1 /*
2  * Copyright 2015 Advanced Micro Devices, Inc.
3  *
4  * Permission is hereby granted, free of charge, to any person obtaining a
5  * copy of this software and associated documentation files (the "Software"),
6  * to deal in the Software without restriction, including without limitation
7  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8  * and/or sell copies of the Software, and to permit persons to whom the
9  * Software is furnished to do so, subject to the following conditions:
10  *
11  * The above copyright notice and this permission notice shall be included in
12  * all copies or substantial portions of the Software.
13  *
14  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
17  * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18  * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19  * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20  * OTHER DEALINGS IN THE SOFTWARE.
21  *
22  * Authors: AMD
23  *
24  */
25 
26 /* The caprices of the preprocessor require that this be declared right here */
27 #define CREATE_TRACE_POINTS
28 
29 #include "dm_services_types.h"
30 #include "dc.h"
31 #include "link_enc_cfg.h"
32 #include "dc/inc/core_types.h"
33 #include "dal_asic_id.h"
34 #include "dmub/dmub_srv.h"
35 #include "dc/inc/hw/dmcu.h"
36 #include "dc/inc/hw/abm.h"
37 #include "dc/dc_dmub_srv.h"
38 #include "dc/dc_edid_parser.h"
39 #include "dc/dc_stat.h"
40 #include "amdgpu_dm_trace.h"
41 #include "dpcd_defs.h"
42 #include "link/protocols/link_dpcd.h"
43 #include "link_service_types.h"
44 #include "link/protocols/link_dp_capability.h"
45 #include "link/protocols/link_ddc.h"
46 
47 #include "vid.h"
48 #include "amdgpu.h"
49 #include "amdgpu_display.h"
50 #include "amdgpu_ucode.h"
51 #include "atom.h"
52 #include "amdgpu_dm.h"
53 #include "amdgpu_dm_plane.h"
54 #include "amdgpu_dm_crtc.h"
55 #include "amdgpu_dm_hdcp.h"
56 #include <drm/display/drm_hdcp_helper.h>
57 #include "amdgpu_pm.h"
58 #include "amdgpu_atombios.h"
59 
60 #include "amd_shared.h"
61 #include "amdgpu_dm_irq.h"
62 #include "dm_helpers.h"
63 #include "amdgpu_dm_mst_types.h"
64 #if defined(CONFIG_DEBUG_FS)
65 #include "amdgpu_dm_debugfs.h"
66 #endif
67 #include "amdgpu_dm_psr.h"
68 #include "amdgpu_dm_replay.h"
69 
70 #include "ivsrcid/ivsrcid_vislands30.h"
71 
72 #include <linux/backlight.h>
73 #include <linux/module.h>
74 #include <linux/moduleparam.h>
75 #include <linux/types.h>
76 #include <linux/pm_runtime.h>
77 #include <linux/pci.h>
78 #include <linux/firmware.h>
79 #include <linux/component.h>
80 #include <linux/dmi.h>
81 
82 #include <drm/display/drm_dp_mst_helper.h>
83 #include <drm/display/drm_hdmi_helper.h>
84 #include <drm/drm_atomic.h>
85 #include <drm/drm_atomic_uapi.h>
86 #include <drm/drm_atomic_helper.h>
87 #include <drm/drm_blend.h>
88 #include <drm/drm_fourcc.h>
89 #include <drm/drm_edid.h>
90 #include <drm/drm_vblank.h>
91 #include <drm/drm_audio_component.h>
92 #include <drm/drm_gem_atomic_helper.h>
93 #include <drm/drm_plane_helper.h>
94 
95 #include <acpi/video.h>
96 
97 #include "ivsrcid/dcn/irqsrcs_dcn_1_0.h"
98 
99 #include "dcn/dcn_1_0_offset.h"
100 #include "dcn/dcn_1_0_sh_mask.h"
101 #include "soc15_hw_ip.h"
102 #include "soc15_common.h"
103 #include "vega10_ip_offset.h"
104 
105 #include "gc/gc_11_0_0_offset.h"
106 #include "gc/gc_11_0_0_sh_mask.h"
107 
108 #include "modules/inc/mod_freesync.h"
109 #include "modules/power/power_helpers.h"
110 
111 #define FIRMWARE_RENOIR_DMUB "amdgpu/renoir_dmcub.bin"
112 MODULE_FIRMWARE(FIRMWARE_RENOIR_DMUB);
113 #define FIRMWARE_SIENNA_CICHLID_DMUB "amdgpu/sienna_cichlid_dmcub.bin"
114 MODULE_FIRMWARE(FIRMWARE_SIENNA_CICHLID_DMUB);
115 #define FIRMWARE_NAVY_FLOUNDER_DMUB "amdgpu/navy_flounder_dmcub.bin"
116 MODULE_FIRMWARE(FIRMWARE_NAVY_FLOUNDER_DMUB);
117 #define FIRMWARE_GREEN_SARDINE_DMUB "amdgpu/green_sardine_dmcub.bin"
118 MODULE_FIRMWARE(FIRMWARE_GREEN_SARDINE_DMUB);
119 #define FIRMWARE_VANGOGH_DMUB "amdgpu/vangogh_dmcub.bin"
120 MODULE_FIRMWARE(FIRMWARE_VANGOGH_DMUB);
121 #define FIRMWARE_DIMGREY_CAVEFISH_DMUB "amdgpu/dimgrey_cavefish_dmcub.bin"
122 MODULE_FIRMWARE(FIRMWARE_DIMGREY_CAVEFISH_DMUB);
123 #define FIRMWARE_BEIGE_GOBY_DMUB "amdgpu/beige_goby_dmcub.bin"
124 MODULE_FIRMWARE(FIRMWARE_BEIGE_GOBY_DMUB);
125 #define FIRMWARE_YELLOW_CARP_DMUB "amdgpu/yellow_carp_dmcub.bin"
126 MODULE_FIRMWARE(FIRMWARE_YELLOW_CARP_DMUB);
127 #define FIRMWARE_DCN_314_DMUB "amdgpu/dcn_3_1_4_dmcub.bin"
128 MODULE_FIRMWARE(FIRMWARE_DCN_314_DMUB);
129 #define FIRMWARE_DCN_315_DMUB "amdgpu/dcn_3_1_5_dmcub.bin"
130 MODULE_FIRMWARE(FIRMWARE_DCN_315_DMUB);
131 #define FIRMWARE_DCN316_DMUB "amdgpu/dcn_3_1_6_dmcub.bin"
132 MODULE_FIRMWARE(FIRMWARE_DCN316_DMUB);
133 
134 #define FIRMWARE_DCN_V3_2_0_DMCUB "amdgpu/dcn_3_2_0_dmcub.bin"
135 MODULE_FIRMWARE(FIRMWARE_DCN_V3_2_0_DMCUB);
136 #define FIRMWARE_DCN_V3_2_1_DMCUB "amdgpu/dcn_3_2_1_dmcub.bin"
137 MODULE_FIRMWARE(FIRMWARE_DCN_V3_2_1_DMCUB);
138 
139 #define FIRMWARE_RAVEN_DMCU		"amdgpu/raven_dmcu.bin"
140 MODULE_FIRMWARE(FIRMWARE_RAVEN_DMCU);
141 
142 #define FIRMWARE_NAVI12_DMCU            "amdgpu/navi12_dmcu.bin"
143 MODULE_FIRMWARE(FIRMWARE_NAVI12_DMCU);
144 
145 #define FIRMWARE_DCN_35_DMUB "amdgpu/dcn_3_5_dmcub.bin"
146 MODULE_FIRMWARE(FIRMWARE_DCN_35_DMUB);
147 
148 /* Number of bytes in PSP header for firmware. */
149 #define PSP_HEADER_BYTES 0x100
150 
151 /* Number of bytes in PSP footer for firmware. */
152 #define PSP_FOOTER_BYTES 0x100
153 
154 /**
155  * DOC: overview
156  *
157  * The AMDgpu display manager, **amdgpu_dm** (or even simpler,
158  * **dm**) sits between DRM and DC. It acts as a liaison, converting DRM
159  * requests into DC requests, and DC responses into DRM responses.
160  *
161  * The root control structure is &struct amdgpu_display_manager.
162  */
163 
164 /* basic init/fini API */
165 static int amdgpu_dm_init(struct amdgpu_device *adev);
166 static void amdgpu_dm_fini(struct amdgpu_device *adev);
167 static bool is_freesync_video_mode(const struct drm_display_mode *mode, struct amdgpu_dm_connector *aconnector);
168 
169 static enum drm_mode_subconnector get_subconnector_type(struct dc_link *link)
170 {
171 	switch (link->dpcd_caps.dongle_type) {
172 	case DISPLAY_DONGLE_NONE:
173 		return DRM_MODE_SUBCONNECTOR_Native;
174 	case DISPLAY_DONGLE_DP_VGA_CONVERTER:
175 		return DRM_MODE_SUBCONNECTOR_VGA;
176 	case DISPLAY_DONGLE_DP_DVI_CONVERTER:
177 	case DISPLAY_DONGLE_DP_DVI_DONGLE:
178 		return DRM_MODE_SUBCONNECTOR_DVID;
179 	case DISPLAY_DONGLE_DP_HDMI_CONVERTER:
180 	case DISPLAY_DONGLE_DP_HDMI_DONGLE:
181 		return DRM_MODE_SUBCONNECTOR_HDMIA;
182 	case DISPLAY_DONGLE_DP_HDMI_MISMATCHED_DONGLE:
183 	default:
184 		return DRM_MODE_SUBCONNECTOR_Unknown;
185 	}
186 }
187 
188 static void update_subconnector_property(struct amdgpu_dm_connector *aconnector)
189 {
190 	struct dc_link *link = aconnector->dc_link;
191 	struct drm_connector *connector = &aconnector->base;
192 	enum drm_mode_subconnector subconnector = DRM_MODE_SUBCONNECTOR_Unknown;
193 
194 	if (connector->connector_type != DRM_MODE_CONNECTOR_DisplayPort)
195 		return;
196 
197 	if (aconnector->dc_sink)
198 		subconnector = get_subconnector_type(link);
199 
200 	drm_object_property_set_value(&connector->base,
201 			connector->dev->mode_config.dp_subconnector_property,
202 			subconnector);
203 }
204 
205 /*
206  * initializes drm_device display related structures, based on the information
207  * provided by DAL. The drm strcutures are: drm_crtc, drm_connector,
208  * drm_encoder, drm_mode_config
209  *
210  * Returns 0 on success
211  */
212 static int amdgpu_dm_initialize_drm_device(struct amdgpu_device *adev);
213 /* removes and deallocates the drm structures, created by the above function */
214 static void amdgpu_dm_destroy_drm_device(struct amdgpu_display_manager *dm);
215 
216 static int amdgpu_dm_connector_init(struct amdgpu_display_manager *dm,
217 				    struct amdgpu_dm_connector *amdgpu_dm_connector,
218 				    u32 link_index,
219 				    struct amdgpu_encoder *amdgpu_encoder);
220 static int amdgpu_dm_encoder_init(struct drm_device *dev,
221 				  struct amdgpu_encoder *aencoder,
222 				  uint32_t link_index);
223 
224 static int amdgpu_dm_connector_get_modes(struct drm_connector *connector);
225 
226 static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state);
227 
228 static int amdgpu_dm_atomic_check(struct drm_device *dev,
229 				  struct drm_atomic_state *state);
230 
231 static void handle_hpd_irq_helper(struct amdgpu_dm_connector *aconnector);
232 static void handle_hpd_rx_irq(void *param);
233 
234 static bool
235 is_timing_unchanged_for_freesync(struct drm_crtc_state *old_crtc_state,
236 				 struct drm_crtc_state *new_crtc_state);
237 /*
238  * dm_vblank_get_counter
239  *
240  * @brief
241  * Get counter for number of vertical blanks
242  *
243  * @param
244  * struct amdgpu_device *adev - [in] desired amdgpu device
245  * int disp_idx - [in] which CRTC to get the counter from
246  *
247  * @return
248  * Counter for vertical blanks
249  */
250 static u32 dm_vblank_get_counter(struct amdgpu_device *adev, int crtc)
251 {
252 	struct amdgpu_crtc *acrtc = NULL;
253 
254 	if (crtc >= adev->mode_info.num_crtc)
255 		return 0;
256 
257 	acrtc = adev->mode_info.crtcs[crtc];
258 
259 	if (!acrtc->dm_irq_params.stream) {
260 		DRM_ERROR("dc_stream_state is NULL for crtc '%d'!\n",
261 			  crtc);
262 		return 0;
263 	}
264 
265 	return dc_stream_get_vblank_counter(acrtc->dm_irq_params.stream);
266 }
267 
268 static int dm_crtc_get_scanoutpos(struct amdgpu_device *adev, int crtc,
269 				  u32 *vbl, u32 *position)
270 {
271 	u32 v_blank_start, v_blank_end, h_position, v_position;
272 	struct amdgpu_crtc *acrtc = NULL;
273 
274 	if ((crtc < 0) || (crtc >= adev->mode_info.num_crtc))
275 		return -EINVAL;
276 
277 	acrtc = adev->mode_info.crtcs[crtc];
278 
279 	if (!acrtc->dm_irq_params.stream) {
280 		DRM_ERROR("dc_stream_state is NULL for crtc '%d'!\n",
281 			  crtc);
282 		return 0;
283 	}
284 
285 	/*
286 	 * TODO rework base driver to use values directly.
287 	 * for now parse it back into reg-format
288 	 */
289 	dc_stream_get_scanoutpos(acrtc->dm_irq_params.stream,
290 				 &v_blank_start,
291 				 &v_blank_end,
292 				 &h_position,
293 				 &v_position);
294 
295 	*position = v_position | (h_position << 16);
296 	*vbl = v_blank_start | (v_blank_end << 16);
297 
298 	return 0;
299 }
300 
301 static bool dm_is_idle(void *handle)
302 {
303 	/* XXX todo */
304 	return true;
305 }
306 
307 static int dm_wait_for_idle(void *handle)
308 {
309 	/* XXX todo */
310 	return 0;
311 }
312 
313 static bool dm_check_soft_reset(void *handle)
314 {
315 	return false;
316 }
317 
318 static int dm_soft_reset(void *handle)
319 {
320 	/* XXX todo */
321 	return 0;
322 }
323 
324 static struct amdgpu_crtc *
325 get_crtc_by_otg_inst(struct amdgpu_device *adev,
326 		     int otg_inst)
327 {
328 	struct drm_device *dev = adev_to_drm(adev);
329 	struct drm_crtc *crtc;
330 	struct amdgpu_crtc *amdgpu_crtc;
331 
332 	if (WARN_ON(otg_inst == -1))
333 		return adev->mode_info.crtcs[0];
334 
335 	list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
336 		amdgpu_crtc = to_amdgpu_crtc(crtc);
337 
338 		if (amdgpu_crtc->otg_inst == otg_inst)
339 			return amdgpu_crtc;
340 	}
341 
342 	return NULL;
343 }
344 
345 static inline bool is_dc_timing_adjust_needed(struct dm_crtc_state *old_state,
346 					      struct dm_crtc_state *new_state)
347 {
348 	if (new_state->freesync_config.state ==  VRR_STATE_ACTIVE_FIXED)
349 		return true;
350 	else if (amdgpu_dm_crtc_vrr_active(old_state) != amdgpu_dm_crtc_vrr_active(new_state))
351 		return true;
352 	else
353 		return false;
354 }
355 
356 static inline void reverse_planes_order(struct dc_surface_update *array_of_surface_update,
357 					int planes_count)
358 {
359 	int i, j;
360 
361 	for (i = 0, j = planes_count - 1; i < j; i++, j--)
362 		swap(array_of_surface_update[i], array_of_surface_update[j]);
363 }
364 
365 /**
366  * update_planes_and_stream_adapter() - Send planes to be updated in DC
367  *
368  * DC has a generic way to update planes and stream via
369  * dc_update_planes_and_stream function; however, DM might need some
370  * adjustments and preparation before calling it. This function is a wrapper
371  * for the dc_update_planes_and_stream that does any required configuration
372  * before passing control to DC.
373  *
374  * @dc: Display Core control structure
375  * @update_type: specify whether it is FULL/MEDIUM/FAST update
376  * @planes_count: planes count to update
377  * @stream: stream state
378  * @stream_update: stream update
379  * @array_of_surface_update: dc surface update pointer
380  *
381  */
382 static inline bool update_planes_and_stream_adapter(struct dc *dc,
383 						    int update_type,
384 						    int planes_count,
385 						    struct dc_stream_state *stream,
386 						    struct dc_stream_update *stream_update,
387 						    struct dc_surface_update *array_of_surface_update)
388 {
389 	reverse_planes_order(array_of_surface_update, planes_count);
390 
391 	/*
392 	 * Previous frame finished and HW is ready for optimization.
393 	 */
394 	if (update_type == UPDATE_TYPE_FAST)
395 		dc_post_update_surfaces_to_stream(dc);
396 
397 	return dc_update_planes_and_stream(dc,
398 					   array_of_surface_update,
399 					   planes_count,
400 					   stream,
401 					   stream_update);
402 }
403 
404 /**
405  * dm_pflip_high_irq() - Handle pageflip interrupt
406  * @interrupt_params: ignored
407  *
408  * Handles the pageflip interrupt by notifying all interested parties
409  * that the pageflip has been completed.
410  */
411 static void dm_pflip_high_irq(void *interrupt_params)
412 {
413 	struct amdgpu_crtc *amdgpu_crtc;
414 	struct common_irq_params *irq_params = interrupt_params;
415 	struct amdgpu_device *adev = irq_params->adev;
416 	struct drm_device *dev = adev_to_drm(adev);
417 	unsigned long flags;
418 	struct drm_pending_vblank_event *e;
419 	u32 vpos, hpos, v_blank_start, v_blank_end;
420 	bool vrr_active;
421 
422 	amdgpu_crtc = get_crtc_by_otg_inst(adev, irq_params->irq_src - IRQ_TYPE_PFLIP);
423 
424 	/* IRQ could occur when in initial stage */
425 	/* TODO work and BO cleanup */
426 	if (amdgpu_crtc == NULL) {
427 		drm_dbg_state(dev, "CRTC is null, returning.\n");
428 		return;
429 	}
430 
431 	spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
432 
433 	if (amdgpu_crtc->pflip_status != AMDGPU_FLIP_SUBMITTED) {
434 		drm_dbg_state(dev,
435 			      "amdgpu_crtc->pflip_status = %d != AMDGPU_FLIP_SUBMITTED(%d) on crtc:%d[%p]\n",
436 			      amdgpu_crtc->pflip_status, AMDGPU_FLIP_SUBMITTED,
437 			      amdgpu_crtc->crtc_id, amdgpu_crtc);
438 		spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
439 		return;
440 	}
441 
442 	/* page flip completed. */
443 	e = amdgpu_crtc->event;
444 	amdgpu_crtc->event = NULL;
445 
446 	WARN_ON(!e);
447 
448 	vrr_active = amdgpu_dm_crtc_vrr_active_irq(amdgpu_crtc);
449 
450 	/* Fixed refresh rate, or VRR scanout position outside front-porch? */
451 	if (!vrr_active ||
452 	    !dc_stream_get_scanoutpos(amdgpu_crtc->dm_irq_params.stream, &v_blank_start,
453 				      &v_blank_end, &hpos, &vpos) ||
454 	    (vpos < v_blank_start)) {
455 		/* Update to correct count and vblank timestamp if racing with
456 		 * vblank irq. This also updates to the correct vblank timestamp
457 		 * even in VRR mode, as scanout is past the front-porch atm.
458 		 */
459 		drm_crtc_accurate_vblank_count(&amdgpu_crtc->base);
460 
461 		/* Wake up userspace by sending the pageflip event with proper
462 		 * count and timestamp of vblank of flip completion.
463 		 */
464 		if (e) {
465 			drm_crtc_send_vblank_event(&amdgpu_crtc->base, e);
466 
467 			/* Event sent, so done with vblank for this flip */
468 			drm_crtc_vblank_put(&amdgpu_crtc->base);
469 		}
470 	} else if (e) {
471 		/* VRR active and inside front-porch: vblank count and
472 		 * timestamp for pageflip event will only be up to date after
473 		 * drm_crtc_handle_vblank() has been executed from late vblank
474 		 * irq handler after start of back-porch (vline 0). We queue the
475 		 * pageflip event for send-out by drm_crtc_handle_vblank() with
476 		 * updated timestamp and count, once it runs after us.
477 		 *
478 		 * We need to open-code this instead of using the helper
479 		 * drm_crtc_arm_vblank_event(), as that helper would
480 		 * call drm_crtc_accurate_vblank_count(), which we must
481 		 * not call in VRR mode while we are in front-porch!
482 		 */
483 
484 		/* sequence will be replaced by real count during send-out. */
485 		e->sequence = drm_crtc_vblank_count(&amdgpu_crtc->base);
486 		e->pipe = amdgpu_crtc->crtc_id;
487 
488 		list_add_tail(&e->base.link, &adev_to_drm(adev)->vblank_event_list);
489 		e = NULL;
490 	}
491 
492 	/* Keep track of vblank of this flip for flip throttling. We use the
493 	 * cooked hw counter, as that one incremented at start of this vblank
494 	 * of pageflip completion, so last_flip_vblank is the forbidden count
495 	 * for queueing new pageflips if vsync + VRR is enabled.
496 	 */
497 	amdgpu_crtc->dm_irq_params.last_flip_vblank =
498 		amdgpu_get_vblank_counter_kms(&amdgpu_crtc->base);
499 
500 	amdgpu_crtc->pflip_status = AMDGPU_FLIP_NONE;
501 	spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
502 
503 	drm_dbg_state(dev,
504 		      "crtc:%d[%p], pflip_stat:AMDGPU_FLIP_NONE, vrr[%d]-fp %d\n",
505 		      amdgpu_crtc->crtc_id, amdgpu_crtc, vrr_active, (int)!e);
506 }
507 
508 static void dm_vupdate_high_irq(void *interrupt_params)
509 {
510 	struct common_irq_params *irq_params = interrupt_params;
511 	struct amdgpu_device *adev = irq_params->adev;
512 	struct amdgpu_crtc *acrtc;
513 	struct drm_device *drm_dev;
514 	struct drm_vblank_crtc *vblank;
515 	ktime_t frame_duration_ns, previous_timestamp;
516 	unsigned long flags;
517 	int vrr_active;
518 
519 	acrtc = get_crtc_by_otg_inst(adev, irq_params->irq_src - IRQ_TYPE_VUPDATE);
520 
521 	if (acrtc) {
522 		vrr_active = amdgpu_dm_crtc_vrr_active_irq(acrtc);
523 		drm_dev = acrtc->base.dev;
524 		vblank = &drm_dev->vblank[acrtc->base.index];
525 		previous_timestamp = atomic64_read(&irq_params->previous_timestamp);
526 		frame_duration_ns = vblank->time - previous_timestamp;
527 
528 		if (frame_duration_ns > 0) {
529 			trace_amdgpu_refresh_rate_track(acrtc->base.index,
530 						frame_duration_ns,
531 						ktime_divns(NSEC_PER_SEC, frame_duration_ns));
532 			atomic64_set(&irq_params->previous_timestamp, vblank->time);
533 		}
534 
535 		drm_dbg_vbl(drm_dev,
536 			    "crtc:%d, vupdate-vrr:%d\n", acrtc->crtc_id,
537 			    vrr_active);
538 
539 		/* Core vblank handling is done here after end of front-porch in
540 		 * vrr mode, as vblank timestamping will give valid results
541 		 * while now done after front-porch. This will also deliver
542 		 * page-flip completion events that have been queued to us
543 		 * if a pageflip happened inside front-porch.
544 		 */
545 		if (vrr_active) {
546 			amdgpu_dm_crtc_handle_vblank(acrtc);
547 
548 			/* BTR processing for pre-DCE12 ASICs */
549 			if (acrtc->dm_irq_params.stream &&
550 			    adev->family < AMDGPU_FAMILY_AI) {
551 				spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
552 				mod_freesync_handle_v_update(
553 				    adev->dm.freesync_module,
554 				    acrtc->dm_irq_params.stream,
555 				    &acrtc->dm_irq_params.vrr_params);
556 
557 				dc_stream_adjust_vmin_vmax(
558 				    adev->dm.dc,
559 				    acrtc->dm_irq_params.stream,
560 				    &acrtc->dm_irq_params.vrr_params.adjust);
561 				spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
562 			}
563 		}
564 	}
565 }
566 
567 /**
568  * dm_crtc_high_irq() - Handles CRTC interrupt
569  * @interrupt_params: used for determining the CRTC instance
570  *
571  * Handles the CRTC/VSYNC interrupt by notfying DRM's VBLANK
572  * event handler.
573  */
574 static void dm_crtc_high_irq(void *interrupt_params)
575 {
576 	struct common_irq_params *irq_params = interrupt_params;
577 	struct amdgpu_device *adev = irq_params->adev;
578 	struct amdgpu_crtc *acrtc;
579 	unsigned long flags;
580 	int vrr_active;
581 
582 	acrtc = get_crtc_by_otg_inst(adev, irq_params->irq_src - IRQ_TYPE_VBLANK);
583 	if (!acrtc)
584 		return;
585 
586 	vrr_active = amdgpu_dm_crtc_vrr_active_irq(acrtc);
587 
588 	drm_dbg_vbl(adev_to_drm(adev),
589 		    "crtc:%d, vupdate-vrr:%d, planes:%d\n", acrtc->crtc_id,
590 		    vrr_active, acrtc->dm_irq_params.active_planes);
591 
592 	/**
593 	 * Core vblank handling at start of front-porch is only possible
594 	 * in non-vrr mode, as only there vblank timestamping will give
595 	 * valid results while done in front-porch. Otherwise defer it
596 	 * to dm_vupdate_high_irq after end of front-porch.
597 	 */
598 	if (!vrr_active)
599 		amdgpu_dm_crtc_handle_vblank(acrtc);
600 
601 	/**
602 	 * Following stuff must happen at start of vblank, for crc
603 	 * computation and below-the-range btr support in vrr mode.
604 	 */
605 	amdgpu_dm_crtc_handle_crc_irq(&acrtc->base);
606 
607 	/* BTR updates need to happen before VUPDATE on Vega and above. */
608 	if (adev->family < AMDGPU_FAMILY_AI)
609 		return;
610 
611 	spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
612 
613 	if (acrtc->dm_irq_params.stream &&
614 	    acrtc->dm_irq_params.vrr_params.supported &&
615 	    acrtc->dm_irq_params.freesync_config.state ==
616 		    VRR_STATE_ACTIVE_VARIABLE) {
617 		mod_freesync_handle_v_update(adev->dm.freesync_module,
618 					     acrtc->dm_irq_params.stream,
619 					     &acrtc->dm_irq_params.vrr_params);
620 
621 		dc_stream_adjust_vmin_vmax(adev->dm.dc, acrtc->dm_irq_params.stream,
622 					   &acrtc->dm_irq_params.vrr_params.adjust);
623 	}
624 
625 	/*
626 	 * If there aren't any active_planes then DCH HUBP may be clock-gated.
627 	 * In that case, pageflip completion interrupts won't fire and pageflip
628 	 * completion events won't get delivered. Prevent this by sending
629 	 * pending pageflip events from here if a flip is still pending.
630 	 *
631 	 * If any planes are enabled, use dm_pflip_high_irq() instead, to
632 	 * avoid race conditions between flip programming and completion,
633 	 * which could cause too early flip completion events.
634 	 */
635 	if (adev->family >= AMDGPU_FAMILY_RV &&
636 	    acrtc->pflip_status == AMDGPU_FLIP_SUBMITTED &&
637 	    acrtc->dm_irq_params.active_planes == 0) {
638 		if (acrtc->event) {
639 			drm_crtc_send_vblank_event(&acrtc->base, acrtc->event);
640 			acrtc->event = NULL;
641 			drm_crtc_vblank_put(&acrtc->base);
642 		}
643 		acrtc->pflip_status = AMDGPU_FLIP_NONE;
644 	}
645 
646 	spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
647 }
648 
649 #if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
650 /**
651  * dm_dcn_vertical_interrupt0_high_irq() - Handles OTG Vertical interrupt0 for
652  * DCN generation ASICs
653  * @interrupt_params: interrupt parameters
654  *
655  * Used to set crc window/read out crc value at vertical line 0 position
656  */
657 static void dm_dcn_vertical_interrupt0_high_irq(void *interrupt_params)
658 {
659 	struct common_irq_params *irq_params = interrupt_params;
660 	struct amdgpu_device *adev = irq_params->adev;
661 	struct amdgpu_crtc *acrtc;
662 
663 	acrtc = get_crtc_by_otg_inst(adev, irq_params->irq_src - IRQ_TYPE_VLINE0);
664 
665 	if (!acrtc)
666 		return;
667 
668 	amdgpu_dm_crtc_handle_crc_window_irq(&acrtc->base);
669 }
670 #endif /* CONFIG_DRM_AMD_SECURE_DISPLAY */
671 
672 /**
673  * dmub_aux_setconfig_callback - Callback for AUX or SET_CONFIG command.
674  * @adev: amdgpu_device pointer
675  * @notify: dmub notification structure
676  *
677  * Dmub AUX or SET_CONFIG command completion processing callback
678  * Copies dmub notification to DM which is to be read by AUX command.
679  * issuing thread and also signals the event to wake up the thread.
680  */
681 static void dmub_aux_setconfig_callback(struct amdgpu_device *adev,
682 					struct dmub_notification *notify)
683 {
684 	if (adev->dm.dmub_notify)
685 		memcpy(adev->dm.dmub_notify, notify, sizeof(struct dmub_notification));
686 	if (notify->type == DMUB_NOTIFICATION_AUX_REPLY)
687 		complete(&adev->dm.dmub_aux_transfer_done);
688 }
689 
690 /**
691  * dmub_hpd_callback - DMUB HPD interrupt processing callback.
692  * @adev: amdgpu_device pointer
693  * @notify: dmub notification structure
694  *
695  * Dmub Hpd interrupt processing callback. Gets displayindex through the
696  * ink index and calls helper to do the processing.
697  */
698 static void dmub_hpd_callback(struct amdgpu_device *adev,
699 			      struct dmub_notification *notify)
700 {
701 	struct amdgpu_dm_connector *aconnector;
702 	struct amdgpu_dm_connector *hpd_aconnector = NULL;
703 	struct drm_connector *connector;
704 	struct drm_connector_list_iter iter;
705 	struct dc_link *link;
706 	u8 link_index = 0;
707 	struct drm_device *dev;
708 
709 	if (adev == NULL)
710 		return;
711 
712 	if (notify == NULL) {
713 		DRM_ERROR("DMUB HPD callback notification was NULL");
714 		return;
715 	}
716 
717 	if (notify->link_index > adev->dm.dc->link_count) {
718 		DRM_ERROR("DMUB HPD index (%u)is abnormal", notify->link_index);
719 		return;
720 	}
721 
722 	link_index = notify->link_index;
723 	link = adev->dm.dc->links[link_index];
724 	dev = adev->dm.ddev;
725 
726 	drm_connector_list_iter_begin(dev, &iter);
727 	drm_for_each_connector_iter(connector, &iter) {
728 		aconnector = to_amdgpu_dm_connector(connector);
729 		if (link && aconnector->dc_link == link) {
730 			if (notify->type == DMUB_NOTIFICATION_HPD)
731 				DRM_INFO("DMUB HPD callback: link_index=%u\n", link_index);
732 			else if (notify->type == DMUB_NOTIFICATION_HPD_IRQ)
733 				DRM_INFO("DMUB HPD IRQ callback: link_index=%u\n", link_index);
734 			else
735 				DRM_WARN("DMUB Unknown HPD callback type %d, link_index=%u\n",
736 						notify->type, link_index);
737 
738 			hpd_aconnector = aconnector;
739 			break;
740 		}
741 	}
742 	drm_connector_list_iter_end(&iter);
743 
744 	if (hpd_aconnector) {
745 		if (notify->type == DMUB_NOTIFICATION_HPD)
746 			handle_hpd_irq_helper(hpd_aconnector);
747 		else if (notify->type == DMUB_NOTIFICATION_HPD_IRQ)
748 			handle_hpd_rx_irq(hpd_aconnector);
749 	}
750 }
751 
752 /**
753  * register_dmub_notify_callback - Sets callback for DMUB notify
754  * @adev: amdgpu_device pointer
755  * @type: Type of dmub notification
756  * @callback: Dmub interrupt callback function
757  * @dmub_int_thread_offload: offload indicator
758  *
759  * API to register a dmub callback handler for a dmub notification
760  * Also sets indicator whether callback processing to be offloaded.
761  * to dmub interrupt handling thread
762  * Return: true if successfully registered, false if there is existing registration
763  */
764 static bool register_dmub_notify_callback(struct amdgpu_device *adev,
765 					  enum dmub_notification_type type,
766 					  dmub_notify_interrupt_callback_t callback,
767 					  bool dmub_int_thread_offload)
768 {
769 	if (callback != NULL && type < ARRAY_SIZE(adev->dm.dmub_thread_offload)) {
770 		adev->dm.dmub_callback[type] = callback;
771 		adev->dm.dmub_thread_offload[type] = dmub_int_thread_offload;
772 	} else
773 		return false;
774 
775 	return true;
776 }
777 
778 static void dm_handle_hpd_work(struct work_struct *work)
779 {
780 	struct dmub_hpd_work *dmub_hpd_wrk;
781 
782 	dmub_hpd_wrk = container_of(work, struct dmub_hpd_work, handle_hpd_work);
783 
784 	if (!dmub_hpd_wrk->dmub_notify) {
785 		DRM_ERROR("dmub_hpd_wrk dmub_notify is NULL");
786 		return;
787 	}
788 
789 	if (dmub_hpd_wrk->dmub_notify->type < ARRAY_SIZE(dmub_hpd_wrk->adev->dm.dmub_callback)) {
790 		dmub_hpd_wrk->adev->dm.dmub_callback[dmub_hpd_wrk->dmub_notify->type](dmub_hpd_wrk->adev,
791 		dmub_hpd_wrk->dmub_notify);
792 	}
793 
794 	kfree(dmub_hpd_wrk->dmub_notify);
795 	kfree(dmub_hpd_wrk);
796 
797 }
798 
799 #define DMUB_TRACE_MAX_READ 64
800 /**
801  * dm_dmub_outbox1_low_irq() - Handles Outbox interrupt
802  * @interrupt_params: used for determining the Outbox instance
803  *
804  * Handles the Outbox Interrupt
805  * event handler.
806  */
807 static void dm_dmub_outbox1_low_irq(void *interrupt_params)
808 {
809 	struct dmub_notification notify;
810 	struct common_irq_params *irq_params = interrupt_params;
811 	struct amdgpu_device *adev = irq_params->adev;
812 	struct amdgpu_display_manager *dm = &adev->dm;
813 	struct dmcub_trace_buf_entry entry = { 0 };
814 	u32 count = 0;
815 	struct dmub_hpd_work *dmub_hpd_wrk;
816 	struct dc_link *plink = NULL;
817 
818 	if (dc_enable_dmub_notifications(adev->dm.dc) &&
819 		irq_params->irq_src == DC_IRQ_SOURCE_DMCUB_OUTBOX) {
820 
821 		do {
822 			dc_stat_get_dmub_notification(adev->dm.dc, &notify);
823 			if (notify.type >= ARRAY_SIZE(dm->dmub_thread_offload)) {
824 				DRM_ERROR("DM: notify type %d invalid!", notify.type);
825 				continue;
826 			}
827 			if (!dm->dmub_callback[notify.type]) {
828 				DRM_DEBUG_DRIVER("DMUB notification skipped, no handler: type=%d\n", notify.type);
829 				continue;
830 			}
831 			if (dm->dmub_thread_offload[notify.type] == true) {
832 				dmub_hpd_wrk = kzalloc(sizeof(*dmub_hpd_wrk), GFP_ATOMIC);
833 				if (!dmub_hpd_wrk) {
834 					DRM_ERROR("Failed to allocate dmub_hpd_wrk");
835 					return;
836 				}
837 				dmub_hpd_wrk->dmub_notify = kmemdup(&notify, sizeof(struct dmub_notification),
838 								    GFP_ATOMIC);
839 				if (!dmub_hpd_wrk->dmub_notify) {
840 					kfree(dmub_hpd_wrk);
841 					DRM_ERROR("Failed to allocate dmub_hpd_wrk->dmub_notify");
842 					return;
843 				}
844 				INIT_WORK(&dmub_hpd_wrk->handle_hpd_work, dm_handle_hpd_work);
845 				dmub_hpd_wrk->adev = adev;
846 				if (notify.type == DMUB_NOTIFICATION_HPD) {
847 					plink = adev->dm.dc->links[notify.link_index];
848 					if (plink) {
849 						plink->hpd_status =
850 							notify.hpd_status == DP_HPD_PLUG;
851 					}
852 				}
853 				queue_work(adev->dm.delayed_hpd_wq, &dmub_hpd_wrk->handle_hpd_work);
854 			} else {
855 				dm->dmub_callback[notify.type](adev, &notify);
856 			}
857 		} while (notify.pending_notification);
858 	}
859 
860 
861 	do {
862 		if (dc_dmub_srv_get_dmub_outbox0_msg(dm->dc, &entry)) {
863 			trace_amdgpu_dmub_trace_high_irq(entry.trace_code, entry.tick_count,
864 							entry.param0, entry.param1);
865 
866 			DRM_DEBUG_DRIVER("trace_code:%u, tick_count:%u, param0:%u, param1:%u\n",
867 				 entry.trace_code, entry.tick_count, entry.param0, entry.param1);
868 		} else
869 			break;
870 
871 		count++;
872 
873 	} while (count <= DMUB_TRACE_MAX_READ);
874 
875 	if (count > DMUB_TRACE_MAX_READ)
876 		DRM_DEBUG_DRIVER("Warning : count > DMUB_TRACE_MAX_READ");
877 }
878 
879 static int dm_set_clockgating_state(void *handle,
880 		  enum amd_clockgating_state state)
881 {
882 	return 0;
883 }
884 
885 static int dm_set_powergating_state(void *handle,
886 		  enum amd_powergating_state state)
887 {
888 	return 0;
889 }
890 
891 /* Prototypes of private functions */
892 static int dm_early_init(void *handle);
893 
894 /* Allocate memory for FBC compressed data  */
895 static void amdgpu_dm_fbc_init(struct drm_connector *connector)
896 {
897 	struct drm_device *dev = connector->dev;
898 	struct amdgpu_device *adev = drm_to_adev(dev);
899 	struct dm_compressor_info *compressor = &adev->dm.compressor;
900 	struct amdgpu_dm_connector *aconn = to_amdgpu_dm_connector(connector);
901 	struct drm_display_mode *mode;
902 	unsigned long max_size = 0;
903 
904 	if (adev->dm.dc->fbc_compressor == NULL)
905 		return;
906 
907 	if (aconn->dc_link->connector_signal != SIGNAL_TYPE_EDP)
908 		return;
909 
910 	if (compressor->bo_ptr)
911 		return;
912 
913 
914 	list_for_each_entry(mode, &connector->modes, head) {
915 		if (max_size < mode->htotal * mode->vtotal)
916 			max_size = mode->htotal * mode->vtotal;
917 	}
918 
919 	if (max_size) {
920 		int r = amdgpu_bo_create_kernel(adev, max_size * 4, PAGE_SIZE,
921 			    AMDGPU_GEM_DOMAIN_GTT, &compressor->bo_ptr,
922 			    &compressor->gpu_addr, &compressor->cpu_addr);
923 
924 		if (r)
925 			DRM_ERROR("DM: Failed to initialize FBC\n");
926 		else {
927 			adev->dm.dc->ctx->fbc_gpu_addr = compressor->gpu_addr;
928 			DRM_INFO("DM: FBC alloc %lu\n", max_size*4);
929 		}
930 
931 	}
932 
933 }
934 
935 static int amdgpu_dm_audio_component_get_eld(struct device *kdev, int port,
936 					  int pipe, bool *enabled,
937 					  unsigned char *buf, int max_bytes)
938 {
939 	struct drm_device *dev = dev_get_drvdata(kdev);
940 	struct amdgpu_device *adev = drm_to_adev(dev);
941 	struct drm_connector *connector;
942 	struct drm_connector_list_iter conn_iter;
943 	struct amdgpu_dm_connector *aconnector;
944 	int ret = 0;
945 
946 	*enabled = false;
947 
948 	mutex_lock(&adev->dm.audio_lock);
949 
950 	drm_connector_list_iter_begin(dev, &conn_iter);
951 	drm_for_each_connector_iter(connector, &conn_iter) {
952 		aconnector = to_amdgpu_dm_connector(connector);
953 		if (aconnector->audio_inst != port)
954 			continue;
955 
956 		*enabled = true;
957 		ret = drm_eld_size(connector->eld);
958 		memcpy(buf, connector->eld, min(max_bytes, ret));
959 
960 		break;
961 	}
962 	drm_connector_list_iter_end(&conn_iter);
963 
964 	mutex_unlock(&adev->dm.audio_lock);
965 
966 	DRM_DEBUG_KMS("Get ELD : idx=%d ret=%d en=%d\n", port, ret, *enabled);
967 
968 	return ret;
969 }
970 
971 static const struct drm_audio_component_ops amdgpu_dm_audio_component_ops = {
972 	.get_eld = amdgpu_dm_audio_component_get_eld,
973 };
974 
975 static int amdgpu_dm_audio_component_bind(struct device *kdev,
976 				       struct device *hda_kdev, void *data)
977 {
978 	struct drm_device *dev = dev_get_drvdata(kdev);
979 	struct amdgpu_device *adev = drm_to_adev(dev);
980 	struct drm_audio_component *acomp = data;
981 
982 	acomp->ops = &amdgpu_dm_audio_component_ops;
983 	acomp->dev = kdev;
984 	adev->dm.audio_component = acomp;
985 
986 	return 0;
987 }
988 
989 static void amdgpu_dm_audio_component_unbind(struct device *kdev,
990 					  struct device *hda_kdev, void *data)
991 {
992 	struct drm_device *dev = dev_get_drvdata(kdev);
993 	struct amdgpu_device *adev = drm_to_adev(dev);
994 	struct drm_audio_component *acomp = data;
995 
996 	acomp->ops = NULL;
997 	acomp->dev = NULL;
998 	adev->dm.audio_component = NULL;
999 }
1000 
1001 static const struct component_ops amdgpu_dm_audio_component_bind_ops = {
1002 	.bind	= amdgpu_dm_audio_component_bind,
1003 	.unbind	= amdgpu_dm_audio_component_unbind,
1004 };
1005 
1006 static int amdgpu_dm_audio_init(struct amdgpu_device *adev)
1007 {
1008 	int i, ret;
1009 
1010 	if (!amdgpu_audio)
1011 		return 0;
1012 
1013 	adev->mode_info.audio.enabled = true;
1014 
1015 	adev->mode_info.audio.num_pins = adev->dm.dc->res_pool->audio_count;
1016 
1017 	for (i = 0; i < adev->mode_info.audio.num_pins; i++) {
1018 		adev->mode_info.audio.pin[i].channels = -1;
1019 		adev->mode_info.audio.pin[i].rate = -1;
1020 		adev->mode_info.audio.pin[i].bits_per_sample = -1;
1021 		adev->mode_info.audio.pin[i].status_bits = 0;
1022 		adev->mode_info.audio.pin[i].category_code = 0;
1023 		adev->mode_info.audio.pin[i].connected = false;
1024 		adev->mode_info.audio.pin[i].id =
1025 			adev->dm.dc->res_pool->audios[i]->inst;
1026 		adev->mode_info.audio.pin[i].offset = 0;
1027 	}
1028 
1029 	ret = component_add(adev->dev, &amdgpu_dm_audio_component_bind_ops);
1030 	if (ret < 0)
1031 		return ret;
1032 
1033 	adev->dm.audio_registered = true;
1034 
1035 	return 0;
1036 }
1037 
1038 static void amdgpu_dm_audio_fini(struct amdgpu_device *adev)
1039 {
1040 	if (!amdgpu_audio)
1041 		return;
1042 
1043 	if (!adev->mode_info.audio.enabled)
1044 		return;
1045 
1046 	if (adev->dm.audio_registered) {
1047 		component_del(adev->dev, &amdgpu_dm_audio_component_bind_ops);
1048 		adev->dm.audio_registered = false;
1049 	}
1050 
1051 	/* TODO: Disable audio? */
1052 
1053 	adev->mode_info.audio.enabled = false;
1054 }
1055 
1056 static  void amdgpu_dm_audio_eld_notify(struct amdgpu_device *adev, int pin)
1057 {
1058 	struct drm_audio_component *acomp = adev->dm.audio_component;
1059 
1060 	if (acomp && acomp->audio_ops && acomp->audio_ops->pin_eld_notify) {
1061 		DRM_DEBUG_KMS("Notify ELD: %d\n", pin);
1062 
1063 		acomp->audio_ops->pin_eld_notify(acomp->audio_ops->audio_ptr,
1064 						 pin, -1);
1065 	}
1066 }
1067 
1068 static int dm_dmub_hw_init(struct amdgpu_device *adev)
1069 {
1070 	const struct dmcub_firmware_header_v1_0 *hdr;
1071 	struct dmub_srv *dmub_srv = adev->dm.dmub_srv;
1072 	struct dmub_srv_fb_info *fb_info = adev->dm.dmub_fb_info;
1073 	const struct firmware *dmub_fw = adev->dm.dmub_fw;
1074 	struct dmcu *dmcu = adev->dm.dc->res_pool->dmcu;
1075 	struct abm *abm = adev->dm.dc->res_pool->abm;
1076 	struct dc_context *ctx = adev->dm.dc->ctx;
1077 	struct dmub_srv_hw_params hw_params;
1078 	enum dmub_status status;
1079 	const unsigned char *fw_inst_const, *fw_bss_data;
1080 	u32 i, fw_inst_const_size, fw_bss_data_size;
1081 	bool has_hw_support;
1082 
1083 	if (!dmub_srv)
1084 		/* DMUB isn't supported on the ASIC. */
1085 		return 0;
1086 
1087 	if (!fb_info) {
1088 		DRM_ERROR("No framebuffer info for DMUB service.\n");
1089 		return -EINVAL;
1090 	}
1091 
1092 	if (!dmub_fw) {
1093 		/* Firmware required for DMUB support. */
1094 		DRM_ERROR("No firmware provided for DMUB.\n");
1095 		return -EINVAL;
1096 	}
1097 
1098 	/* initialize register offsets for ASICs with runtime initialization available */
1099 	if (dmub_srv->hw_funcs.init_reg_offsets)
1100 		dmub_srv->hw_funcs.init_reg_offsets(dmub_srv, ctx);
1101 
1102 	status = dmub_srv_has_hw_support(dmub_srv, &has_hw_support);
1103 	if (status != DMUB_STATUS_OK) {
1104 		DRM_ERROR("Error checking HW support for DMUB: %d\n", status);
1105 		return -EINVAL;
1106 	}
1107 
1108 	if (!has_hw_support) {
1109 		DRM_INFO("DMUB unsupported on ASIC\n");
1110 		return 0;
1111 	}
1112 
1113 	/* Reset DMCUB if it was previously running - before we overwrite its memory. */
1114 	status = dmub_srv_hw_reset(dmub_srv);
1115 	if (status != DMUB_STATUS_OK)
1116 		DRM_WARN("Error resetting DMUB HW: %d\n", status);
1117 
1118 	hdr = (const struct dmcub_firmware_header_v1_0 *)dmub_fw->data;
1119 
1120 	fw_inst_const = dmub_fw->data +
1121 			le32_to_cpu(hdr->header.ucode_array_offset_bytes) +
1122 			PSP_HEADER_BYTES;
1123 
1124 	fw_bss_data = dmub_fw->data +
1125 		      le32_to_cpu(hdr->header.ucode_array_offset_bytes) +
1126 		      le32_to_cpu(hdr->inst_const_bytes);
1127 
1128 	/* Copy firmware and bios info into FB memory. */
1129 	fw_inst_const_size = le32_to_cpu(hdr->inst_const_bytes) -
1130 			     PSP_HEADER_BYTES - PSP_FOOTER_BYTES;
1131 
1132 	fw_bss_data_size = le32_to_cpu(hdr->bss_data_bytes);
1133 
1134 	/* if adev->firmware.load_type == AMDGPU_FW_LOAD_PSP,
1135 	 * amdgpu_ucode_init_single_fw will load dmub firmware
1136 	 * fw_inst_const part to cw0; otherwise, the firmware back door load
1137 	 * will be done by dm_dmub_hw_init
1138 	 */
1139 	if (adev->firmware.load_type != AMDGPU_FW_LOAD_PSP) {
1140 		memcpy(fb_info->fb[DMUB_WINDOW_0_INST_CONST].cpu_addr, fw_inst_const,
1141 				fw_inst_const_size);
1142 	}
1143 
1144 	if (fw_bss_data_size)
1145 		memcpy(fb_info->fb[DMUB_WINDOW_2_BSS_DATA].cpu_addr,
1146 		       fw_bss_data, fw_bss_data_size);
1147 
1148 	/* Copy firmware bios info into FB memory. */
1149 	memcpy(fb_info->fb[DMUB_WINDOW_3_VBIOS].cpu_addr, adev->bios,
1150 	       adev->bios_size);
1151 
1152 	/* Reset regions that need to be reset. */
1153 	memset(fb_info->fb[DMUB_WINDOW_4_MAILBOX].cpu_addr, 0,
1154 	fb_info->fb[DMUB_WINDOW_4_MAILBOX].size);
1155 
1156 	memset(fb_info->fb[DMUB_WINDOW_5_TRACEBUFF].cpu_addr, 0,
1157 	       fb_info->fb[DMUB_WINDOW_5_TRACEBUFF].size);
1158 
1159 	memset(fb_info->fb[DMUB_WINDOW_6_FW_STATE].cpu_addr, 0,
1160 	       fb_info->fb[DMUB_WINDOW_6_FW_STATE].size);
1161 
1162 	/* Initialize hardware. */
1163 	memset(&hw_params, 0, sizeof(hw_params));
1164 	hw_params.fb_base = adev->gmc.fb_start;
1165 	hw_params.fb_offset = adev->vm_manager.vram_base_offset;
1166 
1167 	/* backdoor load firmware and trigger dmub running */
1168 	if (adev->firmware.load_type != AMDGPU_FW_LOAD_PSP)
1169 		hw_params.load_inst_const = true;
1170 
1171 	if (dmcu)
1172 		hw_params.psp_version = dmcu->psp_version;
1173 
1174 	for (i = 0; i < fb_info->num_fb; ++i)
1175 		hw_params.fb[i] = &fb_info->fb[i];
1176 
1177 	switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
1178 	case IP_VERSION(3, 1, 3):
1179 	case IP_VERSION(3, 1, 4):
1180 	case IP_VERSION(3, 5, 0):
1181 		hw_params.dpia_supported = true;
1182 		hw_params.disable_dpia = adev->dm.dc->debug.dpia_debug.bits.disable_dpia;
1183 		break;
1184 	default:
1185 		break;
1186 	}
1187 
1188 	status = dmub_srv_hw_init(dmub_srv, &hw_params);
1189 	if (status != DMUB_STATUS_OK) {
1190 		DRM_ERROR("Error initializing DMUB HW: %d\n", status);
1191 		return -EINVAL;
1192 	}
1193 
1194 	/* Wait for firmware load to finish. */
1195 	status = dmub_srv_wait_for_auto_load(dmub_srv, 100000);
1196 	if (status != DMUB_STATUS_OK)
1197 		DRM_WARN("Wait for DMUB auto-load failed: %d\n", status);
1198 
1199 	/* Init DMCU and ABM if available. */
1200 	if (dmcu && abm) {
1201 		dmcu->funcs->dmcu_init(dmcu);
1202 		abm->dmcu_is_running = dmcu->funcs->is_dmcu_initialized(dmcu);
1203 	}
1204 
1205 	if (!adev->dm.dc->ctx->dmub_srv)
1206 		adev->dm.dc->ctx->dmub_srv = dc_dmub_srv_create(adev->dm.dc, dmub_srv);
1207 	if (!adev->dm.dc->ctx->dmub_srv) {
1208 		DRM_ERROR("Couldn't allocate DC DMUB server!\n");
1209 		return -ENOMEM;
1210 	}
1211 
1212 	DRM_INFO("DMUB hardware initialized: version=0x%08X\n",
1213 		 adev->dm.dmcub_fw_version);
1214 
1215 	return 0;
1216 }
1217 
1218 static void dm_dmub_hw_resume(struct amdgpu_device *adev)
1219 {
1220 	struct dmub_srv *dmub_srv = adev->dm.dmub_srv;
1221 	enum dmub_status status;
1222 	bool init;
1223 
1224 	if (!dmub_srv) {
1225 		/* DMUB isn't supported on the ASIC. */
1226 		return;
1227 	}
1228 
1229 	status = dmub_srv_is_hw_init(dmub_srv, &init);
1230 	if (status != DMUB_STATUS_OK)
1231 		DRM_WARN("DMUB hardware init check failed: %d\n", status);
1232 
1233 	if (status == DMUB_STATUS_OK && init) {
1234 		/* Wait for firmware load to finish. */
1235 		status = dmub_srv_wait_for_auto_load(dmub_srv, 100000);
1236 		if (status != DMUB_STATUS_OK)
1237 			DRM_WARN("Wait for DMUB auto-load failed: %d\n", status);
1238 	} else {
1239 		/* Perform the full hardware initialization. */
1240 		dm_dmub_hw_init(adev);
1241 	}
1242 }
1243 
1244 static void mmhub_read_system_context(struct amdgpu_device *adev, struct dc_phy_addr_space_config *pa_config)
1245 {
1246 	u64 pt_base;
1247 	u32 logical_addr_low;
1248 	u32 logical_addr_high;
1249 	u32 agp_base, agp_bot, agp_top;
1250 	PHYSICAL_ADDRESS_LOC page_table_start, page_table_end, page_table_base;
1251 
1252 	memset(pa_config, 0, sizeof(*pa_config));
1253 
1254 	agp_base = 0;
1255 	agp_bot = adev->gmc.agp_start >> 24;
1256 	agp_top = adev->gmc.agp_end >> 24;
1257 
1258 	/* AGP aperture is disabled */
1259 	if (agp_bot > agp_top) {
1260 		logical_addr_low = adev->gmc.fb_start >> 18;
1261 		if (adev->apu_flags & AMD_APU_IS_RAVEN2)
1262 			/*
1263 			 * Raven2 has a HW issue that it is unable to use the vram which
1264 			 * is out of MC_VM_SYSTEM_APERTURE_HIGH_ADDR. So here is the
1265 			 * workaround that increase system aperture high address (add 1)
1266 			 * to get rid of the VM fault and hardware hang.
1267 			 */
1268 			logical_addr_high = (adev->gmc.fb_end >> 18) + 0x1;
1269 		else
1270 			logical_addr_high = adev->gmc.fb_end >> 18;
1271 	} else {
1272 		logical_addr_low = min(adev->gmc.fb_start, adev->gmc.agp_start) >> 18;
1273 		if (adev->apu_flags & AMD_APU_IS_RAVEN2)
1274 			/*
1275 			 * Raven2 has a HW issue that it is unable to use the vram which
1276 			 * is out of MC_VM_SYSTEM_APERTURE_HIGH_ADDR. So here is the
1277 			 * workaround that increase system aperture high address (add 1)
1278 			 * to get rid of the VM fault and hardware hang.
1279 			 */
1280 			logical_addr_high = max((adev->gmc.fb_end >> 18) + 0x1, adev->gmc.agp_end >> 18);
1281 		else
1282 			logical_addr_high = max(adev->gmc.fb_end, adev->gmc.agp_end) >> 18;
1283 	}
1284 
1285 	pt_base = amdgpu_gmc_pd_addr(adev->gart.bo);
1286 
1287 	page_table_start.high_part = upper_32_bits(adev->gmc.gart_start >>
1288 						   AMDGPU_GPU_PAGE_SHIFT);
1289 	page_table_start.low_part = lower_32_bits(adev->gmc.gart_start >>
1290 						  AMDGPU_GPU_PAGE_SHIFT);
1291 	page_table_end.high_part = upper_32_bits(adev->gmc.gart_end >>
1292 						 AMDGPU_GPU_PAGE_SHIFT);
1293 	page_table_end.low_part = lower_32_bits(adev->gmc.gart_end >>
1294 						AMDGPU_GPU_PAGE_SHIFT);
1295 	page_table_base.high_part = upper_32_bits(pt_base);
1296 	page_table_base.low_part = lower_32_bits(pt_base);
1297 
1298 	pa_config->system_aperture.start_addr = (uint64_t)logical_addr_low << 18;
1299 	pa_config->system_aperture.end_addr = (uint64_t)logical_addr_high << 18;
1300 
1301 	pa_config->system_aperture.agp_base = (uint64_t)agp_base << 24;
1302 	pa_config->system_aperture.agp_bot = (uint64_t)agp_bot << 24;
1303 	pa_config->system_aperture.agp_top = (uint64_t)agp_top << 24;
1304 
1305 	pa_config->system_aperture.fb_base = adev->gmc.fb_start;
1306 	pa_config->system_aperture.fb_offset = adev->vm_manager.vram_base_offset;
1307 	pa_config->system_aperture.fb_top = adev->gmc.fb_end;
1308 
1309 	pa_config->gart_config.page_table_start_addr = page_table_start.quad_part << 12;
1310 	pa_config->gart_config.page_table_end_addr = page_table_end.quad_part << 12;
1311 	pa_config->gart_config.page_table_base_addr = page_table_base.quad_part;
1312 
1313 	pa_config->is_hvm_enabled = adev->mode_info.gpu_vm_support;
1314 
1315 }
1316 
1317 static void force_connector_state(
1318 	struct amdgpu_dm_connector *aconnector,
1319 	enum drm_connector_force force_state)
1320 {
1321 	struct drm_connector *connector = &aconnector->base;
1322 
1323 	mutex_lock(&connector->dev->mode_config.mutex);
1324 	aconnector->base.force = force_state;
1325 	mutex_unlock(&connector->dev->mode_config.mutex);
1326 
1327 	mutex_lock(&aconnector->hpd_lock);
1328 	drm_kms_helper_connector_hotplug_event(connector);
1329 	mutex_unlock(&aconnector->hpd_lock);
1330 }
1331 
1332 static void dm_handle_hpd_rx_offload_work(struct work_struct *work)
1333 {
1334 	struct hpd_rx_irq_offload_work *offload_work;
1335 	struct amdgpu_dm_connector *aconnector;
1336 	struct dc_link *dc_link;
1337 	struct amdgpu_device *adev;
1338 	enum dc_connection_type new_connection_type = dc_connection_none;
1339 	unsigned long flags;
1340 	union test_response test_response;
1341 
1342 	memset(&test_response, 0, sizeof(test_response));
1343 
1344 	offload_work = container_of(work, struct hpd_rx_irq_offload_work, work);
1345 	aconnector = offload_work->offload_wq->aconnector;
1346 
1347 	if (!aconnector) {
1348 		DRM_ERROR("Can't retrieve aconnector in hpd_rx_irq_offload_work");
1349 		goto skip;
1350 	}
1351 
1352 	adev = drm_to_adev(aconnector->base.dev);
1353 	dc_link = aconnector->dc_link;
1354 
1355 	mutex_lock(&aconnector->hpd_lock);
1356 	if (!dc_link_detect_connection_type(dc_link, &new_connection_type))
1357 		DRM_ERROR("KMS: Failed to detect connector\n");
1358 	mutex_unlock(&aconnector->hpd_lock);
1359 
1360 	if (new_connection_type == dc_connection_none)
1361 		goto skip;
1362 
1363 	if (amdgpu_in_reset(adev))
1364 		goto skip;
1365 
1366 	if (offload_work->data.bytes.device_service_irq.bits.UP_REQ_MSG_RDY ||
1367 		offload_work->data.bytes.device_service_irq.bits.DOWN_REP_MSG_RDY) {
1368 		dm_handle_mst_sideband_msg_ready_event(&aconnector->mst_mgr, DOWN_OR_UP_MSG_RDY_EVENT);
1369 		spin_lock_irqsave(&offload_work->offload_wq->offload_lock, flags);
1370 		offload_work->offload_wq->is_handling_mst_msg_rdy_event = false;
1371 		spin_unlock_irqrestore(&offload_work->offload_wq->offload_lock, flags);
1372 		goto skip;
1373 	}
1374 
1375 	mutex_lock(&adev->dm.dc_lock);
1376 	if (offload_work->data.bytes.device_service_irq.bits.AUTOMATED_TEST) {
1377 		dc_link_dp_handle_automated_test(dc_link);
1378 
1379 		if (aconnector->timing_changed) {
1380 			/* force connector disconnect and reconnect */
1381 			force_connector_state(aconnector, DRM_FORCE_OFF);
1382 			msleep(100);
1383 			force_connector_state(aconnector, DRM_FORCE_UNSPECIFIED);
1384 		}
1385 
1386 		test_response.bits.ACK = 1;
1387 
1388 		core_link_write_dpcd(
1389 		dc_link,
1390 		DP_TEST_RESPONSE,
1391 		&test_response.raw,
1392 		sizeof(test_response));
1393 	} else if ((dc_link->connector_signal != SIGNAL_TYPE_EDP) &&
1394 			dc_link_check_link_loss_status(dc_link, &offload_work->data) &&
1395 			dc_link_dp_allow_hpd_rx_irq(dc_link)) {
1396 		/* offload_work->data is from handle_hpd_rx_irq->
1397 		 * schedule_hpd_rx_offload_work.this is defer handle
1398 		 * for hpd short pulse. upon here, link status may be
1399 		 * changed, need get latest link status from dpcd
1400 		 * registers. if link status is good, skip run link
1401 		 * training again.
