcon, EXTCON_DISP_DP))
224 return false;
225
226 if (!cdn_dp_get_sink_count(dp, &sink_count))
227 return sink_count ? true : false;
228
229 usleep_range(5000, 10000);
230 }
231
232 DRM_DEV_ERROR(dp->dev, "Get sink capability timed out\n");
233 return false;
234 }
235
236 static enum drm_connector_status
cdn_dp_bridge_detect(struct drm_bridge * bridge,struct drm_connector * connector)237 cdn_dp_bridge_detect(struct drm_bridge *bridge, struct drm_connector *connector)
238 {
239 struct cdn_dp_device *dp = bridge_to_dp(bridge);
240 enum drm_connector_status status = connector_status_disconnected;
241
242 mutex_lock(&dp->lock);
243 if (dp->connected)
244 status = connector_status_connected;
245 mutex_unlock(&dp->lock);
246
247 return status;
248 }
249
250 static const struct drm_edid *
cdn_dp_bridge_edid_read(struct drm_bridge * bridge,struct drm_connector * connector)251 cdn_dp_bridge_edid_read(struct drm_bridge *bridge, struct drm_connector *connector)
252 {
253 struct cdn_dp_device *dp = bridge_to_dp(bridge);
254 const struct drm_edid *drm_edid;
255
256 mutex_lock(&dp->lock);
257 drm_edid = drm_edid_read_custom(connector, cdn_dp_get_edid_block, dp);
258 mutex_unlock(&dp->lock);
259
260 return drm_edid;
261 }
262
263 static enum drm_mode_status
cdn_dp_bridge_mode_valid(struct drm_bridge * bridge,const struct drm_display_info * display_info,const struct drm_display_mode * mode)264 cdn_dp_bridge_mode_valid(struct drm_bridge *bridge,
265 const struct drm_display_info *display_info,
266 const struct drm_display_mode *mode)
267 {
268 struct cdn_dp_device *dp = bridge_to_dp(bridge);
269 u32 requested, actual, rate, sink_max, source_max = 0;
270 u8 lanes, bpc;
271
272 /* If DP is disconnected, every mode is invalid */
273 if (!dp->connected)
274 return MODE_BAD;
275
276 switch (display_info->bpc) {
277 case 10:
278 bpc = 10;
279 break;
280 case 6:
281 bpc = 6;
282 break;
283 default:
284 bpc = 8;
285 break;
286 }
287
288 requested = mode->clock * bpc * 3 / 1000;
289
290 source_max = dp->lanes;
291 sink_max = drm_dp_max_lane_count(dp->dpcd);
292 lanes = min(source_max, sink_max);
293
294 source_max = drm_dp_bw_code_to_link_rate(CDN_DP_MAX_LINK_RATE);
295 sink_max = drm_dp_max_link_rate(dp->dpcd);
296 rate = min(source_max, sink_max);
297
298 actual = rate * lanes / 100;
299
300 /* efficiency is about 0.8 */
301 actual = actual * 8 / 10;
302
303 if (requested > actual) {
304 DRM_DEV_DEBUG_KMS(dp->dev,
305 "requested=%d, actual=%d, clock=%d\n",
306 requested, actual, mode->clock);
307 return MODE_CLOCK_HIGH;
308 }
309
310 return MODE_OK;
311 }
312
cdn_dp_firmware_init(struct cdn_dp_device * dp)313 static int cdn_dp_firmware_init(struct cdn_dp_device *dp)
314 {
315 int ret;
316 const u32 *iram_data, *dram_data;
317 const struct firmware *fw = dp->fw;
318 const struct cdn_firmware_header *hdr;
319
320 hdr = (struct cdn_firmware_header *)fw->data;
321 if (fw->size != le32_to_cpu(hdr->size_bytes)) {
322 DRM_DEV_ERROR(dp->dev, "firmware is invalid\n");
323 return -EINVAL;
324 }
325
326 iram_data = (const u32 *)(fw->data + hdr->header_size);
327 dram_data = (const u32 *)(fw->data + hdr->header_size + hdr->iram_size);
328
329 ret = cdn_dp_load_firmware(dp, iram_data, hdr->iram_size,
330 dram_data, hdr->dram_size);
331 if (ret)
332 return ret;
333
334 ret = cdn_dp_set_firmware_active(dp, true);
335 if (ret) {
336 DRM_DEV_ERROR(dp->dev, "active ucpu failed: %d\n", ret);
337 return ret;
338 }
339
340 return cdn_dp_event_config(dp);
341 }
342
