xref: /openbsd/sys/dev/pci/drm/drm_atomic_helper.c (revision f005ef32)
1 /*
2  * Copyright (C) 2014 Red Hat
3  * Copyright (C) 2014 Intel Corp.
4  *
5  * Permission is hereby granted, free of charge, to any person obtaining a
6  * copy of this software and associated documentation files (the "Software"),
7  * to deal in the Software without restriction, including without limitation
8  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
9  * and/or sell copies of the Software, and to permit persons to whom the
10  * Software is furnished to do so, subject to the following conditions:
11  *
12  * The above copyright notice and this permission notice shall be included in
13  * all copies or substantial portions of the Software.
14  *
15  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
18  * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
19  * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
20  * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
21  * OTHER DEALINGS IN THE SOFTWARE.
22  *
23  * Authors:
24  * Rob Clark <robdclark@gmail.com>
25  * Daniel Vetter <daniel.vetter@ffwll.ch>
26  */
27 
28 #include <linux/dma-fence.h>
29 #include <linux/ktime.h>
30 
31 #include <drm/drm_atomic.h>
32 #include <drm/drm_atomic_helper.h>
33 #include <drm/drm_atomic_uapi.h>
34 #include <drm/drm_blend.h>
35 #include <drm/drm_bridge.h>
36 #include <drm/drm_damage_helper.h>
37 #include <drm/drm_device.h>
38 #include <drm/drm_drv.h>
39 #include <drm/drm_framebuffer.h>
40 #include <drm/drm_gem_atomic_helper.h>
41 #include <drm/drm_print.h>
42 #include <drm/drm_self_refresh_helper.h>
43 #include <drm/drm_vblank.h>
44 #include <drm/drm_writeback.h>
45 
46 #include "drm_crtc_helper_internal.h"
47 #include "drm_crtc_internal.h"
48 
49 /**
50  * DOC: overview
51  *
52  * This helper library provides implementations of check and commit functions on
53  * top of the CRTC modeset helper callbacks and the plane helper callbacks. It
54  * also provides convenience implementations for the atomic state handling
55  * callbacks for drivers which don't need to subclass the drm core structures to
56  * add their own additional internal state.
57  *
58  * This library also provides default implementations for the check callback in
59  * drm_atomic_helper_check() and for the commit callback with
60  * drm_atomic_helper_commit(). But the individual stages and callbacks are
61  * exposed to allow drivers to mix and match and e.g. use the plane helpers only
62  * together with a driver private modeset implementation.
63  *
64  * This library also provides implementations for all the legacy driver
65  * interfaces on top of the atomic interface. See drm_atomic_helper_set_config(),
66  * drm_atomic_helper_disable_plane(), and the various functions to implement
67  * set_property callbacks. New drivers must not implement these functions
68  * themselves but must use the provided helpers.
69  *
70  * The atomic helper uses the same function table structures as all other
71  * modesetting helpers. See the documentation for &struct drm_crtc_helper_funcs,
72  * struct &drm_encoder_helper_funcs and &struct drm_connector_helper_funcs. It
73  * also shares the &struct drm_plane_helper_funcs function table with the plane
74  * helpers.
75  */
76 static void
drm_atomic_helper_plane_changed(struct drm_atomic_state * state,struct drm_plane_state * old_plane_state,struct drm_plane_state * plane_state,struct drm_plane * plane)77 drm_atomic_helper_plane_changed(struct drm_atomic_state *state,
78 				struct drm_plane_state *old_plane_state,
79 				struct drm_plane_state *plane_state,
80 				struct drm_plane *plane)
81 {
82 	struct drm_crtc_state *crtc_state;
83 
84 	if (old_plane_state->crtc) {
85 		crtc_state = drm_atomic_get_new_crtc_state(state,
86 							   old_plane_state->crtc);
87 
88 		if (WARN_ON(!crtc_state))
89 			return;
90 
91 		crtc_state->planes_changed = true;
92 	}
93 
94 	if (plane_state->crtc) {
95 		crtc_state = drm_atomic_get_new_crtc_state(state, plane_state->crtc);
96 
97 		if (WARN_ON(!crtc_state))
98 			return;
99 
100 		crtc_state->planes_changed = true;
101 	}
102 }
103 
handle_conflicting_encoders(struct drm_atomic_state * state,bool disable_conflicting_encoders)104 static int handle_conflicting_encoders(struct drm_atomic_state *state,
105 				       bool disable_conflicting_encoders)
106 {
107 	struct drm_connector_state *new_conn_state;
108 	struct drm_connector *connector;
109 	struct drm_connector_list_iter conn_iter;
110 	struct drm_encoder *encoder;
111 	unsigned int encoder_mask = 0;
112 	int i, ret = 0;
113 
114 	/*
115 	 * First loop, find all newly assigned encoders from the connectors
116 	 * part of the state. If the same encoder is assigned to multiple
117 	 * connectors bail out.
118 	 */
119 	for_each_new_connector_in_state(state, connector, new_conn_state, i) {
120 		const struct drm_connector_helper_funcs *funcs = connector->helper_private;
121 		struct drm_encoder *new_encoder;
122 
123 		if (!new_conn_state->crtc)
124 			continue;
125 
126 		if (funcs->atomic_best_encoder)
127 			new_encoder = funcs->atomic_best_encoder(connector,
128 								 state);
129 		else if (funcs->best_encoder)
130 			new_encoder = funcs->best_encoder(connector);
131 		else
132 			new_encoder = drm_connector_get_single_encoder(connector);
133 
134 		if (new_encoder) {
135 			if (encoder_mask & drm_encoder_mask(new_encoder)) {
136 				drm_dbg_atomic(connector->dev,
137 					       "[ENCODER:%d:%s] on [CONNECTOR:%d:%s] already assigned\n",
138 					       new_encoder->base.id, new_encoder->name,
139 					       connector->base.id, connector->name);
140 
141 				return -EINVAL;
142 			}
143 
144 			encoder_mask |= drm_encoder_mask(new_encoder);
145 		}
146 	}
147 
148 	if (!encoder_mask)
149 		return 0;
150 
151 	/*
152 	 * Second loop, iterate over all connectors not part of the state.
153 	 *
154 	 * If a conflicting encoder is found and disable_conflicting_encoders
155 	 * is not set, an error is returned. Userspace can provide a solution
156 	 * through the atomic ioctl.
157 	 *
158 	 * If the flag is set conflicting connectors are removed from the CRTC
159 	 * and the CRTC is disabled if no encoder is left. This preserves
160 	 * compatibility with the legacy set_config behavior.
161 	 */
162 	drm_connector_list_iter_begin(state->dev, &conn_iter);
163 	drm_for_each_connector_iter(connector, &conn_iter) {
164 		struct drm_crtc_state *crtc_state;
165 
166 		if (drm_atomic_get_new_connector_state(state, connector))
167 			continue;
168 
169 		encoder = connector->state->best_encoder;
170 		if (!encoder || !(encoder_mask & drm_encoder_mask(encoder)))
171 			continue;
172 
173 		if (!disable_conflicting_encoders) {
174 			drm_dbg_atomic(connector->dev,
175 				       "[ENCODER:%d:%s] in use on [CRTC:%d:%s] by [CONNECTOR:%d:%s]\n",
176 				       encoder->base.id, encoder->name,
177 				       connector->state->crtc->base.id,
178 				       connector->state->crtc->name,
179 				       connector->base.id, connector->name);
180 			ret = -EINVAL;
181 			goto out;
182 		}
183 
184 		new_conn_state = drm_atomic_get_connector_state(state, connector);
185 		if (IS_ERR(new_conn_state)) {
186 			ret = PTR_ERR(new_conn_state);
187 			goto out;
188 		}
189 
190 		drm_dbg_atomic(connector->dev,
191 			       "[ENCODER:%d:%s] in use on [CRTC:%d:%s], disabling [CONNECTOR:%d:%s]\n",
192 			       encoder->base.id, encoder->name,
193 			       new_conn_state->crtc->base.id, new_conn_state->crtc->name,
194 			       connector->base.id, connector->name);
195 
196 		crtc_state = drm_atomic_get_new_crtc_state(state, new_conn_state->crtc);
197 
198 		ret = drm_atomic_set_crtc_for_connector(new_conn_state, NULL);
199 		if (ret)
200 			goto out;
201 
202 		if (!crtc_state->connector_mask) {
203 			ret = drm_atomic_set_mode_prop_for_crtc(crtc_state,
204 								NULL);
205 			if (ret < 0)
206 				goto out;
207 
208 			crtc_state->active = false;
209 		}
210 	}
211 out:
212 	drm_connector_list_iter_end(&conn_iter);
213 
214 	return ret;
215 }
216 
217 static void
set_best_encoder(struct drm_atomic_state * state,struct drm_connector_state * conn_state,struct drm_encoder * encoder)218 set_best_encoder(struct drm_atomic_state *state,
219 		 struct drm_connector_state *conn_state,
220 		 struct drm_encoder *encoder)
221 {
222 	struct drm_crtc_state *crtc_state;
223 	struct drm_crtc *crtc;
224 
225 	if (conn_state->best_encoder) {
226 		/* Unset the encoder_mask in the old crtc state. */
227 		crtc = conn_state->connector->state->crtc;
228 
229 		/* A NULL crtc is an error here because we should have
230 		 * duplicated a NULL best_encoder when crtc was NULL.
231 		 * As an exception restoring duplicated atomic state
232 		 * during resume is allowed, so don't warn when
233 		 * best_encoder is equal to encoder we intend to set.
234 		 */
235 		WARN_ON(!crtc && encoder != conn_state->best_encoder);
236 		if (crtc) {
237 			crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
238 
239 			crtc_state->encoder_mask &=
240 				~drm_encoder_mask(conn_state->best_encoder);
241 		}
242 	}
243 
244 	if (encoder) {
245 		crtc = conn_state->crtc;
246 		WARN_ON(!crtc);
247 		if (crtc) {
248 			crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
249 
250 			crtc_state->encoder_mask |=
251 				drm_encoder_mask(encoder);
252 		}
253 	}
254 
255 	conn_state->best_encoder = encoder;
256 }
257 
258 static void
steal_encoder(struct drm_atomic_state * state,struct drm_encoder * encoder)259 steal_encoder(struct drm_atomic_state *state,
260 	      struct drm_encoder *encoder)
261 {
262 	struct drm_crtc_state *crtc_state;
263 	struct drm_connector *connector;
264 	struct drm_connector_state *old_connector_state, *new_connector_state;
265 	int i;
266 
267 	for_each_oldnew_connector_in_state(state, connector, old_connector_state, new_connector_state, i) {
268 		struct drm_crtc *encoder_crtc;
269 
270 		if (new_connector_state->best_encoder != encoder)
271 			continue;
272 
273 		encoder_crtc = old_connector_state->crtc;
274 
275 		drm_dbg_atomic(encoder->dev,
276 			       "[ENCODER:%d:%s] in use on [CRTC:%d:%s], stealing it\n",
277 			       encoder->base.id, encoder->name,
278 			       encoder_crtc->base.id, encoder_crtc->name);
279 
280 		set_best_encoder(state, new_connector_state, NULL);
281 
282 		crtc_state = drm_atomic_get_new_crtc_state(state, encoder_crtc);
283 		crtc_state->connectors_changed = true;
284 
285 		return;
286 	}
287 }
288 
289 static int
update_connector_routing(struct drm_atomic_state * state,struct drm_connector * connector,struct drm_connector_state * old_connector_state,struct drm_connector_state * new_connector_state,bool added_by_user)290 update_connector_routing(struct drm_atomic_state *state,
291 			 struct drm_connector *connector,
292 			 struct drm_connector_state *old_connector_state,
293 			 struct drm_connector_state *new_connector_state,
294 			 bool added_by_user)
295 {
296 	const struct drm_connector_helper_funcs *funcs;
297 	struct drm_encoder *new_encoder;
298 	struct drm_crtc_state *crtc_state;
299 
300 	drm_dbg_atomic(connector->dev, "Updating routing for [CONNECTOR:%d:%s]\n",
301 		       connector->base.id, connector->name);
302 
303 	if (old_connector_state->crtc != new_connector_state->crtc) {
304 		if (old_connector_state->crtc) {
305 			crtc_state = drm_atomic_get_new_crtc_state(state, old_connector_state->crtc);
306 			crtc_state->connectors_changed = true;
307 		}
308 
309 		if (new_connector_state->crtc) {
310 			crtc_state = drm_atomic_get_new_crtc_state(state, new_connector_state->crtc);
311 			crtc_state->connectors_changed = true;
312 		}
313 	}
314 
315 	if (!new_connector_state->crtc) {
316 		drm_dbg_atomic(connector->dev, "Disabling [CONNECTOR:%d:%s]\n",
317 				connector->base.id, connector->name);
318 
319 		set_best_encoder(state, new_connector_state, NULL);
320 
321 		return 0;
322 	}
323 
324 	crtc_state = drm_atomic_get_new_crtc_state(state,
325 						   new_connector_state->crtc);
326 	/*
327 	 * For compatibility with legacy users, we want to make sure that
328 	 * we allow DPMS On->Off modesets on unregistered connectors. Modesets
329 	 * which would result in anything else must be considered invalid, to
330 	 * avoid turning on new displays on dead connectors.
331 	 *
332 	 * Since the connector can be unregistered at any point during an
333 	 * atomic check or commit, this is racy. But that's OK: all we care
334 	 * about is ensuring that userspace can't do anything but shut off the
335 	 * display on a connector that was destroyed after it's been notified,
336 	 * not before.
337 	 *
338 	 * Additionally, we also want to ignore connector registration when
339 	 * we're trying to restore an atomic state during system resume since
340 	 * there's a chance the connector may have been destroyed during the
341 	 * process, but it's better to ignore that then cause
342 	 * drm_atomic_helper_resume() to fail.
343 	 *
344 	 * Last, we want to ignore connector registration when the connector
345 	 * was not pulled in the atomic state by user-space (ie, was pulled
346 	 * in by the driver, e.g. when updating a DP-MST stream).
347 	 */
348 	if (!state->duplicated && drm_connector_is_unregistered(connector) &&
349 	    added_by_user && crtc_state->active) {
350 		drm_dbg_atomic(connector->dev,
351 			       "[CONNECTOR:%d:%s] is not registered\n",
352 			       connector->base.id, connector->name);
353 		return -EINVAL;
354 	}
355 
356 	funcs = connector->helper_private;
357 
358 	if (funcs->atomic_best_encoder)
359 		new_encoder = funcs->atomic_best_encoder(connector, state);
360 	else if (funcs->best_encoder)
361 		new_encoder = funcs->best_encoder(connector);
362 	else
363 		new_encoder = drm_connector_get_single_encoder(connector);
364 
365 	if (!new_encoder) {
366 		drm_dbg_atomic(connector->dev,
367 			       "No suitable encoder found for [CONNECTOR:%d:%s]\n",
368 			       connector->base.id, connector->name);
369 		return -EINVAL;
370 	}
371 
372 	if (!drm_encoder_crtc_ok(new_encoder, new_connector_state->crtc)) {
373 		drm_dbg_atomic(connector->dev,
374 			       "[ENCODER:%d:%s] incompatible with [CRTC:%d:%s]\n",
375 			       new_encoder->base.id,
376 			       new_encoder->name,
377 			       new_connector_state->crtc->base.id,
378 			       new_connector_state->crtc->name);
379 		return -EINVAL;
380 	}
381 
382 	if (new_encoder == new_connector_state->best_encoder) {
383 		set_best_encoder(state, new_connector_state, new_encoder);
384 
385 		drm_dbg_atomic(connector->dev,
386 			       "[CONNECTOR:%d:%s] keeps [ENCODER:%d:%s], now on [CRTC:%d:%s]\n",
387 			       connector->base.id,
388 			       connector->name,
389 			       new_encoder->base.id,
390 			       new_encoder->name,
391 			       new_connector_state->crtc->base.id,
392 			       new_connector_state->crtc->name);
393 
394 		return 0;
395 	}
396 
397 	steal_encoder(state, new_encoder);
398 
399 	set_best_encoder(state, new_connector_state, new_encoder);
400 
401 	crtc_state->connectors_changed = true;
402 
403 	drm_dbg_atomic(connector->dev,
404 		       "[CONNECTOR:%d:%s] using [ENCODER:%d:%s] on [CRTC:%d:%s]\n",
405 		       connector->base.id,
406 		       connector->name,
407 		       new_encoder->base.id,
408 		       new_encoder->name,
409 		       new_connector_state->crtc->base.id,
410 		       new_connector_state->crtc->name);
411 
412 	return 0;
413 }
414 
415 static int
mode_fixup(struct drm_atomic_state * state)416 mode_fixup(struct drm_atomic_state *state)
417 {
418 	struct drm_crtc *crtc;
419 	struct drm_crtc_state *new_crtc_state;
420 	struct drm_connector *connector;
421 	struct drm_connector_state *new_conn_state;
422 	int i;
423 	int ret;
424 
425 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
426 		if (!new_crtc_state->mode_changed &&
427 		    !new_crtc_state->connectors_changed)
428 			continue;
429 
430 		drm_mode_copy(&new_crtc_state->adjusted_mode, &new_crtc_state->mode);
431 	}
432 
433 	for_each_new_connector_in_state(state, connector, new_conn_state, i) {
434 		const struct drm_encoder_helper_funcs *funcs;
435 		struct drm_encoder *encoder;
436 		struct drm_bridge *bridge;
437 
438 		WARN_ON(!!new_conn_state->best_encoder != !!new_conn_state->crtc);
439 
440 		if (!new_conn_state->crtc || !new_conn_state->best_encoder)
441 			continue;
442 
443 		new_crtc_state =
444 			drm_atomic_get_new_crtc_state(state, new_conn_state->crtc);
445 
446 		/*
447 		 * Each encoder has at most one connector (since we always steal
448 		 * it away), so we won't call ->mode_fixup twice.
