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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
29 #include <drm/drmP.h>
30 #include <drm/drm_atomic.h>
31 #include <drm/drm_mode.h>
32 #include <drm/drm_plane_helper.h>
33 #include <drm/drm_print.h>
34 #include <linux/sync_file.h>
35
36 #include "drm_crtc_internal.h"
37
38 void __drm_crtc_commit_free(struct kref *kref)
39 {
40 struct drm_crtc_commit *commit =
41 container_of(kref, struct drm_crtc_commit, ref);
42
43 kfree(commit);
44 }
45 EXPORT_SYMBOL(__drm_crtc_commit_free);
46
47 /**
48 * drm_atomic_state_default_release -
49 * release memory initialized by drm_atomic_state_init
50 * @state: atomic state
51 *
52 * Free all the memory allocated by drm_atomic_state_init.
53 * This is useful for drivers that subclass the atomic state.
54 */
55 void drm_atomic_state_default_release(struct drm_atomic_state *state)
56 {
57 kfree(state->connectors);
58 kfree(state->crtcs);
59 kfree(state->planes);
60 }
61 EXPORT_SYMBOL(drm_atomic_state_default_release);
62
63 /**
64 * drm_atomic_state_init - init new atomic state
65 * @dev: DRM device
66 * @state: atomic state
67 *
68 * Default implementation for filling in a new atomic state.
69 * This is useful for drivers that subclass the atomic state.
70 */
71 int
72 drm_atomic_state_init(struct drm_device *dev, struct drm_atomic_state *state)
73 {
74 kref_init(&state->ref);
75
76 /* TODO legacy paths should maybe do a better job about
77 * setting this appropriately?
78 */
79 state->allow_modeset = true;
80
81 state->crtcs = kcalloc(dev->mode_config.num_crtc,
82 sizeof(*state->crtcs), GFP_KERNEL);
83 if (!state->crtcs)
84 goto fail;
85 state->planes = kcalloc(dev->mode_config.num_total_plane,
86 sizeof(*state->planes), GFP_KERNEL);
87 if (!state->planes)
88 goto fail;
89
90 state->dev = dev;
91
92 DRM_DEBUG_ATOMIC("Allocated atomic state %p\n", state);
93
94 return 0;
95 fail:
96 drm_atomic_state_default_release(state);
97 return -ENOMEM;
98 }
99 EXPORT_SYMBOL(drm_atomic_state_init);
100
101 /**
102 * drm_atomic_state_alloc - allocate atomic state
103 * @dev: DRM device
104 *
105 * This allocates an empty atomic state to track updates.
106 */
107 struct drm_atomic_state *
108 drm_atomic_state_alloc(struct drm_device *dev)
109 {
110 struct drm_mode_config *config = &dev->mode_config;
111 struct drm_atomic_state *state;
112
113 if (!config->funcs->atomic_state_alloc) {
114 state = kzalloc(sizeof(*state), GFP_KERNEL);
115 if (!state)
116 return NULL;
117 if (drm_atomic_state_init(dev, state) < 0) {
118 kfree(state);
119 return NULL;
120 }
121 return state;
122 }
123
124 return config->funcs->atomic_state_alloc(dev);
125 }
126 EXPORT_SYMBOL(drm_atomic_state_alloc);
127
128 /**
129 * drm_atomic_state_default_clear - clear base atomic state
130 * @state: atomic state
131 *
132 * Default implementation for clearing atomic state.
133 * This is useful for drivers that subclass the atomic state.
134 */
135 void drm_atomic_state_default_clear(struct drm_atomic_state *state)
136 {
137 struct drm_device *dev = state->dev;
138 struct drm_mode_config *config = &dev->mode_config;
139 int i;
140
141 DRM_DEBUG_ATOMIC("Clearing atomic state %p\n", state);
142
143 for (i = 0; i < state->num_connector; i++) {
144 struct drm_connector *connector = state->connectors[i].ptr;
145
146 if (!connector)
147 continue;
148
149 connector->funcs->atomic_destroy_state(connector,
150 state->connectors[i].state);
151 state->connectors[i].ptr = NULL;
152 state->connectors[i].state = NULL;
153 drm_connector_unreference(connector);
154 }
155
156 for (i = 0; i < config->num_crtc; i++) {
157 struct drm_crtc *crtc = state->crtcs[i].ptr;
158
159 if (!crtc)
160 continue;
161
162 crtc->funcs->atomic_destroy_state(crtc,
163 state->crtcs[i].state);
164
165 if (state->crtcs[i].commit) {
166 kfree(state->crtcs[i].commit->event);
167 state->crtcs[i].commit->event = NULL;
168 drm_crtc_commit_put(state->crtcs[i].commit);
169 }
170
171 state->crtcs[i].commit = NULL;
172 state->crtcs[i].ptr = NULL;
173 state->crtcs[i].state = NULL;
174 }
175
176 for (i = 0; i < config->num_total_plane; i++) {
177 struct drm_plane *plane = state->planes[i].ptr;
178
179 if (!plane)
180 continue;
181
182 plane->funcs->atomic_destroy_state(plane,
183 state->planes[i].state);
184 state->planes[i].ptr = NULL;
185 state->planes[i].state = NULL;
186 }
187 }
188 EXPORT_SYMBOL(drm_atomic_state_default_clear);
189
190 /**
191 * drm_atomic_state_clear - clear state object
192 * @state: atomic state
193 *
194 * When the w/w mutex algorithm detects a deadlock we need to back off and drop
195 * all locks. So someone else could sneak in and change the current modeset
196 * configuration. Which means that all the state assembled in @state is no
197 * longer an atomic update to the current state, but to some arbitrary earlier
198 * state. Which could break assumptions the driver's
199 * &drm_mode_config_funcs.atomic_check likely relies on.
200 *
201 * Hence we must clear all cached state and completely start over, using this
202 * function.
203 */
204 void drm_atomic_state_clear(struct drm_atomic_state *state)
205 {
206 struct drm_device *dev = state->dev;
207 struct drm_mode_config *config = &dev->mode_config;
208
209 if (config->funcs->atomic_state_clear)
210 config->funcs->atomic_state_clear(state);
211 else
212 drm_atomic_state_default_clear(state);
213 }
214 EXPORT_SYMBOL(drm_atomic_state_clear);
215
216 /**
217 * __drm_atomic_state_free - free all memory for an atomic state
218 * @ref: This atomic state to deallocate
219 *
220 * This frees all memory associated with an atomic state, including all the
221 * per-object state for planes, crtcs and connectors.
222 */
223 void __drm_atomic_state_free(struct kref *ref)
224 {
225 struct drm_atomic_state *state = container_of(ref, typeof(*state), ref);
226 struct drm_mode_config *config = &state->dev->mode_config;
227
228 drm_atomic_state_clear(state);
229
230 DRM_DEBUG_ATOMIC("Freeing atomic state %p\n", state);
231
232 if (config->funcs->atomic_state_free) {
233 config->funcs->atomic_state_free(state);
234 } else {
235 drm_atomic_state_default_release(state);
236 kfree(state);
237 }
238 }
239 EXPORT_SYMBOL(__drm_atomic_state_free);
240
241 /**
242 * drm_atomic_get_crtc_state - get crtc state
243 * @state: global atomic state object
244 * @crtc: crtc to get state object for
245 *
246 * This function returns the crtc state for the given crtc, allocating it if
247 * needed. It will also grab the relevant crtc lock to make sure that the state
248 * is consistent.
249 *
250 * Returns:
251 *
252 * Either the allocated state or the error code encoded into the pointer. When
253 * the error is EDEADLK then the w/w mutex code has detected a deadlock and the
254 * entire atomic sequence must be restarted. All other errors are fatal.
255 */
256 struct drm_crtc_state *
257 drm_atomic_get_crtc_state(struct drm_atomic_state *state,
258 struct drm_crtc *crtc)
259 {
260 int ret, index = drm_crtc_index(crtc);
261 struct drm_crtc_state *crtc_state;
262
263 WARN_ON(!state->acquire_ctx);
264
265 crtc_state = drm_atomic_get_existing_crtc_state(state, crtc);
266 if (crtc_state)
267 return crtc_state;
268
269 ret = drm_modeset_lock(&crtc->mutex, state->acquire_ctx);
270 if (ret)
271 return ERR_PTR(ret);
272
273 crtc_state = crtc->funcs->atomic_duplicate_state(crtc);
274 if (!crtc_state)
275 return ERR_PTR(-ENOMEM);
276
277 state->crtcs[index].state = crtc_state;
278 state->crtcs[index].old_state = crtc->state;
279 state->crtcs[index].new_state = crtc_state;
280 state->crtcs[index].ptr = crtc;
281 crtc_state->state = state;
282
283 DRM_DEBUG_ATOMIC("Added [CRTC:%d:%s] %p state to %p\n",
284 crtc->base.id, crtc->name, crtc_state, state);
285
286 return crtc_state;
287 }
288 EXPORT_SYMBOL(drm_atomic_get_crtc_state);
289
290 static void set_out_fence_for_crtc(struct drm_atomic_state *state,
291 struct drm_crtc *crtc, s64 __user *fence_ptr)
292 {
293 state->crtcs[drm_crtc_index(crtc)].out_fence_ptr = fence_ptr;
294 }
295
296 static s64 __user *get_out_fence_for_crtc(struct drm_atomic_state *state,
297 struct drm_crtc *crtc)
298 {
299 s64 __user *fence_ptr;
300
301 fence_ptr = state->crtcs[drm_crtc_index(crtc)].out_fence_ptr;
302 state->crtcs[drm_crtc_index(crtc)].out_fence_ptr = NULL;
303
304 return fence_ptr;
305 }
306
307 /**
308 * drm_atomic_set_mode_for_crtc - set mode for CRTC
309 * @state: the CRTC whose incoming state to update
310 * @mode: kernel-internal mode to use for the CRTC, or NULL to disable
311 *
312 * Set a mode (originating from the kernel) on the desired CRTC state and update
313 * the enable property.
314 *
315 * RETURNS:
316 * Zero on success, error code on failure. Cannot return -EDEADLK.