1402 		 */
1403 		union hpd_irq_data irq_data;
1404 
1405 		memset(&irq_data, 0, sizeof(irq_data));
1406 
1407 		/* before dc_link_dp_handle_link_loss, allow new link lost handle
1408 		 * request be added to work queue if link lost at end of dc_link_
1409 		 * dp_handle_link_loss
1410 		 */
1411 		spin_lock_irqsave(&offload_work->offload_wq->offload_lock, flags);
1412 		offload_work->offload_wq->is_handling_link_loss = false;
1413 		spin_unlock_irqrestore(&offload_work->offload_wq->offload_lock, flags);
1414 
1415 		if ((dc_link_dp_read_hpd_rx_irq_data(dc_link, &irq_data) == DC_OK) &&
1416 			dc_link_check_link_loss_status(dc_link, &irq_data))
1417 			dc_link_dp_handle_link_loss(dc_link);
1418 	}
1419 	mutex_unlock(&adev->dm.dc_lock);
1420 
1421 skip:
1422 	kfree(offload_work);
1423 
1424 }
1425 
1426 static struct hpd_rx_irq_offload_work_queue *hpd_rx_irq_create_workqueue(struct dc *dc)
1427 {
1428 	int max_caps = dc->caps.max_links;
1429 	int i = 0;
1430 	struct hpd_rx_irq_offload_work_queue *hpd_rx_offload_wq = NULL;
1431 
1432 	hpd_rx_offload_wq = kcalloc(max_caps, sizeof(*hpd_rx_offload_wq), GFP_KERNEL);
1433 
1434 	if (!hpd_rx_offload_wq)
1435 		return NULL;
1436 
1437 
1438 	for (i = 0; i < max_caps; i++) {
1439 		hpd_rx_offload_wq[i].wq =
1440 				    create_singlethread_workqueue("amdgpu_dm_hpd_rx_offload_wq");
1441 
1442 		if (hpd_rx_offload_wq[i].wq == NULL) {
1443 			DRM_ERROR("create amdgpu_dm_hpd_rx_offload_wq fail!");
1444 			goto out_err;
1445 		}
1446 
1447 		spin_lock_init(&hpd_rx_offload_wq[i].offload_lock);
1448 	}
1449 
1450 	return hpd_rx_offload_wq;
1451 
1452 out_err:
1453 	for (i = 0; i < max_caps; i++) {
1454 		if (hpd_rx_offload_wq[i].wq)
1455 			destroy_workqueue(hpd_rx_offload_wq[i].wq);
1456 	}
1457 	kfree(hpd_rx_offload_wq);
1458 	return NULL;
1459 }
1460 
1461 struct amdgpu_stutter_quirk {
1462 	u16 chip_vendor;
1463 	u16 chip_device;
1464 	u16 subsys_vendor;
1465 	u16 subsys_device;
1466 	u8 revision;
1467 };
1468 
1469 static const struct amdgpu_stutter_quirk amdgpu_stutter_quirk_list[] = {
1470 	/* https://bugzilla.kernel.org/show_bug.cgi?id=214417 */
1471 	{ 0x1002, 0x15dd, 0x1002, 0x15dd, 0xc8 },
1472 	{ 0, 0, 0, 0, 0 },
1473 };
1474 
1475 static bool dm_should_disable_stutter(struct pci_dev *pdev)
1476 {
1477 	const struct amdgpu_stutter_quirk *p = amdgpu_stutter_quirk_list;
1478 
1479 	while (p && p->chip_device != 0) {
1480 		if (pdev->vendor == p->chip_vendor &&
1481 		    pdev->device == p->chip_device &&
1482 		    pdev->subsystem_vendor == p->subsys_vendor &&
1483 		    pdev->subsystem_device == p->subsys_device &&
1484 		    pdev->revision == p->revision) {
1485 			return true;
1486 		}
1487 		++p;
1488 	}
1489 	return false;
1490 }
1491 
1492 static const struct dmi_system_id hpd_disconnect_quirk_table[] = {
1493 	{
1494 		.matches = {
1495 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1496 			DMI_MATCH(DMI_PRODUCT_NAME, "Precision 3660"),
1497 		},
1498 	},
1499 	{
1500 		.matches = {
1501 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1502 			DMI_MATCH(DMI_PRODUCT_NAME, "Precision 3260"),
1503 		},
1504 	},
1505 	{
1506 		.matches = {
1507 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1508 			DMI_MATCH(DMI_PRODUCT_NAME, "Precision 3460"),
1509 		},
1510 	},
1511 	{
1512 		.matches = {
1513 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1514 			DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex Tower Plus 7010"),
1515 		},
1516 	},
1517 	{
1518 		.matches = {
1519 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1520 			DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex Tower 7010"),
1521 		},
1522 	},
1523 	{
1524 		.matches = {
1525 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1526 			DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex SFF Plus 7010"),
1527 		},
1528 	},
1529 	{
1530 		.matches = {
1531 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1532 			DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex SFF 7010"),
1533 		},
1534 	},
1535 	{
1536 		.matches = {
1537 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1538 			DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex Micro Plus 7010"),
1539 		},
1540 	},
1541 	{
1542 		.matches = {
1543 			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
1544 			DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex Micro 7010"),
1545 		},
1546 	},
1547 	{}
1548 	/* TODO: refactor this from a fixed table to a dynamic option */
1549 };
1550 
1551 static void retrieve_dmi_info(struct amdgpu_display_manager *dm)
1552 {
1553 	const struct dmi_system_id *dmi_id;
1554 
1555 	dm->aux_hpd_discon_quirk = false;
1556 
1557 	dmi_id = dmi_first_match(hpd_disconnect_quirk_table);
1558 	if (dmi_id) {
1559 		dm->aux_hpd_discon_quirk = true;
1560 		DRM_INFO("aux_hpd_discon_quirk attached\n");
1561 	}
1562 }
1563 
1564 static int amdgpu_dm_init(struct amdgpu_device *adev)
1565 {
1566 	struct dc_init_data init_data;
1567 	struct dc_callback_init init_params;
1568 	int r;
1569 
1570 	adev->dm.ddev = adev_to_drm(adev);
1571 	adev->dm.adev = adev;
1572 
1573 	/* Zero all the fields */
1574 	memset(&init_data, 0, sizeof(init_data));
1575 	memset(&init_params, 0, sizeof(init_params));
1576 
1577 	mutex_init(&adev->dm.dpia_aux_lock);
1578 	mutex_init(&adev->dm.dc_lock);
1579 	mutex_init(&adev->dm.audio_lock);
1580 
1581 	if (amdgpu_dm_irq_init(adev)) {
1582 		DRM_ERROR("amdgpu: failed to initialize DM IRQ support.\n");
1583 		goto error;
1584 	}
1585 
1586 	init_data.asic_id.chip_family = adev->family;
1587 
1588 	init_data.asic_id.pci_revision_id = adev->pdev->revision;
1589 	init_data.asic_id.hw_internal_rev = adev->external_rev_id;
1590 	init_data.asic_id.chip_id = adev->pdev->device;
1591 
1592 	init_data.asic_id.vram_width = adev->gmc.vram_width;
1593 	/* TODO: initialize init_data.asic_id.vram_type here!!!! */
1594 	init_data.asic_id.atombios_base_address =
1595 		adev->mode_info.atom_context->bios;
1596 
1597 	init_data.driver = adev;
1598 
1599 	adev->dm.cgs_device = amdgpu_cgs_create_device(adev);
1600 
1601 	if (!adev->dm.cgs_device) {
1602 		DRM_ERROR("amdgpu: failed to create cgs device.\n");
1603 		goto error;
1604 	}
1605 
1606 	init_data.cgs_device = adev->dm.cgs_device;
1607 
1608 	init_data.dce_environment = DCE_ENV_PRODUCTION_DRV;
1609 
1610 	switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
1611 	case IP_VERSION(2, 1, 0):
1612 		switch (adev->dm.dmcub_fw_version) {
1613 		case 0: /* development */
1614 		case 0x1: /* linux-firmware.git hash 6d9f399 */
1615 		case 0x01000000: /* linux-firmware.git hash 9a0b0f4 */
1616 			init_data.flags.disable_dmcu = false;
1617 			break;
1618 		default:
1619 			init_data.flags.disable_dmcu = true;
1620 		}
1621 		break;
1622 	case IP_VERSION(2, 0, 3):
1623 		init_data.flags.disable_dmcu = true;
1624 		break;
1625 	default:
1626 		break;
1627 	}
1628 
1629 	/* APU support S/G display by default except:
1630 	 * ASICs before Carrizo,
1631 	 * RAVEN1 (Users reported stability issue)
1632 	 */
1633 
1634 	if (adev->asic_type < CHIP_CARRIZO) {
1635 		init_data.flags.gpu_vm_support = false;
1636 	} else if (adev->asic_type == CHIP_RAVEN) {
1637 		if (adev->apu_flags & AMD_APU_IS_RAVEN)
1638 			init_data.flags.gpu_vm_support = false;
1639 		else
1640 			init_data.flags.gpu_vm_support = (amdgpu_sg_display != 0);
1641 	} else {
1642 		init_data.flags.gpu_vm_support = (amdgpu_sg_display != 0) && (adev->flags & AMD_IS_APU);
1643 	}
1644 
1645 	init_data.flags.gpu_vm_support = adev->mode_info.gpu_vm_support;
1646 
1647 	if (amdgpu_dc_feature_mask & DC_FBC_MASK)
1648 		init_data.flags.fbc_support = true;
1649 
1650 	if (amdgpu_dc_feature_mask & DC_MULTI_MON_PP_MCLK_SWITCH_MASK)
1651 		init_data.flags.multi_mon_pp_mclk_switch = true;
1652 
1653 	if (amdgpu_dc_feature_mask & DC_DISABLE_FRACTIONAL_PWM_MASK)
1654 		init_data.flags.disable_fractional_pwm = true;
1655 
1656 	if (amdgpu_dc_feature_mask & DC_EDP_NO_POWER_SEQUENCING)
1657 		init_data.flags.edp_no_power_sequencing = true;
1658 
1659 	if (amdgpu_dc_feature_mask & DC_DISABLE_LTTPR_DP1_4A)
1660 		init_data.flags.allow_lttpr_non_transparent_mode.bits.DP1_4A = true;
1661 	if (amdgpu_dc_feature_mask & DC_DISABLE_LTTPR_DP2_0)
1662 		init_data.flags.allow_lttpr_non_transparent_mode.bits.DP2_0 = true;
1663 
1664 	init_data.flags.seamless_boot_edp_requested = false;
1665 
1666 	if (amdgpu_device_seamless_boot_supported(adev)) {
1667 		init_data.flags.seamless_boot_edp_requested = true;
1668 		init_data.flags.allow_seamless_boot_optimization = true;
1669 		DRM_INFO("Seamless boot condition check passed\n");
1670 	}
1671 
1672 	init_data.flags.enable_mipi_converter_optimization = true;
1673 
1674 	init_data.dcn_reg_offsets = adev->reg_offset[DCE_HWIP][0];
1675 	init_data.nbio_reg_offsets = adev->reg_offset[NBIO_HWIP][0];
1676 	init_data.clk_reg_offsets = adev->reg_offset[CLK_HWIP][0];
1677 
1678 	INIT_LIST_HEAD(&adev->dm.da_list);
1679 
1680 	retrieve_dmi_info(&adev->dm);
1681 
1682 	/* Display Core create. */
1683 	adev->dm.dc = dc_create(&init_data);
1684 
1685 	if (adev->dm.dc) {
1686 		DRM_INFO("Display Core v%s initialized on %s\n", DC_VER,
1687 			 dce_version_to_string(adev->dm.dc->ctx->dce_version));
1688 	} else {
1689 		DRM_INFO("Display Core failed to initialize with v%s!\n", DC_VER);
1690 		goto error;
1691 	}
1692 
1693 	if (amdgpu_dc_debug_mask & DC_DISABLE_PIPE_SPLIT) {
1694 		adev->dm.dc->debug.force_single_disp_pipe_split = false;
1695 		adev->dm.dc->debug.pipe_split_policy = MPC_SPLIT_AVOID;
1696 	}
1697 
1698 	if (adev->asic_type != CHIP_CARRIZO && adev->asic_type != CHIP_STONEY)
1699 		adev->dm.dc->debug.disable_stutter = amdgpu_pp_feature_mask & PP_STUTTER_MODE ? false : true;
1700 	if (dm_should_disable_stutter(adev->pdev))
1701 		adev->dm.dc->debug.disable_stutter = true;
1702 
1703 	if (amdgpu_dc_debug_mask & DC_DISABLE_STUTTER)
1704 		adev->dm.dc->debug.disable_stutter = true;
1705 
1706 	if (amdgpu_dc_debug_mask & DC_DISABLE_DSC)
1707 		adev->dm.dc->debug.disable_dsc = true;
1708 
1709 	if (amdgpu_dc_debug_mask & DC_DISABLE_CLOCK_GATING)
1710 		adev->dm.dc->debug.disable_clock_gate = true;
1711 
1712 	if (amdgpu_dc_debug_mask & DC_FORCE_SUBVP_MCLK_SWITCH)
1713 		adev->dm.dc->debug.force_subvp_mclk_switch = true;
1714 
1715 	adev->dm.dc->debug.visual_confirm = amdgpu_dc_visual_confirm;
1716 
1717 	/* TODO: Remove after DP2 receiver gets proper support of Cable ID feature */
1718 	adev->dm.dc->debug.ignore_cable_id = true;
1719 
1720 	/* TODO: There is a new drm mst change where the freedom of
1721 	 * vc_next_start_slot update is revoked/moved into drm, instead of in
1722 	 * driver. This forces us to make sure to get vc_next_start_slot updated
1723 	 * in drm function each time without considering if mst_state is active
1724 	 * or not. Otherwise, next time hotplug will give wrong start_slot
1725 	 * number. We are implementing a temporary solution to even notify drm
1726 	 * mst deallocation when link is no longer of MST type when uncommitting
1727 	 * the stream so we will have more time to work on a proper solution.
1728 	 * Ideally when dm_helpers_dp_mst_stop_top_mgr message is triggered, we
1729 	 * should notify drm to do a complete "reset" of its states and stop
1730 	 * calling further drm mst functions when link is no longer of an MST
1731 	 * type. This could happen when we unplug an MST hubs/displays. When
1732 	 * uncommit stream comes later after unplug, we should just reset
1733 	 * hardware states only.
1734 	 */
1735 	adev->dm.dc->debug.temp_mst_deallocation_sequence = true;
1736 
1737 	if (adev->dm.dc->caps.dp_hdmi21_pcon_support)
1738 		DRM_INFO("DP-HDMI FRL PCON supported\n");
1739 
1740 	r = dm_dmub_hw_init(adev);
1741 	if (r) {
1742 		DRM_ERROR("DMUB interface failed to initialize: status=%d\n", r);
1743 		goto error;
1744 	}
1745 
1746 	dc_hardware_init(adev->dm.dc);
1747 
1748 	adev->dm.hpd_rx_offload_wq = hpd_rx_irq_create_workqueue(adev->dm.dc);
1749 	if (!adev->dm.hpd_rx_offload_wq) {
1750 		DRM_ERROR("amdgpu: failed to create hpd rx offload workqueue.\n");
1751 		goto error;
1752 	}
1753 
1754 	if ((adev->flags & AMD_IS_APU) && (adev->asic_type >= CHIP_CARRIZO)) {
1755 		struct dc_phy_addr_space_config pa_config;
1756 
1757 		mmhub_read_system_context(adev, &pa_config);
1758 
1759 		// Call the DC init_memory func
1760 		dc_setup_system_context(adev->dm.dc, &pa_config);
1761 	}
1762 
1763 	adev->dm.freesync_module = mod_freesync_create(adev->dm.dc);
1764 	if (!adev->dm.freesync_module) {
1765 		DRM_ERROR(
1766 		"amdgpu: failed to initialize freesync_module.\n");
1767 	} else
1768 		DRM_DEBUG_DRIVER("amdgpu: freesync_module init done %p.\n",
1769 				adev->dm.freesync_module);
1770 
1771 	amdgpu_dm_init_color_mod();
1772 
1773 	if (adev->dm.dc->caps.max_links > 0) {
1774 		adev->dm.vblank_control_workqueue =
1775 			create_singlethread_workqueue("dm_vblank_control_workqueue");
1776 		if (!adev->dm.vblank_control_workqueue)
1777 			DRM_ERROR("amdgpu: failed to initialize vblank_workqueue.\n");
1778 	}
1779 
1780 	if (adev->dm.dc->caps.max_links > 0 && adev->family >= AMDGPU_FAMILY_RV) {
1781 		adev->dm.hdcp_workqueue = hdcp_create_workqueue(adev, &init_params.cp_psp, adev->dm.dc);
1782 
1783 		if (!adev->dm.hdcp_workqueue)
1784 			DRM_ERROR("amdgpu: failed to initialize hdcp_workqueue.\n");
1785 		else
1786 			DRM_DEBUG_DRIVER("amdgpu: hdcp_workqueue init done %p.\n", adev->dm.hdcp_workqueue);
1787 
1788 		dc_init_callbacks(adev->dm.dc, &init_params);
1789 	}
1790 	if (dc_is_dmub_outbox_supported(adev->dm.dc)) {
1791 		init_completion(&adev->dm.dmub_aux_transfer_done);
1792 		adev->dm.dmub_notify = kzalloc(sizeof(struct dmub_notification), GFP_KERNEL);
1793 		if (!adev->dm.dmub_notify) {
1794 			DRM_INFO("amdgpu: fail to allocate adev->dm.dmub_notify");
1795 			goto error;
1796 		}
1797 
1798 		adev->dm.delayed_hpd_wq = create_singlethread_workqueue("amdgpu_dm_hpd_wq");
1799 		if (!adev->dm.delayed_hpd_wq) {
1800 			DRM_ERROR("amdgpu: failed to create hpd offload workqueue.\n");
1801 			goto error;
1802 		}
1803 
1804 		amdgpu_dm_outbox_init(adev);
1805 		if (!register_dmub_notify_callback(adev, DMUB_NOTIFICATION_AUX_REPLY,
1806 			dmub_aux_setconfig_callback, false)) {
1807 			DRM_ERROR("amdgpu: fail to register dmub aux callback");
1808 			goto error;
1809 		}
1810 		if (!register_dmub_notify_callback(adev, DMUB_NOTIFICATION_HPD, dmub_hpd_callback, true)) {
1811 			DRM_ERROR("amdgpu: fail to register dmub hpd callback");
1812 			goto error;
1813 		}
1814 		if (!register_dmub_notify_callback(adev, DMUB_NOTIFICATION_HPD_IRQ, dmub_hpd_callback, true)) {
1815 			DRM_ERROR("amdgpu: fail to register dmub hpd callback");
1816 			goto error;
1817 		}
1818 	}
1819 
1820 	/* Enable outbox notification only after IRQ handlers are registered and DMUB is alive.
1821 	 * It is expected that DMUB will resend any pending notifications at this point, for
1822 	 * example HPD from DPIA.
1823 	 */
1824 	if (dc_is_dmub_outbox_supported(adev->dm.dc)) {
1825 		dc_enable_dmub_outbox(adev->dm.dc);
1826 
1827 		/* DPIA trace goes to dmesg logs only if outbox is enabled */
1828 		if (amdgpu_dc_debug_mask & DC_ENABLE_DPIA_TRACE)
1829 			dc_dmub_srv_enable_dpia_trace(adev->dm.dc);
1830 	}
1831 
1832 	if (amdgpu_dm_initialize_drm_device(adev)) {
1833 		DRM_ERROR(
1834 		"amdgpu: failed to initialize sw for display support.\n");
1835 		goto error;
1836 	}
1837 
1838 	/* create fake encoders for MST */
1839 	dm_dp_create_fake_mst_encoders(adev);
1840 
1841 	/* TODO: Add_display_info? */
1842 
1843 	/* TODO use dynamic cursor width */
1844 	adev_to_drm(adev)->mode_config.cursor_width = adev->dm.dc->caps.max_cursor_size;
1845 	adev_to_drm(adev)->mode_config.cursor_height = adev->dm.dc->caps.max_cursor_size;
1846 
1847 	if (drm_vblank_init(adev_to_drm(adev), adev->dm.display_indexes_num)) {
1848 		DRM_ERROR(
1849 		"amdgpu: failed to initialize sw for display support.\n");
1850 		goto error;
1851 	}
1852 
1853 #if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
1854 	adev->dm.secure_display_ctxs = amdgpu_dm_crtc_secure_display_create_contexts(adev);
1855 	if (!adev->dm.secure_display_ctxs)
1856 		DRM_ERROR("amdgpu: failed to initialize secure display contexts.\n");
1857 #endif
1858 
1859 	DRM_DEBUG_DRIVER("KMS initialized.\n");
1860 
1861 	return 0;
1862 error:
1863 	amdgpu_dm_fini(adev);
1864 
1865 	return -EINVAL;
1866 }
1867 
1868 static int amdgpu_dm_early_fini(void *handle)
1869 {
1870 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
1871 
1872 	amdgpu_dm_audio_fini(adev);
1873 
1874 	return 0;
1875 }
1876 
1877 static void amdgpu_dm_fini(struct amdgpu_device *adev)
1878 {
1879 	int i;
1880 
1881 	if (adev->dm.vblank_control_workqueue) {
1882 		destroy_workqueue(adev->dm.vblank_control_workqueue);
1883 		adev->dm.vblank_control_workqueue = NULL;
1884 	}
1885 
1886 	amdgpu_dm_destroy_drm_device(&adev->dm);
1887 
1888 #if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
1889 	if (adev->dm.secure_display_ctxs) {
1890 		for (i = 0; i < adev->mode_info.num_crtc; i++) {
1891 			if (adev->dm.secure_display_ctxs[i].crtc) {
1892 				flush_work(&adev->dm.secure_display_ctxs[i].notify_ta_work);
1893 				flush_work(&adev->dm.secure_display_ctxs[i].forward_roi_work);
1894 			}
1895 		}
1896 		kfree(adev->dm.secure_display_ctxs);
1897 		adev->dm.secure_display_ctxs = NULL;
1898 	}
1899 #endif
1900 	if (adev->dm.hdcp_workqueue) {
1901 		hdcp_destroy(&adev->dev->kobj, adev->dm.hdcp_workqueue);
1902 		adev->dm.hdcp_workqueue = NULL;
1903 	}
1904 
1905 	if (adev->dm.dc)
1906 		dc_deinit_callbacks(adev->dm.dc);
1907 
1908 	if (adev->dm.dc)
1909 		dc_dmub_srv_destroy(&adev->dm.dc->ctx->dmub_srv);
1910 
1911 	if (dc_enable_dmub_notifications(adev->dm.dc)) {
1912 		kfree(adev->dm.dmub_notify);
1913 		adev->dm.dmub_notify = NULL;
1914 		destroy_workqueue(adev->dm.delayed_hpd_wq);
1915 		adev->dm.delayed_hpd_wq = NULL;
1916 	}
1917 
1918 	if (adev->dm.dmub_bo)
1919 		amdgpu_bo_free_kernel(&adev->dm.dmub_bo,
1920 				      &adev->dm.dmub_bo_gpu_addr,
1921 				      &adev->dm.dmub_bo_cpu_addr);
1922 
1923 	if (adev->dm.hpd_rx_offload_wq) {
1924 		for (i = 0; i < adev->dm.dc->caps.max_links; i++) {
1925 			if (adev->dm.hpd_rx_offload_wq[i].wq) {
1926 				destroy_workqueue(adev->dm.hpd_rx_offload_wq[i].wq);
1927 				adev->dm.hpd_rx_offload_wq[i].wq = NULL;
1928 			}
1929 		}
1930 
1931 		kfree(adev->dm.hpd_rx_offload_wq);
1932 		adev->dm.hpd_rx_offload_wq = NULL;
1933 	}
1934 
1935 	/* DC Destroy TODO: Replace destroy DAL */
1936 	if (adev->dm.dc)
1937 		dc_destroy(&adev->dm.dc);
1938 	/*
1939 	 * TODO: pageflip, vlank interrupt
1940 	 *
1941 	 * amdgpu_dm_irq_fini(adev);
1942 	 */
1943 
1944 	if (adev->dm.cgs_device) {
1945 		amdgpu_cgs_destroy_device(adev->dm.cgs_device);
1946 		adev->dm.cgs_device = NULL;
1947 	}
1948 	if (adev->dm.freesync_module) {
1949 		mod_freesync_destroy(adev->dm.freesync_module);
1950 		adev->dm.freesync_module = NULL;
1951 	}
1952 
1953 	mutex_destroy(&adev->dm.audio_lock);
1954 	mutex_destroy(&adev->dm.dc_lock);
1955 	mutex_destroy(&adev->dm.dpia_aux_lock);
1956 }
1957 
1958 static int load_dmcu_fw(struct amdgpu_device *adev)
1959 {
1960 	const char *fw_name_dmcu = NULL;
1961 	int r;
1962 	const struct dmcu_firmware_header_v1_0 *hdr;
1963 
1964 	switch (adev->asic_type) {
1965 #if defined(CONFIG_DRM_AMD_DC_SI)
1966 	case CHIP_TAHITI:
1967 	case CHIP_PITCAIRN:
1968 	case CHIP_VERDE:
1969 	case CHIP_OLAND:
1970 #endif
1971 	case CHIP_BONAIRE:
1972 	case CHIP_HAWAII:
1973 	case CHIP_KAVERI:
1974 	case CHIP_KABINI:
1975 	case CHIP_MULLINS:
1976 	case CHIP_TONGA:
1977 	case CHIP_FIJI:
1978 	case CHIP_CARRIZO:
1979 	case CHIP_STONEY:
1980 	case CHIP_POLARIS11:
1981 	case CHIP_POLARIS10:
1982 	case CHIP_POLARIS12:
1983 	case CHIP_VEGAM:
1984 	case CHIP_VEGA10:
1985 	case CHIP_VEGA12:
1986 	case CHIP_VEGA20:
1987 		return 0;
1988 	case CHIP_NAVI12:
1989 		fw_name_dmcu = FIRMWARE_NAVI12_DMCU;
1990 		break;
1991 	case CHIP_RAVEN:
1992 		if (ASICREV_IS_PICASSO(adev->external_rev_id))
1993 			fw_name_dmcu = FIRMWARE_RAVEN_DMCU;
1994 		else if (ASICREV_IS_RAVEN2(adev->external_rev_id))
1995 			fw_name_dmcu = FIRMWARE_RAVEN_DMCU;
1996 		else
1997 			return 0;
1998 		break;
1999 	default:
2000 		switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
2001 		case IP_VERSION(2, 0, 2):
2002 		case IP_VERSION(2, 0, 3):
2003 		case IP_VERSION(2, 0, 0):
2004 		case IP_VERSION(2, 1, 0):
2005 		case IP_VERSION(3, 0, 0):
2006 		case IP_VERSION(3, 0, 2):
2007 		case IP_VERSION(3, 0, 3):
2008 		case IP_VERSION(3, 0, 1):
2009 		case IP_VERSION(3, 1, 2):
2010 		case IP_VERSION(3, 1, 3):
2011 		case IP_VERSION(3, 1, 4):
2012 		case IP_VERSION(3, 1, 5):
2013 		case IP_VERSION(3, 1, 6):
2014 		case IP_VERSION(3, 2, 0):
2015 		case IP_VERSION(3, 2, 1):
2016 		case IP_VERSION(3, 5, 0):
2017 			return 0;
2018 		default:
2019 			break;
2020 		}
2021 		DRM_ERROR("Unsupported ASIC type: 0x%X\n", adev->asic_type);
2022 		return -EINVAL;
2023 	}
2024 
2025 	if (adev->firmware.load_type != AMDGPU_FW_LOAD_PSP) {
2026 		DRM_DEBUG_KMS("dm: DMCU firmware not supported on direct or SMU loading\n");
2027 		return 0;
2028 	}
2029 
2030 	r = amdgpu_ucode_request(adev, &adev->dm.fw_dmcu, fw_name_dmcu);
2031 	if (r == -ENODEV) {
2032 		/* DMCU firmware is not necessary, so don't raise a fuss if it's missing */
2033 		DRM_DEBUG_KMS("dm: DMCU firmware not found\n");
2034 		adev->dm.fw_dmcu = NULL;
2035 		return 0;
2036 	}
2037 	if (r) {
2038 		dev_err(adev->dev, "amdgpu_dm: Can't validate firmware \"%s\"\n",
2039 			fw_name_dmcu);
2040 		amdgpu_ucode_release(&adev->dm.fw_dmcu);
2041 		return r;
2042 	}
2043 
2044 	hdr = (const struct dmcu_firmware_header_v1_0 *)adev->dm.fw_dmcu->data;
2045 	adev->firmware.ucode[AMDGPU_UCODE_ID_DMCU_ERAM].ucode_id = AMDGPU_UCODE_ID_DMCU_ERAM;
2046 	adev->firmware.ucode[AMDGPU_UCODE_ID_DMCU_ERAM].fw = adev->dm.fw_dmcu;
2047 	adev->firmware.fw_size +=
2048 		ALIGN(le32_to_cpu(hdr->header.ucode_size_bytes) - le32_to_cpu(hdr->intv_size_bytes), PAGE_SIZE);
2049 
2050 	adev->firmware.ucode[AMDGPU_UCODE_ID_DMCU_INTV].ucode_id = AMDGPU_UCODE_ID_DMCU_INTV;
2051 	adev->firmware.ucode[AMDGPU_UCODE_ID_DMCU_INTV].fw = adev->dm.fw_dmcu;
2052 	adev->firmware.fw_size +=
2053 		ALIGN(le32_to_cpu(hdr->intv_size_bytes), PAGE_SIZE);
2054 
2055 	adev->dm.dmcu_fw_version = le32_to_cpu(hdr->header.ucode_version);
2056 
2057 	DRM_DEBUG_KMS("PSP loading DMCU firmware\n");
2058 
2059 	return 0;
2060 }
2061 
2062 static uint32_t amdgpu_dm_dmub_reg_read(void *ctx, uint32_t address)
2063 {
2064 	struct amdgpu_device *adev = ctx;
2065 
2066 	return dm_read_reg(adev->dm.dc->ctx, address);
2067 }
2068 
2069 static void amdgpu_dm_dmub_reg_write(void *ctx, uint32_t address,
2070 				     uint32_t value)
2071 {
2072 	struct amdgpu_device *adev = ctx;
2073 
2074 	return dm_write_reg(adev->dm.dc->ctx, address, value);
2075 }
2076 
2077 static int dm_dmub_sw_init(struct amdgpu_device *adev)
2078 {
2079 	struct dmub_srv_create_params create_params;
2080 	struct dmub_srv_region_params region_params;
2081 	struct dmub_srv_region_info region_info;
2082 	struct dmub_srv_fb_params fb_params;
2083 	struct dmub_srv_fb_info *fb_info;
2084 	struct dmub_srv *dmub_srv;
2085 	const struct dmcub_firmware_header_v1_0 *hdr;
2086 	enum dmub_asic dmub_asic;
2087 	enum dmub_status status;
2088 	int r;
2089 
2090 	switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
2091 	case IP_VERSION(2, 1, 0):
2092 		dmub_asic = DMUB_ASIC_DCN21;
2093 		break;
2094 	case IP_VERSION(3, 0, 0):
2095 		dmub_asic = DMUB_ASIC_DCN30;
2096 		break;
2097 	case IP_VERSION(3, 0, 1):
2098 		dmub_asic = DMUB_ASIC_DCN301;
2099 		break;
2100 	case IP_VERSION(3, 0, 2):
2101 		dmub_asic = DMUB_ASIC_DCN302;
2102 		break;
2103 	case IP_VERSION(3, 0, 3):
2104 		dmub_asic = DMUB_ASIC_DCN303;
2105 		break;
2106 	case IP_VERSION(3, 1, 2):
2107 	case IP_VERSION(3, 1, 3):
2108 		dmub_asic = (adev->external_rev_id == YELLOW_CARP_B0) ? DMUB_ASIC_DCN31B : DMUB_ASIC_DCN31;
2109 		break;
2110 	case IP_VERSION(3, 1, 4):
2111 		dmub_asic = DMUB_ASIC_DCN314;
2112 		break;
2113 	case IP_VERSION(3, 1, 5):
2114 		dmub_asic = DMUB_ASIC_DCN315;
2115 		break;
2116 	case IP_VERSION(3, 1, 6):
2117 		dmub_asic = DMUB_ASIC_DCN316;
2118 		break;
2119 	case IP_VERSION(3, 2, 0):
2120 		dmub_asic = DMUB_ASIC_DCN32;
2121 		break;
2122 	case IP_VERSION(3, 2, 1):
2123 		dmub_asic = DMUB_ASIC_DCN321;
2124 		break;
2125 	case IP_VERSION(3, 5, 0):
2126 		dmub_asic = DMUB_ASIC_DCN35;
2127 		break;
2128 	default:
2129 		/* ASIC doesn't support DMUB. */
2130 		return 0;
2131 	}
2132 
2133 	hdr = (const struct dmcub_firmware_header_v1_0 *)adev->dm.dmub_fw->data;
2134 	adev->dm.dmcub_fw_version = le32_to_cpu(hdr->header.ucode_version);
2135 
2136 	if (adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) {
2137 		adev->firmware.ucode[AMDGPU_UCODE_ID_DMCUB].ucode_id =
2138 			AMDGPU_UCODE_ID_DMCUB;
2139 		adev->firmware.ucode[AMDGPU_UCODE_ID_DMCUB].fw =
2140 			adev->dm.dmub_fw;
2141 		adev->firmware.fw_size +=
2142 			ALIGN(le32_to_cpu(hdr->inst_const_bytes), PAGE_SIZE);
2143 
2144 		DRM_INFO("Loading DMUB firmware via PSP: version=0x%08X\n",
2145 			 adev->dm.dmcub_fw_version);
2146 	}
2147 
2148 
2149 	adev->dm.dmub_srv = kzalloc(sizeof(*adev->dm.dmub_srv), GFP_KERNEL);
2150 	dmub_srv = adev->dm.dmub_srv;
2151 
2152 	if (!dmub_srv) {
2153 		DRM_ERROR("Failed to allocate DMUB service!\n");
2154 		return -ENOMEM;
2155 	}
2156 
2157 	memset(&create_params, 0, sizeof(create_params));
2158 	create_params.user_ctx = adev;
2159 	create_params.funcs.reg_read = amdgpu_dm_dmub_reg_read;
2160 	create_params.funcs.reg_write = amdgpu_dm_dmub_reg_write;
2161 	create_params.asic = dmub_asic;
2162 
2163 	/* Create the DMUB service. */
2164 	status = dmub_srv_create(dmub_srv, &create_params);
2165 	if (status != DMUB_STATUS_OK) {
2166 		DRM_ERROR("Error creating DMUB service: %d\n", status);
2167 		return -EINVAL;
2168 	}
2169 
2170 	/* Calculate the size of all the regions for the DMUB service. */
2171 	memset(&region_params, 0, sizeof(region_params));
2172 
2173 	region_params.inst_const_size = le32_to_cpu(hdr->inst_const_bytes) -
2174 					PSP_HEADER_BYTES - PSP_FOOTER_BYTES;
2175 	region_params.bss_data_size = le32_to_cpu(hdr->bss_data_bytes);
2176 	region_params.vbios_size = adev->bios_size;
2177 	region_params.fw_bss_data = region_params.bss_data_size ?
2178 		adev->dm.dmub_fw->data +
2179 		le32_to_cpu(hdr->header.ucode_array_offset_bytes) +
2180 		le32_to_cpu(hdr->inst_const_bytes) : NULL;
2181 	region_params.fw_inst_const =
2182 		adev->dm.dmub_fw->data +
2183 		le32_to_cpu(hdr->header.ucode_array_offset_bytes) +
2184 		PSP_HEADER_BYTES;
2185 
2186 	status = dmub_srv_calc_region_info(dmub_srv, &region_params,
2187 					   &region_info);
2188 
2189 	if (status != DMUB_STATUS_OK) {
2190 		DRM_ERROR("Error calculating DMUB region info: %d\n", status);
2191 		return -EINVAL;
2192 	}
2193 
2194 	/*
2195 	 * Allocate a framebuffer based on the total size of all the regions.
2196 	 * TODO: Move this into GART.
2197 	 */
2198 	r = amdgpu_bo_create_kernel(adev, region_info.fb_size, PAGE_SIZE,
2199 				    AMDGPU_GEM_DOMAIN_VRAM |
2200 				    AMDGPU_GEM_DOMAIN_GTT,
2201 				    &adev->dm.dmub_bo,
2202 				    &adev->dm.dmub_bo_gpu_addr,
2203 				    &adev->dm.dmub_bo_cpu_addr);
2204 	if (r)
2205 		return r;
2206 
2207 	/* Rebase the regions on the framebuffer address. */
2208 	memset(&fb_params, 0, sizeof(fb_params));
2209 	fb_params.cpu_addr = adev->dm.dmub_bo_cpu_addr;
2210 	fb_params.gpu_addr = adev->dm.dmub_bo_gpu_addr;
2211 	fb_params.region_info = &region_info;
2212 
2213 	adev->dm.dmub_fb_info =
2214 		kzalloc(sizeof(*adev->dm.dmub_fb_info), GFP_KERNEL);
2215 	fb_info = adev->dm.dmub_fb_info;
2216 
2217 	if (!fb_info) {
2218 		DRM_ERROR(
2219 			"Failed to allocate framebuffer info for DMUB service!\n");
2220 		return -ENOMEM;
2221 	}
2222 
2223 	status = dmub_srv_calc_fb_info(dmub_srv, &fb_params, fb_info);
2224 	if (status != DMUB_STATUS_OK) {
2225 		DRM_ERROR("Error calculating DMUB FB info: %d\n", status);
2226 		return -EINVAL;
2227 	}
2228 
2229 	return 0;
2230 }
2231 
2232 static int dm_sw_init(void *handle)
2233 {
2234 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
2235 	int r;
2236 
2237 	r = dm_dmub_sw_init(adev);
2238 	if (r)
2239 		return r;
2240 
2241 	return load_dmcu_fw(adev);
2242 }
2243 
2244 static int dm_sw_fini(void *handle)
2245 {
2246 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
2247 
2248 	kfree(adev->dm.dmub_fb_info);
2249 	adev->dm.dmub_fb_info = NULL;
2250 
2251 	if (adev->dm.dmub_srv) {
2252 		dmub_srv_destroy(adev->dm.dmub_srv);
2253 		adev->dm.dmub_srv = NULL;
2254 	}
2255 
2256 	amdgpu_ucode_release(&adev->dm.dmub_fw);
2257 	amdgpu_ucode_release(&adev->dm.fw_dmcu);
2258 
2259 	return 0;
2260 }
2261 
2262 static int detect_mst_link_for_all_connectors(struct drm_device *dev)
2263 {
2264 	struct amdgpu_dm_connector *aconnector;
2265 	struct drm_connector *connector;
2266 	struct drm_connector_list_iter iter;
2267 	int ret = 0;
2268 
2269 	drm_connector_list_iter_begin(dev, &iter);
2270 	drm_for_each_connector_iter(connector, &iter) {
2271 		aconnector = to_amdgpu_dm_connector(connector);
2272 		if (aconnector->dc_link->type == dc_connection_mst_branch &&
2273 		    aconnector->mst_mgr.aux) {
2274 			DRM_DEBUG_DRIVER("DM_MST: starting TM on aconnector: %p [id: %d]\n",
2275 					 aconnector,
2276 					 aconnector->base.base.id);
2277 
2278 			ret = drm_dp_mst_topology_mgr_set_mst(&aconnector->mst_mgr, true);
2279 			if (ret < 0) {
2280 				DRM_ERROR("DM_MST: Failed to start MST\n");
2281 				aconnector->dc_link->type =
2282 					dc_connection_single;
2283 				ret = dm_helpers_dp_mst_stop_top_mgr(aconnector->dc_link->ctx,
2284 								     aconnector->dc_link);
2285 				break;
2286 			}
2287 		}
2288 	}
2289 	drm_connector_list_iter_end(&iter);
2290 
2291 	return ret;
2292 }
2293 
2294 static int dm_late_init(void *handle)
2295 {
2296 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
2297 
2298 	struct dmcu_iram_parameters params;
2299 	unsigned int linear_lut[16];
2300 	int i;
2301 	struct dmcu *dmcu = NULL;
2302 
2303 	dmcu = adev->dm.dc->res_pool->dmcu;
2304 
2305 	for (i = 0; i < 16; i++)
2306 		linear_lut[i] = 0xFFFF * i / 15;
2307 
2308 	params.set = 0;
2309 	params.backlight_ramping_override = false;
2310 	params.backlight_ramping_start = 0xCCCC;
2311 	params.backlight_ramping_reduction = 0xCCCCCCCC;
2312 	params.backlight_lut_array_size = 16;
2313 	params.backlight_lut_array = linear_lut;
2314 
2315 	/* Min backlight level after ABM reduction,  Don't allow below 1%
2316 	 * 0xFFFF x 0.01 = 0x28F
2317 	 */
2318 	params.min_abm_backlight = 0x28F;
2319 	/* In the case where abm is implemented on dmcub,
2320 	 * dmcu object will be null.
2321 	 * ABM 2.4 and up are implemented on dmcub.
2322 	 */
2323 	if (dmcu) {
2324 		if (!dmcu_load_iram(dmcu, params))
2325 			return -EINVAL;
2326 	} else if (adev->dm.dc->ctx->dmub_srv) {
2327 		struct dc_link *edp_links[MAX_NUM_EDP];
2328 		int edp_num;
2329 
2330 		dc_get_edp_links(adev->dm.dc, edp_links, &edp_num);
2331 		for (i = 0; i < edp_num; i++) {
2332 			if (!dmub_init_abm_config(adev->dm.dc->res_pool, params, i))
2333 				return -EINVAL;
2334 		}
2335 	}
2336 
2337 	return detect_mst_link_for_all_connectors(adev_to_drm(adev));
2338 }
2339 
2340 static void resume_mst_branch_status(struct drm_dp_mst_topology_mgr *mgr)
2341 {
2342 	int ret;
2343 	u8 guid[16];
2344 	u64 tmp64;
2345 
2346 	mutex_lock(&mgr->lock);
2347 	if (!mgr->mst_primary)
2348 		goto out_fail;
2349 
2350 	if (drm_dp_read_dpcd_caps(mgr->aux, mgr->dpcd) < 0) {
2351 		drm_dbg_kms(mgr->dev, "dpcd read failed - undocked during suspend?\n");
2352 		goto out_fail;
2353 	}
2354 
2355 	ret = drm_dp_dpcd_writeb(mgr->aux, DP_MSTM_CTRL,
2356 				 DP_MST_EN |
2357 				 DP_UP_REQ_EN |
2358 				 DP_UPSTREAM_IS_SRC);
2359 	if (ret < 0) {
2360 		drm_dbg_kms(mgr->dev, "mst write failed - undocked during suspend?\n");
2361 		goto out_fail;
2362 	}
2363 
2364 	/* Some hubs forget their guids after they resume */
2365 	ret = drm_dp_dpcd_read(mgr->aux, DP_GUID, guid, 16);
2366 	if (ret != 16) {
2367 		drm_dbg_kms(mgr->dev, "dpcd read failed - undocked during suspend?\n");
2368 		goto out_fail;
2369 	}
2370 
2371 	if (memchr_inv(guid, 0, 16) == NULL) {
2372 		tmp64 = get_jiffies_64();
2373 		memcpy(&guid[0], &tmp64, sizeof(u64));
2374 		memcpy(&guid[8], &tmp64, sizeof(u64));
2375 
2376 		ret = drm_dp_dpcd_write(mgr->aux, DP_GUID, guid, 16);
2377 
2378 		if (ret != 16) {
2379 			drm_dbg_kms(mgr->dev, "check mstb guid failed - undocked during suspend?\n");
2380 			goto out_fail;
2381 		}
2382 	}
2383 
2384 	memcpy(mgr->mst_primary->guid, guid, 16);
2385 
2386 out_fail:
2387 	mutex_unlock(&mgr->lock);
2388 }
2389 
2390 static void s3_handle_mst(struct drm_device *dev, bool suspend)
2391 {
2392 	struct amdgpu_dm_connector *aconnector;
2393 	struct drm_connector *connector;
2394 	struct drm_connector_list_iter iter;
2395 	struct drm_dp_mst_topology_mgr *mgr;
2396 
2397 	drm_connector_list_iter_begin(dev, &iter);
2398 	drm_for_each_connector_iter(connector, &iter) {
2399 		aconnector = to_amdgpu_dm_connector(connector);
2400 		if (aconnector->dc_link->type != dc_connection_mst_branch ||
2401 		    aconnector->mst_root)
2402 			continue;
2403 
2404 		mgr = &aconnector->mst_mgr;
2405 
2406 		if (suspend) {
2407 			drm_dp_mst_topology_mgr_suspend(mgr);
2408 		} else {
2409 			/* if extended timeout is supported in hardware,
2410 			 * default to LTTPR timeout (3.2ms) first as a W/A for DP link layer
2411 			 * CTS 4.2.1.1 regression introduced by CTS specs requirement update.
2412 			 */
2413 			try_to_configure_aux_timeout(aconnector->dc_link->ddc, LINK_AUX_DEFAULT_LTTPR_TIMEOUT_PERIOD);
2414 			if (!dp_is_lttpr_present(aconnector->dc_link))
2415 				try_to_configure_aux_timeout(aconnector->dc_link->ddc, LINK_AUX_DEFAULT_TIMEOUT_PERIOD);
2416 
2417 			/* TODO: move resume_mst_branch_status() into drm mst resume again
2418 			 * once topology probing work is pulled out from mst resume into mst
2419 			 * resume 2nd step. mst resume 2nd step should be called after old
2420 			 * state getting restored (i.e. drm_atomic_helper_resume()).
2421 			 */
2422 			resume_mst_branch_status(mgr);
2423 		}
2424 	}
2425 	drm_connector_list_iter_end(&iter);
2426 }
2427 
2428 static int amdgpu_dm_smu_write_watermarks_table(struct amdgpu_device *adev)
2429 {
2430 	int ret = 0;
2431 
2432 	/* This interface is for dGPU Navi1x.Linux dc-pplib interface depends
2433 	 * on window driver dc implementation.
2434 	 * For Navi1x, clock settings of dcn watermarks are fixed. the settings
2435 	 * should be passed to smu during boot up and resume from s3.
2436 	 * boot up: dc calculate dcn watermark clock settings within dc_create,
2437 	 * dcn20_resource_construct
2438 	 * then call pplib functions below to pass the settings to smu:
2439 	 * smu_set_watermarks_for_clock_ranges
2440 	 * smu_set_watermarks_table
2441 	 * navi10_set_watermarks_table
2442 	 * smu_write_watermarks_table
2443 	 *
2444 	 * For Renoir, clock settings of dcn watermark are also fixed values.
2445 	 * dc has implemented different flow for window driver:
2446 	 * dc_hardware_init / dc_set_power_state
2447 	 * dcn10_init_hw
2448 	 * notify_wm_ranges
2449 	 * set_wm_ranges
2450 	 * -- Linux
2451 	 * smu_set_watermarks_for_clock_ranges
2452 	 * renoir_set_watermarks_table
2453 	 * smu_write_watermarks_table
2454 	 *
2455 	 * For Linux,
2456 	 * dc_hardware_init -> amdgpu_dm_init
2457 	 * dc_set_power_state --> dm_resume
2458 	 *
2459 	 * therefore, this function apply to navi10/12/14 but not Renoir
2460 	 * *
2461 	 */
2462 	switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
2463 	case IP_VERSION(2, 0, 2):
2464 	case IP_VERSION(2, 0, 0):
2465 		break;
2466 	default:
2467 		return 0;
2468 	}
2469 
2470 	ret = amdgpu_dpm_write_watermarks_table(adev);
2471 	if (ret) {
2472 		DRM_ERROR("Failed to update WMTABLE!\n");
2473 		return ret;
2474 	}
2475 
2476 	return 0;
2477 }
2478 
2479 /**
2480  * dm_hw_init() - Initialize DC device
2481  * @handle: The base driver device containing the amdgpu_dm device.
2482  *
2483  * Initialize the &struct amdgpu_display_manager device. This involves calling
2484  * the initializers of each DM component, then populating the struct with them.
2485  *
2486  * Although the function implies hardware initialization, both hardware and
2487  * software are initialized here. Splitting them out to their relevant init
2488  * hooks is a future TODO item.
2489  *
2490  * Some notable things that are initialized here:
2491  *
2492  * - Display Core, both software and hardware
2493  * - DC modules that we need (freesync and color management)
2494  * - DRM software states
2495  * - Interrupt sources and handlers
2496  * - Vblank support
2497  * - Debug FS entries, if enabled
2498  */
2499 static int dm_hw_init(void *handle)
2500 {
2501 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
2502 	/* Create DAL display manager */
2503 	amdgpu_dm_init(adev);
2504 	amdgpu_dm_hpd_init(adev);
2505 
2506 	return 0;
2507 }
2508 
2509 /**
2510  * dm_hw_fini() - Teardown DC device
2511  * @handle: The base driver device containing the amdgpu_dm device.
2512  *
2513  * Teardown components within &struct amdgpu_display_manager that require
2514  * cleanup. This involves cleaning up the DRM device, DC, and any modules that
2515  * were loaded. Also flush IRQ workqueues and disable them.
2516  */
2517 static int dm_hw_fini(void *handle)
2518 {
2519 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
2520 
2521 	amdgpu_dm_hpd_fini(adev);
2522 
2523 	amdgpu_dm_irq_fini(adev);
2524 	amdgpu_dm_fini(adev);
2525 	return 0;
2526 }
2527 
2528 
2529 static void dm_gpureset_toggle_interrupts(struct amdgpu_device *adev,
2530 				 struct dc_state *state, bool enable)
2531 {
2532 	enum dc_irq_source irq_source;
2533 	struct amdgpu_crtc *acrtc;
2534 	int rc = -EBUSY;
2535 	int i = 0;
2536 
2537 	for (i = 0; i < state->stream_count; i++) {
2538 		acrtc = get_crtc_by_otg_inst(
2539 				adev, state->stream_status[i].primary_otg_inst);
2540 
2541 		if (acrtc && state->stream_status[i].plane_count != 0) {
2542 			irq_source = IRQ_TYPE_PFLIP + acrtc->otg_inst;
2543 			rc = dc_interrupt_set(adev->dm.dc, irq_source, enable) ? 0 : -EBUSY;
2544 			if (rc)
2545 				DRM_WARN("Failed to %s pflip interrupts\n",
2546 					 enable ? "enable" : "disable");
2547 
2548 			if (enable) {
2549 				if (amdgpu_dm_crtc_vrr_active(to_dm_crtc_state(acrtc->base.state)))
2550 					rc = amdgpu_dm_crtc_set_vupdate_irq(&acrtc->base, true);
2551 			} else
2552 				rc = amdgpu_dm_crtc_set_vupdate_irq(&acrtc->base, false);
2553 
2554 			if (rc)
2555 				DRM_WARN("Failed to %sable vupdate interrupt\n", enable ? "en" : "dis");
2556 
2557 			irq_source = IRQ_TYPE_VBLANK + acrtc->otg_inst;
2558 			/* During gpu-reset we disable and then enable vblank irq, so
2559 			 * don't use amdgpu_irq_get/put() to avoid refcount change.
2560 			 */
2561 			if (!dc_interrupt_set(adev->dm.dc, irq_source, enable))
2562 				DRM_WARN("Failed to %sable vblank interrupt\n", enable ? "en" : "dis");
2563 		}
2564 	}
2565 
2566 }
2567 
2568 static enum dc_status amdgpu_dm_commit_zero_streams(struct dc *dc)
2569 {
2570 	struct dc_state *context = NULL;
2571 	enum dc_status res = DC_ERROR_UNEXPECTED;
2572 	int i;
2573 	struct dc_stream_state *del_streams[MAX_PIPES];
2574 	int del_streams_count = 0;
2575 
2576 	memset(del_streams, 0, sizeof(del_streams));
2577 
2578 	context = dc_create_state(dc);
2579 	if (context == NULL)
2580 		goto context_alloc_fail;
2581 
2582 	dc_resource_state_copy_construct_current(dc, context);
2583 
2584 	/* First remove from context all streams */
2585 	for (i = 0; i < context->stream_count; i++) {
2586 		struct dc_stream_state *stream = context->streams[i];
2587 
2588 		del_streams[del_streams_count++] = stream;
2589 	}
2590 
2591 	/* Remove all planes for removed streams and then remove the streams */
2592 	for (i = 0; i < del_streams_count; i++) {
2593 		if (!dc_rem_all_planes_for_stream(dc, del_streams[i], context)) {
2594 			res = DC_FAIL_DETACH_SURFACES;
2595 			goto fail;
2596 		}
2597 
2598 		res = dc_remove_stream_from_ctx(dc, context, del_streams[i]);
2599 		if (res != DC_OK)
2600 			goto fail;
2601 	}
2602 
2603 	res = dc_commit_streams(dc, context->streams, context->stream_count);
2604 
2605 fail:
2606 	dc_release_state(context);
2607 
2608 context_alloc_fail:
2609 	return res;
2610 }
2611 
2612 static void hpd_rx_irq_work_suspend(struct amdgpu_display_manager *dm)
2613 {
2614 	int i;
2615 
2616 	if (dm->hpd_rx_offload_wq) {
2617 		for (i = 0; i < dm->dc->caps.max_links; i++)
2618 			flush_workqueue(dm->hpd_rx_offload_wq[i].wq);
2619 	}
2620 }
2621 
2622 static int dm_suspend(void *handle)
2623 {
2624 	struct amdgpu_device *adev = handle;
2625 	struct amdgpu_display_manager *dm = &adev->dm;
2626 	int ret = 0;
2627 
2628 	if (amdgpu_in_reset(adev)) {
2629 		mutex_lock(&dm->dc_lock);
2630 
2631 		dc_allow_idle_optimizations(adev->dm.dc, false);
2632 
2633 		dm->cached_dc_state = dc_copy_state(dm->dc->current_state);
2634 
2635 		dm_gpureset_toggle_interrupts(adev, dm->cached_dc_state, false);
2636 
2637 		amdgpu_dm_commit_zero_streams(dm->dc);
2638 
2639 		amdgpu_dm_irq_suspend(adev);
2640 
2641 		hpd_rx_irq_work_suspend(dm);
2642 
2643 		return ret;
2644 	}
2645 
2646 	WARN_ON(adev->dm.cached_state);
2647 	adev->dm.cached_state = drm_atomic_helper_suspend(adev_to_drm(adev));
2648 	if (IS_ERR(adev->dm.cached_state))
2649 		return PTR_ERR(adev->dm.cached_state);
2650 
2651 	s3_handle_mst(adev_to_drm(adev), true);
2652 
2653 	amdgpu_dm_irq_suspend(adev);
2654 
2655 	hpd_rx_irq_work_suspend(dm);
2656 
2657 	dc_set_power_state(dm->dc, DC_ACPI_CM_POWER_STATE_D3);
2658 
2659 	return 0;
2660 }
2661 
2662 struct amdgpu_dm_connector *
2663 amdgpu_dm_find_first_crtc_matching_connector(struct drm_atomic_state *state,
2664 					     struct drm_crtc *crtc)
2665 {
2666 	u32 i;
2667 	struct drm_connector_state *new_con_state;
2668 	struct drm_connector *connector;
2669 	struct drm_crtc *crtc_from_state;
2670 
2671 	for_each_new_connector_in_state(state, connector, new_con_state, i) {
2672 		crtc_from_state = new_con_state->crtc;
2673 
2674 		if (crtc_from_state == crtc)
2675 			return to_amdgpu_dm_connector(connector);
2676 	}
2677 
2678 	return NULL;
2679 }
2680 
2681 static void emulated_link_detect(struct dc_link *link)
2682 {
2683 	struct dc_sink_init_data sink_init_data = { 0 };
2684 	struct display_sink_capability sink_caps = { 0 };
2685 	enum dc_edid_status edid_status;
2686 	struct dc_context *dc_ctx = link->ctx;
2687 	struct drm_device *dev = adev_to_drm(dc_ctx->driver_context);
2688 	struct dc_sink *sink = NULL;
2689 	struct dc_sink *prev_sink = NULL;
2690 
2691 	link->type = dc_connection_none;
2692 	prev_sink = link->local_sink;
2693 
2694 	if (prev_sink)
2695 		dc_sink_release(prev_sink);
2696 
2697 	switch (link->connector_signal) {
2698 	case SIGNAL_TYPE_HDMI_TYPE_A: {
2699 		sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
2700 		sink_caps.signal = SIGNAL_TYPE_HDMI_TYPE_A;
2701 		break;
2702 	}
2703 
2704 	case SIGNAL_TYPE_DVI_SINGLE_LINK: {
2705 		sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
2706 		sink_caps.signal = SIGNAL_TYPE_DVI_SINGLE_LINK;
2707 		break;
2708 	}
2709 
2710 	case SIGNAL_TYPE_DVI_DUAL_LINK: {
2711 		sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
2712 		sink_caps.signal = SIGNAL_TYPE_DVI_DUAL_LINK;
2713 		break;
2714 	}
2715 
2716 	case SIGNAL_TYPE_LVDS: {
2717 		sink_caps.transaction_type = DDC_TRANSACTION_TYPE_I2C;
2718 		sink_caps.signal = SIGNAL_TYPE_LVDS;
2719 		break;
2720 	}
2721 
2722 	case SIGNAL_TYPE_EDP: {
2723 		sink_caps.transaction_type =
2724 			DDC_TRANSACTION_TYPE_I2C_OVER_AUX;
2725 		sink_caps.signal = SIGNAL_TYPE_EDP;
2726 		break;
2727 	}
2728 
2729 	case SIGNAL_TYPE_DISPLAY_PORT: {
2730 		sink_caps.transaction_type =
2731 			DDC_TRANSACTION_TYPE_I2C_OVER_AUX;
2732 		sink_caps.signal = SIGNAL_TYPE_VIRTUAL;
2733 		break;
2734 	}
2735 
2736 	default:
2737 		drm_err(dev, "Invalid connector type! signal:%d\n",
2738 			link->connector_signal);
2739 		return;
2740 	}
2741 
2742 	sink_init_data.link = link;
2743 	sink_init_data.sink_signal = sink_caps.signal;
2744 
2745 	sink = dc_sink_create(&sink_init_data);
2746 	if (!sink) {
2747 		drm_err(dev, "Failed to create sink!\n");
2748 		return;
2749 	}
2750 
2751 	/* dc_sink_create returns a new reference */
2752 	link->local_sink = sink;
2753 
2754 	edid_status = dm_helpers_read_local_edid(
2755 			link->ctx,
2756 			link,
2757 			sink);
2758 
2759 	if (edid_status != EDID_OK)
2760 		drm_err(dev, "Failed to read EDID\n");
2761 
2762 }
2763 
2764 static void dm_gpureset_commit_state(struct dc_state *dc_state,
2765 				     struct amdgpu_display_manager *dm)
2766 {
2767 	struct {
2768 		struct dc_surface_update surface_updates[MAX_SURFACES];
2769 		struct dc_plane_info plane_infos[MAX_SURFACES];
2770 		struct dc_scaling_info scaling_infos[MAX_SURFACES];
2771 		struct dc_flip_addrs flip_addrs[MAX_SURFACES];
2772 		struct dc_stream_update stream_update;
2773 	} *bundle;
2774 	int k, m;
2775 
2776 	bundle = kzalloc(sizeof(*bundle), GFP_KERNEL);
2777 
2778 	if (!bundle) {
2779 		drm_err(dm->ddev, "Failed to allocate update bundle\n");
2780 		goto cleanup;
2781 	}
2782 
2783 	for (k = 0; k < dc_state->stream_count; k++) {
2784 		bundle->stream_update.stream = dc_state->streams[k];
2785 
2786 		for (m = 0; m < dc_state->stream_status->plane_count; m++) {
2787 			bundle->surface_updates[m].surface =
2788 				dc_state->stream_status->plane_states[m];
2789 			bundle->surface_updates[m].surface->force_full_update =
2790 				true;
2791 		}
2792 
2793 		update_planes_and_stream_adapter(dm->dc,
2794 					 UPDATE_TYPE_FULL,
2795 					 dc_state->stream_status->plane_count,
2796 					 dc_state->streams[k],
2797 					 &bundle->stream_update,
2798 					 bundle->surface_updates);
2799 	}
2800 
2801 cleanup:
2802 	kfree(bundle);
2803 }
2804 
2805 static int dm_resume(void *handle)
2806 {
2807 	struct amdgpu_device *adev = handle;
2808 	struct drm_device *ddev = adev_to_drm(adev);
2809 	struct amdgpu_display_manager *dm = &adev->dm;
2810 	struct amdgpu_dm_connector *aconnector;
2811 	struct drm_connector *connector;
2812 	struct drm_connector_list_iter iter;
2813 	struct drm_crtc *crtc;
2814 	struct drm_crtc_state *new_crtc_state;
2815 	struct dm_crtc_state *dm_new_crtc_state;
2816 	struct drm_plane *plane;
2817 	struct drm_plane_state *new_plane_state;
2818 	struct dm_plane_state *dm_new_plane_state;
2819 	struct dm_atomic_state *dm_state = to_dm_atomic_state(dm->atomic_obj.state);
2820 	enum dc_connection_type new_connection_type = dc_connection_none;
2821 	struct dc_state *dc_state;
2822 	int i, r, j, ret;
2823 	bool need_hotplug = false;
2824 
2825 	if (dm->dc->caps.ips_support) {
2826 		dc_dmub_srv_exit_low_power_state(dm->dc);
2827 	}
2828 
2829 	if (amdgpu_in_reset(adev)) {
2830 		dc_state = dm->cached_dc_state;
2831 
2832 		/*
2833 		 * The dc->current_state is backed up into dm->cached_dc_state
2834 		 * before we commit 0 streams.