cdn_dp_get_sink_capability(struct cdn_dp_device * dp)343 static int cdn_dp_get_sink_capability(struct cdn_dp_device *dp)
344 {
345 int ret;
346
347 if (!cdn_dp_check_sink_connection(dp))
348 return -ENODEV;
349
350 ret = cdn_dp_dpcd_read(dp, DP_DPCD_REV, dp->dpcd,
351 DP_RECEIVER_CAP_SIZE);
352 if (ret) {
353 DRM_DEV_ERROR(dp->dev, "Failed to get caps %d\n", ret);
354 return ret;
355 }
356
357 return 0;
358 }
359
cdn_dp_enable_phy(struct cdn_dp_device * dp,struct cdn_dp_port * port)360 static int cdn_dp_enable_phy(struct cdn_dp_device *dp, struct cdn_dp_port *port)
361 {
362 union extcon_property_value property;
363 int ret;
364
365 if (!port->phy_enabled) {
366 ret = phy_power_on(port->phy);
367 if (ret) {
368 DRM_DEV_ERROR(dp->dev, "phy power on failed: %d\n",
369 ret);
370 goto err_phy;
371 }
372 port->phy_enabled = true;
373 }
374
375 ret = cdn_dp_grf_write(dp, GRF_SOC_CON26,
376 DPTX_HPD_SEL_MASK | DPTX_HPD_SEL);
377 if (ret) {
378 DRM_DEV_ERROR(dp->dev, "Failed to write HPD_SEL %d\n", ret);
379 goto err_power_on;
380 }
381
382 ret = cdn_dp_get_hpd_status(dp);
383 if (ret <= 0) {
384 if (!ret)
385 DRM_DEV_ERROR(dp->dev, "hpd does not exist\n");
386 goto err_power_on;
387 }
388
389 ret = extcon_get_property(port->extcon, EXTCON_DISP_DP,
390 EXTCON_PROP_USB_TYPEC_POLARITY, &property);
391 if (ret) {
392 DRM_DEV_ERROR(dp->dev, "get property failed\n");
393 goto err_power_on;
394 }
395
396 port->lanes = cdn_dp_get_port_lanes(port);
397 ret = cdn_dp_set_host_cap(dp, port->lanes, property.intval);
398 if (ret) {
399 DRM_DEV_ERROR(dp->dev, "set host capabilities failed: %d\n",
400 ret);
401 goto err_power_on;
402 }
403
404 dp->active_port = port->id;
405 return 0;
406
407 err_power_on:
408 if (phy_power_off(port->phy))
409 DRM_DEV_ERROR(dp->dev, "phy power off failed: %d", ret);
410 else
411 port->phy_enabled = false;
412
413 err_phy:
414 cdn_dp_grf_write(dp, GRF_SOC_CON26,
415 DPTX_HPD_SEL_MASK | DPTX_HPD_DEL);
416 return ret;
417 }
418
cdn_dp_disable_phy(struct cdn_dp_device * dp,struct cdn_dp_port * port)419 static int cdn_dp_disable_phy(struct cdn_dp_device *dp,
420 struct cdn_dp_port *port)
421 {
422 int ret;
423
424 if (port->phy_enabled) {
425 ret = phy_power_off(port->phy);
426 if (ret) {
427 DRM_DEV_ERROR(dp->dev, "phy power off failed: %d", ret);
428 return ret;
429 }
430 }
431
432 port->phy_enabled = false;
433 port->lanes = 0;
434 dp->active_port = -1;
435 return 0;
436 }
437
cdn_dp_disable(struct cdn_dp_device * dp)438 static int cdn_dp_disable(struct cdn_dp_device *dp)
439 {
440 int ret, i;
441
442 if (!dp->active)
443 return 0;
444
445 for (i = 0; i < dp->ports; i++)
446 cdn_dp_disable_phy(dp, dp->port[i]);
447
448 ret = cdn_dp_grf_write(dp, GRF_SOC_CON26,
449 DPTX_HPD_SEL_MASK | DPTX_HPD_DEL);
450 if (ret) {
451 DRM_DEV_ERROR(dp->dev, "Failed to clear hpd sel %d\n",
452 ret);
453 return ret;
454 }
455
456 cdn_dp_set_firmware_active(dp, false);
457 cdn_dp_clk_disable(dp);
458 dp->active = false;
459 dp->max_lanes = 0;
460 dp->max_rate = 0;
461
462 return 0;
463 }
464
cdn_dp_enable(struct cdn_dp_device * dp)465 static int cdn_dp_enable(struct cdn_dp_device *dp)
466 {
467 int ret, i, lanes;
468 struct cdn_dp_port *port;
469
470 port = cdn_dp_connected_port(dp);
471 if (!port) {
472 DRM_DEV_ERROR(dp->dev,
473 "Can't enable without connection\n");
474 return -ENODEV;
475 }
476
477 if (dp->active)
478 return 0;
479
480 ret = cdn_dp_clk_enable(dp);
481 if (ret)
482 return ret;
483
484 ret = cdn_dp_firmware_init(dp);
485 if (ret) {