317 */
318 int drm_atomic_set_mode_for_crtc(struct drm_crtc_state *state,
319 struct drm_display_mode *mode)
320 {
321 struct drm_mode_modeinfo umode;
322
323 /* Early return for no change. */
324 if (mode && memcmp(&state->mode, mode, sizeof(*mode)) == 0)
325 return 0;
326
327 drm_property_unreference_blob(state->mode_blob);
328 state->mode_blob = NULL;
329
330 if (mode) {
331 drm_mode_convert_to_umode(&umode, mode);
332 state->mode_blob =
333 drm_property_create_blob(state->crtc->dev,
334 sizeof(umode),
335 &umode);
336 if (IS_ERR(state->mode_blob))
337 return PTR_ERR(state->mode_blob);
338
339 drm_mode_copy(&state->mode, mode);
340 state->enable = true;
341 DRM_DEBUG_ATOMIC("Set [MODE:%s] for CRTC state %p\n",
342 mode->name, state);
343 } else {
344 memset(&state->mode, 0, sizeof(state->mode));
345 state->enable = false;
346 DRM_DEBUG_ATOMIC("Set [NOMODE] for CRTC state %p\n",
347 state);
348 }
349
350 return 0;
351 }
352 EXPORT_SYMBOL(drm_atomic_set_mode_for_crtc);
353
354 /**
355 * drm_atomic_set_mode_prop_for_crtc - set mode for CRTC
356 * @state: the CRTC whose incoming state to update
357 * @blob: pointer to blob property to use for mode
358 *
359 * Set a mode (originating from a blob property) on the desired CRTC state.
360 * This function will take a reference on the blob property for the CRTC state,
361 * and release the reference held on the state's existing mode property, if any
362 * was set.
363 *
364 * RETURNS:
365 * Zero on success, error code on failure. Cannot return -EDEADLK.
366 */
367 int drm_atomic_set_mode_prop_for_crtc(struct drm_crtc_state *state,
368 struct drm_property_blob *blob)
369 {
370 if (blob == state->mode_blob)
371 return 0;
372
373 drm_property_unreference_blob(state->mode_blob);
374 state->mode_blob = NULL;
375
376 memset(&state->mode, 0, sizeof(state->mode));
377
378 if (blob) {
379 if (blob->length != sizeof(struct drm_mode_modeinfo) ||
380 drm_mode_convert_umode(&state->mode,
381 (const struct drm_mode_modeinfo *)
382 blob->data))
383 return -EINVAL;
384
385 state->mode_blob = drm_property_reference_blob(blob);
386 state->enable = true;
387 DRM_DEBUG_ATOMIC("Set [MODE:%s] for CRTC state %p\n",
388 state->mode.name, state);
389 } else {
390 state->enable = false;
391 DRM_DEBUG_ATOMIC("Set [NOMODE] for CRTC state %p\n",
392 state);
393 }
394
395 return 0;
396 }
397 EXPORT_SYMBOL(drm_atomic_set_mode_prop_for_crtc);
398
399 /**
400 * drm_atomic_replace_property_blob - replace a blob property
401 * @blob: a pointer to the member blob to be replaced
402 * @new_blob: the new blob to replace with
403 * @replaced: whether the blob has been replaced
404 *
405 * RETURNS:
406 * Zero on success, error code on failure
407 */
408 static void
409 drm_atomic_replace_property_blob(struct drm_property_blob **blob,
410 struct drm_property_blob *new_blob,
411 bool *replaced)
412 {
413 struct drm_property_blob *old_blob = *blob;
414
415 if (old_blob == new_blob)
416 return;
417
418 drm_property_unreference_blob(old_blob);
419 if (new_blob)
420 drm_property_reference_blob(new_blob);
421 *blob = new_blob;
422 *replaced = true;
423
424 return;
425 }
426
427 static int
428 drm_atomic_replace_property_blob_from_id(struct drm_crtc *crtc,
429 struct drm_property_blob **blob,
430 uint64_t blob_id,
431 ssize_t expected_size,
432 bool *replaced)
433 {
434 struct drm_property_blob *new_blob = NULL;
435
436 if (blob_id != 0) {
437 new_blob = drm_property_lookup_blob(crtc->dev, blob_id);
438 if (new_blob == NULL)
439 return -EINVAL;
440
441 if (expected_size > 0 && expected_size != new_blob->length) {
442 drm_property_unreference_blob(new_blob);
443 return -EINVAL;
444 }
445 }
446
447 drm_atomic_replace_property_blob(blob, new_blob, replaced);
448 drm_property_unreference_blob(new_blob);
449
450 return 0;
451 }
452
453 /**
454 * drm_atomic_crtc_set_property - set property on CRTC
455 * @crtc: the drm CRTC to set a property on
456 * @state: the state object to update with the new property value
457 * @property: the property to set
458 * @val: the new property value
459 *
460 * This function handles generic/core properties and calls out to driver's
461 * &drm_crtc_funcs.atomic_set_property for driver properties. To ensure
462 * consistent behavior you must call this function rather than the driver hook
463 * directly.
464 *
465 * RETURNS:
466 * Zero on success, error code on failure
467 */
468 int drm_atomic_crtc_set_property(struct drm_crtc *crtc,
469 struct drm_crtc_state *state, struct drm_property *property,
470 uint64_t val)
471 {
472 struct drm_device *dev = crtc->dev;
473 struct drm_mode_config *config = &dev->mode_config;
474 bool replaced = false;
475 int ret;
476
477 if (property == config->prop_active)
478 state->active = val;
479 else if (property == config->prop_mode_id) {
480 struct drm_property_blob *mode =
481 drm_property_lookup_blob(dev, val);
482 ret = drm_atomic_set_mode_prop_for_crtc(state, mode);
483 drm_property_unreference_blob(mode);
484 return ret;
485 } else if (property == config->degamma_lut_property) {
486 ret = drm_atomic_replace_property_blob_from_id(crtc,
487 &state->degamma_lut,
488 val,
489 -1,
490 &replaced);
491 state->color_mgmt_changed |= replaced;
492 return ret;
493 } else if (property == config->ctm_property) {
494 ret = drm_atomic_replace_property_blob_from_id(crtc,
495 &state->ctm,
496 val,
497 sizeof(struct drm_color_ctm),
498 &replaced);
499 state->color_mgmt_changed |= replaced;
500 return ret;
501 } else if (property == config->gamma_lut_property) {
502 ret = drm_atomic_replace_property_blob_from_id(crtc,
503 &state->gamma_lut,
504 val,
505 -1,
506 &replaced);
507 state->color_mgmt_changed |= replaced;
508 return ret;
509 } else if (property == config->prop_out_fence_ptr) {
510 s64 __user *fence_ptr = u64_to_user_ptr(val);
511
512 if (!fence_ptr)
513 return 0;
514
515 if (put_user(-1, fence_ptr))
516 return -EFAULT;
517
518 set_out_fence_for_crtc(state->state, crtc, fence_ptr);
519 } else if (crtc->funcs->atomic_set_property)
520 return crtc->funcs->atomic_set_property(crtc, state, property, val);
521 else
522 return -EINVAL;
523
524 return 0;
525 }
526 EXPORT_SYMBOL(drm_atomic_crtc_set_property);
527
528 /**
529 * drm_atomic_crtc_get_property - get property value from CRTC state
530 * @crtc: the drm CRTC to set a property on
531 * @state: the state object to get the property value from
532 * @property: the property to set
533 * @val: return location for the property value
534 *
535 * This function handles generic/core properties and calls out to driver's
536 * &drm_crtc_funcs.atomic_get_property for driver properties. To ensure
537 * consistent behavior you must call this function rather than the driver hook
538 * directly.
539 *
540 * RETURNS:
541 * Zero on success, error code on failure
542 */
543 static int
544 drm_atomic_crtc_get_property(struct drm_crtc *crtc,
545 const struct drm_crtc_state *state,
546 struct drm_property *property, uint64_t *val)
547 {
548 struct drm_device *dev = crtc->dev;
549 struct drm_mode_config *config = &dev->mode_config;
550
551 if (property == config->prop_active)
552 *val = state->active;
553 else if (property == config->prop_mode_id)
554 *val = (state->mode_blob) ? state->mode_blob->base.id : 0;
555 else if (property == config->degamma_lut_property)
556 *val = (state->degamma_lut) ? state->degamma_lut->base.id : 0;
557 else if (property == config->ctm_property)
558 *val = (state->ctm) ? state->ctm->base.id : 0;
559 else if (property == config->gamma_lut_property)
560 *val = (state->gamma_lut) ? state->gamma_lut->base.id : 0;
561 else if (property == config->prop_out_fence_ptr)
562 *val = 0;
563 else if (crtc->funcs->atomic_get_property)
564 return crtc->funcs->atomic_get_property(crtc, state, property, val);
565 else
566 return -EINVAL;
567
568 return 0;
569 }
570
571 /**
572 * drm_atomic_crtc_check - check crtc state
573 * @crtc: crtc to check
574 * @state: crtc state to check
575 *
576 * Provides core sanity checks for crtc state.
577 *
578 * RETURNS:
579 * Zero on success, error code on failure
580 */
581 static int drm_atomic_crtc_check(struct drm_crtc *crtc,
582 struct drm_crtc_state *state)
583 {
584 /* NOTE: we explicitly don't enforce constraints such as primary
585 * layer covering entire screen, since that is something we want
586 * to allow (on hw that supports it). For hw that does not, it
587 * should be checked in driver's crtc->atomic_check() vfunc.
588 *
589 * TODO: Add generic modeset state checks once we support those.
590 */
591
592 if (state->active && !state->enable) {
593 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] active without enabled\n",
594 crtc->base.id, crtc->name);
595 return -EINVAL;
596 }
597
598 /* The state->enable vs. state->mode_blob checks can be WARN_ON,
599 * as this is a kernel-internal detail that userspace should never
600 * be able to trigger. */
601 if (drm_core_check_feature(crtc->dev, DRIVER_ATOMIC) &&
602 WARN_ON(state->enable && !state->mode_blob)) {
603 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] enabled without mode blob\n",
604 crtc->base.id, crtc->name);
605 return -EINVAL;
606 }
607
608 if (drm_core_check_feature(crtc->dev, DRIVER_ATOMIC) &&
609 WARN_ON(!state->enable && state->mode_blob)) {
610 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] disabled with mode blob\n",
611 crtc->base.id, crtc->name);
612 return -EINVAL;
613 }
614
615 /*
616 * Reject event generation for when a CRTC is off and stays off.
617 * It wouldn't be hard to implement this, but userspace has a track
618 * record of happily burning through 100% cpu (or worse, crash) when the
619 * display pipe is suspended. To avoid all that fun just reject updates
620 * that ask for events since likely that indicates a bug in the
621 * compositor's drawing loop. This is consistent with the vblank IOCTL
622 * and legacy page_flip IOCTL which also reject service on a disabled
623 * pipe.