2835 		 *
2836 		 * DC will clear link encoder assignments on the real state
2837 		 * but the changes won't propagate over to the copy we made
2838 		 * before the 0 streams commit.
2839 		 *
2840 		 * DC expects that link encoder assignments are *not* valid
2841 		 * when committing a state, so as a workaround we can copy
2842 		 * off of the current state.
2843 		 *
2844 		 * We lose the previous assignments, but we had already
2845 		 * commit 0 streams anyway.
2846 		 */
2847 		link_enc_cfg_copy(adev->dm.dc->current_state, dc_state);
2848 
2849 		r = dm_dmub_hw_init(adev);
2850 		if (r)
2851 			DRM_ERROR("DMUB interface failed to initialize: status=%d\n", r);
2852 
2853 		dc_set_power_state(dm->dc, DC_ACPI_CM_POWER_STATE_D0);
2854 
2855 		dc_resume(dm->dc);
2856 
2857 		amdgpu_dm_irq_resume_early(adev);
2858 
2859 		for (i = 0; i < dc_state->stream_count; i++) {
2860 			dc_state->streams[i]->mode_changed = true;
2861 			for (j = 0; j < dc_state->stream_status[i].plane_count; j++) {
2862 				dc_state->stream_status[i].plane_states[j]->update_flags.raw
2863 					= 0xffffffff;
2864 			}
2865 		}
2866 
2867 		if (dc_is_dmub_outbox_supported(adev->dm.dc)) {
2868 			amdgpu_dm_outbox_init(adev);
2869 			dc_enable_dmub_outbox(adev->dm.dc);
2870 		}
2871 
2872 		WARN_ON(!dc_commit_streams(dm->dc, dc_state->streams, dc_state->stream_count));
2873 
2874 		dm_gpureset_commit_state(dm->cached_dc_state, dm);
2875 
2876 		dm_gpureset_toggle_interrupts(adev, dm->cached_dc_state, true);
2877 
2878 		dc_release_state(dm->cached_dc_state);
2879 		dm->cached_dc_state = NULL;
2880 
2881 		amdgpu_dm_irq_resume_late(adev);
2882 
2883 		mutex_unlock(&dm->dc_lock);
2884 
2885 		return 0;
2886 	}
2887 	/* Recreate dc_state - DC invalidates it when setting power state to S3. */
2888 	dc_release_state(dm_state->context);
2889 	dm_state->context = dc_create_state(dm->dc);
2890 	/* TODO: Remove dc_state->dccg, use dc->dccg directly. */
2891 	dc_resource_state_construct(dm->dc, dm_state->context);
2892 
2893 	/* Before powering on DC we need to re-initialize DMUB. */
2894 	dm_dmub_hw_resume(adev);
2895 
2896 	/* Re-enable outbox interrupts for DPIA. */
2897 	if (dc_is_dmub_outbox_supported(adev->dm.dc)) {
2898 		amdgpu_dm_outbox_init(adev);
2899 		dc_enable_dmub_outbox(adev->dm.dc);
2900 	}
2901 
2902 	/* power on hardware */
2903 	dc_set_power_state(dm->dc, DC_ACPI_CM_POWER_STATE_D0);
2904 
2905 	/* program HPD filter */
2906 	dc_resume(dm->dc);
2907 
2908 	/*
2909 	 * early enable HPD Rx IRQ, should be done before set mode as short
2910 	 * pulse interrupts are used for MST
2911 	 */
2912 	amdgpu_dm_irq_resume_early(adev);
2913 
2914 	/* On resume we need to rewrite the MSTM control bits to enable MST*/
2915 	s3_handle_mst(ddev, false);
2916 
2917 	/* Do detection*/
2918 	drm_connector_list_iter_begin(ddev, &iter);
2919 	drm_for_each_connector_iter(connector, &iter) {
2920 		aconnector = to_amdgpu_dm_connector(connector);
2921 
2922 		if (!aconnector->dc_link)
2923 			continue;
2924 
2925 		/*
2926 		 * this is the case when traversing through already created end sink
2927 		 * MST connectors, should be skipped
2928 		 */
2929 		if (aconnector && aconnector->mst_root)
2930 			continue;
2931 
2932 		mutex_lock(&aconnector->hpd_lock);
2933 		if (!dc_link_detect_connection_type(aconnector->dc_link, &new_connection_type))
2934 			DRM_ERROR("KMS: Failed to detect connector\n");
2935 
2936 		if (aconnector->base.force && new_connection_type == dc_connection_none) {
2937 			emulated_link_detect(aconnector->dc_link);
2938 		} else {
2939 			mutex_lock(&dm->dc_lock);
2940 			dc_link_detect(aconnector->dc_link, DETECT_REASON_HPD);
2941 			mutex_unlock(&dm->dc_lock);
2942 		}
2943 
2944 		if (aconnector->fake_enable && aconnector->dc_link->local_sink)
2945 			aconnector->fake_enable = false;
2946 
2947 		if (aconnector->dc_sink)
2948 			dc_sink_release(aconnector->dc_sink);
2949 		aconnector->dc_sink = NULL;
2950 		amdgpu_dm_update_connector_after_detect(aconnector);
2951 		mutex_unlock(&aconnector->hpd_lock);
2952 	}
2953 	drm_connector_list_iter_end(&iter);
2954 
2955 	/* Force mode set in atomic commit */
2956 	for_each_new_crtc_in_state(dm->cached_state, crtc, new_crtc_state, i)
2957 		new_crtc_state->active_changed = true;
2958 
2959 	/*
2960 	 * atomic_check is expected to create the dc states. We need to release
2961 	 * them here, since they were duplicated as part of the suspend
2962 	 * procedure.
2963 	 */
2964 	for_each_new_crtc_in_state(dm->cached_state, crtc, new_crtc_state, i) {
2965 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
2966 		if (dm_new_crtc_state->stream) {
2967 			WARN_ON(kref_read(&dm_new_crtc_state->stream->refcount) > 1);
2968 			dc_stream_release(dm_new_crtc_state->stream);
2969 			dm_new_crtc_state->stream = NULL;
2970 		}
2971 	}
2972 
2973 	for_each_new_plane_in_state(dm->cached_state, plane, new_plane_state, i) {
2974 		dm_new_plane_state = to_dm_plane_state(new_plane_state);
2975 		if (dm_new_plane_state->dc_state) {
2976 			WARN_ON(kref_read(&dm_new_plane_state->dc_state->refcount) > 1);
2977 			dc_plane_state_release(dm_new_plane_state->dc_state);
2978 			dm_new_plane_state->dc_state = NULL;
2979 		}
2980 	}
2981 
2982 	drm_atomic_helper_resume(ddev, dm->cached_state);
2983 
2984 	dm->cached_state = NULL;
2985 
2986 	/* Do mst topology probing after resuming cached state*/
2987 	drm_connector_list_iter_begin(ddev, &iter);
2988 	drm_for_each_connector_iter(connector, &iter) {
2989 		aconnector = to_amdgpu_dm_connector(connector);
2990 		if (aconnector->dc_link->type != dc_connection_mst_branch ||
2991 		    aconnector->mst_root)
2992 			continue;
2993 
2994 		ret = drm_dp_mst_topology_mgr_resume(&aconnector->mst_mgr, true);
2995 
2996 		if (ret < 0) {
2997 			dm_helpers_dp_mst_stop_top_mgr(aconnector->dc_link->ctx,
2998 					aconnector->dc_link);
2999 			need_hotplug = true;
3000 		}
3001 	}
3002 	drm_connector_list_iter_end(&iter);
3003 
3004 	if (need_hotplug)
3005 		drm_kms_helper_hotplug_event(ddev);
3006 
3007 	amdgpu_dm_irq_resume_late(adev);
3008 
3009 	amdgpu_dm_smu_write_watermarks_table(adev);
3010 
3011 	return 0;
3012 }
3013 
3014 /**
3015  * DOC: DM Lifecycle
3016  *
3017  * DM (and consequently DC) is registered in the amdgpu base driver as a IP
3018  * block. When CONFIG_DRM_AMD_DC is enabled, the DM device IP block is added to
3019  * the base driver's device list to be initialized and torn down accordingly.
3020  *
3021  * The functions to do so are provided as hooks in &struct amd_ip_funcs.
3022  */
3023 
3024 static const struct amd_ip_funcs amdgpu_dm_funcs = {
3025 	.name = "dm",
3026 	.early_init = dm_early_init,
3027 	.late_init = dm_late_init,
3028 	.sw_init = dm_sw_init,
3029 	.sw_fini = dm_sw_fini,
3030 	.early_fini = amdgpu_dm_early_fini,
3031 	.hw_init = dm_hw_init,
3032 	.hw_fini = dm_hw_fini,
3033 	.suspend = dm_suspend,
3034 	.resume = dm_resume,
3035 	.is_idle = dm_is_idle,
3036 	.wait_for_idle = dm_wait_for_idle,
3037 	.check_soft_reset = dm_check_soft_reset,
3038 	.soft_reset = dm_soft_reset,
3039 	.set_clockgating_state = dm_set_clockgating_state,
3040 	.set_powergating_state = dm_set_powergating_state,
3041 };
3042 
3043 const struct amdgpu_ip_block_version dm_ip_block = {
3044 	.type = AMD_IP_BLOCK_TYPE_DCE,
3045 	.major = 1,
3046 	.minor = 0,
3047 	.rev = 0,
3048 	.funcs = &amdgpu_dm_funcs,
3049 };
3050 
3051 
3052 /**
3053  * DOC: atomic
3054  *
3055  * *WIP*
3056  */
3057 
3058 static const struct drm_mode_config_funcs amdgpu_dm_mode_funcs = {
3059 	.fb_create = amdgpu_display_user_framebuffer_create,
3060 	.get_format_info = amdgpu_dm_plane_get_format_info,
3061 	.atomic_check = amdgpu_dm_atomic_check,
3062 	.atomic_commit = drm_atomic_helper_commit,
3063 };
3064 
3065 static struct drm_mode_config_helper_funcs amdgpu_dm_mode_config_helperfuncs = {
3066 	.atomic_commit_tail = amdgpu_dm_atomic_commit_tail,
3067 	.atomic_commit_setup = drm_dp_mst_atomic_setup_commit,
3068 };
3069 
3070 static void update_connector_ext_caps(struct amdgpu_dm_connector *aconnector)
3071 {
3072 	struct amdgpu_dm_backlight_caps *caps;
3073 	struct drm_connector *conn_base;
3074 	struct amdgpu_device *adev;
3075 	struct drm_luminance_range_info *luminance_range;
3076 
3077 	if (aconnector->bl_idx == -1 ||
3078 	    aconnector->dc_link->connector_signal != SIGNAL_TYPE_EDP)
3079 		return;
3080 
3081 	conn_base = &aconnector->base;
3082 	adev = drm_to_adev(conn_base->dev);
3083 
3084 	caps = &adev->dm.backlight_caps[aconnector->bl_idx];
3085 	caps->ext_caps = &aconnector->dc_link->dpcd_sink_ext_caps;
3086 	caps->aux_support = false;
3087 
3088 	if (caps->ext_caps->bits.oled == 1
3089 	    /*
3090 	     * ||
3091 	     * caps->ext_caps->bits.sdr_aux_backlight_control == 1 ||
3092 	     * caps->ext_caps->bits.hdr_aux_backlight_control == 1
3093 	     */)
3094 		caps->aux_support = true;
3095 
3096 	if (amdgpu_backlight == 0)
3097 		caps->aux_support = false;
3098 	else if (amdgpu_backlight == 1)
3099 		caps->aux_support = true;
3100 
3101 	luminance_range = &conn_base->display_info.luminance_range;
3102 
3103 	if (luminance_range->max_luminance) {
3104 		caps->aux_min_input_signal = luminance_range->min_luminance;
3105 		caps->aux_max_input_signal = luminance_range->max_luminance;
3106 	} else {
3107 		caps->aux_min_input_signal = 0;
3108 		caps->aux_max_input_signal = 512;
3109 	}
3110 }
3111 
3112 void amdgpu_dm_update_connector_after_detect(
3113 		struct amdgpu_dm_connector *aconnector)
3114 {
3115 	struct drm_connector *connector = &aconnector->base;
3116 	struct drm_device *dev = connector->dev;
3117 	struct dc_sink *sink;
3118 
3119 	/* MST handled by drm_mst framework */
3120 	if (aconnector->mst_mgr.mst_state == true)
3121 		return;
3122 
3123 	sink = aconnector->dc_link->local_sink;
3124 	if (sink)
3125 		dc_sink_retain(sink);
3126 
3127 	/*
3128 	 * Edid mgmt connector gets first update only in mode_valid hook and then
3129 	 * the connector sink is set to either fake or physical sink depends on link status.
3130 	 * Skip if already done during boot.
3131 	 */
3132 	if (aconnector->base.force != DRM_FORCE_UNSPECIFIED
3133 			&& aconnector->dc_em_sink) {
3134 
3135 		/*
3136 		 * For S3 resume with headless use eml_sink to fake stream
3137 		 * because on resume connector->sink is set to NULL
3138 		 */
3139 		mutex_lock(&dev->mode_config.mutex);
3140 
3141 		if (sink) {
3142 			if (aconnector->dc_sink) {
3143 				amdgpu_dm_update_freesync_caps(connector, NULL);
3144 				/*
3145 				 * retain and release below are used to
3146 				 * bump up refcount for sink because the link doesn't point
3147 				 * to it anymore after disconnect, so on next crtc to connector
3148 				 * reshuffle by UMD we will get into unwanted dc_sink release
3149 				 */
3150 				dc_sink_release(aconnector->dc_sink);
3151 			}
3152 			aconnector->dc_sink = sink;
3153 			dc_sink_retain(aconnector->dc_sink);
3154 			amdgpu_dm_update_freesync_caps(connector,
3155 					aconnector->edid);
3156 		} else {
3157 			amdgpu_dm_update_freesync_caps(connector, NULL);
3158 			if (!aconnector->dc_sink) {
3159 				aconnector->dc_sink = aconnector->dc_em_sink;
3160 				dc_sink_retain(aconnector->dc_sink);
3161 			}
3162 		}
3163 
3164 		mutex_unlock(&dev->mode_config.mutex);
3165 
3166 		if (sink)
3167 			dc_sink_release(sink);
3168 		return;
3169 	}
3170 
3171 	/*
3172 	 * TODO: temporary guard to look for proper fix
3173 	 * if this sink is MST sink, we should not do anything
3174 	 */
3175 	if (sink && sink->sink_signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
3176 		dc_sink_release(sink);
3177 		return;
3178 	}
3179 
3180 	if (aconnector->dc_sink == sink) {
3181 		/*
3182 		 * We got a DP short pulse (Link Loss, DP CTS, etc...).
3183 		 * Do nothing!!
3184 		 */
3185 		DRM_DEBUG_DRIVER("DCHPD: connector_id=%d: dc_sink didn't change.\n",
3186 				aconnector->connector_id);
3187 		if (sink)
3188 			dc_sink_release(sink);
3189 		return;
3190 	}
3191 
3192 	DRM_DEBUG_DRIVER("DCHPD: connector_id=%d: Old sink=%p New sink=%p\n",
3193 		aconnector->connector_id, aconnector->dc_sink, sink);
3194 
3195 	mutex_lock(&dev->mode_config.mutex);
3196 
3197 	/*
3198 	 * 1. Update status of the drm connector
3199 	 * 2. Send an event and let userspace tell us what to do
3200 	 */
3201 	if (sink) {
3202 		/*
3203 		 * TODO: check if we still need the S3 mode update workaround.
3204 		 * If yes, put it here.
3205 		 */
3206 		if (aconnector->dc_sink) {
3207 			amdgpu_dm_update_freesync_caps(connector, NULL);
3208 			dc_sink_release(aconnector->dc_sink);
3209 		}
3210 
3211 		aconnector->dc_sink = sink;
3212 		dc_sink_retain(aconnector->dc_sink);
3213 		if (sink->dc_edid.length == 0) {
3214 			aconnector->edid = NULL;
3215 			if (aconnector->dc_link->aux_mode) {
3216 				drm_dp_cec_unset_edid(
3217 					&aconnector->dm_dp_aux.aux);
3218 			}
3219 		} else {
3220 			aconnector->edid =
3221 				(struct edid *)sink->dc_edid.raw_edid;
3222 
3223 			if (aconnector->dc_link->aux_mode)
3224 				drm_dp_cec_set_edid(&aconnector->dm_dp_aux.aux,
3225 						    aconnector->edid);
3226 		}
3227 
3228 		if (!aconnector->timing_requested) {
3229 			aconnector->timing_requested =
3230 				kzalloc(sizeof(struct dc_crtc_timing), GFP_KERNEL);
3231 			if (!aconnector->timing_requested)
3232 				drm_err(dev,
3233 					"failed to create aconnector->requested_timing\n");
3234 		}
3235 
3236 		drm_connector_update_edid_property(connector, aconnector->edid);
3237 		amdgpu_dm_update_freesync_caps(connector, aconnector->edid);
3238 		update_connector_ext_caps(aconnector);
3239 	} else {
3240 		drm_dp_cec_unset_edid(&aconnector->dm_dp_aux.aux);
3241 		amdgpu_dm_update_freesync_caps(connector, NULL);
3242 		drm_connector_update_edid_property(connector, NULL);
3243 		aconnector->num_modes = 0;
3244 		dc_sink_release(aconnector->dc_sink);
3245 		aconnector->dc_sink = NULL;
3246 		aconnector->edid = NULL;
3247 		kfree(aconnector->timing_requested);
3248 		aconnector->timing_requested = NULL;
3249 		/* Set CP to DESIRED if it was ENABLED, so we can re-enable it again on hotplug */
3250 		if (connector->state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED)
3251 			connector->state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
3252 	}
3253 
3254 	mutex_unlock(&dev->mode_config.mutex);
3255 
3256 	update_subconnector_property(aconnector);
3257 
3258 	if (sink)
3259 		dc_sink_release(sink);
3260 }
3261 
3262 static void handle_hpd_irq_helper(struct amdgpu_dm_connector *aconnector)
3263 {
3264 	struct drm_connector *connector = &aconnector->base;
3265 	struct drm_device *dev = connector->dev;
3266 	enum dc_connection_type new_connection_type = dc_connection_none;
3267 	struct amdgpu_device *adev = drm_to_adev(dev);
3268 	struct dm_connector_state *dm_con_state = to_dm_connector_state(connector->state);
3269 	bool ret = false;
3270 
3271 	if (adev->dm.disable_hpd_irq)
3272 		return;
3273 
3274 	/*
3275 	 * In case of failure or MST no need to update connector status or notify the OS
3276 	 * since (for MST case) MST does this in its own context.
3277 	 */
3278 	mutex_lock(&aconnector->hpd_lock);
3279 
3280 	if (adev->dm.hdcp_workqueue) {
3281 		hdcp_reset_display(adev->dm.hdcp_workqueue, aconnector->dc_link->link_index);
3282 		dm_con_state->update_hdcp = true;
3283 	}
3284 	if (aconnector->fake_enable)
3285 		aconnector->fake_enable = false;
3286 
3287 	aconnector->timing_changed = false;
3288 
3289 	if (!dc_link_detect_connection_type(aconnector->dc_link, &new_connection_type))
3290 		DRM_ERROR("KMS: Failed to detect connector\n");
3291 
3292 	if (aconnector->base.force && new_connection_type == dc_connection_none) {
3293 		emulated_link_detect(aconnector->dc_link);
3294 
3295 		drm_modeset_lock_all(dev);
3296 		dm_restore_drm_connector_state(dev, connector);
3297 		drm_modeset_unlock_all(dev);
3298 
3299 		if (aconnector->base.force == DRM_FORCE_UNSPECIFIED)
3300 			drm_kms_helper_connector_hotplug_event(connector);
3301 	} else {
3302 		mutex_lock(&adev->dm.dc_lock);
3303 		ret = dc_link_detect(aconnector->dc_link, DETECT_REASON_HPD);
3304 		mutex_unlock(&adev->dm.dc_lock);
3305 		if (ret) {
3306 			amdgpu_dm_update_connector_after_detect(aconnector);
3307 
3308 			drm_modeset_lock_all(dev);
3309 			dm_restore_drm_connector_state(dev, connector);
3310 			drm_modeset_unlock_all(dev);
3311 
3312 			if (aconnector->base.force == DRM_FORCE_UNSPECIFIED)
3313 				drm_kms_helper_connector_hotplug_event(connector);
3314 		}
3315 	}
3316 	mutex_unlock(&aconnector->hpd_lock);
3317 
3318 }
3319 
3320 static void handle_hpd_irq(void *param)
3321 {
3322 	struct amdgpu_dm_connector *aconnector = (struct amdgpu_dm_connector *)param;
3323 
3324 	handle_hpd_irq_helper(aconnector);
3325 
3326 }
3327 
3328 static void schedule_hpd_rx_offload_work(struct hpd_rx_irq_offload_work_queue *offload_wq,
3329 							union hpd_irq_data hpd_irq_data)
3330 {
3331 	struct hpd_rx_irq_offload_work *offload_work =
3332 				kzalloc(sizeof(*offload_work), GFP_KERNEL);
3333 
3334 	if (!offload_work) {
3335 		DRM_ERROR("Failed to allocate hpd_rx_irq_offload_work.\n");
3336 		return;
3337 	}
3338 
3339 	INIT_WORK(&offload_work->work, dm_handle_hpd_rx_offload_work);
3340 	offload_work->data = hpd_irq_data;
3341 	offload_work->offload_wq = offload_wq;
3342 
3343 	queue_work(offload_wq->wq, &offload_work->work);
3344 	DRM_DEBUG_KMS("queue work to handle hpd_rx offload work");
3345 }
3346 
3347 static void handle_hpd_rx_irq(void *param)
3348 {
3349 	struct amdgpu_dm_connector *aconnector = (struct amdgpu_dm_connector *)param;
3350 	struct drm_connector *connector = &aconnector->base;
3351 	struct drm_device *dev = connector->dev;
3352 	struct dc_link *dc_link = aconnector->dc_link;
3353 	bool is_mst_root_connector = aconnector->mst_mgr.mst_state;
3354 	bool result = false;
3355 	enum dc_connection_type new_connection_type = dc_connection_none;
3356 	struct amdgpu_device *adev = drm_to_adev(dev);
3357 	union hpd_irq_data hpd_irq_data;
3358 	bool link_loss = false;
3359 	bool has_left_work = false;
3360 	int idx = dc_link->link_index;
3361 	struct hpd_rx_irq_offload_work_queue *offload_wq = &adev->dm.hpd_rx_offload_wq[idx];
3362 
3363 	memset(&hpd_irq_data, 0, sizeof(hpd_irq_data));
3364 
3365 	if (adev->dm.disable_hpd_irq)
3366 		return;
3367 
3368 	/*
3369 	 * TODO:Temporary add mutex to protect hpd interrupt not have a gpio
3370 	 * conflict, after implement i2c helper, this mutex should be
3371 	 * retired.
3372 	 */
3373 	mutex_lock(&aconnector->hpd_lock);
3374 
3375 	result = dc_link_handle_hpd_rx_irq(dc_link, &hpd_irq_data,
3376 						&link_loss, true, &has_left_work);
3377 
3378 	if (!has_left_work)
3379 		goto out;
3380 
3381 	if (hpd_irq_data.bytes.device_service_irq.bits.AUTOMATED_TEST) {
3382 		schedule_hpd_rx_offload_work(offload_wq, hpd_irq_data);
3383 		goto out;
3384 	}
3385 
3386 	if (dc_link_dp_allow_hpd_rx_irq(dc_link)) {
3387 		if (hpd_irq_data.bytes.device_service_irq.bits.UP_REQ_MSG_RDY ||
3388 			hpd_irq_data.bytes.device_service_irq.bits.DOWN_REP_MSG_RDY) {
3389 			bool skip = false;
3390 
3391 			/*
3392 			 * DOWN_REP_MSG_RDY is also handled by polling method
3393 			 * mgr->cbs->poll_hpd_irq()
3394 			 */
3395 			spin_lock(&offload_wq->offload_lock);
3396 			skip = offload_wq->is_handling_mst_msg_rdy_event;
3397 
3398 			if (!skip)
3399 				offload_wq->is_handling_mst_msg_rdy_event = true;
3400 
3401 			spin_unlock(&offload_wq->offload_lock);
3402 
3403 			if (!skip)
3404 				schedule_hpd_rx_offload_work(offload_wq, hpd_irq_data);
3405 
3406 			goto out;
3407 		}
3408 
3409 		if (link_loss) {
3410 			bool skip = false;
3411 
3412 			spin_lock(&offload_wq->offload_lock);
3413 			skip = offload_wq->is_handling_link_loss;
3414 
3415 			if (!skip)
3416 				offload_wq->is_handling_link_loss = true;
3417 
3418 			spin_unlock(&offload_wq->offload_lock);
3419 
3420 			if (!skip)
3421 				schedule_hpd_rx_offload_work(offload_wq, hpd_irq_data);
3422 
3423 			goto out;
3424 		}
3425 	}
3426 
3427 out:
3428 	if (result && !is_mst_root_connector) {
3429 		/* Downstream Port status changed. */
3430 		if (!dc_link_detect_connection_type(dc_link, &new_connection_type))
3431 			DRM_ERROR("KMS: Failed to detect connector\n");
3432 
3433 		if (aconnector->base.force && new_connection_type == dc_connection_none) {
3434 			emulated_link_detect(dc_link);
3435 
3436 			if (aconnector->fake_enable)
3437 				aconnector->fake_enable = false;
3438 
3439 			amdgpu_dm_update_connector_after_detect(aconnector);
3440 
3441 
3442 			drm_modeset_lock_all(dev);
3443 			dm_restore_drm_connector_state(dev, connector);
3444 			drm_modeset_unlock_all(dev);
3445 
3446 			drm_kms_helper_connector_hotplug_event(connector);
3447 		} else {
3448 			bool ret = false;
3449 
3450 			mutex_lock(&adev->dm.dc_lock);
3451 			ret = dc_link_detect(dc_link, DETECT_REASON_HPDRX);
3452 			mutex_unlock(&adev->dm.dc_lock);
3453 
3454 			if (ret) {
3455 				if (aconnector->fake_enable)
3456 					aconnector->fake_enable = false;
3457 
3458 				amdgpu_dm_update_connector_after_detect(aconnector);
3459 
3460 				drm_modeset_lock_all(dev);
3461 				dm_restore_drm_connector_state(dev, connector);
3462 				drm_modeset_unlock_all(dev);
3463 
3464 				drm_kms_helper_connector_hotplug_event(connector);
3465 			}
3466 		}
3467 	}
3468 	if (hpd_irq_data.bytes.device_service_irq.bits.CP_IRQ) {
3469 		if (adev->dm.hdcp_workqueue)
3470 			hdcp_handle_cpirq(adev->dm.hdcp_workqueue,  aconnector->base.index);
3471 	}
3472 
3473 	if (dc_link->type != dc_connection_mst_branch)
3474 		drm_dp_cec_irq(&aconnector->dm_dp_aux.aux);
3475 
3476 	mutex_unlock(&aconnector->hpd_lock);
3477 }
3478 
3479 static void register_hpd_handlers(struct amdgpu_device *adev)
3480 {
3481 	struct drm_device *dev = adev_to_drm(adev);
3482 	struct drm_connector *connector;
3483 	struct amdgpu_dm_connector *aconnector;
3484 	const struct dc_link *dc_link;
3485 	struct dc_interrupt_params int_params = {0};
3486 
3487 	int_params.requested_polarity = INTERRUPT_POLARITY_DEFAULT;
3488 	int_params.current_polarity = INTERRUPT_POLARITY_DEFAULT;
3489 
3490 	list_for_each_entry(connector,
3491 			&dev->mode_config.connector_list, head)	{
3492 
3493 		aconnector = to_amdgpu_dm_connector(connector);
3494 		dc_link = aconnector->dc_link;
3495 
3496 		if (dc_link->irq_source_hpd != DC_IRQ_SOURCE_INVALID) {
3497 			int_params.int_context = INTERRUPT_LOW_IRQ_CONTEXT;
3498 			int_params.irq_source = dc_link->irq_source_hpd;
3499 
3500 			amdgpu_dm_irq_register_interrupt(adev, &int_params,
3501 					handle_hpd_irq,
3502 					(void *) aconnector);
3503 		}
3504 
3505 		if (dc_link->irq_source_hpd_rx != DC_IRQ_SOURCE_INVALID) {
3506 
3507 			/* Also register for DP short pulse (hpd_rx). */
3508 			int_params.int_context = INTERRUPT_LOW_IRQ_CONTEXT;
3509 			int_params.irq_source =	dc_link->irq_source_hpd_rx;
3510 
3511 			amdgpu_dm_irq_register_interrupt(adev, &int_params,
3512 					handle_hpd_rx_irq,
3513 					(void *) aconnector);
3514 		}
3515 
3516 		if (adev->dm.hpd_rx_offload_wq)
3517 			adev->dm.hpd_rx_offload_wq[connector->index].aconnector =
3518 				aconnector;
3519 	}
3520 }
3521 
3522 #if defined(CONFIG_DRM_AMD_DC_SI)
3523 /* Register IRQ sources and initialize IRQ callbacks */
3524 static int dce60_register_irq_handlers(struct amdgpu_device *adev)
3525 {
3526 	struct dc *dc = adev->dm.dc;
3527 	struct common_irq_params *c_irq_params;
3528 	struct dc_interrupt_params int_params = {0};
3529 	int r;
3530 	int i;
3531 	unsigned int client_id = AMDGPU_IRQ_CLIENTID_LEGACY;
3532 
3533 	int_params.requested_polarity = INTERRUPT_POLARITY_DEFAULT;
3534 	int_params.current_polarity = INTERRUPT_POLARITY_DEFAULT;
3535 
3536 	/*
3537 	 * Actions of amdgpu_irq_add_id():
3538 	 * 1. Register a set() function with base driver.
3539 	 *    Base driver will call set() function to enable/disable an
3540 	 *    interrupt in DC hardware.
3541 	 * 2. Register amdgpu_dm_irq_handler().
3542 	 *    Base driver will call amdgpu_dm_irq_handler() for ALL interrupts
3543 	 *    coming from DC hardware.
3544 	 *    amdgpu_dm_irq_handler() will re-direct the interrupt to DC
3545 	 *    for acknowledging and handling.
3546 	 */
3547 
3548 	/* Use VBLANK interrupt */
3549 	for (i = 0; i < adev->mode_info.num_crtc; i++) {
3550 		r = amdgpu_irq_add_id(adev, client_id, i + 1, &adev->crtc_irq);
3551 		if (r) {
3552 			DRM_ERROR("Failed to add crtc irq id!\n");
3553 			return r;
3554 		}
3555 
3556 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3557 		int_params.irq_source =
3558 			dc_interrupt_to_irq_source(dc, i + 1, 0);
3559 
3560 		c_irq_params = &adev->dm.vblank_params[int_params.irq_source - DC_IRQ_SOURCE_VBLANK1];
3561 
3562 		c_irq_params->adev = adev;
3563 		c_irq_params->irq_src = int_params.irq_source;
3564 
3565 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3566 				dm_crtc_high_irq, c_irq_params);
3567 	}
3568 
3569 	/* Use GRPH_PFLIP interrupt */
3570 	for (i = VISLANDS30_IV_SRCID_D1_GRPH_PFLIP;
3571 			i <= VISLANDS30_IV_SRCID_D6_GRPH_PFLIP; i += 2) {
3572 		r = amdgpu_irq_add_id(adev, client_id, i, &adev->pageflip_irq);
3573 		if (r) {
3574 			DRM_ERROR("Failed to add page flip irq id!\n");
3575 			return r;
3576 		}
3577 
3578 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3579 		int_params.irq_source =
3580 			dc_interrupt_to_irq_source(dc, i, 0);
3581 
3582 		c_irq_params = &adev->dm.pflip_params[int_params.irq_source - DC_IRQ_SOURCE_PFLIP_FIRST];
3583 
3584 		c_irq_params->adev = adev;
3585 		c_irq_params->irq_src = int_params.irq_source;
3586 
3587 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3588 				dm_pflip_high_irq, c_irq_params);
3589 
3590 	}
3591 
3592 	/* HPD */
3593 	r = amdgpu_irq_add_id(adev, client_id,
3594 			VISLANDS30_IV_SRCID_HOTPLUG_DETECT_A, &adev->hpd_irq);
3595 	if (r) {
3596 		DRM_ERROR("Failed to add hpd irq id!\n");
3597 		return r;
3598 	}
3599 
3600 	register_hpd_handlers(adev);
3601 
3602 	return 0;
3603 }
3604 #endif
3605 
3606 /* Register IRQ sources and initialize IRQ callbacks */
3607 static int dce110_register_irq_handlers(struct amdgpu_device *adev)
3608 {
3609 	struct dc *dc = adev->dm.dc;
3610 	struct common_irq_params *c_irq_params;
3611 	struct dc_interrupt_params int_params = {0};
3612 	int r;
3613 	int i;
3614 	unsigned int client_id = AMDGPU_IRQ_CLIENTID_LEGACY;
3615 
3616 	if (adev->family >= AMDGPU_FAMILY_AI)
3617 		client_id = SOC15_IH_CLIENTID_DCE;
3618 
3619 	int_params.requested_polarity = INTERRUPT_POLARITY_DEFAULT;
3620 	int_params.current_polarity = INTERRUPT_POLARITY_DEFAULT;
3621 
3622 	/*
3623 	 * Actions of amdgpu_irq_add_id():
3624 	 * 1. Register a set() function with base driver.
3625 	 *    Base driver will call set() function to enable/disable an
3626 	 *    interrupt in DC hardware.
3627 	 * 2. Register amdgpu_dm_irq_handler().
3628 	 *    Base driver will call amdgpu_dm_irq_handler() for ALL interrupts
3629 	 *    coming from DC hardware.
3630 	 *    amdgpu_dm_irq_handler() will re-direct the interrupt to DC
3631 	 *    for acknowledging and handling.
3632 	 */
3633 
3634 	/* Use VBLANK interrupt */
3635 	for (i = VISLANDS30_IV_SRCID_D1_VERTICAL_INTERRUPT0; i <= VISLANDS30_IV_SRCID_D6_VERTICAL_INTERRUPT0; i++) {
3636 		r = amdgpu_irq_add_id(adev, client_id, i, &adev->crtc_irq);
3637 		if (r) {
3638 			DRM_ERROR("Failed to add crtc irq id!\n");
3639 			return r;
3640 		}
3641 
3642 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3643 		int_params.irq_source =
3644 			dc_interrupt_to_irq_source(dc, i, 0);
3645 
3646 		c_irq_params = &adev->dm.vblank_params[int_params.irq_source - DC_IRQ_SOURCE_VBLANK1];
3647 
3648 		c_irq_params->adev = adev;
3649 		c_irq_params->irq_src = int_params.irq_source;
3650 
3651 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3652 				dm_crtc_high_irq, c_irq_params);
3653 	}
3654 
3655 	/* Use VUPDATE interrupt */
3656 	for (i = VISLANDS30_IV_SRCID_D1_V_UPDATE_INT; i <= VISLANDS30_IV_SRCID_D6_V_UPDATE_INT; i += 2) {
3657 		r = amdgpu_irq_add_id(adev, client_id, i, &adev->vupdate_irq);
3658 		if (r) {
3659 			DRM_ERROR("Failed to add vupdate irq id!\n");
3660 			return r;
3661 		}
3662 
3663 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3664 		int_params.irq_source =
3665 			dc_interrupt_to_irq_source(dc, i, 0);
3666 
3667 		c_irq_params = &adev->dm.vupdate_params[int_params.irq_source - DC_IRQ_SOURCE_VUPDATE1];
3668 
3669 		c_irq_params->adev = adev;
3670 		c_irq_params->irq_src = int_params.irq_source;
3671 
3672 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3673 				dm_vupdate_high_irq, c_irq_params);
3674 	}
3675 
3676 	/* Use GRPH_PFLIP interrupt */
3677 	for (i = VISLANDS30_IV_SRCID_D1_GRPH_PFLIP;
3678 			i <= VISLANDS30_IV_SRCID_D6_GRPH_PFLIP; i += 2) {
3679 		r = amdgpu_irq_add_id(adev, client_id, i, &adev->pageflip_irq);
3680 		if (r) {
3681 			DRM_ERROR("Failed to add page flip irq id!\n");
3682 			return r;
3683 		}
3684 
3685 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3686 		int_params.irq_source =
3687 			dc_interrupt_to_irq_source(dc, i, 0);
3688 
3689 		c_irq_params = &adev->dm.pflip_params[int_params.irq_source - DC_IRQ_SOURCE_PFLIP_FIRST];
3690 
3691 		c_irq_params->adev = adev;
3692 		c_irq_params->irq_src = int_params.irq_source;
3693 
3694 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3695 				dm_pflip_high_irq, c_irq_params);
3696 
3697 	}
3698 
3699 	/* HPD */
3700 	r = amdgpu_irq_add_id(adev, client_id,
3701 			VISLANDS30_IV_SRCID_HOTPLUG_DETECT_A, &adev->hpd_irq);
3702 	if (r) {
3703 		DRM_ERROR("Failed to add hpd irq id!\n");
3704 		return r;
3705 	}
3706 
3707 	register_hpd_handlers(adev);
3708 
3709 	return 0;
3710 }
3711 
3712 /* Register IRQ sources and initialize IRQ callbacks */
3713 static int dcn10_register_irq_handlers(struct amdgpu_device *adev)
3714 {
3715 	struct dc *dc = adev->dm.dc;
3716 	struct common_irq_params *c_irq_params;
3717 	struct dc_interrupt_params int_params = {0};
3718 	int r;
3719 	int i;
3720 #if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
3721 	static const unsigned int vrtl_int_srcid[] = {
3722 		DCN_1_0__SRCID__OTG1_VERTICAL_INTERRUPT0_CONTROL,
3723 		DCN_1_0__SRCID__OTG2_VERTICAL_INTERRUPT0_CONTROL,
3724 		DCN_1_0__SRCID__OTG3_VERTICAL_INTERRUPT0_CONTROL,
3725 		DCN_1_0__SRCID__OTG4_VERTICAL_INTERRUPT0_CONTROL,
3726 		DCN_1_0__SRCID__OTG5_VERTICAL_INTERRUPT0_CONTROL,
3727 		DCN_1_0__SRCID__OTG6_VERTICAL_INTERRUPT0_CONTROL
3728 	};
3729 #endif
3730 
3731 	int_params.requested_polarity = INTERRUPT_POLARITY_DEFAULT;
3732 	int_params.current_polarity = INTERRUPT_POLARITY_DEFAULT;
3733 
3734 	/*
3735 	 * Actions of amdgpu_irq_add_id():
3736 	 * 1. Register a set() function with base driver.
3737 	 *    Base driver will call set() function to enable/disable an
3738 	 *    interrupt in DC hardware.
3739 	 * 2. Register amdgpu_dm_irq_handler().
3740 	 *    Base driver will call amdgpu_dm_irq_handler() for ALL interrupts
3741 	 *    coming from DC hardware.
3742 	 *    amdgpu_dm_irq_handler() will re-direct the interrupt to DC
3743 	 *    for acknowledging and handling.
3744 	 */
3745 
3746 	/* Use VSTARTUP interrupt */
3747 	for (i = DCN_1_0__SRCID__DC_D1_OTG_VSTARTUP;
3748 			i <= DCN_1_0__SRCID__DC_D1_OTG_VSTARTUP + adev->mode_info.num_crtc - 1;
3749 			i++) {
3750 		r = amdgpu_irq_add_id(adev, SOC15_IH_CLIENTID_DCE, i, &adev->crtc_irq);
3751 
3752 		if (r) {
3753 			DRM_ERROR("Failed to add crtc irq id!\n");
3754 			return r;
3755 		}
3756 
3757 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3758 		int_params.irq_source =
3759 			dc_interrupt_to_irq_source(dc, i, 0);
3760 
3761 		c_irq_params = &adev->dm.vblank_params[int_params.irq_source - DC_IRQ_SOURCE_VBLANK1];
3762 
3763 		c_irq_params->adev = adev;
3764 		c_irq_params->irq_src = int_params.irq_source;
3765 
3766 		amdgpu_dm_irq_register_interrupt(
3767 			adev, &int_params, dm_crtc_high_irq, c_irq_params);
3768 	}
3769 
3770 	/* Use otg vertical line interrupt */
3771 #if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
3772 	for (i = 0; i <= adev->mode_info.num_crtc - 1; i++) {
3773 		r = amdgpu_irq_add_id(adev, SOC15_IH_CLIENTID_DCE,
3774 				vrtl_int_srcid[i], &adev->vline0_irq);
3775 
3776 		if (r) {
3777 			DRM_ERROR("Failed to add vline0 irq id!\n");
3778 			return r;
3779 		}
3780 
3781 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3782 		int_params.irq_source =
3783 			dc_interrupt_to_irq_source(dc, vrtl_int_srcid[i], 0);
3784 
3785 		if (int_params.irq_source == DC_IRQ_SOURCE_INVALID) {
3786 			DRM_ERROR("Failed to register vline0 irq %d!\n", vrtl_int_srcid[i]);
3787 			break;
3788 		}
3789 
3790 		c_irq_params = &adev->dm.vline0_params[int_params.irq_source
3791 					- DC_IRQ_SOURCE_DC1_VLINE0];
3792 
3793 		c_irq_params->adev = adev;
3794 		c_irq_params->irq_src = int_params.irq_source;
3795 
3796 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3797 				dm_dcn_vertical_interrupt0_high_irq, c_irq_params);
3798 	}
3799 #endif
3800 
3801 	/* Use VUPDATE_NO_LOCK interrupt on DCN, which seems to correspond to
3802 	 * the regular VUPDATE interrupt on DCE. We want DC_IRQ_SOURCE_VUPDATEx
3803 	 * to trigger at end of each vblank, regardless of state of the lock,
3804 	 * matching DCE behaviour.
3805 	 */
3806 	for (i = DCN_1_0__SRCID__OTG0_IHC_V_UPDATE_NO_LOCK_INTERRUPT;
3807 	     i <= DCN_1_0__SRCID__OTG0_IHC_V_UPDATE_NO_LOCK_INTERRUPT + adev->mode_info.num_crtc - 1;
3808 	     i++) {
3809 		r = amdgpu_irq_add_id(adev, SOC15_IH_CLIENTID_DCE, i, &adev->vupdate_irq);
3810 
3811 		if (r) {
3812 			DRM_ERROR("Failed to add vupdate irq id!\n");
3813 			return r;
3814 		}
3815 
3816 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3817 		int_params.irq_source =
3818 			dc_interrupt_to_irq_source(dc, i, 0);
3819 
3820 		c_irq_params = &adev->dm.vupdate_params[int_params.irq_source - DC_IRQ_SOURCE_VUPDATE1];
3821 
3822 		c_irq_params->adev = adev;
3823 		c_irq_params->irq_src = int_params.irq_source;
3824 
3825 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3826 				dm_vupdate_high_irq, c_irq_params);
3827 	}
3828 
3829 	/* Use GRPH_PFLIP interrupt */
3830 	for (i = DCN_1_0__SRCID__HUBP0_FLIP_INTERRUPT;
3831 			i <= DCN_1_0__SRCID__HUBP0_FLIP_INTERRUPT + dc->caps.max_otg_num - 1;
3832 			i++) {
3833 		r = amdgpu_irq_add_id(adev, SOC15_IH_CLIENTID_DCE, i, &adev->pageflip_irq);
3834 		if (r) {
3835 			DRM_ERROR("Failed to add page flip irq id!\n");
3836 			return r;
3837 		}
3838 
3839 		int_params.int_context = INTERRUPT_HIGH_IRQ_CONTEXT;
3840 		int_params.irq_source =
3841 			dc_interrupt_to_irq_source(dc, i, 0);
3842 
3843 		c_irq_params = &adev->dm.pflip_params[int_params.irq_source - DC_IRQ_SOURCE_PFLIP_FIRST];
3844 
3845 		c_irq_params->adev = adev;
3846 		c_irq_params->irq_src = int_params.irq_source;
3847 
3848 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3849 				dm_pflip_high_irq, c_irq_params);
3850 
3851 	}
3852 
3853 	/* HPD */
3854 	r = amdgpu_irq_add_id(adev, SOC15_IH_CLIENTID_DCE, DCN_1_0__SRCID__DC_HPD1_INT,
3855 			&adev->hpd_irq);
3856 	if (r) {
3857 		DRM_ERROR("Failed to add hpd irq id!\n");
3858 		return r;
3859 	}
3860 
3861 	register_hpd_handlers(adev);
3862 
3863 	return 0;
3864 }
3865 /* Register Outbox IRQ sources and initialize IRQ callbacks */
3866 static int register_outbox_irq_handlers(struct amdgpu_device *adev)
3867 {
3868 	struct dc *dc = adev->dm.dc;
3869 	struct common_irq_params *c_irq_params;
3870 	struct dc_interrupt_params int_params = {0};
3871 	int r, i;
3872 
3873 	int_params.requested_polarity = INTERRUPT_POLARITY_DEFAULT;
3874 	int_params.current_polarity = INTERRUPT_POLARITY_DEFAULT;
3875 
3876 	r = amdgpu_irq_add_id(adev, SOC15_IH_CLIENTID_DCE, DCN_1_0__SRCID__DMCUB_OUTBOX_LOW_PRIORITY_READY_INT,
3877 			&adev->dmub_outbox_irq);
3878 	if (r) {
3879 		DRM_ERROR("Failed to add outbox irq id!\n");
3880 		return r;
3881 	}
3882 
3883 	if (dc->ctx->dmub_srv) {
3884 		i = DCN_1_0__SRCID__DMCUB_OUTBOX_LOW_PRIORITY_READY_INT;
3885 		int_params.int_context = INTERRUPT_LOW_IRQ_CONTEXT;
3886 		int_params.irq_source =
3887 		dc_interrupt_to_irq_source(dc, i, 0);
3888 
3889 		c_irq_params = &adev->dm.dmub_outbox_params[0];
3890 
3891 		c_irq_params->adev = adev;
3892 		c_irq_params->irq_src = int_params.irq_source;
3893 
3894 		amdgpu_dm_irq_register_interrupt(adev, &int_params,
3895 				dm_dmub_outbox1_low_irq, c_irq_params);
3896 	}
3897 
3898 	return 0;
3899 }
3900 
3901 /*
3902  * Acquires the lock for the atomic state object and returns
3903  * the new atomic state.
3904  *
3905  * This should only be called during atomic check.
3906  */
3907 int dm_atomic_get_state(struct drm_atomic_state *state,
3908 			struct dm_atomic_state **dm_state)
3909 {
3910 	struct drm_device *dev = state->dev;
3911 	struct amdgpu_device *adev = drm_to_adev(dev);
3912 	struct amdgpu_display_manager *dm = &adev->dm;
3913 	struct drm_private_state *priv_state;
3914 
3915 	if (*dm_state)
3916 		return 0;
3917 
3918 	priv_state = drm_atomic_get_private_obj_state(state, &dm->atomic_obj);
3919 	if (IS_ERR(priv_state))
3920 		return PTR_ERR(priv_state);
3921 
3922 	*dm_state = to_dm_atomic_state(priv_state);
3923 
3924 	return 0;
3925 }
3926 
3927 static struct dm_atomic_state *
3928 dm_atomic_get_new_state(struct drm_atomic_state *state)
3929 {
3930 	struct drm_device *dev = state->dev;
3931 	struct amdgpu_device *adev = drm_to_adev(dev);
3932 	struct amdgpu_display_manager *dm = &adev->dm;
3933 	struct drm_private_obj *obj;
3934 	struct drm_private_state *new_obj_state;
3935 	int i;
3936 
3937 	for_each_new_private_obj_in_state(state, obj, new_obj_state, i) {
3938 		if (obj->funcs == dm->atomic_obj.funcs)
3939 			return to_dm_atomic_state(new_obj_state);
3940 	}
3941 
3942 	return NULL;
3943 }
3944 
3945 static struct drm_private_state *
3946 dm_atomic_duplicate_state(struct drm_private_obj *obj)
3947 {
3948 	struct dm_atomic_state *old_state, *new_state;
3949 
3950 	new_state = kzalloc(sizeof(*new_state), GFP_KERNEL);
3951 	if (!new_state)
3952 		return NULL;
3953 
3954 	__drm_atomic_helper_private_obj_duplicate_state(obj, &new_state->base);
3955 
3956 	old_state = to_dm_atomic_state(obj->state);
3957 
3958 	if (old_state && old_state->context)
3959 		new_state->context = dc_copy_state(old_state->context);
3960 
3961 	if (!new_state->context) {
3962 		kfree(new_state);
3963 		return NULL;
3964 	}
3965 
3966 	return &new_state->base;
3967 }
3968 
3969 static void dm_atomic_destroy_state(struct drm_private_obj *obj,
3970 				    struct drm_private_state *state)
3971 {
3972 	struct dm_atomic_state *dm_state = to_dm_atomic_state(state);
3973 
3974 	if (dm_state && dm_state->context)
3975 		dc_release_state(dm_state->context);
3976 
3977 	kfree(dm_state);
3978 }
3979 
3980 static struct drm_private_state_funcs dm_atomic_state_funcs = {
3981 	.atomic_duplicate_state = dm_atomic_duplicate_state,
3982 	.atomic_destroy_state = dm_atomic_destroy_state,
3983 };
3984 
3985 static int amdgpu_dm_mode_config_init(struct amdgpu_device *adev)
3986 {
3987 	struct dm_atomic_state *state;
3988 	int r;
3989 
3990 	adev->mode_info.mode_config_initialized = true;
3991 
3992 	adev_to_drm(adev)->mode_config.funcs = (void *)&amdgpu_dm_mode_funcs;
3993 	adev_to_drm(adev)->mode_config.helper_private = &amdgpu_dm_mode_config_helperfuncs;
3994 
3995 	adev_to_drm(adev)->mode_config.max_width = 16384;
3996 	adev_to_drm(adev)->mode_config.max_height = 16384;
3997 
3998 	adev_to_drm(adev)->mode_config.preferred_depth = 24;
3999 	if (adev->asic_type == CHIP_HAWAII)
4000 		/* disable prefer shadow for now due to hibernation issues */
4001 		adev_to_drm(adev)->mode_config.prefer_shadow = 0;
4002 	else
4003 		adev_to_drm(adev)->mode_config.prefer_shadow = 1;
4004 	/* indicates support for immediate flip */
4005 	adev_to_drm(adev)->mode_config.async_page_flip = true;
4006 
4007 	state = kzalloc(sizeof(*state), GFP_KERNEL);
4008 	if (!state)
4009 		return -ENOMEM;
4010 
4011 	state->context = dc_create_state(adev->dm.dc);
4012 	if (!state->context) {
4013 		kfree(state);
4014 		return -ENOMEM;
4015 	}
4016 
4017 	dc_resource_state_copy_construct_current(adev->dm.dc, state->context);
4018 
4019 	drm_atomic_private_obj_init(adev_to_drm(adev),
4020 				    &adev->dm.atomic_obj,
4021 				    &state->base,
4022 				    &dm_atomic_state_funcs);
4023 
4024 	r = amdgpu_display_modeset_create_props(adev);
4025 	if (r) {
4026 		dc_release_state(state->context);
4027 		kfree(state);
4028 		return r;
4029 	}
4030 
4031 	r = amdgpu_dm_audio_init(adev);
4032 	if (r) {
4033 		dc_release_state(state->context);
4034 		kfree(state);
4035 		return r;
4036 	}
4037 
4038 	return 0;
4039 }
4040 
4041 #define AMDGPU_DM_DEFAULT_MIN_BACKLIGHT 12
4042 #define AMDGPU_DM_DEFAULT_MAX_BACKLIGHT 255
4043 #define AUX_BL_DEFAULT_TRANSITION_TIME_MS 50
4044 
4045 static void amdgpu_dm_update_backlight_caps(struct amdgpu_display_manager *dm,
4046 					    int bl_idx)
4047 {
4048 #if defined(CONFIG_ACPI)
4049 	struct amdgpu_dm_backlight_caps caps;
4050 
4051 	memset(&caps, 0, sizeof(caps));
4052 
4053 	if (dm->backlight_caps[bl_idx].caps_valid)
4054 		return;
4055 
4056 	amdgpu_acpi_get_backlight_caps(&caps);
4057 	if (caps.caps_valid) {
4058 		dm->backlight_caps[bl_idx].caps_valid = true;
4059 		if (caps.aux_support)
4060 			return;
4061 		dm->backlight_caps[bl_idx].min_input_signal = caps.min_input_signal;
4062 		dm->backlight_caps[bl_idx].max_input_signal = caps.max_input_signal;
4063 	} else {
4064 		dm->backlight_caps[bl_idx].min_input_signal =
4065 				AMDGPU_DM_DEFAULT_MIN_BACKLIGHT;
4066 		dm->backlight_caps[bl_idx].max_input_signal =
4067 				AMDGPU_DM_DEFAULT_MAX_BACKLIGHT;
4068 	}
4069 #else
4070 	if (dm->backlight_caps[bl_idx].aux_support)
4071 		return;
4072 
4073 	dm->backlight_caps[bl_idx].min_input_signal = AMDGPU_DM_DEFAULT_MIN_BACKLIGHT;
4074 	dm->backlight_caps[bl_idx].max_input_signal = AMDGPU_DM_DEFAULT_MAX_BACKLIGHT;
4075 #endif
4076 }
4077 
4078 static int get_brightness_range(const struct amdgpu_dm_backlight_caps *caps,
4079 				unsigned int *min, unsigned int *max)
4080 {
4081 	if (!caps)
4082 		return 0;
4083 
4084 	if (caps->aux_support) {
4085 		// Firmware limits are in nits, DC API wants millinits.
4086 		*max = 1000 * caps->aux_max_input_signal;
4087 		*min = 1000 * caps->aux_min_input_signal;
4088 	} else {
4089 		// Firmware limits are 8-bit, PWM control is 16-bit.