486 DRM_DEV_ERROR(dp->dev, "firmware init failed: %d", ret);
487 goto err_clk_disable;
488 }
489
490 /* only enable the port that connected with downstream device */
491 for (i = port->id; i < dp->ports; i++) {
492 port = dp->port[i];
493 lanes = cdn_dp_get_port_lanes(port);
494 if (lanes) {
495 ret = cdn_dp_enable_phy(dp, port);
496 if (ret)
497 continue;
498
499 ret = cdn_dp_get_sink_capability(dp);
500 if (ret) {
501 cdn_dp_disable_phy(dp, port);
502 } else {
503 dp->active = true;
504 dp->lanes = port->lanes;
505 return 0;
506 }
507 }
508 }
509
510 err_clk_disable:
511 cdn_dp_clk_disable(dp);
512 return ret;
513 }
514
cdn_dp_bridge_mode_set(struct drm_bridge * bridge,const struct drm_display_mode * mode,const struct drm_display_mode * adjusted)515 static void cdn_dp_bridge_mode_set(struct drm_bridge *bridge,
516 const struct drm_display_mode *mode,
517 const struct drm_display_mode *adjusted)
518 {
519 struct cdn_dp_device *dp = bridge_to_dp(bridge);
520 struct video_info *video = &dp->video_info;
521
522 video->color_fmt = PXL_RGB;
523 video->v_sync_polarity = !!(mode->flags & DRM_MODE_FLAG_NVSYNC);
524 video->h_sync_polarity = !!(mode->flags & DRM_MODE_FLAG_NHSYNC);
525
526 drm_mode_copy(&dp->mode, adjusted);
527 }
528
cdn_dp_check_link_status(struct cdn_dp_device * dp)529 static bool cdn_dp_check_link_status(struct cdn_dp_device *dp)
530 {
531 u8 link_status[DP_LINK_STATUS_SIZE];
532 struct cdn_dp_port *port = cdn_dp_connected_port(dp);
533 u8 sink_lanes = drm_dp_max_lane_count(dp->dpcd);
534
535 if (!port || !dp->max_rate || !dp->max_lanes)
536 return false;
537
538 if (cdn_dp_dpcd_read(dp, DP_LANE0_1_STATUS, link_status,
539 DP_LINK_STATUS_SIZE)) {
540 DRM_ERROR("Failed to get link status\n");
541 return false;
542 }
543
544 /* if link training is requested we should perform it always */
545 return drm_dp_channel_eq_ok(link_status, min(port->lanes, sink_lanes));
546 }
547
cdn_dp_display_info_update(struct cdn_dp_device * dp,struct drm_display_info * display_info)548 static void cdn_dp_display_info_update(struct cdn_dp_device *dp,
549 struct drm_display_info *display_info)
550 {
551 struct video_info *video = &dp->video_info;
552
553 switch (display_info->bpc) {
554 case 10:
555 video->color_depth = 10;
556 break;
557 case 6:
558 video->color_depth = 6;
559 break;
560 default:
561 video->color_depth = 8;
562 break;
563 }
564 }
565
cdn_dp_bridge_atomic_enable(struct drm_bridge * bridge,struct drm_atomic_state * state)566 static void cdn_dp_bridge_atomic_enable(struct drm_bridge *bridge, struct drm_atomic_state *state)
567 {
568 struct cdn_dp_device *dp = bridge_to_dp(bridge);
569 struct drm_connector *connector;
570 int ret, val;
571
572 connector = drm_atomic_get_new_connector_for_encoder(state, bridge->encoder);
573 if (!connector)
574 return;
575
576 cdn_dp_display_info_update(dp, &connector->display_info);
577
578 ret = drm_of_encoder_active_endpoint_id(dp->dev->of_node, &dp->encoder.encoder);
579 if (ret < 0) {
580 DRM_DEV_ERROR(dp->dev, "Could not get vop id, %d", ret);
581 return;
582 }
583
584 DRM_DEV_DEBUG_KMS(dp->dev, "vop %s output to cdn-dp\n",
585 (ret) ? "LIT" : "BIG");
586 if (ret)
587 val = DP_SEL_VOP_LIT | (DP_SEL_VOP_LIT << 16);
588 else
589 val = DP_SEL_VOP_LIT << 16;
590
591 ret = cdn_dp_grf_write(dp, GRF_SOC_CON9, val);
592 if (ret)
593 return;
594
595 mutex_lock(&dp->lock);
596
597 ret = cdn_dp_enable(dp);
598 if (ret) {
599 DRM_DEV_ERROR(dp->dev, "Failed to enable bridge %d\n",
600 ret);
601 goto out;
602 }
603 if (!cdn_dp_check_link_status(dp)) {