624 */
625 if (state->event && !state->active && !crtc->state->active) {
626 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] requesting event but off\n",
627 crtc->base.id, crtc->name);
628 return -EINVAL;
629 }
630
631 return 0;
632 }
633
634 static void drm_atomic_crtc_print_state(struct drm_printer *p,
635 const struct drm_crtc_state *state)
636 {
637 struct drm_crtc *crtc = state->crtc;
638
639 drm_printf(p, "crtc[%u]: %s\n", crtc->base.id, crtc->name);
640 drm_printf(p, "\tenable=%d\n", state->enable);
641 drm_printf(p, "\tactive=%d\n", state->active);
642 drm_printf(p, "\tplanes_changed=%d\n", state->planes_changed);
643 drm_printf(p, "\tmode_changed=%d\n", state->mode_changed);
644 drm_printf(p, "\tactive_changed=%d\n", state->active_changed);
645 drm_printf(p, "\tconnectors_changed=%d\n", state->connectors_changed);
646 drm_printf(p, "\tcolor_mgmt_changed=%d\n", state->color_mgmt_changed);
647 drm_printf(p, "\tplane_mask=%x\n", state->plane_mask);
648 drm_printf(p, "\tconnector_mask=%x\n", state->connector_mask);
649 drm_printf(p, "\tencoder_mask=%x\n", state->encoder_mask);
650 drm_printf(p, "\tmode: " DRM_MODE_FMT "\n", DRM_MODE_ARG(&state->mode));
651
652 if (crtc->funcs->atomic_print_state)
653 crtc->funcs->atomic_print_state(p, state);
654 }
655
656 /**
657 * drm_atomic_get_plane_state - get plane state
658 * @state: global atomic state object
659 * @plane: plane to get state object for
660 *
661 * This function returns the plane state for the given plane, allocating it if
662 * needed. It will also grab the relevant plane lock to make sure that the state
663 * is consistent.
664 *
665 * Returns:
666 *
667 * Either the allocated state or the error code encoded into the pointer. When
668 * the error is EDEADLK then the w/w mutex code has detected a deadlock and the
669 * entire atomic sequence must be restarted. All other errors are fatal.
670 */
671 struct drm_plane_state *
672 drm_atomic_get_plane_state(struct drm_atomic_state *state,
673 struct drm_plane *plane)
674 {
675 int ret, index = drm_plane_index(plane);
676 struct drm_plane_state *plane_state;
677
678 WARN_ON(!state->acquire_ctx);
679
680 plane_state = drm_atomic_get_existing_plane_state(state, plane);
681 if (plane_state)
682 return plane_state;
683
684 ret = drm_modeset_lock(&plane->mutex, state->acquire_ctx);
685 if (ret)
686 return ERR_PTR(ret);
687
688 plane_state = plane->funcs->atomic_duplicate_state(plane);
689 if (!plane_state)
690 return ERR_PTR(-ENOMEM);
691
692 state->planes[index].state = plane_state;
693 state->planes[index].ptr = plane;
694 state->planes[index].old_state = plane->state;
695 state->planes[index].new_state = plane_state;
696 plane_state->state = state;
697
698 DRM_DEBUG_ATOMIC("Added [PLANE:%d:%s] %p state to %p\n",
699 plane->base.id, plane->name, plane_state, state);
700
701 if (plane_state->crtc) {
702 struct drm_crtc_state *crtc_state;
703
704 crtc_state = drm_atomic_get_crtc_state(state,
705 plane_state->crtc);
706 if (IS_ERR(crtc_state))
707 return ERR_CAST(crtc_state);
708 }
709
710 return plane_state;
711 }
712 EXPORT_SYMBOL(drm_atomic_get_plane_state);
713
714 /**
715 * drm_atomic_plane_set_property - set property on plane
716 * @plane: the drm plane to set a property on
717 * @state: the state object to update with the new property value
718 * @property: the property to set
719 * @val: the new property value
720 *
721 * This function handles generic/core properties and calls out to driver's
722 * &drm_plane_funcs.atomic_set_property for driver properties. To ensure
723 * consistent behavior you must call this function rather than the driver hook
724 * directly.
725 *
726 * RETURNS:
727 * Zero on success, error code on failure
728 */
729 int drm_atomic_plane_set_property(struct drm_plane *plane,
730 struct drm_plane_state *state, struct drm_property *property,
731 uint64_t val)
732 {
733 struct drm_device *dev = plane->dev;
734 struct drm_mode_config *config = &dev->mode_config;
735
736 if (property == config->prop_fb_id) {
737 struct drm_framebuffer *fb = drm_framebuffer_lookup(dev, val);
738 drm_atomic_set_fb_for_plane(state, fb);
739 if (fb)
740 drm_framebuffer_unreference(fb);
741 } else if (property == config->prop_in_fence_fd) {
742 if (state->fence)
743 return -EINVAL;
744
745 if (U642I64(val) == -1)
746 return 0;
747
748 state->fence = sync_file_get_fence(val);
749 if (!state->fence)
750 return -EINVAL;
751
752 } else if (property == config->prop_crtc_id) {
753 struct drm_crtc *crtc = drm_crtc_find(dev, val);
754 return drm_atomic_set_crtc_for_plane(state, crtc);
755 } else if (property == config->prop_crtc_x) {
756 state->crtc_x = U642I64(val);
757 } else if (property == config->prop_crtc_y) {
758 state->crtc_y = U642I64(val);
759 } else if (property == config->prop_crtc_w) {
760 state->crtc_w = val;
761 } else if (property == config->prop_crtc_h) {
762 state->crtc_h = val;
763 } else if (property == config->prop_src_x) {
764 state->src_x = val;
765 } else if (property == config->prop_src_y) {
766 state->src_y = val;
767 } else if (property == config->prop_src_w) {
768 state->src_w = val;
769 } else if (property == config->prop_src_h) {
770 state->src_h = val;
771 } else if (property == plane->rotation_property) {
772 if (!is_power_of_2(val & DRM_ROTATE_MASK))
773 return -EINVAL;
774 state->rotation = val;
775 } else if (property == plane->zpos_property) {
776 state->zpos = val;
777 } else if (plane->funcs->atomic_set_property) {
778 return plane->funcs->atomic_set_property(plane, state,
779 property, val);
780 } else {
781 return -EINVAL;
782 }
783
784 return 0;
785 }
786 EXPORT_SYMBOL(drm_atomic_plane_set_property);
787
788 /**
789 * drm_atomic_plane_get_property - get property value from plane state
790 * @plane: the drm plane to set a property on
791 * @state: the state object to get the property value from
792 * @property: the property to set
793 * @val: return location for the property value
794 *
795 * This function handles generic/core properties and calls out to driver's
796 * &drm_plane_funcs.atomic_get_property for driver properties. To ensure
797 * consistent behavior you must call this function rather than the driver hook
798 * directly.
799 *
800 * RETURNS:
801 * Zero on success, error code on failure
802 */
803 static int
804 drm_atomic_plane_get_property(struct drm_plane *plane,
805 const struct drm_plane_state *state,
806 struct drm_property *property, uint64_t *val)
807 {
808 struct drm_device *dev = plane->dev;
809 struct drm_mode_config *config = &dev->mode_config;
810
811 if (property == config->prop_fb_id) {
812 *val = (state->fb) ? state->fb->base.id : 0;
813 } else if (property == config->prop_in_fence_fd) {
814 *val = -1;
815 } else if (property == config->prop_crtc_id) {
816 *val = (state->crtc) ? state->crtc->base.id : 0;
817 } else if (property == config->prop_crtc_x) {
818 *val = I642U64(state->crtc_x);
819 } else if (property == config->prop_crtc_y) {
820 *val = I642U64(state->crtc_y);
821 } else if (property == config->prop_crtc_w) {
822 *val = state->crtc_w;
823 } else if (property == config->prop_crtc_h) {
824 *val = state->crtc_h;
825 } else if (property == config->prop_src_x) {
826 *val = state->src_x;
827 } else if (property == config->prop_src_y) {
828 *val = state->src_y;
829 } else if (property == config->prop_src_w) {
830 *val = state->src_w;
831 } else if (property == config->prop_src_h) {
832 *val = state->src_h;
833 } else if (property == plane->rotation_property) {
834 *val = state->rotation;
835 } else if (property == plane->zpos_property) {
836 *val = state->zpos;
837 } else if (plane->funcs->atomic_get_property) {
838 return plane->funcs->atomic_get_property(plane, state, property, val);
839 } else {
840 return -EINVAL;
841 }
842
843 return 0;
844 }
845
846 static bool
847 plane_switching_crtc(struct drm_atomic_state *state,
848 struct drm_plane *plane,
849 struct drm_plane_state *plane_state)
850 {
851 if (!plane->state->crtc || !plane_state->crtc)
852 return false;
853
854 if (plane->state->crtc == plane_state->crtc)
855 return false;
856
857 /* This could be refined, but currently there's no helper or driver code
858 * to implement direct switching of active planes nor userspace to take
859 * advantage of more direct plane switching without the intermediate
860 * full OFF state.
861 */
862 return true;
863 }
864
865 /**
866 * drm_atomic_plane_check - check plane state
867 * @plane: plane to check
868 * @state: plane state to check
869 *
870 * Provides core sanity checks for plane state.
