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 #ifndef DRM_ATOMIC_H_ 29 #define DRM_ATOMIC_H_ 30 31 #include <drm/drm_crtc.h> 32 #include <drm/drm_util.h> 33 34 /** 35 * struct drm_crtc_commit - track modeset commits on a CRTC 36 * 37 * This structure is used to track pending modeset changes and atomic commit on 38 * a per-CRTC basis. Since updating the list should never block, this structure 39 * is reference counted to allow waiters to safely wait on an event to complete, 40 * without holding any locks. 41 * 42 * It has 3 different events in total to allow a fine-grained synchronization 43 * between outstanding updates:: 44 * 45 * atomic commit thread hardware 46 * 47 * write new state into hardware ----> ... 48 * signal hw_done 49 * switch to new state on next 50 * ... v/hblank 51 * 52 * wait for buffers to show up ... 53 * 54 * ... send completion irq 55 * irq handler signals flip_done 56 * cleanup old buffers 57 * 58 * signal cleanup_done 59 * 60 * wait for flip_done <---- 61 * clean up atomic state 62 * 63 * The important bit to know is that &cleanup_done is the terminal event, but the 64 * ordering between &flip_done and &hw_done is entirely up to the specific driver 65 * and modeset state change. 66 * 67 * For an implementation of how to use this look at 68 * drm_atomic_helper_setup_commit() from the atomic helper library. 69 * 70 * See also drm_crtc_commit_wait(). 71 */ 72 struct drm_crtc_commit { 73 /** 74 * @crtc: 75 * 76 * DRM CRTC for this commit. 77 */ 78 struct drm_crtc *crtc; 79 80 /** 81 * @ref: 82 * 83 * Reference count for this structure. Needed to allow blocking on 84 * completions without the risk of the completion disappearing 85 * meanwhile. 86 */ 87 struct kref ref; 88 89 /** 90 * @flip_done: 91 * 92 * Will be signaled when the hardware has flipped to the new set of 93 * buffers. Signals at the same time as when the drm event for this 94 * commit is sent to userspace, or when an out-fence is singalled. Note 95 * that for most hardware, in most cases this happens after @hw_done is 96 * signalled. 97 * 98 * Completion of this stage is signalled implicitly by calling 99 * drm_crtc_send_vblank_event() on &drm_crtc_state.event. 100 */ 101 struct completion flip_done; 102 103 /** 104 * @hw_done: 105 * 106 * Will be signalled when all hw register changes for this commit have 107 * been written out. Especially when disabling a pipe this can be much 108 * later than @flip_done, since that can signal already when the 109 * screen goes black, whereas to fully shut down a pipe more register 110 * I/O is required. 111 * 112 * Note that this does not need to include separately reference-counted 113 * resources like backing storage buffer pinning, or runtime pm 114 * management. 115 * 116 * Drivers should call drm_atomic_helper_commit_hw_done() to signal 117 * completion of this stage. 118 */ 119 struct completion hw_done; 120 121 /** 122 * @cleanup_done: 123 * 124 * Will be signalled after old buffers have been cleaned up by calling 125 * drm_atomic_helper_cleanup_planes(). Since this can only happen after 126 * a vblank wait completed it might be a bit later. This completion is 127 * useful to throttle updates and avoid hardware updates getting ahead 128 * of the buffer cleanup too much. 129 * 130 * Drivers should call drm_atomic_helper_commit_cleanup_done() to signal 131 * completion of this stage. 132 */ 133 struct completion cleanup_done; 134 135 /** 136 * @commit_entry: 137 * 138 * Entry on the per-CRTC &drm_crtc.commit_list. Protected by 139 * $drm_crtc.commit_lock. 140 */ 141 struct list_head commit_entry; 142 143 /** 144 * @event: 145 * 146 * &drm_pending_vblank_event pointer to clean up private events. 147 */ 148 struct drm_pending_vblank_event *event; 149 150 /** 151 * @abort_completion: 152 * 153 * A flag that's set after drm_atomic_helper_setup_commit() takes a 154 * second reference for the completion of $drm_crtc_state.event. It's 155 * used by the free code to remove the second reference if commit fails. 156 */ 157 bool abort_completion; 158 }; 159 160 struct __drm_colorops_state { 161 struct drm_colorop *ptr; 162 struct drm_colorop_state *state, *old_state, *new_state; 163 }; 164 165 struct __drm_planes_state { 166 struct drm_plane *ptr; 167 168 /** 169 * @state_to_destroy: 170 * 171 * Used to track the @drm_plane_state we will need to free when 172 * tearing down the associated &drm_atomic_commit in 173 * $drm_mode_config_funcs.atomic_state_clear or 174 * drm_atomic_commit_default_clear(). 175 * 176 * Before a commit, and the call to 177 * drm_atomic_helper_swap_state() in particular, it points to 178 * the same state than @new_state. After a commit, it points to 179 * the same state than @old_state. 180 */ 181 struct drm_plane_state *state_to_destroy; 182 183 struct drm_plane_state *old_state, *new_state; 184 }; 185 186 struct __drm_crtcs_state { 187 struct drm_crtc *ptr; 188 189 /** 190 * @state_to_destroy: 191 * 192 * Used to track the @drm_crtc_state we will need to free when 193 * tearing down the associated &drm_atomic_commit in 194 * $drm_mode_config_funcs.atomic_state_clear or 195 * drm_atomic_commit_default_clear(). 196 * 197 * Before a commit, and the call to 198 * drm_atomic_helper_swap_state() in particular, it points to 199 * the same state than @new_state. After a commit, it points to 200 * the same state than @old_state. 201 */ 202 struct drm_crtc_state *state_to_destroy; 203 204 struct drm_crtc_state *old_state, *new_state; 205 206 /** 207 * @commit: 208 * 209 * A reference to the CRTC commit object that is kept for use by 210 * drm_atomic_helper_wait_for_flip_done() after 211 * drm_atomic_helper_commit_hw_done() is called. This ensures that a 212 * concurrent commit won't free a commit object that is still in use. 213 */ 214 struct drm_crtc_commit *commit; 215 216 s32 __user *out_fence_ptr; 217 u64 last_vblank_count; 218 }; 219 220 struct __drm_connnectors_state { 221 struct drm_connector *ptr; 222 223 /** 224 * @state_to_destroy: 225 * 226 * Used to track the @drm_connector_state we will need to free 227 * when tearing down the associated &drm_atomic_commit in 228 * $drm_mode_config_funcs.atomic_state_clear or 229 * drm_atomic_commit_default_clear(). 230 * 231 * Before a commit, and the call to 232 * drm_atomic_helper_swap_state() in particular, it points to 233 * the same state than @new_state. After a commit, it points to 234 * the same state than @old_state. 