449 		 */
450 		encoder = new_conn_state->best_encoder;
451 		funcs = encoder->helper_private;
452 
453 		bridge = drm_bridge_chain_get_first_bridge(encoder);
454 		ret = drm_atomic_bridge_chain_check(bridge,
455 						    new_crtc_state,
456 						    new_conn_state);
457 		if (ret) {
458 			drm_dbg_atomic(encoder->dev, "Bridge atomic check failed\n");
459 			return ret;
460 		}
461 
462 		if (funcs && funcs->atomic_check) {
463 			ret = funcs->atomic_check(encoder, new_crtc_state,
464 						  new_conn_state);
465 			if (ret) {
466 				drm_dbg_atomic(encoder->dev,
467 					       "[ENCODER:%d:%s] check failed\n",
468 					       encoder->base.id, encoder->name);
469 				return ret;
470 			}
471 		} else if (funcs && funcs->mode_fixup) {
472 			ret = funcs->mode_fixup(encoder, &new_crtc_state->mode,
473 						&new_crtc_state->adjusted_mode);
474 			if (!ret) {
475 				drm_dbg_atomic(encoder->dev,
476 					       "[ENCODER:%d:%s] fixup failed\n",
477 					       encoder->base.id, encoder->name);
478 				return -EINVAL;
479 			}
480 		}
481 	}
482 
483 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
484 		const struct drm_crtc_helper_funcs *funcs;
485 
486 		if (!new_crtc_state->enable)
487 			continue;
488 
489 		if (!new_crtc_state->mode_changed &&
490 		    !new_crtc_state->connectors_changed)
491 			continue;
492 
493 		funcs = crtc->helper_private;
494 		if (!funcs || !funcs->mode_fixup)
495 			continue;
496 
497 		ret = funcs->mode_fixup(crtc, &new_crtc_state->mode,
498 					&new_crtc_state->adjusted_mode);
499 		if (!ret) {
500 			drm_dbg_atomic(crtc->dev, "[CRTC:%d:%s] fixup failed\n",
501 				       crtc->base.id, crtc->name);
502 			return -EINVAL;
503 		}
504 	}
505 
506 	return 0;
507 }
508 
mode_valid_path(struct drm_connector * connector,struct drm_encoder * encoder,struct drm_crtc * crtc,const struct drm_display_mode * mode)509 static enum drm_mode_status mode_valid_path(struct drm_connector *connector,
510 					    struct drm_encoder *encoder,
511 					    struct drm_crtc *crtc,
512 					    const struct drm_display_mode *mode)
513 {
514 	struct drm_bridge *bridge;
515 	enum drm_mode_status ret;
516 
517 	ret = drm_encoder_mode_valid(encoder, mode);
518 	if (ret != MODE_OK) {
519 		drm_dbg_atomic(encoder->dev,
520 			       "[ENCODER:%d:%s] mode_valid() failed\n",
521 			       encoder->base.id, encoder->name);
522 		return ret;
523 	}
524 
525 	bridge = drm_bridge_chain_get_first_bridge(encoder);
526 	ret = drm_bridge_chain_mode_valid(bridge, &connector->display_info,
527 					  mode);
528 	if (ret != MODE_OK) {
529 		drm_dbg_atomic(encoder->dev, "[BRIDGE] mode_valid() failed\n");
530 		return ret;
531 	}
532 
533 	ret = drm_crtc_mode_valid(crtc, mode);
534 	if (ret != MODE_OK) {
535 		drm_dbg_atomic(encoder->dev, "[CRTC:%d:%s] mode_valid() failed\n",
536 			       crtc->base.id, crtc->name);
537 		return ret;
538 	}
539 
540 	return ret;
541 }
542 
543 static int
mode_valid(struct drm_atomic_state * state)544 mode_valid(struct drm_atomic_state *state)
545 {
546 	struct drm_connector_state *conn_state;
547 	struct drm_connector *connector;
548 	int i;
549 
550 	for_each_new_connector_in_state(state, connector, conn_state, i) {
551 		struct drm_encoder *encoder = conn_state->best_encoder;
552 		struct drm_crtc *crtc = conn_state->crtc;
553 		struct drm_crtc_state *crtc_state;
554 		enum drm_mode_status mode_status;
555 		const struct drm_display_mode *mode;
556 
557 		if (!crtc || !encoder)
558 			continue;
559 
560 		crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
561 		if (!crtc_state)
562 			continue;
563 		if (!crtc_state->mode_changed && !crtc_state->connectors_changed)
564 			continue;
565 
566 		mode = &crtc_state->mode;
567 
568 		mode_status = mode_valid_path(connector, encoder, crtc, mode);
569 		if (mode_status != MODE_OK)
570 			return -EINVAL;
571 	}
572 
573 	return 0;
574 }
575 
576 /**
577  * drm_atomic_helper_check_modeset - validate state object for modeset changes
578  * @dev: DRM device
579  * @state: the driver state object
580  *
581  * Check the state object to see if the requested state is physically possible.
582  * This does all the CRTC and connector related computations for an atomic
583  * update and adds any additional connectors needed for full modesets. It calls
584  * the various per-object callbacks in the follow order:
585  *
586  * 1. &drm_connector_helper_funcs.atomic_best_encoder for determining the new encoder.
587  * 2. &drm_connector_helper_funcs.atomic_check to validate the connector state.
588  * 3. If it's determined a modeset is needed then all connectors on the affected
589  *    CRTC are added and &drm_connector_helper_funcs.atomic_check is run on them.
590  * 4. &drm_encoder_helper_funcs.mode_valid, &drm_bridge_funcs.mode_valid and
591  *    &drm_crtc_helper_funcs.mode_valid are called on the affected components.
592  * 5. &drm_bridge_funcs.mode_fixup is called on all encoder bridges.
593  * 6. &drm_encoder_helper_funcs.atomic_check is called to validate any encoder state.
594  *    This function is only called when the encoder will be part of a configured CRTC,
595  *    it must not be used for implementing connector property validation.
596  *    If this function is NULL, &drm_atomic_encoder_helper_funcs.mode_fixup is called
597  *    instead.
598  * 7. &drm_crtc_helper_funcs.mode_fixup is called last, to fix up the mode with CRTC constraints.
599  *
600  * &drm_crtc_state.mode_changed is set when the input mode is changed.
601  * &drm_crtc_state.connectors_changed is set when a connector is added or
602  * removed from the CRTC.  &drm_crtc_state.active_changed is set when
603  * &drm_crtc_state.active changes, which is used for DPMS.
604  * &drm_crtc_state.no_vblank is set from the result of drm_dev_has_vblank().
605  * See also: drm_atomic_crtc_needs_modeset()
606  *
607  * IMPORTANT:
608  *
609  * Drivers which set &drm_crtc_state.mode_changed (e.g. in their
610  * &drm_plane_helper_funcs.atomic_check hooks if a plane update can't be done
611  * without a full modeset) _must_ call this function after that change. It is
612  * permitted to call this function multiple times for the same update, e.g.
613  * when the &drm_crtc_helper_funcs.atomic_check functions depend upon the
614  * adjusted dotclock for fifo space allocation and watermark computation.
615  *
616  * RETURNS:
617  * Zero for success or -errno
618  */
619 int
drm_atomic_helper_check_modeset(struct drm_device * dev,struct drm_atomic_state * state)620 drm_atomic_helper_check_modeset(struct drm_device *dev,
621 				struct drm_atomic_state *state)
622 {
623 	struct drm_crtc *crtc;
624 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
625 	struct drm_connector *connector;
626 	struct drm_connector_state *old_connector_state, *new_connector_state;
627 	int i, ret;
628 	unsigned int connectors_mask = 0, user_connectors_mask = 0;
629 
630 	for_each_oldnew_connector_in_state(state, connector, old_connector_state, new_connector_state, i)
631 		user_connectors_mask |= BIT(i);
632 
633 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
634 		bool has_connectors =
635 			!!new_crtc_state->connector_mask;
636 
637 		WARN_ON(!drm_modeset_is_locked(&crtc->mutex));
638 
639 		if (!drm_mode_equal(&old_crtc_state->mode, &new_crtc_state->mode)) {
640 			drm_dbg_atomic(dev, "[CRTC:%d:%s] mode changed\n",
641 				       crtc->base.id, crtc->name);
642 			new_crtc_state->mode_changed = true;
643 		}
644 
645 		if (old_crtc_state->enable != new_crtc_state->enable) {
646 			drm_dbg_atomic(dev, "[CRTC:%d:%s] enable changed\n",
647 				       crtc->base.id, crtc->name);
648 
649 			/*
650 			 * For clarity this assignment is done here, but
651 			 * enable == 0 is only true when there are no
652 			 * connectors and a NULL mode.
653 			 *
654 			 * The other way around is true as well. enable != 0
655 			 * implies that connectors are attached and a mode is set.
656 			 */
657 			new_crtc_state->mode_changed = true;
658 			new_crtc_state->connectors_changed = true;
659 		}
660 
661 		if (old_crtc_state->active != new_crtc_state->active) {
662 			drm_dbg_atomic(dev, "[CRTC:%d:%s] active changed\n",
663 				       crtc->base.id, crtc->name);
664 			new_crtc_state->active_changed = true;
665 		}
666 
667 		if (new_crtc_state->enable != has_connectors) {
668 			drm_dbg_atomic(dev, "[CRTC:%d:%s] enabled/connectors mismatch\n",
669 				       crtc->base.id, crtc->name);
670 
671 			return -EINVAL;
672 		}
673 
674 		if (drm_dev_has_vblank(dev))
675 			new_crtc_state->no_vblank = false;
676 		else
677 			new_crtc_state->no_vblank = true;
678 	}
679 
680 	ret = handle_conflicting_encoders(state, false);
681 	if (ret)
682 		return ret;
683 
684 	for_each_oldnew_connector_in_state(state, connector, old_connector_state, new_connector_state, i) {
685 		const struct drm_connector_helper_funcs *funcs = connector->helper_private;
686 
687 		WARN_ON(!drm_modeset_is_locked(&dev->mode_config.connection_mutex));
688 
689 		/*
690 		 * This only sets crtc->connectors_changed for routing changes,
691 		 * drivers must set crtc->connectors_changed themselves when
692 		 * connector properties need to be updated.
693 		 */
694 		ret = update_connector_routing(state, connector,
695 					       old_connector_state,
696 					       new_connector_state,
697 					       BIT(i) & user_connectors_mask);
698 		if (ret)
699 			return ret;
700 		if (old_connector_state->crtc) {
701 			new_crtc_state = drm_atomic_get_new_crtc_state(state,
702 								       old_connector_state->crtc);
703 			if (old_connector_state->link_status !=
704 			    new_connector_state->link_status)
705 				new_crtc_state->connectors_changed = true;
706 
707 			if (old_connector_state->max_requested_bpc !=
708 			    new_connector_state->max_requested_bpc)
709 				new_crtc_state->connectors_changed = true;
710 		}
711 
712 		if (funcs->atomic_check)
713 			ret = funcs->atomic_check(connector, state);
714 		if (ret) {
715 			drm_dbg_atomic(dev,
716 				       "[CONNECTOR:%d:%s] driver check failed\n",
717 				       connector->base.id, connector->name);
718 			return ret;
719 		}
720 
721 		connectors_mask |= BIT(i);
722 	}
723 
724 	/*
725 	 * After all the routing has been prepared we need to add in any
726 	 * connector which is itself unchanged, but whose CRTC changes its
727 	 * configuration. This must be done before calling mode_fixup in case a
728 	 * crtc only changed its mode but has the same set of connectors.
729 	 */
730 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
731 		if (!drm_atomic_crtc_needs_modeset(new_crtc_state))
732 			continue;
733 
734 		drm_dbg_atomic(dev,
735 			       "[CRTC:%d:%s] needs all connectors, enable: %c, active: %c\n",
736 			       crtc->base.id, crtc->name,
737 			       new_crtc_state->enable ? 'y' : 'n',
738 			       new_crtc_state->active ? 'y' : 'n');
739 
740 		ret = drm_atomic_add_affected_connectors(state, crtc);
741 		if (ret != 0)
742 			return ret;
743 
744 		ret = drm_atomic_add_affected_planes(state, crtc);
745 		if (ret != 0)
746 			return ret;
747 	}
748 
749 	/*
750 	 * Iterate over all connectors again, to make sure atomic_check()
751 	 * has been called on them when a modeset is forced.
752 	 */
753 	for_each_oldnew_connector_in_state(state, connector, old_connector_state, new_connector_state, i) {
754 		const struct drm_connector_helper_funcs *funcs = connector->helper_private;
755 
756 		if (connectors_mask & BIT(i))
757 			continue;
758 
759 		if (funcs->atomic_check)
760 			ret = funcs->atomic_check(connector, state);
761 		if (ret) {
762 			drm_dbg_atomic(dev,
763 				       "[CONNECTOR:%d:%s] driver check failed\n",
764 				       connector->base.id, connector->name);
765 			return ret;
766 		}
767 	}
768 
769 	/*
770 	 * Iterate over all connectors again, and add all affected bridges to
771 	 * the state.
772 	 */
773 	for_each_oldnew_connector_in_state(state, connector,
774 					   old_connector_state,
775 					   new_connector_state, i) {
776 		struct drm_encoder *encoder;
777 
778 		encoder = old_connector_state->best_encoder;
779 		ret = drm_atomic_add_encoder_bridges(state, encoder);
780 		if (ret)
781 			return ret;
782 
783 		encoder = new_connector_state->best_encoder;
784 		ret = drm_atomic_add_encoder_bridges(state, encoder);
785 		if (ret)
786 			return ret;
787 	}
788 
789 	ret = mode_valid(state);
790 	if (ret)
791 		return ret;
792 
793 	return mode_fixup(state);
794 }
795 EXPORT_SYMBOL(drm_atomic_helper_check_modeset);
796 
797 /**
798  * drm_atomic_helper_check_wb_encoder_state() - Check writeback encoder state
799  * @encoder: encoder state to check
800  * @conn_state: connector state to check
801  *
802  * Checks if the writeback connector state is valid, and returns an error if it
803  * isn't.
804  *
805  * RETURNS:
806  * Zero for success or -errno
807  */
808 int
drm_atomic_helper_check_wb_encoder_state(struct drm_encoder * encoder,struct drm_connector_state * conn_state)809 drm_atomic_helper_check_wb_encoder_state(struct drm_encoder *encoder,
810 					 struct drm_connector_state *conn_state)
811 {
812 	struct drm_writeback_job *wb_job = conn_state->writeback_job;
813 #ifdef notyet
814 	struct drm_property_blob *pixel_format_blob;
815 	struct drm_framebuffer *fb;
816 	size_t i, nformats;
817 	u32 *formats;
818 #endif
819 
820 	if (!wb_job || !wb_job->fb)
821 		return 0;
822 
823 #ifdef notyet
824 	pixel_format_blob = wb_job->connector->pixel_formats_blob_ptr;
825 	nformats = pixel_format_blob->length / sizeof(u32);
826 	formats = pixel_format_blob->data;
827 	fb = wb_job->fb;
828 
829 	for (i = 0; i < nformats; i++)
830 		if (fb->format->format == formats[i])
831 			return 0;
832 
833 	drm_dbg_kms(encoder->dev, "Invalid pixel format %p4cc\n", &fb->format->format);
834 
835 	return -EINVAL;
836 #endif
837 	STUB();
838 	return -ENOSYS;
839 }
840 EXPORT_SYMBOL(drm_atomic_helper_check_wb_encoder_state);
841 
842 /**
843  * drm_atomic_helper_check_plane_state() - Check plane state for validity
844  * @plane_state: plane state to check
845  * @crtc_state: CRTC state to check
846  * @min_scale: minimum @src:@dest scaling factor in 16.16 fixed point
847  * @max_scale: maximum @src:@dest scaling factor in 16.16 fixed point
848  * @can_position: is it legal to position the plane such that it
849  *                doesn't cover the entire CRTC?  This will generally
850  *                only be false for primary planes.
851  * @can_update_disabled: can the plane be updated while the CRTC
852  *                       is disabled?
853  *
854  * Checks that a desired plane update is valid, and updates various
855  * bits of derived state (clipped coordinates etc.). Drivers that provide
856  * their own plane handling rather than helper-provided implementations may
857  * still wish to call this function to avoid duplication of error checking
858  * code.
859  *
860  * RETURNS:
861  * Zero if update appears valid, error code on failure
862  */
drm_atomic_helper_check_plane_state(struct drm_plane_state * plane_state,const struct drm_crtc_state * crtc_state,int min_scale,int max_scale,bool can_position,bool can_update_disabled)863 int drm_atomic_helper_check_plane_state(struct drm_plane_state *plane_state,
864 					const struct drm_crtc_state *crtc_state,
865 					int min_scale,
866 					int max_scale,
867 					bool can_position,
868 					bool can_update_disabled)
869 {
870 	struct drm_framebuffer *fb = plane_state->fb;
871 	struct drm_rect *src = &plane_state->src;
872 	struct drm_rect *dst = &plane_state->dst;
873 	unsigned int rotation = plane_state->rotation;
874 	struct drm_rect clip = {};
875 	int hscale, vscale;
876 
877 	WARN_ON(plane_state->crtc && plane_state->crtc != crtc_state->crtc);
878 
879 	*src = drm_plane_state_src(plane_state);
880 	*dst = drm_plane_state_dest(plane_state);
881 
882 	if (!fb) {
883 		plane_state->visible = false;
884 		return 0;
885 	}
886 
887 	/* crtc should only be NULL when disabling (i.e., !fb) */
888 	if (WARN_ON(!plane_state->crtc)) {
889 		plane_state->visible = false;
890 		return 0;
891 	}
892 
893 	if (!crtc_state->enable && !can_update_disabled) {
894 		drm_dbg_kms(plane_state->plane->dev,
895 			    "Cannot update plane of a disabled CRTC.\n");
896 		return -EINVAL;
897 	}
898 
899 	drm_rect_rotate(src, fb->width << 16, fb->height << 16, rotation);
900 
901 	/* Check scaling */
902 	hscale = drm_rect_calc_hscale(src, dst, min_scale, max_scale);
903 	vscale = drm_rect_calc_vscale(src, dst, min_scale, max_scale);
904 	if (hscale < 0 || vscale < 0) {
905 		drm_dbg_kms(plane_state->plane->dev,
906 			    "Invalid scaling of plane\n");
907 		drm_rect_debug_print("src: ", &plane_state->src, true);
908 		drm_rect_debug_print("dst: ", &plane_state->dst, false);
909 		return -ERANGE;
910 	}
911 
912 	if (crtc_state->enable)
913 		drm_mode_get_hv_timing(&crtc_state->mode, &clip.x2, &clip.y2);
914 
915 	plane_state->visible = drm_rect_clip_scaled(src, dst, &clip);
916 
917 	drm_rect_rotate_inv(src, fb->width << 16, fb->height << 16, rotation);
918 
919 	if (!plane_state->visible)
920 		/*
921 		 * Plane isn't visible; some drivers can handle this
922 		 * so we just return success here.  Drivers that can't
923 		 * (including those that use the primary plane helper's
924 		 * update function) will return an error from their
925 		 * update_plane handler.
926 		 */
927 		return 0;
928 
929 	if (!can_position && !drm_rect_equals(dst, &clip)) {
930 		drm_dbg_kms(plane_state->plane->dev,
931 			    "Plane must cover entire CRTC\n");
932 		drm_rect_debug_print("dst: ", dst, false);
933 		drm_rect_debug_print("clip: ", &clip, false);
934 		return -EINVAL;
935 	}
936 
937 	return 0;
938 }
939 EXPORT_SYMBOL(drm_atomic_helper_check_plane_state);
940 
941 /**
942  * drm_atomic_helper_check_crtc_primary_plane() - Check CRTC state for primary plane
943  * @crtc_state: CRTC state to check
944  *
945  * Checks that a CRTC has at least one primary plane attached to it, which is
946  * a requirement on some hardware. Note that this only involves the CRTC side
947  * of the test. To test if the primary plane is visible or if it can be updated
948  * without the CRTC being enabled, use drm_atomic_helper_check_plane_state() in
949  * the plane's atomic check.
950  *
951  * RETURNS:
952  * 0 if a primary plane is attached to the CRTC, or an error code otherwise
953  */
drm_atomic_helper_check_crtc_primary_plane(struct drm_crtc_state * crtc_state)954 int drm_atomic_helper_check_crtc_primary_plane(struct drm_crtc_state *crtc_state)
955 {
956 	struct drm_crtc *crtc = crtc_state->crtc;
957 	struct drm_device *dev = crtc->dev;
958 	struct drm_plane *plane;
959 
960 	/* needs at least one primary plane to be enabled */
961 	drm_for_each_plane_mask(plane, dev, crtc_state->plane_mask) {
962 		if (plane->type == DRM_PLANE_TYPE_PRIMARY)
963 			return 0;
964 	}
965 
966 	drm_dbg_atomic(dev, "[CRTC:%d:%s] primary plane missing\n", crtc->base.id, crtc->name);
967 
968 	return -EINVAL;
969 }
970 EXPORT_SYMBOL(drm_atomic_helper_check_crtc_primary_plane);
971 
972 /**
973  * drm_atomic_helper_check_planes - validate state object for planes changes
974  * @dev: DRM device
975  * @state: the driver state object
976  *
977  * Check the state object to see if the requested state is physically possible.
978  * This does all the plane update related checks using by calling into the
979  * &drm_crtc_helper_funcs.atomic_check and &drm_plane_helper_funcs.atomic_check
980  * hooks provided by the driver.
981  *
982  * It also sets &drm_crtc_state.planes_changed to indicate that a CRTC has
983  * updated planes.