871 *
872 * RETURNS:
873 * Zero on success, error code on failure
874 */
875 static int drm_atomic_plane_check(struct drm_plane *plane,
876 struct drm_plane_state *state)
877 {
878 unsigned int fb_width, fb_height;
879 int ret;
880
881 /* either *both* CRTC and FB must be set, or neither */
882 if (WARN_ON(state->crtc && !state->fb)) {
883 DRM_DEBUG_ATOMIC("CRTC set but no FB\n");
884 return -EINVAL;
885 } else if (WARN_ON(state->fb && !state->crtc)) {
886 DRM_DEBUG_ATOMIC("FB set but no CRTC\n");
887 return -EINVAL;
888 }
889
890 /* if disabled, we don't care about the rest of the state: */
891 if (!state->crtc)
892 return 0;
893
894 /* Check whether this plane is usable on this CRTC */
895 if (!(plane->possible_crtcs & drm_crtc_mask(state->crtc))) {
896 DRM_DEBUG_ATOMIC("Invalid crtc for plane\n");
897 return -EINVAL;
898 }
899
900 /* Check whether this plane supports the fb pixel format. */
901 ret = drm_plane_check_pixel_format(plane, state->fb->format->format);
902 if (ret) {
903 struct drm_format_name_buf format_name;
904 DRM_DEBUG_ATOMIC("Invalid pixel format %s\n",
905 drm_get_format_name(state->fb->format->format,
906 &format_name));
907 return ret;
908 }
909
910 /* Give drivers some help against integer overflows */
911 if (state->crtc_w > INT_MAX ||
912 state->crtc_x > INT_MAX - (int32_t) state->crtc_w ||
913 state->crtc_h > INT_MAX ||
914 state->crtc_y > INT_MAX - (int32_t) state->crtc_h) {
915 DRM_DEBUG_ATOMIC("Invalid CRTC coordinates %ux%u+%d+%d\n",
916 state->crtc_w, state->crtc_h,
917 state->crtc_x, state->crtc_y);
918 return -ERANGE;
919 }
920
921 fb_width = state->fb->width << 16;
922 fb_height = state->fb->height << 16;
923
924 /* Make sure source coordinates are inside the fb. */
925 if (state->src_w > fb_width ||
926 state->src_x > fb_width - state->src_w ||
927 state->src_h > fb_height ||
928 state->src_y > fb_height - state->src_h) {
929 DRM_DEBUG_ATOMIC("Invalid source coordinates "
930 "%u.%06ux%u.%06u+%u.%06u+%u.%06u\n",
931 state->src_w >> 16, ((state->src_w & 0xffff) * 15625) >> 10,
932 state->src_h >> 16, ((state->src_h & 0xffff) * 15625) >> 10,
933 state->src_x >> 16, ((state->src_x & 0xffff) * 15625) >> 10,
934 state->src_y >> 16, ((state->src_y & 0xffff) * 15625) >> 10);
935 return -ENOSPC;
936 }
937
938 if (plane_switching_crtc(state->state, plane, state)) {
939 DRM_DEBUG_ATOMIC("[PLANE:%d:%s] switching CRTC directly\n",
940 plane->base.id, plane->name);
941 return -EINVAL;
942 }
943
944 return 0;
945 }
946
947 static void drm_atomic_plane_print_state(struct drm_printer *p,
948 const struct drm_plane_state *state)
949 {
950 struct drm_plane *plane = state->plane;
951 struct drm_rect src = drm_plane_state_src(state);
952 struct drm_rect dest = drm_plane_state_dest(state);
953
954 drm_printf(p, "plane[%u]: %s\n", plane->base.id, plane->name);
955 drm_printf(p, "\tcrtc=%s\n", state->crtc ? state->crtc->name : "(null)");
956 drm_printf(p, "\tfb=%u\n", state->fb ? state->fb->base.id : 0);
957 if (state->fb) {
958 struct drm_framebuffer *fb = state->fb;
959 int i, n = fb->format->num_planes;
960 struct drm_format_name_buf format_name;
961
962 drm_printf(p, "\t\tformat=%s\n",
963 drm_get_format_name(fb->format->format, &format_name));
964 drm_printf(p, "\t\t\tmodifier=0x%llx\n", fb->modifier);
965 drm_printf(p, "\t\tsize=%dx%d\n", fb->width, fb->height);
966 drm_printf(p, "\t\tlayers:\n");
967 for (i = 0; i < n; i++) {
968 drm_printf(p, "\t\t\tpitch[%d]=%u\n", i, fb->pitches[i]);
969 drm_printf(p, "\t\t\toffset[%d]=%u\n", i, fb->offsets[i]);
970 }
971 }
972 drm_printf(p, "\tcrtc-pos=" DRM_RECT_FMT "\n", DRM_RECT_ARG(&dest));
973 drm_printf(p, "\tsrc-pos=" DRM_RECT_FP_FMT "\n", DRM_RECT_FP_ARG(&src));
974 drm_printf(p, "\trotation=%x\n", state->rotation);
975
976 if (plane->funcs->atomic_print_state)
977 plane->funcs->atomic_print_state(p, state);
978 }
979
980 /**
981 * drm_atomic_get_connector_state - get connector state
982 * @state: global atomic state object
983 * @connector: connector to get state object for
984 *
985 * This function returns the connector state for the given connector,
986 * allocating it if needed. It will also grab the relevant connector lock to
987 * make sure that the state is consistent.
988 *
989 * Returns:
990 *
991 * Either the allocated state or the error code encoded into the pointer. When
992 * the error is EDEADLK then the w/w mutex code has detected a deadlock and the
993 * entire atomic sequence must be restarted. All other errors are fatal.
994 */
995 struct drm_connector_state *
996 drm_atomic_get_connector_state(struct drm_atomic_state *state,
997 struct drm_connector *connector)
998 {
999 int ret, index;
1000 struct drm_mode_config *config = &connector->dev->mode_config;
1001 struct drm_connector_state *connector_state;
1002
1003 WARN_ON(!state->acquire_ctx);
1004
1005 ret = drm_modeset_lock(&config->connection_mutex, state->acquire_ctx);
1006 if (ret)
1007 return ERR_PTR(ret);
1008
1009 index = drm_connector_index(connector);
1010
1011 if (index >= state->num_connector) {
1012 struct __drm_connnectors_state *c;
1013 int alloc = max(index + 1, config->num_connector);
1014
1015 c = krealloc(state->connectors, alloc * sizeof(*state->connectors), GFP_KERNEL);
1016 if (!c)
1017 return ERR_PTR(-ENOMEM);
1018
1019 state->connectors = c;
1020 memset(&state->connectors[state->num_connector], 0,
1021 sizeof(*state->connectors) * (alloc - state->num_connector));
1022
1023 state->num_connector = alloc;
1024 }
1025
1026 if (state->connectors[index].state)
1027 return state->connectors[index].state;
1028
1029 connector_state = connector->funcs->atomic_duplicate_state(connector);
1030 if (!connector_state)
1031 return ERR_PTR(-ENOMEM);
1032
1033 drm_connector_reference(connector);
1034 state->connectors[index].state = connector_state;
1035 state->connectors[index].old_state = connector->state;
1036 state->connectors[index].new_state = connector_state;
1037 state->connectors[index].ptr = connector;
1038 connector_state->state = state;
1039
1040 DRM_DEBUG_ATOMIC("Added [CONNECTOR:%d:%s] %p state to %p\n",
1041 connector->base.id, connector->name,
1042 connector_state, state);
1043
1044 if (connector_state->crtc) {
1045 struct drm_crtc_state *crtc_state;
1046
1047 crtc_state = drm_atomic_get_crtc_state(state,
1048 connector_state->crtc);
1049 if (IS_ERR(crtc_state))
1050 return ERR_CAST(crtc_state);
1051 }
1052
1053 return connector_state;
1054 }
1055 EXPORT_SYMBOL(drm_atomic_get_connector_state);
1056
1057 /**
1058 * drm_atomic_connector_set_property - set property on connector.
1059 * @connector: the drm connector to set a property on
1060 * @state: the state object to update with the new property value
1061 * @property: the property to set
1062 * @val: the new property value
1063 *
1064 * This function handles generic/core properties and calls out to driver's
1065 * &drm_connector_funcs.atomic_set_property for driver properties. To ensure
1066 * consistent behavior you must call this function rather than the driver hook
1067 * directly.
1068 *
1069 * RETURNS:
1070 * Zero on success, error code on failure
1071 */
1072 int drm_atomic_connector_set_property(struct drm_connector *connector,
1073 struct drm_connector_state *state, struct drm_property *property,
1074 uint64_t val)
1075 {
1076 struct drm_device *dev = connector->dev;
1077 struct drm_mode_config *config = &dev->mode_config;
1078
1079 if (property == config->prop_crtc_id) {
1080 struct drm_crtc *crtc = drm_crtc_find(dev, val);
1081 return drm_atomic_set_crtc_for_connector(state, crtc);
1082 } else if (property == config->dpms_property) {
1083 /* setting DPMS property requires special handling, which
1084 * is done in legacy setprop path for us. Disallow (for
1085 * now?) atomic writes to DPMS property:
1086 */
1087 return -EINVAL;
1088 } else if (property == config->tv_select_subconnector_property) {
1089 state->tv.subconnector = val;
1090 } else if (property == config->tv_left_margin_property) {
1091 state->tv.margins.left = val;
1092 } else if (property == config->tv_right_margin_property) {
1093 state->tv.margins.right = val;
1094 } else if (property == config->tv_top_margin_property) {
1095 state->tv.margins.top = val;
1096 } else if (property == config->tv_bottom_margin_property) {
1097 state->tv.margins.bottom = val;
1098 } else if (property == config->tv_mode_property) {
1099 state->tv.mode = val;
1100 } else if (property == config->tv_brightness_property) {
1101 state->tv.brightness = val;
1102 } else if (property == config->tv_contrast_property) {
1103 state->tv.contrast = val;
1104 } else if (property == config->tv_flicker_reduction_property) {
1105 state->tv.flicker_reduction = val;
1106 } else if (property == config->tv_overscan_property) {
1107 state->tv.overscan = val;
1108 } else if (property == config->tv_saturation_property) {
1109 state->tv.saturation = val;
1110 } else if (property == config->tv_hue_property) {
1111 state->tv.hue = val;
1112 } else if (connector->funcs->atomic_set_property) {
1113 return connector->funcs->atomic_set_property(connector,
1114 state, property, val);
1115 } else {
1116 return -EINVAL;
1117 }
1118
1119 return 0;
1120 }
1121 EXPORT_SYMBOL(drm_atomic_connector_set_property);
1122
1123 static void drm_atomic_connector_print_state(struct drm_printer *p,
1124 const struct drm_connector_state *state)
1125 {
1126 struct drm_connector *connector = state->connector;
1127
1128 drm_printf(p, "connector[%u]: %s\n", connector->base.id, connector->name);
1129 drm_printf(p, "\tcrtc=%s\n", state->crtc ? state->crtc->name : "(null)");
1130
1131 if (connector->funcs->atomic_print_state)
1132 connector->funcs->atomic_print_state(p, state);
1133 }
1134
1135 /**
1136 * drm_atomic_connector_get_property - get property value from connector state
1137 * @connector: the drm connector to set a property on
1138 * @state: the state object to get the property value from
1139 * @property: the property to set
1140 * @val: return location for the property value
1141 *
1142 * This function handles generic/core properties and calls out to driver's
1143 * &drm_connector_funcs.atomic_get_property for driver properties. To ensure
1144 * consistent behavior you must call this function rather than the driver hook
1145 * directly.