235 */ 236 struct drm_connector_state *state_to_destroy; 237 238 struct drm_connector_state *old_state, *new_state; 239 240 /** 241 * @out_fence_ptr: 242 * 243 * User-provided pointer which the kernel uses to return a sync_file 244 * file descriptor. Used by writeback connectors to signal completion of 245 * the writeback. 246 */ 247 s32 __user *out_fence_ptr; 248 }; 249 250 struct drm_private_obj; 251 struct drm_private_state; 252 253 /** 254 * struct drm_private_state_funcs - atomic state functions for private objects 255 * 256 * These hooks are used by atomic helpers to create, swap and destroy states of 257 * private objects. The structure itself is used as a vtable to identify the 258 * associated private object type. Each private object type that needs to be 259 * added to the atomic states is expected to have an implementation of these 260 * hooks and pass a pointer to its drm_private_state_funcs struct to 261 * drm_atomic_get_private_obj_state(). 262 */ 263 struct drm_private_state_funcs { 264 /** 265 * @atomic_create_state: 266 * 267 * Allocates a pristine, initialized, state for the private 268 * object and returns it. This callback must have no side 269 * effects: in particular, the returned state must not be 270 * assigned to the object's state pointer and it must not affect 271 * the hardware state. 272 * 273 * RETURNS: 274 * 275 * A new, pristine, private state instance or an error pointer 276 * on failure. 277 */ 278 struct drm_private_state *(*atomic_create_state)(struct drm_private_obj *obj); 279 280 /** 281 * @atomic_duplicate_state: 282 * 283 * Duplicate the current state of the private object and return it. It 284 * is an error to call this before obj->state has been initialized. 285 * 286 * RETURNS: 287 * 288 * Duplicated atomic state or NULL when obj->state is not 289 * initialized or allocation failed. 290 */ 291 struct drm_private_state *(*atomic_duplicate_state)(struct drm_private_obj *obj); 292 293 /** 294 * @atomic_destroy_state: 295 * 296 * Frees the private object state created with @atomic_duplicate_state. 297 */ 298 void (*atomic_destroy_state)(struct drm_private_obj *obj, 299 struct drm_private_state *state); 300 301 /** 302 * @atomic_print_state: 303 * 304 * If driver subclasses &struct drm_private_state, it should implement 305 * this optional hook for printing additional driver specific state. 306 * 307 * Do not call this directly, use drm_atomic_private_obj_print_state() 308 * instead. 309 */ 310 void (*atomic_print_state)(struct drm_printer *p, 311 const struct drm_private_state *state); 312 }; 313 314 /** 315 * struct drm_private_obj - base struct for driver private atomic object 316 * 317 * A driver private object is initialized by calling 318 * drm_atomic_private_obj_init() and cleaned up by calling 319 * drm_atomic_private_obj_fini(). 320 * 321 * Currently only tracks the state update functions and the opaque driver 322 * private state itself, but in the future might also track which 323 * &drm_modeset_lock is required to duplicate and update this object's state. 324 * 325 * All private objects must be initialized before the DRM device they are 326 * attached to is registered to the DRM subsystem (call to drm_dev_register()) 327 * and should stay around until this DRM device is unregistered (call to 328 * drm_dev_unregister()). In other words, private objects lifetime is tied 329 * to the DRM device lifetime. This implies that: 330 * 331 * 1/ all calls to drm_atomic_private_obj_init() must be done before calling 332 * drm_dev_register() 333 * 2/ all calls to drm_atomic_private_obj_fini() must be done after calling 334 * drm_dev_unregister() 335 * 336 * If that private object is used to store a state shared by multiple 337 * CRTCs, proper care must be taken to ensure that non-blocking commits are 338 * properly ordered to avoid a use-after-free issue. 339 * 340 * Indeed, assuming a sequence of two non-blocking &drm_atomic_commit on two 341 * different &drm_crtc using different &drm_plane and &drm_connector, so with no 342 * resources shared, there's no guarantee on which commit is going to happen 343 * first. However, the second &drm_atomic_commit will consider the first 344 * &drm_private_obj its old state, and will be in charge of freeing it whenever 345 * the second &drm_atomic_commit is done. 346 * 347 * If the first &drm_atomic_commit happens after it, it will consider its 348 * &drm_private_obj the new state and will be likely to access it, resulting in 349 * an access to a freed memory region. Drivers should store (and get a reference 350 * to) the &drm_crtc_commit structure in our private state in 351 * &drm_mode_config_helper_funcs.atomic_commit_setup, and then wait for that 352 * commit to complete as the first step of 353 * &drm_mode_config_helper_funcs.atomic_commit_tail, similar to 354 * drm_atomic_helper_wait_for_dependencies(). 355 */ 356 struct drm_private_obj { 357 /** 358 * @dev: parent DRM device 359 */ 360 struct drm_device *dev; 361 362 /** 363 * @head: List entry used to attach a private object to a &drm_device 364 * (queued to &drm_mode_config.privobj_list). 365 */ 366 struct list_head head; 367 368 /** 369 * @lock: Modeset lock to protect the state object. 370 */ 371 struct drm_modeset_lock lock; 372 373 /** 374 * @state: Current atomic state for this driver private object. 375 */ 376 struct drm_private_state *state; 377 378 /** 379 * @funcs: 380 * 381 * Functions to manipulate the state of this driver private object, see 382 * &drm_private_state_funcs. 383 */ 384 const struct drm_private_state_funcs *funcs; 385 }; 386 387 /** 388 * drm_for_each_privobj() - private object iterator 389 * 390 * @privobj: pointer to the current private object. Updated after each 391 * iteration 392 * @dev: the DRM device we want get private objects from 393 * 394 * Allows one to iterate over all private objects attached to @dev 395 */ 396 #define drm_for_each_privobj(privobj, dev) \ 397 list_for_each_entry(privobj, &(dev)->mode_config.privobj_list, head) 398 399 /** 400 * struct drm_private_state - base struct for driver private object state 401 * 402 * Currently only contains a backpointer to the overall atomic update, 403 * and the relevant private object but in the future also might hold 404 * synchronization information similar to e.g. &drm_crtc.commit. 