984  *
985  * RETURNS:
986  * Zero for success or -errno
987  */
988 int
drm_atomic_helper_check_planes(struct drm_device * dev,struct drm_atomic_state * state)989 drm_atomic_helper_check_planes(struct drm_device *dev,
990 			       struct drm_atomic_state *state)
991 {
992 	struct drm_crtc *crtc;
993 	struct drm_crtc_state *new_crtc_state;
994 	struct drm_plane *plane;
995 	struct drm_plane_state *new_plane_state, *old_plane_state;
996 	int i, ret = 0;
997 
998 	for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i) {
999 		const struct drm_plane_helper_funcs *funcs;
1000 
1001 		WARN_ON(!drm_modeset_is_locked(&plane->mutex));
1002 
1003 		funcs = plane->helper_private;
1004 
1005 		drm_atomic_helper_plane_changed(state, old_plane_state, new_plane_state, plane);
1006 
1007 		drm_atomic_helper_check_plane_damage(state, new_plane_state);
1008 
1009 		if (!funcs || !funcs->atomic_check)
1010 			continue;
1011 
1012 		ret = funcs->atomic_check(plane, state);
1013 		if (ret) {
1014 			drm_dbg_atomic(plane->dev,
1015 				       "[PLANE:%d:%s] atomic driver check failed\n",
1016 				       plane->base.id, plane->name);
1017 			return ret;
1018 		}
1019 	}
1020 
1021 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
1022 		const struct drm_crtc_helper_funcs *funcs;
1023 
1024 		funcs = crtc->helper_private;
1025 
1026 		if (!funcs || !funcs->atomic_check)
1027 			continue;
1028 
1029 		ret = funcs->atomic_check(crtc, state);
1030 		if (ret) {
1031 			drm_dbg_atomic(crtc->dev,
1032 				       "[CRTC:%d:%s] atomic driver check failed\n",
1033 				       crtc->base.id, crtc->name);
1034 			return ret;
1035 		}
1036 	}
1037 
1038 	return ret;
1039 }
1040 EXPORT_SYMBOL(drm_atomic_helper_check_planes);
1041 
1042 /**
1043  * drm_atomic_helper_check - validate state object
1044  * @dev: DRM device
1045  * @state: the driver state object
1046  *
1047  * Check the state object to see if the requested state is physically possible.
1048  * Only CRTCs and planes have check callbacks, so for any additional (global)
1049  * checking that a driver needs it can simply wrap that around this function.
1050  * Drivers without such needs can directly use this as their
1051  * &drm_mode_config_funcs.atomic_check callback.
1052  *
1053  * This just wraps the two parts of the state checking for planes and modeset
1054  * state in the default order: First it calls drm_atomic_helper_check_modeset()
1055  * and then drm_atomic_helper_check_planes(). The assumption is that the
1056  * @drm_plane_helper_funcs.atomic_check and @drm_crtc_helper_funcs.atomic_check
1057  * functions depend upon an updated adjusted_mode.clock to e.g. properly compute
1058  * watermarks.
1059  *
1060  * Note that zpos normalization will add all enable planes to the state which
1061  * might not desired for some drivers.
1062  * For example enable/disable of a cursor plane which have fixed zpos value
1063  * would trigger all other enabled planes to be forced to the state change.
1064  *
1065  * RETURNS:
1066  * Zero for success or -errno
1067  */
drm_atomic_helper_check(struct drm_device * dev,struct drm_atomic_state * state)1068 int drm_atomic_helper_check(struct drm_device *dev,
1069 			    struct drm_atomic_state *state)
1070 {
1071 	int ret;
1072 
1073 	ret = drm_atomic_helper_check_modeset(dev, state);
1074 	if (ret)
1075 		return ret;
1076 
1077 	if (dev->mode_config.normalize_zpos) {
1078 		ret = drm_atomic_normalize_zpos(dev, state);
1079 		if (ret)
1080 			return ret;
1081 	}
1082 
1083 	ret = drm_atomic_helper_check_planes(dev, state);
1084 	if (ret)
1085 		return ret;
1086 
1087 	if (state->legacy_cursor_update)
1088 		state->async_update = !drm_atomic_helper_async_check(dev, state);
1089 
1090 	drm_self_refresh_helper_alter_state(state);
1091 
1092 	return ret;
1093 }
1094 EXPORT_SYMBOL(drm_atomic_helper_check);
1095 
1096 static bool
crtc_needs_disable(struct drm_crtc_state * old_state,struct drm_crtc_state * new_state)1097 crtc_needs_disable(struct drm_crtc_state *old_state,
1098 		   struct drm_crtc_state *new_state)
1099 {
1100 	/*
1101 	 * No new_state means the CRTC is off, so the only criteria is whether
1102 	 * it's currently active or in self refresh mode.
1103 	 */
1104 	if (!new_state)
1105 		return drm_atomic_crtc_effectively_active(old_state);
1106 
1107 	/*
1108 	 * We need to disable bridge(s) and CRTC if we're transitioning out of
1109 	 * self-refresh and changing CRTCs at the same time, because the
1110 	 * bridge tracks self-refresh status via CRTC state.
1111 	 */
1112 	if (old_state->self_refresh_active &&
1113 	    old_state->crtc != new_state->crtc)
1114 		return true;
1115 
1116 	/*
1117 	 * We also need to run through the crtc_funcs->disable() function if
1118 	 * the CRTC is currently on, if it's transitioning to self refresh
1119 	 * mode, or if it's in self refresh mode and needs to be fully
1120 	 * disabled.
1121 	 */
1122 	return old_state->active ||
1123 	       (old_state->self_refresh_active && !new_state->active) ||
1124 	       new_state->self_refresh_active;
1125 }
1126 
1127 static void
disable_outputs(struct drm_device * dev,struct drm_atomic_state * old_state)1128 disable_outputs(struct drm_device *dev, struct drm_atomic_state *old_state)
1129 {
1130 	struct drm_connector *connector;
1131 	struct drm_connector_state *old_conn_state, *new_conn_state;
1132 	struct drm_crtc *crtc;
1133 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
1134 	int i;
1135 
1136 	for_each_oldnew_connector_in_state(old_state, connector, old_conn_state, new_conn_state, i) {
1137 		const struct drm_encoder_helper_funcs *funcs;
1138 		struct drm_encoder *encoder;
1139 		struct drm_bridge *bridge;
1140 
1141 		/*
1142 		 * Shut down everything that's in the changeset and currently
1143 		 * still on. So need to check the old, saved state.
1144 		 */
1145 		if (!old_conn_state->crtc)
1146 			continue;
1147 
1148 		old_crtc_state = drm_atomic_get_old_crtc_state(old_state, old_conn_state->crtc);
1149 
1150 		if (new_conn_state->crtc)
1151 			new_crtc_state = drm_atomic_get_new_crtc_state(
1152 						old_state,
1153 						new_conn_state->crtc);
1154 		else
1155 			new_crtc_state = NULL;
1156 
1157 		if (!crtc_needs_disable(old_crtc_state, new_crtc_state) ||
1158 		    !drm_atomic_crtc_needs_modeset(old_conn_state->crtc->state))
1159 			continue;
1160 
1161 		encoder = old_conn_state->best_encoder;
1162 
1163 		/* We shouldn't get this far if we didn't previously have
1164 		 * an encoder.. but WARN_ON() rather than explode.
1165 		 */
1166 		if (WARN_ON(!encoder))
1167 			continue;
1168 
1169 		funcs = encoder->helper_private;
1170 
1171 		drm_dbg_atomic(dev, "disabling [ENCODER:%d:%s]\n",
1172 			       encoder->base.id, encoder->name);
1173 
1174 		/*
1175 		 * Each encoder has at most one connector (since we always steal
1176 		 * it away), so we won't call disable hooks twice.
1177 		 */
1178 		bridge = drm_bridge_chain_get_first_bridge(encoder);
1179 		drm_atomic_bridge_chain_disable(bridge, old_state);
1180 
1181 		/* Right function depends upon target state. */
1182 		if (funcs) {
1183 			if (funcs->atomic_disable)
1184 				funcs->atomic_disable(encoder, old_state);
1185 			else if (new_conn_state->crtc && funcs->prepare)
1186 				funcs->prepare(encoder);
1187 			else if (funcs->disable)
1188 				funcs->disable(encoder);
1189 			else if (funcs->dpms)
1190 				funcs->dpms(encoder, DRM_MODE_DPMS_OFF);
1191 		}
1192 
1193 		drm_atomic_bridge_chain_post_disable(bridge, old_state);
1194 	}
1195 
1196 	for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) {
1197 		const struct drm_crtc_helper_funcs *funcs;
1198 		int ret;
1199 
1200 		/* Shut down everything that needs a full modeset. */
1201 		if (!drm_atomic_crtc_needs_modeset(new_crtc_state))
1202 			continue;
1203 
1204 		if (!crtc_needs_disable(old_crtc_state, new_crtc_state))
1205 			continue;
1206 
1207 		funcs = crtc->helper_private;
1208 
1209 		drm_dbg_atomic(dev, "disabling [CRTC:%d:%s]\n",
1210 			       crtc->base.id, crtc->name);
1211 
1212 
1213 		/* Right function depends upon target state. */
1214 		if (new_crtc_state->enable && funcs->prepare)
1215 			funcs->prepare(crtc);
1216 		else if (funcs->atomic_disable)
1217 			funcs->atomic_disable(crtc, old_state);
1218 		else if (funcs->disable)
1219 			funcs->disable(crtc);
1220 		else if (funcs->dpms)
1221 			funcs->dpms(crtc, DRM_MODE_DPMS_OFF);
1222 
1223 		if (!drm_dev_has_vblank(dev))
1224 			continue;
1225 
1226 		ret = drm_crtc_vblank_get(crtc);
1227 		/*
1228 		 * Self-refresh is not a true "disable"; ensure vblank remains
1229 		 * enabled.
1230 		 */
1231 		if (new_crtc_state->self_refresh_active)
1232 			WARN_ONCE(ret != 0,
1233 				  "driver disabled vblank in self-refresh\n");
1234 		else
1235 			WARN_ONCE(ret != -EINVAL,
1236 				  "driver forgot to call drm_crtc_vblank_off()\n");
1237 		if (ret == 0)
1238 			drm_crtc_vblank_put(crtc);
1239 	}
1240 }
1241 
1242 /**
1243  * drm_atomic_helper_update_legacy_modeset_state - update legacy modeset state
1244  * @dev: DRM device
1245  * @old_state: atomic state object with old state structures
1246  *
1247  * This function updates all the various legacy modeset state pointers in
1248  * connectors, encoders and CRTCs.
1249  *
1250  * Drivers can use this for building their own atomic commit if they don't have
1251  * a pure helper-based modeset implementation.
1252  *
1253  * Since these updates are not synchronized with lockings, only code paths
1254  * called from &drm_mode_config_helper_funcs.atomic_commit_tail can look at the
1255  * legacy state filled out by this helper. Defacto this means this helper and
1256  * the legacy state pointers are only really useful for transitioning an
1257  * existing driver to the atomic world.
1258  */
1259 void
drm_atomic_helper_update_legacy_modeset_state(struct drm_device * dev,struct drm_atomic_state * old_state)1260 drm_atomic_helper_update_legacy_modeset_state(struct drm_device *dev,
1261 					      struct drm_atomic_state *old_state)
1262 {
1263 	struct drm_connector *connector;
1264 	struct drm_connector_state *old_conn_state, *new_conn_state;
1265 	struct drm_crtc *crtc;
1266 	struct drm_crtc_state *new_crtc_state;
1267 	int i;
1268 
1269 	/* clear out existing links and update dpms */
1270 	for_each_oldnew_connector_in_state(old_state, connector, old_conn_state, new_conn_state, i) {
1271 		if (connector->encoder) {
1272 			WARN_ON(!connector->encoder->crtc);
1273 
1274 			connector->encoder->crtc = NULL;
1275 			connector->encoder = NULL;
1276 		}
1277 
1278 		crtc = new_conn_state->crtc;
1279 		if ((!crtc && old_conn_state->crtc) ||
1280 		    (crtc && drm_atomic_crtc_needs_modeset(crtc->state))) {
1281 			int mode = DRM_MODE_DPMS_OFF;
1282 
1283 			if (crtc && crtc->state->active)
1284 				mode = DRM_MODE_DPMS_ON;
1285 
1286 			connector->dpms = mode;
1287 		}
1288 	}
1289 
1290 	/* set new links */
1291 	for_each_new_connector_in_state(old_state, connector, new_conn_state, i) {
1292 		if (!new_conn_state->crtc)
1293 			continue;
1294 
1295 		if (WARN_ON(!new_conn_state->best_encoder))
1296 			continue;
1297 
1298 		connector->encoder = new_conn_state->best_encoder;
1299 		connector->encoder->crtc = new_conn_state->crtc;
1300 	}
1301 
1302 	/* set legacy state in the crtc structure */
1303 	for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) {
1304 		struct drm_plane *primary = crtc->primary;
1305 		struct drm_plane_state *new_plane_state;
1306 
1307 		crtc->mode = new_crtc_state->mode;
1308 		crtc->enabled = new_crtc_state->enable;
1309 
1310 		new_plane_state =
1311 			drm_atomic_get_new_plane_state(old_state, primary);
1312 
1313 		if (new_plane_state && new_plane_state->crtc == crtc) {
1314 			crtc->x = new_plane_state->src_x >> 16;
1315 			crtc->y = new_plane_state->src_y >> 16;
1316 		}
1317 	}
1318 }
1319 EXPORT_SYMBOL(drm_atomic_helper_update_legacy_modeset_state);
1320 
1321 /**
1322  * drm_atomic_helper_calc_timestamping_constants - update vblank timestamping constants
1323  * @state: atomic state object
1324  *
1325  * Updates the timestamping constants used for precise vblank timestamps
1326  * by calling drm_calc_timestamping_constants() for all enabled crtcs in @state.
1327  */
drm_atomic_helper_calc_timestamping_constants(struct drm_atomic_state * state)1328 void drm_atomic_helper_calc_timestamping_constants(struct drm_atomic_state *state)
1329 {
1330 	struct drm_crtc_state *new_crtc_state;
1331 	struct drm_crtc *crtc;
1332 	int i;
1333 
1334 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) {
1335 		if (new_crtc_state->enable)
1336 			drm_calc_timestamping_constants(crtc,
1337 							&new_crtc_state->adjusted_mode);
1338 	}
1339 }
1340 EXPORT_SYMBOL(drm_atomic_helper_calc_timestamping_constants);
1341 
1342 static void
crtc_set_mode(struct drm_device * dev,struct drm_atomic_state * old_state)1343 crtc_set_mode(struct drm_device *dev, struct drm_atomic_state *old_state)
1344 {
1345 	struct drm_crtc *crtc;
1346 	struct drm_crtc_state *new_crtc_state;
1347 	struct drm_connector *connector;
1348 	struct drm_connector_state *new_conn_state;
1349 	int i;
1350 
1351 	for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) {
1352 		const struct drm_crtc_helper_funcs *funcs;
1353 
1354 		if (!new_crtc_state->mode_changed)
1355 			continue;
1356 
1357 		funcs = crtc->helper_private;
1358 
1359 		if (new_crtc_state->enable && funcs->mode_set_nofb) {
1360 			drm_dbg_atomic(dev, "modeset on [CRTC:%d:%s]\n",
1361 				       crtc->base.id, crtc->name);
1362 
1363 			funcs->mode_set_nofb(crtc);
1364 		}
1365 	}
1366 
1367 	for_each_new_connector_in_state(old_state, connector, new_conn_state, i) {
1368 		const struct drm_encoder_helper_funcs *funcs;
1369 		struct drm_encoder *encoder;
1370 		struct drm_display_mode *mode, *adjusted_mode;
1371 		struct drm_bridge *bridge;
1372 
1373 		if (!new_conn_state->best_encoder)
1374 			continue;
1375 
1376 		encoder = new_conn_state->best_encoder;
1377 		funcs = encoder->helper_private;
1378 		new_crtc_state = new_conn_state->crtc->state;
1379 		mode = &new_crtc_state->mode;
1380 		adjusted_mode = &new_crtc_state->adjusted_mode;
1381 
1382 		if (!new_crtc_state->mode_changed)
1383 			continue;
1384 
1385 		drm_dbg_atomic(dev, "modeset on [ENCODER:%d:%s]\n",
1386 			       encoder->base.id, encoder->name);
1387 
1388 		/*
1389 		 * Each encoder has at most one connector (since we always steal
1390 		 * it away), so we won't call mode_set hooks twice.
1391 		 */
1392 		if (funcs && funcs->atomic_mode_set) {
1393 			funcs->atomic_mode_set(encoder, new_crtc_state,
1394 					       new_conn_state);
1395 		} else if (funcs && funcs->mode_set) {
1396 			funcs->mode_set(encoder, mode, adjusted_mode);
1397 		}
1398 
1399 		bridge = drm_bridge_chain_get_first_bridge(encoder);
1400 		drm_bridge_chain_mode_set(bridge, mode, adjusted_mode);
1401 	}
1402 }
1403 
1404 /**
1405  * drm_atomic_helper_commit_modeset_disables - modeset commit to disable outputs
1406  * @dev: DRM device
1407  * @old_state: atomic state object with old state structures
1408  *
1409  * This function shuts down all the outputs that need to be shut down and
1410  * prepares them (if required) with the new mode.
1411  *
1412  * For compatibility with legacy CRTC helpers this should be called before
1413  * drm_atomic_helper_commit_planes(), which is what the default commit function
1414  * does. But drivers with different needs can group the modeset commits together
1415  * and do the plane commits at the end. This is useful for drivers doing runtime
1416  * PM since planes updates then only happen when the CRTC is actually enabled.
1417  */
drm_atomic_helper_commit_modeset_disables(struct drm_device * dev,struct drm_atomic_state * old_state)1418 void drm_atomic_helper_commit_modeset_disables(struct drm_device *dev,
1419 					       struct drm_atomic_state *old_state)
1420 {
1421 	disable_outputs(dev, old_state);
1422 
1423 	drm_atomic_helper_update_legacy_modeset_state(dev, old_state);
1424 	drm_atomic_helper_calc_timestamping_constants(old_state);
1425 
1426 	crtc_set_mode(dev, old_state);
1427 }
1428 EXPORT_SYMBOL(drm_atomic_helper_commit_modeset_disables);
1429 
drm_atomic_helper_commit_writebacks(struct drm_device * dev,struct drm_atomic_state * old_state)1430 static void drm_atomic_helper_commit_writebacks(struct drm_device *dev,
1431 						struct drm_atomic_state *old_state)
1432 {
1433 	struct drm_connector *connector;
1434 	struct drm_connector_state *new_conn_state;
1435 	int i;
1436 
1437 	for_each_new_connector_in_state(old_state, connector, new_conn_state, i) {
1438 		const struct drm_connector_helper_funcs *funcs;
1439 
1440 		funcs = connector->helper_private;
1441 		if (!funcs->atomic_commit)
1442 			continue;
1443 
1444 		if (new_conn_state->writeback_job && new_conn_state->writeback_job->fb) {
1445 			WARN_ON(connector->connector_type != DRM_MODE_CONNECTOR_WRITEBACK);
1446 			funcs->atomic_commit(connector, old_state);
1447 		}
1448 	}
1449 }
1450 
1451 /**
1452  * drm_atomic_helper_commit_modeset_enables - modeset commit to enable outputs
1453  * @dev: DRM device
1454  * @old_state: atomic state object with old state structures
1455  *
1456  * This function enables all the outputs with the new configuration which had to
1457  * be turned off for the update.
1458  *
1459  * For compatibility with legacy CRTC helpers this should be called after
1460  * drm_atomic_helper_commit_planes(), which is what the default commit function
1461  * does. But drivers with different needs can group the modeset commits together
1462  * and do the plane commits at the end. This is useful for drivers doing runtime
1463  * PM since planes updates then only happen when the CRTC is actually enabled.