4090 		*max = 0x101 * caps->max_input_signal;
4091 		*min = 0x101 * caps->min_input_signal;
4092 	}
4093 	return 1;
4094 }
4095 
4096 static u32 convert_brightness_from_user(const struct amdgpu_dm_backlight_caps *caps,
4097 					uint32_t brightness)
4098 {
4099 	unsigned int min, max;
4100 
4101 	if (!get_brightness_range(caps, &min, &max))
4102 		return brightness;
4103 
4104 	// Rescale 0..255 to min..max
4105 	return min + DIV_ROUND_CLOSEST((max - min) * brightness,
4106 				       AMDGPU_MAX_BL_LEVEL);
4107 }
4108 
4109 static u32 convert_brightness_to_user(const struct amdgpu_dm_backlight_caps *caps,
4110 				      uint32_t brightness)
4111 {
4112 	unsigned int min, max;
4113 
4114 	if (!get_brightness_range(caps, &min, &max))
4115 		return brightness;
4116 
4117 	if (brightness < min)
4118 		return 0;
4119 	// Rescale min..max to 0..255
4120 	return DIV_ROUND_CLOSEST(AMDGPU_MAX_BL_LEVEL * (brightness - min),
4121 				 max - min);
4122 }
4123 
4124 static void amdgpu_dm_backlight_set_level(struct amdgpu_display_manager *dm,
4125 					 int bl_idx,
4126 					 u32 user_brightness)
4127 {
4128 	struct amdgpu_dm_backlight_caps caps;
4129 	struct dc_link *link;
4130 	u32 brightness;
4131 	bool rc;
4132 
4133 	amdgpu_dm_update_backlight_caps(dm, bl_idx);
4134 	caps = dm->backlight_caps[bl_idx];
4135 
4136 	dm->brightness[bl_idx] = user_brightness;
4137 	/* update scratch register */
4138 	if (bl_idx == 0)
4139 		amdgpu_atombios_scratch_regs_set_backlight_level(dm->adev, dm->brightness[bl_idx]);
4140 	brightness = convert_brightness_from_user(&caps, dm->brightness[bl_idx]);
4141 	link = (struct dc_link *)dm->backlight_link[bl_idx];
4142 
4143 	/* Change brightness based on AUX property */
4144 	if (caps.aux_support) {
4145 		rc = dc_link_set_backlight_level_nits(link, true, brightness,
4146 						      AUX_BL_DEFAULT_TRANSITION_TIME_MS);
4147 		if (!rc)
4148 			DRM_DEBUG("DM: Failed to update backlight via AUX on eDP[%d]\n", bl_idx);
4149 	} else {
4150 		rc = dc_link_set_backlight_level(link, brightness, 0);
4151 		if (!rc)
4152 			DRM_DEBUG("DM: Failed to update backlight on eDP[%d]\n", bl_idx);
4153 	}
4154 
4155 	if (rc)
4156 		dm->actual_brightness[bl_idx] = user_brightness;
4157 }
4158 
4159 static int amdgpu_dm_backlight_update_status(struct backlight_device *bd)
4160 {
4161 	struct amdgpu_display_manager *dm = bl_get_data(bd);
4162 	int i;
4163 
4164 	for (i = 0; i < dm->num_of_edps; i++) {
4165 		if (bd == dm->backlight_dev[i])
4166 			break;
4167 	}
4168 	if (i >= AMDGPU_DM_MAX_NUM_EDP)
4169 		i = 0;
4170 	amdgpu_dm_backlight_set_level(dm, i, bd->props.brightness);
4171 
4172 	return 0;
4173 }
4174 
4175 static u32 amdgpu_dm_backlight_get_level(struct amdgpu_display_manager *dm,
4176 					 int bl_idx)
4177 {
4178 	int ret;
4179 	struct amdgpu_dm_backlight_caps caps;
4180 	struct dc_link *link = (struct dc_link *)dm->backlight_link[bl_idx];
4181 
4182 	amdgpu_dm_update_backlight_caps(dm, bl_idx);
4183 	caps = dm->backlight_caps[bl_idx];
4184 
4185 	if (caps.aux_support) {
4186 		u32 avg, peak;
4187 		bool rc;
4188 
4189 		rc = dc_link_get_backlight_level_nits(link, &avg, &peak);
4190 		if (!rc)
4191 			return dm->brightness[bl_idx];
4192 		return convert_brightness_to_user(&caps, avg);
4193 	}
4194 
4195 	ret = dc_link_get_backlight_level(link);
4196 
4197 	if (ret == DC_ERROR_UNEXPECTED)
4198 		return dm->brightness[bl_idx];
4199 
4200 	return convert_brightness_to_user(&caps, ret);
4201 }
4202 
4203 static int amdgpu_dm_backlight_get_brightness(struct backlight_device *bd)
4204 {
4205 	struct amdgpu_display_manager *dm = bl_get_data(bd);
4206 	int i;
4207 
4208 	for (i = 0; i < dm->num_of_edps; i++) {
4209 		if (bd == dm->backlight_dev[i])
4210 			break;
4211 	}
4212 	if (i >= AMDGPU_DM_MAX_NUM_EDP)
4213 		i = 0;
4214 	return amdgpu_dm_backlight_get_level(dm, i);
4215 }
4216 
4217 static const struct backlight_ops amdgpu_dm_backlight_ops = {
4218 	.options = BL_CORE_SUSPENDRESUME,
4219 	.get_brightness = amdgpu_dm_backlight_get_brightness,
4220 	.update_status	= amdgpu_dm_backlight_update_status,
4221 };
4222 
4223 static void
4224 amdgpu_dm_register_backlight_device(struct amdgpu_dm_connector *aconnector)
4225 {
4226 	struct drm_device *drm = aconnector->base.dev;
4227 	struct amdgpu_display_manager *dm = &drm_to_adev(drm)->dm;
4228 	struct backlight_properties props = { 0 };
4229 	char bl_name[16];
4230 
4231 	if (aconnector->bl_idx == -1)
4232 		return;
4233 
4234 	if (!acpi_video_backlight_use_native()) {
4235 		drm_info(drm, "Skipping amdgpu DM backlight registration\n");
4236 		/* Try registering an ACPI video backlight device instead. */
4237 		acpi_video_register_backlight();
4238 		return;
4239 	}
4240 
4241 	props.max_brightness = AMDGPU_MAX_BL_LEVEL;
4242 	props.brightness = AMDGPU_MAX_BL_LEVEL;
4243 	props.type = BACKLIGHT_RAW;
4244 
4245 	snprintf(bl_name, sizeof(bl_name), "amdgpu_bl%d",
4246 		 drm->primary->index + aconnector->bl_idx);
4247 
4248 	dm->backlight_dev[aconnector->bl_idx] =
4249 		backlight_device_register(bl_name, aconnector->base.kdev, dm,
4250 					  &amdgpu_dm_backlight_ops, &props);
4251 
4252 	if (IS_ERR(dm->backlight_dev[aconnector->bl_idx])) {
4253 		DRM_ERROR("DM: Backlight registration failed!\n");
4254 		dm->backlight_dev[aconnector->bl_idx] = NULL;
4255 	} else
4256 		DRM_DEBUG_DRIVER("DM: Registered Backlight device: %s\n", bl_name);
4257 }
4258 
4259 static int initialize_plane(struct amdgpu_display_manager *dm,
4260 			    struct amdgpu_mode_info *mode_info, int plane_id,
4261 			    enum drm_plane_type plane_type,
4262 			    const struct dc_plane_cap *plane_cap)
4263 {
4264 	struct drm_plane *plane;
4265 	unsigned long possible_crtcs;
4266 	int ret = 0;
4267 
4268 	plane = kzalloc(sizeof(struct drm_plane), GFP_KERNEL);
4269 	if (!plane) {
4270 		DRM_ERROR("KMS: Failed to allocate plane\n");
4271 		return -ENOMEM;
4272 	}
4273 	plane->type = plane_type;
4274 
4275 	/*
4276 	 * HACK: IGT tests expect that the primary plane for a CRTC
4277 	 * can only have one possible CRTC. Only expose support for
4278 	 * any CRTC if they're not going to be used as a primary plane
4279 	 * for a CRTC - like overlay or underlay planes.
4280 	 */
4281 	possible_crtcs = 1 << plane_id;
4282 	if (plane_id >= dm->dc->caps.max_streams)
4283 		possible_crtcs = 0xff;
4284 
4285 	ret = amdgpu_dm_plane_init(dm, plane, possible_crtcs, plane_cap);
4286 
4287 	if (ret) {
4288 		DRM_ERROR("KMS: Failed to initialize plane\n");
4289 		kfree(plane);
4290 		return ret;
4291 	}
4292 
4293 	if (mode_info)
4294 		mode_info->planes[plane_id] = plane;
4295 
4296 	return ret;
4297 }
4298 
4299 
4300 static void setup_backlight_device(struct amdgpu_display_manager *dm,
4301 				   struct amdgpu_dm_connector *aconnector)
4302 {
4303 	struct dc_link *link = aconnector->dc_link;
4304 	int bl_idx = dm->num_of_edps;
4305 
4306 	if (!(link->connector_signal & (SIGNAL_TYPE_EDP | SIGNAL_TYPE_LVDS)) ||
4307 	    link->type == dc_connection_none)
4308 		return;
4309 
4310 	if (dm->num_of_edps >= AMDGPU_DM_MAX_NUM_EDP) {
4311 		drm_warn(adev_to_drm(dm->adev), "Too much eDP connections, skipping backlight setup for additional eDPs\n");
4312 		return;
4313 	}
4314 
4315 	aconnector->bl_idx = bl_idx;
4316 
4317 	amdgpu_dm_update_backlight_caps(dm, bl_idx);
4318 	dm->brightness[bl_idx] = AMDGPU_MAX_BL_LEVEL;
4319 	dm->backlight_link[bl_idx] = link;
4320 	dm->num_of_edps++;
4321 
4322 	update_connector_ext_caps(aconnector);
4323 }
4324 
4325 static void amdgpu_set_panel_orientation(struct drm_connector *connector);
4326 
4327 /*
4328  * In this architecture, the association
4329  * connector -> encoder -> crtc
4330  * id not really requried. The crtc and connector will hold the
4331  * display_index as an abstraction to use with DAL component
4332  *
4333  * Returns 0 on success
4334  */
4335 static int amdgpu_dm_initialize_drm_device(struct amdgpu_device *adev)
4336 {
4337 	struct amdgpu_display_manager *dm = &adev->dm;
4338 	s32 i;
4339 	struct amdgpu_dm_connector *aconnector = NULL;
4340 	struct amdgpu_encoder *aencoder = NULL;
4341 	struct amdgpu_mode_info *mode_info = &adev->mode_info;
4342 	u32 link_cnt;
4343 	s32 primary_planes;
4344 	enum dc_connection_type new_connection_type = dc_connection_none;
4345 	const struct dc_plane_cap *plane;
4346 	bool psr_feature_enabled = false;
4347 	bool replay_feature_enabled = false;
4348 	int max_overlay = dm->dc->caps.max_slave_planes;
4349 
4350 	dm->display_indexes_num = dm->dc->caps.max_streams;
4351 	/* Update the actual used number of crtc */
4352 	adev->mode_info.num_crtc = adev->dm.display_indexes_num;
4353 
4354 	amdgpu_dm_set_irq_funcs(adev);
4355 
4356 	link_cnt = dm->dc->caps.max_links;
4357 	if (amdgpu_dm_mode_config_init(dm->adev)) {
4358 		DRM_ERROR("DM: Failed to initialize mode config\n");
4359 		return -EINVAL;
4360 	}
4361 
4362 	/* There is one primary plane per CRTC */
4363 	primary_planes = dm->dc->caps.max_streams;
4364 	ASSERT(primary_planes <= AMDGPU_MAX_PLANES);
4365 
4366 	/*
4367 	 * Initialize primary planes, implicit planes for legacy IOCTLS.
4368 	 * Order is reversed to match iteration order in atomic check.
4369 	 */
4370 	for (i = (primary_planes - 1); i >= 0; i--) {
4371 		plane = &dm->dc->caps.planes[i];
4372 
4373 		if (initialize_plane(dm, mode_info, i,
4374 				     DRM_PLANE_TYPE_PRIMARY, plane)) {
4375 			DRM_ERROR("KMS: Failed to initialize primary plane\n");
4376 			goto fail;
4377 		}
4378 	}
4379 
4380 	/*
4381 	 * Initialize overlay planes, index starting after primary planes.
4382 	 * These planes have a higher DRM index than the primary planes since
4383 	 * they should be considered as having a higher z-order.
4384 	 * Order is reversed to match iteration order in atomic check.
4385 	 *
4386 	 * Only support DCN for now, and only expose one so we don't encourage
4387 	 * userspace to use up all the pipes.
4388 	 */
4389 	for (i = 0; i < dm->dc->caps.max_planes; ++i) {
4390 		struct dc_plane_cap *plane = &dm->dc->caps.planes[i];
4391 
4392 		/* Do not create overlay if MPO disabled */
4393 		if (amdgpu_dc_debug_mask & DC_DISABLE_MPO)
4394 			break;
4395 
4396 		if (plane->type != DC_PLANE_TYPE_DCN_UNIVERSAL)
4397 			continue;
4398 
4399 		if (!plane->pixel_format_support.argb8888)
4400 			continue;
4401 
4402 		if (max_overlay-- == 0)
4403 			break;
4404 
4405 		if (initialize_plane(dm, NULL, primary_planes + i,
4406 				     DRM_PLANE_TYPE_OVERLAY, plane)) {
4407 			DRM_ERROR("KMS: Failed to initialize overlay plane\n");
4408 			goto fail;
4409 		}
4410 	}
4411 
4412 	for (i = 0; i < dm->dc->caps.max_streams; i++)
4413 		if (amdgpu_dm_crtc_init(dm, mode_info->planes[i], i)) {
4414 			DRM_ERROR("KMS: Failed to initialize crtc\n");
4415 			goto fail;
4416 		}
4417 
4418 	/* Use Outbox interrupt */
4419 	switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
4420 	case IP_VERSION(3, 0, 0):
4421 	case IP_VERSION(3, 1, 2):
4422 	case IP_VERSION(3, 1, 3):
4423 	case IP_VERSION(3, 1, 4):
4424 	case IP_VERSION(3, 1, 5):
4425 	case IP_VERSION(3, 1, 6):
4426 	case IP_VERSION(3, 2, 0):
4427 	case IP_VERSION(3, 2, 1):
4428 	case IP_VERSION(2, 1, 0):
4429 	case IP_VERSION(3, 5, 0):
4430 		if (register_outbox_irq_handlers(dm->adev)) {
4431 			DRM_ERROR("DM: Failed to initialize IRQ\n");
4432 			goto fail;
4433 		}
4434 		break;
4435 	default:
4436 		DRM_DEBUG_KMS("Unsupported DCN IP version for outbox: 0x%X\n",
4437 			      amdgpu_ip_version(adev, DCE_HWIP, 0));
4438 	}
4439 
4440 	/* Determine whether to enable PSR support by default. */
4441 	if (!(amdgpu_dc_debug_mask & DC_DISABLE_PSR)) {
4442 		switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
4443 		case IP_VERSION(3, 1, 2):
4444 		case IP_VERSION(3, 1, 3):
4445 		case IP_VERSION(3, 1, 4):
4446 		case IP_VERSION(3, 1, 5):
4447 		case IP_VERSION(3, 1, 6):
4448 		case IP_VERSION(3, 2, 0):
4449 		case IP_VERSION(3, 2, 1):
4450 		case IP_VERSION(3, 5, 0):
4451 			psr_feature_enabled = true;
4452 			break;
4453 		default:
4454 			psr_feature_enabled = amdgpu_dc_feature_mask & DC_PSR_MASK;
4455 			break;
4456 		}
4457 	}
4458 
4459 	if (!(amdgpu_dc_debug_mask & DC_DISABLE_REPLAY)) {
4460 		switch (adev->ip_versions[DCE_HWIP][0]) {
4461 		case IP_VERSION(3, 1, 4):
4462 		case IP_VERSION(3, 1, 5):
4463 		case IP_VERSION(3, 1, 6):
4464 		case IP_VERSION(3, 2, 0):
4465 		case IP_VERSION(3, 2, 1):
4466 			replay_feature_enabled = true;
4467 			break;
4468 		default:
4469 			replay_feature_enabled = amdgpu_dc_feature_mask & DC_REPLAY_MASK;
4470 			break;
4471 		}
4472 	}
4473 	/* loops over all connectors on the board */
4474 	for (i = 0; i < link_cnt; i++) {
4475 		struct dc_link *link = NULL;
4476 
4477 		if (i > AMDGPU_DM_MAX_DISPLAY_INDEX) {
4478 			DRM_ERROR(
4479 				"KMS: Cannot support more than %d display indexes\n",
4480 					AMDGPU_DM_MAX_DISPLAY_INDEX);
4481 			continue;
4482 		}
4483 
4484 		aconnector = kzalloc(sizeof(*aconnector), GFP_KERNEL);
4485 		if (!aconnector)
4486 			goto fail;
4487 
4488 		aencoder = kzalloc(sizeof(*aencoder), GFP_KERNEL);
4489 		if (!aencoder)
4490 			goto fail;
4491 
4492 		if (amdgpu_dm_encoder_init(dm->ddev, aencoder, i)) {
4493 			DRM_ERROR("KMS: Failed to initialize encoder\n");
4494 			goto fail;
4495 		}
4496 
4497 		if (amdgpu_dm_connector_init(dm, aconnector, i, aencoder)) {
4498 			DRM_ERROR("KMS: Failed to initialize connector\n");
4499 			goto fail;
4500 		}
4501 
4502 		link = dc_get_link_at_index(dm->dc, i);
4503 
4504 		if (!dc_link_detect_connection_type(link, &new_connection_type))
4505 			DRM_ERROR("KMS: Failed to detect connector\n");
4506 
4507 		if (aconnector->base.force && new_connection_type == dc_connection_none) {
4508 			emulated_link_detect(link);
4509 			amdgpu_dm_update_connector_after_detect(aconnector);
4510 		} else {
4511 			bool ret = false;
4512 
4513 			mutex_lock(&dm->dc_lock);
4514 			ret = dc_link_detect(link, DETECT_REASON_BOOT);
4515 			mutex_unlock(&dm->dc_lock);
4516 
4517 			if (ret) {
4518 				amdgpu_dm_update_connector_after_detect(aconnector);
4519 				setup_backlight_device(dm, aconnector);
4520 
4521 				/*
4522 				 * Disable psr if replay can be enabled
4523 				 */
4524 				if (replay_feature_enabled && amdgpu_dm_setup_replay(link, aconnector))
4525 					psr_feature_enabled = false;
4526 
4527 				if (psr_feature_enabled)
4528 					amdgpu_dm_set_psr_caps(link);
4529 
4530 				/* TODO: Fix vblank control helpers to delay PSR entry to allow this when
4531 				 * PSR is also supported.
4532 				 */
4533 				if (link->psr_settings.psr_feature_enabled)
4534 					adev_to_drm(adev)->vblank_disable_immediate = false;
4535 			}
4536 		}
4537 		amdgpu_set_panel_orientation(&aconnector->base);
4538 	}
4539 
4540 	/* Software is initialized. Now we can register interrupt handlers. */
4541 	switch (adev->asic_type) {
4542 #if defined(CONFIG_DRM_AMD_DC_SI)
4543 	case CHIP_TAHITI:
4544 	case CHIP_PITCAIRN:
4545 	case CHIP_VERDE:
4546 	case CHIP_OLAND:
4547 		if (dce60_register_irq_handlers(dm->adev)) {
4548 			DRM_ERROR("DM: Failed to initialize IRQ\n");
4549 			goto fail;
4550 		}
4551 		break;
4552 #endif
4553 	case CHIP_BONAIRE:
4554 	case CHIP_HAWAII:
4555 	case CHIP_KAVERI:
4556 	case CHIP_KABINI:
4557 	case CHIP_MULLINS:
4558 	case CHIP_TONGA:
4559 	case CHIP_FIJI:
4560 	case CHIP_CARRIZO:
4561 	case CHIP_STONEY:
4562 	case CHIP_POLARIS11:
4563 	case CHIP_POLARIS10:
4564 	case CHIP_POLARIS12:
4565 	case CHIP_VEGAM:
4566 	case CHIP_VEGA10:
4567 	case CHIP_VEGA12:
4568 	case CHIP_VEGA20:
4569 		if (dce110_register_irq_handlers(dm->adev)) {
4570 			DRM_ERROR("DM: Failed to initialize IRQ\n");
4571 			goto fail;
4572 		}
4573 		break;
4574 	default:
4575 		switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
4576 		case IP_VERSION(1, 0, 0):
4577 		case IP_VERSION(1, 0, 1):
4578 		case IP_VERSION(2, 0, 2):
4579 		case IP_VERSION(2, 0, 3):
4580 		case IP_VERSION(2, 0, 0):
4581 		case IP_VERSION(2, 1, 0):
4582 		case IP_VERSION(3, 0, 0):
4583 		case IP_VERSION(3, 0, 2):
4584 		case IP_VERSION(3, 0, 3):
4585 		case IP_VERSION(3, 0, 1):
4586 		case IP_VERSION(3, 1, 2):
4587 		case IP_VERSION(3, 1, 3):
4588 		case IP_VERSION(3, 1, 4):
4589 		case IP_VERSION(3, 1, 5):
4590 		case IP_VERSION(3, 1, 6):
4591 		case IP_VERSION(3, 2, 0):
4592 		case IP_VERSION(3, 2, 1):
4593 		case IP_VERSION(3, 5, 0):
4594 			if (dcn10_register_irq_handlers(dm->adev)) {
4595 				DRM_ERROR("DM: Failed to initialize IRQ\n");
4596 				goto fail;
4597 			}
4598 			break;
4599 		default:
4600 			DRM_ERROR("Unsupported DCE IP versions: 0x%X\n",
4601 					amdgpu_ip_version(adev, DCE_HWIP, 0));
4602 			goto fail;
4603 		}
4604 		break;
4605 	}
4606 
4607 	return 0;
4608 fail:
4609 	kfree(aencoder);
4610 	kfree(aconnector);
4611 
4612 	return -EINVAL;
4613 }
4614 
4615 static void amdgpu_dm_destroy_drm_device(struct amdgpu_display_manager *dm)
4616 {
4617 	drm_atomic_private_obj_fini(&dm->atomic_obj);
4618 }
4619 
4620 /******************************************************************************
4621  * amdgpu_display_funcs functions
4622  *****************************************************************************/
4623 
4624 /*
4625  * dm_bandwidth_update - program display watermarks
4626  *
4627  * @adev: amdgpu_device pointer
4628  *
4629  * Calculate and program the display watermarks and line buffer allocation.
4630  */
4631 static void dm_bandwidth_update(struct amdgpu_device *adev)
4632 {
4633 	/* TODO: implement later */
4634 }
4635 
4636 static const struct amdgpu_display_funcs dm_display_funcs = {
4637 	.bandwidth_update = dm_bandwidth_update, /* called unconditionally */
4638 	.vblank_get_counter = dm_vblank_get_counter,/* called unconditionally */
4639 	.backlight_set_level = NULL, /* never called for DC */
4640 	.backlight_get_level = NULL, /* never called for DC */
4641 	.hpd_sense = NULL,/* called unconditionally */
4642 	.hpd_set_polarity = NULL, /* called unconditionally */
4643 	.hpd_get_gpio_reg = NULL, /* VBIOS parsing. DAL does it. */
4644 	.page_flip_get_scanoutpos =
4645 		dm_crtc_get_scanoutpos,/* called unconditionally */
4646 	.add_encoder = NULL, /* VBIOS parsing. DAL does it. */
4647 	.add_connector = NULL, /* VBIOS parsing. DAL does it. */
4648 };
4649 
4650 #if defined(CONFIG_DEBUG_KERNEL_DC)
4651 
4652 static ssize_t s3_debug_store(struct device *device,
4653 			      struct device_attribute *attr,
4654 			      const char *buf,
4655 			      size_t count)
4656 {
4657 	int ret;
4658 	int s3_state;
4659 	struct drm_device *drm_dev = dev_get_drvdata(device);
4660 	struct amdgpu_device *adev = drm_to_adev(drm_dev);
4661 
4662 	ret = kstrtoint(buf, 0, &s3_state);
4663 
4664 	if (ret == 0) {
4665 		if (s3_state) {
4666 			dm_resume(adev);
4667 			drm_kms_helper_hotplug_event(adev_to_drm(adev));
4668 		} else
4669 			dm_suspend(adev);
4670 	}
4671 
4672 	return ret == 0 ? count : 0;
4673 }
4674 
4675 DEVICE_ATTR_WO(s3_debug);
4676 
4677 #endif
4678 
4679 static int dm_init_microcode(struct amdgpu_device *adev)
4680 {
4681 	char *fw_name_dmub;
4682 	int r;
4683 
4684 	switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
4685 	case IP_VERSION(2, 1, 0):
4686 		fw_name_dmub = FIRMWARE_RENOIR_DMUB;
4687 		if (ASICREV_IS_GREEN_SARDINE(adev->external_rev_id))
4688 			fw_name_dmub = FIRMWARE_GREEN_SARDINE_DMUB;
4689 		break;
4690 	case IP_VERSION(3, 0, 0):
4691 		if (amdgpu_ip_version(adev, GC_HWIP, 0) == IP_VERSION(10, 3, 0))
4692 			fw_name_dmub = FIRMWARE_SIENNA_CICHLID_DMUB;
4693 		else
4694 			fw_name_dmub = FIRMWARE_NAVY_FLOUNDER_DMUB;
4695 		break;
4696 	case IP_VERSION(3, 0, 1):
4697 		fw_name_dmub = FIRMWARE_VANGOGH_DMUB;
4698 		break;
4699 	case IP_VERSION(3, 0, 2):
4700 		fw_name_dmub = FIRMWARE_DIMGREY_CAVEFISH_DMUB;
4701 		break;
4702 	case IP_VERSION(3, 0, 3):
4703 		fw_name_dmub = FIRMWARE_BEIGE_GOBY_DMUB;
4704 		break;
4705 	case IP_VERSION(3, 1, 2):
4706 	case IP_VERSION(3, 1, 3):
4707 		fw_name_dmub = FIRMWARE_YELLOW_CARP_DMUB;
4708 		break;
4709 	case IP_VERSION(3, 1, 4):
4710 		fw_name_dmub = FIRMWARE_DCN_314_DMUB;
4711 		break;
4712 	case IP_VERSION(3, 1, 5):
4713 		fw_name_dmub = FIRMWARE_DCN_315_DMUB;
4714 		break;
4715 	case IP_VERSION(3, 1, 6):
4716 		fw_name_dmub = FIRMWARE_DCN316_DMUB;
4717 		break;
4718 	case IP_VERSION(3, 2, 0):
4719 		fw_name_dmub = FIRMWARE_DCN_V3_2_0_DMCUB;
4720 		break;
4721 	case IP_VERSION(3, 2, 1):
4722 		fw_name_dmub = FIRMWARE_DCN_V3_2_1_DMCUB;
4723 		break;
4724 	case IP_VERSION(3, 5, 0):
4725 		fw_name_dmub = FIRMWARE_DCN_35_DMUB;
4726 		break;
4727 	default:
4728 		/* ASIC doesn't support DMUB. */
4729 		return 0;
4730 	}
4731 	r = amdgpu_ucode_request(adev, &adev->dm.dmub_fw, fw_name_dmub);
4732 	return r;
4733 }
4734 
4735 static int dm_early_init(void *handle)
4736 {
4737 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
4738 	struct amdgpu_mode_info *mode_info = &adev->mode_info;
4739 	struct atom_context *ctx = mode_info->atom_context;
4740 	int index = GetIndexIntoMasterTable(DATA, Object_Header);
4741 	u16 data_offset;
4742 
4743 	/* if there is no object header, skip DM */
4744 	if (!amdgpu_atom_parse_data_header(ctx, index, NULL, NULL, NULL, &data_offset)) {
4745 		adev->harvest_ip_mask |= AMD_HARVEST_IP_DMU_MASK;
4746 		dev_info(adev->dev, "No object header, skipping DM\n");
4747 		return -ENOENT;
4748 	}
4749 
4750 	switch (adev->asic_type) {
4751 #if defined(CONFIG_DRM_AMD_DC_SI)
4752 	case CHIP_TAHITI:
4753 	case CHIP_PITCAIRN:
4754 	case CHIP_VERDE:
4755 		adev->mode_info.num_crtc = 6;
4756 		adev->mode_info.num_hpd = 6;
4757 		adev->mode_info.num_dig = 6;
4758 		break;
4759 	case CHIP_OLAND:
4760 		adev->mode_info.num_crtc = 2;
4761 		adev->mode_info.num_hpd = 2;
4762 		adev->mode_info.num_dig = 2;
4763 		break;
4764 #endif
4765 	case CHIP_BONAIRE:
4766 	case CHIP_HAWAII:
4767 		adev->mode_info.num_crtc = 6;
4768 		adev->mode_info.num_hpd = 6;
4769 		adev->mode_info.num_dig = 6;
4770 		break;
4771 	case CHIP_KAVERI:
4772 		adev->mode_info.num_crtc = 4;
4773 		adev->mode_info.num_hpd = 6;
4774 		adev->mode_info.num_dig = 7;
4775 		break;
4776 	case CHIP_KABINI:
4777 	case CHIP_MULLINS:
4778 		adev->mode_info.num_crtc = 2;
4779 		adev->mode_info.num_hpd = 6;
4780 		adev->mode_info.num_dig = 6;
4781 		break;
4782 	case CHIP_FIJI:
4783 	case CHIP_TONGA:
4784 		adev->mode_info.num_crtc = 6;
4785 		adev->mode_info.num_hpd = 6;
4786 		adev->mode_info.num_dig = 7;
4787 		break;
4788 	case CHIP_CARRIZO:
4789 		adev->mode_info.num_crtc = 3;
4790 		adev->mode_info.num_hpd = 6;
4791 		adev->mode_info.num_dig = 9;
4792 		break;
4793 	case CHIP_STONEY:
4794 		adev->mode_info.num_crtc = 2;
4795 		adev->mode_info.num_hpd = 6;
4796 		adev->mode_info.num_dig = 9;
4797 		break;
4798 	case CHIP_POLARIS11:
4799 	case CHIP_POLARIS12:
4800 		adev->mode_info.num_crtc = 5;
4801 		adev->mode_info.num_hpd = 5;
4802 		adev->mode_info.num_dig = 5;
4803 		break;
4804 	case CHIP_POLARIS10:
4805 	case CHIP_VEGAM:
4806 		adev->mode_info.num_crtc = 6;
4807 		adev->mode_info.num_hpd = 6;
4808 		adev->mode_info.num_dig = 6;
4809 		break;
4810 	case CHIP_VEGA10:
4811 	case CHIP_VEGA12:
4812 	case CHIP_VEGA20:
4813 		adev->mode_info.num_crtc = 6;
4814 		adev->mode_info.num_hpd = 6;
4815 		adev->mode_info.num_dig = 6;
4816 		break;
4817 	default:
4818 
4819 		switch (amdgpu_ip_version(adev, DCE_HWIP, 0)) {
4820 		case IP_VERSION(2, 0, 2):
4821 		case IP_VERSION(3, 0, 0):
4822 			adev->mode_info.num_crtc = 6;
4823 			adev->mode_info.num_hpd = 6;
4824 			adev->mode_info.num_dig = 6;
4825 			break;
4826 		case IP_VERSION(2, 0, 0):
4827 		case IP_VERSION(3, 0, 2):
4828 			adev->mode_info.num_crtc = 5;
4829 			adev->mode_info.num_hpd = 5;
4830 			adev->mode_info.num_dig = 5;
4831 			break;
4832 		case IP_VERSION(2, 0, 3):
4833 		case IP_VERSION(3, 0, 3):
4834 			adev->mode_info.num_crtc = 2;
4835 			adev->mode_info.num_hpd = 2;
4836 			adev->mode_info.num_dig = 2;
4837 			break;
4838 		case IP_VERSION(1, 0, 0):
4839 		case IP_VERSION(1, 0, 1):
4840 		case IP_VERSION(3, 0, 1):
4841 		case IP_VERSION(2, 1, 0):
4842 		case IP_VERSION(3, 1, 2):
4843 		case IP_VERSION(3, 1, 3):
4844 		case IP_VERSION(3, 1, 4):
4845 		case IP_VERSION(3, 1, 5):
4846 		case IP_VERSION(3, 1, 6):
4847 		case IP_VERSION(3, 2, 0):
4848 		case IP_VERSION(3, 2, 1):
4849 		case IP_VERSION(3, 5, 0):
4850 			adev->mode_info.num_crtc = 4;
4851 			adev->mode_info.num_hpd = 4;
4852 			adev->mode_info.num_dig = 4;
4853 			break;
4854 		default:
4855 			DRM_ERROR("Unsupported DCE IP versions: 0x%x\n",
4856 					amdgpu_ip_version(adev, DCE_HWIP, 0));
4857 			return -EINVAL;
4858 		}
4859 		break;
4860 	}
4861 
4862 	if (adev->mode_info.funcs == NULL)
4863 		adev->mode_info.funcs = &dm_display_funcs;
4864 
4865 	/*
4866 	 * Note: Do NOT change adev->audio_endpt_rreg and
4867 	 * adev->audio_endpt_wreg because they are initialised in
4868 	 * amdgpu_device_init()
4869 	 */
4870 #if defined(CONFIG_DEBUG_KERNEL_DC)
4871 	device_create_file(
4872 		adev_to_drm(adev)->dev,
4873 		&dev_attr_s3_debug);
4874 #endif
4875 	adev->dc_enabled = true;
4876 
4877 	return dm_init_microcode(adev);
4878 }
4879 
4880 static bool modereset_required(struct drm_crtc_state *crtc_state)
4881 {
4882 	return !crtc_state->active && drm_atomic_crtc_needs_modeset(crtc_state);
4883 }
4884 
4885 static void amdgpu_dm_encoder_destroy(struct drm_encoder *encoder)
4886 {
4887 	drm_encoder_cleanup(encoder);
4888 	kfree(encoder);
4889 }
4890 
4891 static const struct drm_encoder_funcs amdgpu_dm_encoder_funcs = {
4892 	.destroy = amdgpu_dm_encoder_destroy,
4893 };
4894 
4895 static int
4896 fill_plane_color_attributes(const struct drm_plane_state *plane_state,
4897 			    const enum surface_pixel_format format,
4898 			    enum dc_color_space *color_space)
4899 {
4900 	bool full_range;
4901 
4902 	*color_space = COLOR_SPACE_SRGB;
4903 
4904 	/* DRM color properties only affect non-RGB formats. */
4905 	if (format < SURFACE_PIXEL_FORMAT_VIDEO_BEGIN)
4906 		return 0;
4907 
4908 	full_range = (plane_state->color_range == DRM_COLOR_YCBCR_FULL_RANGE);
4909 
4910 	switch (plane_state->color_encoding) {
4911 	case DRM_COLOR_YCBCR_BT601:
4912 		if (full_range)
4913 			*color_space = COLOR_SPACE_YCBCR601;
4914 		else
4915 			*color_space = COLOR_SPACE_YCBCR601_LIMITED;
4916 		break;
4917 
4918 	case DRM_COLOR_YCBCR_BT709:
4919 		if (full_range)
4920 			*color_space = COLOR_SPACE_YCBCR709;
4921 		else
4922 			*color_space = COLOR_SPACE_YCBCR709_LIMITED;
4923 		break;
4924 
4925 	case DRM_COLOR_YCBCR_BT2020:
4926 		if (full_range)
4927 			*color_space = COLOR_SPACE_2020_YCBCR;
4928 		else
4929 			return -EINVAL;
4930 		break;
4931 
4932 	default:
4933 		return -EINVAL;
4934 	}
4935 
4936 	return 0;
4937 }
4938 
4939 static int
4940 fill_dc_plane_info_and_addr(struct amdgpu_device *adev,
4941 			    const struct drm_plane_state *plane_state,
4942 			    const u64 tiling_flags,
4943 			    struct dc_plane_info *plane_info,
4944 			    struct dc_plane_address *address,
4945 			    bool tmz_surface,
4946 			    bool force_disable_dcc)
4947 {
4948 	const struct drm_framebuffer *fb = plane_state->fb;
4949 	const struct amdgpu_framebuffer *afb =
4950 		to_amdgpu_framebuffer(plane_state->fb);
4951 	int ret;
4952 
4953 	memset(plane_info, 0, sizeof(*plane_info));
4954 
4955 	switch (fb->format->format) {
4956 	case DRM_FORMAT_C8:
4957 		plane_info->format =
4958 			SURFACE_PIXEL_FORMAT_GRPH_PALETA_256_COLORS;
4959 		break;
4960 	case DRM_FORMAT_RGB565:
4961 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_RGB565;
4962 		break;
4963 	case DRM_FORMAT_XRGB8888:
4964 	case DRM_FORMAT_ARGB8888:
4965 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_ARGB8888;
4966 		break;
4967 	case DRM_FORMAT_XRGB2101010:
4968 	case DRM_FORMAT_ARGB2101010:
4969 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_ARGB2101010;
4970 		break;
4971 	case DRM_FORMAT_XBGR2101010:
4972 	case DRM_FORMAT_ABGR2101010:
4973 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_ABGR2101010;
4974 		break;
4975 	case DRM_FORMAT_XBGR8888:
4976 	case DRM_FORMAT_ABGR8888:
4977 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_ABGR8888;
4978 		break;
4979 	case DRM_FORMAT_NV21:
4980 		plane_info->format = SURFACE_PIXEL_FORMAT_VIDEO_420_YCbCr;
4981 		break;
4982 	case DRM_FORMAT_NV12:
4983 		plane_info->format = SURFACE_PIXEL_FORMAT_VIDEO_420_YCrCb;
4984 		break;
4985 	case DRM_FORMAT_P010:
4986 		plane_info->format = SURFACE_PIXEL_FORMAT_VIDEO_420_10bpc_YCrCb;
4987 		break;
4988 	case DRM_FORMAT_XRGB16161616F:
4989 	case DRM_FORMAT_ARGB16161616F:
4990 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_ARGB16161616F;
4991 		break;
4992 	case DRM_FORMAT_XBGR16161616F:
4993 	case DRM_FORMAT_ABGR16161616F:
4994 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_ABGR16161616F;
4995 		break;
4996 	case DRM_FORMAT_XRGB16161616:
4997 	case DRM_FORMAT_ARGB16161616:
4998 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_ARGB16161616;
4999 		break;
5000 	case DRM_FORMAT_XBGR16161616:
5001 	case DRM_FORMAT_ABGR16161616:
5002 		plane_info->format = SURFACE_PIXEL_FORMAT_GRPH_ABGR16161616;
5003 		break;
5004 	default:
5005 		DRM_ERROR(
5006 			"Unsupported screen format %p4cc\n",
5007 			&fb->format->format);
5008 		return -EINVAL;
5009 	}
5010 
5011 	switch (plane_state->rotation & DRM_MODE_ROTATE_MASK) {
5012 	case DRM_MODE_ROTATE_0:
5013 		plane_info->rotation = ROTATION_ANGLE_0;
5014 		break;
5015 	case DRM_MODE_ROTATE_90:
5016 		plane_info->rotation = ROTATION_ANGLE_90;
5017 		break;
5018 	case DRM_MODE_ROTATE_180:
5019 		plane_info->rotation = ROTATION_ANGLE_180;
5020 		break;
5021 	case DRM_MODE_ROTATE_270:
5022 		plane_info->rotation = ROTATION_ANGLE_270;
5023 		break;
5024 	default:
5025 		plane_info->rotation = ROTATION_ANGLE_0;
5026 		break;
5027 	}
5028 
5029 
5030 	plane_info->visible = true;
5031 	plane_info->stereo_format = PLANE_STEREO_FORMAT_NONE;
5032 
5033 	plane_info->layer_index = plane_state->normalized_zpos;
5034 
5035 	ret = fill_plane_color_attributes(plane_state, plane_info->format,
5036 					  &plane_info->color_space);
5037 	if (ret)
5038 		return ret;
5039 
5040 	ret = amdgpu_dm_plane_fill_plane_buffer_attributes(adev, afb, plane_info->format,
5041 					   plane_info->rotation, tiling_flags,
5042 					   &plane_info->tiling_info,
5043 					   &plane_info->plane_size,
5044 					   &plane_info->dcc, address,
5045 					   tmz_surface, force_disable_dcc);
5046 	if (ret)
5047 		return ret;
5048 
5049 	amdgpu_dm_plane_fill_blending_from_plane_state(
5050 		plane_state, &plane_info->per_pixel_alpha, &plane_info->pre_multiplied_alpha,
5051 		&plane_info->global_alpha, &plane_info->global_alpha_value);
5052 
5053 	return 0;
5054 }
5055 
5056 static int fill_dc_plane_attributes(struct amdgpu_device *adev,
5057 				    struct dc_plane_state *dc_plane_state,
5058 				    struct drm_plane_state *plane_state,
5059 				    struct drm_crtc_state *crtc_state)
5060 {
5061 	struct dm_crtc_state *dm_crtc_state = to_dm_crtc_state(crtc_state);
5062 	struct amdgpu_framebuffer *afb = (struct amdgpu_framebuffer *)plane_state->fb;
5063 	struct dc_scaling_info scaling_info;
5064 	struct dc_plane_info plane_info;
5065 	int ret;
5066 	bool force_disable_dcc = false;
5067 
5068 	ret = amdgpu_dm_plane_fill_dc_scaling_info(adev, plane_state, &scaling_info);
5069 	if (ret)
5070 		return ret;
5071 
5072 	dc_plane_state->src_rect = scaling_info.src_rect;
5073 	dc_plane_state->dst_rect = scaling_info.dst_rect;
5074 	dc_plane_state->clip_rect = scaling_info.clip_rect;
5075 	dc_plane_state->scaling_quality = scaling_info.scaling_quality;
5076 
5077 	force_disable_dcc = adev->asic_type == CHIP_RAVEN && adev->in_suspend;
5078 	ret = fill_dc_plane_info_and_addr(adev, plane_state,
5079 					  afb->tiling_flags,
5080 					  &plane_info,
5081 					  &dc_plane_state->address,
5082 					  afb->tmz_surface,
5083 					  force_disable_dcc);
5084 	if (ret)
5085 		return ret;
5086 
5087 	dc_plane_state->format = plane_info.format;
5088 	dc_plane_state->color_space = plane_info.color_space;
5089 	dc_plane_state->format = plane_info.format;
5090 	dc_plane_state->plane_size = plane_info.plane_size;
5091 	dc_plane_state->rotation = plane_info.rotation;
5092 	dc_plane_state->horizontal_mirror = plane_info.horizontal_mirror;
5093 	dc_plane_state->stereo_format = plane_info.stereo_format;
5094 	dc_plane_state->tiling_info = plane_info.tiling_info;
5095 	dc_plane_state->visible = plane_info.visible;
5096 	dc_plane_state->per_pixel_alpha = plane_info.per_pixel_alpha;
5097 	dc_plane_state->pre_multiplied_alpha = plane_info.pre_multiplied_alpha;
5098 	dc_plane_state->global_alpha = plane_info.global_alpha;
5099 	dc_plane_state->global_alpha_value = plane_info.global_alpha_value;
5100 	dc_plane_state->dcc = plane_info.dcc;
5101 	dc_plane_state->layer_index = plane_info.layer_index;
5102 	dc_plane_state->flip_int_enabled = true;
5103 
5104 	/*
5105 	 * Always set input transfer function, since plane state is refreshed
5106 	 * every time.
5107 	 */
5108 	ret = amdgpu_dm_update_plane_color_mgmt(dm_crtc_state, dc_plane_state);
5109 	if (ret)
5110 		return ret;
5111 
5112 	return 0;
5113 }
5114 
5115 static inline void fill_dc_dirty_rect(struct drm_plane *plane,
5116 				      struct rect *dirty_rect, int32_t x,
5117 				      s32 y, s32 width, s32 height,
5118 				      int *i, bool ffu)
5119 {
5120 	WARN_ON(*i >= DC_MAX_DIRTY_RECTS);
5121 
5122 	dirty_rect->x = x;
5123 	dirty_rect->y = y;
5124 	dirty_rect->width = width;
5125 	dirty_rect->height = height;
5126 
5127 	if (ffu)
5128 		drm_dbg(plane->dev,
5129 			"[PLANE:%d] PSR FFU dirty rect size (%d, %d)\n",
5130 			plane->base.id, width, height);
5131 	else
5132 		drm_dbg(plane->dev,
5133 			"[PLANE:%d] PSR SU dirty rect at (%d, %d) size (%d, %d)",
5134 			plane->base.id, x, y, width, height);
5135 
5136 	(*i)++;
5137 }
5138 
5139 /**
5140  * fill_dc_dirty_rects() - Fill DC dirty regions for PSR selective updates
5141  *
5142  * @plane: DRM plane containing dirty regions that need to be flushed to the eDP
5143  *         remote fb
5144  * @old_plane_state: Old state of @plane
5145  * @new_plane_state: New state of @plane
5146  * @crtc_state: New state of CRTC connected to the @plane
5147  * @flip_addrs: DC flip tracking struct, which also tracts dirty rects
5148  * @dirty_regions_changed: dirty regions changed
5149  *
5150  * For PSR SU, DC informs the DMUB uController of dirty rectangle regions
5151  * (referred to as "damage clips" in DRM nomenclature) that require updating on
5152  * the eDP remote buffer. The responsibility of specifying the dirty regions is
5153  * amdgpu_dm's.
5154  *
5155  * A damage-aware DRM client should fill the FB_DAMAGE_CLIPS property on the
5156  * plane with regions that require flushing to the eDP remote buffer. In
5157  * addition, certain use cases - such as cursor and multi-plane overlay (MPO) -
5158  * implicitly provide damage clips without any client support via the plane
5159  * bounds.
5160  */
5161 static void fill_dc_dirty_rects(struct drm_plane *plane,
5162 				struct drm_plane_state *old_plane_state,
5163 				struct drm_plane_state *new_plane_state,
5164 				struct drm_crtc_state *crtc_state,
5165 				struct dc_flip_addrs *flip_addrs,
5166 				bool *dirty_regions_changed)
5167 {
5168 	struct dm_crtc_state *dm_crtc_state = to_dm_crtc_state(crtc_state);
5169 	struct rect *dirty_rects = flip_addrs->dirty_rects;
5170 	u32 num_clips;
5171 	struct drm_mode_rect *clips;
5172 	bool bb_changed;
5173 	bool fb_changed;
5174 	u32 i = 0;
5175 	*dirty_regions_changed = false;
5176 
5177 	/*
5178 	 * Cursor plane has it's own dirty rect update interface. See
5179 	 * dcn10_dmub_update_cursor_data and dmub_cmd_update_cursor_info_data
5180 	 */
5181 	if (plane->type == DRM_PLANE_TYPE_CURSOR)
5182 		return;
5183 
5184 	num_clips = drm_plane_get_damage_clips_count(new_plane_state);
5185 	clips = drm_plane_get_damage_clips(new_plane_state);
5186 
5187 	if (!dm_crtc_state->mpo_requested) {
5188 		if (!num_clips || num_clips > DC_MAX_DIRTY_RECTS)
5189 			goto ffu;
5190 
5191 		for (; flip_addrs->dirty_rect_count < num_clips; clips++)
5192 			fill_dc_dirty_rect(new_plane_state->plane,
5193 					   &dirty_rects[flip_addrs->dirty_rect_count],
5194 					   clips->x1, clips->y1,
5195 					   clips->x2 - clips->x1, clips->y2 - clips->y1,
5196 					   &flip_addrs->dirty_rect_count,
5197 					   false);
5198 		return;
5199 	}
5200 
5201 	/*
5202 	 * MPO is requested. Add entire plane bounding box to dirty rects if
5203 	 * flipped to or damaged.
5204 	 *
5205 	 * If plane is moved or resized, also add old bounding box to dirty
5206 	 * rects.
5207 	 */
5208 	fb_changed = old_plane_state->fb->base.id !=
5209 		     new_plane_state->fb->base.id;
5210 	bb_changed = (old_plane_state->crtc_x != new_plane_state->crtc_x ||
5211 		      old_plane_state->crtc_y != new_plane_state->crtc_y ||
5212 		      old_plane_state->crtc_w != new_plane_state->crtc_w ||
5213 		      old_plane_state->crtc_h != new_plane_state->crtc_h);
5214 
5215 	drm_dbg(plane->dev,
5216 		"[PLANE:%d] PSR bb_changed:%d fb_changed:%d num_clips:%d\n",
5217 		new_plane_state->plane->base.id,
5218 		bb_changed, fb_changed, num_clips);
5219 
5220 	*dirty_regions_changed = bb_changed;
5221 
5222 	if ((num_clips + (bb_changed ? 2 : 0)) > DC_MAX_DIRTY_RECTS)
5223 		goto ffu;
5224 
5225 	if (bb_changed) {
5226 		fill_dc_dirty_rect(new_plane_state->plane, &dirty_rects[i],
5227 				   new_plane_state->crtc_x,
5228 				   new_plane_state->crtc_y,
5229 				   new_plane_state->crtc_w,
5230 				   new_plane_state->crtc_h, &i, false);
5231 
5232 		/* Add old plane bounding-box if plane is moved or resized */
5233 		fill_dc_dirty_rect(new_plane_state->plane, &dirty_rects[i],
5234 				   old_plane_state->crtc_x,
5235 				   old_plane_state->crtc_y,
5236 				   old_plane_state->crtc_w,
5237 				   old_plane_state->crtc_h, &i, false);
5238 	}
5239 
5240 	if (num_clips) {
5241 		for (; i < num_clips; clips++)
5242 			fill_dc_dirty_rect(new_plane_state->plane,
5243 					   &dirty_rects[i], clips->x1,
5244 					   clips->y1, clips->x2 - clips->x1,
5245 					   clips->y2 - clips->y1, &i, false);
5246 	} else if (fb_changed && !bb_changed) {
5247 		fill_dc_dirty_rect(new_plane_state->plane, &dirty_rects[i],
5248 				   new_plane_state->crtc_x,
5249 				   new_plane_state->crtc_y,
5250 				   new_plane_state->crtc_w,
5251 				   new_plane_state->crtc_h, &i, false);
5252 	}
5253 
5254 	flip_addrs->dirty_rect_count = i;
5255 	return;
5256 
5257 ffu:
5258 	fill_dc_dirty_rect(new_plane_state->plane, &dirty_rects[0], 0, 0,
5259 			   dm_crtc_state->base.mode.crtc_hdisplay,
5260 			   dm_crtc_state->base.mode.crtc_vdisplay,
5261 			   &flip_addrs->dirty_rect_count, true);
5262 }
5263 
5264 static void update_stream_scaling_settings(const struct drm_display_mode *mode,
5265 					   const struct dm_connector_state *dm_state,
5266 					   struct dc_stream_state *stream)
5267 {
5268 	enum amdgpu_rmx_type rmx_type;
5269 
5270 	struct rect src = { 0 }; /* viewport in composition space*/
5271 	struct rect dst = { 0 }; /* stream addressable area */
5272 
5273 	/* no mode. nothing to be done */
5274 	if (!mode)
5275 		return;
5276 
5277 	/* Full screen scaling by default */
5278 	src.width = mode->hdisplay;
5279 	src.height = mode->vdisplay;
5280 	dst.width = stream->timing.h_addressable;
5281 	dst.height = stream->timing.v_addressable;
5282 
5283 	if (dm_state) {
5284 		rmx_type = dm_state->scaling;
5285 		if (rmx_type == RMX_ASPECT || rmx_type == RMX_OFF) {
5286 			if (src.width * dst.height <
5287 					src.height * dst.width) {
5288 				/* height needs less upscaling/more downscaling */
5289 				dst.width = src.width *
5290 						dst.height / src.height;
5291 			} else {
5292 				/* width needs less upscaling/more downscaling */
5293 				dst.height = src.height *
5294 						dst.width / src.width;
5295 			}
5296 		} else if (rmx_type == RMX_CENTER) {
5297 			dst = src;
5298 		}
5299 
5300 		dst.x = (stream->timing.h_addressable - dst.width) / 2;
5301 		dst.y = (stream->timing.v_addressable - dst.height) / 2;
5302 
5303 		if (dm_state->underscan_enable) {
5304 			dst.x += dm_state->underscan_hborder / 2;
5305 			dst.y += dm_state->underscan_vborder / 2;
5306 			dst.width -= dm_state->underscan_hborder;
5307 			dst.height -= dm_state->underscan_vborder;
5308 		}
5309 	}
5310 
5311 	stream->src = src;
5312 	stream->dst = dst;
5313 
5314 	DRM_DEBUG_KMS("Destination Rectangle x:%d  y:%d  width:%d  height:%d\n",
5315 		      dst.x, dst.y, dst.width, dst.height);
5316 
5317 }
5318 
5319 static enum dc_color_depth
5320 convert_color_depth_from_display_info(const struct drm_connector *connector,
5321 				      bool is_y420, int requested_bpc)
5322 {
5323 	u8 bpc;
5324 
5325 	if (is_y420) {
5326 		bpc = 8;
5327 
5328 		/* Cap display bpc based on HDMI 2.0 HF-VSDB */
5329 		if (connector->display_info.hdmi.y420_dc_modes & DRM_EDID_YCBCR420_DC_48)
5330 			bpc = 16;
5331 		else if (connector->display_info.hdmi.y420_dc_modes & DRM_EDID_YCBCR420_DC_36)
5332 			bpc = 12;
5333 		else if (connector->display_info.hdmi.y420_dc_modes & DRM_EDID_YCBCR420_DC_30)
5334 			bpc = 10;
5335 	} else {
5336 		bpc = (uint8_t)connector->display_info.bpc;
5337 		/* Assume 8 bpc by default if no bpc is specified. */
5338 		bpc = bpc ? bpc : 8;
5339 	}
5340 
5341 	if (requested_bpc > 0) {
5342 		/*
5343 		 * Cap display bpc based on the user requested value.
5344 		 *
5345 		 * The value for state->max_bpc may not correctly updated
5346 		 * depending on when the connector gets added to the state
5347 		 * or if this was called outside of atomic check, so it
5348 		 * can't be used directly.
5349 		 */
5350 		bpc = min_t(u8, bpc, requested_bpc);
5351 
5352 		/* Round down to the nearest even number. */
5353 		bpc = bpc - (bpc & 1);
5354 	}
5355 
5356 	switch (bpc) {
5357 	case 0:
5358 		/*
5359 		 * Temporary Work around, DRM doesn't parse color depth for
5360 		 * EDID revision before 1.4
5361 		 * TODO: Fix edid parsing
5362 		 */
5363 		return COLOR_DEPTH_888;
5364 	case 6:
5365 		return COLOR_DEPTH_666;
5366 	case 8:
5367 		return COLOR_DEPTH_888;
5368 	case 10:
5369 		return COLOR_DEPTH_101010;
5370 	case 12:
5371 		return COLOR_DEPTH_121212;
5372 	case 14:
5373 		return COLOR_DEPTH_141414;
5374 	case 16:
5375 		return COLOR_DEPTH_161616;
5376 	default:
5377 		return COLOR_DEPTH_UNDEFINED;
5378 	}
5379 }
5380 
5381 static enum dc_aspect_ratio
5382 get_aspect_ratio(const struct drm_display_mode *mode_in)
5383 {
5384 	/* 1-1 mapping, since both enums follow the HDMI spec. */
5385 	return (enum dc_aspect_ratio) mode_in->picture_aspect_ratio;
5386 }
5387 
5388 static enum dc_color_space
5389 get_output_color_space(const struct dc_crtc_timing *dc_crtc_timing,
5390 		       const struct drm_connector_state *connector_state)
5391 {
5392 	enum dc_color_space color_space = COLOR_SPACE_SRGB;
5393 
5394 	switch (connector_state->colorspace) {
5395 	case DRM_MODE_COLORIMETRY_BT601_YCC:
5396 		if (dc_crtc_timing->flags.Y_ONLY)
5397 			color_space = COLOR_SPACE_YCBCR601_LIMITED;
5398 		else
5399 			color_space = COLOR_SPACE_YCBCR601;
5400 		break;
5401 	case DRM_MODE_COLORIMETRY_BT709_YCC:
5402 		if (dc_crtc_timing->flags.Y_ONLY)
5403 			color_space = COLOR_SPACE_YCBCR709_LIMITED;
5404 		else
5405 			color_space = COLOR_SPACE_YCBCR709;
5406 		break;
5407 	case DRM_MODE_COLORIMETRY_OPRGB:
5408 		color_space = COLOR_SPACE_ADOBERGB;
5409 		break;
5410 	case DRM_MODE_COLORIMETRY_BT2020_RGB:
5411 	case DRM_MODE_COLORIMETRY_BT2020_YCC:
5412 		if (dc_crtc_timing->pixel_encoding == PIXEL_ENCODING_RGB)
5413 			color_space = COLOR_SPACE_2020_RGB_FULLRANGE;
5414 		else
5415 			color_space = COLOR_SPACE_2020_YCBCR;
5416 		break;
5417 	case DRM_MODE_COLORIMETRY_DEFAULT: // ITU601
5418 	default:
5419 		if (dc_crtc_timing->pixel_encoding == PIXEL_ENCODING_RGB) {
5420 			color_space = COLOR_SPACE_SRGB;
5421 		/*
5422 		 * 27030khz is the separation point between HDTV and SDTV
5423 		 * according to HDMI spec, we use YCbCr709 and YCbCr601
5424 		 * respectively
5425 		 */
5426 		} else if (dc_crtc_timing->pix_clk_100hz > 270300) {
5427 			if (dc_crtc_timing->flags.Y_ONLY)
5428 				color_space =
5429 					COLOR_SPACE_YCBCR709_LIMITED;
5430 			else
5431 				color_space = COLOR_SPACE_YCBCR709;
5432 		} else {
5433 			if (dc_crtc_timing->flags.Y_ONLY)
5434 				color_space =
5435 					COLOR_SPACE_YCBCR601_LIMITED;
5436 			else
5437 				color_space = COLOR_SPACE_YCBCR601;
5438 		}
5439 		break;
5440 	}
5441 
5442 	return color_space;
5443 }
5444 
5445 static enum display_content_type
5446 get_output_content_type(const struct drm_connector_state *connector_state)
5447 {
5448 	switch (connector_state->content_type) {
5449 	default:
5450 	case DRM_MODE_CONTENT_TYPE_NO_DATA:
5451 		return DISPLAY_CONTENT_TYPE_NO_DATA;
5452 	case DRM_MODE_CONTENT_TYPE_GRAPHICS:
5453 		return DISPLAY_CONTENT_TYPE_GRAPHICS;
5454 	case DRM_MODE_CONTENT_TYPE_PHOTO:
5455 		return DISPLAY_CONTENT_TYPE_PHOTO;
5456 	case DRM_MODE_CONTENT_TYPE_CINEMA:
5457 		return DISPLAY_CONTENT_TYPE_CINEMA;
5458 	case DRM_MODE_CONTENT_TYPE_GAME:
5459 		return DISPLAY_CONTENT_TYPE_GAME;
5460 	}
5461 }
5462 
5463 static bool adjust_colour_depth_from_display_info(
5464 	struct dc_crtc_timing *timing_out,
5465 	const struct drm_display_info *info)
5466 {
5467 	enum dc_color_depth depth = timing_out->display_color_depth;
5468 	int normalized_clk;
5469 
5470 	do {
5471 		normalized_clk = timing_out->pix_clk_100hz / 10;
5472 		/* YCbCr 4:2:0 requires additional adjustment of 1/2 */
5473 		if (timing_out->pixel_encoding == PIXEL_ENCODING_YCBCR420)
5474 			normalized_clk /= 2;
5475 		/* Adjusting pix clock following on HDMI spec based on colour depth */
5476 		switch (depth) {
5477 		case COLOR_DEPTH_888:
5478 			break;
5479 		case COLOR_DEPTH_101010:
5480 			normalized_clk = (normalized_clk * 30) / 24;
5481 			break;
5482 		case COLOR_DEPTH_121212:
5483 			normalized_clk = (normalized_clk * 36) / 24;
5484 			break;
5485 		case COLOR_DEPTH_161616:
5486 			normalized_clk = (normalized_clk * 48) / 24;
5487 			break;
5488 		default:
5489 			/* The above depths are the only ones valid for HDMI. */
5490 			return false;
5491 		}
5492 		if (normalized_clk <= info->max_tmds_clock) {
5493 			timing_out->display_color_depth = depth;
5494 			return true;
5495 		}
5496 	} while (--depth > COLOR_DEPTH_666);
5497 	return false;
5498 }
5499 
5500 static void fill_stream_properties_from_drm_display_mode(
5501 	struct dc_stream_state *stream,
5502 	const struct drm_display_mode *mode_in,
5503 	const struct drm_connector *connector,
5504 	const struct drm_connector_state *connector_state,
5505 	const struct dc_stream_state *old_stream,
5506 	int requested_bpc)
5507 {
5508 	struct dc_crtc_timing *timing_out = &stream->timing;
5509 	const struct drm_display_info *info = &connector->display_info;
5510 	struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
5511 	struct hdmi_vendor_infoframe hv_frame;
5512 	struct hdmi_avi_infoframe avi_frame;
5513 
5514 	memset(&hv_frame, 0, sizeof(hv_frame));
5515 	memset(&avi_frame, 0, sizeof(avi_frame));
5516 
5517 	timing_out->h_border_left = 0;
5518 	timing_out->h_border_right = 0;
5519 	timing_out->v_border_top = 0;
5520 	timing_out->v_border_bottom = 0;
5521 	/* TODO: un-hardcode */
5522 	if (drm_mode_is_420_only(info, mode_in)
5523 			&& stream->signal == SIGNAL_TYPE_HDMI_TYPE_A)
5524 		timing_out->pixel_encoding = PIXEL_ENCODING_YCBCR420;
5525 	else if (drm_mode_is_420_also(info, mode_in)
5526 			&& aconnector->force_yuv420_output)
5527 		timing_out->pixel_encoding = PIXEL_ENCODING_YCBCR420;
5528 	else if ((connector->display_info.color_formats & DRM_COLOR_FORMAT_YCBCR444)
5529 			&& stream->signal == SIGNAL_TYPE_HDMI_TYPE_A)
5530 		timing_out->pixel_encoding = PIXEL_ENCODING_YCBCR444;
5531 	else
5532 		timing_out->pixel_encoding = PIXEL_ENCODING_RGB;
5533 
5534 	timing_out->timing_3d_format = TIMING_3D_FORMAT_NONE;
5535 	timing_out->display_color_depth = convert_color_depth_from_display_info(
5536 		connector,
5537 		(timing_out->pixel_encoding == PIXEL_ENCODING_YCBCR420),
5538 		requested_bpc);
5539 	timing_out->scan_type = SCANNING_TYPE_NODATA;
5540 	timing_out->hdmi_vic = 0;
5541 
5542 	if (old_stream) {
5543 		timing_out->vic = old_stream->timing.vic;
5544 		timing_out->flags.HSYNC_POSITIVE_POLARITY = old_stream->timing.flags.HSYNC_POSITIVE_POLARITY;
5545 		timing_out->flags.VSYNC_POSITIVE_POLARITY = old_stream->timing.flags.VSYNC_POSITIVE_POLARITY;
5546 	} else {
5547 		timing_out->vic = drm_match_cea_mode(mode_in);
5548 		if (mode_in->flags & DRM_MODE_FLAG_PHSYNC)
5549 			timing_out->flags.HSYNC_POSITIVE_POLARITY = 1;
5550 		if (mode_in->flags & DRM_MODE_FLAG_PVSYNC)
5551 			timing_out->flags.VSYNC_POSITIVE_POLARITY = 1;
5552 	}
5553 
5554 	if (stream->signal == SIGNAL_TYPE_HDMI_TYPE_A) {
5555 		drm_hdmi_avi_infoframe_from_display_mode(&avi_frame, (struct drm_connector *)connector, mode_in);
5556 		timing_out->vic = avi_frame.video_code;
5557 		drm_hdmi_vendor_infoframe_from_display_mode(&hv_frame, (struct drm_connector *)connector, mode_in);
5558 		timing_out->hdmi_vic = hv_frame.vic;
5559 	}
5560 
5561 	if (is_freesync_video_mode(mode_in, aconnector)) {
5562 		timing_out->h_addressable = mode_in->hdisplay;
5563 		timing_out->h_total = mode_in->htotal;
5564 		timing_out->h_sync_width = mode_in->hsync_end - mode_in->hsync_start;
5565 		timing_out->h_front_porch = mode_in->hsync_start - mode_in->hdisplay;
5566 		timing_out->v_total = mode_in->vtotal;
5567 		timing_out->v_addressable = mode_in->vdisplay;
5568 		timing_out->v_front_porch = mode_in->vsync_start - mode_in->vdisplay;
5569 		timing_out->v_sync_width = mode_in->vsync_end - mode_in->vsync_start;
5570 		timing_out->pix_clk_100hz = mode_in->clock * 10;
5571 	} else {
5572 		timing_out->h_addressable = mode_in->crtc_hdisplay;
5573 		timing_out->h_total = mode_in->crtc_htotal;
5574 		timing_out->h_sync_width = mode_in->crtc_hsync_end - mode_in->crtc_hsync_start;
5575 		timing_out->h_front_porch = mode_in->crtc_hsync_start - mode_in->crtc_hdisplay;
5576 		timing_out->v_total = mode_in->crtc_vtotal;
5577 		timing_out->v_addressable = mode_in->crtc_vdisplay;
5578 		timing_out->v_front_porch = mode_in->crtc_vsync_start - mode_in->crtc_vdisplay;
5579 		timing_out->v_sync_width = mode_in->crtc_vsync_end - mode_in->crtc_vsync_start;
5580 		timing_out->pix_clk_100hz = mode_in->crtc_clock * 10;
5581 	}
5582 
5583 	timing_out->aspect_ratio = get_aspect_ratio(mode_in);
5584 
5585 	stream->out_transfer_func->type = TF_TYPE_PREDEFINED;
5586 	stream->out_transfer_func->tf = TRANSFER_FUNCTION_SRGB;
5587 	if (stream->signal == SIGNAL_TYPE_HDMI_TYPE_A) {
5588 		if (!adjust_colour_depth_from_display_info(timing_out, info) &&
5589 		    drm_mode_is_420_also(info, mode_in) &&
5590 		    timing_out->pixel_encoding != PIXEL_ENCODING_YCBCR420) {
5591 			timing_out->pixel_encoding = PIXEL_ENCODING_YCBCR420;
5592 			adjust_colour_depth_from_display_info(timing_out, info);
5593 		}
5594 	}
5595 
5596 	stream->output_color_space = get_output_color_space(timing_out, connector_state);
5597 	stream->content_type = get_output_content_type(connector_state);
5598 }
5599 
5600 static void fill_audio_info(struct audio_info *audio_info,
5601 			    const struct drm_connector *drm_connector,
5602 			    const struct dc_sink *dc_sink)
5603 {
5604 	int i = 0;
5605 	int cea_revision = 0;
5606 	const struct dc_edid_caps *edid_caps = &dc_sink->edid_caps;
5607 
5608 	audio_info->manufacture_id = edid_caps->manufacturer_id;
5609 	audio_info->product_id = edid_caps->product_id;
5610 
5611 	cea_revision = drm_connector->display_info.cea_rev;
5612 
5613 	strscpy(audio_info->display_name,
5614 		edid_caps->display_name,
5615 		AUDIO_INFO_DISPLAY_NAME_SIZE_IN_CHARS);
5616 
5617 	if (cea_revision >= 3) {
5618 		audio_info->mode_count = edid_caps->audio_mode_count;
5619 
5620 		for (i = 0; i < audio_info->mode_count; ++i) {
5621 			audio_info->modes[i].format_code =
5622 					(enum audio_format_code)
5623 					(edid_caps->audio_modes[i].format_code);
5624 			audio_info->modes[i].channel_count =
5625 					edid_caps->audio_modes[i].channel_count;
5626 			audio_info->modes[i].sample_rates.all =
5627 					edid_caps->audio_modes[i].sample_rate;
5628 			audio_info->modes[i].sample_size =
5629 					edid_caps->audio_modes[i].sample_size;
5630 		}
5631 	}
5632 
5633 	audio_info->flags.all = edid_caps->speaker_flags;
5634 
5635 	/* TODO: We only check for the progressive mode, check for interlace mode too */
5636 	if (drm_connector->latency_present[0]) {
5637 		audio_info->video_latency = drm_connector->video_latency[0];
5638 		audio_info->audio_latency = drm_connector->audio_latency[0];
5639 	}
5640 
5641 	/* TODO: For DP, video and audio latency should be calculated from DPCD caps */
5642 
5643 }
5644 
5645 static void
5646 copy_crtc_timing_for_drm_display_mode(const struct drm_display_mode *src_mode,
5647 				      struct drm_display_mode *dst_mode)
5648 {
5649 	dst_mode->crtc_hdisplay = src_mode->crtc_hdisplay;
5650 	dst_mode->crtc_vdisplay = src_mode->crtc_vdisplay;
5651 	dst_mode->crtc_clock = src_mode->crtc_clock;
5652 	dst_mode->crtc_hblank_start = src_mode->crtc_hblank_start;
5653 	dst_mode->crtc_hblank_end = src_mode->crtc_hblank_end;
5654 	dst_mode->crtc_hsync_start =  src_mode->crtc_hsync_start;
5655 	dst_mode->crtc_hsync_end = src_mode->crtc_hsync_end;
5656 	dst_mode->crtc_htotal = src_mode->crtc_htotal;
5657 	dst_mode->crtc_hskew = src_mode->crtc_hskew;
5658 	dst_mode->crtc_vblank_start = src_mode->crtc_vblank_start;
5659 	dst_mode->crtc_vblank_end = src_mode->crtc_vblank_end;
5660 	dst_mode->crtc_vsync_start = src_mode->crtc_vsync_start;
5661 	dst_mode->crtc_vsync_end = src_mode->crtc_vsync_end;
5662 	dst_mode->crtc_vtotal = src_mode->crtc_vtotal;
5663 }
5664 
5665 static void
5666 decide_crtc_timing_for_drm_display_mode(struct drm_display_mode *drm_mode,
5667 					const struct drm_display_mode *native_mode,
5668 					bool scale_enabled)
5669 {
5670 	if (scale_enabled) {
5671 		copy_crtc_timing_for_drm_display_mode(native_mode, drm_mode);
5672 	} else if (native_mode->clock == drm_mode->clock &&
5673 			native_mode->htotal == drm_mode->htotal &&
5674 			native_mode->vtotal == drm_mode->vtotal) {
5675 		copy_crtc_timing_for_drm_display_mode(native_mode, drm_mode);
5676 	} else {
5677 		/* no scaling nor amdgpu inserted, no need to patch */
5678 	}
5679 }
5680 
5681 static struct dc_sink *
5682 create_fake_sink(struct amdgpu_dm_connector *aconnector)
5683 {
5684 	struct dc_sink_init_data sink_init_data = { 0 };
5685 	struct dc_sink *sink = NULL;
5686 
5687 	sink_init_data.link = aconnector->dc_link;
5688 	sink_init_data.sink_signal = aconnector->dc_link->connector_signal;
5689 
5690 	sink = dc_sink_create(&sink_init_data);
5691 	if (!sink) {
5692 		DRM_ERROR("Failed to create sink!\n");
5693 		return NULL;
5694 	}
5695 	sink->sink_signal = SIGNAL_TYPE_VIRTUAL;
5696 
5697 	return sink;
5698 }
5699 
5700 static void set_multisync_trigger_params(
5701 		struct dc_stream_state *stream)
5702 {
5703 	struct dc_stream_state *master = NULL;
5704 
5705 	if (stream->triggered_crtc_reset.enabled) {
5706 		master = stream->triggered_crtc_reset.event_source;
5707 		stream->triggered_crtc_reset.event =
5708 			master->timing.flags.VSYNC_POSITIVE_POLARITY ?