604 ret = cdn_dp_train_link(dp);
605 if (ret) {
606 DRM_DEV_ERROR(dp->dev, "Failed link train %d\n", ret);
607 goto out;
608 }
609 }
610
611 ret = cdn_dp_set_video_status(dp, CONTROL_VIDEO_IDLE);
612 if (ret) {
613 DRM_DEV_ERROR(dp->dev, "Failed to idle video %d\n", ret);
614 goto out;
615 }
616
617 ret = cdn_dp_config_video(dp);
618 if (ret) {
619 DRM_DEV_ERROR(dp->dev, "Failed to config video %d\n", ret);
620 goto out;
621 }
622
623 ret = cdn_dp_set_video_status(dp, CONTROL_VIDEO_VALID);
624 if (ret) {
625 DRM_DEV_ERROR(dp->dev, "Failed to valid video %d\n", ret);
626 goto out;
627 }
628
629 out:
630 mutex_unlock(&dp->lock);
631 }
632
cdn_dp_bridge_atomic_disable(struct drm_bridge * bridge,struct drm_atomic_state * state)633 static void cdn_dp_bridge_atomic_disable(struct drm_bridge *bridge, struct drm_atomic_state *state)
634 {
635 struct cdn_dp_device *dp = bridge_to_dp(bridge);
636 int ret;
637
638 mutex_lock(&dp->lock);
639
640 if (dp->active) {
641 ret = cdn_dp_disable(dp);
642 if (ret) {
643 DRM_DEV_ERROR(dp->dev, "Failed to disable bridge %d\n",
644 ret);
645 }
646 }
647 mutex_unlock(&dp->lock);
648
649 /*
650 * In the following 2 cases, we need to run the event_work to re-enable
651 * the DP:
652 * 1. If there is not just one port device is connected, and remove one
653 * device from a port, the DP will be disabled here, at this case,
654 * run the event_work to re-open DP for the other port.
655 * 2. If re-training or re-config failed, the DP will be disabled here.
656 * run the event_work to re-connect it.
657 */
658 if (!dp->connected && cdn_dp_connected_port(dp))
659 schedule_work(&dp->event_work);
660 }
661
cdn_dp_encoder_atomic_check(struct drm_encoder * encoder,struct drm_crtc_state * crtc_state,struct drm_connector_state * conn_state)662 static int cdn_dp_encoder_atomic_check(struct drm_encoder *encoder,
663 struct drm_crtc_state *crtc_state,
664 struct drm_connector_state *conn_state)
665 {
666 struct rockchip_crtc_state *s = to_rockchip_crtc_state(crtc_state);
667
668 s->output_mode = ROCKCHIP_OUT_MODE_AAAA;
669 s->output_type = DRM_MODE_CONNECTOR_DisplayPort;
670
671 return 0;
672 }
673
674 static const struct drm_encoder_helper_funcs cdn_dp_encoder_helper_funcs = {
675 .atomic_check = cdn_dp_encoder_atomic_check,
676 };
677
cdn_dp_parse_dt(struct cdn_dp_device * dp)678 static int cdn_dp_parse_dt(struct cdn_dp_device *dp)
679 {
680 struct device *dev = dp->dev;
681 struct device_node *np = dev->of_node;
682 struct platform_device *pdev = to_platform_device(dev);
683
684 dp->grf = syscon_regmap_lookup_by_phandle(np, "rockchip,grf");
685 if (IS_ERR(dp->grf)) {
686 DRM_DEV_ERROR(dev, "cdn-dp needs rockchip,grf property\n");
687 return PTR_ERR(dp->grf);
688 }
689
690 dp->regs = devm_platform_ioremap_resource(pdev, 0);
691 if (IS_ERR(dp->regs)) {
692 DRM_DEV_ERROR(dev, "ioremap reg failed\n");
693 return PTR_ERR(dp->regs);
694 }
695
696 dp->core_clk = devm_clk_get(dev, "core-clk");
697 if (IS_ERR(dp->core_clk)) {
698 DRM_DEV_ERROR(dev, "cannot get core_clk_dp\n");
699 return PTR_ERR(dp->core_clk);
700 }
701
702 dp->pclk = devm_clk_get(dev, "pclk");
703 if (IS_ERR(dp->pclk)) {
704 DRM_DEV_ERROR(dev, "cannot get pclk\n");
705 return PTR_ERR(dp->pclk);
706 }
707
708 dp->spdif_clk = devm_clk_get(dev, "spdif");
709 if (IS_ERR(dp->spdif_clk)) {
710 DRM_DEV_ERROR(dev, "cannot get spdif_clk\n");
711 return PTR_ERR(dp->spdif_clk);
712 }
713
714 dp->grf_clk = devm_clk_get(dev, "grf");
715 if (IS_ERR(dp->grf_clk)) {