1146 *
1147 * RETURNS:
1148 * Zero on success, error code on failure
1149 */
1150 static int
1151 drm_atomic_connector_get_property(struct drm_connector *connector,
1152 const struct drm_connector_state *state,
1153 struct drm_property *property, uint64_t *val)
1154 {
1155 struct drm_device *dev = connector->dev;
1156 struct drm_mode_config *config = &dev->mode_config;
1157
1158 if (property == config->prop_crtc_id) {
1159 *val = (state->crtc) ? state->crtc->base.id : 0;
1160 } else if (property == config->dpms_property) {
1161 *val = connector->dpms;
1162 } else if (property == config->tv_select_subconnector_property) {
1163 *val = state->tv.subconnector;
1164 } else if (property == config->tv_left_margin_property) {
1165 *val = state->tv.margins.left;
1166 } else if (property == config->tv_right_margin_property) {
1167 *val = state->tv.margins.right;
1168 } else if (property == config->tv_top_margin_property) {
1169 *val = state->tv.margins.top;
1170 } else if (property == config->tv_bottom_margin_property) {
1171 *val = state->tv.margins.bottom;
1172 } else if (property == config->tv_mode_property) {
1173 *val = state->tv.mode;
1174 } else if (property == config->tv_brightness_property) {
1175 *val = state->tv.brightness;
1176 } else if (property == config->tv_contrast_property) {
1177 *val = state->tv.contrast;
1178 } else if (property == config->tv_flicker_reduction_property) {
1179 *val = state->tv.flicker_reduction;
1180 } else if (property == config->tv_overscan_property) {
1181 *val = state->tv.overscan;
1182 } else if (property == config->tv_saturation_property) {
1183 *val = state->tv.saturation;
1184 } else if (property == config->tv_hue_property) {
1185 *val = state->tv.hue;
1186 } else if (connector->funcs->atomic_get_property) {
1187 return connector->funcs->atomic_get_property(connector,
1188 state, property, val);
1189 } else {
1190 return -EINVAL;
1191 }
1192
1193 return 0;
1194 }
1195
1196 int drm_atomic_get_property(struct drm_mode_object *obj,
1197 struct drm_property *property, uint64_t *val)
1198 {
1199 struct drm_device *dev = property->dev;
1200 int ret;
1201
1202 switch (obj->type) {
1203 case DRM_MODE_OBJECT_CONNECTOR: {
1204 struct drm_connector *connector = obj_to_connector(obj);
1205 WARN_ON(!drm_modeset_is_locked(&dev->mode_config.connection_mutex));
1206 ret = drm_atomic_connector_get_property(connector,
1207 connector->state, property, val);
1208 break;
1209 }
1210 case DRM_MODE_OBJECT_CRTC: {
1211 struct drm_crtc *crtc = obj_to_crtc(obj);
1212 WARN_ON(!drm_modeset_is_locked(&crtc->mutex));
1213 ret = drm_atomic_crtc_get_property(crtc,
1214 crtc->state, property, val);
1215 break;
1216 }
1217 case DRM_MODE_OBJECT_PLANE: {
1218 struct drm_plane *plane = obj_to_plane(obj);
1219 WARN_ON(!drm_modeset_is_locked(&plane->mutex));
1220 ret = drm_atomic_plane_get_property(plane,
1221 plane->state, property, val);
1222 break;
1223 }
1224 default:
1225 ret = -EINVAL;
1226 break;
1227 }
1228
1229 return ret;
1230 }
1231
1232 /**
1233 * drm_atomic_set_crtc_for_plane - set crtc for plane
1234 * @plane_state: the plane whose incoming state to update
1235 * @crtc: crtc to use for the plane
1236 *
1237 * Changing the assigned crtc for a plane requires us to grab the lock and state
1238 * for the new crtc, as needed. This function takes care of all these details
1239 * besides updating the pointer in the state object itself.
1240 *
1241 * Returns:
1242 * 0 on success or can fail with -EDEADLK or -ENOMEM. When the error is EDEADLK
1243 * then the w/w mutex code has detected a deadlock and the entire atomic
1244 * sequence must be restarted. All other errors are fatal.
1245 */
1246 int
1247 drm_atomic_set_crtc_for_plane(struct drm_plane_state *plane_state,
1248 struct drm_crtc *crtc)
1249 {
1250 struct drm_plane *plane = plane_state->plane;
1251 struct drm_crtc_state *crtc_state;
1252
1253 if (plane_state->crtc) {
1254 crtc_state = drm_atomic_get_crtc_state(plane_state->state,
1255 plane_state->crtc);
1256 if (WARN_ON(IS_ERR(crtc_state)))
1257 return PTR_ERR(crtc_state);
1258
1259 crtc_state->plane_mask &= ~(1 << drm_plane_index(plane));
1260 }
1261
1262 plane_state->crtc = crtc;
1263
1264 if (crtc) {
1265 crtc_state = drm_atomic_get_crtc_state(plane_state->state,
1266 crtc);
1267 if (IS_ERR(crtc_state))
1268 return PTR_ERR(crtc_state);
1269 crtc_state->plane_mask |= (1 << drm_plane_index(plane));
1270 }
1271
1272 if (crtc)
1273 DRM_DEBUG_ATOMIC("Link plane state %p to [CRTC:%d:%s]\n",
1274 plane_state, crtc->base.id, crtc->name);
1275 else
1276 DRM_DEBUG_ATOMIC("Link plane state %p to [NOCRTC]\n",
1277 plane_state);
1278
1279 return 0;
1280 }
1281 EXPORT_SYMBOL(drm_atomic_set_crtc_for_plane);
1282
1283 /**
1284 * drm_atomic_set_fb_for_plane - set framebuffer for plane
1285 * @plane_state: atomic state object for the plane
1286 * @fb: fb to use for the plane
1287 *
1288 * Changing the assigned framebuffer for a plane requires us to grab a reference
1289 * to the new fb and drop the reference to the old fb, if there is one. This
1290 * function takes care of all these details besides updating the pointer in the
1291 * state object itself.
1292 */
1293 void
1294 drm_atomic_set_fb_for_plane(struct drm_plane_state *plane_state,
1295 struct drm_framebuffer *fb)
1296 {
1297 if (fb)
1298 DRM_DEBUG_ATOMIC("Set [FB:%d] for plane state %p\n",
1299 fb->base.id, plane_state);
1300 else
1301 DRM_DEBUG_ATOMIC("Set [NOFB] for plane state %p\n",
1302 plane_state);
1303
1304 drm_framebuffer_assign(&plane_state->fb, fb);
1305 }
1306 EXPORT_SYMBOL(drm_atomic_set_fb_for_plane);
1307
1308 /**
1309 * drm_atomic_set_fence_for_plane - set fence for plane
1310 * @plane_state: atomic state object for the plane
1311 * @fence: dma_fence to use for the plane
1312 *
1313 * Helper to setup the plane_state fence in case it is not set yet.
1314 * By using this drivers doesn't need to worry if the user choose
1315 * implicit or explicit fencing.
1316 *
1317 * This function will not set the fence to the state if it was set
1318 * via explicit fencing interfaces on the atomic ioctl. In that case it will
1319 * drop the reference to the fence as we are not storing it anywhere.
1320 * Otherwise, if &drm_plane_state.fence is not set this function we just set it
1321 * with the received implicit fence. In both cases this function consumes a
1322 * reference for @fence.
1323 */
1324 void
1325 drm_atomic_set_fence_for_plane(struct drm_plane_state *plane_state,
1326 struct dma_fence *fence)
1327 {
1328 if (plane_state->fence) {
1329 dma_fence_put(fence);
1330 return;
1331 }
1332
1333 plane_state->fence = fence;
1334 }
1335 EXPORT_SYMBOL(drm_atomic_set_fence_for_plane);
1336
1337 /**
1338 * drm_atomic_set_crtc_for_connector - set crtc for connector
1339 * @conn_state: atomic state object for the connector
1340 * @crtc: crtc to use for the connector
1341 *
1342 * Changing the assigned crtc for a connector requires us to grab the lock and
1343 * state for the new crtc, as needed. This function takes care of all these
1344 * details besides updating the pointer in the state object itself.
1345 *
1346 * Returns:
1347 * 0 on success or can fail with -EDEADLK or -ENOMEM. When the error is EDEADLK
1348 * then the w/w mutex code has detected a deadlock and the entire atomic
1349 * sequence must be restarted. All other errors are fatal.
1350 */
1351 int
1352 drm_atomic_set_crtc_for_connector(struct drm_connector_state *conn_state,
1353 struct drm_crtc *crtc)
1354 {
1355 struct drm_crtc_state *crtc_state;
1356
1357 if (conn_state->crtc == crtc)
1358 return 0;
1359
1360 if (conn_state->crtc) {
1361 crtc_state = drm_atomic_get_existing_crtc_state(conn_state->state,
1362 conn_state->crtc);
1363
1364 crtc_state->connector_mask &=
1365 ~(1 << drm_connector_index(conn_state->connector));
1366
1367 drm_connector_unreference(conn_state->connector);
1368 conn_state->crtc = NULL;
1369 }
1370
1371 if (crtc) {
1372 crtc_state = drm_atomic_get_crtc_state(conn_state->state, crtc);
1373 if (IS_ERR(crtc_state))
1374 return PTR_ERR(crtc_state);
1375
1376 crtc_state->connector_mask |=
1377 1 << drm_connector_index(conn_state->connector);
1378
1379 drm_connector_reference(conn_state->connector);
1380 conn_state->crtc = crtc;
1381
1382 DRM_DEBUG_ATOMIC("Link connector state %p to [CRTC:%d:%s]\n",
1383 conn_state, crtc->base.id, crtc->name);
1384 } else {
1385 DRM_DEBUG_ATOMIC("Link connector state %p to [NOCRTC]\n",
1386 conn_state);
1387 }
1388
1389 return 0;
1390 }
1391 EXPORT_SYMBOL(drm_atomic_set_crtc_for_connector);
1392
1393 /**
1394 * drm_atomic_add_affected_connectors - add connectors for crtc
1395 * @state: atomic state
1396 * @crtc: DRM crtc
1397 *
1398 * This function walks the current configuration and adds all connectors
1399 * currently using @crtc to the atomic configuration @state. Note that this
1400 * function must acquire the connection mutex. This can potentially cause
1401 * unneeded seralization if the update is just for the planes on one crtc. Hence
1402 * drivers and helpers should only call this when really needed (e.g. when a
1403 * full modeset needs to happen due to some change).
1404 *
1405 * Returns:
1406 * 0 on success or can fail with -EDEADLK or -ENOMEM. When the error is EDEADLK
1407 * then the w/w mutex code has detected a deadlock and the entire atomic
1408 * sequence must be restarted. All other errors are fatal.