5709 			CRTC_EVENT_VSYNC_RISING : CRTC_EVENT_VSYNC_FALLING;
5710 		stream->triggered_crtc_reset.delay = TRIGGER_DELAY_NEXT_PIXEL;
5711 	}
5712 }
5713 
5714 static void set_master_stream(struct dc_stream_state *stream_set[],
5715 			      int stream_count)
5716 {
5717 	int j, highest_rfr = 0, master_stream = 0;
5718 
5719 	for (j = 0;  j < stream_count; j++) {
5720 		if (stream_set[j] && stream_set[j]->triggered_crtc_reset.enabled) {
5721 			int refresh_rate = 0;
5722 
5723 			refresh_rate = (stream_set[j]->timing.pix_clk_100hz*100)/
5724 				(stream_set[j]->timing.h_total*stream_set[j]->timing.v_total);
5725 			if (refresh_rate > highest_rfr) {
5726 				highest_rfr = refresh_rate;
5727 				master_stream = j;
5728 			}
5729 		}
5730 	}
5731 	for (j = 0;  j < stream_count; j++) {
5732 		if (stream_set[j])
5733 			stream_set[j]->triggered_crtc_reset.event_source = stream_set[master_stream];
5734 	}
5735 }
5736 
5737 static void dm_enable_per_frame_crtc_master_sync(struct dc_state *context)
5738 {
5739 	int i = 0;
5740 	struct dc_stream_state *stream;
5741 
5742 	if (context->stream_count < 2)
5743 		return;
5744 	for (i = 0; i < context->stream_count ; i++) {
5745 		if (!context->streams[i])
5746 			continue;
5747 		/*
5748 		 * TODO: add a function to read AMD VSDB bits and set
5749 		 * crtc_sync_master.multi_sync_enabled flag
5750 		 * For now it's set to false
5751 		 */
5752 	}
5753 
5754 	set_master_stream(context->streams, context->stream_count);
5755 
5756 	for (i = 0; i < context->stream_count ; i++) {
5757 		stream = context->streams[i];
5758 
5759 		if (!stream)
5760 			continue;
5761 
5762 		set_multisync_trigger_params(stream);
5763 	}
5764 }
5765 
5766 /**
5767  * DOC: FreeSync Video
5768  *
5769  * When a userspace application wants to play a video, the content follows a
5770  * standard format definition that usually specifies the FPS for that format.
5771  * The below list illustrates some video format and the expected FPS,
5772  * respectively:
5773  *
5774  * - TV/NTSC (23.976 FPS)
5775  * - Cinema (24 FPS)
5776  * - TV/PAL (25 FPS)
5777  * - TV/NTSC (29.97 FPS)
5778  * - TV/NTSC (30 FPS)
5779  * - Cinema HFR (48 FPS)
5780  * - TV/PAL (50 FPS)
5781  * - Commonly used (60 FPS)
5782  * - Multiples of 24 (48,72,96 FPS)
5783  *
5784  * The list of standards video format is not huge and can be added to the
5785  * connector modeset list beforehand. With that, userspace can leverage
5786  * FreeSync to extends the front porch in order to attain the target refresh
5787  * rate. Such a switch will happen seamlessly, without screen blanking or
5788  * reprogramming of the output in any other way. If the userspace requests a
5789  * modesetting change compatible with FreeSync modes that only differ in the
5790  * refresh rate, DC will skip the full update and avoid blink during the
5791  * transition. For example, the video player can change the modesetting from
5792  * 60Hz to 30Hz for playing TV/NTSC content when it goes full screen without
5793  * causing any display blink. This same concept can be applied to a mode
5794  * setting change.
5795  */
5796 static struct drm_display_mode *
5797 get_highest_refresh_rate_mode(struct amdgpu_dm_connector *aconnector,
5798 		bool use_probed_modes)
5799 {
5800 	struct drm_display_mode *m, *m_pref = NULL;
5801 	u16 current_refresh, highest_refresh;
5802 	struct list_head *list_head = use_probed_modes ?
5803 		&aconnector->base.probed_modes :
5804 		&aconnector->base.modes;
5805 
5806 	if (aconnector->freesync_vid_base.clock != 0)
5807 		return &aconnector->freesync_vid_base;
5808 
5809 	/* Find the preferred mode */
5810 	list_for_each_entry(m, list_head, head) {
5811 		if (m->type & DRM_MODE_TYPE_PREFERRED) {
5812 			m_pref = m;
5813 			break;
5814 		}
5815 	}
5816 
5817 	if (!m_pref) {
5818 		/* Probably an EDID with no preferred mode. Fallback to first entry */
5819 		m_pref = list_first_entry_or_null(
5820 				&aconnector->base.modes, struct drm_display_mode, head);
5821 		if (!m_pref) {
5822 			DRM_DEBUG_DRIVER("No preferred mode found in EDID\n");
5823 			return NULL;
5824 		}
5825 	}
5826 
5827 	highest_refresh = drm_mode_vrefresh(m_pref);
5828 
5829 	/*
5830 	 * Find the mode with highest refresh rate with same resolution.
5831 	 * For some monitors, preferred mode is not the mode with highest
5832 	 * supported refresh rate.
5833 	 */
5834 	list_for_each_entry(m, list_head, head) {
5835 		current_refresh  = drm_mode_vrefresh(m);
5836 
5837 		if (m->hdisplay == m_pref->hdisplay &&
5838 		    m->vdisplay == m_pref->vdisplay &&
5839 		    highest_refresh < current_refresh) {
5840 			highest_refresh = current_refresh;
5841 			m_pref = m;
5842 		}
5843 	}
5844 
5845 	drm_mode_copy(&aconnector->freesync_vid_base, m_pref);
5846 	return m_pref;
5847 }
5848 
5849 static bool is_freesync_video_mode(const struct drm_display_mode *mode,
5850 		struct amdgpu_dm_connector *aconnector)
5851 {
5852 	struct drm_display_mode *high_mode;
5853 	int timing_diff;
5854 
5855 	high_mode = get_highest_refresh_rate_mode(aconnector, false);
5856 	if (!high_mode || !mode)
5857 		return false;
5858 
5859 	timing_diff = high_mode->vtotal - mode->vtotal;
5860 
5861 	if (high_mode->clock == 0 || high_mode->clock != mode->clock ||
5862 	    high_mode->hdisplay != mode->hdisplay ||
5863 	    high_mode->vdisplay != mode->vdisplay ||
5864 	    high_mode->hsync_start != mode->hsync_start ||
5865 	    high_mode->hsync_end != mode->hsync_end ||
5866 	    high_mode->htotal != mode->htotal ||
5867 	    high_mode->hskew != mode->hskew ||
5868 	    high_mode->vscan != mode->vscan ||
5869 	    high_mode->vsync_start - mode->vsync_start != timing_diff ||
5870 	    high_mode->vsync_end - mode->vsync_end != timing_diff)
5871 		return false;
5872 	else
5873 		return true;
5874 }
5875 
5876 static void update_dsc_caps(struct amdgpu_dm_connector *aconnector,
5877 			    struct dc_sink *sink, struct dc_stream_state *stream,
5878 			    struct dsc_dec_dpcd_caps *dsc_caps)
5879 {
5880 	stream->timing.flags.DSC = 0;
5881 	dsc_caps->is_dsc_supported = false;
5882 
5883 	if (aconnector->dc_link && (sink->sink_signal == SIGNAL_TYPE_DISPLAY_PORT ||
5884 	    sink->sink_signal == SIGNAL_TYPE_EDP)) {
5885 		if (sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_NONE ||
5886 			sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER)
5887 			dc_dsc_parse_dsc_dpcd(aconnector->dc_link->ctx->dc,
5888 				aconnector->dc_link->dpcd_caps.dsc_caps.dsc_basic_caps.raw,
5889 				aconnector->dc_link->dpcd_caps.dsc_caps.dsc_branch_decoder_caps.raw,
5890 				dsc_caps);
5891 	}
5892 }
5893 
5894 
5895 static void apply_dsc_policy_for_edp(struct amdgpu_dm_connector *aconnector,
5896 				    struct dc_sink *sink, struct dc_stream_state *stream,
5897 				    struct dsc_dec_dpcd_caps *dsc_caps,
5898 				    uint32_t max_dsc_target_bpp_limit_override)
5899 {
5900 	const struct dc_link_settings *verified_link_cap = NULL;
5901 	u32 link_bw_in_kbps;
5902 	u32 edp_min_bpp_x16, edp_max_bpp_x16;
5903 	struct dc *dc = sink->ctx->dc;
5904 	struct dc_dsc_bw_range bw_range = {0};
5905 	struct dc_dsc_config dsc_cfg = {0};
5906 	struct dc_dsc_config_options dsc_options = {0};
5907 
5908 	dc_dsc_get_default_config_option(dc, &dsc_options);
5909 	dsc_options.max_target_bpp_limit_override_x16 = max_dsc_target_bpp_limit_override * 16;
5910 
5911 	verified_link_cap = dc_link_get_link_cap(stream->link);
5912 	link_bw_in_kbps = dc_link_bandwidth_kbps(stream->link, verified_link_cap);
5913 	edp_min_bpp_x16 = 8 * 16;
5914 	edp_max_bpp_x16 = 8 * 16;
5915 
5916 	if (edp_max_bpp_x16 > dsc_caps->edp_max_bits_per_pixel)
5917 		edp_max_bpp_x16 = dsc_caps->edp_max_bits_per_pixel;
5918 
5919 	if (edp_max_bpp_x16 < edp_min_bpp_x16)
5920 		edp_min_bpp_x16 = edp_max_bpp_x16;
5921 
5922 	if (dc_dsc_compute_bandwidth_range(dc->res_pool->dscs[0],
5923 				dc->debug.dsc_min_slice_height_override,
5924 				edp_min_bpp_x16, edp_max_bpp_x16,
5925 				dsc_caps,
5926 				&stream->timing,
5927 				dc_link_get_highest_encoding_format(aconnector->dc_link),
5928 				&bw_range)) {
5929 
5930 		if (bw_range.max_kbps < link_bw_in_kbps) {
5931 			if (dc_dsc_compute_config(dc->res_pool->dscs[0],
5932 					dsc_caps,
5933 					&dsc_options,
5934 					0,
5935 					&stream->timing,
5936 					dc_link_get_highest_encoding_format(aconnector->dc_link),
5937 					&dsc_cfg)) {
5938 				stream->timing.dsc_cfg = dsc_cfg;
5939 				stream->timing.flags.DSC = 1;
5940 				stream->timing.dsc_cfg.bits_per_pixel = edp_max_bpp_x16;
5941 			}
5942 			return;
5943 		}
5944 	}
5945 
5946 	if (dc_dsc_compute_config(dc->res_pool->dscs[0],
5947 				dsc_caps,
5948 				&dsc_options,
5949 				link_bw_in_kbps,
5950 				&stream->timing,
5951 				dc_link_get_highest_encoding_format(aconnector->dc_link),
5952 				&dsc_cfg)) {
5953 		stream->timing.dsc_cfg = dsc_cfg;
5954 		stream->timing.flags.DSC = 1;
5955 	}
5956 }
5957 
5958 
5959 static void apply_dsc_policy_for_stream(struct amdgpu_dm_connector *aconnector,
5960 					struct dc_sink *sink, struct dc_stream_state *stream,
5961 					struct dsc_dec_dpcd_caps *dsc_caps)
5962 {
5963 	struct drm_connector *drm_connector = &aconnector->base;
5964 	u32 link_bandwidth_kbps;
5965 	struct dc *dc = sink->ctx->dc;
5966 	u32 max_supported_bw_in_kbps, timing_bw_in_kbps;
5967 	u32 dsc_max_supported_bw_in_kbps;
5968 	u32 max_dsc_target_bpp_limit_override =
5969 		drm_connector->display_info.max_dsc_bpp;
5970 	struct dc_dsc_config_options dsc_options = {0};
5971 
5972 	dc_dsc_get_default_config_option(dc, &dsc_options);
5973 	dsc_options.max_target_bpp_limit_override_x16 = max_dsc_target_bpp_limit_override * 16;
5974 
5975 	link_bandwidth_kbps = dc_link_bandwidth_kbps(aconnector->dc_link,
5976 							dc_link_get_link_cap(aconnector->dc_link));
5977 
5978 	/* Set DSC policy according to dsc_clock_en */
5979 	dc_dsc_policy_set_enable_dsc_when_not_needed(
5980 		aconnector->dsc_settings.dsc_force_enable == DSC_CLK_FORCE_ENABLE);
5981 
5982 	if (aconnector->dc_link && sink->sink_signal == SIGNAL_TYPE_EDP &&
5983 	    !aconnector->dc_link->panel_config.dsc.disable_dsc_edp &&
5984 	    dc->caps.edp_dsc_support && aconnector->dsc_settings.dsc_force_enable != DSC_CLK_FORCE_DISABLE) {
5985 
5986 		apply_dsc_policy_for_edp(aconnector, sink, stream, dsc_caps, max_dsc_target_bpp_limit_override);
5987 
5988 	} else if (aconnector->dc_link && sink->sink_signal == SIGNAL_TYPE_DISPLAY_PORT) {
5989 		if (sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_NONE) {
5990 			if (dc_dsc_compute_config(aconnector->dc_link->ctx->dc->res_pool->dscs[0],
5991 						dsc_caps,
5992 						&dsc_options,
5993 						link_bandwidth_kbps,
5994 						&stream->timing,
5995 						dc_link_get_highest_encoding_format(aconnector->dc_link),
5996 						&stream->timing.dsc_cfg)) {
5997 				stream->timing.flags.DSC = 1;
5998 				DRM_DEBUG_DRIVER("%s: [%s] DSC is selected from SST RX\n", __func__, drm_connector->name);
5999 			}
6000 		} else if (sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER) {
6001 			timing_bw_in_kbps = dc_bandwidth_in_kbps_from_timing(&stream->timing,
6002 					dc_link_get_highest_encoding_format(aconnector->dc_link));
6003 			max_supported_bw_in_kbps = link_bandwidth_kbps;
6004 			dsc_max_supported_bw_in_kbps = link_bandwidth_kbps;
6005 
6006 			if (timing_bw_in_kbps > max_supported_bw_in_kbps &&
6007 					max_supported_bw_in_kbps > 0 &&
6008 					dsc_max_supported_bw_in_kbps > 0)
6009 				if (dc_dsc_compute_config(aconnector->dc_link->ctx->dc->res_pool->dscs[0],
6010 						dsc_caps,
6011 						&dsc_options,
6012 						dsc_max_supported_bw_in_kbps,
6013 						&stream->timing,
6014 						dc_link_get_highest_encoding_format(aconnector->dc_link),
6015 						&stream->timing.dsc_cfg)) {
6016 					stream->timing.flags.DSC = 1;
6017 					DRM_DEBUG_DRIVER("%s: [%s] DSC is selected from DP-HDMI PCON\n",
6018 									 __func__, drm_connector->name);
6019 				}
6020 		}
6021 	}
6022 
6023 	/* Overwrite the stream flag if DSC is enabled through debugfs */
6024 	if (aconnector->dsc_settings.dsc_force_enable == DSC_CLK_FORCE_ENABLE)
6025 		stream->timing.flags.DSC = 1;
6026 
6027 	if (stream->timing.flags.DSC && aconnector->dsc_settings.dsc_num_slices_h)
6028 		stream->timing.dsc_cfg.num_slices_h = aconnector->dsc_settings.dsc_num_slices_h;
6029 
6030 	if (stream->timing.flags.DSC && aconnector->dsc_settings.dsc_num_slices_v)
6031 		stream->timing.dsc_cfg.num_slices_v = aconnector->dsc_settings.dsc_num_slices_v;
6032 
6033 	if (stream->timing.flags.DSC && aconnector->dsc_settings.dsc_bits_per_pixel)
6034 		stream->timing.dsc_cfg.bits_per_pixel = aconnector->dsc_settings.dsc_bits_per_pixel;
6035 }
6036 
6037 static struct dc_stream_state *
6038 create_stream_for_sink(struct amdgpu_dm_connector *aconnector,
6039 		       const struct drm_display_mode *drm_mode,
6040 		       const struct dm_connector_state *dm_state,
6041 		       const struct dc_stream_state *old_stream,
6042 		       int requested_bpc)
6043 {
6044 	struct drm_display_mode *preferred_mode = NULL;
6045 	struct drm_connector *drm_connector;
6046 	const struct drm_connector_state *con_state = &dm_state->base;
6047 	struct dc_stream_state *stream = NULL;
6048 	struct drm_display_mode mode;
6049 	struct drm_display_mode saved_mode;
6050 	struct drm_display_mode *freesync_mode = NULL;
6051 	bool native_mode_found = false;
6052 	bool recalculate_timing = false;
6053 	bool scale = dm_state->scaling != RMX_OFF;
6054 	int mode_refresh;
6055 	int preferred_refresh = 0;
6056 	enum color_transfer_func tf = TRANSFER_FUNC_UNKNOWN;
6057 	struct dsc_dec_dpcd_caps dsc_caps;
6058 
6059 	struct dc_sink *sink = NULL;
6060 
6061 	drm_mode_init(&mode, drm_mode);
6062 	memset(&saved_mode, 0, sizeof(saved_mode));
6063 
6064 	if (aconnector == NULL) {
6065 		DRM_ERROR("aconnector is NULL!\n");
6066 		return stream;
6067 	}
6068 
6069 	drm_connector = &aconnector->base;
6070 
6071 	if (!aconnector->dc_sink) {
6072 		sink = create_fake_sink(aconnector);
6073 		if (!sink)
6074 			return stream;
6075 	} else {
6076 		sink = aconnector->dc_sink;
6077 		dc_sink_retain(sink);
6078 	}
6079 
6080 	stream = dc_create_stream_for_sink(sink);
6081 
6082 	if (stream == NULL) {
6083 		DRM_ERROR("Failed to create stream for sink!\n");
6084 		goto finish;
6085 	}
6086 
6087 	stream->dm_stream_context = aconnector;
6088 
6089 	stream->timing.flags.LTE_340MCSC_SCRAMBLE =
6090 		drm_connector->display_info.hdmi.scdc.scrambling.low_rates;
6091 
6092 	list_for_each_entry(preferred_mode, &aconnector->base.modes, head) {
6093 		/* Search for preferred mode */
6094 		if (preferred_mode->type & DRM_MODE_TYPE_PREFERRED) {
6095 			native_mode_found = true;
6096 			break;
6097 		}
6098 	}
6099 	if (!native_mode_found)
6100 		preferred_mode = list_first_entry_or_null(
6101 				&aconnector->base.modes,
6102 				struct drm_display_mode,
6103 				head);
6104 
6105 	mode_refresh = drm_mode_vrefresh(&mode);
6106 
6107 	if (preferred_mode == NULL) {
6108 		/*
6109 		 * This may not be an error, the use case is when we have no
6110 		 * usermode calls to reset and set mode upon hotplug. In this
6111 		 * case, we call set mode ourselves to restore the previous mode
6112 		 * and the modelist may not be filled in time.
6113 		 */
6114 		DRM_DEBUG_DRIVER("No preferred mode found\n");
6115 	} else {
6116 		recalculate_timing = is_freesync_video_mode(&mode, aconnector);
6117 		if (recalculate_timing) {
6118 			freesync_mode = get_highest_refresh_rate_mode(aconnector, false);
6119 			drm_mode_copy(&saved_mode, &mode);
6120 			drm_mode_copy(&mode, freesync_mode);
6121 		} else {
6122 			decide_crtc_timing_for_drm_display_mode(
6123 					&mode, preferred_mode, scale);
6124 
6125 			preferred_refresh = drm_mode_vrefresh(preferred_mode);
6126 		}
6127 	}
6128 
6129 	if (recalculate_timing)
6130 		drm_mode_set_crtcinfo(&saved_mode, 0);
6131 
6132 	/*
6133 	 * If scaling is enabled and refresh rate didn't change
6134 	 * we copy the vic and polarities of the old timings
6135 	 */
6136 	if (!scale || mode_refresh != preferred_refresh)
6137 		fill_stream_properties_from_drm_display_mode(
6138 			stream, &mode, &aconnector->base, con_state, NULL,
6139 			requested_bpc);
6140 	else
6141 		fill_stream_properties_from_drm_display_mode(
6142 			stream, &mode, &aconnector->base, con_state, old_stream,
6143 			requested_bpc);
6144 
6145 	if (aconnector->timing_changed) {
6146 		drm_dbg(aconnector->base.dev,
6147 			"overriding timing for automated test, bpc %d, changing to %d\n",
6148 			stream->timing.display_color_depth,
6149 			aconnector->timing_requested->display_color_depth);
6150 		stream->timing = *aconnector->timing_requested;
6151 	}
6152 
6153 	/* SST DSC determination policy */
6154 	update_dsc_caps(aconnector, sink, stream, &dsc_caps);
6155 	if (aconnector->dsc_settings.dsc_force_enable != DSC_CLK_FORCE_DISABLE && dsc_caps.is_dsc_supported)
6156 		apply_dsc_policy_for_stream(aconnector, sink, stream, &dsc_caps);
6157 
6158 	update_stream_scaling_settings(&mode, dm_state, stream);
6159 
6160 	fill_audio_info(
6161 		&stream->audio_info,
6162 		drm_connector,
6163 		sink);
6164 
6165 	update_stream_signal(stream, sink);
6166 
6167 	if (stream->signal == SIGNAL_TYPE_HDMI_TYPE_A)
6168 		mod_build_hf_vsif_infopacket(stream, &stream->vsp_infopacket);
6169 
6170 	if (stream->link->psr_settings.psr_feature_enabled || stream->link->replay_settings.replay_feature_enabled) {
6171 		//
6172 		// should decide stream support vsc sdp colorimetry capability
6173 		// before building vsc info packet
6174 		//
6175 		stream->use_vsc_sdp_for_colorimetry = false;
6176 		if (aconnector->dc_sink->sink_signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
6177 			stream->use_vsc_sdp_for_colorimetry =
6178 				aconnector->dc_sink->is_vsc_sdp_colorimetry_supported;
6179 		} else {
6180 			if (stream->link->dpcd_caps.dprx_feature.bits.VSC_SDP_COLORIMETRY_SUPPORTED)
6181 				stream->use_vsc_sdp_for_colorimetry = true;
6182 		}
6183 		if (stream->out_transfer_func->tf == TRANSFER_FUNCTION_GAMMA22)
6184 			tf = TRANSFER_FUNC_GAMMA_22;
6185 		mod_build_vsc_infopacket(stream, &stream->vsc_infopacket, stream->output_color_space, tf);
6186 		aconnector->psr_skip_count = AMDGPU_DM_PSR_ENTRY_DELAY;
6187 
6188 	}
6189 finish:
6190 	dc_sink_release(sink);
6191 
6192 	return stream;
6193 }
6194 
6195 static enum drm_connector_status
6196 amdgpu_dm_connector_detect(struct drm_connector *connector, bool force)
6197 {
6198 	bool connected;
6199 	struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
6200 
6201 	/*
6202 	 * Notes:
6203 	 * 1. This interface is NOT called in context of HPD irq.
6204 	 * 2. This interface *is called* in context of user-mode ioctl. Which
6205 	 * makes it a bad place for *any* MST-related activity.
6206 	 */
6207 
6208 	if (aconnector->base.force == DRM_FORCE_UNSPECIFIED &&
6209 	    !aconnector->fake_enable)
6210 		connected = (aconnector->dc_sink != NULL);
6211 	else
6212 		connected = (aconnector->base.force == DRM_FORCE_ON ||
6213 				aconnector->base.force == DRM_FORCE_ON_DIGITAL);
6214 
6215 	update_subconnector_property(aconnector);
6216 
6217 	return (connected ? connector_status_connected :
6218 			connector_status_disconnected);
6219 }
6220 
6221 int amdgpu_dm_connector_atomic_set_property(struct drm_connector *connector,
6222 					    struct drm_connector_state *connector_state,
6223 					    struct drm_property *property,
6224 					    uint64_t val)
6225 {
6226 	struct drm_device *dev = connector->dev;
6227 	struct amdgpu_device *adev = drm_to_adev(dev);
6228 	struct dm_connector_state *dm_old_state =
6229 		to_dm_connector_state(connector->state);
6230 	struct dm_connector_state *dm_new_state =
6231 		to_dm_connector_state(connector_state);
6232 
6233 	int ret = -EINVAL;
6234 
6235 	if (property == dev->mode_config.scaling_mode_property) {
6236 		enum amdgpu_rmx_type rmx_type;
6237 
6238 		switch (val) {
6239 		case DRM_MODE_SCALE_CENTER:
6240 			rmx_type = RMX_CENTER;
6241 			break;
6242 		case DRM_MODE_SCALE_ASPECT:
6243 			rmx_type = RMX_ASPECT;
6244 			break;
6245 		case DRM_MODE_SCALE_FULLSCREEN:
6246 			rmx_type = RMX_FULL;
6247 			break;
6248 		case DRM_MODE_SCALE_NONE:
6249 		default:
6250 			rmx_type = RMX_OFF;
6251 			break;
6252 		}
6253 
6254 		if (dm_old_state->scaling == rmx_type)
6255 			return 0;
6256 
6257 		dm_new_state->scaling = rmx_type;
6258 		ret = 0;
6259 	} else if (property == adev->mode_info.underscan_hborder_property) {
6260 		dm_new_state->underscan_hborder = val;
6261 		ret = 0;
6262 	} else if (property == adev->mode_info.underscan_vborder_property) {
6263 		dm_new_state->underscan_vborder = val;
6264 		ret = 0;
6265 	} else if (property == adev->mode_info.underscan_property) {
6266 		dm_new_state->underscan_enable = val;
6267 		ret = 0;
6268 	} else if (property == adev->mode_info.abm_level_property) {
6269 		dm_new_state->abm_level = val;
6270 		ret = 0;
6271 	}
6272 
6273 	return ret;
6274 }
6275 
6276 int amdgpu_dm_connector_atomic_get_property(struct drm_connector *connector,
6277 					    const struct drm_connector_state *state,
6278 					    struct drm_property *property,
6279 					    uint64_t *val)
6280 {
6281 	struct drm_device *dev = connector->dev;
6282 	struct amdgpu_device *adev = drm_to_adev(dev);
6283 	struct dm_connector_state *dm_state =
6284 		to_dm_connector_state(state);
6285 	int ret = -EINVAL;
6286 
6287 	if (property == dev->mode_config.scaling_mode_property) {
6288 		switch (dm_state->scaling) {
6289 		case RMX_CENTER:
6290 			*val = DRM_MODE_SCALE_CENTER;
6291 			break;
6292 		case RMX_ASPECT:
6293 			*val = DRM_MODE_SCALE_ASPECT;
6294 			break;
6295 		case RMX_FULL:
6296 			*val = DRM_MODE_SCALE_FULLSCREEN;
6297 			break;
6298 		case RMX_OFF:
6299 		default:
6300 			*val = DRM_MODE_SCALE_NONE;
6301 			break;
6302 		}
6303 		ret = 0;
6304 	} else if (property == adev->mode_info.underscan_hborder_property) {
6305 		*val = dm_state->underscan_hborder;
6306 		ret = 0;
6307 	} else if (property == adev->mode_info.underscan_vborder_property) {
6308 		*val = dm_state->underscan_vborder;
6309 		ret = 0;
6310 	} else if (property == adev->mode_info.underscan_property) {
6311 		*val = dm_state->underscan_enable;
6312 		ret = 0;
6313 	} else if (property == adev->mode_info.abm_level_property) {
6314 		*val = dm_state->abm_level;
6315 		ret = 0;
6316 	}
6317 
6318 	return ret;
6319 }
6320 
6321 static void amdgpu_dm_connector_unregister(struct drm_connector *connector)
6322 {
6323 	struct amdgpu_dm_connector *amdgpu_dm_connector = to_amdgpu_dm_connector(connector);
6324 
6325 	drm_dp_aux_unregister(&amdgpu_dm_connector->dm_dp_aux.aux);
6326 }
6327 
6328 static void amdgpu_dm_connector_destroy(struct drm_connector *connector)
6329 {
6330 	struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
6331 	struct amdgpu_device *adev = drm_to_adev(connector->dev);
6332 	struct amdgpu_display_manager *dm = &adev->dm;
6333 
6334 	/*
6335 	 * Call only if mst_mgr was initialized before since it's not done
6336 	 * for all connector types.
6337 	 */
6338 	if (aconnector->mst_mgr.dev)
6339 		drm_dp_mst_topology_mgr_destroy(&aconnector->mst_mgr);
6340 
6341 	if (aconnector->bl_idx != -1) {
6342 		backlight_device_unregister(dm->backlight_dev[aconnector->bl_idx]);
6343 		dm->backlight_dev[aconnector->bl_idx] = NULL;
6344 	}
6345 
6346 	if (aconnector->dc_em_sink)
6347 		dc_sink_release(aconnector->dc_em_sink);
6348 	aconnector->dc_em_sink = NULL;
6349 	if (aconnector->dc_sink)
6350 		dc_sink_release(aconnector->dc_sink);
6351 	aconnector->dc_sink = NULL;
6352 
6353 	drm_dp_cec_unregister_connector(&aconnector->dm_dp_aux.aux);
6354 	drm_connector_unregister(connector);
6355 	drm_connector_cleanup(connector);
6356 	if (aconnector->i2c) {
6357 		i2c_del_adapter(&aconnector->i2c->base);
6358 		kfree(aconnector->i2c);
6359 	}
6360 	kfree(aconnector->dm_dp_aux.aux.name);
6361 
6362 	kfree(connector);
6363 }
6364 
6365 void amdgpu_dm_connector_funcs_reset(struct drm_connector *connector)
6366 {
6367 	struct dm_connector_state *state =
6368 		to_dm_connector_state(connector->state);
6369 
6370 	if (connector->state)
6371 		__drm_atomic_helper_connector_destroy_state(connector->state);
6372 
6373 	kfree(state);
6374 
6375 	state = kzalloc(sizeof(*state), GFP_KERNEL);
6376 
6377 	if (state) {
6378 		state->scaling = RMX_OFF;
6379 		state->underscan_enable = false;
6380 		state->underscan_hborder = 0;
6381 		state->underscan_vborder = 0;
6382 		state->base.max_requested_bpc = 8;
6383 		state->vcpi_slots = 0;
6384 		state->pbn = 0;
6385 
6386 		if (connector->connector_type == DRM_MODE_CONNECTOR_eDP)
6387 			state->abm_level = amdgpu_dm_abm_level;
6388 
6389 		__drm_atomic_helper_connector_reset(connector, &state->base);
6390 	}
6391 }
6392 
6393 struct drm_connector_state *
6394 amdgpu_dm_connector_atomic_duplicate_state(struct drm_connector *connector)
6395 {
6396 	struct dm_connector_state *state =
6397 		to_dm_connector_state(connector->state);
6398 
6399 	struct dm_connector_state *new_state =
6400 			kmemdup(state, sizeof(*state), GFP_KERNEL);
6401 
6402 	if (!new_state)
6403 		return NULL;
6404 
6405 	__drm_atomic_helper_connector_duplicate_state(connector, &new_state->base);
6406 
6407 	new_state->freesync_capable = state->freesync_capable;
6408 	new_state->abm_level = state->abm_level;
6409 	new_state->scaling = state->scaling;
6410 	new_state->underscan_enable = state->underscan_enable;
6411 	new_state->underscan_hborder = state->underscan_hborder;
6412 	new_state->underscan_vborder = state->underscan_vborder;
6413 	new_state->vcpi_slots = state->vcpi_slots;
6414 	new_state->pbn = state->pbn;
6415 	return &new_state->base;
6416 }
6417 
6418 static int
6419 amdgpu_dm_connector_late_register(struct drm_connector *connector)
6420 {
6421 	struct amdgpu_dm_connector *amdgpu_dm_connector =
6422 		to_amdgpu_dm_connector(connector);
6423 	int r;
6424 
6425 	amdgpu_dm_register_backlight_device(amdgpu_dm_connector);
6426 
6427 	if ((connector->connector_type == DRM_MODE_CONNECTOR_DisplayPort) ||
6428 	    (connector->connector_type == DRM_MODE_CONNECTOR_eDP)) {
6429 		amdgpu_dm_connector->dm_dp_aux.aux.dev = connector->kdev;
6430 		r = drm_dp_aux_register(&amdgpu_dm_connector->dm_dp_aux.aux);
6431 		if (r)
6432 			return r;
6433 	}
6434 
6435 #if defined(CONFIG_DEBUG_FS)
6436 	connector_debugfs_init(amdgpu_dm_connector);
6437 #endif
6438 
6439 	return 0;
6440 }
6441 
6442 static void amdgpu_dm_connector_funcs_force(struct drm_connector *connector)
6443 {
6444 	struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
6445 	struct amdgpu_connector *amdgpu_connector = to_amdgpu_connector(connector);
6446 	struct dc_link *dc_link = aconnector->dc_link;
6447 	struct dc_sink *dc_em_sink = aconnector->dc_em_sink;
6448 	struct edid *edid;
6449 
6450 	/*
6451 	 * Note: drm_get_edid gets edid in the following order:
6452 	 * 1) override EDID if set via edid_override debugfs,
6453 	 * 2) firmware EDID if set via edid_firmware module parameter
6454 	 * 3) regular DDC read.
6455 	 */
6456 	edid = drm_get_edid(connector, &amdgpu_connector->ddc_bus->aux.ddc);
6457 	if (!edid) {
6458 		DRM_ERROR("No EDID found on connector: %s.\n", connector->name);
6459 		return;
6460 	}
6461 
6462 	aconnector->edid = edid;
6463 
6464 	/* Update emulated (virtual) sink's EDID */
6465 	if (dc_em_sink && dc_link) {
6466 		memset(&dc_em_sink->edid_caps, 0, sizeof(struct dc_edid_caps));
6467 		memmove(dc_em_sink->dc_edid.raw_edid, edid, (edid->extensions + 1) * EDID_LENGTH);
6468 		dm_helpers_parse_edid_caps(
6469 			dc_link,
6470 			&dc_em_sink->dc_edid,
6471 			&dc_em_sink->edid_caps);
6472 	}
6473 }
6474 
6475 static const struct drm_connector_funcs amdgpu_dm_connector_funcs = {
6476 	.reset = amdgpu_dm_connector_funcs_reset,
6477 	.detect = amdgpu_dm_connector_detect,
6478 	.fill_modes = drm_helper_probe_single_connector_modes,
6479 	.destroy = amdgpu_dm_connector_destroy,
6480 	.atomic_duplicate_state = amdgpu_dm_connector_atomic_duplicate_state,
6481 	.atomic_destroy_state = drm_atomic_helper_connector_destroy_state,
6482 	.atomic_set_property = amdgpu_dm_connector_atomic_set_property,
6483 	.atomic_get_property = amdgpu_dm_connector_atomic_get_property,
6484 	.late_register = amdgpu_dm_connector_late_register,
6485 	.early_unregister = amdgpu_dm_connector_unregister,
6486 	.force = amdgpu_dm_connector_funcs_force
6487 };
6488 
6489 static int get_modes(struct drm_connector *connector)
6490 {
6491 	return amdgpu_dm_connector_get_modes(connector);
6492 }
6493 
6494 static void create_eml_sink(struct amdgpu_dm_connector *aconnector)
6495 {
6496 	struct drm_connector *connector = &aconnector->base;
6497 	struct amdgpu_connector *amdgpu_connector = to_amdgpu_connector(&aconnector->base);
6498 	struct dc_sink_init_data init_params = {
6499 			.link = aconnector->dc_link,
6500 			.sink_signal = SIGNAL_TYPE_VIRTUAL
6501 	};
6502 	struct edid *edid;
6503 
6504 	/*
6505 	 * Note: drm_get_edid gets edid in the following order:
6506 	 * 1) override EDID if set via edid_override debugfs,
6507 	 * 2) firmware EDID if set via edid_firmware module parameter
6508 	 * 3) regular DDC read.
6509 	 */
6510 	edid = drm_get_edid(connector, &amdgpu_connector->ddc_bus->aux.ddc);
6511 	if (!edid) {
6512 		DRM_ERROR("No EDID found on connector: %s.\n", connector->name);
6513 		return;
6514 	}
6515 
6516 	aconnector->edid = edid;
6517 
6518 	aconnector->dc_em_sink = dc_link_add_remote_sink(
6519 		aconnector->dc_link,
6520 		(uint8_t *)edid,
6521 		(edid->extensions + 1) * EDID_LENGTH,
6522 		&init_params);
6523 
6524 	if (aconnector->base.force == DRM_FORCE_ON) {
6525 		aconnector->dc_sink = aconnector->dc_link->local_sink ?
6526 		aconnector->dc_link->local_sink :
6527 		aconnector->dc_em_sink;
6528 		dc_sink_retain(aconnector->dc_sink);
6529 	}
6530 }
6531 
6532 static void handle_edid_mgmt(struct amdgpu_dm_connector *aconnector)
6533 {
6534 	struct dc_link *link = (struct dc_link *)aconnector->dc_link;
6535 
6536 	/*
6537 	 * In case of headless boot with force on for DP managed connector
6538 	 * Those settings have to be != 0 to get initial modeset
6539 	 */
6540 	if (link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT) {
6541 		link->verified_link_cap.lane_count = LANE_COUNT_FOUR;
6542 		link->verified_link_cap.link_rate = LINK_RATE_HIGH2;
6543 	}
6544 
6545 	create_eml_sink(aconnector);
6546 }
6547 
6548 static enum dc_status dm_validate_stream_and_context(struct dc *dc,
6549 						struct dc_stream_state *stream)
6550 {
6551 	enum dc_status dc_result = DC_ERROR_UNEXPECTED;
6552 	struct dc_plane_state *dc_plane_state = NULL;
6553 	struct dc_state *dc_state = NULL;
6554 
6555 	if (!stream)
6556 		goto cleanup;
6557 
6558 	dc_plane_state = dc_create_plane_state(dc);
6559 	if (!dc_plane_state)
6560 		goto cleanup;
6561 
6562 	dc_state = dc_create_state(dc);
6563 	if (!dc_state)
6564 		goto cleanup;
6565 
6566 	/* populate stream to plane */
6567 	dc_plane_state->src_rect.height  = stream->src.height;
6568 	dc_plane_state->src_rect.width   = stream->src.width;
6569 	dc_plane_state->dst_rect.height  = stream->src.height;
6570 	dc_plane_state->dst_rect.width   = stream->src.width;
6571 	dc_plane_state->clip_rect.height = stream->src.height;
6572 	dc_plane_state->clip_rect.width  = stream->src.width;
6573 	dc_plane_state->plane_size.surface_pitch = ((stream->src.width + 255) / 256) * 256;
6574 	dc_plane_state->plane_size.surface_size.height = stream->src.height;
6575 	dc_plane_state->plane_size.surface_size.width  = stream->src.width;
6576 	dc_plane_state->plane_size.chroma_size.height  = stream->src.height;
6577 	dc_plane_state->plane_size.chroma_size.width   = stream->src.width;
6578 	dc_plane_state->format = SURFACE_PIXEL_FORMAT_GRPH_ARGB8888;
6579 	dc_plane_state->tiling_info.gfx9.swizzle = DC_SW_UNKNOWN;
6580 	dc_plane_state->rotation = ROTATION_ANGLE_0;
6581 	dc_plane_state->is_tiling_rotated = false;
6582 	dc_plane_state->tiling_info.gfx8.array_mode = DC_ARRAY_LINEAR_GENERAL;
6583 
6584 	dc_result = dc_validate_stream(dc, stream);
6585 	if (dc_result == DC_OK)
6586 		dc_result = dc_validate_plane(dc, dc_plane_state);
6587 
6588 	if (dc_result == DC_OK)
6589 		dc_result = dc_add_stream_to_ctx(dc, dc_state, stream);
6590 
6591 	if (dc_result == DC_OK && !dc_add_plane_to_context(
6592 						dc,
6593 						stream,
6594 						dc_plane_state,
6595 						dc_state))
6596 		dc_result = DC_FAIL_ATTACH_SURFACES;
6597 
6598 	if (dc_result == DC_OK)
6599 		dc_result = dc_validate_global_state(dc, dc_state, true);
6600 
6601 cleanup:
6602 	if (dc_state)
6603 		dc_release_state(dc_state);
6604 
6605 	if (dc_plane_state)
6606 		dc_plane_state_release(dc_plane_state);
6607 
6608 	return dc_result;
6609 }
6610 
6611 struct dc_stream_state *
6612 create_validate_stream_for_sink(struct amdgpu_dm_connector *aconnector,
6613 				const struct drm_display_mode *drm_mode,
6614 				const struct dm_connector_state *dm_state,
6615 				const struct dc_stream_state *old_stream)
6616 {
6617 	struct drm_connector *connector = &aconnector->base;
6618 	struct amdgpu_device *adev = drm_to_adev(connector->dev);
6619 	struct dc_stream_state *stream;
6620 	const struct drm_connector_state *drm_state = dm_state ? &dm_state->base : NULL;
6621 	int requested_bpc = drm_state ? drm_state->max_requested_bpc : 8;
6622 	enum dc_status dc_result = DC_OK;
6623 
6624 	do {
6625 		stream = create_stream_for_sink(aconnector, drm_mode,
6626 						dm_state, old_stream,
6627 						requested_bpc);
6628 		if (stream == NULL) {
6629 			DRM_ERROR("Failed to create stream for sink!\n");
6630 			break;
6631 		}
6632 
6633 		dc_result = dc_validate_stream(adev->dm.dc, stream);
6634 		if (dc_result == DC_OK && stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST)
6635 			dc_result = dm_dp_mst_is_port_support_mode(aconnector, stream);
6636 
6637 		if (dc_result == DC_OK)
6638 			dc_result = dm_validate_stream_and_context(adev->dm.dc, stream);
6639 
6640 		if (dc_result != DC_OK) {
6641 			DRM_DEBUG_KMS("Mode %dx%d (clk %d) failed DC validation with error %d (%s)\n",
6642 				      drm_mode->hdisplay,
6643 				      drm_mode->vdisplay,
6644 				      drm_mode->clock,
6645 				      dc_result,
6646 				      dc_status_to_str(dc_result));
6647 
6648 			dc_stream_release(stream);
6649 			stream = NULL;
6650 			requested_bpc -= 2; /* lower bpc to retry validation */
6651 		}
6652 
6653 	} while (stream == NULL && requested_bpc >= 6);
6654 
6655 	if (dc_result == DC_FAIL_ENC_VALIDATE && !aconnector->force_yuv420_output) {
6656 		DRM_DEBUG_KMS("Retry forcing YCbCr420 encoding\n");
6657 
6658 		aconnector->force_yuv420_output = true;
6659 		stream = create_validate_stream_for_sink(aconnector, drm_mode,
6660 						dm_state, old_stream);
6661 		aconnector->force_yuv420_output = false;
6662 	}
6663 
6664 	return stream;
6665 }
6666 
6667 enum drm_mode_status amdgpu_dm_connector_mode_valid(struct drm_connector *connector,
6668 				   struct drm_display_mode *mode)
6669 {
6670 	int result = MODE_ERROR;
6671 	struct dc_sink *dc_sink;
6672 	/* TODO: Unhardcode stream count */
6673 	struct dc_stream_state *stream;
6674 	struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
6675 
6676 	if ((mode->flags & DRM_MODE_FLAG_INTERLACE) ||
6677 			(mode->flags & DRM_MODE_FLAG_DBLSCAN))
6678 		return result;
6679 
6680 	/*
6681 	 * Only run this the first time mode_valid is called to initilialize
6682 	 * EDID mgmt
6683 	 */
6684 	if (aconnector->base.force != DRM_FORCE_UNSPECIFIED &&
6685 		!aconnector->dc_em_sink)
6686 		handle_edid_mgmt(aconnector);
6687 
6688 	dc_sink = to_amdgpu_dm_connector(connector)->dc_sink;
6689 
6690 	if (dc_sink == NULL && aconnector->base.force != DRM_FORCE_ON_DIGITAL &&
6691 				aconnector->base.force != DRM_FORCE_ON) {
6692 		DRM_ERROR("dc_sink is NULL!\n");
6693 		goto fail;
6694 	}
6695 
6696 	drm_mode_set_crtcinfo(mode, 0);
6697 
6698 	stream = create_validate_stream_for_sink(aconnector, mode,
6699 						 to_dm_connector_state(connector->state),
6700 						 NULL);
6701 	if (stream) {
6702 		dc_stream_release(stream);
6703 		result = MODE_OK;
6704 	}
6705 
6706 fail:
6707 	/* TODO: error handling*/
6708 	return result;
6709 }
6710 
6711 static int fill_hdr_info_packet(const struct drm_connector_state *state,
6712 				struct dc_info_packet *out)
6713 {
6714 	struct hdmi_drm_infoframe frame;
6715 	unsigned char buf[30]; /* 26 + 4 */
6716 	ssize_t len;
6717 	int ret, i;
6718 
6719 	memset(out, 0, sizeof(*out));
6720 
6721 	if (!state->hdr_output_metadata)
6722 		return 0;
6723 
6724 	ret = drm_hdmi_infoframe_set_hdr_metadata(&frame, state);
6725 	if (ret)
6726 		return ret;
6727 
6728 	len = hdmi_drm_infoframe_pack_only(&frame, buf, sizeof(buf));
6729 	if (len < 0)
6730 		return (int)len;
6731 
6732 	/* Static metadata is a fixed 26 bytes + 4 byte header. */
6733 	if (len != 30)
6734 		return -EINVAL;
6735 
6736 	/* Prepare the infopacket for DC. */
6737 	switch (state->connector->connector_type) {
6738 	case DRM_MODE_CONNECTOR_HDMIA:
6739 		out->hb0 = 0x87; /* type */
6740 		out->hb1 = 0x01; /* version */
6741 		out->hb2 = 0x1A; /* length */
6742 		out->sb[0] = buf[3]; /* checksum */
6743 		i = 1;
6744 		break;
6745 
6746 	case DRM_MODE_CONNECTOR_DisplayPort:
6747 	case DRM_MODE_CONNECTOR_eDP:
6748 		out->hb0 = 0x00; /* sdp id, zero */
6749 		out->hb1 = 0x87; /* type */
6750 		out->hb2 = 0x1D; /* payload len - 1 */
6751 		out->hb3 = (0x13 << 2); /* sdp version */
6752 		out->sb[0] = 0x01; /* version */
6753 		out->sb[1] = 0x1A; /* length */
6754 		i = 2;
6755 		break;
6756 
6757 	default:
6758 		return -EINVAL;
6759 	}
6760 
6761 	memcpy(&out->sb[i], &buf[4], 26);
6762 	out->valid = true;
6763 
6764 	print_hex_dump(KERN_DEBUG, "HDR SB:", DUMP_PREFIX_NONE, 16, 1, out->sb,
6765 		       sizeof(out->sb), false);
6766 
6767 	return 0;
6768 }
6769 
6770 static int
6771 amdgpu_dm_connector_atomic_check(struct drm_connector *conn,
6772 				 struct drm_atomic_state *state)
6773 {
6774 	struct drm_connector_state *new_con_state =
6775 		drm_atomic_get_new_connector_state(state, conn);
6776 	struct drm_connector_state *old_con_state =
6777 		drm_atomic_get_old_connector_state(state, conn);
6778 	struct drm_crtc *crtc = new_con_state->crtc;
6779 	struct drm_crtc_state *new_crtc_state;
6780 	struct amdgpu_dm_connector *aconn = to_amdgpu_dm_connector(conn);
6781 	int ret;
6782 
6783 	trace_amdgpu_dm_connector_atomic_check(new_con_state);
6784 
6785 	if (conn->connector_type == DRM_MODE_CONNECTOR_DisplayPort) {
6786 		ret = drm_dp_mst_root_conn_atomic_check(new_con_state, &aconn->mst_mgr);
6787 		if (ret < 0)
6788 			return ret;
6789 	}
6790 
6791 	if (!crtc)
6792 		return 0;
6793 
6794 	if (new_con_state->colorspace != old_con_state->colorspace) {
6795 		new_crtc_state = drm_atomic_get_crtc_state(state, crtc);
6796 		if (IS_ERR(new_crtc_state))
6797 			return PTR_ERR(new_crtc_state);
6798 
6799 		new_crtc_state->mode_changed = true;
6800 	}
6801 
6802 	if (new_con_state->content_type != old_con_state->content_type) {
6803 		new_crtc_state = drm_atomic_get_crtc_state(state, crtc);
6804 		if (IS_ERR(new_crtc_state))
6805 			return PTR_ERR(new_crtc_state);
6806 
6807 		new_crtc_state->mode_changed = true;
6808 	}
6809 
6810 	if (!drm_connector_atomic_hdr_metadata_equal(old_con_state, new_con_state)) {
6811 		struct dc_info_packet hdr_infopacket;
6812 
6813 		ret = fill_hdr_info_packet(new_con_state, &hdr_infopacket);
6814 		if (ret)
6815 			return ret;
6816 
6817 		new_crtc_state = drm_atomic_get_crtc_state(state, crtc);
6818 		if (IS_ERR(new_crtc_state))
6819 			return PTR_ERR(new_crtc_state);
6820 
6821 		/*
6822 		 * DC considers the stream backends changed if the
6823 		 * static metadata changes. Forcing the modeset also
6824 		 * gives a simple way for userspace to switch from
6825 		 * 8bpc to 10bpc when setting the metadata to enter
6826 		 * or exit HDR.
6827 		 *
6828 		 * Changing the static metadata after it's been
6829 		 * set is permissible, however. So only force a
6830 		 * modeset if we're entering or exiting HDR.
6831 		 */
6832 		new_crtc_state->mode_changed = new_crtc_state->mode_changed ||
6833 			!old_con_state->hdr_output_metadata ||
6834 			!new_con_state->hdr_output_metadata;
6835 	}
6836 
6837 	return 0;
6838 }
6839 
6840 static const struct drm_connector_helper_funcs
6841 amdgpu_dm_connector_helper_funcs = {
6842 	/*
6843 	 * If hotplugging a second bigger display in FB Con mode, bigger resolution
6844 	 * modes will be filtered by drm_mode_validate_size(), and those modes
6845 	 * are missing after user start lightdm. So we need to renew modes list.