405 */ 406 struct drm_private_state { 407 /** 408 * @state: backpointer to global drm_atomic_commit 409 */ 410 struct drm_atomic_commit *state; 411 412 /** 413 * @obj: backpointer to the private object 414 */ 415 struct drm_private_obj *obj; 416 }; 417 418 struct __drm_private_objs_state { 419 struct drm_private_obj *ptr; 420 421 /** 422 * @state_to_destroy: 423 * 424 * Used to track the @drm_private_state we will need to free 425 * when tearing down the associated &drm_atomic_commit in 426 * $drm_mode_config_funcs.atomic_state_clear or 427 * drm_atomic_commit_default_clear(). 428 * 429 * Before a commit, and the call to 430 * drm_atomic_helper_swap_state() in particular, it points to 431 * the same state than @new_state. After a commit, it points to 432 * the same state than @old_state. 433 */ 434 struct drm_private_state *state_to_destroy; 435 436 struct drm_private_state *old_state, *new_state; 437 }; 438 439 /** 440 * struct drm_atomic_commit - Atomic commit structure 441 * 442 * This structure is the kernel counterpart of @drm_mode_atomic and represents 443 * an atomic commit that transitions from an old to a new display state. It 444 * contains all the objects affected by the atomic commit and both the new 445 * state structures and pointers to the old state structures for 446 * these. 447 * 448 * States are added to an atomic update by calling drm_atomic_get_crtc_state(), 449 * drm_atomic_get_plane_state(), drm_atomic_get_connector_state(), or for 450 * private state structures, drm_atomic_get_private_obj_state(). 451 * 452 * NOTE: struct drm_atomic_commit first started as a single collection of 453 * entities state pointers (drm_plane_state, drm_crtc_state, etc.). 454 * 455 * At atomic_check time, you could get the state about to be committed 456 * from drm_atomic_commit, and the one currently running from the 457 * entities state pointer (drm_crtc.state, for example). After the call 458 * to drm_atomic_helper_swap_state(), the entities state pointer would 459 * contain the state previously checked, and the drm_atomic_commit 460 * structure the old state. 461 * 462 * Over time, and in order to avoid confusion, drm_atomic_commit has 463 * grown to have both the old state (ie, the state we replace) and the 464 * new state (ie, the state we want to apply). Those names are stable 465 * during the commit process, which makes it easier to reason about. 466 * 467 * You can still find some traces of that evolution through some hooks 468 * or callbacks taking a drm_atomic_commit parameter called names like 469 * "old_state". This doesn't necessarily mean that the previous 470 * drm_atomic_commit is passed, but rather that this used to be the state 471 * collection we were replacing after drm_atomic_helper_swap_state(), 472 * but the variable name was never updated. 473 * 474 * Some atomic operations implementations followed a similar process. We 475 * first started to pass the entity state only. However, it was pretty 476 * cumbersome for drivers, and especially CRTCs, to retrieve the states 477 * of other components. Thus, we switched to passing the whole 478 * drm_atomic_commit as a parameter to those operations. Similarly, the 479 * transition isn't complete yet, and one might still find atomic 480 * operations taking a drm_atomic_commit pointer, or a component state 481 * pointer. The former is the preferred form. 482 */ 483 struct drm_atomic_commit { 484 /** 485 * @ref: 486 * 487 * Count of all references to this update (will not be freed until zero). 488 */ 489 struct kref ref; 490 491 /** 492 * @dev: Parent DRM Device. 493 */ 494 struct drm_device *dev; 495 496 /** 497 * @allow_modeset: 498 * 499 * Allow full modeset. This is used by the ATOMIC IOCTL handler to 500 * implement the DRM_MODE_ATOMIC_ALLOW_MODESET flag. Drivers should 501 * generally not consult this flag, but instead look at the output of 502 * drm_atomic_crtc_needs_modeset(). The detailed rules are: 503 * 504 * - Drivers must not consult @allow_modeset in the atomic commit path. 505 * Use drm_atomic_crtc_needs_modeset() instead. 506 * 507 * - Drivers must consult @allow_modeset before adding unrelated struct 508 * drm_crtc_state to this commit by calling 509 * drm_atomic_get_crtc_state(). See also the warning in the 510 * documentation for that function. 511 * 512 * - Drivers must never change this flag, it is under the exclusive 513 * control of userspace. 514 * 515 * - Drivers may consult @allow_modeset in the atomic check path, if 516 * they have the choice between an optimal hardware configuration 517 * which requires a modeset, and a less optimal configuration which 518 * can be committed without a modeset. An example would be suboptimal 519 * scanout FIFO allocation resulting in increased idle power 520 * consumption. This allows userspace to avoid flickering and delays 521 * for the normal composition loop at reasonable cost. 522 */ 523 bool allow_modeset : 1; 524 /** 525 * @legacy_cursor_update: 526 * 527 * Hint to enforce legacy cursor IOCTL semantics. 528 * 529 * WARNING: This is thoroughly broken and pretty much impossible to 530 * implement correctly. Drivers must ignore this and should instead 531 * implement &drm_plane_helper_funcs.atomic_async_check and 532 * &drm_plane_helper_funcs.atomic_async_commit hooks. New users of this 533 * flag are not allowed. 534 */ 535 bool legacy_cursor_update : 1; 536 537 /** 538 * @async_update: hint for asynchronous plane update 539 */ 540 bool async_update : 1; 541 542 /** 543 * @duplicated: 544 * 545 * Indicates whether or not this atomic state was duplicated using 546 * drm_atomic_helper_duplicate_state(). Drivers and atomic helpers 547 * should use this to fixup normal inconsistencies in duplicated 548 * states. 549 */ 550 bool duplicated : 1; 551 552 /** 553 * @checked: 554 * 555 * Indicates the state has been checked and thus must no longer 556 * be mutated. For internal use only, do not consult from drivers. 557 */ 558 bool checked : 1; 559 560 /** 561 * @plane_color_pipeline: 562 * 563 * Indicates whether this atomic state originated with a client that 564 * set the DRM_CLIENT_CAP_PLANE_COLOR_PIPELINE. 565 * 566 * Drivers and helper functions should use this to ignore legacy 567 * properties that are incompatible with the drm_plane COLOR_PIPELINE 568 * behavior, such as: 569 * 570 * - COLOR_RANGE 571 * - COLOR_ENCODING 572 * 573 * or any other driver-specific properties that might affect pixel 574 * values. 575 */ 576 bool plane_color_pipeline : 1; 577 578 /** 579 * @colorops: 580 * 581 * Pointer to array of @drm_colorop and @drm_colorop_state part of this 582 * update. 583 */ 584 struct __drm_colorops_state *colorops; 585 586 /** 587 * @planes: 588 * 589 * Pointer to array of @drm_plane and @drm_plane_state part of this 590 * update. 