716 DRM_DEV_ERROR(dev, "cannot get grf clk\n");
717 return PTR_ERR(dp->grf_clk);
718 }
719
720 dp->spdif_rst = devm_reset_control_get(dev, "spdif");
721 if (IS_ERR(dp->spdif_rst)) {
722 DRM_DEV_ERROR(dev, "no spdif reset control found\n");
723 return PTR_ERR(dp->spdif_rst);
724 }
725
726 dp->dptx_rst = devm_reset_control_get(dev, "dptx");
727 if (IS_ERR(dp->dptx_rst)) {
728 DRM_DEV_ERROR(dev, "no uphy reset control found\n");
729 return PTR_ERR(dp->dptx_rst);
730 }
731
732 dp->core_rst = devm_reset_control_get(dev, "core");
733 if (IS_ERR(dp->core_rst)) {
734 DRM_DEV_ERROR(dev, "no core reset control found\n");
735 return PTR_ERR(dp->core_rst);
736 }
737
738 dp->apb_rst = devm_reset_control_get(dev, "apb");
739 if (IS_ERR(dp->apb_rst)) {
740 DRM_DEV_ERROR(dev, "no apb reset control found\n");
741 return PTR_ERR(dp->apb_rst);
742 }
743
744 return 0;
745 }
746
cdn_dp_audio_prepare(struct drm_bridge * bridge,struct drm_connector * connector,struct hdmi_codec_daifmt * daifmt,struct hdmi_codec_params * params)747 static int cdn_dp_audio_prepare(struct drm_bridge *bridge,
748 struct drm_connector *connector,
749 struct hdmi_codec_daifmt *daifmt,
750 struct hdmi_codec_params *params)
751 {
752 struct cdn_dp_device *dp = bridge_to_dp(bridge);
753 struct audio_info audio = {
754 .sample_width = params->sample_width,
755 .sample_rate = params->sample_rate,
756 .channels = params->channels,
757 };
758 int ret;
759
760 mutex_lock(&dp->lock);
761 if (!dp->active) {
762 ret = -ENODEV;
763 goto out;
764 }
765
766 switch (daifmt->fmt) {
767 case HDMI_I2S:
768 audio.format = AFMT_I2S;
769 break;
770 case HDMI_SPDIF:
771 audio.format = AFMT_SPDIF;
772 break;
773 default:
774 drm_err(bridge->dev, "Invalid format %d\n", daifmt->fmt);
775 ret = -EINVAL;
776 goto out;
777 }
778
779 ret = cdn_dp_audio_config(dp, &audio);
780 if (!ret)
781 dp->audio_info = audio;
782
783 out:
784 mutex_unlock(&dp->lock);
785 return ret;
786 }
787
cdn_dp_audio_shutdown(struct drm_bridge * bridge,struct drm_connector * connector)788 static void cdn_dp_audio_shutdown(struct drm_bridge *bridge,
789 struct drm_connector *connector)
790 {
791 struct cdn_dp_device *dp = bridge_to_dp(bridge);
792 int ret;
793
794 mutex_lock(&dp->lock);
795 if (!dp->active)
796 goto out;
797
798 ret = cdn_dp_audio_stop(dp, &dp->audio_info);
799 if (!ret)
800 dp->audio_info.format = AFMT_UNUSED;
801 out:
802 mutex_unlock(&dp->lock);
803 }
804
cdn_dp_audio_mute_stream(struct drm_bridge * bridge,struct drm_connector * connector,bool enable,int direction)805 static int cdn_dp_audio_mute_stream(struct drm_bridge *bridge,
806 struct drm_connector *connector,
807 bool enable, int direction)
808 {
809 struct cdn_dp_device *dp = bridge_to_dp(bridge);
810 int ret;
811
812 mutex_lock(&dp->lock);
813 if (!dp->active) {
814 ret = -ENODEV;
815 goto out;
816 }
817
818 ret = cdn_dp_audio_mute(dp, enable);
819
820 out:
821 mutex_unlock(&dp->lock);
822 return ret;
823 }
824
825 static const struct drm_bridge_funcs cdn_dp_bridge_funcs = {
826 .atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
827 .atomic_destroy_state = drm_atomic_helper_bridge_destroy_state,
828 .atomic_reset = drm_atomic_helper_bridge_reset,
829 .detect = cdn_dp_bridge_detect,
830 .edid_read = cdn_dp_bridge_edid_read,
831 .atomic_enable = cdn_dp_bridge_atomic_enable,
832 .atomic_disable = cdn_dp_bridge_atomic_disable,
833 .mode_valid = cdn_dp_bridge_mode_valid,
834 .mode_set = cdn_dp_bridge_mode_set,
835
836 .dp_audio_prepare = cdn_dp_audio_prepare,