6846 	 * in get_modes call back, not just return the modes count
6847 	 */
6848 	.get_modes = get_modes,
6849 	.mode_valid = amdgpu_dm_connector_mode_valid,
6850 	.atomic_check = amdgpu_dm_connector_atomic_check,
6851 };
6852 
6853 static void dm_encoder_helper_disable(struct drm_encoder *encoder)
6854 {
6855 
6856 }
6857 
6858 int convert_dc_color_depth_into_bpc(enum dc_color_depth display_color_depth)
6859 {
6860 	switch (display_color_depth) {
6861 	case COLOR_DEPTH_666:
6862 		return 6;
6863 	case COLOR_DEPTH_888:
6864 		return 8;
6865 	case COLOR_DEPTH_101010:
6866 		return 10;
6867 	case COLOR_DEPTH_121212:
6868 		return 12;
6869 	case COLOR_DEPTH_141414:
6870 		return 14;
6871 	case COLOR_DEPTH_161616:
6872 		return 16;
6873 	default:
6874 		break;
6875 	}
6876 	return 0;
6877 }
6878 
6879 static int dm_encoder_helper_atomic_check(struct drm_encoder *encoder,
6880 					  struct drm_crtc_state *crtc_state,
6881 					  struct drm_connector_state *conn_state)
6882 {
6883 	struct drm_atomic_state *state = crtc_state->state;
6884 	struct drm_connector *connector = conn_state->connector;
6885 	struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
6886 	struct dm_connector_state *dm_new_connector_state = to_dm_connector_state(conn_state);
6887 	const struct drm_display_mode *adjusted_mode = &crtc_state->adjusted_mode;
6888 	struct drm_dp_mst_topology_mgr *mst_mgr;
6889 	struct drm_dp_mst_port *mst_port;
6890 	struct drm_dp_mst_topology_state *mst_state;
6891 	enum dc_color_depth color_depth;
6892 	int clock, bpp = 0;
6893 	bool is_y420 = false;
6894 
6895 	if (!aconnector->mst_output_port)
6896 		return 0;
6897 
6898 	mst_port = aconnector->mst_output_port;
6899 	mst_mgr = &aconnector->mst_root->mst_mgr;
6900 
6901 	if (!crtc_state->connectors_changed && !crtc_state->mode_changed)
6902 		return 0;
6903 
6904 	mst_state = drm_atomic_get_mst_topology_state(state, mst_mgr);
6905 	if (IS_ERR(mst_state))
6906 		return PTR_ERR(mst_state);
6907 
6908 	if (!mst_state->pbn_div)
6909 		mst_state->pbn_div = dm_mst_get_pbn_divider(aconnector->mst_root->dc_link);
6910 
6911 	if (!state->duplicated) {
6912 		int max_bpc = conn_state->max_requested_bpc;
6913 
6914 		is_y420 = drm_mode_is_420_also(&connector->display_info, adjusted_mode) &&
6915 			  aconnector->force_yuv420_output;
6916 		color_depth = convert_color_depth_from_display_info(connector,
6917 								    is_y420,
6918 								    max_bpc);
6919 		bpp = convert_dc_color_depth_into_bpc(color_depth) * 3;
6920 		clock = adjusted_mode->clock;
6921 		dm_new_connector_state->pbn = drm_dp_calc_pbn_mode(clock, bpp, false);
6922 	}
6923 
6924 	dm_new_connector_state->vcpi_slots =
6925 		drm_dp_atomic_find_time_slots(state, mst_mgr, mst_port,
6926 					      dm_new_connector_state->pbn);
6927 	if (dm_new_connector_state->vcpi_slots < 0) {
6928 		DRM_DEBUG_ATOMIC("failed finding vcpi slots: %d\n", (int)dm_new_connector_state->vcpi_slots);
6929 		return dm_new_connector_state->vcpi_slots;
6930 	}
6931 	return 0;
6932 }
6933 
6934 const struct drm_encoder_helper_funcs amdgpu_dm_encoder_helper_funcs = {
6935 	.disable = dm_encoder_helper_disable,
6936 	.atomic_check = dm_encoder_helper_atomic_check
6937 };
6938 
6939 static int dm_update_mst_vcpi_slots_for_dsc(struct drm_atomic_state *state,
6940 					    struct dc_state *dc_state,
6941 					    struct dsc_mst_fairness_vars *vars)
6942 {
6943 	struct dc_stream_state *stream = NULL;
6944 	struct drm_connector *connector;
6945 	struct drm_connector_state *new_con_state;
6946 	struct amdgpu_dm_connector *aconnector;
6947 	struct dm_connector_state *dm_conn_state;
6948 	int i, j, ret;
6949 	int vcpi, pbn_div, pbn, slot_num = 0;
6950 
6951 	for_each_new_connector_in_state(state, connector, new_con_state, i) {
6952 
6953 		aconnector = to_amdgpu_dm_connector(connector);
6954 
6955 		if (!aconnector->mst_output_port)
6956 			continue;
6957 
6958 		if (!new_con_state || !new_con_state->crtc)
6959 			continue;
6960 
6961 		dm_conn_state = to_dm_connector_state(new_con_state);
6962 
6963 		for (j = 0; j < dc_state->stream_count; j++) {
6964 			stream = dc_state->streams[j];
6965 			if (!stream)
6966 				continue;
6967 
6968 			if ((struct amdgpu_dm_connector *)stream->dm_stream_context == aconnector)
6969 				break;
6970 
6971 			stream = NULL;
6972 		}
6973 
6974 		if (!stream)
6975 			continue;
6976 
6977 		pbn_div = dm_mst_get_pbn_divider(stream->link);
6978 		/* pbn is calculated by compute_mst_dsc_configs_for_state*/
6979 		for (j = 0; j < dc_state->stream_count; j++) {
6980 			if (vars[j].aconnector == aconnector) {
6981 				pbn = vars[j].pbn;
6982 				break;
6983 			}
6984 		}
6985 
6986 		if (j == dc_state->stream_count)
6987 			continue;
6988 
6989 		slot_num = DIV_ROUND_UP(pbn, pbn_div);
6990 
6991 		if (stream->timing.flags.DSC != 1) {
6992 			dm_conn_state->pbn = pbn;
6993 			dm_conn_state->vcpi_slots = slot_num;
6994 
6995 			ret = drm_dp_mst_atomic_enable_dsc(state, aconnector->mst_output_port,
6996 							   dm_conn_state->pbn, false);
6997 			if (ret < 0)
6998 				return ret;
6999 
7000 			continue;
7001 		}
7002 
7003 		vcpi = drm_dp_mst_atomic_enable_dsc(state, aconnector->mst_output_port, pbn, true);
7004 		if (vcpi < 0)
7005 			return vcpi;
7006 
7007 		dm_conn_state->pbn = pbn;
7008 		dm_conn_state->vcpi_slots = vcpi;
7009 	}
7010 	return 0;
7011 }
7012 
7013 static int to_drm_connector_type(enum signal_type st)
7014 {
7015 	switch (st) {
7016 	case SIGNAL_TYPE_HDMI_TYPE_A:
7017 		return DRM_MODE_CONNECTOR_HDMIA;
7018 	case SIGNAL_TYPE_EDP:
7019 		return DRM_MODE_CONNECTOR_eDP;
7020 	case SIGNAL_TYPE_LVDS:
7021 		return DRM_MODE_CONNECTOR_LVDS;
7022 	case SIGNAL_TYPE_RGB:
7023 		return DRM_MODE_CONNECTOR_VGA;
7024 	case SIGNAL_TYPE_DISPLAY_PORT:
7025 	case SIGNAL_TYPE_DISPLAY_PORT_MST:
7026 		return DRM_MODE_CONNECTOR_DisplayPort;
7027 	case SIGNAL_TYPE_DVI_DUAL_LINK:
7028 	case SIGNAL_TYPE_DVI_SINGLE_LINK:
7029 		return DRM_MODE_CONNECTOR_DVID;
7030 	case SIGNAL_TYPE_VIRTUAL:
7031 		return DRM_MODE_CONNECTOR_VIRTUAL;
7032 
7033 	default:
7034 		return DRM_MODE_CONNECTOR_Unknown;
7035 	}
7036 }
7037 
7038 static struct drm_encoder *amdgpu_dm_connector_to_encoder(struct drm_connector *connector)
7039 {
7040 	struct drm_encoder *encoder;
7041 
7042 	/* There is only one encoder per connector */
7043 	drm_connector_for_each_possible_encoder(connector, encoder)
7044 		return encoder;
7045 
7046 	return NULL;
7047 }
7048 
7049 static void amdgpu_dm_get_native_mode(struct drm_connector *connector)
7050 {
7051 	struct drm_encoder *encoder;
7052 	struct amdgpu_encoder *amdgpu_encoder;
7053 
7054 	encoder = amdgpu_dm_connector_to_encoder(connector);
7055 
7056 	if (encoder == NULL)
7057 		return;
7058 
7059 	amdgpu_encoder = to_amdgpu_encoder(encoder);
7060 
7061 	amdgpu_encoder->native_mode.clock = 0;
7062 
7063 	if (!list_empty(&connector->probed_modes)) {
7064 		struct drm_display_mode *preferred_mode = NULL;
7065 
7066 		list_for_each_entry(preferred_mode,
7067 				    &connector->probed_modes,
7068 				    head) {
7069 			if (preferred_mode->type & DRM_MODE_TYPE_PREFERRED)
7070 				amdgpu_encoder->native_mode = *preferred_mode;
7071 
7072 			break;
7073 		}
7074 
7075 	}
7076 }
7077 
7078 static struct drm_display_mode *
7079 amdgpu_dm_create_common_mode(struct drm_encoder *encoder,
7080 			     char *name,
7081 			     int hdisplay, int vdisplay)
7082 {
7083 	struct drm_device *dev = encoder->dev;
7084 	struct amdgpu_encoder *amdgpu_encoder = to_amdgpu_encoder(encoder);
7085 	struct drm_display_mode *mode = NULL;
7086 	struct drm_display_mode *native_mode = &amdgpu_encoder->native_mode;
7087 
7088 	mode = drm_mode_duplicate(dev, native_mode);
7089 
7090 	if (mode == NULL)
7091 		return NULL;
7092 
7093 	mode->hdisplay = hdisplay;
7094 	mode->vdisplay = vdisplay;
7095 	mode->type &= ~DRM_MODE_TYPE_PREFERRED;
7096 	strscpy(mode->name, name, DRM_DISPLAY_MODE_LEN);
7097 
7098 	return mode;
7099 
7100 }
7101 
7102 static void amdgpu_dm_connector_add_common_modes(struct drm_encoder *encoder,
7103 						 struct drm_connector *connector)
7104 {
7105 	struct amdgpu_encoder *amdgpu_encoder = to_amdgpu_encoder(encoder);
7106 	struct drm_display_mode *mode = NULL;
7107 	struct drm_display_mode *native_mode = &amdgpu_encoder->native_mode;
7108 	struct amdgpu_dm_connector *amdgpu_dm_connector =
7109 				to_amdgpu_dm_connector(connector);
7110 	int i;
7111 	int n;
7112 	struct mode_size {
7113 		char name[DRM_DISPLAY_MODE_LEN];
7114 		int w;
7115 		int h;
7116 	} common_modes[] = {
7117 		{  "640x480",  640,  480},
7118 		{  "800x600",  800,  600},
7119 		{ "1024x768", 1024,  768},
7120 		{ "1280x720", 1280,  720},
7121 		{ "1280x800", 1280,  800},
7122 		{"1280x1024", 1280, 1024},
7123 		{ "1440x900", 1440,  900},
7124 		{"1680x1050", 1680, 1050},
7125 		{"1600x1200", 1600, 1200},
7126 		{"1920x1080", 1920, 1080},
7127 		{"1920x1200", 1920, 1200}
7128 	};
7129 
7130 	n = ARRAY_SIZE(common_modes);
7131 
7132 	for (i = 0; i < n; i++) {
7133 		struct drm_display_mode *curmode = NULL;
7134 		bool mode_existed = false;
7135 
7136 		if (common_modes[i].w > native_mode->hdisplay ||
7137 		    common_modes[i].h > native_mode->vdisplay ||
7138 		   (common_modes[i].w == native_mode->hdisplay &&
7139 		    common_modes[i].h == native_mode->vdisplay))
7140 			continue;
7141 
7142 		list_for_each_entry(curmode, &connector->probed_modes, head) {
7143 			if (common_modes[i].w == curmode->hdisplay &&
7144 			    common_modes[i].h == curmode->vdisplay) {
7145 				mode_existed = true;
7146 				break;
7147 			}
7148 		}
7149 
7150 		if (mode_existed)
7151 			continue;
7152 
7153 		mode = amdgpu_dm_create_common_mode(encoder,
7154 				common_modes[i].name, common_modes[i].w,
7155 				common_modes[i].h);
7156 		if (!mode)
7157 			continue;
7158 
7159 		drm_mode_probed_add(connector, mode);
7160 		amdgpu_dm_connector->num_modes++;
7161 	}
7162 }
7163 
7164 static void amdgpu_set_panel_orientation(struct drm_connector *connector)
7165 {
7166 	struct drm_encoder *encoder;
7167 	struct amdgpu_encoder *amdgpu_encoder;
7168 	const struct drm_display_mode *native_mode;
7169 
7170 	if (connector->connector_type != DRM_MODE_CONNECTOR_eDP &&
7171 	    connector->connector_type != DRM_MODE_CONNECTOR_LVDS)
7172 		return;
7173 
7174 	mutex_lock(&connector->dev->mode_config.mutex);
7175 	amdgpu_dm_connector_get_modes(connector);
7176 	mutex_unlock(&connector->dev->mode_config.mutex);
7177 
7178 	encoder = amdgpu_dm_connector_to_encoder(connector);
7179 	if (!encoder)
7180 		return;
7181 
7182 	amdgpu_encoder = to_amdgpu_encoder(encoder);
7183 
7184 	native_mode = &amdgpu_encoder->native_mode;
7185 	if (native_mode->hdisplay == 0 || native_mode->vdisplay == 0)
7186 		return;
7187 
7188 	drm_connector_set_panel_orientation_with_quirk(connector,
7189 						       DRM_MODE_PANEL_ORIENTATION_UNKNOWN,
7190 						       native_mode->hdisplay,
7191 						       native_mode->vdisplay);
7192 }
7193 
7194 static void amdgpu_dm_connector_ddc_get_modes(struct drm_connector *connector,
7195 					      struct edid *edid)
7196 {
7197 	struct amdgpu_dm_connector *amdgpu_dm_connector =
7198 			to_amdgpu_dm_connector(connector);
7199 
7200 	if (edid) {
7201 		/* empty probed_modes */
7202 		INIT_LIST_HEAD(&connector->probed_modes);
7203 		amdgpu_dm_connector->num_modes =
7204 				drm_add_edid_modes(connector, edid);
7205 
7206 		/* sorting the probed modes before calling function
7207 		 * amdgpu_dm_get_native_mode() since EDID can have
7208 		 * more than one preferred mode. The modes that are
7209 		 * later in the probed mode list could be of higher
7210 		 * and preferred resolution. For example, 3840x2160
7211 		 * resolution in base EDID preferred timing and 4096x2160
7212 		 * preferred resolution in DID extension block later.
7213 		 */
7214 		drm_mode_sort(&connector->probed_modes);
7215 		amdgpu_dm_get_native_mode(connector);
7216 
7217 		/* Freesync capabilities are reset by calling
7218 		 * drm_add_edid_modes() and need to be
7219 		 * restored here.
7220 		 */
7221 		amdgpu_dm_update_freesync_caps(connector, edid);
7222 	} else {
7223 		amdgpu_dm_connector->num_modes = 0;
7224 	}
7225 }
7226 
7227 static bool is_duplicate_mode(struct amdgpu_dm_connector *aconnector,
7228 			      struct drm_display_mode *mode)
7229 {
7230 	struct drm_display_mode *m;
7231 
7232 	list_for_each_entry(m, &aconnector->base.probed_modes, head) {
7233 		if (drm_mode_equal(m, mode))
7234 			return true;
7235 	}
7236 
7237 	return false;
7238 }
7239 
7240 static uint add_fs_modes(struct amdgpu_dm_connector *aconnector)
7241 {
7242 	const struct drm_display_mode *m;
7243 	struct drm_display_mode *new_mode;
7244 	uint i;
7245 	u32 new_modes_count = 0;
7246 
7247 	/* Standard FPS values
7248 	 *
7249 	 * 23.976       - TV/NTSC
7250 	 * 24           - Cinema
7251 	 * 25           - TV/PAL
7252 	 * 29.97        - TV/NTSC
7253 	 * 30           - TV/NTSC
7254 	 * 48           - Cinema HFR
7255 	 * 50           - TV/PAL
7256 	 * 60           - Commonly used
7257 	 * 48,72,96,120 - Multiples of 24
7258 	 */
7259 	static const u32 common_rates[] = {
7260 		23976, 24000, 25000, 29970, 30000,
7261 		48000, 50000, 60000, 72000, 96000, 120000
7262 	};
7263 
7264 	/*
7265 	 * Find mode with highest refresh rate with the same resolution
7266 	 * as the preferred mode. Some monitors report a preferred mode
7267 	 * with lower resolution than the highest refresh rate supported.
7268 	 */
7269 
7270 	m = get_highest_refresh_rate_mode(aconnector, true);
7271 	if (!m)
7272 		return 0;
7273 
7274 	for (i = 0; i < ARRAY_SIZE(common_rates); i++) {
7275 		u64 target_vtotal, target_vtotal_diff;
7276 		u64 num, den;
7277 
7278 		if (drm_mode_vrefresh(m) * 1000 < common_rates[i])
7279 			continue;
7280 
7281 		if (common_rates[i] < aconnector->min_vfreq * 1000 ||
7282 		    common_rates[i] > aconnector->max_vfreq * 1000)
7283 			continue;
7284 
7285 		num = (unsigned long long)m->clock * 1000 * 1000;
7286 		den = common_rates[i] * (unsigned long long)m->htotal;
7287 		target_vtotal = div_u64(num, den);
7288 		target_vtotal_diff = target_vtotal - m->vtotal;
7289 
7290 		/* Check for illegal modes */
7291 		if (m->vsync_start + target_vtotal_diff < m->vdisplay ||
7292 		    m->vsync_end + target_vtotal_diff < m->vsync_start ||
7293 		    m->vtotal + target_vtotal_diff < m->vsync_end)
7294 			continue;
7295 
7296 		new_mode = drm_mode_duplicate(aconnector->base.dev, m);
7297 		if (!new_mode)
7298 			goto out;
7299 
7300 		new_mode->vtotal += (u16)target_vtotal_diff;
7301 		new_mode->vsync_start += (u16)target_vtotal_diff;
7302 		new_mode->vsync_end += (u16)target_vtotal_diff;
7303 		new_mode->type &= ~DRM_MODE_TYPE_PREFERRED;
7304 		new_mode->type |= DRM_MODE_TYPE_DRIVER;
7305 
7306 		if (!is_duplicate_mode(aconnector, new_mode)) {
7307 			drm_mode_probed_add(&aconnector->base, new_mode);
7308 			new_modes_count += 1;
7309 		} else
7310 			drm_mode_destroy(aconnector->base.dev, new_mode);
7311 	}
7312  out:
7313 	return new_modes_count;
7314 }
7315 
7316 static void amdgpu_dm_connector_add_freesync_modes(struct drm_connector *connector,
7317 						   struct edid *edid)
7318 {
7319 	struct amdgpu_dm_connector *amdgpu_dm_connector =
7320 		to_amdgpu_dm_connector(connector);
7321 
7322 	if (!edid)
7323 		return;
7324 
7325 	if (amdgpu_dm_connector->max_vfreq - amdgpu_dm_connector->min_vfreq > 10)
7326 		amdgpu_dm_connector->num_modes +=
7327 			add_fs_modes(amdgpu_dm_connector);
7328 }
7329 
7330 static int amdgpu_dm_connector_get_modes(struct drm_connector *connector)
7331 {
7332 	struct amdgpu_dm_connector *amdgpu_dm_connector =
7333 			to_amdgpu_dm_connector(connector);
7334 	struct drm_encoder *encoder;
7335 	struct edid *edid = amdgpu_dm_connector->edid;
7336 	struct dc_link_settings *verified_link_cap =
7337 			&amdgpu_dm_connector->dc_link->verified_link_cap;
7338 	const struct dc *dc = amdgpu_dm_connector->dc_link->dc;
7339 
7340 	encoder = amdgpu_dm_connector_to_encoder(connector);
7341 
7342 	if (!drm_edid_is_valid(edid)) {
7343 		amdgpu_dm_connector->num_modes =
7344 				drm_add_modes_noedid(connector, 640, 480);
7345 		if (dc->link_srv->dp_get_encoding_format(verified_link_cap) == DP_128b_132b_ENCODING)
7346 			amdgpu_dm_connector->num_modes +=
7347 				drm_add_modes_noedid(connector, 1920, 1080);
7348 	} else {
7349 		amdgpu_dm_connector_ddc_get_modes(connector, edid);
7350 		amdgpu_dm_connector_add_common_modes(encoder, connector);
7351 		amdgpu_dm_connector_add_freesync_modes(connector, edid);
7352 	}
7353 	amdgpu_dm_fbc_init(connector);
7354 
7355 	return amdgpu_dm_connector->num_modes;
7356 }
7357 
7358 static const u32 supported_colorspaces =
7359 	BIT(DRM_MODE_COLORIMETRY_BT709_YCC) |
7360 	BIT(DRM_MODE_COLORIMETRY_OPRGB) |
7361 	BIT(DRM_MODE_COLORIMETRY_BT2020_RGB) |
7362 	BIT(DRM_MODE_COLORIMETRY_BT2020_YCC);
7363 
7364 void amdgpu_dm_connector_init_helper(struct amdgpu_display_manager *dm,
7365 				     struct amdgpu_dm_connector *aconnector,
7366 				     int connector_type,
7367 				     struct dc_link *link,
7368 				     int link_index)
7369 {
7370 	struct amdgpu_device *adev = drm_to_adev(dm->ddev);
7371 
7372 	/*
7373 	 * Some of the properties below require access to state, like bpc.
7374 	 * Allocate some default initial connector state with our reset helper.
7375 	 */
7376 	if (aconnector->base.funcs->reset)
7377 		aconnector->base.funcs->reset(&aconnector->base);
7378 
7379 	aconnector->connector_id = link_index;
7380 	aconnector->bl_idx = -1;
7381 	aconnector->dc_link = link;
7382 	aconnector->base.interlace_allowed = false;
7383 	aconnector->base.doublescan_allowed = false;
7384 	aconnector->base.stereo_allowed = false;
7385 	aconnector->base.dpms = DRM_MODE_DPMS_OFF;
7386 	aconnector->hpd.hpd = AMDGPU_HPD_NONE; /* not used */
7387 	aconnector->audio_inst = -1;
7388 	aconnector->pack_sdp_v1_3 = false;
7389 	aconnector->as_type = ADAPTIVE_SYNC_TYPE_NONE;
7390 	memset(&aconnector->vsdb_info, 0, sizeof(aconnector->vsdb_info));
7391 	mutex_init(&aconnector->hpd_lock);
7392 	mutex_init(&aconnector->handle_mst_msg_ready);
7393 
7394 	/*
7395 	 * configure support HPD hot plug connector_>polled default value is 0
7396 	 * which means HPD hot plug not supported
7397 	 */
7398 	switch (connector_type) {
7399 	case DRM_MODE_CONNECTOR_HDMIA:
7400 		aconnector->base.polled = DRM_CONNECTOR_POLL_HPD;
7401 		aconnector->base.ycbcr_420_allowed =
7402 			link->link_enc->features.hdmi_ycbcr420_supported ? true : false;
7403 		break;
7404 	case DRM_MODE_CONNECTOR_DisplayPort:
7405 		aconnector->base.polled = DRM_CONNECTOR_POLL_HPD;
7406 		link->link_enc = link_enc_cfg_get_link_enc(link);
7407 		ASSERT(link->link_enc);
7408 		if (link->link_enc)
7409 			aconnector->base.ycbcr_420_allowed =
7410 			link->link_enc->features.dp_ycbcr420_supported ? true : false;
7411 		break;
7412 	case DRM_MODE_CONNECTOR_DVID:
7413 		aconnector->base.polled = DRM_CONNECTOR_POLL_HPD;
7414 		break;
7415 	default:
7416 		break;
7417 	}
7418 
7419 	drm_object_attach_property(&aconnector->base.base,
7420 				dm->ddev->mode_config.scaling_mode_property,
7421 				DRM_MODE_SCALE_NONE);
7422 
7423 	drm_object_attach_property(&aconnector->base.base,
7424 				adev->mode_info.underscan_property,
7425 				UNDERSCAN_OFF);
7426 	drm_object_attach_property(&aconnector->base.base,
7427 				adev->mode_info.underscan_hborder_property,
7428 				0);
7429 	drm_object_attach_property(&aconnector->base.base,
7430 				adev->mode_info.underscan_vborder_property,
7431 				0);
7432 
7433 	if (!aconnector->mst_root)
7434 		drm_connector_attach_max_bpc_property(&aconnector->base, 8, 16);
7435 
7436 	aconnector->base.state->max_bpc = 16;
7437 	aconnector->base.state->max_requested_bpc = aconnector->base.state->max_bpc;
7438 
7439 	if (connector_type == DRM_MODE_CONNECTOR_eDP &&
7440 	    (dc_is_dmcu_initialized(adev->dm.dc) || adev->dm.dc->ctx->dmub_srv)) {
7441 		drm_object_attach_property(&aconnector->base.base,
7442 				adev->mode_info.abm_level_property, 0);
7443 	}
7444 
7445 	if (connector_type == DRM_MODE_CONNECTOR_HDMIA) {
7446 		/* Content Type is currently only implemented for HDMI. */
7447 		drm_connector_attach_content_type_property(&aconnector->base);
7448 	}
7449 
7450 	if (connector_type == DRM_MODE_CONNECTOR_HDMIA) {
7451 		if (!drm_mode_create_hdmi_colorspace_property(&aconnector->base, supported_colorspaces))
7452 			drm_connector_attach_colorspace_property(&aconnector->base);
7453 	} else if ((connector_type == DRM_MODE_CONNECTOR_DisplayPort && !aconnector->mst_root) ||
7454 		   connector_type == DRM_MODE_CONNECTOR_eDP) {
7455 		if (!drm_mode_create_dp_colorspace_property(&aconnector->base, supported_colorspaces))
7456 			drm_connector_attach_colorspace_property(&aconnector->base);
7457 	}
7458 
7459 	if (connector_type == DRM_MODE_CONNECTOR_HDMIA ||
7460 	    connector_type == DRM_MODE_CONNECTOR_DisplayPort ||
7461 	    connector_type == DRM_MODE_CONNECTOR_eDP) {
7462 		drm_connector_attach_hdr_output_metadata_property(&aconnector->base);
7463 
7464 		if (!aconnector->mst_root)
7465 			drm_connector_attach_vrr_capable_property(&aconnector->base);
7466 
7467 		if (adev->dm.hdcp_workqueue)
7468 			drm_connector_attach_content_protection_property(&aconnector->base, true);
7469 	}
7470 }
7471 
7472 static int amdgpu_dm_i2c_xfer(struct i2c_adapter *i2c_adap,
7473 			      struct i2c_msg *msgs, int num)
7474 {
7475 	struct amdgpu_i2c_adapter *i2c = i2c_get_adapdata(i2c_adap);
7476 	struct ddc_service *ddc_service = i2c->ddc_service;
7477 	struct i2c_command cmd;
7478 	int i;
7479 	int result = -EIO;
7480 
7481 	cmd.payloads = kcalloc(num, sizeof(struct i2c_payload), GFP_KERNEL);
7482 
7483 	if (!cmd.payloads)
7484 		return result;
7485 
7486 	cmd.number_of_payloads = num;
7487 	cmd.engine = I2C_COMMAND_ENGINE_DEFAULT;
7488 	cmd.speed = 100;
7489 
7490 	for (i = 0; i < num; i++) {
7491 		cmd.payloads[i].write = !(msgs[i].flags & I2C_M_RD);
7492 		cmd.payloads[i].address = msgs[i].addr;
7493 		cmd.payloads[i].length = msgs[i].len;
7494 		cmd.payloads[i].data = msgs[i].buf;
7495 	}
7496 
7497 	if (dc_submit_i2c(
7498 			ddc_service->ctx->dc,
7499 			ddc_service->link->link_index,
7500 			&cmd))
7501 		result = num;
7502 
7503 	kfree(cmd.payloads);
7504 	return result;
7505 }
7506 
7507 static u32 amdgpu_dm_i2c_func(struct i2c_adapter *adap)
7508 {
7509 	return I2C_FUNC_I2C | I2C_FUNC_SMBUS_EMUL;
7510 }
7511 
7512 static const struct i2c_algorithm amdgpu_dm_i2c_algo = {
7513 	.master_xfer = amdgpu_dm_i2c_xfer,
7514 	.functionality = amdgpu_dm_i2c_func,
7515 };
7516 
7517 static struct amdgpu_i2c_adapter *
7518 create_i2c(struct ddc_service *ddc_service,
7519 	   int link_index,
7520 	   int *res)
7521 {
7522 	struct amdgpu_device *adev = ddc_service->ctx->driver_context;
7523 	struct amdgpu_i2c_adapter *i2c;
7524 
7525 	i2c = kzalloc(sizeof(struct amdgpu_i2c_adapter), GFP_KERNEL);
7526 	if (!i2c)
7527 		return NULL;
7528 	i2c->base.owner = THIS_MODULE;
7529 	i2c->base.class = I2C_CLASS_DDC;
7530 	i2c->base.dev.parent = &adev->pdev->dev;
7531 	i2c->base.algo = &amdgpu_dm_i2c_algo;
7532 	snprintf(i2c->base.name, sizeof(i2c->base.name), "AMDGPU DM i2c hw bus %d", link_index);
7533 	i2c_set_adapdata(&i2c->base, i2c);
7534 	i2c->ddc_service = ddc_service;
7535 
7536 	return i2c;
7537 }
7538 
7539 
7540 /*
7541  * Note: this function assumes that dc_link_detect() was called for the
7542  * dc_link which will be represented by this aconnector.
7543  */
7544 static int amdgpu_dm_connector_init(struct amdgpu_display_manager *dm,
7545 				    struct amdgpu_dm_connector *aconnector,
7546 				    u32 link_index,
7547 				    struct amdgpu_encoder *aencoder)
7548 {
7549 	int res = 0;
7550 	int connector_type;
7551 	struct dc *dc = dm->dc;
7552 	struct dc_link *link = dc_get_link_at_index(dc, link_index);
7553 	struct amdgpu_i2c_adapter *i2c;
7554 
7555 	link->priv = aconnector;
7556 
7557 
7558 	i2c = create_i2c(link->ddc, link->link_index, &res);
7559 	if (!i2c) {
7560 		DRM_ERROR("Failed to create i2c adapter data\n");
7561 		return -ENOMEM;
7562 	}
7563 
7564 	aconnector->i2c = i2c;
7565 	res = i2c_add_adapter(&i2c->base);
7566 
7567 	if (res) {
7568 		DRM_ERROR("Failed to register hw i2c %d\n", link->link_index);
7569 		goto out_free;
7570 	}
7571 
7572 	connector_type = to_drm_connector_type(link->connector_signal);
7573 
7574 	res = drm_connector_init_with_ddc(
7575 			dm->ddev,
7576 			&aconnector->base,
7577 			&amdgpu_dm_connector_funcs,
7578 			connector_type,
7579 			&i2c->base);
7580 
7581 	if (res) {
7582 		DRM_ERROR("connector_init failed\n");
7583 		aconnector->connector_id = -1;
7584 		goto out_free;
7585 	}
7586 
7587 	drm_connector_helper_add(
7588 			&aconnector->base,
7589 			&amdgpu_dm_connector_helper_funcs);
7590 
7591 	amdgpu_dm_connector_init_helper(
7592 		dm,
7593 		aconnector,
7594 		connector_type,
7595 		link,
7596 		link_index);
7597 
7598 	drm_connector_attach_encoder(
7599 		&aconnector->base, &aencoder->base);
7600 
7601 	if (connector_type == DRM_MODE_CONNECTOR_DisplayPort
7602 		|| connector_type == DRM_MODE_CONNECTOR_eDP)
7603 		amdgpu_dm_initialize_dp_connector(dm, aconnector, link->link_index);
7604 
7605 out_free:
7606 	if (res) {
7607 		kfree(i2c);
7608 		aconnector->i2c = NULL;
7609 	}
7610 	return res;
7611 }
7612 
7613 int amdgpu_dm_get_encoder_crtc_mask(struct amdgpu_device *adev)
7614 {
7615 	switch (adev->mode_info.num_crtc) {
7616 	case 1:
7617 		return 0x1;
7618 	case 2:
7619 		return 0x3;
7620 	case 3:
7621 		return 0x7;
7622 	case 4:
7623 		return 0xf;
7624 	case 5:
7625 		return 0x1f;
7626 	case 6:
7627 	default:
7628 		return 0x3f;
7629 	}
7630 }
7631 
7632 static int amdgpu_dm_encoder_init(struct drm_device *dev,
7633 				  struct amdgpu_encoder *aencoder,
7634 				  uint32_t link_index)
7635 {
7636 	struct amdgpu_device *adev = drm_to_adev(dev);
7637 
7638 	int res = drm_encoder_init(dev,
7639 				   &aencoder->base,
7640 				   &amdgpu_dm_encoder_funcs,
7641 				   DRM_MODE_ENCODER_TMDS,
7642 				   NULL);
7643 
7644 	aencoder->base.possible_crtcs = amdgpu_dm_get_encoder_crtc_mask(adev);
7645 
7646 	if (!res)
7647 		aencoder->encoder_id = link_index;
7648 	else
7649 		aencoder->encoder_id = -1;
7650 
7651 	drm_encoder_helper_add(&aencoder->base, &amdgpu_dm_encoder_helper_funcs);
7652 
7653 	return res;
7654 }
7655 
7656 static void manage_dm_interrupts(struct amdgpu_device *adev,
7657 				 struct amdgpu_crtc *acrtc,
7658 				 bool enable)
7659 {
7660 	/*
7661 	 * We have no guarantee that the frontend index maps to the same
7662 	 * backend index - some even map to more than one.
7663 	 *
7664 	 * TODO: Use a different interrupt or check DC itself for the mapping.
7665 	 */
7666 	int irq_type =
7667 		amdgpu_display_crtc_idx_to_irq_type(
7668 			adev,
7669 			acrtc->crtc_id);
7670 
7671 	if (enable) {
7672 		drm_crtc_vblank_on(&acrtc->base);
7673 		amdgpu_irq_get(
7674 			adev,
7675 			&adev->pageflip_irq,
7676 			irq_type);
7677 #if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
7678 		amdgpu_irq_get(
7679 			adev,
7680 			&adev->vline0_irq,
7681 			irq_type);
7682 #endif
7683 	} else {
7684 #if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
7685 		amdgpu_irq_put(
7686 			adev,
7687 			&adev->vline0_irq,
7688 			irq_type);
7689 #endif
7690 		amdgpu_irq_put(
7691 			adev,
7692 			&adev->pageflip_irq,
7693 			irq_type);
7694 		drm_crtc_vblank_off(&acrtc->base);
7695 	}
7696 }
7697 
7698 static void dm_update_pflip_irq_state(struct amdgpu_device *adev,
7699 				      struct amdgpu_crtc *acrtc)
7700 {
7701 	int irq_type =
7702 		amdgpu_display_crtc_idx_to_irq_type(adev, acrtc->crtc_id);
7703 
7704 	/**
7705 	 * This reads the current state for the IRQ and force reapplies
7706 	 * the setting to hardware.
7707 	 */
7708 	amdgpu_irq_update(adev, &adev->pageflip_irq, irq_type);
7709 }
7710 
7711 static bool
7712 is_scaling_state_different(const struct dm_connector_state *dm_state,
7713 			   const struct dm_connector_state *old_dm_state)
7714 {
7715 	if (dm_state->scaling != old_dm_state->scaling)
7716 		return true;
7717 	if (!dm_state->underscan_enable && old_dm_state->underscan_enable) {
7718 		if (old_dm_state->underscan_hborder != 0 && old_dm_state->underscan_vborder != 0)
7719 			return true;
7720 	} else  if (dm_state->underscan_enable && !old_dm_state->underscan_enable) {
7721 		if (dm_state->underscan_hborder != 0 && dm_state->underscan_vborder != 0)
7722 			return true;
7723 	} else if (dm_state->underscan_hborder != old_dm_state->underscan_hborder ||
7724 		   dm_state->underscan_vborder != old_dm_state->underscan_vborder)
7725 		return true;
7726 	return false;
7727 }
7728 
7729 static bool is_content_protection_different(struct drm_crtc_state *new_crtc_state,
7730 					    struct drm_crtc_state *old_crtc_state,
7731 					    struct drm_connector_state *new_conn_state,
7732 					    struct drm_connector_state *old_conn_state,
7733 					    const struct drm_connector *connector,
7734 					    struct hdcp_workqueue *hdcp_w)
7735 {
7736 	struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
7737 	struct dm_connector_state *dm_con_state = to_dm_connector_state(connector->state);
7738 
7739 	pr_debug("[HDCP_DM] connector->index: %x connect_status: %x dpms: %x\n",
7740 		connector->index, connector->status, connector->dpms);
7741 	pr_debug("[HDCP_DM] state protection old: %x new: %x\n",
7742 		old_conn_state->content_protection, new_conn_state->content_protection);
7743 
7744 	if (old_crtc_state)
7745 		pr_debug("[HDCP_DM] old crtc en: %x a: %x m: %x a-chg: %x c-chg: %x\n",
7746 		old_crtc_state->enable,
7747 		old_crtc_state->active,
7748 		old_crtc_state->mode_changed,
7749 		old_crtc_state->active_changed,
7750 		old_crtc_state->connectors_changed);
7751 
7752 	if (new_crtc_state)
7753 		pr_debug("[HDCP_DM] NEW crtc en: %x a: %x m: %x a-chg: %x c-chg: %x\n",
7754 		new_crtc_state->enable,
7755 		new_crtc_state->active,
7756 		new_crtc_state->mode_changed,
7757 		new_crtc_state->active_changed,
7758 		new_crtc_state->connectors_changed);
7759 
7760 	/* hdcp content type change */
7761 	if (old_conn_state->hdcp_content_type != new_conn_state->hdcp_content_type &&
7762 	    new_conn_state->content_protection != DRM_MODE_CONTENT_PROTECTION_UNDESIRED) {
7763 		new_conn_state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
7764 		pr_debug("[HDCP_DM] Type0/1 change %s :true\n", __func__);
7765 		return true;
7766 	}
7767 
7768 	/* CP is being re enabled, ignore this */
7769 	if (old_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED &&
7770 	    new_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED) {
7771 		if (new_crtc_state && new_crtc_state->mode_changed) {
7772 			new_conn_state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
7773 			pr_debug("[HDCP_DM] ENABLED->DESIRED & mode_changed %s :true\n", __func__);
7774 			return true;
7775 		}
7776 		new_conn_state->content_protection = DRM_MODE_CONTENT_PROTECTION_ENABLED;
7777 		pr_debug("[HDCP_DM] ENABLED -> DESIRED %s :false\n", __func__);
7778 		return false;
7779 	}
7780 
7781 	/* S3 resume case, since old state will always be 0 (UNDESIRED) and the restored state will be ENABLED
7782 	 *
7783 	 * Handles:	UNDESIRED -> ENABLED
7784 	 */
7785 	if (old_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_UNDESIRED &&
7786 	    new_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED)
7787 		new_conn_state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
7788 
7789 	/* Stream removed and re-enabled
7790 	 *
7791 	 * Can sometimes overlap with the HPD case,
7792 	 * thus set update_hdcp to false to avoid
7793 	 * setting HDCP multiple times.
7794 	 *
7795 	 * Handles:	DESIRED -> DESIRED (Special case)
7796 	 */
7797 	if (!(old_conn_state->crtc && old_conn_state->crtc->enabled) &&
7798 		new_conn_state->crtc && new_conn_state->crtc->enabled &&
7799 		connector->state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED) {
7800 		dm_con_state->update_hdcp = false;
7801 		pr_debug("[HDCP_DM] DESIRED->DESIRED (Stream removed and re-enabled) %s :true\n",
7802 			__func__);
7803 		return true;
7804 	}
7805 
7806 	/* Hot-plug, headless s3, dpms
7807 	 *
7808 	 * Only start HDCP if the display is connected/enabled.
7809 	 * update_hdcp flag will be set to false until the next
7810 	 * HPD comes in.
7811 	 *
7812 	 * Handles:	DESIRED -> DESIRED (Special case)
7813 	 */
7814 	if (dm_con_state->update_hdcp &&
7815 	new_conn_state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED &&
7816 	connector->dpms == DRM_MODE_DPMS_ON && aconnector->dc_sink != NULL) {
7817 		dm_con_state->update_hdcp = false;
7818 		pr_debug("[HDCP_DM] DESIRED->DESIRED (Hot-plug, headless s3, dpms) %s :true\n",
7819 			__func__);
7820 		return true;
7821 	}
7822 
7823 	if (old_conn_state->content_protection == new_conn_state->content_protection) {
7824 		if (new_conn_state->content_protection >= DRM_MODE_CONTENT_PROTECTION_DESIRED) {
7825 			if (new_crtc_state && new_crtc_state->mode_changed) {
7826 				pr_debug("[HDCP_DM] DESIRED->DESIRED or ENABLE->ENABLE mode_change %s :true\n",
7827 					__func__);
7828 				return true;
7829 			}
7830 			pr_debug("[HDCP_DM] DESIRED->DESIRED & ENABLE->ENABLE %s :false\n",
7831 				__func__);
7832 			return false;
7833 		}
7834 
7835 		pr_debug("[HDCP_DM] UNDESIRED->UNDESIRED %s :false\n", __func__);
7836 		return false;
7837 	}
7838 
7839 	if (new_conn_state->content_protection != DRM_MODE_CONTENT_PROTECTION_ENABLED) {
7840 		pr_debug("[HDCP_DM] UNDESIRED->DESIRED or DESIRED->UNDESIRED or ENABLED->UNDESIRED %s :true\n",
7841 			__func__);
7842 		return true;
7843 	}
7844 
7845 	pr_debug("[HDCP_DM] DESIRED->ENABLED %s :false\n", __func__);
7846 	return false;
7847 }
7848 
7849 static void remove_stream(struct amdgpu_device *adev,
7850 			  struct amdgpu_crtc *acrtc,
7851 			  struct dc_stream_state *stream)
7852 {
7853 	/* this is the update mode case */
7854 
7855 	acrtc->otg_inst = -1;
7856 	acrtc->enabled = false;
7857 }
7858 
7859 static void prepare_flip_isr(struct amdgpu_crtc *acrtc)
7860 {
7861 
7862 	assert_spin_locked(&acrtc->base.dev->event_lock);
7863 	WARN_ON(acrtc->event);
7864 
7865 	acrtc->event = acrtc->base.state->event;
7866 
7867 	/* Set the flip status */
7868 	acrtc->pflip_status = AMDGPU_FLIP_SUBMITTED;
7869 
7870 	/* Mark this event as consumed */
7871 	acrtc->base.state->event = NULL;
7872 
7873 	drm_dbg_state(acrtc->base.dev,
7874 		      "crtc:%d, pflip_stat:AMDGPU_FLIP_SUBMITTED\n",
7875 		      acrtc->crtc_id);
7876 }
7877 
7878 static void update_freesync_state_on_stream(
7879 	struct amdgpu_display_manager *dm,
7880 	struct dm_crtc_state *new_crtc_state,
7881 	struct dc_stream_state *new_stream,
7882 	struct dc_plane_state *surface,
7883 	u32 flip_timestamp_in_us)
7884 {
7885 	struct mod_vrr_params vrr_params;
7886 	struct dc_info_packet vrr_infopacket = {0};
7887 	struct amdgpu_device *adev = dm->adev;
7888 	struct amdgpu_crtc *acrtc = to_amdgpu_crtc(new_crtc_state->base.crtc);
7889 	unsigned long flags;
7890 	bool pack_sdp_v1_3 = false;
7891 	struct amdgpu_dm_connector *aconn;
7892 	enum vrr_packet_type packet_type = PACKET_TYPE_VRR;
7893 
7894 	if (!new_stream)
7895 		return;
7896 
7897 	/*
7898 	 * TODO: Determine why min/max totals and vrefresh can be 0 here.
7899 	 * For now it's sufficient to just guard against these conditions.
7900 	 */
7901 
7902 	if (!new_stream->timing.h_total || !new_stream->timing.v_total)
7903 		return;
7904 
7905 	spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
7906 	vrr_params = acrtc->dm_irq_params.vrr_params;
7907 
7908 	if (surface) {
7909 		mod_freesync_handle_preflip(
7910 			dm->freesync_module,
7911 			surface,
7912 			new_stream,
7913 			flip_timestamp_in_us,
7914 			&vrr_params);
7915 
7916 		if (adev->family < AMDGPU_FAMILY_AI &&
7917 		    amdgpu_dm_crtc_vrr_active(new_crtc_state)) {
7918 			mod_freesync_handle_v_update(dm->freesync_module,
7919 						     new_stream, &vrr_params);
7920 
7921 			/* Need to call this before the frame ends. */
7922 			dc_stream_adjust_vmin_vmax(dm->dc,
7923 						   new_crtc_state->stream,
7924 						   &vrr_params.adjust);
7925 		}
7926 	}
7927 
7928 	aconn = (struct amdgpu_dm_connector *)new_stream->dm_stream_context;
7929 
7930 	if (aconn && (aconn->as_type == FREESYNC_TYPE_PCON_IN_WHITELIST || aconn->vsdb_info.replay_mode)) {
7931 		pack_sdp_v1_3 = aconn->pack_sdp_v1_3;
7932 
7933 		if (aconn->vsdb_info.amd_vsdb_version == 1)
7934 			packet_type = PACKET_TYPE_FS_V1;
7935 		else if (aconn->vsdb_info.amd_vsdb_version == 2)
7936 			packet_type = PACKET_TYPE_FS_V2;
7937 		else if (aconn->vsdb_info.amd_vsdb_version == 3)
7938 			packet_type = PACKET_TYPE_FS_V3;
7939 
7940 		mod_build_adaptive_sync_infopacket(new_stream, aconn->as_type, NULL,
7941 					&new_stream->adaptive_sync_infopacket);
7942 	}
7943 
7944 	mod_freesync_build_vrr_infopacket(
7945 		dm->freesync_module,
7946 		new_stream,
7947 		&vrr_params,
7948 		packet_type,
7949 		TRANSFER_FUNC_UNKNOWN,
7950 		&vrr_infopacket,
7951 		pack_sdp_v1_3);
7952 
7953 	new_crtc_state->freesync_vrr_info_changed |=
7954 		(memcmp(&new_crtc_state->vrr_infopacket,
7955 			&vrr_infopacket,
7956 			sizeof(vrr_infopacket)) != 0);
7957 
7958 	acrtc->dm_irq_params.vrr_params = vrr_params;
7959 	new_crtc_state->vrr_infopacket = vrr_infopacket;
7960 
7961 	new_stream->vrr_infopacket = vrr_infopacket;
7962 	new_stream->allow_freesync = mod_freesync_get_freesync_enabled(&vrr_params);
7963 
7964 	if (new_crtc_state->freesync_vrr_info_changed)
7965 		DRM_DEBUG_KMS("VRR packet update: crtc=%u enabled=%d state=%d",
7966 			      new_crtc_state->base.crtc->base.id,
7967 			      (int)new_crtc_state->base.vrr_enabled,
7968 			      (int)vrr_params.state);
7969 
7970 	spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
7971 }
7972 
7973 static void update_stream_irq_parameters(
7974 	struct amdgpu_display_manager *dm,
7975 	struct dm_crtc_state *new_crtc_state)
7976 {
7977 	struct dc_stream_state *new_stream = new_crtc_state->stream;
7978 	struct mod_vrr_params vrr_params;
7979 	struct mod_freesync_config config = new_crtc_state->freesync_config;
7980 	struct amdgpu_device *adev = dm->adev;
7981 	struct amdgpu_crtc *acrtc = to_amdgpu_crtc(new_crtc_state->base.crtc);
7982 	unsigned long flags;
7983 
7984 	if (!new_stream)
7985 		return;
7986 
7987 	/*
7988 	 * TODO: Determine why min/max totals and vrefresh can be 0 here.
7989 	 * For now it's sufficient to just guard against these conditions.
7990 	 */
7991 	if (!new_stream->timing.h_total || !new_stream->timing.v_total)
7992 		return;
7993 
7994 	spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
7995 	vrr_params = acrtc->dm_irq_params.vrr_params;
7996 
7997 	if (new_crtc_state->vrr_supported &&
7998 	    config.min_refresh_in_uhz &&
7999 	    config.max_refresh_in_uhz) {
8000 		/*
8001 		 * if freesync compatible mode was set, config.state will be set
8002 		 * in atomic check
8003 		 */
8004 		if (config.state == VRR_STATE_ACTIVE_FIXED && config.fixed_refresh_in_uhz &&
8005 		    (!drm_atomic_crtc_needs_modeset(&new_crtc_state->base) ||
8006 		     new_crtc_state->freesync_config.state == VRR_STATE_ACTIVE_FIXED)) {
8007 			vrr_params.max_refresh_in_uhz = config.max_refresh_in_uhz;
8008 			vrr_params.min_refresh_in_uhz = config.min_refresh_in_uhz;
8009 			vrr_params.fixed_refresh_in_uhz = config.fixed_refresh_in_uhz;
8010 			vrr_params.state = VRR_STATE_ACTIVE_FIXED;
8011 		} else {
8012 			config.state = new_crtc_state->base.vrr_enabled ?
8013 						     VRR_STATE_ACTIVE_VARIABLE :
8014 						     VRR_STATE_INACTIVE;
8015 		}
8016 	} else {
8017 		config.state = VRR_STATE_UNSUPPORTED;
8018 	}
8019 
8020 	mod_freesync_build_vrr_params(dm->freesync_module,
8021 				      new_stream,
8022 				      &config, &vrr_params);
8023 
8024 	new_crtc_state->freesync_config = config;
8025 	/* Copy state for access from DM IRQ handler */
8026 	acrtc->dm_irq_params.freesync_config = config;
8027 	acrtc->dm_irq_params.active_planes = new_crtc_state->active_planes;
8028 	acrtc->dm_irq_params.vrr_params = vrr_params;
8029 	spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
8030 }
8031 
8032 static void amdgpu_dm_handle_vrr_transition(struct dm_crtc_state *old_state,
8033 					    struct dm_crtc_state *new_state)
8034 {
8035 	bool old_vrr_active = amdgpu_dm_crtc_vrr_active(old_state);
8036 	bool new_vrr_active = amdgpu_dm_crtc_vrr_active(new_state);
8037 
8038 	if (!old_vrr_active && new_vrr_active) {
8039 		/* Transition VRR inactive -> active:
8040 		 * While VRR is active, we must not disable vblank irq, as a
8041 		 * reenable after disable would compute bogus vblank/pflip
8042 		 * timestamps if it likely happened inside display front-porch.
8043 		 *
8044 		 * We also need vupdate irq for the actual core vblank handling
8045 		 * at end of vblank.
8046 		 */
8047 		WARN_ON(amdgpu_dm_crtc_set_vupdate_irq(new_state->base.crtc, true) != 0);
8048 		WARN_ON(drm_crtc_vblank_get(new_state->base.crtc) != 0);
8049 		DRM_DEBUG_DRIVER("%s: crtc=%u VRR off->on: Get vblank ref\n",
8050 				 __func__, new_state->base.crtc->base.id);
8051 	} else if (old_vrr_active && !new_vrr_active) {
8052 		/* Transition VRR active -> inactive:
8053 		 * Allow vblank irq disable again for fixed refresh rate.
8054 		 */
8055 		WARN_ON(amdgpu_dm_crtc_set_vupdate_irq(new_state->base.crtc, false) != 0);
8056 		drm_crtc_vblank_put(new_state->base.crtc);
8057 		DRM_DEBUG_DRIVER("%s: crtc=%u VRR on->off: Drop vblank ref\n",
8058 				 __func__, new_state->base.crtc->base.id);
8059 	}
8060 }
8061 
8062 static void amdgpu_dm_commit_cursors(struct drm_atomic_state *state)
8063 {
8064 	struct drm_plane *plane;
8065 	struct drm_plane_state *old_plane_state;
8066 	int i;
8067 
8068 	/*
8069 	 * TODO: Make this per-stream so we don't issue redundant updates for
8070 	 * commits with multiple streams.
8071 	 */
8072 	for_each_old_plane_in_state(state, plane, old_plane_state, i)
8073 		if (plane->type == DRM_PLANE_TYPE_CURSOR)
8074 			amdgpu_dm_plane_handle_cursor_update(plane, old_plane_state);
8075 }
8076 
8077 static inline uint32_t get_mem_type(struct drm_framebuffer *fb)
8078 {
8079 	struct amdgpu_bo *abo = gem_to_amdgpu_bo(fb->obj[0]);
8080 
8081 	return abo->tbo.resource ? abo->tbo.resource->mem_type : 0;
8082 }
8083 
8084 static void amdgpu_dm_commit_planes(struct drm_atomic_state *state,
8085 				    struct drm_device *dev,
8086 				    struct amdgpu_display_manager *dm,
8087 				    struct drm_crtc *pcrtc,
8088 				    bool wait_for_vblank)
8089 {
8090 	u32 i;
8091 	u64 timestamp_ns = ktime_get_ns();
8092 	struct drm_plane *plane;
8093 	struct drm_plane_state *old_plane_state, *new_plane_state;
8094 	struct amdgpu_crtc *acrtc_attach = to_amdgpu_crtc(pcrtc);
8095 	struct drm_crtc_state *new_pcrtc_state =
8096 			drm_atomic_get_new_crtc_state(state, pcrtc);
8097 	struct dm_crtc_state *acrtc_state = to_dm_crtc_state(new_pcrtc_state);
8098 	struct dm_crtc_state *dm_old_crtc_state =
8099 			to_dm_crtc_state(drm_atomic_get_old_crtc_state(state, pcrtc));
8100 	int planes_count = 0, vpos, hpos;
8101 	unsigned long flags;
8102 	u32 target_vblank, last_flip_vblank;
8103 	bool vrr_active = amdgpu_dm_crtc_vrr_active(acrtc_state);
8104 	bool cursor_update = false;
8105 	bool pflip_present = false;
8106 	bool dirty_rects_changed = false;
8107 	struct {
8108 		struct dc_surface_update surface_updates[MAX_SURFACES];
8109 		struct dc_plane_info plane_infos[MAX_SURFACES];
8110 		struct dc_scaling_info scaling_infos[MAX_SURFACES];
8111 		struct dc_flip_addrs flip_addrs[MAX_SURFACES];
8112 		struct dc_stream_update stream_update;
8113 	} *bundle;
8114 
8115 	bundle = kzalloc(sizeof(*bundle), GFP_KERNEL);
8116 
8117 	if (!bundle) {
8118 		drm_err(dev, "Failed to allocate update bundle\n");
8119 		goto cleanup;
8120 	}
8121 
8122 	/*
8123 	 * Disable the cursor first if we're disabling all the planes.
8124 	 * It'll remain on the screen after the planes are re-enabled
8125 	 * if we don't.
8126 	 */
8127 	if (acrtc_state->active_planes == 0)
8128 		amdgpu_dm_commit_cursors(state);
8129 
8130 	/* update planes when needed */
8131 	for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i) {
8132 		struct drm_crtc *crtc = new_plane_state->crtc;
8133 		struct drm_crtc_state *new_crtc_state;
8134 		struct drm_framebuffer *fb = new_plane_state->fb;
8135 		struct amdgpu_framebuffer *afb = (struct amdgpu_framebuffer *)fb;
8136 		bool plane_needs_flip;
8137 		struct dc_plane_state *dc_plane;
8138 		struct dm_plane_state *dm_new_plane_state = to_dm_plane_state(new_plane_state);
8139 
8140 		/* Cursor plane is handled after stream updates */
8141 		if (plane->type == DRM_PLANE_TYPE_CURSOR) {
8142 			if ((fb && crtc == pcrtc) ||
8143 			    (old_plane_state->fb && old_plane_state->crtc == pcrtc))
8144 				cursor_update = true;
8145 
8146 			continue;
8147 		}
8148 
8149 		if (!fb || !crtc || pcrtc != crtc)
8150 			continue;
8151 
8152 		new_crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
8153 		if (!new_crtc_state->active)
8154 			continue;
8155 
8156 		dc_plane = dm_new_plane_state->dc_state;
8157 		if (!dc_plane)
8158 			continue;
8159 
8160 		bundle->surface_updates[planes_count].surface = dc_plane;
8161 		if (new_pcrtc_state->color_mgmt_changed) {
8162 			bundle->surface_updates[planes_count].gamma = dc_plane->gamma_correction;
8163 			bundle->surface_updates[planes_count].in_transfer_func = dc_plane->in_transfer_func;
8164 			bundle->surface_updates[planes_count].gamut_remap_matrix = &dc_plane->gamut_remap_matrix;
8165 		}
8166 
8167 		amdgpu_dm_plane_fill_dc_scaling_info(dm->adev, new_plane_state,
8168 				     &bundle->scaling_infos[planes_count]);
8169 
8170 		bundle->surface_updates[planes_count].scaling_info =
8171 			&bundle->scaling_infos[planes_count];
8172 
8173 		plane_needs_flip = old_plane_state->fb && new_plane_state->fb;
8174 
8175 		pflip_present = pflip_present || plane_needs_flip;
8176 
8177 		if (!plane_needs_flip) {
8178 			planes_count += 1;
8179 			continue;
8180 		}
8181 
8182 		fill_dc_plane_info_and_addr(
8183 			dm->adev, new_plane_state,
8184 			afb->tiling_flags,
8185 			&bundle->plane_infos[planes_count],
8186 			&bundle->flip_addrs[planes_count].address,
8187 			afb->tmz_surface, false);
8188 
8189 		drm_dbg_state(state->dev, "plane: id=%d dcc_en=%d\n",
8190 				 new_plane_state->plane->index,
8191 				 bundle->plane_infos[planes_count].dcc.enable);
8192 
8193 		bundle->surface_updates[planes_count].plane_info =
8194 			&bundle->plane_infos[planes_count];
8195 
8196 		if (acrtc_state->stream->link->psr_settings.psr_feature_enabled ||
8197 		    acrtc_state->stream->link->replay_settings.replay_feature_enabled) {
8198 			fill_dc_dirty_rects(plane, old_plane_state,
8199 					    new_plane_state, new_crtc_state,
8200 					    &bundle->flip_addrs[planes_count],
8201 					    &dirty_rects_changed);
8202 
8203 			/*
8204 			 * If the dirty regions changed, PSR-SU need to be disabled temporarily
8205 			 * and enabled it again after dirty regions are stable to avoid video glitch.
8206 			 * PSR-SU will be enabled in vblank_control_worker() if user pause the video
8207 			 * during the PSR-SU was disabled.
8208 			 */
8209 			if (acrtc_state->stream->link->psr_settings.psr_version >= DC_PSR_VERSION_SU_1 &&
8210 			    acrtc_attach->dm_irq_params.allow_psr_entry &&
8211 #ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
8212 			    !amdgpu_dm_crc_window_is_activated(acrtc_state->base.crtc) &&
8213 #endif
8214 			    dirty_rects_changed) {
8215 				mutex_lock(&dm->dc_lock);
8216 				acrtc_state->stream->link->psr_settings.psr_dirty_rects_change_timestamp_ns =
8217 				timestamp_ns;
8218 				if (acrtc_state->stream->link->psr_settings.psr_allow_active)
8219 					amdgpu_dm_psr_disable(acrtc_state->stream);
8220 				mutex_unlock(&dm->dc_lock);
8221 			}
8222 		}
8223 
8224 		/*
8225 		 * Only allow immediate flips for fast updates that don't
8226 		 * change memory domain, FB pitch, DCC state, rotation or
8227 		 * mirroring.
8228 		 *
8229 		 * dm_crtc_helper_atomic_check() only accepts async flips with
8230 		 * fast updates.
8231 		 */
8232 		if (crtc->state->async_flip &&
8233 		    (acrtc_state->update_type != UPDATE_TYPE_FAST ||
8234 		     get_mem_type(old_plane_state->fb) != get_mem_type(fb)))
8235 			drm_warn_once(state->dev,
8236 				      "[PLANE:%d:%s] async flip with non-fast update\n",
8237 				      plane->base.id, plane->name);
8238 
8239 		bundle->flip_addrs[planes_count].flip_immediate =
8240 			crtc->state->async_flip &&
8241 			acrtc_state->update_type == UPDATE_TYPE_FAST &&
8242 			get_mem_type(old_plane_state->fb) == get_mem_type(fb);
8243 
8244 		timestamp_ns = ktime_get_ns();
8245 		bundle->flip_addrs[planes_count].flip_timestamp_in_us = div_u64(timestamp_ns, 1000);
8246 		bundle->surface_updates[planes_count].flip_addr = &bundle->flip_addrs[planes_count];
8247 		bundle->surface_updates[planes_count].surface = dc_plane;
8248 
8249 		if (!bundle->surface_updates[planes_count].surface) {
8250 			DRM_ERROR("No surface for CRTC: id=%d\n",
8251 					acrtc_attach->crtc_id);
8252 			continue;
8253 		}
8254 
8255 		if (plane == pcrtc->primary)
8256 			update_freesync_state_on_stream(
8257 				dm,
8258 				acrtc_state,
8259 				acrtc_state->stream,
8260 				dc_plane,
8261 				bundle->flip_addrs[planes_count].flip_timestamp_in_us);
8262 
8263 		drm_dbg_state(state->dev, "%s Flipping to hi: 0x%x, low: 0x%x\n",
8264 				 __func__,
8265 				 bundle->flip_addrs[planes_count].address.grph.addr.high_part,
8266 				 bundle->flip_addrs[planes_count].address.grph.addr.low_part);
8267 
8268 		planes_count += 1;
8269 
8270 	}
8271 
8272 	if (pflip_present) {
8273 		if (!vrr_active) {
8274 			/* Use old throttling in non-vrr fixed refresh rate mode
8275 			 * to keep flip scheduling based on target vblank counts
8276 			 * working in a backwards compatible way, e.g., for
8277 			 * clients using the GLX_OML_sync_control extension or
8278 			 * DRI3/Present extension with defined target_msc.