1464  */
drm_atomic_helper_commit_modeset_enables(struct drm_device * dev,struct drm_atomic_state * old_state)1465 void drm_atomic_helper_commit_modeset_enables(struct drm_device *dev,
1466 					      struct drm_atomic_state *old_state)
1467 {
1468 	struct drm_crtc *crtc;
1469 	struct drm_crtc_state *old_crtc_state;
1470 	struct drm_crtc_state *new_crtc_state;
1471 	struct drm_connector *connector;
1472 	struct drm_connector_state *new_conn_state;
1473 	int i;
1474 
1475 	for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) {
1476 		const struct drm_crtc_helper_funcs *funcs;
1477 
1478 		/* Need to filter out CRTCs where only planes change. */
1479 		if (!drm_atomic_crtc_needs_modeset(new_crtc_state))
1480 			continue;
1481 
1482 		if (!new_crtc_state->active)
1483 			continue;
1484 
1485 		funcs = crtc->helper_private;
1486 
1487 		if (new_crtc_state->enable) {
1488 			drm_dbg_atomic(dev, "enabling [CRTC:%d:%s]\n",
1489 				       crtc->base.id, crtc->name);
1490 			if (funcs->atomic_enable)
1491 				funcs->atomic_enable(crtc, old_state);
1492 			else if (funcs->commit)
1493 				funcs->commit(crtc);
1494 		}
1495 	}
1496 
1497 	for_each_new_connector_in_state(old_state, connector, new_conn_state, i) {
1498 		const struct drm_encoder_helper_funcs *funcs;
1499 		struct drm_encoder *encoder;
1500 		struct drm_bridge *bridge;
1501 
1502 		if (!new_conn_state->best_encoder)
1503 			continue;
1504 
1505 		if (!new_conn_state->crtc->state->active ||
1506 		    !drm_atomic_crtc_needs_modeset(new_conn_state->crtc->state))
1507 			continue;
1508 
1509 		encoder = new_conn_state->best_encoder;
1510 		funcs = encoder->helper_private;
1511 
1512 		drm_dbg_atomic(dev, "enabling [ENCODER:%d:%s]\n",
1513 			       encoder->base.id, encoder->name);
1514 
1515 		/*
1516 		 * Each encoder has at most one connector (since we always steal
1517 		 * it away), so we won't call enable hooks twice.
1518 		 */
1519 		bridge = drm_bridge_chain_get_first_bridge(encoder);
1520 		drm_atomic_bridge_chain_pre_enable(bridge, old_state);
1521 
1522 		if (funcs) {
1523 			if (funcs->atomic_enable)
1524 				funcs->atomic_enable(encoder, old_state);
1525 			else if (funcs->enable)
1526 				funcs->enable(encoder);
1527 			else if (funcs->commit)
1528 				funcs->commit(encoder);
1529 		}
1530 
1531 		drm_atomic_bridge_chain_enable(bridge, old_state);
1532 	}
1533 
1534 	drm_atomic_helper_commit_writebacks(dev, old_state);
1535 }
1536 EXPORT_SYMBOL(drm_atomic_helper_commit_modeset_enables);
1537 
1538 /*
1539  * For atomic updates which touch just a single CRTC, calculate the time of the
1540  * next vblank, and inform all the fences of the deadline.
1541  */
set_fence_deadline(struct drm_device * dev,struct drm_atomic_state * state)1542 static void set_fence_deadline(struct drm_device *dev,
1543 			       struct drm_atomic_state *state)
1544 {
1545 	struct drm_crtc *crtc;
1546 	struct drm_crtc_state *new_crtc_state;
1547 	struct drm_plane *plane;
1548 	struct drm_plane_state *new_plane_state;
1549 	ktime_t vbltime = 0;
1550 	int i;
1551 
1552 	for_each_new_crtc_in_state (state, crtc, new_crtc_state, i) {
1553 		ktime_t v;
1554 
1555 		if (drm_atomic_crtc_needs_modeset(new_crtc_state))
1556 			continue;
1557 
1558 		if (!new_crtc_state->active)
1559 			continue;
1560 
1561 		if (drm_crtc_next_vblank_start(crtc, &v))
1562 			continue;
1563 
1564 		if (!vbltime || ktime_before(v, vbltime))
1565 			vbltime = v;
1566 	}
1567 
1568 	/* If no CRTCs updated, then nothing to do: */
1569 	if (!vbltime)
1570 		return;
1571 
1572 	for_each_new_plane_in_state (state, plane, new_plane_state, i) {
1573 		if (!new_plane_state->fence)
1574 			continue;
1575 		dma_fence_set_deadline(new_plane_state->fence, vbltime);
1576 	}
1577 }
1578 
1579 /**
1580  * drm_atomic_helper_wait_for_fences - wait for fences stashed in plane state
1581  * @dev: DRM device
1582  * @state: atomic state object with old state structures
1583  * @pre_swap: If true, do an interruptible wait, and @state is the new state.
1584  *	Otherwise @state is the old state.
1585  *
1586  * For implicit sync, driver should fish the exclusive fence out from the
1587  * incoming fb's and stash it in the drm_plane_state.  This is called after
1588  * drm_atomic_helper_swap_state() so it uses the current plane state (and
1589  * just uses the atomic state to find the changed planes)
1590  *
1591  * Note that @pre_swap is needed since the point where we block for fences moves
1592  * around depending upon whether an atomic commit is blocking or
1593  * non-blocking. For non-blocking commit all waiting needs to happen after
1594  * drm_atomic_helper_swap_state() is called, but for blocking commits we want
1595  * to wait **before** we do anything that can't be easily rolled back. That is
1596  * before we call drm_atomic_helper_swap_state().
1597  *
1598  * Returns zero if success or < 0 if dma_fence_wait() fails.
1599  */
drm_atomic_helper_wait_for_fences(struct drm_device * dev,struct drm_atomic_state * state,bool pre_swap)1600 int drm_atomic_helper_wait_for_fences(struct drm_device *dev,
1601 				      struct drm_atomic_state *state,
1602 				      bool pre_swap)
1603 {
1604 	struct drm_plane *plane;
1605 	struct drm_plane_state *new_plane_state;
1606 	int i, ret;
1607 
1608 	set_fence_deadline(dev, state);
1609 
1610 	for_each_new_plane_in_state(state, plane, new_plane_state, i) {
1611 		if (!new_plane_state->fence)
1612 			continue;
1613 
1614 		WARN_ON(!new_plane_state->fb);
1615 
1616 		/*
1617 		 * If waiting for fences pre-swap (ie: nonblock), userspace can
1618 		 * still interrupt the operation. Instead of blocking until the
1619 		 * timer expires, make the wait interruptible.
1620 		 */
1621 		ret = dma_fence_wait(new_plane_state->fence, pre_swap);
1622 		if (ret)
1623 			return ret;
1624 
1625 		dma_fence_put(new_plane_state->fence);
1626 		new_plane_state->fence = NULL;
1627 	}
1628 
1629 	return 0;
1630 }
1631 EXPORT_SYMBOL(drm_atomic_helper_wait_for_fences);
1632 
1633 /**
1634  * drm_atomic_helper_wait_for_vblanks - wait for vblank on CRTCs
1635  * @dev: DRM device
1636  * @old_state: atomic state object with old state structures
1637  *
1638  * Helper to, after atomic commit, wait for vblanks on all affected
1639  * CRTCs (ie. before cleaning up old framebuffers using
1640  * drm_atomic_helper_cleanup_planes()). It will only wait on CRTCs where the
1641  * framebuffers have actually changed to optimize for the legacy cursor and
1642  * plane update use-case.
1643  *
1644  * Drivers using the nonblocking commit tracking support initialized by calling
1645  * drm_atomic_helper_setup_commit() should look at
1646  * drm_atomic_helper_wait_for_flip_done() as an alternative.
1647  */
1648 void
drm_atomic_helper_wait_for_vblanks(struct drm_device * dev,struct drm_atomic_state * old_state)1649 drm_atomic_helper_wait_for_vblanks(struct drm_device *dev,
1650 		struct drm_atomic_state *old_state)
1651 {
1652 	struct drm_crtc *crtc;
1653 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
1654 	int i, ret;
1655 	unsigned int crtc_mask = 0;
1656 
1657 	 /*
1658 	  * Legacy cursor ioctls are completely unsynced, and userspace
1659 	  * relies on that (by doing tons of cursor updates).
1660 	  */
1661 	if (old_state->legacy_cursor_update)
1662 		return;
1663 
1664 	for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) {
1665 		if (!new_crtc_state->active)
1666 			continue;
1667 
1668 		ret = drm_crtc_vblank_get(crtc);
1669 		if (ret != 0)
1670 			continue;
1671 
1672 		crtc_mask |= drm_crtc_mask(crtc);
1673 		old_state->crtcs[i].last_vblank_count = drm_crtc_vblank_count(crtc);
1674 	}
1675 
1676 	for_each_old_crtc_in_state(old_state, crtc, old_crtc_state, i) {
1677 		if (!(crtc_mask & drm_crtc_mask(crtc)))
1678 			continue;
1679 
1680 		ret = wait_event_timeout(dev->vblank[i].queue,
1681 				old_state->crtcs[i].last_vblank_count !=
1682 					drm_crtc_vblank_count(crtc),
1683 				msecs_to_jiffies(100));
1684 
1685 		WARN(!ret, "[CRTC:%d:%s] vblank wait timed out\n",
1686 		     crtc->base.id, crtc->name);
1687 
1688 		drm_crtc_vblank_put(crtc);
1689 	}
1690 }
1691 EXPORT_SYMBOL(drm_atomic_helper_wait_for_vblanks);
1692 
1693 /**
1694  * drm_atomic_helper_wait_for_flip_done - wait for all page flips to be done
1695  * @dev: DRM device
1696  * @old_state: atomic state object with old state structures
1697  *
1698  * Helper to, after atomic commit, wait for page flips on all affected
1699  * crtcs (ie. before cleaning up old framebuffers using
1700  * drm_atomic_helper_cleanup_planes()). Compared to
1701  * drm_atomic_helper_wait_for_vblanks() this waits for the completion on all
1702  * CRTCs, assuming that cursors-only updates are signalling their completion
1703  * immediately (or using a different path).
1704  *
1705  * This requires that drivers use the nonblocking commit tracking support
1706  * initialized using drm_atomic_helper_setup_commit().
1707  */
drm_atomic_helper_wait_for_flip_done(struct drm_device * dev,struct drm_atomic_state * old_state)1708 void drm_atomic_helper_wait_for_flip_done(struct drm_device *dev,
1709 					  struct drm_atomic_state *old_state)
1710 {
1711 	struct drm_crtc *crtc;
1712 	int i;
1713 
1714 	for (i = 0; i < dev->mode_config.num_crtc; i++) {
1715 		struct drm_crtc_commit *commit = old_state->crtcs[i].commit;
1716 		int ret;
1717 
1718 		crtc = old_state->crtcs[i].ptr;
1719 
1720 		if (!crtc || !commit)
1721 			continue;
1722 
1723 		ret = wait_for_completion_timeout(&commit->flip_done, 10 * HZ);
1724 		if (ret == 0)
1725 			drm_err(dev, "[CRTC:%d:%s] flip_done timed out\n",
1726 				crtc->base.id, crtc->name);
1727 	}
1728 
1729 	if (old_state->fake_commit)
1730 		complete_all(&old_state->fake_commit->flip_done);
1731 }
1732 EXPORT_SYMBOL(drm_atomic_helper_wait_for_flip_done);
1733 
1734 /**
1735  * drm_atomic_helper_commit_tail - commit atomic update to hardware
1736  * @old_state: atomic state object with old state structures
1737  *
1738  * This is the default implementation for the
1739  * &drm_mode_config_helper_funcs.atomic_commit_tail hook, for drivers
1740  * that do not support runtime_pm or do not need the CRTC to be
1741  * enabled to perform a commit. Otherwise, see
1742  * drm_atomic_helper_commit_tail_rpm().
1743  *
1744  * Note that the default ordering of how the various stages are called is to
1745  * match the legacy modeset helper library closest.
1746  */
drm_atomic_helper_commit_tail(struct drm_atomic_state * old_state)1747 void drm_atomic_helper_commit_tail(struct drm_atomic_state *old_state)
1748 {
1749 	struct drm_device *dev = old_state->dev;
1750 
1751 	drm_atomic_helper_commit_modeset_disables(dev, old_state);
1752 
1753 	drm_atomic_helper_commit_planes(dev, old_state, 0);
1754 
1755 	drm_atomic_helper_commit_modeset_enables(dev, old_state);
1756 
1757 	drm_atomic_helper_fake_vblank(old_state);
1758 
1759 	drm_atomic_helper_commit_hw_done(old_state);
1760 
1761 	drm_atomic_helper_wait_for_vblanks(dev, old_state);
1762 
1763 	drm_atomic_helper_cleanup_planes(dev, old_state);
1764 }
1765 EXPORT_SYMBOL(drm_atomic_helper_commit_tail);
1766 
1767 /**
1768  * drm_atomic_helper_commit_tail_rpm - commit atomic update to hardware
1769  * @old_state: new modeset state to be committed
1770  *
1771  * This is an alternative implementation for the
1772  * &drm_mode_config_helper_funcs.atomic_commit_tail hook, for drivers
1773  * that support runtime_pm or need the CRTC to be enabled to perform a
1774  * commit. Otherwise, one should use the default implementation
1775  * drm_atomic_helper_commit_tail().
1776  */
drm_atomic_helper_commit_tail_rpm(struct drm_atomic_state * old_state)1777 void drm_atomic_helper_commit_tail_rpm(struct drm_atomic_state *old_state)
1778 {
1779 	struct drm_device *dev = old_state->dev;
1780 
1781 	drm_atomic_helper_commit_modeset_disables(dev, old_state);
1782 
1783 	drm_atomic_helper_commit_modeset_enables(dev, old_state);
1784 
1785 	drm_atomic_helper_commit_planes(dev, old_state,
1786 					DRM_PLANE_COMMIT_ACTIVE_ONLY);
1787 
1788 	drm_atomic_helper_fake_vblank(old_state);
1789 
1790 	drm_atomic_helper_commit_hw_done(old_state);
1791 
1792 	drm_atomic_helper_wait_for_vblanks(dev, old_state);
1793 
1794 	drm_atomic_helper_cleanup_planes(dev, old_state);
1795 }
1796 EXPORT_SYMBOL(drm_atomic_helper_commit_tail_rpm);
1797 
commit_tail(struct drm_atomic_state * old_state)1798 static void commit_tail(struct drm_atomic_state *old_state)
1799 {
1800 	struct drm_device *dev = old_state->dev;
1801 	const struct drm_mode_config_helper_funcs *funcs;
1802 	struct drm_crtc_state *new_crtc_state;
1803 	struct drm_crtc *crtc;
1804 	ktime_t start;
1805 	s64 commit_time_ms;
1806 	unsigned int i, new_self_refresh_mask = 0;
1807 
1808 	funcs = dev->mode_config.helper_private;
1809 
1810 	/*
1811 	 * We're measuring the _entire_ commit, so the time will vary depending
1812 	 * on how many fences and objects are involved. For the purposes of self
1813 	 * refresh, this is desirable since it'll give us an idea of how
1814 	 * congested things are. This will inform our decision on how often we
1815 	 * should enter self refresh after idle.
1816 	 *
1817 	 * These times will be averaged out in the self refresh helpers to avoid
1818 	 * overreacting over one outlier frame
1819 	 */
1820 	start = ktime_get();
1821 
1822 	drm_atomic_helper_wait_for_fences(dev, old_state, false);
1823 
1824 	drm_atomic_helper_wait_for_dependencies(old_state);
1825 
1826 	/*
1827 	 * We cannot safely access new_crtc_state after
1828 	 * drm_atomic_helper_commit_hw_done() so figure out which crtc's have
1829 	 * self-refresh active beforehand:
1830 	 */
1831 	for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i)
1832 		if (new_crtc_state->self_refresh_active)
1833 			new_self_refresh_mask |= BIT(i);
1834 
1835 	if (funcs && funcs->atomic_commit_tail)
1836 		funcs->atomic_commit_tail(old_state);
1837 	else
1838 		drm_atomic_helper_commit_tail(old_state);
1839 
1840 	commit_time_ms = ktime_ms_delta(ktime_get(), start);
1841 	if (commit_time_ms > 0)
1842 		drm_self_refresh_helper_update_avg_times(old_state,
1843 						 (unsigned long)commit_time_ms,
1844 						 new_self_refresh_mask);
1845 
1846 	drm_atomic_helper_commit_cleanup_done(old_state);
1847 
1848 	drm_atomic_state_put(old_state);
1849 }
1850 
commit_work(struct work_struct * work)1851 static void commit_work(struct work_struct *work)
1852 {
1853 	struct drm_atomic_state *state = container_of(work,
1854 						      struct drm_atomic_state,
1855 						      commit_work);
1856 	commit_tail(state);
1857 }
1858 
1859 /**
1860  * drm_atomic_helper_async_check - check if state can be committed asynchronously
1861  * @dev: DRM device
1862  * @state: the driver state object
1863  *
1864  * This helper will check if it is possible to commit the state asynchronously.
1865  * Async commits are not supposed to swap the states like normal sync commits
1866  * but just do in-place changes on the current state.
1867  *
1868  * It will return 0 if the commit can happen in an asynchronous fashion or error
1869  * if not. Note that error just mean it can't be committed asynchronously, if it
1870  * fails the commit should be treated like a normal synchronous commit.
1871  */
drm_atomic_helper_async_check(struct drm_device * dev,struct drm_atomic_state * state)1872 int drm_atomic_helper_async_check(struct drm_device *dev,
1873 				   struct drm_atomic_state *state)
1874 {
1875 	struct drm_crtc *crtc;
1876 	struct drm_crtc_state *crtc_state;
1877 	struct drm_plane *plane = NULL;
1878 	struct drm_plane_state *old_plane_state = NULL;
1879 	struct drm_plane_state *new_plane_state = NULL;
1880 	const struct drm_plane_helper_funcs *funcs;
1881 	int i, ret, n_planes = 0;
1882 
1883 	for_each_new_crtc_in_state(state, crtc, crtc_state, i) {
1884 		if (drm_atomic_crtc_needs_modeset(crtc_state))
1885 			return -EINVAL;
1886 	}
1887 
1888 	for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i)
1889 		n_planes++;
1890 
1891 	/* FIXME: we support only single plane updates for now */
1892 	if (n_planes != 1) {
1893 		drm_dbg_atomic(dev,
1894 			       "only single plane async updates are supported\n");
1895 		return -EINVAL;
1896 	}
1897 
1898 	if (!new_plane_state->crtc ||
1899 	    old_plane_state->crtc != new_plane_state->crtc) {
1900 		drm_dbg_atomic(dev,
1901 			       "[PLANE:%d:%s] async update cannot change CRTC\n",
1902 			       plane->base.id, plane->name);
1903 		return -EINVAL;
1904 	}
1905 
1906 	funcs = plane->helper_private;
1907 	if (!funcs->atomic_async_update) {
1908 		drm_dbg_atomic(dev,
1909 			       "[PLANE:%d:%s] driver does not support async updates\n",
1910 			       plane->base.id, plane->name);
1911 		return -EINVAL;
1912 	}
1913 
1914 	if (new_plane_state->fence) {
1915 		drm_dbg_atomic(dev,
1916 			       "[PLANE:%d:%s] missing fence for async update\n",
1917 			       plane->base.id, plane->name);
1918 		return -EINVAL;
1919 	}
1920 
1921 	/*
1922 	 * Don't do an async update if there is an outstanding commit modifying
1923 	 * the plane.  This prevents our async update's changes from getting
1924 	 * overridden by a previous synchronous update's state.