837 .dp_audio_mute_stream = cdn_dp_audio_mute_stream,
838 .dp_audio_shutdown = cdn_dp_audio_shutdown,
839 };
840
cdn_dp_request_firmware(struct cdn_dp_device * dp)841 static int cdn_dp_request_firmware(struct cdn_dp_device *dp)
842 {
843 int ret;
844 unsigned long timeout = jiffies + msecs_to_jiffies(CDN_FW_TIMEOUT_MS);
845 unsigned long sleep = 1000;
846
847 WARN_ON(!mutex_is_locked(&dp->lock));
848
849 if (dp->fw_loaded)
850 return 0;
851
852 /* Drop the lock before getting the firmware to avoid blocking boot */
853 mutex_unlock(&dp->lock);
854
855 while (time_before(jiffies, timeout)) {
856 ret = request_firmware(&dp->fw, CDN_DP_FIRMWARE, dp->dev);
857 if (ret == -ENOENT) {
858 msleep(sleep);
859 sleep *= 2;
860 continue;
861 } else if (ret) {
862 DRM_DEV_ERROR(dp->dev,
863 "failed to request firmware: %d\n", ret);
864 goto out;
865 }
866
867 dp->fw_loaded = true;
868 ret = 0;
869 goto out;
870 }
871
872 DRM_DEV_ERROR(dp->dev, "Timed out trying to load firmware\n");
873 ret = -ETIMEDOUT;
874 out:
875 mutex_lock(&dp->lock);
876 return ret;
877 }
878
cdn_dp_pd_event_work(struct work_struct * work)879 static void cdn_dp_pd_event_work(struct work_struct *work)
880 {
881 struct cdn_dp_device *dp = container_of(work, struct cdn_dp_device,
882 event_work);
883 int ret;
884
885 mutex_lock(&dp->lock);
886
887 if (dp->suspended)
888 goto out;
889
890 ret = cdn_dp_request_firmware(dp);
891 if (ret)
892 goto out;
893
894 dp->connected = true;
895
896 /* Not connected, notify userspace to disable the block */
897 if (!cdn_dp_connected_port(dp)) {
898 DRM_DEV_INFO(dp->dev, "Not connected; disabling cdn\n");
899 dp->connected = false;
900
901 /* Connected but not enabled, enable the block */
902 } else if (!dp->active) {
903 DRM_DEV_INFO(dp->dev, "Connected, not enabled; enabling cdn\n");
904 ret = cdn_dp_enable(dp);
905 if (ret) {
906 DRM_DEV_ERROR(dp->dev, "Enabling dp failed: %d\n", ret);
907 dp->connected = false;
908 }
909
910 /* Enabled and connected to a dongle without a sink, notify userspace */
911 } else if (!cdn_dp_check_sink_connection(dp)) {
912 DRM_DEV_INFO(dp->dev, "Connected without sink; assert hpd\n");
913 dp->connected = false;
914
915 /* Enabled and connected with a sink, re-train if requested */
916 } else if (!cdn_dp_check_link_status(dp)) {
917 unsigned int rate = dp->max_rate;
918 unsigned int lanes = dp->max_lanes;
919 struct drm_display_mode *mode = &dp->mode;
920
921 DRM_DEV_INFO(dp->dev, "Connected with sink; re-train link\n");
922 ret = cdn_dp_train_link(dp);
923 if (ret) {
924 dp->connected = false;
925 DRM_DEV_ERROR(dp->dev, "Training link failed: %d\n", ret);
926 goto out;
927 }
928
929 /* If training result is changed, update the video config */
930 if (mode->clock &&
931 (rate != dp->max_rate || lanes != dp->max_lanes)) {
932 ret = cdn_dp_config_video(dp);
933 if (ret) {
934 dp->connected = false;
935 DRM_DEV_ERROR(dp->dev, "Failed to configure video: %d\n", ret);
936 }
937 }
938 }
939
940 out:
941 mutex_unlock(&dp->lock);
942 drm_bridge_hpd_notify(&dp->bridge,
943 dp->connected ? connector_status_connected
944 : connector_status_disconnected);
945 }
946
cdn_dp_pd_event(struct notifier_block * nb,unsigned long event,void * priv)947 static int cdn_dp_pd_event(struct notifier_block *nb,
948 unsigned long event, void *priv)
949 {
950 struct cdn_dp_port *port = container_of(nb, struct cdn_dp_port,
951 event_nb);
952 struct cdn_dp_device *dp = port->dp;
953
954 /*
955 * It would be nice to be able to just do the work inline right here.