1409 */
1410 int
1411 drm_atomic_add_affected_connectors(struct drm_atomic_state *state,
1412 struct drm_crtc *crtc)
1413 {
1414 struct drm_mode_config *config = &state->dev->mode_config;
1415 struct drm_connector *connector;
1416 struct drm_connector_state *conn_state;
1417 struct drm_connector_list_iter conn_iter;
1418 struct drm_crtc_state *crtc_state;
1419 int ret;
1420
1421 crtc_state = drm_atomic_get_crtc_state(state, crtc);
1422 if (IS_ERR(crtc_state))
1423 return PTR_ERR(crtc_state);
1424
1425 ret = drm_modeset_lock(&config->connection_mutex, state->acquire_ctx);
1426 if (ret)
1427 return ret;
1428
1429 DRM_DEBUG_ATOMIC("Adding all current connectors for [CRTC:%d:%s] to %p\n",
1430 crtc->base.id, crtc->name, state);
1431
1432 /*
1433 * Changed connectors are already in @state, so only need to look
1434 * at the connector_mask in crtc_state.
1435 */
1436 drm_connector_list_iter_get(state->dev, &conn_iter);
1437 drm_for_each_connector_iter(connector, &conn_iter) {
1438 if (!(crtc_state->connector_mask & (1 << drm_connector_index(connector))))
1439 continue;
1440
1441 conn_state = drm_atomic_get_connector_state(state, connector);
1442 if (IS_ERR(conn_state)) {
1443 drm_connector_list_iter_put(&conn_iter);
1444 return PTR_ERR(conn_state);
1445 }
1446 }
1447 drm_connector_list_iter_put(&conn_iter);
1448
1449 return 0;
1450 }
1451 EXPORT_SYMBOL(drm_atomic_add_affected_connectors);
1452
1453 /**
1454 * drm_atomic_add_affected_planes - add planes for crtc
1455 * @state: atomic state
1456 * @crtc: DRM crtc
1457 *
1458 * This function walks the current configuration and adds all planes
1459 * currently used by @crtc to the atomic configuration @state. This is useful
1460 * when an atomic commit also needs to check all currently enabled plane on
1461 * @crtc, e.g. when changing the mode. It's also useful when re-enabling a CRTC
1462 * to avoid special code to force-enable all planes.
1463 *
1464 * Since acquiring a plane state will always also acquire the w/w mutex of the
1465 * current CRTC for that plane (if there is any) adding all the plane states for
1466 * a CRTC will not reduce parallism of atomic updates.
1467 *
1468 * Returns:
1469 * 0 on success or can fail with -EDEADLK or -ENOMEM. When the error is EDEADLK
1470 * then the w/w mutex code has detected a deadlock and the entire atomic
1471 * sequence must be restarted. All other errors are fatal.
1472 */
1473 int
1474 drm_atomic_add_affected_planes(struct drm_atomic_state *state,
1475 struct drm_crtc *crtc)
1476 {
1477 struct drm_plane *plane;
1478
1479 WARN_ON(!drm_atomic_get_existing_crtc_state(state, crtc));
1480
1481 drm_for_each_plane_mask(plane, state->dev, crtc->state->plane_mask) {
1482 struct drm_plane_state *plane_state =
1483 drm_atomic_get_plane_state(state, plane);
1484
1485 if (IS_ERR(plane_state))
1486 return PTR_ERR(plane_state);
1487 }
1488 return 0;
1489 }
1490 EXPORT_SYMBOL(drm_atomic_add_affected_planes);
1491
1492 /**
1493 * drm_atomic_legacy_backoff - locking backoff for legacy ioctls
1494 * @state: atomic state
1495 *
1496 * This function should be used by legacy entry points which don't understand
1497 * -EDEADLK semantics. For simplicity this one will grab all modeset locks after
1498 * the slowpath completed.
1499 */
1500 void drm_atomic_legacy_backoff(struct drm_atomic_state *state)
1501 {
1502 struct drm_device *dev = state->dev;
1503 unsigned crtc_mask = 0;
1504 struct drm_crtc *crtc;
1505 int ret;
1506 bool global = false;
1507
1508 drm_for_each_crtc(crtc, dev) {
1509 if (crtc->acquire_ctx != state->acquire_ctx)
1510 continue;
1511
1512 crtc_mask |= drm_crtc_mask(crtc);
1513 crtc->acquire_ctx = NULL;
1514 }
1515
1516 if (WARN_ON(dev->mode_config.acquire_ctx == state->acquire_ctx)) {
1517 global = true;
1518
1519 dev->mode_config.acquire_ctx = NULL;
1520 }
1521
1522 retry:
1523 drm_modeset_backoff(state->acquire_ctx);
1524
1525 ret = drm_modeset_lock_all_ctx(dev, state->acquire_ctx);
1526 if (ret)
1527 goto retry;
1528
1529 drm_for_each_crtc(crtc, dev)
1530 if (drm_crtc_mask(crtc) & crtc_mask)
1531 crtc->acquire_ctx = state->acquire_ctx;
1532
1533 if (global)
1534 dev->mode_config.acquire_ctx = state->acquire_ctx;
1535 }
1536 EXPORT_SYMBOL(drm_atomic_legacy_backoff);
1537
1538 /**
1539 * drm_atomic_check_only - check whether a given config would work
1540 * @state: atomic configuration to check
1541 *
1542 * Note that this function can return -EDEADLK if the driver needed to acquire
1543 * more locks but encountered a deadlock. The caller must then do the usual w/w
1544 * backoff dance and restart. All other errors are fatal.
1545 *
1546 * Returns:
1547 * 0 on success, negative error code on failure.
1548 */
1549 int drm_atomic_check_only(struct drm_atomic_state *state)
1550 {
1551 struct drm_device *dev = state->dev;
1552 struct drm_mode_config *config = &dev->mode_config;
1553 struct drm_plane *plane;
1554 struct drm_plane_state *plane_state;
1555 struct drm_crtc *crtc;
1556 struct drm_crtc_state *crtc_state;
1557 int i, ret = 0;
1558
1559 DRM_DEBUG_ATOMIC("checking %p\n", state);
1560
1561 for_each_new_plane_in_state(state, plane, plane_state, i) {
1562 ret = drm_atomic_plane_check(plane, plane_state);
1563 if (ret) {
1564 DRM_DEBUG_ATOMIC("[PLANE:%d:%s] atomic core check failed\n",
1565 plane->base.id, plane->name);
1566 return ret;
1567 }
1568 }
1569
1570 for_each_new_crtc_in_state(state, crtc, crtc_state, i) {
1571 ret = drm_atomic_crtc_check(crtc, crtc_state);
1572 if (ret) {
1573 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] atomic core check failed\n",
1574 crtc->base.id, crtc->name);
1575 return ret;
1576 }
1577 }
1578
1579 if (config->funcs->atomic_check)
1580 ret = config->funcs->atomic_check(state->dev, state);
1581
1582 if (!state->allow_modeset) {
1583 for_each_new_crtc_in_state(state, crtc, crtc_state, i) {
1584 if (drm_atomic_crtc_needs_modeset(crtc_state)) {
1585 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] requires full modeset\n",
1586 crtc->base.id, crtc->name);
1587 return -EINVAL;
1588 }
1589 }
1590 }
1591
1592 return ret;
1593 }
1594 EXPORT_SYMBOL(drm_atomic_check_only);
1595
1596 /**
1597 * drm_atomic_commit - commit configuration atomically
1598 * @state: atomic configuration to check
1599 *
1600 * Note that this function can return -EDEADLK if the driver needed to acquire
1601 * more locks but encountered a deadlock. The caller must then do the usual w/w
1602 * backoff dance and restart. All other errors are fatal.
1603 *
1604 * This function will take its own reference on @state.
1605 * Callers should always release their reference with drm_atomic_state_put().
1606 *
1607 * Returns:
1608 * 0 on success, negative error code on failure.
1609 */
1610 int drm_atomic_commit(struct drm_atomic_state *state)
1611 {
1612 struct drm_mode_config *config = &state->dev->mode_config;
1613 int ret;
1614
1615 ret = drm_atomic_check_only(state);
1616 if (ret)
1617 return ret;
1618
1619 DRM_DEBUG_ATOMIC("commiting %p\n", state);
1620
1621 return config->funcs->atomic_commit(state->dev, state, false);
1622 }
1623 EXPORT_SYMBOL(drm_atomic_commit);
1624
1625 /**
1626 * drm_atomic_nonblocking_commit - atomic nonblocking commit
1627 * @state: atomic configuration to check
1628 *
1629 * Note that this function can return -EDEADLK if the driver needed to acquire
1630 * more locks but encountered a deadlock. The caller must then do the usual w/w
1631 * backoff dance and restart. All other errors are fatal.
1632 *
1633 * This function will take its own reference on @state.
1634 * Callers should always release their reference with drm_atomic_state_put().
1635 *
1636 * Returns:
1637 * 0 on success, negative error code on failure.
1638 */
1639 int drm_atomic_nonblocking_commit(struct drm_atomic_state *state)
1640 {
1641 struct drm_mode_config *config = &state->dev->mode_config;
1642 int ret;
1643
1644 ret = drm_atomic_check_only(state);
1645 if (ret)
1646 return ret;
1647
1648 DRM_DEBUG_ATOMIC("commiting %p nonblocking\n", state);
1649
1650 return config->funcs->atomic_commit(state->dev, state, true);
1651 }
1652 EXPORT_SYMBOL(drm_atomic_nonblocking_commit);
1653
1654 static void drm_atomic_print_state(const struct drm_atomic_state *state)
1655 {
1656 struct drm_printer p = drm_info_printer(state->dev->dev);
1657 struct drm_plane *plane;
1658 struct drm_plane_state *plane_state;
1659 struct drm_crtc *crtc;
1660 struct drm_crtc_state *crtc_state;
1661 struct drm_connector *connector;
1662 struct drm_connector_state *connector_state;
1663 int i;
1664
1665 DRM_DEBUG_ATOMIC("checking %p\n", state);
1666
1667 for_each_new_plane_in_state(state, plane, plane_state, i)
1668 drm_atomic_plane_print_state(&p, plane_state);
1669
1670 for_each_new_crtc_in_state(state, crtc, crtc_state, i)
1671 drm_atomic_crtc_print_state(&p, crtc_state);
1672
1673 for_each_new_connector_in_state(state, connector, connector_state, i)
1674 drm_atomic_connector_print_state(&p, connector_state);
1675 }
1676
1677 /**
1678 * drm_state_dump - dump entire device atomic state
1679 * @dev: the drm device
1680 * @p: where to print the state to
1681 *
1682 * Just for debugging. Drivers might want an option to dump state
1683 * to dmesg in case of error irq's. (Hint, you probably want to
1684 * ratelimit this!)