591 */ 592 struct __drm_planes_state *planes; 593 594 /** 595 * @crtcs: 596 * 597 * Pointer to array of @drm_crtc and @drm_crtc_state part of this 598 * update. 599 */ 600 struct __drm_crtcs_state *crtcs; 601 602 /** 603 * @num_connector: size of the @connectors array 604 */ 605 int num_connector; 606 607 /** 608 * @connectors: 609 * 610 * Pointer to array of @drm_connector and @drm_connector_state part of 611 * this update. 612 */ 613 struct __drm_connnectors_state *connectors; 614 615 /** 616 * @num_private_objs: size of the @private_objs array 617 */ 618 int num_private_objs; 619 620 /** 621 * @private_objs: 622 * 623 * Pointer to array of @drm_private_obj and @drm_private_obj_state part 624 * of this update. 625 */ 626 struct __drm_private_objs_state *private_objs; 627 628 /** 629 * @acquire_ctx: acquire context for this atomic modeset state update 630 */ 631 struct drm_modeset_acquire_ctx *acquire_ctx; 632 633 /** 634 * @fake_commit: 635 * 636 * Used for signaling unbound planes/connectors. 637 * When a connector or plane is not bound to any CRTC, it's still important 638 * to preserve linearity to prevent the atomic states from being freed too early. 639 * 640 * This commit (if set) is not bound to any CRTC, but will be completed when 641 * drm_atomic_helper_commit_hw_done() is called. 642 */ 643 struct drm_crtc_commit *fake_commit; 644 645 /** 646 * @commit_work: 647 * 648 * Work item which can be used by the driver or helpers to execute the 649 * commit without blocking. 650 */ 651 struct work_struct commit_work; 652 }; 653 654 void __drm_crtc_commit_free(struct kref *kref); 655 656 /** 657 * drm_crtc_commit_get - acquire a reference to the CRTC commit 658 * @commit: CRTC commit 659 * 660 * Increases the reference of @commit. 661 * 662 * Returns: 663 * The pointer to @commit, with reference increased. 664 */ 665 static inline struct drm_crtc_commit *drm_crtc_commit_get(struct drm_crtc_commit *commit) 666 { 667 kref_get(&commit->ref); 668 return commit; 669 } 670 671 /** 672 * drm_crtc_commit_put - release a reference to the CRTC commmit 673 * @commit: CRTC commit 674 * 675 * This releases a reference to @commit which is freed after removing the 676 * final reference. No locking required and callable from any context. 677 */ 678 static inline void drm_crtc_commit_put(struct drm_crtc_commit *commit) 679 { 680 kref_put(&commit->ref, __drm_crtc_commit_free); 681 } 682 683 int drm_crtc_commit_wait(struct drm_crtc_commit *commit); 684 685 struct drm_atomic_commit * __must_check 686 drm_atomic_commit_alloc(struct drm_device *dev); 687 void drm_atomic_commit_clear(struct drm_atomic_commit *state); 688 689 /** 690 * drm_atomic_commit_get - acquire a reference to the atomic state 691 * @state: The atomic state 692 * 693 * Returns a new reference to the @state 694 */ 695 static inline struct drm_atomic_commit * 696 drm_atomic_commit_get(struct drm_atomic_commit *state) 697 { 698 kref_get(&state->ref); 699 return state; 700 } 701 702 void __drm_atomic_commit_free(struct kref *ref); 703 704 /** 705 * drm_atomic_commit_put - release a reference to the atomic state 706 * @state: The atomic state 707 * 708 * This releases a reference to @state which is freed after removing the 709 * final reference. No locking required and callable from any context. 710 */ 711 static inline void drm_atomic_commit_put(struct drm_atomic_commit *state) 712 { 713 kref_put(&state->ref, __drm_atomic_commit_free); 714 } 715 716 int __must_check 717 drm_atomic_commit_init(struct drm_device *dev, struct drm_atomic_commit *state); 718 void drm_atomic_commit_default_clear(struct drm_atomic_commit *state); 719 void drm_atomic_commit_default_release(struct drm_atomic_commit *state); 720 721 struct drm_crtc_state * __must_check 722 drm_atomic_get_crtc_state(struct drm_atomic_commit *state, 723 struct drm_crtc *crtc); 724 struct drm_plane_state * __must_check 725 drm_atomic_get_plane_state(struct drm_atomic_commit *state, 726 struct drm_plane *plane); 727 struct drm_colorop_state * 728 drm_atomic_get_colorop_state(struct drm_atomic_commit *state, 729 struct drm_colorop *colorop); 730 731 struct drm_colorop_state * 732 drm_atomic_get_old_colorop_state(struct drm_atomic_commit *state, 733 struct drm_colorop *colorop); 734 struct drm_colorop_state * 735 drm_atomic_get_new_colorop_state(struct drm_atomic_commit *state, 736 struct drm_colorop *colorop); 737 738 struct drm_connector_state * __must_check 739 drm_atomic_get_connector_state(struct drm_atomic_commit *state, 740 struct drm_connector *connector); 741 742 int drm_atomic_private_obj_init(struct drm_device *dev, 743 struct drm_private_obj *obj, 744 const struct drm_private_state_funcs *funcs); 745 void drm_atomic_private_obj_fini(struct drm_private_obj *obj); 746 747 struct drm_private_state * __must_check 748 drm_atomic_get_private_obj_state(struct drm_atomic_commit *state, 749 struct drm_private_obj *obj); 750 struct drm_private_state * 751 drm_atomic_get_old_private_obj_state(const struct drm_atomic_commit *state, 752 struct drm_private_obj *obj); 753 struct drm_private_state * 754 drm_atomic_get_new_private_obj_state(const struct drm_atomic_commit *state, 755 struct drm_private_obj *obj); 756 757 struct drm_connector * 758 drm_atomic_get_old_connector_for_encoder(const struct drm_atomic_commit *state, 759 struct drm_encoder *encoder); 760 struct drm_connector * 761 drm_atomic_get_new_connector_for_encoder(const struct drm_atomic_commit *state, 762 struct drm_encoder *encoder); 763 struct drm_connector * 764 drm_atomic_get_connector_for_encoder(const struct drm_encoder *encoder, 765 struct drm_modeset_acquire_ctx *ctx); 766 767 struct drm_crtc * 768 drm_atomic_get_old_crtc_for_encoder(struct drm_atomic_commit *state, 769 struct drm_encoder *encoder); 770 struct drm_crtc * 771 drm_atomic_get_new_crtc_for_encoder(struct drm_atomic_commit *state, 772 struct drm_encoder *encoder); 773 774 /** 775 * drm_atomic_get_old_crtc_state - get old CRTC state, if it exists 776 * @state: global atomic state object 777 * @crtc: CRTC to grab 778 * 779 * This function returns the old CRTC state for the given CRTC, or 780 * NULL if the CRTC is not part of the global atomic state. 781 */ 782 static inline struct drm_crtc_state * 783 drm_atomic_get_old_crtc_state(const struct drm_atomic_commit *state, 784 struct drm_crtc *crtc) 785 { 786 return state->crtcs[drm_crtc_index(crtc)].old_state; 787 } 788 /** 789 * drm_atomic_get_new_crtc_state - get new CRTC state, if it exists 790 * @state: global atomic state object 791 * @crtc: CRTC to grab 792 * 793 * This function returns the new CRTC state for the given CRTC, or 794 * NULL if the CRTC is not part of the global atomic state. 