956 * However, we need to make a bunch of calls that might sleep in order
957 * to turn on the block/phy, so use a worker instead.
958 */
959 schedule_work(&dp->event_work);
960
961 return NOTIFY_DONE;
962 }
963
cdn_dp_bind(struct device * dev,struct device * master,void * data)964 static int cdn_dp_bind(struct device *dev, struct device *master, void *data)
965 {
966 struct cdn_dp_device *dp = dev_get_drvdata(dev);
967 struct drm_encoder *encoder;
968 struct drm_connector *connector;
969 struct cdn_dp_port *port;
970 struct drm_device *drm_dev = data;
971 int ret, i;
972
973 ret = cdn_dp_parse_dt(dp);
974 if (ret < 0)
975 return ret;
976
977 dp->drm_dev = drm_dev;
978 dp->connected = false;
979 dp->active = false;
980 dp->active_port = -1;
981 dp->fw_loaded = false;
982
983 INIT_WORK(&dp->event_work, cdn_dp_pd_event_work);
984
985 encoder = &dp->encoder.encoder;
986
987 encoder->possible_crtcs = drm_of_find_possible_crtcs(drm_dev,
988 dev->of_node);
989 DRM_DEBUG_KMS("possible_crtcs = 0x%x\n", encoder->possible_crtcs);
990
991 ret = drm_simple_encoder_init(drm_dev, encoder,
992 DRM_MODE_ENCODER_TMDS);
993 if (ret) {
994 DRM_ERROR("failed to initialize encoder with drm\n");
995 return ret;
996 }
997
998 drm_encoder_helper_add(encoder, &cdn_dp_encoder_helper_funcs);
999
1000 dp->bridge.ops =
1001 DRM_BRIDGE_OP_DETECT |
1002 DRM_BRIDGE_OP_EDID |
1003 DRM_BRIDGE_OP_HPD |
1004 DRM_BRIDGE_OP_DP_AUDIO;
1005 dp->bridge.of_node = dp->dev->of_node;
1006 dp->bridge.type = DRM_MODE_CONNECTOR_DisplayPort;
1007 dp->bridge.hdmi_audio_dev = dp->dev;
1008 dp->bridge.hdmi_audio_max_i2s_playback_channels = 8;
1009 dp->bridge.hdmi_audio_spdif_playback = 1;
1010 dp->bridge.hdmi_audio_dai_port = -1;
1011
1012 ret = devm_drm_bridge_add(dev, &dp->bridge);
1013 if (ret)
1014 return ret;
1015
1016 ret = drm_bridge_attach(encoder, &dp->bridge, NULL, DRM_BRIDGE_ATTACH_NO_CONNECTOR);
1017 if (ret)
1018 return ret;
1019
1020 connector = drm_bridge_connector_init(drm_dev, encoder);
1021 if (IS_ERR(connector)) {
1022 ret = PTR_ERR(connector);
1023 dev_err(dp->dev, "failed to init bridge connector: %d\n", ret);
1024 return ret;
1025 }
1026
1027 drm_connector_attach_encoder(connector, encoder);
1028
1029 for (i = 0; i < dp->ports; i++) {
1030 port = dp->port[i];
1031
1032 port->event_nb.notifier_call = cdn_dp_pd_event;
1033 ret = devm_extcon_register_notifier(dp->dev, port->extcon,
1034 EXTCON_DISP_DP,
1035 &port->event_nb);
1036 if (ret) {
1037 DRM_DEV_ERROR(dev,
1038 "register EXTCON_DISP_DP notifier err\n");
1039 return ret;
1040 }
1041 }
1042
1043 pm_runtime_enable(dev);
1044
1045 schedule_work(&dp->event_work);
1046
1047 return 0;
1048 }
1049
cdn_dp_unbind(struct device * dev,struct device * master,void * data)1050 static void cdn_dp_unbind(struct device *dev, struct device *master, void *data)
1051 {
1052 struct cdn_dp_device *dp = dev_get_drvdata(dev);
1053 struct drm_encoder *encoder = &dp->encoder.encoder;
1054
1055 cancel_work_sync(&dp->event_work);
1056 encoder->funcs->destroy(encoder);
1057
1058 pm_runtime_disable(dev);
1059 if (dp->fw_loaded)
1060 release_firmware(dp->fw);
1061 }
1062
1063 static const struct component_ops cdn_dp_component_ops = {