1685 *
1686 * The caller must drm_modeset_lock_all(), or if this is called
1687 * from error irq handler, it should not be enabled by default.
1688 * (Ie. if you are debugging errors you might not care that this
1689 * is racey. But calling this without all modeset locks held is
1690 * not inherently safe.)
1691 */
1692 void drm_state_dump(struct drm_device *dev, struct drm_printer *p)
1693 {
1694 struct drm_mode_config *config = &dev->mode_config;
1695 struct drm_plane *plane;
1696 struct drm_crtc *crtc;
1697 struct drm_connector *connector;
1698 struct drm_connector_list_iter conn_iter;
1699
1700 if (!drm_core_check_feature(dev, DRIVER_ATOMIC))
1701 return;
1702
1703 list_for_each_entry(plane, &config->plane_list, head)
1704 drm_atomic_plane_print_state(p, plane->state);
1705
1706 list_for_each_entry(crtc, &config->crtc_list, head)
1707 drm_atomic_crtc_print_state(p, crtc->state);
1708
1709 drm_connector_list_iter_get(dev, &conn_iter);
1710 drm_for_each_connector_iter(connector, &conn_iter)
1711 drm_atomic_connector_print_state(p, connector->state);
1712 drm_connector_list_iter_put(&conn_iter);
1713 }
1714 EXPORT_SYMBOL(drm_state_dump);
1715
1716 #ifdef CONFIG_DEBUG_FS
1717 static int drm_state_info(struct seq_file *m, void *data)
1718 {
1719 struct drm_info_node *node = (struct drm_info_node *) m->private;
1720 struct drm_device *dev = node->minor->dev;
1721 struct drm_printer p = drm_seq_file_printer(m);
1722
1723 drm_modeset_lock_all(dev);
1724 drm_state_dump(dev, &p);
1725 drm_modeset_unlock_all(dev);
1726
1727 return 0;
1728 }
1729
1730 /* any use in debugfs files to dump individual planes/crtc/etc? */
1731 static const struct drm_info_list drm_atomic_debugfs_list[] = {
1732 {"state", drm_state_info, 0},
1733 };
1734
1735 int drm_atomic_debugfs_init(struct drm_minor *minor)
1736 {
1737 return drm_debugfs_create_files(drm_atomic_debugfs_list,
1738 ARRAY_SIZE(drm_atomic_debugfs_list),
1739 minor->debugfs_root, minor);
1740 }
1741 #endif
1742
1743 /*
1744 * The big monstor ioctl
1745 */
1746
1747 static struct drm_pending_vblank_event *create_vblank_event(
1748 struct drm_device *dev, uint64_t user_data)
1749 {
1750 struct drm_pending_vblank_event *e = NULL;
1751
1752 e = kzalloc(sizeof *e, GFP_KERNEL);
1753 if (!e)
1754 return NULL;
1755
1756 e->event.base.type = DRM_EVENT_FLIP_COMPLETE;
1757 e->event.base.length = sizeof(e->event);
1758 e->event.user_data = user_data;
1759
1760 return e;
1761 }
1762
1763 static int atomic_set_prop(struct drm_atomic_state *state,
1764 struct drm_mode_object *obj, struct drm_property *prop,
1765 uint64_t prop_value)
1766 {
1767 struct drm_mode_object *ref;
1768 int ret;
1769
1770 if (!drm_property_change_valid_get(prop, prop_value, &ref))
1771 return -EINVAL;
1772
1773 switch (obj->type) {
1774 case DRM_MODE_OBJECT_CONNECTOR: {
1775 struct drm_connector *connector = obj_to_connector(obj);
1776 struct drm_connector_state *connector_state;
1777
1778 connector_state = drm_atomic_get_connector_state(state, connector);
1779 if (IS_ERR(connector_state)) {
1780 ret = PTR_ERR(connector_state);
1781 break;
1782 }
1783
1784 ret = drm_atomic_connector_set_property(connector,
1785 connector_state, prop, prop_value);
1786 break;
1787 }
1788 case DRM_MODE_OBJECT_CRTC: {
1789 struct drm_crtc *crtc = obj_to_crtc(obj);
1790 struct drm_crtc_state *crtc_state;
1791
1792 crtc_state = drm_atomic_get_crtc_state(state, crtc);
1793 if (IS_ERR(crtc_state)) {
1794 ret = PTR_ERR(crtc_state);
1795 break;
1796 }
1797
1798 ret = drm_atomic_crtc_set_property(crtc,
1799 crtc_state, prop, prop_value);
1800 break;
1801 }
1802 case DRM_MODE_OBJECT_PLANE: {
1803 struct drm_plane *plane = obj_to_plane(obj);
1804 struct drm_plane_state *plane_state;
1805
1806 plane_state = drm_atomic_get_plane_state(state, plane);
1807 if (IS_ERR(plane_state)) {
1808 ret = PTR_ERR(plane_state);
1809 break;
1810 }
1811
1812 ret = drm_atomic_plane_set_property(plane,
1813 plane_state, prop, prop_value);
1814 break;
1815 }
1816 default:
1817 ret = -EINVAL;
1818 break;
1819 }
1820
1821 drm_property_change_valid_put(prop, ref);
1822 return ret;
1823 }
1824
1825 /**
1826 * drm_atomic_clean_old_fb -- Unset old_fb pointers and set plane->fb pointers.
1827 *
1828 * @dev: drm device to check.
1829 * @plane_mask: plane mask for planes that were updated.
1830 * @ret: return value, can be -EDEADLK for a retry.
1831 *
1832 * Before doing an update &drm_plane.old_fb is set to &drm_plane.fb, but before
1833 * dropping the locks old_fb needs to be set to NULL and plane->fb updated. This
1834 * is a common operation for each atomic update, so this call is split off as a
1835 * helper.
1836 */
1837 void drm_atomic_clean_old_fb(struct drm_device *dev,
1838 unsigned plane_mask,
1839 int ret)
1840 {
1841 struct drm_plane *plane;
1842
1843 /* if succeeded, fixup legacy plane crtc/fb ptrs before dropping
1844 * locks (ie. while it is still safe to deref plane->state). We
1845 * need to do this here because the driver entry points cannot
1846 * distinguish between legacy and atomic ioctls.
1847 */
1848 drm_for_each_plane_mask(plane, dev, plane_mask) {
1849 if (ret == 0) {
1850 struct drm_framebuffer *new_fb = plane->state->fb;
1851 if (new_fb)
1852 drm_framebuffer_reference(new_fb);
1853 plane->fb = new_fb;
1854 plane->crtc = plane->state->crtc;
1855
1856 if (plane->old_fb)
1857 drm_framebuffer_unreference(plane->old_fb);
1858 }
1859 plane->old_fb = NULL;
1860 }
1861 }
1862 EXPORT_SYMBOL(drm_atomic_clean_old_fb);
1863
1864 /**
1865 * DOC: explicit fencing properties
1866 *
1867 * Explicit fencing allows userspace to control the buffer synchronization
1868 * between devices. A Fence or a group of fences are transfered to/from
1869 * userspace using Sync File fds and there are two DRM properties for that.
1870 * IN_FENCE_FD on each DRM Plane to send fences to the kernel and
1871 * OUT_FENCE_PTR on each DRM CRTC to receive fences from the kernel.
1872 *
1873 * As a contrast, with implicit fencing the kernel keeps track of any
1874 * ongoing rendering, and automatically ensures that the atomic update waits
1875 * for any pending rendering to complete. For shared buffers represented with
1876 * a &struct dma_buf this is tracked in &struct reservation_object.
1877 * Implicit syncing is how Linux traditionally worked (e.g. DRI2/3 on X.org),
1878 * whereas explicit fencing is what Android wants.
1879 *
1880 * "IN_FENCE_FD”:
1881 * Use this property to pass a fence that DRM should wait on before
1882 * proceeding with the Atomic Commit request and show the framebuffer for
1883 * the plane on the screen. The fence can be either a normal fence or a
1884 * merged one, the sync_file framework will handle both cases and use a
1885 * fence_array if a merged fence is received. Passing -1 here means no
1886 * fences to wait on.
1887 *
1888 * If the Atomic Commit request has the DRM_MODE_ATOMIC_TEST_ONLY flag
1889 * it will only check if the Sync File is a valid one.
1890 *
1891 * On the driver side the fence is stored on the @fence parameter of
1892 * &struct drm_plane_state. Drivers which also support implicit fencing
1893 * should set the implicit fence using drm_atomic_set_fence_for_plane(),
1894 * to make sure there's consistent behaviour between drivers in precedence
1895 * of implicit vs. explicit fencing.
1896 *
1897 * "OUT_FENCE_PTR”:
1898 * Use this property to pass a file descriptor pointer to DRM. Once the
1899 * Atomic Commit request call returns OUT_FENCE_PTR will be filled with
1900 * the file descriptor number of a Sync File. This Sync File contains the
1901 * CRTC fence that will be signaled when all framebuffers present on the
1902 * Atomic Commit * request for that given CRTC are scanned out on the
1903 * screen.
1904 *
1905 * The Atomic Commit request fails if a invalid pointer is passed. If the
1906 * Atomic Commit request fails for any other reason the out fence fd
1907 * returned will be -1. On a Atomic Commit with the
1908 * DRM_MODE_ATOMIC_TEST_ONLY flag the out fence will also be set to -1.
1909 *
1910 * Note that out-fences don't have a special interface to drivers and are
1911 * internally represented by a &struct drm_pending_vblank_event in struct
1912 * &drm_crtc_state, which is also used by the nonblocking atomic commit
1913 * helpers and for the DRM event handling for existing userspace.