795 */ 796 static inline struct drm_crtc_state * 797 drm_atomic_get_new_crtc_state(const struct drm_atomic_commit *state, 798 struct drm_crtc *crtc) 799 { 800 return state->crtcs[drm_crtc_index(crtc)].new_state; 801 } 802 803 /** 804 * drm_atomic_get_old_plane_state - get plane state, if it exists 805 * @state: global atomic state object 806 * @plane: plane to grab 807 * 808 * This function returns the old plane state for the given plane, or 809 * NULL if the plane is not part of the global atomic state. 810 */ 811 static inline struct drm_plane_state * 812 drm_atomic_get_old_plane_state(const struct drm_atomic_commit *state, 813 struct drm_plane *plane) 814 { 815 return state->planes[drm_plane_index(plane)].old_state; 816 } 817 818 /** 819 * drm_atomic_get_new_plane_state - get plane state, if it exists 820 * @state: global atomic state object 821 * @plane: plane to grab 822 * 823 * This function returns the new plane state for the given plane, or 824 * NULL if the plane is not part of the global atomic state. 825 */ 826 static inline struct drm_plane_state * 827 drm_atomic_get_new_plane_state(const struct drm_atomic_commit *state, 828 struct drm_plane *plane) 829 { 830 return state->planes[drm_plane_index(plane)].new_state; 831 } 832 833 /** 834 * drm_atomic_get_old_connector_state - get connector state, if it exists 835 * @state: global atomic state object 836 * @connector: connector to grab 837 * 838 * This function returns the old connector state for the given connector, 839 * or NULL if the connector is not part of the global atomic state. 840 */ 841 static inline struct drm_connector_state * 842 drm_atomic_get_old_connector_state(const struct drm_atomic_commit *state, 843 struct drm_connector *connector) 844 { 845 int index = drm_connector_index(connector); 846 847 if (index >= state->num_connector) 848 return NULL; 849 850 return state->connectors[index].old_state; 851 } 852 853 /** 854 * drm_atomic_get_new_connector_state - get connector state, if it exists 855 * @state: global atomic state object 856 * @connector: connector to grab 857 * 858 * This function returns the new connector state for the given connector, 859 * or NULL if the connector is not part of the global atomic state. 860 */ 861 static inline struct drm_connector_state * 862 drm_atomic_get_new_connector_state(const struct drm_atomic_commit *state, 863 struct drm_connector *connector) 864 { 865 int index = drm_connector_index(connector); 866 867 if (index >= state->num_connector) 868 return NULL; 869 870 return state->connectors[index].new_state; 871 } 872 873 /** 874 * __drm_atomic_get_current_plane_state - get current plane state 875 * @state: global atomic state object 876 * @plane: plane to grab 877 * 878 * This function returns the plane state for the given plane, either the 879 * new plane state from @state, or if the plane isn't part of the atomic 880 * state update, from @plane. This is useful in atomic check callbacks, 881 * when drivers need to peek at, but not change, state of other planes, 882 * since it avoids threading an error code back up the call chain. 883 * 884 * WARNING: 885 * 886 * Note that this function is in general unsafe since it doesn't check for the 887 * required locking for access state structures. Drivers must ensure that it is 888 * safe to access the returned state structure through other means. One common 889 * example is when planes are fixed to a single CRTC, and the driver knows that 890 * the CRTC lock is held already. In that case holding the CRTC lock gives a 891 * read-lock on all planes connected to that CRTC. But if planes can be 892 * reassigned things get more tricky. In that case it's better to use 893 * drm_atomic_get_plane_state and wire up full error handling. 894 * 895 * Returns: 896 * 897 * Read-only pointer to the current plane state. 898 */ 899 static inline const struct drm_plane_state * 900 __drm_atomic_get_current_plane_state(const struct drm_atomic_commit *state, 901 struct drm_plane *plane) 902 { 903 struct drm_plane_state *plane_state; 904 905 plane_state = drm_atomic_get_new_plane_state(state, plane); 906 if (plane_state) 907 return plane_state; 908 909 /* 910 * If the plane isn't part of the state, fallback to the currently active one. 911 */ 912 return plane->state; 913 } 914 915 int __must_check 916 drm_atomic_add_encoder_bridges(struct drm_atomic_commit *state, 917 struct drm_encoder *encoder); 918 int __must_check 919 drm_atomic_add_affected_connectors(struct drm_atomic_commit *state, 920 struct drm_crtc *crtc); 921 int __must_check 922 drm_atomic_add_affected_planes(struct drm_atomic_commit *state, 923 struct drm_crtc *crtc); 924 int __must_check 925 drm_atomic_add_affected_colorops(struct drm_atomic_commit *state, 926 struct drm_plane *plane); 927 928 int __must_check drm_atomic_check_only(struct drm_atomic_commit *state); 929 int __must_check drm_atomic_commit(struct drm_atomic_commit *state); 930 int __must_check drm_atomic_nonblocking_commit(struct drm_atomic_commit *state); 931 932 void drm_state_dump(struct drm_device *dev, struct drm_printer *p); 933 934 /** 935 * for_each_oldnew_connector_in_state - iterate over all connectors in an atomic update 936 * @__state: &struct drm_atomic_commit pointer 937 * @connector: &struct drm_connector iteration cursor 938 * @old_connector_state: &struct drm_connector_state iteration cursor for the 939 * old state 940 * @new_connector_state: &struct drm_connector_state iteration cursor for the 941 * new state 942 * @__i: int iteration cursor, for macro-internal use 943 * 944 * This iterates over all connectors in an atomic update, tracking both old and 945 * new state. This is useful in places where the state delta needs to be 946 * considered, for example in atomic check functions. 