1925 	 */
1926 	if (old_plane_state->commit &&
1927 	    !try_wait_for_completion(&old_plane_state->commit->hw_done)) {
1928 		drm_dbg_atomic(dev,
1929 			       "[PLANE:%d:%s] inflight previous commit preventing async commit\n",
1930 			       plane->base.id, plane->name);
1931 		return -EBUSY;
1932 	}
1933 
1934 	ret = funcs->atomic_async_check(plane, state);
1935 	if (ret != 0)
1936 		drm_dbg_atomic(dev,
1937 			       "[PLANE:%d:%s] driver async check failed\n",
1938 			       plane->base.id, plane->name);
1939 	return ret;
1940 }
1941 EXPORT_SYMBOL(drm_atomic_helper_async_check);
1942 
1943 /**
1944  * drm_atomic_helper_async_commit - commit state asynchronously
1945  * @dev: DRM device
1946  * @state: the driver state object
1947  *
1948  * This function commits a state asynchronously, i.e., not vblank
1949  * synchronized. It should be used on a state only when
1950  * drm_atomic_async_check() succeeds. Async commits are not supposed to swap
1951  * the states like normal sync commits, but just do in-place changes on the
1952  * current state.
1953  *
1954  * TODO: Implement full swap instead of doing in-place changes.
1955  */
drm_atomic_helper_async_commit(struct drm_device * dev,struct drm_atomic_state * state)1956 void drm_atomic_helper_async_commit(struct drm_device *dev,
1957 				    struct drm_atomic_state *state)
1958 {
1959 	struct drm_plane *plane;
1960 	struct drm_plane_state *plane_state;
1961 	const struct drm_plane_helper_funcs *funcs;
1962 	int i;
1963 
1964 	for_each_new_plane_in_state(state, plane, plane_state, i) {
1965 		struct drm_framebuffer *new_fb = plane_state->fb;
1966 		struct drm_framebuffer *old_fb = plane->state->fb;
1967 
1968 		funcs = plane->helper_private;
1969 		funcs->atomic_async_update(plane, state);
1970 
1971 		/*
1972 		 * ->atomic_async_update() is supposed to update the
1973 		 * plane->state in-place, make sure at least common
1974 		 * properties have been properly updated.
1975 		 */
1976 		WARN_ON_ONCE(plane->state->fb != new_fb);
1977 		WARN_ON_ONCE(plane->state->crtc_x != plane_state->crtc_x);
1978 		WARN_ON_ONCE(plane->state->crtc_y != plane_state->crtc_y);
1979 		WARN_ON_ONCE(plane->state->src_x != plane_state->src_x);
1980 		WARN_ON_ONCE(plane->state->src_y != plane_state->src_y);
1981 
1982 		/*
1983 		 * Make sure the FBs have been swapped so that cleanups in the
1984 		 * new_state performs a cleanup in the old FB.
1985 		 */
1986 		WARN_ON_ONCE(plane_state->fb != old_fb);
1987 	}
1988 }
1989 EXPORT_SYMBOL(drm_atomic_helper_async_commit);
1990 
1991 /**
1992  * drm_atomic_helper_commit - commit validated state object
1993  * @dev: DRM device
1994  * @state: the driver state object
1995  * @nonblock: whether nonblocking behavior is requested.
1996  *
1997  * This function commits a with drm_atomic_helper_check() pre-validated state
1998  * object. This can still fail when e.g. the framebuffer reservation fails. This
1999  * function implements nonblocking commits, using
2000  * drm_atomic_helper_setup_commit() and related functions.
2001  *
2002  * Committing the actual hardware state is done through the
2003  * &drm_mode_config_helper_funcs.atomic_commit_tail callback, or its default
2004  * implementation drm_atomic_helper_commit_tail().
2005  *
2006  * RETURNS:
2007  * Zero for success or -errno.
2008  */
drm_atomic_helper_commit(struct drm_device * dev,struct drm_atomic_state * state,bool nonblock)2009 int drm_atomic_helper_commit(struct drm_device *dev,
2010 			     struct drm_atomic_state *state,
2011 			     bool nonblock)
2012 {
2013 	int ret;
2014 
2015 	if (state->async_update) {
2016 		ret = drm_atomic_helper_prepare_planes(dev, state);
2017 		if (ret)
2018 			return ret;
2019 
2020 		drm_atomic_helper_async_commit(dev, state);
2021 		drm_atomic_helper_unprepare_planes(dev, state);
2022 
2023 		return 0;
2024 	}
2025 
2026 	ret = drm_atomic_helper_setup_commit(state, nonblock);
2027 	if (ret)
2028 		return ret;
2029 
2030 	INIT_WORK(&state->commit_work, commit_work);
2031 
2032 	ret = drm_atomic_helper_prepare_planes(dev, state);
2033 	if (ret)
2034 		return ret;
2035 
2036 	if (!nonblock) {
2037 		ret = drm_atomic_helper_wait_for_fences(dev, state, true);
2038 		if (ret)
2039 			goto err;
2040 	}
2041 
2042 	/*
2043 	 * This is the point of no return - everything below never fails except
2044 	 * when the hw goes bonghits. Which means we can commit the new state on
2045 	 * the software side now.
2046 	 */
2047 
2048 	ret = drm_atomic_helper_swap_state(state, true);
2049 	if (ret)
2050 		goto err;
2051 
2052 	/*
2053 	 * Everything below can be run asynchronously without the need to grab
2054 	 * any modeset locks at all under one condition: It must be guaranteed
2055 	 * that the asynchronous work has either been cancelled (if the driver
2056 	 * supports it, which at least requires that the framebuffers get
2057 	 * cleaned up with drm_atomic_helper_cleanup_planes()) or completed
2058 	 * before the new state gets committed on the software side with
2059 	 * drm_atomic_helper_swap_state().
2060 	 *
2061 	 * This scheme allows new atomic state updates to be prepared and
2062 	 * checked in parallel to the asynchronous completion of the previous
2063 	 * update. Which is important since compositors need to figure out the
2064 	 * composition of the next frame right after having submitted the
2065 	 * current layout.
2066 	 *
2067 	 * NOTE: Commit work has multiple phases, first hardware commit, then
2068 	 * cleanup. We want them to overlap, hence need system_unbound_wq to
2069 	 * make sure work items don't artificially stall on each another.
2070 	 */
2071 
2072 	drm_atomic_state_get(state);
2073 	if (nonblock)
2074 		queue_work(system_unbound_wq, &state->commit_work);
2075 	else
2076 		commit_tail(state);
2077 
2078 	return 0;
2079 
2080 err:
2081 	drm_atomic_helper_unprepare_planes(dev, state);
2082 	return ret;
2083 }
2084 EXPORT_SYMBOL(drm_atomic_helper_commit);
2085 
2086 /**
2087  * DOC: implementing nonblocking commit
2088  *
2089  * Nonblocking atomic commits should use struct &drm_crtc_commit to sequence
2090  * different operations against each another. Locks, especially struct
2091  * &drm_modeset_lock, should not be held in worker threads or any other
2092  * asynchronous context used to commit the hardware state.
2093  *
2094  * drm_atomic_helper_commit() implements the recommended sequence for
2095  * nonblocking commits, using drm_atomic_helper_setup_commit() internally:
2096  *
2097  * 1. Run drm_atomic_helper_prepare_planes(). Since this can fail and we
2098  * need to propagate out of memory/VRAM errors to userspace, it must be called
2099  * synchronously.
2100  *
2101  * 2. Synchronize with any outstanding nonblocking commit worker threads which
2102  * might be affected by the new state update. This is handled by
2103  * drm_atomic_helper_setup_commit().
2104  *
2105  * Asynchronous workers need to have sufficient parallelism to be able to run
2106  * different atomic commits on different CRTCs in parallel. The simplest way to
2107  * achieve this is by running them on the &system_unbound_wq work queue. Note
2108  * that drivers are not required to split up atomic commits and run an
2109  * individual commit in parallel - userspace is supposed to do that if it cares.
2110  * But it might be beneficial to do that for modesets, since those necessarily
2111  * must be done as one global operation, and enabling or disabling a CRTC can
2112  * take a long time. But even that is not required.
2113  *
2114  * IMPORTANT: A &drm_atomic_state update for multiple CRTCs is sequenced
2115  * against all CRTCs therein. Therefore for atomic state updates which only flip
2116  * planes the driver must not get the struct &drm_crtc_state of unrelated CRTCs
2117  * in its atomic check code: This would prevent committing of atomic updates to
2118  * multiple CRTCs in parallel. In general, adding additional state structures
2119  * should be avoided as much as possible, because this reduces parallelism in
2120  * (nonblocking) commits, both due to locking and due to commit sequencing
2121  * requirements.
2122  *
2123  * 3. The software state is updated synchronously with
2124  * drm_atomic_helper_swap_state(). Doing this under the protection of all modeset
2125  * locks means concurrent callers never see inconsistent state. Note that commit
2126  * workers do not hold any locks; their access is only coordinated through
2127  * ordering. If workers would access state only through the pointers in the
2128  * free-standing state objects (currently not the case for any driver) then even
2129  * multiple pending commits could be in-flight at the same time.
2130  *
2131  * 4. Schedule a work item to do all subsequent steps, using the split-out
2132  * commit helpers: a) pre-plane commit b) plane commit c) post-plane commit and
2133  * then cleaning up the framebuffers after the old framebuffer is no longer
2134  * being displayed. The scheduled work should synchronize against other workers
2135  * using the &drm_crtc_commit infrastructure as needed. See
2136  * drm_atomic_helper_setup_commit() for more details.
2137  */
2138 
stall_checks(struct drm_crtc * crtc,bool nonblock)2139 static int stall_checks(struct drm_crtc *crtc, bool nonblock)
2140 {
2141 	struct drm_crtc_commit *commit, *stall_commit = NULL;
2142 	bool completed = true;
2143 	int i;
2144 	long ret = 0;
2145 
2146 	spin_lock(&crtc->commit_lock);
2147 	i = 0;
2148 	list_for_each_entry(commit, &crtc->commit_list, commit_entry) {
2149 		if (i == 0) {
2150 			completed = try_wait_for_completion(&commit->flip_done);
2151 			/*
2152 			 * Userspace is not allowed to get ahead of the previous
2153 			 * commit with nonblocking ones.
2154 			 */
2155 			if (!completed && nonblock) {
2156 				spin_unlock(&crtc->commit_lock);
2157 				drm_dbg_atomic(crtc->dev,
2158 					       "[CRTC:%d:%s] busy with a previous commit\n",
2159 					       crtc->base.id, crtc->name);
2160 
2161 				return -EBUSY;
2162 			}
2163 		} else if (i == 1) {
2164 			stall_commit = drm_crtc_commit_get(commit);
2165 			break;
2166 		}
2167 
2168 		i++;
2169 	}
2170 	spin_unlock(&crtc->commit_lock);
2171 
2172 	if (!stall_commit)
2173 		return 0;
2174 
2175 	/* We don't want to let commits get ahead of cleanup work too much,
2176 	 * stalling on 2nd previous commit means triple-buffer won't ever stall.
2177 	 */
2178 	ret = wait_for_completion_interruptible_timeout(&stall_commit->cleanup_done,
2179 							10*HZ);
2180 	if (ret == 0)
2181 		drm_err(crtc->dev, "[CRTC:%d:%s] cleanup_done timed out\n",
2182 			crtc->base.id, crtc->name);
2183 
2184 	drm_crtc_commit_put(stall_commit);
2185 
2186 	return ret < 0 ? ret : 0;
2187 }
2188 
release_crtc_commit(struct completion * completion)2189 static void release_crtc_commit(struct completion *completion)
2190 {
2191 	struct drm_crtc_commit *commit = container_of(completion,
2192 						      typeof(*commit),
2193 						      flip_done);
2194 
2195 	drm_crtc_commit_put(commit);
2196 }
2197 
init_commit(struct drm_crtc_commit * commit,struct drm_crtc * crtc)2198 static void init_commit(struct drm_crtc_commit *commit, struct drm_crtc *crtc)
2199 {
2200 	init_completion(&commit->flip_done);
2201 	init_completion(&commit->hw_done);
2202 	init_completion(&commit->cleanup_done);
2203 	INIT_LIST_HEAD(&commit->commit_entry);
2204 	kref_init(&commit->ref);
2205 	commit->crtc = crtc;
2206 }
2207 
2208 static struct drm_crtc_commit *
crtc_or_fake_commit(struct drm_atomic_state * state,struct drm_crtc * crtc)2209 crtc_or_fake_commit(struct drm_atomic_state *state, struct drm_crtc *crtc)
2210 {
2211 	if (crtc) {
2212 		struct drm_crtc_state *new_crtc_state;
2213 
2214 		new_crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
2215 
2216 		return new_crtc_state->commit;
2217 	}
2218 
2219 	if (!state->fake_commit) {
2220 		state->fake_commit = kzalloc(sizeof(*state->fake_commit), GFP_KERNEL);
2221 		if (!state->fake_commit)
2222 			return NULL;
2223 
2224 		init_commit(state->fake_commit, NULL);
2225 	}
2226 
2227 	return state->fake_commit;
2228 }
2229 
2230 /**
2231  * drm_atomic_helper_setup_commit - setup possibly nonblocking commit
2232  * @state: new modeset state to be committed
2233  * @nonblock: whether nonblocking behavior is requested.
2234  *
2235  * This function prepares @state to be used by the atomic helper's support for
2236  * nonblocking commits. Drivers using the nonblocking commit infrastructure
2237  * should always call this function from their
2238  * &drm_mode_config_funcs.atomic_commit hook.
2239  *
2240  * Drivers that need to extend the commit setup to private objects can use the
2241  * &drm_mode_config_helper_funcs.atomic_commit_setup hook.
2242  *
2243  * To be able to use this support drivers need to use a few more helper
2244  * functions. drm_atomic_helper_wait_for_dependencies() must be called before
2245  * actually committing the hardware state, and for nonblocking commits this call
2246  * must be placed in the async worker. See also drm_atomic_helper_swap_state()
2247  * and its stall parameter, for when a driver's commit hooks look at the
2248  * &drm_crtc.state, &drm_plane.state or &drm_connector.state pointer directly.
2249  *
2250  * Completion of the hardware commit step must be signalled using
2251  * drm_atomic_helper_commit_hw_done(). After this step the driver is not allowed
2252  * to read or change any permanent software or hardware modeset state. The only
2253  * exception is state protected by other means than &drm_modeset_lock locks.
2254  * Only the free standing @state with pointers to the old state structures can
2255  * be inspected, e.g. to clean up old buffers using
2256  * drm_atomic_helper_cleanup_planes().
2257  *
2258  * At the very end, before cleaning up @state drivers must call
2259  * drm_atomic_helper_commit_cleanup_done().
2260  *
2261  * This is all implemented by in drm_atomic_helper_commit(), giving drivers a
2262  * complete and easy-to-use default implementation of the atomic_commit() hook.
2263  *
2264  * The tracking of asynchronously executed and still pending commits is done
2265  * using the core structure &drm_crtc_commit.
2266  *
2267  * By default there's no need to clean up resources allocated by this function
2268  * explicitly: drm_atomic_state_default_clear() will take care of that
2269  * automatically.
2270  *
2271  * Returns:
2272  *
2273  * 0 on success. -EBUSY when userspace schedules nonblocking commits too fast,
2274  * -ENOMEM on allocation failures and -EINTR when a signal is pending.
2275  */
drm_atomic_helper_setup_commit(struct drm_atomic_state * state,bool nonblock)2276 int drm_atomic_helper_setup_commit(struct drm_atomic_state *state,
2277 				   bool nonblock)
2278 {
2279 	struct drm_crtc *crtc;
2280 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
2281 	struct drm_connector *conn;
2282 	struct drm_connector_state *old_conn_state, *new_conn_state;
2283 	struct drm_plane *plane;
2284 	struct drm_plane_state *old_plane_state, *new_plane_state;
2285 	struct drm_crtc_commit *commit;
2286 	const struct drm_mode_config_helper_funcs *funcs;
2287 	int i, ret;
2288 
2289 	funcs = state->dev->mode_config.helper_private;
2290 
2291 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
2292 		commit = kzalloc(sizeof(*commit), GFP_KERNEL);
2293 		if (!commit)
2294 			return -ENOMEM;
2295 
2296 		init_commit(commit, crtc);
2297 
2298 		new_crtc_state->commit = commit;
2299 
2300 		ret = stall_checks(crtc, nonblock);
2301 		if (ret)
2302 			return ret;
2303 
2304 		/*
2305 		 * Drivers only send out events when at least either current or
2306 		 * new CRTC state is active. Complete right away if everything
2307 		 * stays off.
2308 		 */
2309 		if (!old_crtc_state->active && !new_crtc_state->active) {
2310 			complete_all(&commit->flip_done);
2311 			continue;
2312 		}
2313 
2314 		/* Legacy cursor updates are fully unsynced. */
2315 		if (state->legacy_cursor_update) {
2316 			complete_all(&commit->flip_done);
2317 			continue;
2318 		}
2319 
2320 		if (!new_crtc_state->event) {
2321 			commit->event = kzalloc(sizeof(*commit->event),
2322 						GFP_KERNEL);
2323 			if (!commit->event)
2324 				return -ENOMEM;
2325 
2326 			new_crtc_state->event = commit->event;
2327 		}
2328 
2329 		new_crtc_state->event->base.completion = &commit->flip_done;
2330 		new_crtc_state->event->base.completion_release = release_crtc_commit;
2331 		drm_crtc_commit_get(commit);
2332 
2333 		commit->abort_completion = true;
2334 
2335 		state->crtcs[i].commit = commit;
2336 		drm_crtc_commit_get(commit);
2337 	}
2338 
2339 	for_each_oldnew_connector_in_state(state, conn, old_conn_state, new_conn_state, i) {
2340 		/*
2341 		 * Userspace is not allowed to get ahead of the previous
2342 		 * commit with nonblocking ones.
2343 		 */
2344 		if (nonblock && old_conn_state->commit &&
2345 		    !try_wait_for_completion(&old_conn_state->commit->flip_done)) {
2346 			drm_dbg_atomic(conn->dev,
2347 				       "[CONNECTOR:%d:%s] busy with a previous commit\n",
2348 				       conn->base.id, conn->name);
2349 
2350 			return -EBUSY;
2351 		}
2352 
2353 		/* Always track connectors explicitly for e.g. link retraining. */
2354 		commit = crtc_or_fake_commit(state, new_conn_state->crtc ?: old_conn_state->crtc);
2355 		if (!commit)
2356 			return -ENOMEM;
2357 
2358 		new_conn_state->commit = drm_crtc_commit_get(commit);
2359 	}
2360 
2361 	for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i) {
2362 		/*
2363 		 * Userspace is not allowed to get ahead of the previous
2364 		 * commit with nonblocking ones.
2365 		 */
2366 		if (nonblock && old_plane_state->commit &&
2367 		    !try_wait_for_completion(&old_plane_state->commit->flip_done)) {
2368 			drm_dbg_atomic(plane->dev,
2369 				       "[PLANE:%d:%s] busy with a previous commit\n",
2370 				       plane->base.id, plane->name);
2371 
2372 			return -EBUSY;
2373 		}
2374 
2375 		/* Always track planes explicitly for async pageflip support. */
2376 		commit = crtc_or_fake_commit(state, new_plane_state->crtc ?: old_plane_state->crtc);
2377 		if (!commit)
2378 			return -ENOMEM;
2379 
2380 		new_plane_state->commit = drm_crtc_commit_get(commit);
2381 	}
2382 
2383 	if (funcs && funcs->atomic_commit_setup)
2384 		return funcs->atomic_commit_setup(state);
2385 
2386 	return 0;
2387 }
2388 EXPORT_SYMBOL(drm_atomic_helper_setup_commit);
2389 
2390 /**
2391  * drm_atomic_helper_wait_for_dependencies - wait for required preceeding commits
2392  * @old_state: atomic state object with old state structures
2393  *
2394  * This function waits for all preceeding commits that touch the same CRTC as
2395  * @old_state to both be committed to the hardware (as signalled by
2396  * drm_atomic_helper_commit_hw_done()) and executed by the hardware (as signalled
2397  * by calling drm_crtc_send_vblank_event() on the &drm_crtc_state.event).