1914 */
1915
1916 struct drm_out_fence_state {
1917 s64 __user *out_fence_ptr;
1918 struct sync_file *sync_file;
1919 int fd;
1920 };
1921
1922 static int setup_out_fence(struct drm_out_fence_state *fence_state,
1923 struct dma_fence *fence)
1924 {
1925 fence_state->fd = get_unused_fd_flags(O_CLOEXEC);
1926 if (fence_state->fd < 0)
1927 return fence_state->fd;
1928
1929 if (put_user(fence_state->fd, fence_state->out_fence_ptr))
1930 return -EFAULT;
1931
1932 fence_state->sync_file = sync_file_create(fence);
1933 if (!fence_state->sync_file)
1934 return -ENOMEM;
1935
1936 return 0;
1937 }
1938
1939 static int prepare_crtc_signaling(struct drm_device *dev,
1940 struct drm_atomic_state *state,
1941 struct drm_mode_atomic *arg,
1942 struct drm_file *file_priv,
1943 struct drm_out_fence_state **fence_state,
1944 unsigned int *num_fences)
1945 {
1946 struct drm_crtc *crtc;
1947 struct drm_crtc_state *crtc_state;
1948 int i, ret;
1949
1950 if (arg->flags & DRM_MODE_ATOMIC_TEST_ONLY)
1951 return 0;
1952
1953 for_each_new_crtc_in_state(state, crtc, crtc_state, i) {
1954 u64 __user *fence_ptr;
1955
1956 fence_ptr = get_out_fence_for_crtc(crtc_state->state, crtc);
1957
1958 if (arg->flags & DRM_MODE_PAGE_FLIP_EVENT || fence_ptr) {
1959 struct drm_pending_vblank_event *e;
1960
1961 e = create_vblank_event(dev, arg->user_data);
1962 if (!e)
1963 return -ENOMEM;
1964
1965 crtc_state->event = e;
1966 }
1967
1968 if (arg->flags & DRM_MODE_PAGE_FLIP_EVENT) {
1969 struct drm_pending_vblank_event *e = crtc_state->event;
1970
1971 if (!file_priv)
1972 continue;
1973
1974 ret = drm_event_reserve_init(dev, file_priv, &e->base,
1975 &e->event.base);
1976 if (ret) {
1977 kfree(e);
1978 crtc_state->event = NULL;
1979 return ret;
1980 }
1981 }
1982
1983 if (fence_ptr) {
1984 struct dma_fence *fence;
1985 struct drm_out_fence_state *f;
1986
1987 f = krealloc(*fence_state, sizeof(**fence_state) *
1988 (*num_fences + 1), GFP_KERNEL);
1989 if (!f)
1990 return -ENOMEM;
1991
1992 memset(&f[*num_fences], 0, sizeof(*f));
1993
1994 f[*num_fences].out_fence_ptr = fence_ptr;
1995 *fence_state = f;
1996
1997 fence = drm_crtc_create_fence(crtc);
1998 if (!fence)
1999 return -ENOMEM;
2000
2001 ret = setup_out_fence(&f[(*num_fences)++], fence);
2002 if (ret) {
2003 dma_fence_put(fence);
2004 return ret;
2005 }
2006
2007 crtc_state->event->base.fence = fence;
2008 }
2009 }
2010
2011 return 0;
2012 }
2013
2014 static void complete_crtc_signaling(struct drm_device *dev,
2015 struct drm_atomic_state *state,
2016 struct drm_out_fence_state *fence_state,
2017 unsigned int num_fences,
2018 bool install_fds)
2019 {
2020 struct drm_crtc *crtc;
2021 struct drm_crtc_state *crtc_state;
2022 int i;
2023
2024 if (install_fds) {
2025 for (i = 0; i < num_fences; i++)
2026 fd_install(fence_state[i].fd,
2027 fence_state[i].sync_file->file);
2028
2029 kfree(fence_state);
2030 return;
2031 }
2032
2033 for_each_new_crtc_in_state(state, crtc, crtc_state, i) {
2034 /*
2035 * TEST_ONLY and PAGE_FLIP_EVENT are mutually
2036 * exclusive, if they weren't, this code should be
2037 * called on success for TEST_ONLY too.
2038 */
2039 if (crtc_state->event)
2040 drm_event_cancel_free(dev, &crtc_state->event->base);
2041 }
2042
2043 if (!fence_state)
2044 return;
2045
2046 for (i = 0; i < num_fences; i++) {
2047 if (fence_state[i].sync_file)
2048 fput(fence_state[i].sync_file->file);
2049 if (fence_state[i].fd >= 0)
2050 put_unused_fd(fence_state[i].fd);
2051
2052 /* If this fails log error to the user */
2053 if (fence_state[i].out_fence_ptr &&
2054 put_user(-1, fence_state[i].out_fence_ptr))
2055 DRM_DEBUG_ATOMIC("Couldn't clear out_fence_ptr\n");
2056 }
2057
2058 kfree(fence_state);
2059 }
2060
2061 int drm_mode_atomic_ioctl(struct drm_device *dev,
2062 void *data, struct drm_file *file_priv)
2063 {
2064 struct drm_mode_atomic *arg = data;
2065 uint32_t __user *objs_ptr = (uint32_t __user *)(unsigned long)(arg->objs_ptr);
2066 uint32_t __user *count_props_ptr = (uint32_t __user *)(unsigned long)(arg->count_props_ptr);
2067 uint32_t __user *props_ptr = (uint32_t __user *)(unsigned long)(arg->props_ptr);
2068 uint64_t __user *prop_values_ptr = (uint64_t __user *)(unsigned long)(arg->prop_values_ptr);
2069 unsigned int copied_objs, copied_props;
2070 struct drm_atomic_state *state;
2071 struct drm_modeset_acquire_ctx ctx;
2072 struct drm_plane *plane;
2073 struct drm_out_fence_state *fence_state = NULL;
2074 unsigned plane_mask;
2075 int ret = 0;
2076 unsigned int i, j, num_fences = 0;
2077
2078 /* disallow for drivers not supporting atomic: */
2079 if (!drm_core_check_feature(dev, DRIVER_ATOMIC))
2080 return -EINVAL;
2081
2082 /* disallow for userspace that has not enabled atomic cap (even
2083 * though this may be a bit overkill, since legacy userspace
2084 * wouldn't know how to call this ioctl)
2085 */
2086 if (!file_priv->atomic)
2087 return -EINVAL;
2088
2089 if (arg->flags & ~DRM_MODE_ATOMIC_FLAGS)
2090 return -EINVAL;
2091
2092 if (arg->reserved)
2093 return -EINVAL;
2094
2095 if ((arg->flags & DRM_MODE_PAGE_FLIP_ASYNC) &&
2096 !dev->mode_config.async_page_flip)
2097 return -EINVAL;
2098
2099 /* can't test and expect an event at the same time. */
2100 if ((arg->flags & DRM_MODE_ATOMIC_TEST_ONLY) &&
2101 (arg->flags & DRM_MODE_PAGE_FLIP_EVENT))
2102 return -EINVAL;
2103
2104 drm_modeset_acquire_init(&ctx, 0);
2105
2106 state = drm_atomic_state_alloc(dev);
2107 if (!state)
2108 return -ENOMEM;
2109
2110 state->acquire_ctx = &ctx;
2111 state->allow_modeset = !!(arg->flags & DRM_MODE_ATOMIC_ALLOW_MODESET);
2112
2113 retry:
2114 plane_mask = 0;
2115 copied_objs = 0;
2116 copied_props = 0;
2117
2118 for (i = 0; i < arg->count_objs; i++) {
2119 uint32_t obj_id, count_props;
2120 struct drm_mode_object *obj;
2121
2122 if (get_user(obj_id, objs_ptr + copied_objs)) {
2123 ret = -EFAULT;
2124 goto out;
2125 }
2126
2127 obj = drm_mode_object_find(dev, obj_id, DRM_MODE_OBJECT_ANY);
2128 if (!obj) {
2129 ret = -ENOENT;
2130 goto out;
2131 }
2132
2133 if (!obj->properties) {
2134 drm_mode_object_unreference(obj);
2135 ret = -ENOENT;
2136 goto out;
2137 }
2138
2139 if (get_user(count_props, count_props_ptr + copied_objs)) {
2140 drm_mode_object_unreference(obj);
2141 ret = -EFAULT;
2142 goto out;
2143 }
2144
2145 copied_objs++;
2146
2147 for (j = 0; j < count_props; j++) {
2148 uint32_t prop_id;
2149 uint64_t prop_value;
2150 struct drm_property *prop;
2151
2152 if (get_user(prop_id, props_ptr + copied_props)) {
2153 drm_mode_object_unreference(obj);
2154 ret = -EFAULT;
2155 goto out;
2156 }
2157
2158 prop = drm_mode_obj_find_prop_id(obj, prop_id);
2159 if (!prop) {
2160 drm_mode_object_unreference(obj);
2161 ret = -ENOENT;
2162 goto out;
2163 }
2164
2165 if (copy_from_user(&prop_value,
2166 prop_values_ptr + copied_props,
2167 sizeof(prop_value))) {
2168 drm_mode_object_unreference(obj);
2169 ret = -EFAULT;
2170 goto out;
2171 }
2172
2173 ret = atomic_set_prop(state, obj, prop, prop_value);
2174 if (ret) {
2175 drm_mode_object_unreference(obj);
2176 goto out;
2177 }
2178
2179 copied_props++;
2180 }
2181
2182 if (obj->type == DRM_MODE_OBJECT_PLANE && count_props &&
2183 !(arg->flags & DRM_MODE_ATOMIC_TEST_ONLY)) {
2184 plane = obj_to_plane(obj);
2185 plane_mask |= (1 << drm_plane_index(plane));
2186 plane->old_fb = plane->fb;
2187 }
2188 drm_mode_object_unreference(obj);
2189 }
2190
2191 ret = prepare_crtc_signaling(dev, state, arg, file_priv, &fence_state,
2192 &num_fences);
2193 if (ret)
2194 goto out;
2195
2196 if (arg->flags & DRM_MODE_ATOMIC_TEST_ONLY) {
2197 ret = drm_atomic_check_only(state);
2198 } else if (arg->flags & DRM_MODE_ATOMIC_NONBLOCK) {
2199 ret = drm_atomic_nonblocking_commit(state);
2200 } else {
2201 if (unlikely(drm_debug & DRM_UT_STATE))
2202 drm_atomic_print_state(state);
2203
2204 ret = drm_atomic_commit(state);
2205 }
2206
2207 out:
2208 drm_atomic_clean_old_fb(dev, plane_mask, ret);
2209
2210 complete_crtc_signaling(dev, state, fence_state, num_fences, !ret);
2211
2212 if (ret == -EDEADLK) {
2213 drm_atomic_state_clear(state);
2214 drm_modeset_backoff(&ctx);
2215 goto retry;
2216 }
2217
2218 drm_atomic_state_put(state);
2219
2220 drm_modeset_drop_locks(&ctx);
2221 drm_modeset_acquire_fini(&ctx);
2222
2223 return ret;
2224 }