947 */ 948 #define for_each_oldnew_connector_in_state(__state, connector, old_connector_state, new_connector_state, __i) \ 949 for ((__i) = 0; \ 950 (__i) < (__state)->num_connector; \ 951 (__i)++) \ 952 for_each_if ((__state)->connectors[__i].ptr && \ 953 ((connector) = (__state)->connectors[__i].ptr, \ 954 (void)(connector) /* Only to avoid unused-but-set-variable warning */, \ 955 (old_connector_state) = (__state)->connectors[__i].old_state, \ 956 (new_connector_state) = (__state)->connectors[__i].new_state, 1)) 957 958 /** 959 * for_each_old_connector_in_state - iterate over all connectors in an atomic update 960 * @__state: &struct drm_atomic_commit pointer 961 * @connector: &struct drm_connector iteration cursor 962 * @old_connector_state: &struct drm_connector_state iteration cursor for the 963 * old state 964 * @__i: int iteration cursor, for macro-internal use 965 * 966 * This iterates over all connectors in an atomic update, tracking only the old 967 * state. This is useful in disable functions, where we need the old state the 968 * hardware is still in. 969 */ 970 #define for_each_old_connector_in_state(__state, connector, old_connector_state, __i) \ 971 for ((__i) = 0; \ 972 (__i) < (__state)->num_connector; \ 973 (__i)++) \ 974 for_each_if ((__state)->connectors[__i].ptr && \ 975 ((connector) = (__state)->connectors[__i].ptr, \ 976 (void)(connector) /* Only to avoid unused-but-set-variable warning */, \ 977 (old_connector_state) = (__state)->connectors[__i].old_state, 1)) 978 979 /** 980 * for_each_new_connector_in_state - iterate over all connectors in an atomic update 981 * @__state: &struct drm_atomic_commit pointer 982 * @connector: &struct drm_connector iteration cursor 983 * @new_connector_state: &struct drm_connector_state iteration cursor for the 984 * new state 985 * @__i: int iteration cursor, for macro-internal use 986 * 987 * This iterates over all connectors in an atomic update, tracking only the new 988 * state. This is useful in enable functions, where we need the new state the 989 * hardware should be in when the atomic commit operation has completed. 990 */ 991 #define for_each_new_connector_in_state(__state, connector, new_connector_state, __i) \ 992 for ((__i) = 0; \ 993 (__i) < (__state)->num_connector; \ 994 (__i)++) \ 995 for_each_if ((__state)->connectors[__i].ptr && \ 996 ((connector) = (__state)->connectors[__i].ptr, \ 997 (void)(connector) /* Only to avoid unused-but-set-variable warning */, \ 998 (new_connector_state) = (__state)->connectors[__i].new_state, \ 999 (void)(new_connector_state) /* Only to avoid unused-but-set-variable warning */, 1)) 1000 1001 /** 1002 * for_each_oldnew_crtc_in_state - iterate over all CRTCs in an atomic update 1003 * @__state: &struct drm_atomic_commit pointer 1004 * @crtc: &struct drm_crtc iteration cursor 1005 * @old_crtc_state: &struct drm_crtc_state iteration cursor for the old state 1006 * @new_crtc_state: &struct drm_crtc_state iteration cursor for the new state 1007 * @__i: int iteration cursor, for macro-internal use 1008 * 1009 * This iterates over all CRTCs in an atomic update, tracking both old and 1010 * new state. This is useful in places where the state delta needs to be 1011 * considered, for example in atomic check functions. 1012 */ 1013 #define for_each_oldnew_crtc_in_state(__state, crtc, old_crtc_state, new_crtc_state, __i) \ 1014 for ((__i) = 0; \ 1015 (__i) < (__state)->dev->mode_config.num_crtc; \ 1016 (__i)++) \ 1017 for_each_if ((__state)->crtcs[__i].ptr && \ 1018 ((crtc) = (__state)->crtcs[__i].ptr, \ 1019 (void)(crtc) /* Only to avoid unused-but-set-variable warning */, \ 1020 (old_crtc_state) = (__state)->crtcs[__i].old_state, \ 1021 (void)(old_crtc_state) /* Only to avoid unused-but-set-variable warning */, \ 1022 (new_crtc_state) = (__state)->crtcs[__i].new_state, \ 1023 (void)(new_crtc_state) /* Only to avoid unused-but-set-variable warning */, 1)) 1024 1025 /** 1026 * for_each_old_crtc_in_state - iterate over all CRTCs in an atomic update 1027 * @__state: &struct drm_atomic_commit pointer 1028 * @crtc: &struct drm_crtc iteration cursor 1029 * @old_crtc_state: &struct drm_crtc_state iteration cursor for the old state 1030 * @__i: int iteration cursor, for macro-internal use 1031 * 1032 * This iterates over all CRTCs in an atomic update, tracking only the old 1033 * state. This is useful in disable functions, where we need the old state the 1034 * hardware is still in. 1035 */ 1036 #define for_each_old_crtc_in_state(__state, crtc, old_crtc_state, __i) \ 1037 for ((__i) = 0; \ 1038 (__i) < (__state)->dev->mode_config.num_crtc; \ 1039 (__i)++) \ 1040 for_each_if ((__state)->crtcs[__i].ptr && \ 1041 ((crtc) = (__state)->crtcs[__i].ptr, \ 1042 (void)(crtc) /* Only to avoid unused-but-set-variable warning */, \ 1043 (old_crtc_state) = (__state)->crtcs[__i].old_state, 1)) 1044 1045 /** 1046 * for_each_new_crtc_in_state - iterate over all CRTCs in an atomic update 1047 * @__state: &struct drm_atomic_commit pointer 1048 * @crtc: &struct drm_crtc iteration cursor 1049 * @new_crtc_state: &struct drm_crtc_state iteration cursor for the new state 1050 * @__i: int iteration cursor, for macro-internal use 1051 * 1052 * This iterates over all CRTCs in an atomic update, tracking only the new 1053 * state. This is useful in enable functions, where we need the new state the 1054 * hardware should be in when the atomic commit operation has completed. 1055 */ 1056 #define for_each_new_crtc_in_state(__state, crtc, new_crtc_state, __i) \ 1057 for ((__i) = 0; \ 1058 (__i) < (__state)->dev->mode_config.num_crtc; \ 1059 (__i)++) \ 1060 for_each_if ((__state)->crtcs[__i].ptr && \ 1061 ((crtc) = (__state)->crtcs[__i].ptr, \ 1062 (void)(crtc) /* Only to avoid unused-but-set-variable warning */, \ 1063 (new_crtc_state) = (__state)->crtcs[__i].new_state, \ 1064 (void)(new_crtc_state) /* Only to avoid unused-but-set-variable warning */, 1)) 1065 1066 /** 1067 * for_each_oldnew_colorop_in_state - iterate over all colorops in an atomic update 1068 * @__state: &struct drm_atomic_commit pointer 1069 * @colorop: &struct drm_colorop iteration cursor 1070 * @old_colorop_state: &struct drm_colorop_state iteration cursor for the old state 1071 * @new_colorop_state: &struct drm_colorop_state iteration cursor for the new state 1072 * @__i: int iteration cursor, for macro-internal use 1073 * 1074 * This iterates over all colorops in an atomic update, tracking both old and 1075 * new state. This is useful in places where the state delta needs to be 1076 * considered, for example in atomic check functions. 