2398  *
2399  * This is part of the atomic helper support for nonblocking commits, see
2400  * drm_atomic_helper_setup_commit() for an overview.
2401  */
drm_atomic_helper_wait_for_dependencies(struct drm_atomic_state * old_state)2402 void drm_atomic_helper_wait_for_dependencies(struct drm_atomic_state *old_state)
2403 {
2404 	struct drm_crtc *crtc;
2405 	struct drm_crtc_state *old_crtc_state;
2406 	struct drm_plane *plane;
2407 	struct drm_plane_state *old_plane_state;
2408 	struct drm_connector *conn;
2409 	struct drm_connector_state *old_conn_state;
2410 	int i;
2411 	long ret;
2412 
2413 	for_each_old_crtc_in_state(old_state, crtc, old_crtc_state, i) {
2414 		ret = drm_crtc_commit_wait(old_crtc_state->commit);
2415 		if (ret)
2416 			drm_err(crtc->dev,
2417 				"[CRTC:%d:%s] commit wait timed out\n",
2418 				crtc->base.id, crtc->name);
2419 	}
2420 
2421 	for_each_old_connector_in_state(old_state, conn, old_conn_state, i) {
2422 		ret = drm_crtc_commit_wait(old_conn_state->commit);
2423 		if (ret)
2424 			drm_err(conn->dev,
2425 				"[CONNECTOR:%d:%s] commit wait timed out\n",
2426 				conn->base.id, conn->name);
2427 	}
2428 
2429 	for_each_old_plane_in_state(old_state, plane, old_plane_state, i) {
2430 		ret = drm_crtc_commit_wait(old_plane_state->commit);
2431 		if (ret)
2432 			drm_err(plane->dev,
2433 				"[PLANE:%d:%s] commit wait timed out\n",
2434 				plane->base.id, plane->name);
2435 	}
2436 }
2437 EXPORT_SYMBOL(drm_atomic_helper_wait_for_dependencies);
2438 
2439 /**
2440  * drm_atomic_helper_fake_vblank - fake VBLANK events if needed
2441  * @old_state: atomic state object with old state structures
2442  *
2443  * This function walks all CRTCs and fakes VBLANK events on those with
2444  * &drm_crtc_state.no_vblank set to true and &drm_crtc_state.event != NULL.
2445  * The primary use of this function is writeback connectors working in oneshot
2446  * mode and faking VBLANK events. In this case they only fake the VBLANK event
2447  * when a job is queued, and any change to the pipeline that does not touch the
2448  * connector is leading to timeouts when calling
2449  * drm_atomic_helper_wait_for_vblanks() or
2450  * drm_atomic_helper_wait_for_flip_done(). In addition to writeback
2451  * connectors, this function can also fake VBLANK events for CRTCs without
2452  * VBLANK interrupt.
2453  *
2454  * This is part of the atomic helper support for nonblocking commits, see
2455  * drm_atomic_helper_setup_commit() for an overview.
2456  */
drm_atomic_helper_fake_vblank(struct drm_atomic_state * old_state)2457 void drm_atomic_helper_fake_vblank(struct drm_atomic_state *old_state)
2458 {
2459 	struct drm_crtc_state *new_crtc_state;
2460 	struct drm_crtc *crtc;
2461 	int i;
2462 
2463 	for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) {
2464 		unsigned long flags;
2465 
2466 		if (!new_crtc_state->no_vblank)
2467 			continue;
2468 
2469 		spin_lock_irqsave(&old_state->dev->event_lock, flags);
2470 		if (new_crtc_state->event) {
2471 			drm_crtc_send_vblank_event(crtc,
2472 						   new_crtc_state->event);
2473 			new_crtc_state->event = NULL;
2474 		}
2475 		spin_unlock_irqrestore(&old_state->dev->event_lock, flags);
2476 	}
2477 }
2478 EXPORT_SYMBOL(drm_atomic_helper_fake_vblank);
2479 
2480 /**
2481  * drm_atomic_helper_commit_hw_done - setup possible nonblocking commit
2482  * @old_state: atomic state object with old state structures
2483  *
2484  * This function is used to signal completion of the hardware commit step. After
2485  * this step the driver is not allowed to read or change any permanent software
2486  * or hardware modeset state. The only exception is state protected by other
2487  * means than &drm_modeset_lock locks.
2488  *
2489  * Drivers should try to postpone any expensive or delayed cleanup work after
2490  * this function is called.
2491  *
2492  * This is part of the atomic helper support for nonblocking commits, see
2493  * drm_atomic_helper_setup_commit() for an overview.
2494  */
drm_atomic_helper_commit_hw_done(struct drm_atomic_state * old_state)2495 void drm_atomic_helper_commit_hw_done(struct drm_atomic_state *old_state)
2496 {
2497 	struct drm_crtc *crtc;
2498 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
2499 	struct drm_crtc_commit *commit;
2500 	int i;
2501 
2502 	for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) {
2503 		commit = new_crtc_state->commit;
2504 		if (!commit)
2505 			continue;
2506 
2507 		/*
2508 		 * copy new_crtc_state->commit to old_crtc_state->commit,
2509 		 * it's unsafe to touch new_crtc_state after hw_done,
2510 		 * but we still need to do so in cleanup_done().
2511 		 */
2512 		if (old_crtc_state->commit)
2513 			drm_crtc_commit_put(old_crtc_state->commit);
2514 
2515 		old_crtc_state->commit = drm_crtc_commit_get(commit);
2516 
2517 		/* backend must have consumed any event by now */
2518 		WARN_ON(new_crtc_state->event);
2519 		complete_all(&commit->hw_done);
2520 	}
2521 
2522 	if (old_state->fake_commit) {
2523 		complete_all(&old_state->fake_commit->hw_done);
2524 		complete_all(&old_state->fake_commit->flip_done);
2525 	}
2526 }
2527 EXPORT_SYMBOL(drm_atomic_helper_commit_hw_done);
2528 
2529 /**
2530  * drm_atomic_helper_commit_cleanup_done - signal completion of commit
2531  * @old_state: atomic state object with old state structures
2532  *
2533  * This signals completion of the atomic update @old_state, including any
2534  * cleanup work. If used, it must be called right before calling
2535  * drm_atomic_state_put().
2536  *
2537  * This is part of the atomic helper support for nonblocking commits, see
2538  * drm_atomic_helper_setup_commit() for an overview.
2539  */
drm_atomic_helper_commit_cleanup_done(struct drm_atomic_state * old_state)2540 void drm_atomic_helper_commit_cleanup_done(struct drm_atomic_state *old_state)
2541 {
2542 	struct drm_crtc *crtc;
2543 	struct drm_crtc_state *old_crtc_state;
2544 	struct drm_crtc_commit *commit;
2545 	int i;
2546 
2547 	for_each_old_crtc_in_state(old_state, crtc, old_crtc_state, i) {
2548 		commit = old_crtc_state->commit;
2549 		if (WARN_ON(!commit))
2550 			continue;
2551 
2552 		complete_all(&commit->cleanup_done);
2553 		WARN_ON(!try_wait_for_completion(&commit->hw_done));
2554 
2555 		spin_lock(&crtc->commit_lock);
2556 		list_del(&commit->commit_entry);
2557 		spin_unlock(&crtc->commit_lock);
2558 	}
2559 
2560 	if (old_state->fake_commit) {
2561 		complete_all(&old_state->fake_commit->cleanup_done);
2562 		WARN_ON(!try_wait_for_completion(&old_state->fake_commit->hw_done));
2563 	}
2564 }
2565 EXPORT_SYMBOL(drm_atomic_helper_commit_cleanup_done);
2566 
2567 /**
2568  * drm_atomic_helper_prepare_planes - prepare plane resources before commit
2569  * @dev: DRM device
2570  * @state: atomic state object with new state structures
2571  *
2572  * This function prepares plane state, specifically framebuffers, for the new
2573  * configuration, by calling &drm_plane_helper_funcs.prepare_fb. If any failure
2574  * is encountered this function will call &drm_plane_helper_funcs.cleanup_fb on
2575  * any already successfully prepared framebuffer.
2576  *
2577  * Returns:
2578  * 0 on success, negative error code on failure.
2579  */
drm_atomic_helper_prepare_planes(struct drm_device * dev,struct drm_atomic_state * state)2580 int drm_atomic_helper_prepare_planes(struct drm_device *dev,
2581 				     struct drm_atomic_state *state)
2582 {
2583 	struct drm_connector *connector;
2584 	struct drm_connector_state *new_conn_state;
2585 	struct drm_plane *plane;
2586 	struct drm_plane_state *new_plane_state;
2587 	int ret, i, j;
2588 
2589 	for_each_new_connector_in_state(state, connector, new_conn_state, i) {
2590 		if (!new_conn_state->writeback_job)
2591 			continue;
2592 
2593 		ret = drm_writeback_prepare_job(new_conn_state->writeback_job);
2594 		if (ret < 0)
2595 			return ret;
2596 	}
2597 
2598 	for_each_new_plane_in_state(state, plane, new_plane_state, i) {
2599 		const struct drm_plane_helper_funcs *funcs;
2600 
2601 		funcs = plane->helper_private;
2602 
2603 		if (funcs->prepare_fb) {
2604 			ret = funcs->prepare_fb(plane, new_plane_state);
2605 			if (ret)
2606 				goto fail_prepare_fb;
2607 		} else {
2608 			WARN_ON_ONCE(funcs->cleanup_fb);
2609 
2610 			if (!drm_core_check_feature(dev, DRIVER_GEM))
2611 				continue;
2612 
2613 			ret = drm_gem_plane_helper_prepare_fb(plane, new_plane_state);
2614 			if (ret)
2615 				goto fail_prepare_fb;
2616 		}
2617 	}
2618 
2619 	for_each_new_plane_in_state(state, plane, new_plane_state, i) {
2620 		const struct drm_plane_helper_funcs *funcs = plane->helper_private;
2621 
2622 		if (funcs->begin_fb_access) {
2623 			ret = funcs->begin_fb_access(plane, new_plane_state);
2624 			if (ret)
2625 				goto fail_begin_fb_access;
2626 		}
2627 	}
2628 
2629 	return 0;
2630 
2631 fail_begin_fb_access:
2632 	for_each_new_plane_in_state(state, plane, new_plane_state, j) {
2633 		const struct drm_plane_helper_funcs *funcs = plane->helper_private;
2634 
2635 		if (j >= i)
2636 			continue;
2637 
2638 		if (funcs->end_fb_access)
2639 			funcs->end_fb_access(plane, new_plane_state);
2640 	}
2641 	i = j; /* set i to upper limit to cleanup all planes */
2642 fail_prepare_fb:
2643 	for_each_new_plane_in_state(state, plane, new_plane_state, j) {
2644 		const struct drm_plane_helper_funcs *funcs;
2645 
2646 		if (j >= i)
2647 			continue;
2648 
2649 		funcs = plane->helper_private;
2650 
2651 		if (funcs->cleanup_fb)
2652 			funcs->cleanup_fb(plane, new_plane_state);
2653 	}
2654 
2655 	return ret;
2656 }
2657 EXPORT_SYMBOL(drm_atomic_helper_prepare_planes);
2658 
2659 /**
2660  * drm_atomic_helper_unprepare_planes - release plane resources on aborts
2661  * @dev: DRM device
2662  * @state: atomic state object with old state structures
2663  *
2664  * This function cleans up plane state, specifically framebuffers, from the
2665  * atomic state. It undoes the effects of drm_atomic_helper_prepare_planes()
2666  * when aborting an atomic commit. For cleaning up after a successful commit
2667  * use drm_atomic_helper_cleanup_planes().
2668  */
drm_atomic_helper_unprepare_planes(struct drm_device * dev,struct drm_atomic_state * state)2669 void drm_atomic_helper_unprepare_planes(struct drm_device *dev,
2670 					struct drm_atomic_state *state)
2671 {
2672 	struct drm_plane *plane;
2673 	struct drm_plane_state *new_plane_state;
2674 	int i;
2675 
2676 	for_each_new_plane_in_state(state, plane, new_plane_state, i) {
2677 		const struct drm_plane_helper_funcs *funcs = plane->helper_private;
2678 
2679 		if (funcs->end_fb_access)
2680 			funcs->end_fb_access(plane, new_plane_state);
2681 	}
2682 
2683 	for_each_new_plane_in_state(state, plane, new_plane_state, i) {
2684 		const struct drm_plane_helper_funcs *funcs = plane->helper_private;
2685 
2686 		if (funcs->cleanup_fb)
2687 			funcs->cleanup_fb(plane, new_plane_state);
2688 	}
2689 }
2690 EXPORT_SYMBOL(drm_atomic_helper_unprepare_planes);
2691 
plane_crtc_active(const struct drm_plane_state * state)2692 static bool plane_crtc_active(const struct drm_plane_state *state)
2693 {
2694 	return state->crtc && state->crtc->state->active;
2695 }
2696 
2697 /**
2698  * drm_atomic_helper_commit_planes - commit plane state
2699  * @dev: DRM device
2700  * @old_state: atomic state object with old state structures
2701  * @flags: flags for committing plane state
2702  *
2703  * This function commits the new plane state using the plane and atomic helper
2704  * functions for planes and CRTCs. It assumes that the atomic state has already
2705  * been pushed into the relevant object state pointers, since this step can no
2706  * longer fail.
2707  *
2708  * It still requires the global state object @old_state to know which planes and
2709  * crtcs need to be updated though.
2710  *
2711  * Note that this function does all plane updates across all CRTCs in one step.
2712  * If the hardware can't support this approach look at
2713  * drm_atomic_helper_commit_planes_on_crtc() instead.
2714  *
2715  * Plane parameters can be updated by applications while the associated CRTC is
2716  * disabled. The DRM/KMS core will store the parameters in the plane state,
2717  * which will be available to the driver when the CRTC is turned on. As a result
2718  * most drivers don't need to be immediately notified of plane updates for a
2719  * disabled CRTC.
2720  *
2721  * Unless otherwise needed, drivers are advised to set the ACTIVE_ONLY flag in
2722  * @flags in order not to receive plane update notifications related to a
2723  * disabled CRTC. This avoids the need to manually ignore plane updates in
2724  * driver code when the driver and/or hardware can't or just don't need to deal
2725  * with updates on disabled CRTCs, for example when supporting runtime PM.
2726  *
2727  * Drivers may set the NO_DISABLE_AFTER_MODESET flag in @flags if the relevant
2728  * display controllers require to disable a CRTC's planes when the CRTC is
2729  * disabled. This function would skip the &drm_plane_helper_funcs.atomic_disable
2730  * call for a plane if the CRTC of the old plane state needs a modesetting
2731  * operation. Of course, the drivers need to disable the planes in their CRTC
2732  * disable callbacks since no one else would do that.
2733  *
2734  * The drm_atomic_helper_commit() default implementation doesn't set the
2735  * ACTIVE_ONLY flag to most closely match the behaviour of the legacy helpers.
2736  * This should not be copied blindly by drivers.
2737  */
drm_atomic_helper_commit_planes(struct drm_device * dev,struct drm_atomic_state * old_state,uint32_t flags)2738 void drm_atomic_helper_commit_planes(struct drm_device *dev,
2739 				     struct drm_atomic_state *old_state,
2740 				     uint32_t flags)
2741 {
2742 	struct drm_crtc *crtc;
2743 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
2744 	struct drm_plane *plane;
2745 	struct drm_plane_state *old_plane_state, *new_plane_state;
2746 	int i;
2747 	bool active_only = flags & DRM_PLANE_COMMIT_ACTIVE_ONLY;
2748 	bool no_disable = flags & DRM_PLANE_COMMIT_NO_DISABLE_AFTER_MODESET;
2749 
2750 	for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) {
2751 		const struct drm_crtc_helper_funcs *funcs;
2752 
2753 		funcs = crtc->helper_private;
2754 
2755 		if (!funcs || !funcs->atomic_begin)
2756 			continue;
2757 
2758 		if (active_only && !new_crtc_state->active)
2759 			continue;
2760 
2761 		funcs->atomic_begin(crtc, old_state);
2762 	}
2763 
2764 	for_each_oldnew_plane_in_state(old_state, plane, old_plane_state, new_plane_state, i) {
2765 		const struct drm_plane_helper_funcs *funcs;
2766 		bool disabling;
2767 
2768 		funcs = plane->helper_private;
2769 
2770 		if (!funcs)
2771 			continue;
2772 
2773 		disabling = drm_atomic_plane_disabling(old_plane_state,
2774 						       new_plane_state);
2775 
2776 		if (active_only) {
2777 			/*
2778 			 * Skip planes related to inactive CRTCs. If the plane
2779 			 * is enabled use the state of the current CRTC. If the
2780 			 * plane is being disabled use the state of the old
2781 			 * CRTC to avoid skipping planes being disabled on an
2782 			 * active CRTC.
2783 			 */
2784 			if (!disabling && !plane_crtc_active(new_plane_state))
2785 				continue;
2786 			if (disabling && !plane_crtc_active(old_plane_state))
2787 				continue;
2788 		}
2789 
2790 		/*
2791 		 * Special-case disabling the plane if drivers support it.
2792 		 */
2793 		if (disabling && funcs->atomic_disable) {
2794 			struct drm_crtc_state *crtc_state;
2795 
2796 			crtc_state = old_plane_state->crtc->state;
2797 
2798 			if (drm_atomic_crtc_needs_modeset(crtc_state) &&
2799 			    no_disable)
2800 				continue;
2801 
2802 			funcs->atomic_disable(plane, old_state);
2803 		} else if (new_plane_state->crtc || disabling) {
2804 			funcs->atomic_update(plane, old_state);
2805 
2806 			if (!disabling && funcs->atomic_enable) {
2807 				if (drm_atomic_plane_enabling(old_plane_state, new_plane_state))
2808 					funcs->atomic_enable(plane, old_state);
2809 			}
2810 		}
2811 	}
2812 
2813 	for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) {
2814 		const struct drm_crtc_helper_funcs *funcs;
2815 
2816 		funcs = crtc->helper_private;
2817 
2818 		if (!funcs || !funcs->atomic_flush)
2819 			continue;
2820 
2821 		if (active_only && !new_crtc_state->active)
2822 			continue;
2823 
2824 		funcs->atomic_flush(crtc, old_state);
2825 	}
2826 
2827 	/*
2828 	 * Signal end of framebuffer access here before hw_done. After hw_done,
2829 	 * a later commit might have already released the plane state.
2830 	 */
2831 	for_each_old_plane_in_state(old_state, plane, old_plane_state, i) {
2832 		const struct drm_plane_helper_funcs *funcs = plane->helper_private;
2833 
2834 		if (funcs->end_fb_access)
2835 			funcs->end_fb_access(plane, old_plane_state);
2836 	}
2837 }
2838 EXPORT_SYMBOL(drm_atomic_helper_commit_planes);
2839 
2840 /**
2841  * drm_atomic_helper_commit_planes_on_crtc - commit plane state for a CRTC
2842  * @old_crtc_state: atomic state object with the old CRTC state
2843  *
2844  * This function commits the new plane state using the plane and atomic helper
2845  * functions for planes on the specific CRTC. It assumes that the atomic state
2846  * has already been pushed into the relevant object state pointers, since this
2847  * step can no longer fail.
2848  *
2849  * This function is useful when plane updates should be done CRTC-by-CRTC
2850  * instead of one global step like drm_atomic_helper_commit_planes() does.
2851  *
2852  * This function can only be savely used when planes are not allowed to move
2853  * between different CRTCs because this function doesn't handle inter-CRTC
2854  * dependencies. Callers need to ensure that either no such dependencies exist,
2855  * resolve them through ordering of commit calls or through some other means.