1064 .bind = cdn_dp_bind,
1065 .unbind = cdn_dp_unbind,
1066 };
1067
cdn_dp_suspend(struct device * dev)1068 static int cdn_dp_suspend(struct device *dev)
1069 {
1070 struct cdn_dp_device *dp = dev_get_drvdata(dev);
1071 int ret = 0;
1072
1073 mutex_lock(&dp->lock);
1074 if (dp->active)
1075 ret = cdn_dp_disable(dp);
1076 dp->suspended = true;
1077 mutex_unlock(&dp->lock);
1078
1079 return ret;
1080 }
1081
cdn_dp_resume(struct device * dev)1082 static __maybe_unused int cdn_dp_resume(struct device *dev)
1083 {
1084 struct cdn_dp_device *dp = dev_get_drvdata(dev);
1085
1086 mutex_lock(&dp->lock);
1087 dp->suspended = false;
1088 if (dp->fw_loaded)
1089 schedule_work(&dp->event_work);
1090 mutex_unlock(&dp->lock);
1091
1092 return 0;
1093 }
1094
cdn_dp_probe(struct platform_device * pdev)1095 static int cdn_dp_probe(struct platform_device *pdev)
1096 {
1097 struct device *dev = &pdev->dev;
1098 const struct of_device_id *match;
1099 struct cdn_dp_data *dp_data;
1100 struct cdn_dp_port *port;
1101 struct cdn_dp_device *dp;
1102 struct extcon_dev *extcon;
1103 struct phy *phy;
1104 int ret;
1105 int i;
1106
1107 dp = devm_drm_bridge_alloc(dev, struct cdn_dp_device, bridge,
1108 &cdn_dp_bridge_funcs);
1109 if (IS_ERR(dp))
1110 return PTR_ERR(dp);
1111 dp->dev = dev;
1112
1113 match = of_match_node(cdn_dp_dt_ids, pdev->dev.of_node);
1114 dp_data = (struct cdn_dp_data *)match->data;
1115
1116 for (i = 0; i < dp_data->max_phy; i++) {
1117 extcon = extcon_get_edev_by_phandle(dev, i);
1118 phy = devm_of_phy_get_by_index(dev, dev->of_node, i);
1119
1120 if (PTR_ERR(extcon) == -EPROBE_DEFER ||
1121 PTR_ERR(phy) == -EPROBE_DEFER)
1122 return -EPROBE_DEFER;
1123
1124 if (IS_ERR(extcon) || IS_ERR(phy))
1125 continue;
1126
1127 port = devm_kzalloc(dev, sizeof(*port), GFP_KERNEL);
1128 if (!port)
1129 return -ENOMEM;
1130
1131 port->extcon = extcon;
1132 port->phy = phy;
1133 port->dp = dp;
1134 port->id = i;
1135 dp->port[dp->ports++] = port;
1136 }
1137
1138 if (!dp->ports) {
1139 DRM_DEV_ERROR(dev, "missing extcon or phy\n");
1140 return -EINVAL;
1141 }
1142
1143 mutex_init(&dp->lock);
1144 dev_set_drvdata(dev, dp);
1145
1146 ret = component_add(dev, &cdn_dp_component_ops);
1147 if (ret)
1148 return ret;
1149
1150 return 0;
1151 }
1152
cdn_dp_remove(struct platform_device * pdev)1153 static void cdn_dp_remove(struct platform_device *pdev)
1154 {
1155 struct cdn_dp_device *dp = platform_get_drvdata(pdev);
1156
1157 platform_device_unregister(dp->audio_pdev);
1158 cdn_dp_suspend(dp->dev);
1159 component_del(&pdev->dev, &cdn_dp_component_ops);
1160 }
1161
cdn_dp_shutdown(struct platform_device * pdev)1162 static void cdn_dp_shutdown(struct platform_device *pdev)
1163 {
1164 struct cdn_dp_device *dp = platform_get_drvdata(pdev);
1165
1166 cdn_dp_suspend(dp->dev);
1167 }
1168
1169 static const struct dev_pm_ops cdn_dp_pm_ops = {
1170 SET_SYSTEM_SLEEP_PM_OPS(cdn_dp_suspend,
1171 cdn_dp_resume)
1172 };
1173
1174 struct platform_driver cdn_dp_driver = {
1175 .probe = cdn_dp_probe,
1176 .remove = cdn_dp_remove,
1177 .shutdown = cdn_dp_shutdown,
1178 .driver = {
1179 .name = "cdn-dp",
1180 .of_match_table = cdn_dp_dt_ids,
1181 .pm = &cdn_dp_pm_ops,
1182 },
1183 };
1184