1077 */ 1078 #define for_each_oldnew_colorop_in_state(__state, colorop, old_colorop_state, \ 1079 new_colorop_state, __i) \ 1080 for ((__i) = 0; \ 1081 (__i) < (__state)->dev->mode_config.num_colorop; \ 1082 (__i)++) \ 1083 for_each_if ((__state)->colorops[__i].ptr && \ 1084 ((colorop) = (__state)->colorops[__i].ptr, \ 1085 (void)(colorop) /* Only to avoid unused-but-set-variable warning */, \ 1086 (old_colorop_state) = (__state)->colorops[__i].old_state,\ 1087 (new_colorop_state) = (__state)->colorops[__i].new_state, 1)) 1088 1089 /** 1090 * for_each_new_colorop_in_state - iterate over all colorops in an atomic update 1091 * @__state: &struct drm_atomic_commit pointer 1092 * @colorop: &struct drm_colorop iteration cursor 1093 * @new_colorop_state: &struct drm_colorop_state iteration cursor for the new state 1094 * @__i: int iteration cursor, for macro-internal use 1095 * 1096 * This iterates over all colorops in an atomic update, tracking new state. This is 1097 * useful in places where the state delta needs to be considered, for example in 1098 * atomic check functions. 1099 */ 1100 #define for_each_new_colorop_in_state(__state, colorop, new_colorop_state, __i) \ 1101 for ((__i) = 0; \ 1102 (__i) < (__state)->dev->mode_config.num_colorop; \ 1103 (__i)++) \ 1104 for_each_if ((__state)->colorops[__i].ptr && \ 1105 ((colorop) = (__state)->colorops[__i].ptr, \ 1106 (void)(colorop) /* Only to avoid unused-but-set-variable warning */, \ 1107 (new_colorop_state) = (__state)->colorops[__i].new_state,\ 1108 (void)(new_colorop_state) /* Only to avoid unused-but-set-variable warning */, 1)) 1109 1110 /** 1111 * for_each_oldnew_plane_in_state - iterate over all planes in an atomic update 1112 * @__state: &struct drm_atomic_commit pointer 1113 * @plane: &struct drm_plane iteration cursor 1114 * @old_plane_state: &struct drm_plane_state iteration cursor for the old state 1115 * @new_plane_state: &struct drm_plane_state iteration cursor for the new state 1116 * @__i: int iteration cursor, for macro-internal use 1117 * 1118 * This iterates over all planes in an atomic update, tracking both old and 1119 * new state. This is useful in places where the state delta needs to be 1120 * considered, for example in atomic check functions. 1121 */ 1122 #define for_each_oldnew_plane_in_state(__state, plane, old_plane_state, new_plane_state, __i) \ 1123 for ((__i) = 0; \ 1124 (__i) < (__state)->dev->mode_config.num_total_plane; \ 1125 (__i)++) \ 1126 for_each_if ((__state)->planes[__i].ptr && \ 1127 ((plane) = (__state)->planes[__i].ptr, \ 1128 (void)(plane) /* Only to avoid unused-but-set-variable warning */, \ 1129 (old_plane_state) = (__state)->planes[__i].old_state,\ 1130 (new_plane_state) = (__state)->planes[__i].new_state, 1)) 1131 1132 /** 1133 * for_each_oldnew_plane_in_state_reverse - iterate over all planes in an atomic 1134 * update in reverse order 1135 * @__state: &struct drm_atomic_commit pointer 1136 * @plane: &struct drm_plane iteration cursor 1137 * @old_plane_state: &struct drm_plane_state iteration cursor for the old state 1138 * @new_plane_state: &struct drm_plane_state iteration cursor for the new state 1139 * @__i: int iteration cursor, for macro-internal use 1140 * 1141 * This iterates over all planes in an atomic update in reverse order, 1142 * tracking both old and new state. This is useful in places where the 1143 * state delta needs to be considered, for example in atomic check functions. 1144 */ 1145 #define for_each_oldnew_plane_in_state_reverse(__state, plane, old_plane_state, new_plane_state, __i) \ 1146 for ((__i) = ((__state)->dev->mode_config.num_total_plane - 1); \ 1147 (__i) >= 0; \ 1148 (__i)--) \ 1149 for_each_if ((__state)->planes[__i].ptr && \ 1150 ((plane) = (__state)->planes[__i].ptr, \ 1151 (old_plane_state) = (__state)->planes[__i].old_state,\ 1152 (new_plane_state) = (__state)->planes[__i].new_state, 1)) 1153 1154 /** 1155 * for_each_new_plane_in_state_reverse - other than only tracking new state, 1156 * it's the same as for_each_oldnew_plane_in_state_reverse 1157 * @__state: &struct drm_atomic_commit pointer 1158 * @plane: &struct drm_plane iteration cursor 1159 * @new_plane_state: &struct drm_plane_state iteration cursor for the new state 1160 * @__i: int iteration cursor, for macro-internal use 1161 */ 1162 #define for_each_new_plane_in_state_reverse(__state, plane, new_plane_state, __i) \ 1163 for ((__i) = ((__state)->dev->mode_config.num_total_plane - 1); \ 1164 (__i) >= 0; \ 1165 (__i)--) \ 1166 for_each_if ((__state)->planes[__i].ptr && \ 1167 ((plane) = (__state)->planes[__i].ptr, \ 1168 (new_plane_state) = (__state)->planes[__i].new_state, 1)) 1169 1170 /** 1171 * for_each_old_plane_in_state - iterate over all planes in an atomic update 1172 * @__state: &struct drm_atomic_commit pointer 1173 * @plane: &struct drm_plane iteration cursor 1174 * @old_plane_state: &struct drm_plane_state iteration cursor for the old state 1175 * @__i: int iteration cursor, for macro-internal use 1176 * 1177 * This iterates over all planes in an atomic update, tracking only the old 1178 * state. This is useful in disable functions, where we need the old state the 1179 * hardware is still in. 1180 */ 1181 #define for_each_old_plane_in_state(__state, plane, old_plane_state, __i) \ 1182 for ((__i) = 0; \ 1183 (__i) < (__state)->dev->mode_config.num_total_plane; \ 1184 (__i)++) \ 1185 for_each_if ((__state)->planes[__i].ptr && \ 1186 ((plane) = (__state)->planes[__i].ptr, \ 1187 (old_plane_state) = (__state)->planes[__i].old_state, 1)) 1188 /** 1189 * for_each_new_plane_in_state - iterate over all planes in an atomic update 1190 * @__state: &struct drm_atomic_commit pointer 1191 * @plane: &struct drm_plane iteration cursor 1192 * @new_plane_state: &struct drm_plane_state iteration cursor for the new state 1193 * @__i: int iteration cursor, for macro-internal use 1194 * 1195 * This iterates over all planes in an atomic update, tracking only the new 1196 * state. This is useful in enable functions, where we need the new state the 1197 * hardware should be in when the atomic commit operation has completed. 1198 */ 1199 #define for_each_new_plane_in_state(__state, plane, new_plane_state, __i) \ 1200 for ((__i) = 0; \ 1201 (__i) < (__state)->dev->mode_config.num_total_plane; \ 1202 (__i)++) \ 1203 for_each_if ((__state)->planes[__i].ptr && \ 1204 ((plane) = (__state)->planes[__i].ptr, \ 1205 (void)(plane) /* Only to avoid unused-but-set-variable warning */, \ 1206 (new_plane_state) = (__state)->planes[__i].new_state, \ 1207 (void)(new_plane_state) /* Only to avoid unused-but-set-variable warning */, 1)) 1208 1209 /** 1210 * for_each_oldnew_private_obj_in_state - iterate over all private objects in an atomic update 1211 * @__state: &struct drm_atomic_commit pointer 1212 * @obj: &struct drm_private_obj iteration cursor 1213 * @old_obj_state: &struct drm_private_state iteration cursor for the old state 1214 * @new_obj_state: &struct drm_private_state iteration cursor for the new state 1215 * @__i: int iteration cursor, for macro-internal use 1216 * 1217 * This iterates over all private objects in an atomic update, tracking both 1218 * old and new state. This is useful in places where the state delta needs 1219 * to be considered, for example in atomic check functions. 