8279 			 */
8280 			last_flip_vblank = amdgpu_get_vblank_counter_kms(pcrtc);
8281 		} else {
8282 			/* For variable refresh rate mode only:
8283 			 * Get vblank of last completed flip to avoid > 1 vrr
8284 			 * flips per video frame by use of throttling, but allow
8285 			 * flip programming anywhere in the possibly large
8286 			 * variable vrr vblank interval for fine-grained flip
8287 			 * timing control and more opportunity to avoid stutter
8288 			 * on late submission of flips.
8289 			 */
8290 			spin_lock_irqsave(&pcrtc->dev->event_lock, flags);
8291 			last_flip_vblank = acrtc_attach->dm_irq_params.last_flip_vblank;
8292 			spin_unlock_irqrestore(&pcrtc->dev->event_lock, flags);
8293 		}
8294 
8295 		target_vblank = last_flip_vblank + wait_for_vblank;
8296 
8297 		/*
8298 		 * Wait until we're out of the vertical blank period before the one
8299 		 * targeted by the flip
8300 		 */
8301 		while ((acrtc_attach->enabled &&
8302 			(amdgpu_display_get_crtc_scanoutpos(dm->ddev, acrtc_attach->crtc_id,
8303 							    0, &vpos, &hpos, NULL,
8304 							    NULL, &pcrtc->hwmode)
8305 			 & (DRM_SCANOUTPOS_VALID | DRM_SCANOUTPOS_IN_VBLANK)) ==
8306 			(DRM_SCANOUTPOS_VALID | DRM_SCANOUTPOS_IN_VBLANK) &&
8307 			(int)(target_vblank -
8308 			  amdgpu_get_vblank_counter_kms(pcrtc)) > 0)) {
8309 			usleep_range(1000, 1100);
8310 		}
8311 
8312 		/**
8313 		 * Prepare the flip event for the pageflip interrupt to handle.
8314 		 *
8315 		 * This only works in the case where we've already turned on the
8316 		 * appropriate hardware blocks (eg. HUBP) so in the transition case
8317 		 * from 0 -> n planes we have to skip a hardware generated event
8318 		 * and rely on sending it from software.
8319 		 */
8320 		if (acrtc_attach->base.state->event &&
8321 		    acrtc_state->active_planes > 0) {
8322 			drm_crtc_vblank_get(pcrtc);
8323 
8324 			spin_lock_irqsave(&pcrtc->dev->event_lock, flags);
8325 
8326 			WARN_ON(acrtc_attach->pflip_status != AMDGPU_FLIP_NONE);
8327 			prepare_flip_isr(acrtc_attach);
8328 
8329 			spin_unlock_irqrestore(&pcrtc->dev->event_lock, flags);
8330 		}
8331 
8332 		if (acrtc_state->stream) {
8333 			if (acrtc_state->freesync_vrr_info_changed)
8334 				bundle->stream_update.vrr_infopacket =
8335 					&acrtc_state->stream->vrr_infopacket;
8336 		}
8337 	} else if (cursor_update && acrtc_state->active_planes > 0 &&
8338 		   acrtc_attach->base.state->event) {
8339 		drm_crtc_vblank_get(pcrtc);
8340 
8341 		spin_lock_irqsave(&pcrtc->dev->event_lock, flags);
8342 
8343 		acrtc_attach->event = acrtc_attach->base.state->event;
8344 		acrtc_attach->base.state->event = NULL;
8345 
8346 		spin_unlock_irqrestore(&pcrtc->dev->event_lock, flags);
8347 	}
8348 
8349 	/* Update the planes if changed or disable if we don't have any. */
8350 	if ((planes_count || acrtc_state->active_planes == 0) &&
8351 		acrtc_state->stream) {
8352 		/*
8353 		 * If PSR or idle optimizations are enabled then flush out
8354 		 * any pending work before hardware programming.
8355 		 */
8356 		if (dm->vblank_control_workqueue)
8357 			flush_workqueue(dm->vblank_control_workqueue);
8358 
8359 		bundle->stream_update.stream = acrtc_state->stream;
8360 		if (new_pcrtc_state->mode_changed) {
8361 			bundle->stream_update.src = acrtc_state->stream->src;
8362 			bundle->stream_update.dst = acrtc_state->stream->dst;
8363 		}
8364 
8365 		if (new_pcrtc_state->color_mgmt_changed) {
8366 			/*
8367 			 * TODO: This isn't fully correct since we've actually
8368 			 * already modified the stream in place.
8369 			 */
8370 			bundle->stream_update.gamut_remap =
8371 				&acrtc_state->stream->gamut_remap_matrix;
8372 			bundle->stream_update.output_csc_transform =
8373 				&acrtc_state->stream->csc_color_matrix;
8374 			bundle->stream_update.out_transfer_func =
8375 				acrtc_state->stream->out_transfer_func;
8376 		}
8377 
8378 		acrtc_state->stream->abm_level = acrtc_state->abm_level;
8379 		if (acrtc_state->abm_level != dm_old_crtc_state->abm_level)
8380 			bundle->stream_update.abm_level = &acrtc_state->abm_level;
8381 
8382 		mutex_lock(&dm->dc_lock);
8383 		if ((acrtc_state->update_type > UPDATE_TYPE_FAST) &&
8384 				acrtc_state->stream->link->psr_settings.psr_allow_active)
8385 			amdgpu_dm_psr_disable(acrtc_state->stream);
8386 		mutex_unlock(&dm->dc_lock);
8387 
8388 		/*
8389 		 * If FreeSync state on the stream has changed then we need to
8390 		 * re-adjust the min/max bounds now that DC doesn't handle this
8391 		 * as part of commit.
8392 		 */
8393 		if (is_dc_timing_adjust_needed(dm_old_crtc_state, acrtc_state)) {
8394 			spin_lock_irqsave(&pcrtc->dev->event_lock, flags);
8395 			dc_stream_adjust_vmin_vmax(
8396 				dm->dc, acrtc_state->stream,
8397 				&acrtc_attach->dm_irq_params.vrr_params.adjust);
8398 			spin_unlock_irqrestore(&pcrtc->dev->event_lock, flags);
8399 		}
8400 		mutex_lock(&dm->dc_lock);
8401 		update_planes_and_stream_adapter(dm->dc,
8402 					 acrtc_state->update_type,
8403 					 planes_count,
8404 					 acrtc_state->stream,
8405 					 &bundle->stream_update,
8406 					 bundle->surface_updates);
8407 
8408 		/**
8409 		 * Enable or disable the interrupts on the backend.
8410 		 *
8411 		 * Most pipes are put into power gating when unused.
8412 		 *
8413 		 * When power gating is enabled on a pipe we lose the
8414 		 * interrupt enablement state when power gating is disabled.
8415 		 *
8416 		 * So we need to update the IRQ control state in hardware
8417 		 * whenever the pipe turns on (since it could be previously
8418 		 * power gated) or off (since some pipes can't be power gated
8419 		 * on some ASICs).
8420 		 */
8421 		if (dm_old_crtc_state->active_planes != acrtc_state->active_planes)
8422 			dm_update_pflip_irq_state(drm_to_adev(dev),
8423 						  acrtc_attach);
8424 
8425 		if ((acrtc_state->update_type > UPDATE_TYPE_FAST) &&
8426 				acrtc_state->stream->link->psr_settings.psr_version != DC_PSR_VERSION_UNSUPPORTED &&
8427 				!acrtc_state->stream->link->psr_settings.psr_feature_enabled)
8428 			amdgpu_dm_link_setup_psr(acrtc_state->stream);
8429 
8430 		/* Decrement skip count when PSR is enabled and we're doing fast updates. */
8431 		if (acrtc_state->update_type == UPDATE_TYPE_FAST &&
8432 		    acrtc_state->stream->link->psr_settings.psr_feature_enabled) {
8433 			struct amdgpu_dm_connector *aconn =
8434 				(struct amdgpu_dm_connector *)acrtc_state->stream->dm_stream_context;
8435 
8436 			if (aconn->psr_skip_count > 0)
8437 				aconn->psr_skip_count--;
8438 
8439 			/* Allow PSR when skip count is 0. */
8440 			acrtc_attach->dm_irq_params.allow_psr_entry = !aconn->psr_skip_count;
8441 
8442 			/*
8443 			 * If sink supports PSR SU, there is no need to rely on
8444 			 * a vblank event disable request to enable PSR. PSR SU
8445 			 * can be enabled immediately once OS demonstrates an
8446 			 * adequate number of fast atomic commits to notify KMD
8447 			 * of update events. See `vblank_control_worker()`.
8448 			 */
8449 			if (acrtc_state->stream->link->psr_settings.psr_version >= DC_PSR_VERSION_SU_1 &&
8450 			    acrtc_attach->dm_irq_params.allow_psr_entry &&
8451 #ifdef CONFIG_DRM_AMD_SECURE_DISPLAY
8452 			    !amdgpu_dm_crc_window_is_activated(acrtc_state->base.crtc) &&
8453 #endif
8454 			    !acrtc_state->stream->link->psr_settings.psr_allow_active &&
8455 			    (timestamp_ns -
8456 			    acrtc_state->stream->link->psr_settings.psr_dirty_rects_change_timestamp_ns) >
8457 			    500000000)
8458 				amdgpu_dm_psr_enable(acrtc_state->stream);
8459 		} else {
8460 			acrtc_attach->dm_irq_params.allow_psr_entry = false;
8461 		}
8462 
8463 		mutex_unlock(&dm->dc_lock);
8464 	}
8465 
8466 	/*
8467 	 * Update cursor state *after* programming all the planes.
8468 	 * This avoids redundant programming in the case where we're going
8469 	 * to be disabling a single plane - those pipes are being disabled.
8470 	 */
8471 	if (acrtc_state->active_planes)
8472 		amdgpu_dm_commit_cursors(state);
8473 
8474 cleanup:
8475 	kfree(bundle);
8476 }
8477 
8478 static void amdgpu_dm_commit_audio(struct drm_device *dev,
8479 				   struct drm_atomic_state *state)
8480 {
8481 	struct amdgpu_device *adev = drm_to_adev(dev);
8482 	struct amdgpu_dm_connector *aconnector;
8483 	struct drm_connector *connector;
8484 	struct drm_connector_state *old_con_state, *new_con_state;
8485 	struct drm_crtc_state *new_crtc_state;
8486 	struct dm_crtc_state *new_dm_crtc_state;
8487 	const struct dc_stream_status *status;
8488 	int i, inst;
8489 
8490 	/* Notify device removals. */
8491 	for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
8492 		if (old_con_state->crtc != new_con_state->crtc) {
8493 			/* CRTC changes require notification. */
8494 			goto notify;
8495 		}
8496 
8497 		if (!new_con_state->crtc)
8498 			continue;
8499 
8500 		new_crtc_state = drm_atomic_get_new_crtc_state(
8501 			state, new_con_state->crtc);
8502 
8503 		if (!new_crtc_state)
8504 			continue;
8505 
8506 		if (!drm_atomic_crtc_needs_modeset(new_crtc_state))
8507 			continue;
8508 
8509 notify:
8510 		aconnector = to_amdgpu_dm_connector(connector);
8511 
8512 		mutex_lock(&adev->dm.audio_lock);
8513 		inst = aconnector->audio_inst;
8514 		aconnector->audio_inst = -1;
8515 		mutex_unlock(&adev->dm.audio_lock);
8516 
8517 		amdgpu_dm_audio_eld_notify(adev, inst);
8518 	}
8519 
8520 	/* Notify audio device additions. */
8521 	for_each_new_connector_in_state(state, connector, new_con_state, i) {
8522 		if (!new_con_state->crtc)
8523 			continue;
8524 
8525 		new_crtc_state = drm_atomic_get_new_crtc_state(
8526 			state, new_con_state->crtc);
8527 
8528 		if (!new_crtc_state)
8529 			continue;
8530 
8531 		if (!drm_atomic_crtc_needs_modeset(new_crtc_state))
8532 			continue;
8533 
8534 		new_dm_crtc_state = to_dm_crtc_state(new_crtc_state);
8535 		if (!new_dm_crtc_state->stream)
8536 			continue;
8537 
8538 		status = dc_stream_get_status(new_dm_crtc_state->stream);
8539 		if (!status)
8540 			continue;
8541 
8542 		aconnector = to_amdgpu_dm_connector(connector);
8543 
8544 		mutex_lock(&adev->dm.audio_lock);
8545 		inst = status->audio_inst;
8546 		aconnector->audio_inst = inst;
8547 		mutex_unlock(&adev->dm.audio_lock);
8548 
8549 		amdgpu_dm_audio_eld_notify(adev, inst);
8550 	}
8551 }
8552 
8553 /*
8554  * amdgpu_dm_crtc_copy_transient_flags - copy mirrored flags from DRM to DC
8555  * @crtc_state: the DRM CRTC state
8556  * @stream_state: the DC stream state.
8557  *
8558  * Copy the mirrored transient state flags from DRM, to DC. It is used to bring
8559  * a dc_stream_state's flags in sync with a drm_crtc_state's flags.
8560  */
8561 static void amdgpu_dm_crtc_copy_transient_flags(struct drm_crtc_state *crtc_state,
8562 						struct dc_stream_state *stream_state)
8563 {
8564 	stream_state->mode_changed = drm_atomic_crtc_needs_modeset(crtc_state);
8565 }
8566 
8567 static void amdgpu_dm_commit_streams(struct drm_atomic_state *state,
8568 					struct dc_state *dc_state)
8569 {
8570 	struct drm_device *dev = state->dev;
8571 	struct amdgpu_device *adev = drm_to_adev(dev);
8572 	struct amdgpu_display_manager *dm = &adev->dm;
8573 	struct drm_crtc *crtc;
8574 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
8575 	struct dm_crtc_state *dm_old_crtc_state, *dm_new_crtc_state;
8576 	bool mode_set_reset_required = false;
8577 	u32 i;
8578 
8579 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state,
8580 				      new_crtc_state, i) {
8581 		struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
8582 
8583 		dm_old_crtc_state = to_dm_crtc_state(old_crtc_state);
8584 
8585 		if (old_crtc_state->active &&
8586 		    (!new_crtc_state->active ||
8587 		     drm_atomic_crtc_needs_modeset(new_crtc_state))) {
8588 			manage_dm_interrupts(adev, acrtc, false);
8589 			dc_stream_release(dm_old_crtc_state->stream);
8590 		}
8591 	}
8592 
8593 	drm_atomic_helper_calc_timestamping_constants(state);
8594 
8595 	/* update changed items */
8596 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
8597 		struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
8598 
8599 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
8600 		dm_old_crtc_state = to_dm_crtc_state(old_crtc_state);
8601 
8602 		drm_dbg_state(state->dev,
8603 			"amdgpu_crtc id:%d crtc_state_flags: enable:%d, active:%d, planes_changed:%d, mode_changed:%d,active_changed:%d,connectors_changed:%d\n",
8604 			acrtc->crtc_id,
8605 			new_crtc_state->enable,
8606 			new_crtc_state->active,
8607 			new_crtc_state->planes_changed,
8608 			new_crtc_state->mode_changed,
8609 			new_crtc_state->active_changed,
8610 			new_crtc_state->connectors_changed);
8611 
8612 		/* Disable cursor if disabling crtc */
8613 		if (old_crtc_state->active && !new_crtc_state->active) {
8614 			struct dc_cursor_position position;
8615 
8616 			memset(&position, 0, sizeof(position));
8617 			mutex_lock(&dm->dc_lock);
8618 			dc_stream_set_cursor_position(dm_old_crtc_state->stream, &position);
8619 			mutex_unlock(&dm->dc_lock);
8620 		}
8621 
8622 		/* Copy all transient state flags into dc state */
8623 		if (dm_new_crtc_state->stream) {
8624 			amdgpu_dm_crtc_copy_transient_flags(&dm_new_crtc_state->base,
8625 							    dm_new_crtc_state->stream);
8626 		}
8627 
8628 		/* handles headless hotplug case, updating new_state and
8629 		 * aconnector as needed
8630 		 */
8631 
8632 		if (amdgpu_dm_crtc_modeset_required(new_crtc_state, dm_new_crtc_state->stream, dm_old_crtc_state->stream)) {
8633 
8634 			DRM_DEBUG_ATOMIC("Atomic commit: SET crtc id %d: [%p]\n", acrtc->crtc_id, acrtc);
8635 
8636 			if (!dm_new_crtc_state->stream) {
8637 				/*
8638 				 * this could happen because of issues with
8639 				 * userspace notifications delivery.
8640 				 * In this case userspace tries to set mode on
8641 				 * display which is disconnected in fact.
8642 				 * dc_sink is NULL in this case on aconnector.
8643 				 * We expect reset mode will come soon.
8644 				 *
8645 				 * This can also happen when unplug is done
8646 				 * during resume sequence ended
8647 				 *
8648 				 * In this case, we want to pretend we still
8649 				 * have a sink to keep the pipe running so that
8650 				 * hw state is consistent with the sw state
8651 				 */
8652 				DRM_DEBUG_DRIVER("%s: Failed to create new stream for crtc %d\n",
8653 						__func__, acrtc->base.base.id);
8654 				continue;
8655 			}
8656 
8657 			if (dm_old_crtc_state->stream)
8658 				remove_stream(adev, acrtc, dm_old_crtc_state->stream);
8659 
8660 			pm_runtime_get_noresume(dev->dev);
8661 
8662 			acrtc->enabled = true;
8663 			acrtc->hw_mode = new_crtc_state->mode;
8664 			crtc->hwmode = new_crtc_state->mode;
8665 			mode_set_reset_required = true;
8666 		} else if (modereset_required(new_crtc_state)) {
8667 			DRM_DEBUG_ATOMIC("Atomic commit: RESET. crtc id %d:[%p]\n", acrtc->crtc_id, acrtc);
8668 			/* i.e. reset mode */
8669 			if (dm_old_crtc_state->stream)
8670 				remove_stream(adev, acrtc, dm_old_crtc_state->stream);
8671 
8672 			mode_set_reset_required = true;
8673 		}
8674 	} /* for_each_crtc_in_state() */
8675 
8676 	/* if there mode set or reset, disable eDP PSR */
8677 	if (mode_set_reset_required) {
8678 		if (dm->vblank_control_workqueue)
8679 			flush_workqueue(dm->vblank_control_workqueue);
8680 
8681 		amdgpu_dm_psr_disable_all(dm);
8682 	}
8683 
8684 	dm_enable_per_frame_crtc_master_sync(dc_state);
8685 	mutex_lock(&dm->dc_lock);
8686 	WARN_ON(!dc_commit_streams(dm->dc, dc_state->streams, dc_state->stream_count));
8687 
8688 	/* Allow idle optimization when vblank count is 0 for display off */
8689 	if (dm->active_vblank_irq_count == 0)
8690 		dc_allow_idle_optimizations(dm->dc, true);
8691 	mutex_unlock(&dm->dc_lock);
8692 
8693 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
8694 		struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
8695 
8696 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
8697 
8698 		if (dm_new_crtc_state->stream != NULL) {
8699 			const struct dc_stream_status *status =
8700 					dc_stream_get_status(dm_new_crtc_state->stream);
8701 
8702 			if (!status)
8703 				status = dc_stream_get_status_from_state(dc_state,
8704 									 dm_new_crtc_state->stream);
8705 			if (!status)
8706 				drm_err(dev,
8707 					"got no status for stream %p on acrtc%p\n",
8708 					dm_new_crtc_state->stream, acrtc);
8709 			else
8710 				acrtc->otg_inst = status->primary_otg_inst;
8711 		}
8712 	}
8713 }
8714 
8715 /**
8716  * amdgpu_dm_atomic_commit_tail() - AMDgpu DM's commit tail implementation.
8717  * @state: The atomic state to commit
8718  *
8719  * This will tell DC to commit the constructed DC state from atomic_check,
8720  * programming the hardware. Any failures here implies a hardware failure, since
8721  * atomic check should have filtered anything non-kosher.
8722  */
8723 static void amdgpu_dm_atomic_commit_tail(struct drm_atomic_state *state)
8724 {
8725 	struct drm_device *dev = state->dev;
8726 	struct amdgpu_device *adev = drm_to_adev(dev);
8727 	struct amdgpu_display_manager *dm = &adev->dm;
8728 	struct dm_atomic_state *dm_state;
8729 	struct dc_state *dc_state = NULL;
8730 	u32 i, j;
8731 	struct drm_crtc *crtc;
8732 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
8733 	unsigned long flags;
8734 	bool wait_for_vblank = true;
8735 	struct drm_connector *connector;
8736 	struct drm_connector_state *old_con_state, *new_con_state;
8737 	struct dm_crtc_state *dm_old_crtc_state, *dm_new_crtc_state;
8738 	int crtc_disable_count = 0;
8739 
8740 	trace_amdgpu_dm_atomic_commit_tail_begin(state);
8741 
8742 	if (dm->dc->caps.ips_support) {
8743 		for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
8744 			if (new_con_state->crtc &&
8745 				new_con_state->crtc->state->active &&
8746 				drm_atomic_crtc_needs_modeset(new_con_state->crtc->state)) {
8747 				dc_dmub_srv_exit_low_power_state(dm->dc);
8748 				break;
8749 			}
8750 		}
8751 	}
8752 
8753 	drm_atomic_helper_update_legacy_modeset_state(dev, state);
8754 	drm_dp_mst_atomic_wait_for_dependencies(state);
8755 
8756 	dm_state = dm_atomic_get_new_state(state);
8757 	if (dm_state && dm_state->context) {
8758 		dc_state = dm_state->context;
8759 		amdgpu_dm_commit_streams(state, dc_state);
8760 	}
8761 
8762 	for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
8763 		struct dm_connector_state *dm_new_con_state = to_dm_connector_state(new_con_state);
8764 		struct amdgpu_crtc *acrtc = to_amdgpu_crtc(dm_new_con_state->base.crtc);
8765 		struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
8766 
8767 		if (!adev->dm.hdcp_workqueue)
8768 			continue;
8769 
8770 		pr_debug("[HDCP_DM] -------------- i : %x ----------\n", i);
8771 
8772 		if (!connector)
8773 			continue;
8774 
8775 		pr_debug("[HDCP_DM] connector->index: %x connect_status: %x dpms: %x\n",
8776 			connector->index, connector->status, connector->dpms);
8777 		pr_debug("[HDCP_DM] state protection old: %x new: %x\n",
8778 			old_con_state->content_protection, new_con_state->content_protection);
8779 
8780 		if (aconnector->dc_sink) {
8781 			if (aconnector->dc_sink->sink_signal != SIGNAL_TYPE_VIRTUAL &&
8782 				aconnector->dc_sink->sink_signal != SIGNAL_TYPE_NONE) {
8783 				pr_debug("[HDCP_DM] pipe_ctx dispname=%s\n",
8784 				aconnector->dc_sink->edid_caps.display_name);
8785 			}
8786 		}
8787 
8788 		new_crtc_state = NULL;
8789 		old_crtc_state = NULL;
8790 
8791 		if (acrtc) {
8792 			new_crtc_state = drm_atomic_get_new_crtc_state(state, &acrtc->base);
8793 			old_crtc_state = drm_atomic_get_old_crtc_state(state, &acrtc->base);
8794 		}
8795 
8796 		if (old_crtc_state)
8797 			pr_debug("old crtc en: %x a: %x m: %x a-chg: %x c-chg: %x\n",
8798 			old_crtc_state->enable,
8799 			old_crtc_state->active,
8800 			old_crtc_state->mode_changed,
8801 			old_crtc_state->active_changed,
8802 			old_crtc_state->connectors_changed);
8803 
8804 		if (new_crtc_state)
8805 			pr_debug("NEW crtc en: %x a: %x m: %x a-chg: %x c-chg: %x\n",
8806 			new_crtc_state->enable,
8807 			new_crtc_state->active,
8808 			new_crtc_state->mode_changed,
8809 			new_crtc_state->active_changed,
8810 			new_crtc_state->connectors_changed);
8811 	}
8812 
8813 	for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
8814 		struct dm_connector_state *dm_new_con_state = to_dm_connector_state(new_con_state);
8815 		struct amdgpu_crtc *acrtc = to_amdgpu_crtc(dm_new_con_state->base.crtc);
8816 		struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
8817 
8818 		if (!adev->dm.hdcp_workqueue)
8819 			continue;
8820 
8821 		new_crtc_state = NULL;
8822 		old_crtc_state = NULL;
8823 
8824 		if (acrtc) {
8825 			new_crtc_state = drm_atomic_get_new_crtc_state(state, &acrtc->base);
8826 			old_crtc_state = drm_atomic_get_old_crtc_state(state, &acrtc->base);
8827 		}
8828 
8829 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
8830 
8831 		if (dm_new_crtc_state && dm_new_crtc_state->stream == NULL &&
8832 		    connector->state->content_protection == DRM_MODE_CONTENT_PROTECTION_ENABLED) {
8833 			hdcp_reset_display(adev->dm.hdcp_workqueue, aconnector->dc_link->link_index);
8834 			new_con_state->content_protection = DRM_MODE_CONTENT_PROTECTION_DESIRED;
8835 			dm_new_con_state->update_hdcp = true;
8836 			continue;
8837 		}
8838 
8839 		if (is_content_protection_different(new_crtc_state, old_crtc_state, new_con_state,
8840 											old_con_state, connector, adev->dm.hdcp_workqueue)) {
8841 			/* when display is unplugged from mst hub, connctor will
8842 			 * be destroyed within dm_dp_mst_connector_destroy. connector
8843 			 * hdcp perperties, like type, undesired, desired, enabled,
8844 			 * will be lost. So, save hdcp properties into hdcp_work within
8845 			 * amdgpu_dm_atomic_commit_tail. if the same display is
8846 			 * plugged back with same display index, its hdcp properties
8847 			 * will be retrieved from hdcp_work within dm_dp_mst_get_modes
8848 			 */
8849 
8850 			bool enable_encryption = false;
8851 
8852 			if (new_con_state->content_protection == DRM_MODE_CONTENT_PROTECTION_DESIRED)
8853 				enable_encryption = true;
8854 
8855 			if (aconnector->dc_link && aconnector->dc_sink &&
8856 				aconnector->dc_link->type == dc_connection_mst_branch) {
8857 				struct hdcp_workqueue *hdcp_work = adev->dm.hdcp_workqueue;
8858 				struct hdcp_workqueue *hdcp_w =
8859 					&hdcp_work[aconnector->dc_link->link_index];
8860 
8861 				hdcp_w->hdcp_content_type[connector->index] =
8862 					new_con_state->hdcp_content_type;
8863 				hdcp_w->content_protection[connector->index] =
8864 					new_con_state->content_protection;
8865 			}
8866 
8867 			if (new_crtc_state && new_crtc_state->mode_changed &&
8868 				new_con_state->content_protection >= DRM_MODE_CONTENT_PROTECTION_DESIRED)
8869 				enable_encryption = true;
8870 
8871 			DRM_INFO("[HDCP_DM] hdcp_update_display enable_encryption = %x\n", enable_encryption);
8872 
8873 			hdcp_update_display(
8874 				adev->dm.hdcp_workqueue, aconnector->dc_link->link_index, aconnector,
8875 				new_con_state->hdcp_content_type, enable_encryption);
8876 		}
8877 	}
8878 
8879 	/* Handle connector state changes */
8880 	for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
8881 		struct dm_connector_state *dm_new_con_state = to_dm_connector_state(new_con_state);
8882 		struct dm_connector_state *dm_old_con_state = to_dm_connector_state(old_con_state);
8883 		struct amdgpu_crtc *acrtc = to_amdgpu_crtc(dm_new_con_state->base.crtc);
8884 		struct dc_surface_update *dummy_updates;
8885 		struct dc_stream_update stream_update;
8886 		struct dc_info_packet hdr_packet;
8887 		struct dc_stream_status *status = NULL;
8888 		bool abm_changed, hdr_changed, scaling_changed;
8889 
8890 		memset(&stream_update, 0, sizeof(stream_update));
8891 
8892 		if (acrtc) {
8893 			new_crtc_state = drm_atomic_get_new_crtc_state(state, &acrtc->base);
8894 			old_crtc_state = drm_atomic_get_old_crtc_state(state, &acrtc->base);
8895 		}
8896 
8897 		/* Skip any modesets/resets */
8898 		if (!acrtc || drm_atomic_crtc_needs_modeset(new_crtc_state))
8899 			continue;
8900 
8901 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
8902 		dm_old_crtc_state = to_dm_crtc_state(old_crtc_state);
8903 
8904 		scaling_changed = is_scaling_state_different(dm_new_con_state,
8905 							     dm_old_con_state);
8906 
8907 		abm_changed = dm_new_crtc_state->abm_level !=
8908 			      dm_old_crtc_state->abm_level;
8909 
8910 		hdr_changed =
8911 			!drm_connector_atomic_hdr_metadata_equal(old_con_state, new_con_state);
8912 
8913 		if (!scaling_changed && !abm_changed && !hdr_changed)
8914 			continue;
8915 
8916 		stream_update.stream = dm_new_crtc_state->stream;
8917 		if (scaling_changed) {
8918 			update_stream_scaling_settings(&dm_new_con_state->base.crtc->mode,
8919 					dm_new_con_state, dm_new_crtc_state->stream);
8920 
8921 			stream_update.src = dm_new_crtc_state->stream->src;
8922 			stream_update.dst = dm_new_crtc_state->stream->dst;
8923 		}
8924 
8925 		if (abm_changed) {
8926 			dm_new_crtc_state->stream->abm_level = dm_new_crtc_state->abm_level;
8927 
8928 			stream_update.abm_level = &dm_new_crtc_state->abm_level;
8929 		}
8930 
8931 		if (hdr_changed) {
8932 			fill_hdr_info_packet(new_con_state, &hdr_packet);
8933 			stream_update.hdr_static_metadata = &hdr_packet;
8934 		}
8935 
8936 		status = dc_stream_get_status(dm_new_crtc_state->stream);
8937 
8938 		if (WARN_ON(!status))
8939 			continue;
8940 
8941 		WARN_ON(!status->plane_count);
8942 
8943 		/*
8944 		 * TODO: DC refuses to perform stream updates without a dc_surface_update.
8945 		 * Here we create an empty update on each plane.
8946 		 * To fix this, DC should permit updating only stream properties.
8947 		 */
8948 		dummy_updates = kzalloc(sizeof(struct dc_surface_update) * MAX_SURFACES, GFP_ATOMIC);
8949 		for (j = 0; j < status->plane_count; j++)
8950 			dummy_updates[j].surface = status->plane_states[0];
8951 
8952 
8953 		mutex_lock(&dm->dc_lock);
8954 		dc_update_planes_and_stream(dm->dc,
8955 					    dummy_updates,
8956 					    status->plane_count,
8957 					    dm_new_crtc_state->stream,
8958 					    &stream_update);
8959 		mutex_unlock(&dm->dc_lock);
8960 		kfree(dummy_updates);
8961 	}
8962 
8963 	/**
8964 	 * Enable interrupts for CRTCs that are newly enabled or went through
8965 	 * a modeset. It was intentionally deferred until after the front end
8966 	 * state was modified to wait until the OTG was on and so the IRQ
8967 	 * handlers didn't access stale or invalid state.
8968 	 */
8969 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
8970 		struct amdgpu_crtc *acrtc = to_amdgpu_crtc(crtc);
8971 #ifdef CONFIG_DEBUG_FS
8972 		enum amdgpu_dm_pipe_crc_source cur_crc_src;
8973 #endif
8974 		/* Count number of newly disabled CRTCs for dropping PM refs later. */
8975 		if (old_crtc_state->active && !new_crtc_state->active)
8976 			crtc_disable_count++;
8977 
8978 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
8979 		dm_old_crtc_state = to_dm_crtc_state(old_crtc_state);
8980 
8981 		/* For freesync config update on crtc state and params for irq */
8982 		update_stream_irq_parameters(dm, dm_new_crtc_state);
8983 
8984 #ifdef CONFIG_DEBUG_FS
8985 		spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
8986 		cur_crc_src = acrtc->dm_irq_params.crc_src;
8987 		spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
8988 #endif
8989 
8990 		if (new_crtc_state->active &&
8991 		    (!old_crtc_state->active ||
8992 		     drm_atomic_crtc_needs_modeset(new_crtc_state))) {
8993 			dc_stream_retain(dm_new_crtc_state->stream);
8994 			acrtc->dm_irq_params.stream = dm_new_crtc_state->stream;
8995 			manage_dm_interrupts(adev, acrtc, true);
8996 		}
8997 		/* Handle vrr on->off / off->on transitions */
8998 		amdgpu_dm_handle_vrr_transition(dm_old_crtc_state, dm_new_crtc_state);
8999 
9000 #ifdef CONFIG_DEBUG_FS
9001 		if (new_crtc_state->active &&
9002 		    (!old_crtc_state->active ||
9003 		     drm_atomic_crtc_needs_modeset(new_crtc_state))) {
9004 			/**
9005 			 * Frontend may have changed so reapply the CRC capture
9006 			 * settings for the stream.
9007 			 */
9008 			if (amdgpu_dm_is_valid_crc_source(cur_crc_src)) {
9009 #if defined(CONFIG_DRM_AMD_SECURE_DISPLAY)
9010 				if (amdgpu_dm_crc_window_is_activated(crtc)) {
9011 					spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
9012 					acrtc->dm_irq_params.window_param.update_win = true;
9013 
9014 					/**
9015 					 * It takes 2 frames for HW to stably generate CRC when
9016 					 * resuming from suspend, so we set skip_frame_cnt 2.
9017 					 */
9018 					acrtc->dm_irq_params.window_param.skip_frame_cnt = 2;
9019 					spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
9020 				}
9021 #endif
9022 				if (amdgpu_dm_crtc_configure_crc_source(
9023 					crtc, dm_new_crtc_state, cur_crc_src))
9024 					DRM_DEBUG_DRIVER("Failed to configure crc source");
9025 			}
9026 		}
9027 #endif
9028 	}
9029 
9030 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, j)
9031 		if (new_crtc_state->async_flip)
9032 			wait_for_vblank = false;
9033 
9034 	/* update planes when needed per crtc*/
9035 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, j) {
9036 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
9037 
9038 		if (dm_new_crtc_state->stream)
9039 			amdgpu_dm_commit_planes(state, dev, dm, crtc, wait_for_vblank);
9040 	}
9041 
9042 	/* Update audio instances for each connector. */
9043 	amdgpu_dm_commit_audio(dev, state);
9044 
9045 	/* restore the backlight level */
9046 	for (i = 0; i < dm->num_of_edps; i++) {
9047 		if (dm->backlight_dev[i] &&
9048 		    (dm->actual_brightness[i] != dm->brightness[i]))
9049 			amdgpu_dm_backlight_set_level(dm, i, dm->brightness[i]);
9050 	}
9051 
9052 	/*
9053 	 * send vblank event on all events not handled in flip and
9054 	 * mark consumed event for drm_atomic_helper_commit_hw_done
9055 	 */
9056 	spin_lock_irqsave(&adev_to_drm(adev)->event_lock, flags);
9057 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
9058 
9059 		if (new_crtc_state->event)
9060 			drm_send_event_locked(dev, &new_crtc_state->event->base);
9061 
9062 		new_crtc_state->event = NULL;
9063 	}
9064 	spin_unlock_irqrestore(&adev_to_drm(adev)->event_lock, flags);
9065 
9066 	/* Signal HW programming completion */
9067 	drm_atomic_helper_commit_hw_done(state);
9068 
9069 	if (wait_for_vblank)
9070 		drm_atomic_helper_wait_for_flip_done(dev, state);
9071 
9072 	drm_atomic_helper_cleanup_planes(dev, state);
9073 
9074 	/* Don't free the memory if we are hitting this as part of suspend.
9075 	 * This way we don't free any memory during suspend; see
9076 	 * amdgpu_bo_free_kernel().  The memory will be freed in the first
9077 	 * non-suspend modeset or when the driver is torn down.
9078 	 */
9079 	if (!adev->in_suspend) {
9080 		/* return the stolen vga memory back to VRAM */
9081 		if (!adev->mman.keep_stolen_vga_memory)
9082 			amdgpu_bo_free_kernel(&adev->mman.stolen_vga_memory, NULL, NULL);
9083 		amdgpu_bo_free_kernel(&adev->mman.stolen_extended_memory, NULL, NULL);
9084 	}
9085 
9086 	/*
9087 	 * Finally, drop a runtime PM reference for each newly disabled CRTC,
9088 	 * so we can put the GPU into runtime suspend if we're not driving any
9089 	 * displays anymore
9090 	 */
9091 	for (i = 0; i < crtc_disable_count; i++)
9092 		pm_runtime_put_autosuspend(dev->dev);
9093 	pm_runtime_mark_last_busy(dev->dev);
9094 }
9095 
9096 static int dm_force_atomic_commit(struct drm_connector *connector)
9097 {
9098 	int ret = 0;
9099 	struct drm_device *ddev = connector->dev;
9100 	struct drm_atomic_state *state = drm_atomic_state_alloc(ddev);
9101 	struct amdgpu_crtc *disconnected_acrtc = to_amdgpu_crtc(connector->encoder->crtc);
9102 	struct drm_plane *plane = disconnected_acrtc->base.primary;
9103 	struct drm_connector_state *conn_state;
9104 	struct drm_crtc_state *crtc_state;
9105 	struct drm_plane_state *plane_state;
9106 
9107 	if (!state)
9108 		return -ENOMEM;
9109 
9110 	state->acquire_ctx = ddev->mode_config.acquire_ctx;
9111 
9112 	/* Construct an atomic state to restore previous display setting */
9113 
9114 	/*
9115 	 * Attach connectors to drm_atomic_state
9116 	 */
9117 	conn_state = drm_atomic_get_connector_state(state, connector);
9118 
9119 	ret = PTR_ERR_OR_ZERO(conn_state);
9120 	if (ret)
9121 		goto out;
9122 
9123 	/* Attach crtc to drm_atomic_state*/
9124 	crtc_state = drm_atomic_get_crtc_state(state, &disconnected_acrtc->base);
9125 
9126 	ret = PTR_ERR_OR_ZERO(crtc_state);
9127 	if (ret)
9128 		goto out;
9129 
9130 	/* force a restore */
9131 	crtc_state->mode_changed = true;
9132 
9133 	/* Attach plane to drm_atomic_state */
9134 	plane_state = drm_atomic_get_plane_state(state, plane);
9135 
9136 	ret = PTR_ERR_OR_ZERO(plane_state);
9137 	if (ret)
9138 		goto out;
9139 
9140 	/* Call commit internally with the state we just constructed */
9141 	ret = drm_atomic_commit(state);
9142 
9143 out:
9144 	drm_atomic_state_put(state);
9145 	if (ret)
9146 		DRM_ERROR("Restoring old state failed with %i\n", ret);
9147 
9148 	return ret;
9149 }
9150 
9151 /*
9152  * This function handles all cases when set mode does not come upon hotplug.
9153  * This includes when a display is unplugged then plugged back into the
9154  * same port and when running without usermode desktop manager supprot
9155  */
9156 void dm_restore_drm_connector_state(struct drm_device *dev,
9157 				    struct drm_connector *connector)
9158 {
9159 	struct amdgpu_dm_connector *aconnector = to_amdgpu_dm_connector(connector);
9160 	struct amdgpu_crtc *disconnected_acrtc;
9161 	struct dm_crtc_state *acrtc_state;
9162 
9163 	if (!aconnector->dc_sink || !connector->state || !connector->encoder)
9164 		return;
9165 
9166 	disconnected_acrtc = to_amdgpu_crtc(connector->encoder->crtc);
9167 	if (!disconnected_acrtc)
9168 		return;
9169 
9170 	acrtc_state = to_dm_crtc_state(disconnected_acrtc->base.state);
9171 	if (!acrtc_state->stream)
9172 		return;
9173 
9174 	/*
9175 	 * If the previous sink is not released and different from the current,
9176 	 * we deduce we are in a state where we can not rely on usermode call
9177 	 * to turn on the display, so we do it here
9178 	 */
9179 	if (acrtc_state->stream->sink != aconnector->dc_sink)
9180 		dm_force_atomic_commit(&aconnector->base);
9181 }
9182 
9183 /*
9184  * Grabs all modesetting locks to serialize against any blocking commits,
9185  * Waits for completion of all non blocking commits.
9186  */
9187 static int do_aquire_global_lock(struct drm_device *dev,
9188 				 struct drm_atomic_state *state)
9189 {
9190 	struct drm_crtc *crtc;
9191 	struct drm_crtc_commit *commit;
9192 	long ret;
9193 
9194 	/*
9195 	 * Adding all modeset locks to aquire_ctx will
9196 	 * ensure that when the framework release it the
9197 	 * extra locks we are locking here will get released to
9198 	 */
9199 	ret = drm_modeset_lock_all_ctx(dev, state->acquire_ctx);
9200 	if (ret)
9201 		return ret;
9202 
9203 	list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
9204 		spin_lock(&crtc->commit_lock);
9205 		commit = list_first_entry_or_null(&crtc->commit_list,
9206 				struct drm_crtc_commit, commit_entry);
9207 		if (commit)
9208 			drm_crtc_commit_get(commit);
9209 		spin_unlock(&crtc->commit_lock);
9210 
9211 		if (!commit)
9212 			continue;
9213 
9214 		/*
9215 		 * Make sure all pending HW programming completed and
9216 		 * page flips done
9217 		 */
9218 		ret = wait_for_completion_interruptible_timeout(&commit->hw_done, 10*HZ);
9219 
9220 		if (ret > 0)
9221 			ret = wait_for_completion_interruptible_timeout(
9222 					&commit->flip_done, 10*HZ);
9223 
9224 		if (ret == 0)
9225 			DRM_ERROR("[CRTC:%d:%s] hw_done or flip_done timed out\n",
9226 				  crtc->base.id, crtc->name);
9227 
9228 		drm_crtc_commit_put(commit);
9229 	}
9230 
9231 	return ret < 0 ? ret : 0;
9232 }
9233 
9234 static void get_freesync_config_for_crtc(
9235 	struct dm_crtc_state *new_crtc_state,
9236 	struct dm_connector_state *new_con_state)
9237 {
9238 	struct mod_freesync_config config = {0};
9239 	struct amdgpu_dm_connector *aconnector =
9240 			to_amdgpu_dm_connector(new_con_state->base.connector);
9241 	struct drm_display_mode *mode = &new_crtc_state->base.mode;
9242 	int vrefresh = drm_mode_vrefresh(mode);
9243 	bool fs_vid_mode = false;
9244 
9245 	new_crtc_state->vrr_supported = new_con_state->freesync_capable &&
9246 					vrefresh >= aconnector->min_vfreq &&
9247 					vrefresh <= aconnector->max_vfreq;
9248 
9249 	if (new_crtc_state->vrr_supported) {
9250 		new_crtc_state->stream->ignore_msa_timing_param = true;
9251 		fs_vid_mode = new_crtc_state->freesync_config.state == VRR_STATE_ACTIVE_FIXED;
9252 
9253 		config.min_refresh_in_uhz = aconnector->min_vfreq * 1000000;
9254 		config.max_refresh_in_uhz = aconnector->max_vfreq * 1000000;
9255 		config.vsif_supported = true;
9256 		config.btr = true;
9257 
9258 		if (fs_vid_mode) {
9259 			config.state = VRR_STATE_ACTIVE_FIXED;
9260 			config.fixed_refresh_in_uhz = new_crtc_state->freesync_config.fixed_refresh_in_uhz;
9261 			goto out;
9262 		} else if (new_crtc_state->base.vrr_enabled) {
9263 			config.state = VRR_STATE_ACTIVE_VARIABLE;
9264 		} else {
9265 			config.state = VRR_STATE_INACTIVE;
9266 		}
9267 	}
9268 out:
9269 	new_crtc_state->freesync_config = config;
9270 }
9271 
9272 static void reset_freesync_config_for_crtc(
9273 	struct dm_crtc_state *new_crtc_state)
9274 {
9275 	new_crtc_state->vrr_supported = false;
9276 
9277 	memset(&new_crtc_state->vrr_infopacket, 0,
9278 	       sizeof(new_crtc_state->vrr_infopacket));
9279 }
9280 
9281 static bool
9282 is_timing_unchanged_for_freesync(struct drm_crtc_state *old_crtc_state,
9283 				 struct drm_crtc_state *new_crtc_state)
9284 {
9285 	const struct drm_display_mode *old_mode, *new_mode;
9286 
9287 	if (!old_crtc_state || !new_crtc_state)
9288 		return false;
9289 
9290 	old_mode = &old_crtc_state->mode;
9291 	new_mode = &new_crtc_state->mode;
9292 
9293 	if (old_mode->clock       == new_mode->clock &&
9294 	    old_mode->hdisplay    == new_mode->hdisplay &&
9295 	    old_mode->vdisplay    == new_mode->vdisplay &&
9296 	    old_mode->htotal      == new_mode->htotal &&
9297 	    old_mode->vtotal      != new_mode->vtotal &&
9298 	    old_mode->hsync_start == new_mode->hsync_start &&
9299 	    old_mode->vsync_start != new_mode->vsync_start &&
9300 	    old_mode->hsync_end   == new_mode->hsync_end &&
9301 	    old_mode->vsync_end   != new_mode->vsync_end &&
9302 	    old_mode->hskew       == new_mode->hskew &&
9303 	    old_mode->vscan       == new_mode->vscan &&
9304 	    (old_mode->vsync_end - old_mode->vsync_start) ==
9305 	    (new_mode->vsync_end - new_mode->vsync_start))
9306 		return true;
9307 
9308 	return false;
9309 }
9310 
9311 static void set_freesync_fixed_config(struct dm_crtc_state *dm_new_crtc_state)
9312 {
9313 	u64 num, den, res;
9314 	struct drm_crtc_state *new_crtc_state = &dm_new_crtc_state->base;
9315 
9316 	dm_new_crtc_state->freesync_config.state = VRR_STATE_ACTIVE_FIXED;
9317 
9318 	num = (unsigned long long)new_crtc_state->mode.clock * 1000 * 1000000;
9319 	den = (unsigned long long)new_crtc_state->mode.htotal *
9320 	      (unsigned long long)new_crtc_state->mode.vtotal;
9321 
9322 	res = div_u64(num, den);
9323 	dm_new_crtc_state->freesync_config.fixed_refresh_in_uhz = res;
9324 }
9325 
9326 static int dm_update_crtc_state(struct amdgpu_display_manager *dm,
9327 			 struct drm_atomic_state *state,
9328 			 struct drm_crtc *crtc,
9329 			 struct drm_crtc_state *old_crtc_state,
9330 			 struct drm_crtc_state *new_crtc_state,
9331 			 bool enable,
9332 			 bool *lock_and_validation_needed)
9333 {
9334 	struct dm_atomic_state *dm_state = NULL;
9335 	struct dm_crtc_state *dm_old_crtc_state, *dm_new_crtc_state;
9336 	struct dc_stream_state *new_stream;
9337 	int ret = 0;
9338 
9339 	/*
9340 	 * TODO Move this code into dm_crtc_atomic_check once we get rid of dc_validation_set
9341 	 * update changed items
9342 	 */
9343 	struct amdgpu_crtc *acrtc = NULL;
9344 	struct amdgpu_dm_connector *aconnector = NULL;
9345 	struct drm_connector_state *drm_new_conn_state = NULL, *drm_old_conn_state = NULL;
9346 	struct dm_connector_state *dm_new_conn_state = NULL, *dm_old_conn_state = NULL;
9347 
9348 	new_stream = NULL;
9349 
9350 	dm_old_crtc_state = to_dm_crtc_state(old_crtc_state);
9351 	dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
9352 	acrtc = to_amdgpu_crtc(crtc);
9353 	aconnector = amdgpu_dm_find_first_crtc_matching_connector(state, crtc);
9354 
9355 	/* TODO This hack should go away */
9356 	if (aconnector && enable) {
9357 		/* Make sure fake sink is created in plug-in scenario */
9358 		drm_new_conn_state = drm_atomic_get_new_connector_state(state,
9359 							    &aconnector->base);
9360 		drm_old_conn_state = drm_atomic_get_old_connector_state(state,
9361 							    &aconnector->base);
9362 
9363 		if (IS_ERR(drm_new_conn_state)) {
9364 			ret = PTR_ERR_OR_ZERO(drm_new_conn_state);
9365 			goto fail;
9366 		}
9367 
9368 		dm_new_conn_state = to_dm_connector_state(drm_new_conn_state);
9369 		dm_old_conn_state = to_dm_connector_state(drm_old_conn_state);
9370 
9371 		if (!drm_atomic_crtc_needs_modeset(new_crtc_state))
9372 			goto skip_modeset;
9373 
9374 		new_stream = create_validate_stream_for_sink(aconnector,
9375 							     &new_crtc_state->mode,
9376 							     dm_new_conn_state,
9377 							     dm_old_crtc_state->stream);
9378 
9379 		/*
9380 		 * we can have no stream on ACTION_SET if a display
9381 		 * was disconnected during S3, in this case it is not an
9382 		 * error, the OS will be updated after detection, and
9383 		 * will do the right thing on next atomic commit
9384 		 */
9385 
9386 		if (!new_stream) {
9387 			DRM_DEBUG_DRIVER("%s: Failed to create new stream for crtc %d\n",
9388 					__func__, acrtc->base.base.id);
9389 			ret = -ENOMEM;
9390 			goto fail;
9391 		}
9392 
9393 		/*
9394 		 * TODO: Check VSDB bits to decide whether this should
9395 		 * be enabled or not.
9396 		 */
9397 		new_stream->triggered_crtc_reset.enabled =
9398 			dm->force_timing_sync;
9399 
9400 		dm_new_crtc_state->abm_level = dm_new_conn_state->abm_level;
9401 
9402 		ret = fill_hdr_info_packet(drm_new_conn_state,
9403 					   &new_stream->hdr_static_metadata);
9404 		if (ret)
9405 			goto fail;
9406 
9407 		/*
9408 		 * If we already removed the old stream from the context
9409 		 * (and set the new stream to NULL) then we can't reuse
9410 		 * the old stream even if the stream and scaling are unchanged.
9411 		 * We'll hit the BUG_ON and black screen.
9412 		 *
9413 		 * TODO: Refactor this function to allow this check to work
9414 		 * in all conditions.
9415 		 */
9416 		if (dm_new_crtc_state->stream &&
9417 		    is_timing_unchanged_for_freesync(new_crtc_state, old_crtc_state))
9418 			goto skip_modeset;
9419 
9420 		if (dm_new_crtc_state->stream &&
9421 		    dc_is_stream_unchanged(new_stream, dm_old_crtc_state->stream) &&
9422 		    dc_is_stream_scaling_unchanged(new_stream, dm_old_crtc_state->stream)) {
9423 			new_crtc_state->mode_changed = false;
9424 			DRM_DEBUG_DRIVER("Mode change not required, setting mode_changed to %d",
9425 					 new_crtc_state->mode_changed);
9426 		}
9427 	}
9428 
9429 	/* mode_changed flag may get updated above, need to check again */
9430 	if (!drm_atomic_crtc_needs_modeset(new_crtc_state))
9431 		goto skip_modeset;
9432 
9433 	drm_dbg_state(state->dev,
9434 		"amdgpu_crtc id:%d crtc_state_flags: enable:%d, active:%d, planes_changed:%d, mode_changed:%d,active_changed:%d,connectors_changed:%d\n",
9435 		acrtc->crtc_id,
9436 		new_crtc_state->enable,
9437 		new_crtc_state->active,
9438 		new_crtc_state->planes_changed,
9439 		new_crtc_state->mode_changed,
9440 		new_crtc_state->active_changed,
9441 		new_crtc_state->connectors_changed);
9442 
9443 	/* Remove stream for any changed/disabled CRTC */
9444 	if (!enable) {
9445 
9446 		if (!dm_old_crtc_state->stream)
9447 			goto skip_modeset;
9448 
9449 		/* Unset freesync video if it was active before */
9450 		if (dm_old_crtc_state->freesync_config.state == VRR_STATE_ACTIVE_FIXED) {
9451 			dm_new_crtc_state->freesync_config.state = VRR_STATE_INACTIVE;
9452 			dm_new_crtc_state->freesync_config.fixed_refresh_in_uhz = 0;
9453 		}
9454 
9455 		/* Now check if we should set freesync video mode */
9456 		if (dm_new_crtc_state->stream &&
9457 		    dc_is_stream_unchanged(new_stream, dm_old_crtc_state->stream) &&
9458 		    dc_is_stream_scaling_unchanged(new_stream, dm_old_crtc_state->stream) &&
9459 		    is_timing_unchanged_for_freesync(new_crtc_state,
9460 						     old_crtc_state)) {
9461 			new_crtc_state->mode_changed = false;
9462 			DRM_DEBUG_DRIVER(
9463 				"Mode change not required for front porch change, setting mode_changed to %d",
9464 				new_crtc_state->mode_changed);
9465 
9466 			set_freesync_fixed_config(dm_new_crtc_state);
9467 
9468 			goto skip_modeset;
9469 		} else if (aconnector &&
9470 			   is_freesync_video_mode(&new_crtc_state->mode,
9471 						  aconnector)) {
9472 			struct drm_display_mode *high_mode;
9473 
9474 			high_mode = get_highest_refresh_rate_mode(aconnector, false);
9475 			if (!drm_mode_equal(&new_crtc_state->mode, high_mode))
9476 				set_freesync_fixed_config(dm_new_crtc_state);
9477 		}
9478 
9479 		ret = dm_atomic_get_state(state, &dm_state);
9480 		if (ret)
9481 			goto fail;
9482 
9483 		DRM_DEBUG_DRIVER("Disabling DRM crtc: %d\n",
9484 				crtc->base.id);
9485 
9486 		/* i.e. reset mode */
9487 		if (dc_remove_stream_from_ctx(
9488 				dm->dc,
9489 				dm_state->context,
9490 				dm_old_crtc_state->stream) != DC_OK) {
9491 			ret = -EINVAL;
9492 			goto fail;
9493 		}
9494 
9495 		dc_stream_release(dm_old_crtc_state->stream);
9496 		dm_new_crtc_state->stream = NULL;
9497 
9498 		reset_freesync_config_for_crtc(dm_new_crtc_state);
9499 
9500 		*lock_and_validation_needed = true;
9501 
9502 	} else {/* Add stream for any updated/enabled CRTC */
9503 		/*
9504 		 * Quick fix to prevent NULL pointer on new_stream when
9505 		 * added MST connectors not found in existing crtc_state in the chained mode
9506 		 * TODO: need to dig out the root cause of that
9507 		 */
9508 		if (!aconnector)
9509 			goto skip_modeset;
9510 
9511 		if (modereset_required(new_crtc_state))
9512 			goto skip_modeset;
9513 
9514 		if (amdgpu_dm_crtc_modeset_required(new_crtc_state, new_stream,
9515 				     dm_old_crtc_state->stream)) {
9516 
9517 			WARN_ON(dm_new_crtc_state->stream);
9518 
9519 			ret = dm_atomic_get_state(state, &dm_state);
9520 			if (ret)
9521 				goto fail;
9522 
9523 			dm_new_crtc_state->stream = new_stream;
9524 
9525 			dc_stream_retain(new_stream);
9526 
9527 			DRM_DEBUG_ATOMIC("Enabling DRM crtc: %d\n",
9528 					 crtc->base.id);
9529 
9530 			if (dc_add_stream_to_ctx(
9531 					dm->dc,
9532 					dm_state->context,
9533 					dm_new_crtc_state->stream) != DC_OK) {
9534 				ret = -EINVAL;
9535 				goto fail;
9536 			}
9537 
9538 			*lock_and_validation_needed = true;
9539 		}
9540 	}
9541 
9542 skip_modeset:
9543 	/* Release extra reference */
9544 	if (new_stream)
9545 		dc_stream_release(new_stream);
9546 
9547 	/*
9548 	 * We want to do dc stream updates that do not require a
9549 	 * full modeset below.
9550 	 */
9551 	if (!(enable && aconnector && new_crtc_state->active))
9552 		return 0;
9553 	/*
9554 	 * Given above conditions, the dc state cannot be NULL because:
9555 	 * 1. We're in the process of enabling CRTCs (just been added
9556 	 *    to the dc context, or already is on the context)
9557 	 * 2. Has a valid connector attached, and
9558 	 * 3. Is currently active and enabled.
9559 	 * => The dc stream state currently exists.
9560 	 */
9561 	BUG_ON(dm_new_crtc_state->stream == NULL);
9562 
9563 	/* Scaling or underscan settings */
9564 	if (is_scaling_state_different(dm_old_conn_state, dm_new_conn_state) ||
9565 				drm_atomic_crtc_needs_modeset(new_crtc_state))
9566 		update_stream_scaling_settings(
9567 			&new_crtc_state->mode, dm_new_conn_state, dm_new_crtc_state->stream);
9568 
9569 	/* ABM settings */
9570 	dm_new_crtc_state->abm_level = dm_new_conn_state->abm_level;
9571 
9572 	/*
9573 	 * Color management settings. We also update color properties
9574 	 * when a modeset is needed, to ensure it gets reprogrammed.
9575 	 */
9576 	if (dm_new_crtc_state->base.color_mgmt_changed ||
9577 	    drm_atomic_crtc_needs_modeset(new_crtc_state)) {
9578 		ret = amdgpu_dm_update_crtc_color_mgmt(dm_new_crtc_state);
9579 		if (ret)
9580 			goto fail;
9581 	}
9582 
9583 	/* Update Freesync settings. */
9584 	get_freesync_config_for_crtc(dm_new_crtc_state,
9585 				     dm_new_conn_state);
9586 
9587 	return ret;
9588 
9589 fail:
9590 	if (new_stream)
9591 		dc_stream_release(new_stream);
9592 	return ret;
9593 }
9594 
9595 static bool should_reset_plane(struct drm_atomic_state *state,
9596 			       struct drm_plane *plane,
9597 			       struct drm_plane_state *old_plane_state,
9598 			       struct drm_plane_state *new_plane_state)
9599 {
9600 	struct drm_plane *other;
9601 	struct drm_plane_state *old_other_state, *new_other_state;
9602 	struct drm_crtc_state *new_crtc_state;
9603 	int i;
9604 
9605 	/*
9606 	 * TODO: Remove this hack once the checks below are sufficient
9607 	 * enough to determine when we need to reset all the planes on
9608 	 * the stream.
9609 	 */
9610 	if (state->allow_modeset)
9611 		return true;
9612 
9613 	/* Exit early if we know that we're adding or removing the plane. */
9614 	if (old_plane_state->crtc != new_plane_state->crtc)
9615 		return true;
9616 
9617 	/* old crtc == new_crtc == NULL, plane not in context. */
9618 	if (!new_plane_state->crtc)
9619 		return false;
9620 
9621 	new_crtc_state =
9622 		drm_atomic_get_new_crtc_state(state, new_plane_state->crtc);
9623 
9624 	if (!new_crtc_state)
9625 		return true;
9626 
9627 	/* CRTC Degamma changes currently require us to recreate planes. */
9628 	if (new_crtc_state->color_mgmt_changed)
9629 		return true;
9630 
9631 	if (drm_atomic_crtc_needs_modeset(new_crtc_state))
9632 		return true;
9633 
9634 	/*
9635 	 * If there are any new primary or overlay planes being added or
9636 	 * removed then the z-order can potentially change. To ensure
9637 	 * correct z-order and pipe acquisition the current DC architecture
9638 	 * requires us to remove and recreate all existing planes.
9639 	 *
9640 	 * TODO: Come up with a more elegant solution for this.