2856  */
2857 void
drm_atomic_helper_commit_planes_on_crtc(struct drm_crtc_state * old_crtc_state)2858 drm_atomic_helper_commit_planes_on_crtc(struct drm_crtc_state *old_crtc_state)
2859 {
2860 	const struct drm_crtc_helper_funcs *crtc_funcs;
2861 	struct drm_crtc *crtc = old_crtc_state->crtc;
2862 	struct drm_atomic_state *old_state = old_crtc_state->state;
2863 	struct drm_crtc_state *new_crtc_state =
2864 		drm_atomic_get_new_crtc_state(old_state, crtc);
2865 	struct drm_plane *plane;
2866 	unsigned int plane_mask;
2867 
2868 	plane_mask = old_crtc_state->plane_mask;
2869 	plane_mask |= new_crtc_state->plane_mask;
2870 
2871 	crtc_funcs = crtc->helper_private;
2872 	if (crtc_funcs && crtc_funcs->atomic_begin)
2873 		crtc_funcs->atomic_begin(crtc, old_state);
2874 
2875 	drm_for_each_plane_mask(plane, crtc->dev, plane_mask) {
2876 		struct drm_plane_state *old_plane_state =
2877 			drm_atomic_get_old_plane_state(old_state, plane);
2878 		struct drm_plane_state *new_plane_state =
2879 			drm_atomic_get_new_plane_state(old_state, plane);
2880 		const struct drm_plane_helper_funcs *plane_funcs;
2881 		bool disabling;
2882 
2883 		plane_funcs = plane->helper_private;
2884 
2885 		if (!old_plane_state || !plane_funcs)
2886 			continue;
2887 
2888 		WARN_ON(new_plane_state->crtc &&
2889 			new_plane_state->crtc != crtc);
2890 
2891 		disabling = drm_atomic_plane_disabling(old_plane_state, new_plane_state);
2892 
2893 		if (disabling && plane_funcs->atomic_disable) {
2894 			plane_funcs->atomic_disable(plane, old_state);
2895 		} else if (new_plane_state->crtc || disabling) {
2896 			plane_funcs->atomic_update(plane, old_state);
2897 
2898 			if (!disabling && plane_funcs->atomic_enable) {
2899 				if (drm_atomic_plane_enabling(old_plane_state, new_plane_state))
2900 					plane_funcs->atomic_enable(plane, old_state);
2901 			}
2902 		}
2903 	}
2904 
2905 	if (crtc_funcs && crtc_funcs->atomic_flush)
2906 		crtc_funcs->atomic_flush(crtc, old_state);
2907 }
2908 EXPORT_SYMBOL(drm_atomic_helper_commit_planes_on_crtc);
2909 
2910 /**
2911  * drm_atomic_helper_disable_planes_on_crtc - helper to disable CRTC's planes
2912  * @old_crtc_state: atomic state object with the old CRTC state
2913  * @atomic: if set, synchronize with CRTC's atomic_begin/flush hooks
2914  *
2915  * Disables all planes associated with the given CRTC. This can be
2916  * used for instance in the CRTC helper atomic_disable callback to disable
2917  * all planes.
2918  *
2919  * If the atomic-parameter is set the function calls the CRTC's
2920  * atomic_begin hook before and atomic_flush hook after disabling the
2921  * planes.
2922  *
2923  * It is a bug to call this function without having implemented the
2924  * &drm_plane_helper_funcs.atomic_disable plane hook.
2925  */
2926 void
drm_atomic_helper_disable_planes_on_crtc(struct drm_crtc_state * old_crtc_state,bool atomic)2927 drm_atomic_helper_disable_planes_on_crtc(struct drm_crtc_state *old_crtc_state,
2928 					 bool atomic)
2929 {
2930 	struct drm_crtc *crtc = old_crtc_state->crtc;
2931 	const struct drm_crtc_helper_funcs *crtc_funcs =
2932 		crtc->helper_private;
2933 	struct drm_plane *plane;
2934 
2935 	if (atomic && crtc_funcs && crtc_funcs->atomic_begin)
2936 		crtc_funcs->atomic_begin(crtc, NULL);
2937 
2938 	drm_atomic_crtc_state_for_each_plane(plane, old_crtc_state) {
2939 		const struct drm_plane_helper_funcs *plane_funcs =
2940 			plane->helper_private;
2941 
2942 		if (!plane_funcs)
2943 			continue;
2944 
2945 		WARN_ON(!plane_funcs->atomic_disable);
2946 		if (plane_funcs->atomic_disable)
2947 			plane_funcs->atomic_disable(plane, NULL);
2948 	}
2949 
2950 	if (atomic && crtc_funcs && crtc_funcs->atomic_flush)
2951 		crtc_funcs->atomic_flush(crtc, NULL);
2952 }
2953 EXPORT_SYMBOL(drm_atomic_helper_disable_planes_on_crtc);
2954 
2955 /**
2956  * drm_atomic_helper_cleanup_planes - cleanup plane resources after commit
2957  * @dev: DRM device
2958  * @old_state: atomic state object with old state structures
2959  *
2960  * This function cleans up plane state, specifically framebuffers, from the old
2961  * configuration. Hence the old configuration must be perserved in @old_state to
2962  * be able to call this function.
2963  *
2964  * This function may not be called on the new state when the atomic update
2965  * fails at any point after calling drm_atomic_helper_prepare_planes(). Use
2966  * drm_atomic_helper_unprepare_planes() in this case.
2967  */
drm_atomic_helper_cleanup_planes(struct drm_device * dev,struct drm_atomic_state * old_state)2968 void drm_atomic_helper_cleanup_planes(struct drm_device *dev,
2969 				      struct drm_atomic_state *old_state)
2970 {
2971 	struct drm_plane *plane;
2972 	struct drm_plane_state *old_plane_state;
2973 	int i;
2974 
2975 	for_each_old_plane_in_state(old_state, plane, old_plane_state, i) {
2976 		const struct drm_plane_helper_funcs *funcs = plane->helper_private;
2977 
2978 		if (funcs->cleanup_fb)
2979 			funcs->cleanup_fb(plane, old_plane_state);
2980 	}
2981 }
2982 EXPORT_SYMBOL(drm_atomic_helper_cleanup_planes);
2983 
2984 /**
2985  * drm_atomic_helper_swap_state - store atomic state into current sw state
2986  * @state: atomic state
2987  * @stall: stall for preceding commits
2988  *
2989  * This function stores the atomic state into the current state pointers in all
2990  * driver objects. It should be called after all failing steps have been done
2991  * and succeeded, but before the actual hardware state is committed.
2992  *
2993  * For cleanup and error recovery the current state for all changed objects will
2994  * be swapped into @state.
2995  *
2996  * With that sequence it fits perfectly into the plane prepare/cleanup sequence:
2997  *
2998  * 1. Call drm_atomic_helper_prepare_planes() with the staged atomic state.
2999  *
3000  * 2. Do any other steps that might fail.
3001  *
3002  * 3. Put the staged state into the current state pointers with this function.
3003  *
3004  * 4. Actually commit the hardware state.
3005  *
3006  * 5. Call drm_atomic_helper_cleanup_planes() with @state, which since step 3
3007  * contains the old state. Also do any other cleanup required with that state.
3008  *
3009  * @stall must be set when nonblocking commits for this driver directly access
3010  * the &drm_plane.state, &drm_crtc.state or &drm_connector.state pointer. With
3011  * the current atomic helpers this is almost always the case, since the helpers
3012  * don't pass the right state structures to the callbacks.
3013  *
3014  * Returns:
3015  *
3016  * Returns 0 on success. Can return -ERESTARTSYS when @stall is true and the
3017  * waiting for the previous commits has been interrupted.
3018  */
drm_atomic_helper_swap_state(struct drm_atomic_state * state,bool stall)3019 int drm_atomic_helper_swap_state(struct drm_atomic_state *state,
3020 				  bool stall)
3021 {
3022 	int i, ret;
3023 	struct drm_connector *connector;
3024 	struct drm_connector_state *old_conn_state, *new_conn_state;
3025 	struct drm_crtc *crtc;
3026 	struct drm_crtc_state *old_crtc_state, *new_crtc_state;
3027 	struct drm_plane *plane;
3028 	struct drm_plane_state *old_plane_state, *new_plane_state;
3029 	struct drm_crtc_commit *commit;
3030 	struct drm_private_obj *obj;
3031 	struct drm_private_state *old_obj_state, *new_obj_state;
3032 
3033 	if (stall) {
3034 		/*
3035 		 * We have to stall for hw_done here before
3036 		 * drm_atomic_helper_wait_for_dependencies() because flip
3037 		 * depth > 1 is not yet supported by all drivers. As long as
3038 		 * obj->state is directly dereferenced anywhere in the drivers
3039 		 * atomic_commit_tail function, then it's unsafe to swap state
3040 		 * before drm_atomic_helper_commit_hw_done() is called.
3041 		 */
3042 
3043 		for_each_old_crtc_in_state(state, crtc, old_crtc_state, i) {
3044 			commit = old_crtc_state->commit;
3045 
3046 			if (!commit)
3047 				continue;
3048 
3049 			ret = wait_for_completion_interruptible(&commit->hw_done);
3050 			if (ret)
3051 				return ret;
3052 		}
3053 
3054 		for_each_old_connector_in_state(state, connector, old_conn_state, i) {
3055 			commit = old_conn_state->commit;
3056 
3057 			if (!commit)
3058 				continue;
3059 
3060 			ret = wait_for_completion_interruptible(&commit->hw_done);
3061 			if (ret)
3062 				return ret;
3063 		}
3064 
3065 		for_each_old_plane_in_state(state, plane, old_plane_state, i) {
3066 			commit = old_plane_state->commit;
3067 
3068 			if (!commit)
3069 				continue;
3070 
3071 			ret = wait_for_completion_interruptible(&commit->hw_done);
3072 			if (ret)
3073 				return ret;
3074 		}
3075 	}
3076 
3077 	for_each_oldnew_connector_in_state(state, connector, old_conn_state, new_conn_state, i) {
3078 		WARN_ON(connector->state != old_conn_state);
3079 
3080 		old_conn_state->state = state;
3081 		new_conn_state->state = NULL;
3082 
3083 		state->connectors[i].state = old_conn_state;
3084 		connector->state = new_conn_state;
3085 	}
3086 
3087 	for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) {
3088 		WARN_ON(crtc->state != old_crtc_state);
3089 
3090 		old_crtc_state->state = state;
3091 		new_crtc_state->state = NULL;
3092 
3093 		state->crtcs[i].state = old_crtc_state;
3094 		crtc->state = new_crtc_state;
3095 
3096 		if (new_crtc_state->commit) {
3097 			spin_lock(&crtc->commit_lock);
3098 			list_add(&new_crtc_state->commit->commit_entry,
3099 				 &crtc->commit_list);
3100 			spin_unlock(&crtc->commit_lock);
3101 
3102 			new_crtc_state->commit->event = NULL;
3103 		}
3104 	}
3105 
3106 	for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i) {
3107 		WARN_ON(plane->state != old_plane_state);
3108 
3109 		old_plane_state->state = state;
3110 		new_plane_state->state = NULL;
3111 
3112 		state->planes[i].state = old_plane_state;
3113 		plane->state = new_plane_state;
3114 	}
3115 
3116 	for_each_oldnew_private_obj_in_state(state, obj, old_obj_state, new_obj_state, i) {
3117 		WARN_ON(obj->state != old_obj_state);
3118 
3119 		old_obj_state->state = state;
3120 		new_obj_state->state = NULL;
3121 
3122 		state->private_objs[i].state = old_obj_state;
3123 		obj->state = new_obj_state;
3124 	}
3125 
3126 	return 0;
3127 }
3128 EXPORT_SYMBOL(drm_atomic_helper_swap_state);
3129 
3130 /**
3131  * drm_atomic_helper_update_plane - Helper for primary plane update using atomic
3132  * @plane: plane object to update
3133  * @crtc: owning CRTC of owning plane
3134  * @fb: framebuffer to flip onto plane
3135  * @crtc_x: x offset of primary plane on @crtc
3136  * @crtc_y: y offset of primary plane on @crtc
3137  * @crtc_w: width of primary plane rectangle on @crtc
3138  * @crtc_h: height of primary plane rectangle on @crtc
3139  * @src_x: x offset of @fb for panning
3140  * @src_y: y offset of @fb for panning
3141  * @src_w: width of source rectangle in @fb
3142  * @src_h: height of source rectangle in @fb
3143  * @ctx: lock acquire context
3144  *
3145  * Provides a default plane update handler using the atomic driver interface.
3146  *
3147  * RETURNS:
3148  * Zero on success, error code on failure
3149  */
drm_atomic_helper_update_plane(struct drm_plane * plane,struct drm_crtc * crtc,struct drm_framebuffer * fb,int crtc_x,int crtc_y,unsigned int crtc_w,unsigned int crtc_h,uint32_t src_x,uint32_t src_y,uint32_t src_w,uint32_t src_h,struct drm_modeset_acquire_ctx * ctx)3150 int drm_atomic_helper_update_plane(struct drm_plane *plane,
3151 				   struct drm_crtc *crtc,
3152 				   struct drm_framebuffer *fb,
3153 				   int crtc_x, int crtc_y,
3154 				   unsigned int crtc_w, unsigned int crtc_h,
3155 				   uint32_t src_x, uint32_t src_y,
3156 				   uint32_t src_w, uint32_t src_h,
3157 				   struct drm_modeset_acquire_ctx *ctx)
3158 {
3159 	struct drm_atomic_state *state;
3160 	struct drm_plane_state *plane_state;
3161 	int ret = 0;
3162 
3163 	state = drm_atomic_state_alloc(plane->dev);
3164 	if (!state)
3165 		return -ENOMEM;
3166 
3167 	state->acquire_ctx = ctx;
3168 	plane_state = drm_atomic_get_plane_state(state, plane);
3169 	if (IS_ERR(plane_state)) {
3170 		ret = PTR_ERR(plane_state);
3171 		goto fail;
3172 	}
3173 
3174 	ret = drm_atomic_set_crtc_for_plane(plane_state, crtc);
3175 	if (ret != 0)
3176 		goto fail;
3177 	drm_atomic_set_fb_for_plane(plane_state, fb);
3178 	plane_state->crtc_x = crtc_x;
3179 	plane_state->crtc_y = crtc_y;
3180 	plane_state->crtc_w = crtc_w;
3181 	plane_state->crtc_h = crtc_h;
3182 	plane_state->src_x = src_x;
3183 	plane_state->src_y = src_y;
3184 	plane_state->src_w = src_w;
3185 	plane_state->src_h = src_h;
3186 
3187 	if (plane == crtc->cursor)
3188 		state->legacy_cursor_update = true;
3189 
3190 	ret = drm_atomic_commit(state);
3191 fail:
3192 	drm_atomic_state_put(state);
3193 	return ret;
3194 }
3195 EXPORT_SYMBOL(drm_atomic_helper_update_plane);
3196 
3197 /**
3198  * drm_atomic_helper_disable_plane - Helper for primary plane disable using atomic
3199  * @plane: plane to disable
3200  * @ctx: lock acquire context
3201  *
3202  * Provides a default plane disable handler using the atomic driver interface.
3203  *
3204  * RETURNS:
3205  * Zero on success, error code on failure
3206  */
drm_atomic_helper_disable_plane(struct drm_plane * plane,struct drm_modeset_acquire_ctx * ctx)3207 int drm_atomic_helper_disable_plane(struct drm_plane *plane,
3208 				    struct drm_modeset_acquire_ctx *ctx)
3209 {
3210 	struct drm_atomic_state *state;
3211 	struct drm_plane_state *plane_state;
3212 	int ret = 0;
3213 
3214 	state = drm_atomic_state_alloc(plane->dev);
3215 	if (!state)
3216 		return -ENOMEM;
3217 
3218 	state->acquire_ctx = ctx;
3219 	plane_state = drm_atomic_get_plane_state(state, plane);
3220 	if (IS_ERR(plane_state)) {
3221 		ret = PTR_ERR(plane_state);
3222 		goto fail;
3223 	}
3224 
3225 	if (plane_state->crtc && plane_state->crtc->cursor == plane)
3226 		plane_state->state->legacy_cursor_update = true;
3227 
3228 	ret = __drm_atomic_helper_disable_plane(plane, plane_state);
3229 	if (ret != 0)
3230 		goto fail;
3231 
3232 	ret = drm_atomic_commit(state);
3233 fail:
3234 	drm_atomic_state_put(state);
3235 	return ret;
3236 }
3237 EXPORT_SYMBOL(drm_atomic_helper_disable_plane);
3238 
3239 /**
3240  * drm_atomic_helper_set_config - set a new config from userspace
3241  * @set: mode set configuration
3242  * @ctx: lock acquisition context
3243  *
3244  * Provides a default CRTC set_config handler using the atomic driver interface.
3245  *
3246  * NOTE: For backwards compatibility with old userspace this automatically
3247  * resets the "link-status" property to GOOD, to force any link
3248  * re-training. The SETCRTC ioctl does not define whether an update does
3249  * need a full modeset or just a plane update, hence we're allowed to do
3250  * that. See also drm_connector_set_link_status_property().
3251  *
3252  * Returns:
3253  * Returns 0 on success, negative errno numbers on failure.
3254  */
drm_atomic_helper_set_config(struct drm_mode_set * set,struct drm_modeset_acquire_ctx * ctx)3255 int drm_atomic_helper_set_config(struct drm_mode_set *set,
3256 				 struct drm_modeset_acquire_ctx *ctx)
3257 {
3258 	struct drm_atomic_state *state;
3259 	struct drm_crtc *crtc = set->crtc;
3260 	int ret = 0;
3261 
3262 	state = drm_atomic_state_alloc(crtc->dev);
3263 	if (!state)
3264 		return -ENOMEM;
3265 
3266 	state->acquire_ctx = ctx;
3267 	ret = __drm_atomic_helper_set_config(set, state);
3268 	if (ret != 0)
3269 		goto fail;
3270 
3271 	ret = handle_conflicting_encoders(state, true);
3272 	if (ret)
3273 		goto fail;
3274 
3275 	ret = drm_atomic_commit(state);
3276 
3277 fail:
3278 	drm_atomic_state_put(state);
3279 	return ret;
3280 }
3281 EXPORT_SYMBOL(drm_atomic_helper_set_config);
3282 
3283 /**
3284  * drm_atomic_helper_disable_all - disable all currently active outputs
3285  * @dev: DRM device
3286  * @ctx: lock acquisition context
3287  *
3288  * Loops through all connectors, finding those that aren't turned off and then
3289  * turns them off by setting their DPMS mode to OFF and deactivating the CRTC
3290  * that they are connected to.
3291  *
3292  * This is used for example in suspend/resume to disable all currently active
3293  * functions when suspending. If you just want to shut down everything at e.g.
3294  * driver unload, look at drm_atomic_helper_shutdown().
3295  *
3296  * Note that if callers haven't already acquired all modeset locks this might
3297  * return -EDEADLK, which must be handled by calling drm_modeset_backoff().
3298  *
3299  * Returns:
3300  * 0 on success or a negative error code on failure.
3301  *
3302  * See also:
3303  * drm_atomic_helper_suspend(), drm_atomic_helper_resume() and
3304  * drm_atomic_helper_shutdown().