9641 	 */
9642 	for_each_oldnew_plane_in_state(state, other, old_other_state, new_other_state, i) {
9643 		struct amdgpu_framebuffer *old_afb, *new_afb;
9644 
9645 		if (other->type == DRM_PLANE_TYPE_CURSOR)
9646 			continue;
9647 
9648 		if (old_other_state->crtc != new_plane_state->crtc &&
9649 		    new_other_state->crtc != new_plane_state->crtc)
9650 			continue;
9651 
9652 		if (old_other_state->crtc != new_other_state->crtc)
9653 			return true;
9654 
9655 		/* Src/dst size and scaling updates. */
9656 		if (old_other_state->src_w != new_other_state->src_w ||
9657 		    old_other_state->src_h != new_other_state->src_h ||
9658 		    old_other_state->crtc_w != new_other_state->crtc_w ||
9659 		    old_other_state->crtc_h != new_other_state->crtc_h)
9660 			return true;
9661 
9662 		/* Rotation / mirroring updates. */
9663 		if (old_other_state->rotation != new_other_state->rotation)
9664 			return true;
9665 
9666 		/* Blending updates. */
9667 		if (old_other_state->pixel_blend_mode !=
9668 		    new_other_state->pixel_blend_mode)
9669 			return true;
9670 
9671 		/* Alpha updates. */
9672 		if (old_other_state->alpha != new_other_state->alpha)
9673 			return true;
9674 
9675 		/* Colorspace changes. */
9676 		if (old_other_state->color_range != new_other_state->color_range ||
9677 		    old_other_state->color_encoding != new_other_state->color_encoding)
9678 			return true;
9679 
9680 		/* Framebuffer checks fall at the end. */
9681 		if (!old_other_state->fb || !new_other_state->fb)
9682 			continue;
9683 
9684 		/* Pixel format changes can require bandwidth updates. */
9685 		if (old_other_state->fb->format != new_other_state->fb->format)
9686 			return true;
9687 
9688 		old_afb = (struct amdgpu_framebuffer *)old_other_state->fb;
9689 		new_afb = (struct amdgpu_framebuffer *)new_other_state->fb;
9690 
9691 		/* Tiling and DCC changes also require bandwidth updates. */
9692 		if (old_afb->tiling_flags != new_afb->tiling_flags ||
9693 		    old_afb->base.modifier != new_afb->base.modifier)
9694 			return true;
9695 	}
9696 
9697 	return false;
9698 }
9699 
9700 static int dm_check_cursor_fb(struct amdgpu_crtc *new_acrtc,
9701 			      struct drm_plane_state *new_plane_state,
9702 			      struct drm_framebuffer *fb)
9703 {
9704 	struct amdgpu_device *adev = drm_to_adev(new_acrtc->base.dev);
9705 	struct amdgpu_framebuffer *afb = to_amdgpu_framebuffer(fb);
9706 	unsigned int pitch;
9707 	bool linear;
9708 
9709 	if (fb->width > new_acrtc->max_cursor_width ||
9710 	    fb->height > new_acrtc->max_cursor_height) {
9711 		DRM_DEBUG_ATOMIC("Bad cursor FB size %dx%d\n",
9712 				 new_plane_state->fb->width,
9713 				 new_plane_state->fb->height);
9714 		return -EINVAL;
9715 	}
9716 	if (new_plane_state->src_w != fb->width << 16 ||
9717 	    new_plane_state->src_h != fb->height << 16) {
9718 		DRM_DEBUG_ATOMIC("Cropping not supported for cursor plane\n");
9719 		return -EINVAL;
9720 	}
9721 
9722 	/* Pitch in pixels */
9723 	pitch = fb->pitches[0] / fb->format->cpp[0];
9724 
9725 	if (fb->width != pitch) {
9726 		DRM_DEBUG_ATOMIC("Cursor FB width %d doesn't match pitch %d",
9727 				 fb->width, pitch);
9728 		return -EINVAL;
9729 	}
9730 
9731 	switch (pitch) {
9732 	case 64:
9733 	case 128:
9734 	case 256:
9735 		/* FB pitch is supported by cursor plane */
9736 		break;
9737 	default:
9738 		DRM_DEBUG_ATOMIC("Bad cursor FB pitch %d px\n", pitch);
9739 		return -EINVAL;
9740 	}
9741 
9742 	/* Core DRM takes care of checking FB modifiers, so we only need to
9743 	 * check tiling flags when the FB doesn't have a modifier.
9744 	 */
9745 	if (!(fb->flags & DRM_MODE_FB_MODIFIERS)) {
9746 		if (adev->family < AMDGPU_FAMILY_AI) {
9747 			linear = AMDGPU_TILING_GET(afb->tiling_flags, ARRAY_MODE) != DC_ARRAY_2D_TILED_THIN1 &&
9748 				 AMDGPU_TILING_GET(afb->tiling_flags, ARRAY_MODE) != DC_ARRAY_1D_TILED_THIN1 &&
9749 				 AMDGPU_TILING_GET(afb->tiling_flags, MICRO_TILE_MODE) == 0;
9750 		} else {
9751 			linear = AMDGPU_TILING_GET(afb->tiling_flags, SWIZZLE_MODE) == 0;
9752 		}
9753 		if (!linear) {
9754 			DRM_DEBUG_ATOMIC("Cursor FB not linear");
9755 			return -EINVAL;
9756 		}
9757 	}
9758 
9759 	return 0;
9760 }
9761 
9762 static int dm_update_plane_state(struct dc *dc,
9763 				 struct drm_atomic_state *state,
9764 				 struct drm_plane *plane,
9765 				 struct drm_plane_state *old_plane_state,
9766 				 struct drm_plane_state *new_plane_state,
9767 				 bool enable,
9768 				 bool *lock_and_validation_needed,
9769 				 bool *is_top_most_overlay)
9770 {
9771 
9772 	struct dm_atomic_state *dm_state = NULL;
9773 	struct drm_crtc *new_plane_crtc, *old_plane_crtc;
9774 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
9775 	struct dm_crtc_state *dm_new_crtc_state, *dm_old_crtc_state;
9776 	struct dm_plane_state *dm_new_plane_state, *dm_old_plane_state;
9777 	struct amdgpu_crtc *new_acrtc;
9778 	bool needs_reset;
9779 	int ret = 0;
9780 
9781 
9782 	new_plane_crtc = new_plane_state->crtc;
9783 	old_plane_crtc = old_plane_state->crtc;
9784 	dm_new_plane_state = to_dm_plane_state(new_plane_state);
9785 	dm_old_plane_state = to_dm_plane_state(old_plane_state);
9786 
9787 	if (plane->type == DRM_PLANE_TYPE_CURSOR) {
9788 		if (!enable || !new_plane_crtc ||
9789 			drm_atomic_plane_disabling(plane->state, new_plane_state))
9790 			return 0;
9791 
9792 		new_acrtc = to_amdgpu_crtc(new_plane_crtc);
9793 
9794 		if (new_plane_state->src_x != 0 || new_plane_state->src_y != 0) {
9795 			DRM_DEBUG_ATOMIC("Cropping not supported for cursor plane\n");
9796 			return -EINVAL;
9797 		}
9798 
9799 		if (new_plane_state->fb) {
9800 			ret = dm_check_cursor_fb(new_acrtc, new_plane_state,
9801 						 new_plane_state->fb);
9802 			if (ret)
9803 				return ret;
9804 		}
9805 
9806 		return 0;
9807 	}
9808 
9809 	needs_reset = should_reset_plane(state, plane, old_plane_state,
9810 					 new_plane_state);
9811 
9812 	/* Remove any changed/removed planes */
9813 	if (!enable) {
9814 		if (!needs_reset)
9815 			return 0;
9816 
9817 		if (!old_plane_crtc)
9818 			return 0;
9819 
9820 		old_crtc_state = drm_atomic_get_old_crtc_state(
9821 				state, old_plane_crtc);
9822 		dm_old_crtc_state = to_dm_crtc_state(old_crtc_state);
9823 
9824 		if (!dm_old_crtc_state->stream)
9825 			return 0;
9826 
9827 		DRM_DEBUG_ATOMIC("Disabling DRM plane: %d on DRM crtc %d\n",
9828 				plane->base.id, old_plane_crtc->base.id);
9829 
9830 		ret = dm_atomic_get_state(state, &dm_state);
9831 		if (ret)
9832 			return ret;
9833 
9834 		if (!dc_remove_plane_from_context(
9835 				dc,
9836 				dm_old_crtc_state->stream,
9837 				dm_old_plane_state->dc_state,
9838 				dm_state->context)) {
9839 
9840 			return -EINVAL;
9841 		}
9842 
9843 		if (dm_old_plane_state->dc_state)
9844 			dc_plane_state_release(dm_old_plane_state->dc_state);
9845 
9846 		dm_new_plane_state->dc_state = NULL;
9847 
9848 		*lock_and_validation_needed = true;
9849 
9850 	} else { /* Add new planes */
9851 		struct dc_plane_state *dc_new_plane_state;
9852 
9853 		if (drm_atomic_plane_disabling(plane->state, new_plane_state))
9854 			return 0;
9855 
9856 		if (!new_plane_crtc)
9857 			return 0;
9858 
9859 		new_crtc_state = drm_atomic_get_new_crtc_state(state, new_plane_crtc);
9860 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
9861 
9862 		if (!dm_new_crtc_state->stream)
9863 			return 0;
9864 
9865 		if (!needs_reset)
9866 			return 0;
9867 
9868 		ret = amdgpu_dm_plane_helper_check_state(new_plane_state, new_crtc_state);
9869 		if (ret)
9870 			return ret;
9871 
9872 		WARN_ON(dm_new_plane_state->dc_state);
9873 
9874 		dc_new_plane_state = dc_create_plane_state(dc);
9875 		if (!dc_new_plane_state)
9876 			return -ENOMEM;
9877 
9878 		/* Block top most plane from being a video plane */
9879 		if (plane->type == DRM_PLANE_TYPE_OVERLAY) {
9880 			if (is_video_format(new_plane_state->fb->format->format) && *is_top_most_overlay)
9881 				return -EINVAL;
9882 
9883 			*is_top_most_overlay = false;
9884 		}
9885 
9886 		DRM_DEBUG_ATOMIC("Enabling DRM plane: %d on DRM crtc %d\n",
9887 				 plane->base.id, new_plane_crtc->base.id);
9888 
9889 		ret = fill_dc_plane_attributes(
9890 			drm_to_adev(new_plane_crtc->dev),
9891 			dc_new_plane_state,
9892 			new_plane_state,
9893 			new_crtc_state);
9894 		if (ret) {
9895 			dc_plane_state_release(dc_new_plane_state);
9896 			return ret;
9897 		}
9898 
9899 		ret = dm_atomic_get_state(state, &dm_state);
9900 		if (ret) {
9901 			dc_plane_state_release(dc_new_plane_state);
9902 			return ret;
9903 		}
9904 
9905 		/*
9906 		 * Any atomic check errors that occur after this will
9907 		 * not need a release. The plane state will be attached
9908 		 * to the stream, and therefore part of the atomic
9909 		 * state. It'll be released when the atomic state is
9910 		 * cleaned.
9911 		 */
9912 		if (!dc_add_plane_to_context(
9913 				dc,
9914 				dm_new_crtc_state->stream,
9915 				dc_new_plane_state,
9916 				dm_state->context)) {
9917 
9918 			dc_plane_state_release(dc_new_plane_state);
9919 			return -EINVAL;
9920 		}
9921 
9922 		dm_new_plane_state->dc_state = dc_new_plane_state;
9923 
9924 		dm_new_crtc_state->mpo_requested |= (plane->type == DRM_PLANE_TYPE_OVERLAY);
9925 
9926 		/* Tell DC to do a full surface update every time there
9927 		 * is a plane change. Inefficient, but works for now.
9928 		 */
9929 		dm_new_plane_state->dc_state->update_flags.bits.full_update = 1;
9930 
9931 		*lock_and_validation_needed = true;
9932 	}
9933 
9934 
9935 	return ret;
9936 }
9937 
9938 static void dm_get_oriented_plane_size(struct drm_plane_state *plane_state,
9939 				       int *src_w, int *src_h)
9940 {
9941 	switch (plane_state->rotation & DRM_MODE_ROTATE_MASK) {
9942 	case DRM_MODE_ROTATE_90:
9943 	case DRM_MODE_ROTATE_270:
9944 		*src_w = plane_state->src_h >> 16;
9945 		*src_h = plane_state->src_w >> 16;
9946 		break;
9947 	case DRM_MODE_ROTATE_0:
9948 	case DRM_MODE_ROTATE_180:
9949 	default:
9950 		*src_w = plane_state->src_w >> 16;
9951 		*src_h = plane_state->src_h >> 16;
9952 		break;
9953 	}
9954 }
9955 
9956 static void
9957 dm_get_plane_scale(struct drm_plane_state *plane_state,
9958 		   int *out_plane_scale_w, int *out_plane_scale_h)
9959 {
9960 	int plane_src_w, plane_src_h;
9961 
9962 	dm_get_oriented_plane_size(plane_state, &plane_src_w, &plane_src_h);
9963 	*out_plane_scale_w = plane_state->crtc_w * 1000 / plane_src_w;
9964 	*out_plane_scale_h = plane_state->crtc_h * 1000 / plane_src_h;
9965 }
9966 
9967 static int dm_check_crtc_cursor(struct drm_atomic_state *state,
9968 				struct drm_crtc *crtc,
9969 				struct drm_crtc_state *new_crtc_state)
9970 {
9971 	struct drm_plane *cursor = crtc->cursor, *plane, *underlying;
9972 	struct drm_plane_state *old_plane_state, *new_plane_state;
9973 	struct drm_plane_state *new_cursor_state, *new_underlying_state;
9974 	int i;
9975 	int cursor_scale_w, cursor_scale_h, underlying_scale_w, underlying_scale_h;
9976 	bool any_relevant_change = false;
9977 
9978 	/* On DCE and DCN there is no dedicated hardware cursor plane. We get a
9979 	 * cursor per pipe but it's going to inherit the scaling and
9980 	 * positioning from the underlying pipe. Check the cursor plane's
9981 	 * blending properties match the underlying planes'.
9982 	 */
9983 
9984 	/* If no plane was enabled or changed scaling, no need to check again */
9985 	for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i) {
9986 		int new_scale_w, new_scale_h, old_scale_w, old_scale_h;
9987 
9988 		if (!new_plane_state || !new_plane_state->fb || new_plane_state->crtc != crtc)
9989 			continue;
9990 
9991 		if (!old_plane_state || !old_plane_state->fb || old_plane_state->crtc != crtc) {
9992 			any_relevant_change = true;
9993 			break;
9994 		}
9995 
9996 		if (new_plane_state->fb == old_plane_state->fb &&
9997 		    new_plane_state->crtc_w == old_plane_state->crtc_w &&
9998 		    new_plane_state->crtc_h == old_plane_state->crtc_h)
9999 			continue;
10000 
10001 		dm_get_plane_scale(new_plane_state, &new_scale_w, &new_scale_h);
10002 		dm_get_plane_scale(old_plane_state, &old_scale_w, &old_scale_h);
10003 
10004 		if (new_scale_w != old_scale_w || new_scale_h != old_scale_h) {
10005 			any_relevant_change = true;
10006 			break;
10007 		}
10008 	}
10009 
10010 	if (!any_relevant_change)
10011 		return 0;
10012 
10013 	new_cursor_state = drm_atomic_get_plane_state(state, cursor);
10014 	if (IS_ERR(new_cursor_state))
10015 		return PTR_ERR(new_cursor_state);
10016 
10017 	if (!new_cursor_state->fb)
10018 		return 0;
10019 
10020 	dm_get_plane_scale(new_cursor_state, &cursor_scale_w, &cursor_scale_h);
10021 
10022 	/* Need to check all enabled planes, even if this commit doesn't change
10023 	 * their state
10024 	 */
10025 	i = drm_atomic_add_affected_planes(state, crtc);
10026 	if (i)
10027 		return i;
10028 
10029 	for_each_new_plane_in_state_reverse(state, underlying, new_underlying_state, i) {
10030 		/* Narrow down to non-cursor planes on the same CRTC as the cursor */
10031 		if (new_underlying_state->crtc != crtc || underlying == crtc->cursor)
10032 			continue;
10033 
10034 		/* Ignore disabled planes */
10035 		if (!new_underlying_state->fb)
10036 			continue;
10037 
10038 		dm_get_plane_scale(new_underlying_state,
10039 				   &underlying_scale_w, &underlying_scale_h);
10040 
10041 		if (cursor_scale_w != underlying_scale_w ||
10042 		    cursor_scale_h != underlying_scale_h) {
10043 			drm_dbg_atomic(crtc->dev,
10044 				       "Cursor [PLANE:%d:%s] scaling doesn't match underlying [PLANE:%d:%s]\n",
10045 				       cursor->base.id, cursor->name, underlying->base.id, underlying->name);
10046 			return -EINVAL;
10047 		}
10048 
10049 		/* If this plane covers the whole CRTC, no need to check planes underneath */
10050 		if (new_underlying_state->crtc_x <= 0 &&
10051 		    new_underlying_state->crtc_y <= 0 &&
10052 		    new_underlying_state->crtc_x + new_underlying_state->crtc_w >= new_crtc_state->mode.hdisplay &&
10053 		    new_underlying_state->crtc_y + new_underlying_state->crtc_h >= new_crtc_state->mode.vdisplay)
10054 			break;
10055 	}
10056 
10057 	return 0;
10058 }
10059 
10060 static int add_affected_mst_dsc_crtcs(struct drm_atomic_state *state, struct drm_crtc *crtc)
10061 {
10062 	struct drm_connector *connector;
10063 	struct drm_connector_state *conn_state, *old_conn_state;
10064 	struct amdgpu_dm_connector *aconnector = NULL;
10065 	int i;
10066 
10067 	for_each_oldnew_connector_in_state(state, connector, old_conn_state, conn_state, i) {
10068 		if (!conn_state->crtc)
10069 			conn_state = old_conn_state;
10070 
10071 		if (conn_state->crtc != crtc)
10072 			continue;
10073 
10074 		aconnector = to_amdgpu_dm_connector(connector);
10075 		if (!aconnector->mst_output_port || !aconnector->mst_root)
10076 			aconnector = NULL;
10077 		else
10078 			break;
10079 	}
10080 
10081 	if (!aconnector)
10082 		return 0;
10083 
10084 	return drm_dp_mst_add_affected_dsc_crtcs(state, &aconnector->mst_root->mst_mgr);
10085 }
10086 
10087 /**
10088  * amdgpu_dm_atomic_check() - Atomic check implementation for AMDgpu DM.
10089  *
10090  * @dev: The DRM device
10091  * @state: The atomic state to commit
10092  *
10093  * Validate that the given atomic state is programmable by DC into hardware.
10094  * This involves constructing a &struct dc_state reflecting the new hardware
10095  * state we wish to commit, then querying DC to see if it is programmable. It's
10096  * important not to modify the existing DC state. Otherwise, atomic_check
10097  * may unexpectedly commit hardware changes.
10098  *
10099  * When validating the DC state, it's important that the right locks are
10100  * acquired. For full updates case which removes/adds/updates streams on one
10101  * CRTC while flipping on another CRTC, acquiring global lock will guarantee
10102  * that any such full update commit will wait for completion of any outstanding
10103  * flip using DRMs synchronization events.
10104  *
10105  * Note that DM adds the affected connectors for all CRTCs in state, when that
10106  * might not seem necessary. This is because DC stream creation requires the
10107  * DC sink, which is tied to the DRM connector state. Cleaning this up should
10108  * be possible but non-trivial - a possible TODO item.
10109  *
10110  * Return: -Error code if validation failed.
10111  */
10112 static int amdgpu_dm_atomic_check(struct drm_device *dev,
10113 				  struct drm_atomic_state *state)
10114 {
10115 	struct amdgpu_device *adev = drm_to_adev(dev);
10116 	struct dm_atomic_state *dm_state = NULL;
10117 	struct dc *dc = adev->dm.dc;
10118 	struct drm_connector *connector;
10119 	struct drm_connector_state *old_con_state, *new_con_state;
10120 	struct drm_crtc *crtc;
10121 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
10122 	struct drm_plane *plane;
10123 	struct drm_plane_state *old_plane_state, *new_plane_state;
10124 	enum dc_status status;
10125 	int ret, i;
10126 	bool lock_and_validation_needed = false;
10127 	bool is_top_most_overlay = true;
10128 	struct dm_crtc_state *dm_old_crtc_state, *dm_new_crtc_state;
10129 	struct drm_dp_mst_topology_mgr *mgr;
10130 	struct drm_dp_mst_topology_state *mst_state;
10131 	struct dsc_mst_fairness_vars vars[MAX_PIPES];
10132 
10133 	trace_amdgpu_dm_atomic_check_begin(state);
10134 
10135 	ret = drm_atomic_helper_check_modeset(dev, state);
10136 	if (ret) {
10137 		DRM_DEBUG_DRIVER("drm_atomic_helper_check_modeset() failed\n");
10138 		goto fail;
10139 	}
10140 
10141 	/* Check connector changes */
10142 	for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
10143 		struct dm_connector_state *dm_old_con_state = to_dm_connector_state(old_con_state);
10144 		struct dm_connector_state *dm_new_con_state = to_dm_connector_state(new_con_state);
10145 
10146 		/* Skip connectors that are disabled or part of modeset already. */
10147 		if (!new_con_state->crtc)
10148 			continue;
10149 
10150 		new_crtc_state = drm_atomic_get_crtc_state(state, new_con_state->crtc);
10151 		if (IS_ERR(new_crtc_state)) {
10152 			DRM_DEBUG_DRIVER("drm_atomic_get_crtc_state() failed\n");
10153 			ret = PTR_ERR(new_crtc_state);
10154 			goto fail;
10155 		}
10156 
10157 		if (dm_old_con_state->abm_level != dm_new_con_state->abm_level ||
10158 		    dm_old_con_state->scaling != dm_new_con_state->scaling)
10159 			new_crtc_state->connectors_changed = true;
10160 	}
10161 
10162 	if (dc_resource_is_dsc_encoding_supported(dc)) {
10163 		for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
10164 			if (drm_atomic_crtc_needs_modeset(new_crtc_state)) {
10165 				ret = add_affected_mst_dsc_crtcs(state, crtc);
10166 				if (ret) {
10167 					DRM_DEBUG_DRIVER("add_affected_mst_dsc_crtcs() failed\n");
10168 					goto fail;
10169 				}
10170 			}
10171 		}
10172 	}
10173 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
10174 		dm_old_crtc_state = to_dm_crtc_state(old_crtc_state);
10175 
10176 		if (!drm_atomic_crtc_needs_modeset(new_crtc_state) &&
10177 		    !new_crtc_state->color_mgmt_changed &&
10178 		    old_crtc_state->vrr_enabled == new_crtc_state->vrr_enabled &&
10179 			dm_old_crtc_state->dsc_force_changed == false)
10180 			continue;
10181 
10182 		ret = amdgpu_dm_verify_lut_sizes(new_crtc_state);
10183 		if (ret) {
10184 			DRM_DEBUG_DRIVER("amdgpu_dm_verify_lut_sizes() failed\n");
10185 			goto fail;
10186 		}
10187 
10188 		if (!new_crtc_state->enable)
10189 			continue;
10190 
10191 		ret = drm_atomic_add_affected_connectors(state, crtc);
10192 		if (ret) {
10193 			DRM_DEBUG_DRIVER("drm_atomic_add_affected_connectors() failed\n");
10194 			goto fail;
10195 		}
10196 
10197 		ret = drm_atomic_add_affected_planes(state, crtc);
10198 		if (ret) {
10199 			DRM_DEBUG_DRIVER("drm_atomic_add_affected_planes() failed\n");
10200 			goto fail;
10201 		}
10202 
10203 		if (dm_old_crtc_state->dsc_force_changed)
10204 			new_crtc_state->mode_changed = true;
10205 	}
10206 
10207 	/*
10208 	 * Add all primary and overlay planes on the CRTC to the state
10209 	 * whenever a plane is enabled to maintain correct z-ordering
10210 	 * and to enable fast surface updates.
10211 	 */
10212 	drm_for_each_crtc(crtc, dev) {
10213 		bool modified = false;
10214 
10215 		for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i) {
10216 			if (plane->type == DRM_PLANE_TYPE_CURSOR)
10217 				continue;
10218 
10219 			if (new_plane_state->crtc == crtc ||
10220 			    old_plane_state->crtc == crtc) {
10221 				modified = true;
10222 				break;
10223 			}
10224 		}
10225 
10226 		if (!modified)
10227 			continue;
10228 
10229 		drm_for_each_plane_mask(plane, state->dev, crtc->state->plane_mask) {
10230 			if (plane->type == DRM_PLANE_TYPE_CURSOR)
10231 				continue;
10232 
10233 			new_plane_state =
10234 				drm_atomic_get_plane_state(state, plane);
10235 
10236 			if (IS_ERR(new_plane_state)) {
10237 				ret = PTR_ERR(new_plane_state);
10238 				DRM_DEBUG_DRIVER("new_plane_state is BAD\n");
10239 				goto fail;
10240 			}
10241 		}
10242 	}
10243 
10244 	/*
10245 	 * DC consults the zpos (layer_index in DC terminology) to determine the
10246 	 * hw plane on which to enable the hw cursor (see
10247 	 * `dcn10_can_pipe_disable_cursor`). By now, all modified planes are in
10248 	 * atomic state, so call drm helper to normalize zpos.
10249 	 */
10250 	ret = drm_atomic_normalize_zpos(dev, state);
10251 	if (ret) {
10252 		drm_dbg(dev, "drm_atomic_normalize_zpos() failed\n");
10253 		goto fail;
10254 	}
10255 
10256 	/* Remove exiting planes if they are modified */
10257 	for_each_oldnew_plane_in_state_reverse(state, plane, old_plane_state, new_plane_state, i) {
10258 		if (old_plane_state->fb && new_plane_state->fb &&
10259 		    get_mem_type(old_plane_state->fb) !=
10260 		    get_mem_type(new_plane_state->fb))
10261 			lock_and_validation_needed = true;
10262 
10263 		ret = dm_update_plane_state(dc, state, plane,
10264 					    old_plane_state,
10265 					    new_plane_state,
10266 					    false,
10267 					    &lock_and_validation_needed,
10268 					    &is_top_most_overlay);
10269 		if (ret) {
10270 			DRM_DEBUG_DRIVER("dm_update_plane_state() failed\n");
10271 			goto fail;
10272 		}
10273 	}
10274 
10275 	/* Disable all crtcs which require disable */
10276 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
10277 		ret = dm_update_crtc_state(&adev->dm, state, crtc,
10278 					   old_crtc_state,
10279 					   new_crtc_state,
10280 					   false,
10281 					   &lock_and_validation_needed);
10282 		if (ret) {
10283 			DRM_DEBUG_DRIVER("DISABLE: dm_update_crtc_state() failed\n");
10284 			goto fail;
10285 		}
10286 	}
10287 
10288 	/* Enable all crtcs which require enable */
10289 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
10290 		ret = dm_update_crtc_state(&adev->dm, state, crtc,
10291 					   old_crtc_state,
10292 					   new_crtc_state,
10293 					   true,
10294 					   &lock_and_validation_needed);
10295 		if (ret) {
10296 			DRM_DEBUG_DRIVER("ENABLE: dm_update_crtc_state() failed\n");
10297 			goto fail;
10298 		}
10299 	}
10300 
10301 	/* Add new/modified planes */
10302 	for_each_oldnew_plane_in_state_reverse(state, plane, old_plane_state, new_plane_state, i) {
10303 		ret = dm_update_plane_state(dc, state, plane,
10304 					    old_plane_state,
10305 					    new_plane_state,
10306 					    true,
10307 					    &lock_and_validation_needed,
10308 					    &is_top_most_overlay);
10309 		if (ret) {
10310 			DRM_DEBUG_DRIVER("dm_update_plane_state() failed\n");
10311 			goto fail;
10312 		}
10313 	}
10314 
10315 	if (dc_resource_is_dsc_encoding_supported(dc)) {
10316 		ret = pre_validate_dsc(state, &dm_state, vars);
10317 		if (ret != 0)
10318 			goto fail;
10319 	}
10320 
10321 	/* Run this here since we want to validate the streams we created */
10322 	ret = drm_atomic_helper_check_planes(dev, state);
10323 	if (ret) {
10324 		DRM_DEBUG_DRIVER("drm_atomic_helper_check_planes() failed\n");
10325 		goto fail;
10326 	}
10327 
10328 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
10329 		dm_new_crtc_state = to_dm_crtc_state(new_crtc_state);
10330 		if (dm_new_crtc_state->mpo_requested)
10331 			DRM_DEBUG_DRIVER("MPO enablement requested on crtc:[%p]\n", crtc);
10332 	}
10333 
10334 	/* Check cursor planes scaling */
10335 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
10336 		ret = dm_check_crtc_cursor(state, crtc, new_crtc_state);
10337 		if (ret) {
10338 			DRM_DEBUG_DRIVER("dm_check_crtc_cursor() failed\n");
10339 			goto fail;
10340 		}
10341 	}
10342 
10343 	if (state->legacy_cursor_update) {
10344 		/*
10345 		 * This is a fast cursor update coming from the plane update
10346 		 * helper, check if it can be done asynchronously for better
10347 		 * performance.
10348 		 */
10349 		state->async_update =
10350 			!drm_atomic_helper_async_check(dev, state);
10351 
10352 		/*
10353 		 * Skip the remaining global validation if this is an async
10354 		 * update. Cursor updates can be done without affecting
10355 		 * state or bandwidth calcs and this avoids the performance
10356 		 * penalty of locking the private state object and
10357 		 * allocating a new dc_state.
10358 		 */
10359 		if (state->async_update)
10360 			return 0;
10361 	}
10362 
10363 	/* Check scaling and underscan changes*/
10364 	/* TODO Removed scaling changes validation due to inability to commit
10365 	 * new stream into context w\o causing full reset. Need to
10366 	 * decide how to handle.
10367 	 */
10368 	for_each_oldnew_connector_in_state(state, connector, old_con_state, new_con_state, i) {
10369 		struct dm_connector_state *dm_old_con_state = to_dm_connector_state(old_con_state);
10370 		struct dm_connector_state *dm_new_con_state = to_dm_connector_state(new_con_state);
10371 		struct amdgpu_crtc *acrtc = to_amdgpu_crtc(dm_new_con_state->base.crtc);
10372 
10373 		/* Skip any modesets/resets */
10374 		if (!acrtc || drm_atomic_crtc_needs_modeset(
10375 				drm_atomic_get_new_crtc_state(state, &acrtc->base)))
10376 			continue;
10377 
10378 		/* Skip any thing not scale or underscan changes */
10379 		if (!is_scaling_state_different(dm_new_con_state, dm_old_con_state))
10380 			continue;
10381 
10382 		lock_and_validation_needed = true;
10383 	}
10384 
10385 	/* set the slot info for each mst_state based on the link encoding format */
10386 	for_each_new_mst_mgr_in_state(state, mgr, mst_state, i) {
10387 		struct amdgpu_dm_connector *aconnector;
10388 		struct drm_connector *connector;
10389 		struct drm_connector_list_iter iter;
10390 		u8 link_coding_cap;
10391 
10392 		drm_connector_list_iter_begin(dev, &iter);
10393 		drm_for_each_connector_iter(connector, &iter) {
10394 			if (connector->index == mst_state->mgr->conn_base_id) {
10395 				aconnector = to_amdgpu_dm_connector(connector);
10396 				link_coding_cap = dc_link_dp_mst_decide_link_encoding_format(aconnector->dc_link);
10397 				drm_dp_mst_update_slots(mst_state, link_coding_cap);
10398 
10399 				break;
10400 			}
10401 		}
10402 		drm_connector_list_iter_end(&iter);
10403 	}
10404 
10405 	/**
10406 	 * Streams and planes are reset when there are changes that affect
10407 	 * bandwidth. Anything that affects bandwidth needs to go through
10408 	 * DC global validation to ensure that the configuration can be applied
10409 	 * to hardware.
10410 	 *
10411 	 * We have to currently stall out here in atomic_check for outstanding
10412 	 * commits to finish in this case because our IRQ handlers reference
10413 	 * DRM state directly - we can end up disabling interrupts too early
10414 	 * if we don't.
10415 	 *
10416 	 * TODO: Remove this stall and drop DM state private objects.
10417 	 */
10418 	if (lock_and_validation_needed) {
10419 		ret = dm_atomic_get_state(state, &dm_state);
10420 		if (ret) {
10421 			DRM_DEBUG_DRIVER("dm_atomic_get_state() failed\n");
10422 			goto fail;
10423 		}
10424 
10425 		ret = do_aquire_global_lock(dev, state);
10426 		if (ret) {
10427 			DRM_DEBUG_DRIVER("do_aquire_global_lock() failed\n");
10428 			goto fail;
10429 		}
10430 
10431 		ret = compute_mst_dsc_configs_for_state(state, dm_state->context, vars);
10432 		if (ret) {
10433 			DRM_DEBUG_DRIVER("compute_mst_dsc_configs_for_state() failed\n");
10434 			ret = -EINVAL;
10435 			goto fail;
10436 		}
10437 
10438 		ret = dm_update_mst_vcpi_slots_for_dsc(state, dm_state->context, vars);
10439 		if (ret) {
10440 			DRM_DEBUG_DRIVER("dm_update_mst_vcpi_slots_for_dsc() failed\n");
10441 			goto fail;
10442 		}
10443 
10444 		/*
10445 		 * Perform validation of MST topology in the state:
10446 		 * We need to perform MST atomic check before calling
10447 		 * dc_validate_global_state(), or there is a chance
10448 		 * to get stuck in an infinite loop and hang eventually.
10449 		 */
10450 		ret = drm_dp_mst_atomic_check(state);
10451 		if (ret) {
10452 			DRM_DEBUG_DRIVER("drm_dp_mst_atomic_check() failed\n");
10453 			goto fail;
10454 		}
10455 		status = dc_validate_global_state(dc, dm_state->context, true);
10456 		if (status != DC_OK) {
10457 			DRM_DEBUG_DRIVER("DC global validation failure: %s (%d)",
10458 				       dc_status_to_str(status), status);
10459 			ret = -EINVAL;
10460 			goto fail;
10461 		}
10462 	} else {
10463 		/*
10464 		 * The commit is a fast update. Fast updates shouldn't change
10465 		 * the DC context, affect global validation, and can have their
10466 		 * commit work done in parallel with other commits not touching
10467 		 * the same resource. If we have a new DC context as part of
10468 		 * the DM atomic state from validation we need to free it and
10469 		 * retain the existing one instead.
10470 		 *
10471 		 * Furthermore, since the DM atomic state only contains the DC
10472 		 * context and can safely be annulled, we can free the state
10473 		 * and clear the associated private object now to free
10474 		 * some memory and avoid a possible use-after-free later.
10475 		 */
10476 
10477 		for (i = 0; i < state->num_private_objs; i++) {
10478 			struct drm_private_obj *obj = state->private_objs[i].ptr;
10479 
10480 			if (obj->funcs == adev->dm.atomic_obj.funcs) {
10481 				int j = state->num_private_objs-1;
10482 
10483 				dm_atomic_destroy_state(obj,
10484 						state->private_objs[i].state);
10485 
10486 				/* If i is not at the end of the array then the
10487 				 * last element needs to be moved to where i was
10488 				 * before the array can safely be truncated.
10489 				 */
10490 				if (i != j)
10491 					state->private_objs[i] =
10492 						state->private_objs[j];
10493 
10494 				state->private_objs[j].ptr = NULL;
10495 				state->private_objs[j].state = NULL;
10496 				state->private_objs[j].old_state = NULL;
10497 				state->private_objs[j].new_state = NULL;
10498 
10499 				state->num_private_objs = j;
10500 				break;
10501 			}
10502 		}
10503 	}
10504 
10505 	/* Store the overall update type for use later in atomic check. */
10506 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
10507 		struct dm_crtc_state *dm_new_crtc_state =
10508 			to_dm_crtc_state(new_crtc_state);
10509 
10510 		/*
10511 		 * Only allow async flips for fast updates that don't change
10512 		 * the FB pitch, the DCC state, rotation, etc.
10513 		 */
10514 		if (new_crtc_state->async_flip && lock_and_validation_needed) {
10515 			drm_dbg_atomic(crtc->dev,
10516 				       "[CRTC:%d:%s] async flips are only supported for fast updates\n",
10517 				       crtc->base.id, crtc->name);
10518 			ret = -EINVAL;
10519 			goto fail;
10520 		}
10521 
10522 		dm_new_crtc_state->update_type = lock_and_validation_needed ?
10523 			UPDATE_TYPE_FULL : UPDATE_TYPE_FAST;
10524 	}
10525 
10526 	/* Must be success */
10527 	WARN_ON(ret);
10528 
10529 	trace_amdgpu_dm_atomic_check_finish(state, ret);
10530 
10531 	return ret;
10532 
10533 fail:
10534 	if (ret == -EDEADLK)
10535 		DRM_DEBUG_DRIVER("Atomic check stopped to avoid deadlock.\n");
10536 	else if (ret == -EINTR || ret == -EAGAIN || ret == -ERESTARTSYS)
10537 		DRM_DEBUG_DRIVER("Atomic check stopped due to signal.\n");
10538 	else
10539 		DRM_DEBUG_DRIVER("Atomic check failed with err: %d\n", ret);
10540 
10541 	trace_amdgpu_dm_atomic_check_finish(state, ret);
10542 
10543 	return ret;
10544 }
10545 
10546 static bool is_dp_capable_without_timing_msa(struct dc *dc,
10547 					     struct amdgpu_dm_connector *amdgpu_dm_connector)
10548 {
10549 	u8 dpcd_data;
10550 	bool capable = false;
10551 
10552 	if (amdgpu_dm_connector->dc_link &&
10553 		dm_helpers_dp_read_dpcd(
10554 				NULL,
10555 				amdgpu_dm_connector->dc_link,
10556 				DP_DOWN_STREAM_PORT_COUNT,
10557 				&dpcd_data,
10558 				sizeof(dpcd_data))) {
10559 		capable = (dpcd_data & DP_MSA_TIMING_PAR_IGNORED) ? true:false;
10560 	}
10561 
10562 	return capable;
10563 }
10564 
10565 static bool dm_edid_parser_send_cea(struct amdgpu_display_manager *dm,
10566 		unsigned int offset,
10567 		unsigned int total_length,
10568 		u8 *data,
10569 		unsigned int length,
10570 		struct amdgpu_hdmi_vsdb_info *vsdb)
10571 {
10572 	bool res;
10573 	union dmub_rb_cmd cmd;
10574 	struct dmub_cmd_send_edid_cea *input;
10575 	struct dmub_cmd_edid_cea_output *output;
10576 
10577 	if (length > DMUB_EDID_CEA_DATA_CHUNK_BYTES)
10578 		return false;
10579 
10580 	memset(&cmd, 0, sizeof(cmd));
10581 
10582 	input = &cmd.edid_cea.data.input;
10583 
10584 	cmd.edid_cea.header.type = DMUB_CMD__EDID_CEA;
10585 	cmd.edid_cea.header.sub_type = 0;
10586 	cmd.edid_cea.header.payload_bytes =
10587 		sizeof(cmd.edid_cea) - sizeof(cmd.edid_cea.header);
10588 	input->offset = offset;
10589 	input->length = length;
10590 	input->cea_total_length = total_length;
10591 	memcpy(input->payload, data, length);
10592 
10593 	res = dm_execute_dmub_cmd(dm->dc->ctx, &cmd, DM_DMUB_WAIT_TYPE_WAIT_WITH_REPLY);
10594 	if (!res) {
10595 		DRM_ERROR("EDID CEA parser failed\n");
10596 		return false;
10597 	}
10598 
10599 	output = &cmd.edid_cea.data.output;
10600 
10601 	if (output->type == DMUB_CMD__EDID_CEA_ACK) {
10602 		if (!output->ack.success) {
10603 			DRM_ERROR("EDID CEA ack failed at offset %d\n",
10604 					output->ack.offset);
10605 		}
10606 	} else if (output->type == DMUB_CMD__EDID_CEA_AMD_VSDB) {
10607 		if (!output->amd_vsdb.vsdb_found)
10608 			return false;
10609 
10610 		vsdb->freesync_supported = output->amd_vsdb.freesync_supported;
10611 		vsdb->amd_vsdb_version = output->amd_vsdb.amd_vsdb_version;
10612 		vsdb->min_refresh_rate_hz = output->amd_vsdb.min_frame_rate;
10613 		vsdb->max_refresh_rate_hz = output->amd_vsdb.max_frame_rate;
10614 	} else {
10615 		DRM_WARN("Unknown EDID CEA parser results\n");
10616 		return false;
10617 	}
10618 
10619 	return true;
10620 }
10621 
10622 static bool parse_edid_cea_dmcu(struct amdgpu_display_manager *dm,
10623 		u8 *edid_ext, int len,
10624 		struct amdgpu_hdmi_vsdb_info *vsdb_info)
10625 {
10626 	int i;
10627 
10628 	/* send extension block to DMCU for parsing */
10629 	for (i = 0; i < len; i += 8) {
10630 		bool res;
10631 		int offset;
10632 
10633 		/* send 8 bytes a time */
10634 		if (!dc_edid_parser_send_cea(dm->dc, i, len, &edid_ext[i], 8))
10635 			return false;
10636 
10637 		if (i+8 == len) {
10638 			/* EDID block sent completed, expect result */
10639 			int version, min_rate, max_rate;
10640 
10641 			res = dc_edid_parser_recv_amd_vsdb(dm->dc, &version, &min_rate, &max_rate);
10642 			if (res) {
10643 				/* amd vsdb found */
10644 				vsdb_info->freesync_supported = 1;
10645 				vsdb_info->amd_vsdb_version = version;
10646 				vsdb_info->min_refresh_rate_hz = min_rate;
10647 				vsdb_info->max_refresh_rate_hz = max_rate;
10648 				return true;
10649 			}
10650 			/* not amd vsdb */
10651 			return false;
10652 		}
10653 
10654 		/* check for ack*/
10655 		res = dc_edid_parser_recv_cea_ack(dm->dc, &offset);
10656 		if (!res)
10657 			return false;
10658 	}
10659 
10660 	return false;
10661 }
10662 
10663 static bool parse_edid_cea_dmub(struct amdgpu_display_manager *dm,
10664 		u8 *edid_ext, int len,
10665 		struct amdgpu_hdmi_vsdb_info *vsdb_info)
10666 {
10667 	int i;
10668 
10669 	/* send extension block to DMCU for parsing */
10670 	for (i = 0; i < len; i += 8) {
10671 		/* send 8 bytes a time */
10672 		if (!dm_edid_parser_send_cea(dm, i, len, &edid_ext[i], 8, vsdb_info))
10673 			return false;
10674 	}
10675 
10676 	return vsdb_info->freesync_supported;
10677 }
10678 
10679 static bool parse_edid_cea(struct amdgpu_dm_connector *aconnector,
10680 		u8 *edid_ext, int len,
10681 		struct amdgpu_hdmi_vsdb_info *vsdb_info)
10682 {
10683 	struct amdgpu_device *adev = drm_to_adev(aconnector->base.dev);
10684 	bool ret;
10685 
10686 	mutex_lock(&adev->dm.dc_lock);
10687 	if (adev->dm.dmub_srv)
10688 		ret = parse_edid_cea_dmub(&adev->dm, edid_ext, len, vsdb_info);
10689 	else
10690 		ret = parse_edid_cea_dmcu(&adev->dm, edid_ext, len, vsdb_info);
10691 	mutex_unlock(&adev->dm.dc_lock);
10692 	return ret;
10693 }
10694 
10695 static int parse_amd_vsdb(struct amdgpu_dm_connector *aconnector,
10696 			  struct edid *edid, struct amdgpu_hdmi_vsdb_info *vsdb_info)
10697 {
10698 	u8 *edid_ext = NULL;
10699 	int i;
10700 	int j = 0;
10701 
10702 	if (edid == NULL || edid->extensions == 0)
10703 		return -ENODEV;
10704 
10705 	/* Find DisplayID extension */
10706 	for (i = 0; i < edid->extensions; i++) {
10707 		edid_ext = (void *)(edid + (i + 1));
10708 		if (edid_ext[0] == DISPLAYID_EXT)
10709 			break;
10710 	}
10711 
10712 	while (j < EDID_LENGTH) {
10713 		struct amd_vsdb_block *amd_vsdb = (struct amd_vsdb_block *)&edid_ext[j];
10714 		unsigned int ieeeId = (amd_vsdb->ieee_id[2] << 16) | (amd_vsdb->ieee_id[1] << 8) | (amd_vsdb->ieee_id[0]);
10715 
10716 		if (ieeeId == HDMI_AMD_VENDOR_SPECIFIC_DATA_BLOCK_IEEE_REGISTRATION_ID &&
10717 				amd_vsdb->version == HDMI_AMD_VENDOR_SPECIFIC_DATA_BLOCK_VERSION_3) {
10718 			vsdb_info->replay_mode = (amd_vsdb->feature_caps & AMD_VSDB_VERSION_3_FEATURECAP_REPLAYMODE) ? true : false;
10719 			vsdb_info->amd_vsdb_version = HDMI_AMD_VENDOR_SPECIFIC_DATA_BLOCK_VERSION_3;
10720 			DRM_DEBUG_KMS("Panel supports Replay Mode: %d\n", vsdb_info->replay_mode);
10721 
10722 			return true;
10723 		}
10724 		j++;
10725 	}
10726 
10727 	return false;
10728 }
10729 
10730 static int parse_hdmi_amd_vsdb(struct amdgpu_dm_connector *aconnector,
10731 		struct edid *edid, struct amdgpu_hdmi_vsdb_info *vsdb_info)
10732 {
10733 	u8 *edid_ext = NULL;
10734 	int i;
10735 	bool valid_vsdb_found = false;
10736 
10737 	/*----- drm_find_cea_extension() -----*/
10738 	/* No EDID or EDID extensions */
10739 	if (edid == NULL || edid->extensions == 0)
10740 		return -ENODEV;
10741 
10742 	/* Find CEA extension */
10743 	for (i = 0; i < edid->extensions; i++) {
10744 		edid_ext = (uint8_t *)edid + EDID_LENGTH * (i + 1);
10745 		if (edid_ext[0] == CEA_EXT)
10746 			break;
10747 	}
10748 
10749 	if (i == edid->extensions)
10750 		return -ENODEV;
10751 
10752 	/*----- cea_db_offsets() -----*/
10753 	if (edid_ext[0] != CEA_EXT)
10754 		return -ENODEV;
10755 
10756 	valid_vsdb_found = parse_edid_cea(aconnector, edid_ext, EDID_LENGTH, vsdb_info);
10757 
10758 	return valid_vsdb_found ? i : -ENODEV;
10759 }
10760 
10761 /**
10762  * amdgpu_dm_update_freesync_caps - Update Freesync capabilities
10763  *
10764  * @connector: Connector to query.
10765  * @edid: EDID from monitor
10766  *
10767  * Amdgpu supports Freesync in DP and HDMI displays, and it is required to keep
10768  * track of some of the display information in the internal data struct used by
10769  * amdgpu_dm. This function checks which type of connector we need to set the
10770  * FreeSync parameters.
10771  */
10772 void amdgpu_dm_update_freesync_caps(struct drm_connector *connector,
10773 				    struct edid *edid)
10774 {
10775 	int i = 0;
10776 	struct detailed_timing *timing;
10777 	struct detailed_non_pixel *data;
10778 	struct detailed_data_monitor_range *range;
10779 	struct amdgpu_dm_connector *amdgpu_dm_connector =
10780 			to_amdgpu_dm_connector(connector);
10781 	struct dm_connector_state *dm_con_state = NULL;
10782 	struct dc_sink *sink;
10783 
10784 	struct drm_device *dev = connector->dev;
10785 	struct amdgpu_device *adev = drm_to_adev(dev);
10786 	struct amdgpu_hdmi_vsdb_info vsdb_info = {0};
10787 	bool freesync_capable = false;
10788 	enum adaptive_sync_type as_type = ADAPTIVE_SYNC_TYPE_NONE;
10789 
10790 	if (!connector->state) {
10791 		DRM_ERROR("%s - Connector has no state", __func__);
10792 		goto update;
10793 	}
10794 
10795 	sink = amdgpu_dm_connector->dc_sink ?
10796 		amdgpu_dm_connector->dc_sink :
10797 		amdgpu_dm_connector->dc_em_sink;
10798 
10799 	if (!edid || !sink) {
10800 		dm_con_state = to_dm_connector_state(connector->state);
10801 
10802 		amdgpu_dm_connector->min_vfreq = 0;
10803 		amdgpu_dm_connector->max_vfreq = 0;
10804 		amdgpu_dm_connector->pixel_clock_mhz = 0;
10805 		connector->display_info.monitor_range.min_vfreq = 0;
10806 		connector->display_info.monitor_range.max_vfreq = 0;
10807 		freesync_capable = false;
10808 
10809 		goto update;
10810 	}
10811 
10812 	dm_con_state = to_dm_connector_state(connector->state);
10813 
10814 	if (!adev->dm.freesync_module)
10815 		goto update;
10816 
10817 	if (sink->sink_signal == SIGNAL_TYPE_DISPLAY_PORT
10818 		|| sink->sink_signal == SIGNAL_TYPE_EDP) {
10819 		bool edid_check_required = false;
10820 
10821 		if (edid) {
10822 			edid_check_required = is_dp_capable_without_timing_msa(
10823 						adev->dm.dc,
10824 						amdgpu_dm_connector);
10825 		}
10826 
10827 		if (edid_check_required == true && (edid->version > 1 ||
10828 		   (edid->version == 1 && edid->revision > 1))) {
10829 			for (i = 0; i < 4; i++) {
10830 
10831 				timing	= &edid->detailed_timings[i];
10832 				data	= &timing->data.other_data;
10833 				range	= &data->data.range;
10834 				/*
10835 				 * Check if monitor has continuous frequency mode
10836 				 */
10837 				if (data->type != EDID_DETAIL_MONITOR_RANGE)
10838 					continue;
10839 				/*
10840 				 * Check for flag range limits only. If flag == 1 then
10841 				 * no additional timing information provided.
10842 				 * Default GTF, GTF Secondary curve and CVT are not
10843 				 * supported
10844 				 */
10845 				if (range->flags != 1)
10846 					continue;
10847 
10848 				amdgpu_dm_connector->min_vfreq = range->min_vfreq;
10849 				amdgpu_dm_connector->max_vfreq = range->max_vfreq;
10850 				amdgpu_dm_connector->pixel_clock_mhz =
10851 					range->pixel_clock_mhz * 10;
10852 
10853 				connector->display_info.monitor_range.min_vfreq = range->min_vfreq;
10854 				connector->display_info.monitor_range.max_vfreq = range->max_vfreq;
10855 
10856 				break;
10857 			}
10858 
10859 			if (amdgpu_dm_connector->max_vfreq -
10860 			    amdgpu_dm_connector->min_vfreq > 10) {
10861 
10862 				freesync_capable = true;
10863 			}
10864 		}
10865 		parse_amd_vsdb(amdgpu_dm_connector, edid, &vsdb_info);
10866 
10867 		if (vsdb_info.replay_mode) {
10868 			amdgpu_dm_connector->vsdb_info.replay_mode = vsdb_info.replay_mode;
10869 			amdgpu_dm_connector->vsdb_info.amd_vsdb_version = vsdb_info.amd_vsdb_version;
10870 			amdgpu_dm_connector->as_type = ADAPTIVE_SYNC_TYPE_EDP;
10871 		}
10872 
10873 	} else if (edid && sink->sink_signal == SIGNAL_TYPE_HDMI_TYPE_A) {
10874 		i = parse_hdmi_amd_vsdb(amdgpu_dm_connector, edid, &vsdb_info);
10875 		if (i >= 0 && vsdb_info.freesync_supported) {
10876 			timing  = &edid->detailed_timings[i];
10877 			data    = &timing->data.other_data;
10878 
10879 			amdgpu_dm_connector->min_vfreq = vsdb_info.min_refresh_rate_hz;
10880 			amdgpu_dm_connector->max_vfreq = vsdb_info.max_refresh_rate_hz;
10881 			if (amdgpu_dm_connector->max_vfreq - amdgpu_dm_connector->min_vfreq > 10)
10882 				freesync_capable = true;
10883 
10884 			connector->display_info.monitor_range.min_vfreq = vsdb_info.min_refresh_rate_hz;
10885 			connector->display_info.monitor_range.max_vfreq = vsdb_info.max_refresh_rate_hz;
10886 		}
10887 	}
10888 
10889 	as_type = dm_get_adaptive_sync_support_type(amdgpu_dm_connector->dc_link);
10890 
10891 	if (as_type == FREESYNC_TYPE_PCON_IN_WHITELIST) {
10892 		i = parse_hdmi_amd_vsdb(amdgpu_dm_connector, edid, &vsdb_info);
10893 		if (i >= 0 && vsdb_info.freesync_supported && vsdb_info.amd_vsdb_version > 0) {
10894 
10895 			amdgpu_dm_connector->pack_sdp_v1_3 = true;
10896 			amdgpu_dm_connector->as_type = as_type;
10897 			amdgpu_dm_connector->vsdb_info = vsdb_info;
10898 
10899 			amdgpu_dm_connector->min_vfreq = vsdb_info.min_refresh_rate_hz;
10900 			amdgpu_dm_connector->max_vfreq = vsdb_info.max_refresh_rate_hz;
10901 			if (amdgpu_dm_connector->max_vfreq - amdgpu_dm_connector->min_vfreq > 10)
10902 				freesync_capable = true;
10903 
10904 			connector->display_info.monitor_range.min_vfreq = vsdb_info.min_refresh_rate_hz;
10905 			connector->display_info.monitor_range.max_vfreq = vsdb_info.max_refresh_rate_hz;
10906 		}
10907 	}
10908 
10909 update:
10910 	if (dm_con_state)
10911 		dm_con_state->freesync_capable = freesync_capable;
10912 
10913 	if (connector->vrr_capable_property)
10914 		drm_connector_set_vrr_capable_property(connector,
10915 						       freesync_capable);
10916 }
10917 
10918 void amdgpu_dm_trigger_timing_sync(struct drm_device *dev)
10919 {
10920 	struct amdgpu_device *adev = drm_to_adev(dev);
10921 	struct dc *dc = adev->dm.dc;
10922 	int i;
10923 
10924 	mutex_lock(&adev->dm.dc_lock);
10925 	if (dc->current_state) {
10926 		for (i = 0; i < dc->current_state->stream_count; ++i)
10927 			dc->current_state->streams[i]
10928 				->triggered_crtc_reset.enabled =
10929 				adev->dm.force_timing_sync;
10930 
10931 		dm_enable_per_frame_crtc_master_sync(dc->current_state);
10932 		dc_trigger_sync(dc, dc->current_state);
10933 	}
10934 	mutex_unlock(&adev->dm.dc_lock);
10935 }
10936 
10937 void dm_write_reg_func(const struct dc_context *ctx, uint32_t address,
10938 		       u32 value, const char *func_name)
10939 {
10940 #ifdef DM_CHECK_ADDR_0
10941 	if (address == 0) {
10942 		drm_err(adev_to_drm(ctx->driver_context),
10943 			"invalid register write. address = 0");
10944 		return;
10945 	}
10946 #endif
10947 	cgs_write_register(ctx->cgs_device, address, value);
10948 	trace_amdgpu_dc_wreg(&ctx->perf_trace->write_count, address, value);
10949 }
10950 
10951 uint32_t dm_read_reg_func(const struct dc_context *ctx, uint32_t address,
10952 			  const char *func_name)
10953 {
10954 	u32 value;
10955 #ifdef DM_CHECK_ADDR_0
10956 	if (address == 0) {
10957 		drm_err(adev_to_drm(ctx->driver_context),
10958 			"invalid register read; address = 0\n");
10959 		return 0;
10960 	}
10961 #endif
10962 
10963 	if (ctx->dmub_srv &&
10964 	    ctx->dmub_srv->reg_helper_offload.gather_in_progress &&
10965 	    !ctx->dmub_srv->reg_helper_offload.should_burst_write) {
10966 		ASSERT(false);
10967 		return 0;
10968 	}
10969 
10970 	value = cgs_read_register(ctx->cgs_device, address);
10971 
10972 	trace_amdgpu_dc_rreg(&ctx->perf_trace->read_count, address, value);
10973 
10974 	return value;
10975 }
10976 
10977 int amdgpu_dm_process_dmub_aux_transfer_sync(
10978 		struct dc_context *ctx,
10979 		unsigned int link_index,
10980 		struct aux_payload *payload,
10981 		enum aux_return_code_type *operation_result)
10982 {
10983 	struct amdgpu_device *adev = ctx->driver_context;
10984 	struct dmub_notification *p_notify = adev->dm.dmub_notify;
10985 	int ret = -1;
10986 
10987 	mutex_lock(&adev->dm.dpia_aux_lock);
10988 	if (!dc_process_dmub_aux_transfer_async(ctx->dc, link_index, payload)) {
10989 		*operation_result = AUX_RET_ERROR_ENGINE_ACQUIRE;
10990 		goto out;
10991 	}
10992 
10993 	if (!wait_for_completion_timeout(&adev->dm.dmub_aux_transfer_done, 10 * HZ)) {
10994 		DRM_ERROR("wait_for_completion_timeout timeout!");
10995 		*operation_result = AUX_RET_ERROR_TIMEOUT;
10996 		goto out;
10997 	}
10998 
10999 	if (p_notify->result != AUX_RET_SUCCESS) {
11000 		/*
11001 		 * Transient states before tunneling is enabled could
11002 		 * lead to this error. We can ignore this for now.
11003 		 */
11004 		if (p_notify->result != AUX_RET_ERROR_PROTOCOL_ERROR) {
11005 			DRM_WARN("DPIA AUX failed on 0x%x(%d), error %d\n",
11006 					payload->address, payload->length,
11007 					p_notify->result);
11008 		}
11009 		*operation_result = AUX_RET_ERROR_INVALID_REPLY;
11010 		goto out;
11011 	}
11012 
11013 
11014 	payload->reply[0] = adev->dm.dmub_notify->aux_reply.command;
11015 	if (!payload->write && p_notify->aux_reply.length &&
11016 			(payload->reply[0] == AUX_TRANSACTION_REPLY_AUX_ACK)) {
11017 
11018 		if (payload->length != p_notify->aux_reply.length) {
11019 			DRM_WARN("invalid read length %d from DPIA AUX 0x%x(%d)!\n",
11020 				p_notify->aux_reply.length,
11021 					payload->address, payload->length);
11022 			*operation_result = AUX_RET_ERROR_INVALID_REPLY;
11023 			goto out;
11024 		}
11025 
11026 		memcpy(payload->data, p_notify->aux_reply.data,
11027 				p_notify->aux_reply.length);
11028 	}
11029 
11030 	/* success */
11031 	ret = p_notify->aux_reply.length;
11032 	*operation_result = p_notify->result;
11033 out:
11034 	reinit_completion(&adev->dm.dmub_aux_transfer_done);
11035 	mutex_unlock(&adev->dm.dpia_aux_lock);
11036 	return ret;
11037 }
11038 
11039 int amdgpu_dm_process_dmub_set_config_sync(
11040 		struct dc_context *ctx,
11041 		unsigned int link_index,
11042 		struct set_config_cmd_payload *payload,
11043 		enum set_config_status *operation_result)
11044 {
11045 	struct amdgpu_device *adev = ctx->driver_context;
11046 	bool is_cmd_complete;
11047 	int ret;
11048 
11049 	mutex_lock(&adev->dm.dpia_aux_lock);
11050 	is_cmd_complete = dc_process_dmub_set_config_async(ctx->dc,
11051 			link_index, payload, adev->dm.dmub_notify);
11052 
11053 	if (is_cmd_complete || wait_for_completion_timeout(&adev->dm.dmub_aux_transfer_done, 10 * HZ)) {
11054 		ret = 0;
11055 		*operation_result = adev->dm.dmub_notify->sc_status;
11056 	} else {
11057 		DRM_ERROR("wait_for_completion_timeout timeout!");
11058 		ret = -1;
11059 		*operation_result = SET_CONFIG_UNKNOWN_ERROR;
11060 	}
11061 
11062 	if (!is_cmd_complete)
11063 		reinit_completion(&adev->dm.dmub_aux_transfer_done);
11064 	mutex_unlock(&adev->dm.dpia_aux_lock);
11065 	return ret;
11066 }
11067 
11068 bool dm_execute_dmub_cmd(const struct dc_context *ctx, union dmub_rb_cmd *cmd, enum dm_dmub_wait_type wait_type)
11069 {
11070 	return dc_dmub_srv_cmd_run(ctx->dmub_srv, cmd, wait_type);
11071 }
11072 
11073 bool dm_execute_dmub_cmd_list(const struct dc_context *ctx, unsigned int count, union dmub_rb_cmd *cmd, enum dm_dmub_wait_type wait_type)
11074 {
11075 	return dc_dmub_srv_cmd_run_list(ctx->dmub_srv, count, cmd, wait_type);
11076 }
11077