3305  */
drm_atomic_helper_disable_all(struct drm_device * dev,struct drm_modeset_acquire_ctx * ctx)3306 int drm_atomic_helper_disable_all(struct drm_device *dev,
3307 				  struct drm_modeset_acquire_ctx *ctx)
3308 {
3309 	struct drm_atomic_state *state;
3310 	struct drm_connector_state *conn_state;
3311 	struct drm_connector *conn;
3312 	struct drm_plane_state *plane_state;
3313 	struct drm_plane *plane;
3314 	struct drm_crtc_state *crtc_state;
3315 	struct drm_crtc *crtc;
3316 	int ret, i;
3317 
3318 	state = drm_atomic_state_alloc(dev);
3319 	if (!state)
3320 		return -ENOMEM;
3321 
3322 	state->acquire_ctx = ctx;
3323 
3324 	drm_for_each_crtc(crtc, dev) {
3325 		crtc_state = drm_atomic_get_crtc_state(state, crtc);
3326 		if (IS_ERR(crtc_state)) {
3327 			ret = PTR_ERR(crtc_state);
3328 			goto free;
3329 		}
3330 
3331 		crtc_state->active = false;
3332 
3333 		ret = drm_atomic_set_mode_prop_for_crtc(crtc_state, NULL);
3334 		if (ret < 0)
3335 			goto free;
3336 
3337 		ret = drm_atomic_add_affected_planes(state, crtc);
3338 		if (ret < 0)
3339 			goto free;
3340 
3341 		ret = drm_atomic_add_affected_connectors(state, crtc);
3342 		if (ret < 0)
3343 			goto free;
3344 	}
3345 
3346 	for_each_new_connector_in_state(state, conn, conn_state, i) {
3347 		ret = drm_atomic_set_crtc_for_connector(conn_state, NULL);
3348 		if (ret < 0)
3349 			goto free;
3350 	}
3351 
3352 	for_each_new_plane_in_state(state, plane, plane_state, i) {
3353 		ret = drm_atomic_set_crtc_for_plane(plane_state, NULL);
3354 		if (ret < 0)
3355 			goto free;
3356 
3357 		drm_atomic_set_fb_for_plane(plane_state, NULL);
3358 	}
3359 
3360 	ret = drm_atomic_commit(state);
3361 free:
3362 	drm_atomic_state_put(state);
3363 	return ret;
3364 }
3365 EXPORT_SYMBOL(drm_atomic_helper_disable_all);
3366 
3367 /**
3368  * drm_atomic_helper_shutdown - shutdown all CRTC
3369  * @dev: DRM device
3370  *
3371  * This shuts down all CRTC, which is useful for driver unloading. Shutdown on
3372  * suspend should instead be handled with drm_atomic_helper_suspend(), since
3373  * that also takes a snapshot of the modeset state to be restored on resume.
3374  *
3375  * This is just a convenience wrapper around drm_atomic_helper_disable_all(),
3376  * and it is the atomic version of drm_helper_force_disable_all().
3377  */
drm_atomic_helper_shutdown(struct drm_device * dev)3378 void drm_atomic_helper_shutdown(struct drm_device *dev)
3379 {
3380 	struct drm_modeset_acquire_ctx ctx;
3381 	int ret;
3382 
3383 	DRM_MODESET_LOCK_ALL_BEGIN(dev, ctx, 0, ret);
3384 
3385 	ret = drm_atomic_helper_disable_all(dev, &ctx);
3386 	if (ret)
3387 		drm_err(dev,
3388 			"Disabling all crtc's during unload failed with %i\n",
3389 			ret);
3390 
3391 	DRM_MODESET_LOCK_ALL_END(dev, ctx, ret);
3392 }
3393 EXPORT_SYMBOL(drm_atomic_helper_shutdown);
3394 
3395 /**
3396  * drm_atomic_helper_duplicate_state - duplicate an atomic state object
3397  * @dev: DRM device
3398  * @ctx: lock acquisition context
3399  *
3400  * Makes a copy of the current atomic state by looping over all objects and
3401  * duplicating their respective states. This is used for example by suspend/
3402  * resume support code to save the state prior to suspend such that it can
3403  * be restored upon resume.
3404  *
3405  * Note that this treats atomic state as persistent between save and restore.
3406  * Drivers must make sure that this is possible and won't result in confusion
3407  * or erroneous behaviour.
3408  *
3409  * Note that if callers haven't already acquired all modeset locks this might
3410  * return -EDEADLK, which must be handled by calling drm_modeset_backoff().
3411  *
3412  * Returns:
3413  * A pointer to the copy of the atomic state object on success or an
3414  * ERR_PTR()-encoded error code on failure.
3415  *
3416  * See also:
3417  * drm_atomic_helper_suspend(), drm_atomic_helper_resume()
3418  */
3419 struct drm_atomic_state *
drm_atomic_helper_duplicate_state(struct drm_device * dev,struct drm_modeset_acquire_ctx * ctx)3420 drm_atomic_helper_duplicate_state(struct drm_device *dev,
3421 				  struct drm_modeset_acquire_ctx *ctx)
3422 {
3423 	struct drm_atomic_state *state;
3424 	struct drm_connector *conn;
3425 	struct drm_connector_list_iter conn_iter;
3426 	struct drm_plane *plane;
3427 	struct drm_crtc *crtc;
3428 	int err = 0;
3429 
3430 	state = drm_atomic_state_alloc(dev);
3431 	if (!state)
3432 		return ERR_PTR(-ENOMEM);
3433 
3434 	state->acquire_ctx = ctx;
3435 	state->duplicated = true;
3436 
3437 	drm_for_each_crtc(crtc, dev) {
3438 		struct drm_crtc_state *crtc_state;
3439 
3440 		crtc_state = drm_atomic_get_crtc_state(state, crtc);
3441 		if (IS_ERR(crtc_state)) {
3442 			err = PTR_ERR(crtc_state);
3443 			goto free;
3444 		}
3445 	}
3446 
3447 	drm_for_each_plane(plane, dev) {
3448 		struct drm_plane_state *plane_state;
3449 
3450 		plane_state = drm_atomic_get_plane_state(state, plane);
3451 		if (IS_ERR(plane_state)) {
3452 			err = PTR_ERR(plane_state);
3453 			goto free;
3454 		}
3455 	}
3456 
3457 	drm_connector_list_iter_begin(dev, &conn_iter);
3458 	drm_for_each_connector_iter(conn, &conn_iter) {
3459 		struct drm_connector_state *conn_state;
3460 
3461 		conn_state = drm_atomic_get_connector_state(state, conn);
3462 		if (IS_ERR(conn_state)) {
3463 			err = PTR_ERR(conn_state);
3464 			drm_connector_list_iter_end(&conn_iter);
3465 			goto free;
3466 		}
3467 	}
3468 	drm_connector_list_iter_end(&conn_iter);
3469 
3470 	/* clear the acquire context so that it isn't accidentally reused */
3471 	state->acquire_ctx = NULL;
3472 
3473 free:
3474 	if (err < 0) {
3475 		drm_atomic_state_put(state);
3476 		state = ERR_PTR(err);
3477 	}
3478 
3479 	return state;
3480 }
3481 EXPORT_SYMBOL(drm_atomic_helper_duplicate_state);
3482 
3483 /**
3484  * drm_atomic_helper_suspend - subsystem-level suspend helper
3485  * @dev: DRM device
3486  *
3487  * Duplicates the current atomic state, disables all active outputs and then
3488  * returns a pointer to the original atomic state to the caller. Drivers can
3489  * pass this pointer to the drm_atomic_helper_resume() helper upon resume to
3490  * restore the output configuration that was active at the time the system
3491  * entered suspend.
3492  *
3493  * Note that it is potentially unsafe to use this. The atomic state object
3494  * returned by this function is assumed to be persistent. Drivers must ensure
3495  * that this holds true. Before calling this function, drivers must make sure
3496  * to suspend fbdev emulation so that nothing can be using the device.
3497  *
3498  * Returns:
3499  * A pointer to a copy of the state before suspend on success or an ERR_PTR()-
3500  * encoded error code on failure. Drivers should store the returned atomic
3501  * state object and pass it to the drm_atomic_helper_resume() helper upon
3502  * resume.
3503  *
3504  * See also:
3505  * drm_atomic_helper_duplicate_state(), drm_atomic_helper_disable_all(),
3506  * drm_atomic_helper_resume(), drm_atomic_helper_commit_duplicated_state()
3507  */
drm_atomic_helper_suspend(struct drm_device * dev)3508 struct drm_atomic_state *drm_atomic_helper_suspend(struct drm_device *dev)
3509 {
3510 	struct drm_modeset_acquire_ctx ctx;
3511 	struct drm_atomic_state *state;
3512 	int err;
3513 
3514 	/* This can never be returned, but it makes the compiler happy */
3515 	state = ERR_PTR(-EINVAL);
3516 
3517 	DRM_MODESET_LOCK_ALL_BEGIN(dev, ctx, 0, err);
3518 
3519 	state = drm_atomic_helper_duplicate_state(dev, &ctx);
3520 	if (IS_ERR(state))
3521 		goto unlock;
3522 
3523 	err = drm_atomic_helper_disable_all(dev, &ctx);
3524 	if (err < 0) {
3525 		drm_atomic_state_put(state);
3526 		state = ERR_PTR(err);
3527 		goto unlock;
3528 	}
3529 
3530 unlock:
3531 	DRM_MODESET_LOCK_ALL_END(dev, ctx, err);
3532 	if (err)
3533 		return ERR_PTR(err);
3534 
3535 	return state;
3536 }
3537 EXPORT_SYMBOL(drm_atomic_helper_suspend);
3538 
3539 /**
3540  * drm_atomic_helper_commit_duplicated_state - commit duplicated state
3541  * @state: duplicated atomic state to commit
3542  * @ctx: pointer to acquire_ctx to use for commit.
3543  *
3544  * The state returned by drm_atomic_helper_duplicate_state() and
3545  * drm_atomic_helper_suspend() is partially invalid, and needs to
3546  * be fixed up before commit.
3547  *
3548  * Returns:
3549  * 0 on success or a negative error code on failure.
3550  *
3551  * See also:
3552  * drm_atomic_helper_suspend()
3553  */
drm_atomic_helper_commit_duplicated_state(struct drm_atomic_state * state,struct drm_modeset_acquire_ctx * ctx)3554 int drm_atomic_helper_commit_duplicated_state(struct drm_atomic_state *state,
3555 					      struct drm_modeset_acquire_ctx *ctx)
3556 {
3557 	int i, ret;
3558 	struct drm_plane *plane;
3559 	struct drm_plane_state *new_plane_state;
3560 	struct drm_connector *connector;
3561 	struct drm_connector_state *new_conn_state;
3562 	struct drm_crtc *crtc;
3563 	struct drm_crtc_state *new_crtc_state;
3564 
3565 	state->acquire_ctx = ctx;
3566 
3567 	for_each_new_plane_in_state(state, plane, new_plane_state, i)
3568 		state->planes[i].old_state = plane->state;
3569 
3570 	for_each_new_crtc_in_state(state, crtc, new_crtc_state, i)
3571 		state->crtcs[i].old_state = crtc->state;
3572 
3573 	for_each_new_connector_in_state(state, connector, new_conn_state, i)
3574 		state->connectors[i].old_state = connector->state;
3575 
3576 	ret = drm_atomic_commit(state);
3577 
3578 	state->acquire_ctx = NULL;
3579 
3580 	return ret;
3581 }
3582 EXPORT_SYMBOL(drm_atomic_helper_commit_duplicated_state);
3583 
3584 /**
3585  * drm_atomic_helper_resume - subsystem-level resume helper
3586  * @dev: DRM device
3587  * @state: atomic state to resume to
3588  *
3589  * Calls drm_mode_config_reset() to synchronize hardware and software states,
3590  * grabs all modeset locks and commits the atomic state object. This can be
3591  * used in conjunction with the drm_atomic_helper_suspend() helper to
3592  * implement suspend/resume for drivers that support atomic mode-setting.
3593  *
3594  * Returns:
3595  * 0 on success or a negative error code on failure.
3596  *
3597  * See also:
3598  * drm_atomic_helper_suspend()
3599  */
drm_atomic_helper_resume(struct drm_device * dev,struct drm_atomic_state * state)3600 int drm_atomic_helper_resume(struct drm_device *dev,
3601 			     struct drm_atomic_state *state)
3602 {
3603 	struct drm_modeset_acquire_ctx ctx;
3604 	int err;
3605 
3606 	drm_mode_config_reset(dev);
3607 
3608 	DRM_MODESET_LOCK_ALL_BEGIN(dev, ctx, 0, err);
3609 
3610 	err = drm_atomic_helper_commit_duplicated_state(state, &ctx);
3611 
3612 	DRM_MODESET_LOCK_ALL_END(dev, ctx, err);
3613 	drm_atomic_state_put(state);
3614 
3615 	return err;
3616 }
3617 EXPORT_SYMBOL(drm_atomic_helper_resume);
3618 
page_flip_common(struct drm_atomic_state * state,struct drm_crtc * crtc,struct drm_framebuffer * fb,struct drm_pending_vblank_event * event,uint32_t flags)3619 static int page_flip_common(struct drm_atomic_state *state,
3620 			    struct drm_crtc *crtc,
3621 			    struct drm_framebuffer *fb,
3622 			    struct drm_pending_vblank_event *event,
3623 			    uint32_t flags)
3624 {
3625 	struct drm_plane *plane = crtc->primary;
3626 	struct drm_plane_state *plane_state;
3627 	struct drm_crtc_state *crtc_state;
3628 	int ret = 0;
3629 
3630 	crtc_state = drm_atomic_get_crtc_state(state, crtc);
3631 	if (IS_ERR(crtc_state))
3632 		return PTR_ERR(crtc_state);
3633 
3634 	crtc_state->event = event;
3635 	crtc_state->async_flip = flags & DRM_MODE_PAGE_FLIP_ASYNC;
3636 
3637 	plane_state = drm_atomic_get_plane_state(state, plane);
3638 	if (IS_ERR(plane_state))
3639 		return PTR_ERR(plane_state);
3640 
3641 	ret = drm_atomic_set_crtc_for_plane(plane_state, crtc);
3642 	if (ret != 0)
3643 		return ret;
3644 	drm_atomic_set_fb_for_plane(plane_state, fb);
3645 
3646 	/* Make sure we don't accidentally do a full modeset. */
3647 	state->allow_modeset = false;
3648 	if (!crtc_state->active) {
3649 		drm_dbg_atomic(crtc->dev,
3650 			       "[CRTC:%d:%s] disabled, rejecting legacy flip\n",
3651 			       crtc->base.id, crtc->name);
3652 		return -EINVAL;
3653 	}
3654 
3655 	return ret;
3656 }
3657 
3658 /**
3659  * drm_atomic_helper_page_flip - execute a legacy page flip
3660  * @crtc: DRM CRTC
3661  * @fb: DRM framebuffer
3662  * @event: optional DRM event to signal upon completion
3663  * @flags: flip flags for non-vblank sync'ed updates
3664  * @ctx: lock acquisition context
3665  *
3666  * Provides a default &drm_crtc_funcs.page_flip implementation
3667  * using the atomic driver interface.
3668  *
3669  * Returns:
3670  * Returns 0 on success, negative errno numbers on failure.
3671  *
3672  * See also:
3673  * drm_atomic_helper_page_flip_target()
3674  */
drm_atomic_helper_page_flip(struct drm_crtc * crtc,struct drm_framebuffer * fb,struct drm_pending_vblank_event * event,uint32_t flags,struct drm_modeset_acquire_ctx * ctx)3675 int drm_atomic_helper_page_flip(struct drm_crtc *crtc,
3676 				struct drm_framebuffer *fb,
3677 				struct drm_pending_vblank_event *event,
3678 				uint32_t flags,
3679 				struct drm_modeset_acquire_ctx *ctx)
3680 {
3681 	struct drm_plane *plane = crtc->primary;
3682 	struct drm_atomic_state *state;
3683 	int ret = 0;
3684 
3685 	state = drm_atomic_state_alloc(plane->dev);
3686 	if (!state)
3687 		return -ENOMEM;
3688 
3689 	state->acquire_ctx = ctx;
3690 
3691 	ret = page_flip_common(state, crtc, fb, event, flags);
3692 	if (ret != 0)
3693 		goto fail;
3694 
3695 	ret = drm_atomic_nonblocking_commit(state);
3696 fail:
3697 	drm_atomic_state_put(state);
3698 	return ret;
3699 }
3700 EXPORT_SYMBOL(drm_atomic_helper_page_flip);
3701 
3702 /**
3703  * drm_atomic_helper_page_flip_target - do page flip on target vblank period.
3704  * @crtc: DRM CRTC
3705  * @fb: DRM framebuffer
3706  * @event: optional DRM event to signal upon completion
3707  * @flags: flip flags for non-vblank sync'ed updates
3708  * @target: specifying the target vblank period when the flip to take effect
3709  * @ctx: lock acquisition context
3710  *
3711  * Provides a default &drm_crtc_funcs.page_flip_target implementation.
3712  * Similar to drm_atomic_helper_page_flip() with extra parameter to specify
3713  * target vblank period to flip.
3714  *
3715  * Returns:
3716  * Returns 0 on success, negative errno numbers on failure.
3717  */
drm_atomic_helper_page_flip_target(struct drm_crtc * crtc,struct drm_framebuffer * fb,struct drm_pending_vblank_event * event,uint32_t flags,uint32_t target,struct drm_modeset_acquire_ctx * ctx)3718 int drm_atomic_helper_page_flip_target(struct drm_crtc *crtc,
3719 				       struct drm_framebuffer *fb,
3720 				       struct drm_pending_vblank_event *event,
3721 				       uint32_t flags,
3722 				       uint32_t target,
3723 				       struct drm_modeset_acquire_ctx *ctx)
3724 {
3725 	struct drm_plane *plane = crtc->primary;
3726 	struct drm_atomic_state *state;
3727 	struct drm_crtc_state *crtc_state;
3728 	int ret = 0;
3729 
3730 	state = drm_atomic_state_alloc(plane->dev);
3731 	if (!state)
3732 		return -ENOMEM;
3733 
3734 	state->acquire_ctx = ctx;
3735 
3736 	ret = page_flip_common(state, crtc, fb, event, flags);
3737 	if (ret != 0)
3738 		goto fail;
3739 
3740 	crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
3741 	if (WARN_ON(!crtc_state)) {
3742 		ret = -EINVAL;
3743 		goto fail;
3744 	}
3745 	crtc_state->target_vblank = target;
3746 
3747 	ret = drm_atomic_nonblocking_commit(state);
3748 fail:
3749 	drm_atomic_state_put(state);
3750 	return ret;
3751 }
3752 EXPORT_SYMBOL(drm_atomic_helper_page_flip_target);
3753 
3754 /**
3755  * drm_atomic_helper_bridge_propagate_bus_fmt() - Propagate output format to
3756  *						  the input end of a bridge
3757  * @bridge: bridge control structure
3758  * @bridge_state: new bridge state
3759  * @crtc_state: new CRTC state
3760  * @conn_state: new connector state
3761  * @output_fmt: tested output bus format
3762  * @num_input_fmts: will contain the size of the returned array
3763  *
3764  * This helper is a pluggable implementation of the
3765  * &drm_bridge_funcs.atomic_get_input_bus_fmts operation for bridges that don't
3766  * modify the bus configuration between their input and their output. It
3767  * returns an array of input formats with a single element set to @output_fmt.
3768  *
3769  * RETURNS:
3770  * a valid format array of size @num_input_fmts, or NULL if the allocation
3771  * failed
3772  */
3773 u32 *
drm_atomic_helper_bridge_propagate_bus_fmt(struct drm_bridge * bridge,struct drm_bridge_state * bridge_state,struct drm_crtc_state * crtc_state,struct drm_connector_state * conn_state,u32 output_fmt,unsigned int * num_input_fmts)3774 drm_atomic_helper_bridge_propagate_bus_fmt(struct drm_bridge *bridge,
3775 					struct drm_bridge_state *bridge_state,
3776 					struct drm_crtc_state *crtc_state,
3777 					struct drm_connector_state *conn_state,
3778 					u32 output_fmt,
3779 					unsigned int *num_input_fmts)
3780 {
3781 	u32 *input_fmts;
3782 
3783 	input_fmts = kzalloc(sizeof(*input_fmts), GFP_KERNEL);
3784 	if (!input_fmts) {
3785 		*num_input_fmts = 0;
3786 		return NULL;
3787 	}
3788 
3789 	*num_input_fmts = 1;
3790 	input_fmts[0] = output_fmt;
3791 	return input_fmts;
3792 }
3793 EXPORT_SYMBOL(drm_atomic_helper_bridge_propagate_bus_fmt);
3794