1220 */ 1221 #define for_each_oldnew_private_obj_in_state(__state, obj, old_obj_state, new_obj_state, __i) \ 1222 for ((__i) = 0; \ 1223 (__i) < (__state)->num_private_objs && \ 1224 ((obj) = (__state)->private_objs[__i].ptr, \ 1225 (old_obj_state) = (__state)->private_objs[__i].old_state, \ 1226 (new_obj_state) = (__state)->private_objs[__i].new_state, 1); \ 1227 (__i)++) 1228 1229 /** 1230 * for_each_old_private_obj_in_state - iterate over all private objects in an atomic update 1231 * @__state: &struct drm_atomic_commit pointer 1232 * @obj: &struct drm_private_obj iteration cursor 1233 * @old_obj_state: &struct drm_private_state iteration cursor for the old state 1234 * @__i: int iteration cursor, for macro-internal use 1235 * 1236 * This iterates over all private objects in an atomic update, tracking only 1237 * the old state. This is useful in disable functions, where we need the old 1238 * state the hardware is still in. 1239 */ 1240 #define for_each_old_private_obj_in_state(__state, obj, old_obj_state, __i) \ 1241 for ((__i) = 0; \ 1242 (__i) < (__state)->num_private_objs && \ 1243 ((obj) = (__state)->private_objs[__i].ptr, \ 1244 (old_obj_state) = (__state)->private_objs[__i].old_state, 1); \ 1245 (__i)++) 1246 1247 /** 1248 * for_each_new_private_obj_in_state - iterate over all private objects in an atomic update 1249 * @__state: &struct drm_atomic_commit pointer 1250 * @obj: &struct drm_private_obj iteration cursor 1251 * @new_obj_state: &struct drm_private_state iteration cursor for the new state 1252 * @__i: int iteration cursor, for macro-internal use 1253 * 1254 * This iterates over all private objects in an atomic update, tracking only 1255 * the new state. This is useful in enable functions, where we need the new state the 1256 * hardware should be in when the atomic commit operation has completed. 1257 */ 1258 #define for_each_new_private_obj_in_state(__state, obj, new_obj_state, __i) \ 1259 for ((__i) = 0; \ 1260 (__i) < (__state)->num_private_objs && \ 1261 ((obj) = (__state)->private_objs[__i].ptr, \ 1262 (void)(obj) /* Only to avoid unused-but-set-variable warning */, \ 1263 (new_obj_state) = (__state)->private_objs[__i].new_state, 1); \ 1264 (__i)++) 1265 1266 /** 1267 * drm_atomic_crtc_needs_modeset - compute combined modeset need 1268 * @state: &drm_crtc_state for the CRTC 1269 * 1270 * To give drivers flexibility &struct drm_crtc_state has 3 booleans to track 1271 * whether the state CRTC changed enough to need a full modeset cycle: 1272 * mode_changed, active_changed and connectors_changed. This helper simply 1273 * combines these three to compute the overall need for a modeset for @state. 1274 * 1275 * The atomic helper code sets these booleans, but drivers can and should 1276 * change them appropriately to accurately represent whether a modeset is 1277 * really needed. In general, drivers should avoid full modesets whenever 1278 * possible. 1279 * 1280 * For example if the CRTC mode has changed, and the hardware is able to enact 1281 * the requested mode change without going through a full modeset, the driver 1282 * should clear mode_changed in its &drm_mode_config_funcs.atomic_check 1283 * implementation. 1284 */ 1285 static inline bool 1286 drm_atomic_crtc_needs_modeset(const struct drm_crtc_state *state) 1287 { 1288 return state->mode_changed || state->active_changed || 1289 state->connectors_changed; 1290 } 1291 1292 /** 1293 * drm_atomic_crtc_effectively_active - compute whether CRTC is actually active 1294 * @state: &drm_crtc_state for the CRTC 1295 * 1296 * When in self refresh mode, the crtc_state->active value will be false, since 1297 * the CRTC is off. However in some cases we're interested in whether the CRTC 1298 * is active, or effectively active (ie: it's connected to an active display). 1299 * In these cases, use this function instead of just checking active. 1300 */ 1301 static inline bool 1302 drm_atomic_crtc_effectively_active(const struct drm_crtc_state *state) 1303 { 1304 return state->active || state->self_refresh_active; 1305 } 1306 1307 /** 1308 * struct drm_bus_cfg - bus configuration 1309 * 1310 * This structure stores the configuration of a physical bus between two 1311 * components in an output pipeline, usually between two bridges, an encoder 1312 * and a bridge, or a bridge and a connector. 1313 * 1314 * The bus configuration is stored in &drm_bridge_state separately for the 1315 * input and output buses, as seen from the point of view of each bridge. The 1316 * bus configuration of a bridge output is usually identical to the 1317 * configuration of the next bridge's input, but may differ if the signals are 1318 * modified between the two bridges, for instance by an inverter on the board. 1319 * The input and output configurations of a bridge may differ if the bridge 1320 * modifies the signals internally, for instance by performing format 1321 * conversion, or modifying signals polarities. 1322 */ 1323 struct drm_bus_cfg { 1324 /** 1325 * @format: format used on this bus (one of the MEDIA_BUS_FMT_* format) 1326 * 1327 * This field should not be directly modified by drivers 1328 * (drm_atomic_bridge_chain_select_bus_fmts() takes care of the bus 1329 * format negotiation). 1330 */ 1331 u32 format; 1332 1333 /** 1334 * @flags: DRM_BUS_* flags used on this bus 1335 */ 1336 u32 flags; 1337 }; 1338 1339 /** 1340 * struct drm_bridge_state - Atomic bridge state object 1341 */ 1342 struct drm_bridge_state { 1343 /** 1344 * @base: inherit from &drm_private_state 1345 */ 1346 struct drm_private_state base; 1347 1348 /** 1349 * @bridge: the bridge this state refers to 1350 */ 1351 struct drm_bridge *bridge; 1352 1353 /** 1354 * @input_bus_cfg: input bus configuration 1355 */ 1356 struct drm_bus_cfg input_bus_cfg; 1357 1358 /** 1359 * @output_bus_cfg: output bus configuration 1360 */ 1361 struct drm_bus_cfg output_bus_cfg; 1362 }; 1363 1364 static inline struct drm_bridge_state * 1365 drm_priv_to_bridge_state(struct drm_private_state *priv) 1366 { 1367 return container_of(priv, struct drm_bridge_state, base); 1368 } 1369 1370 struct drm_bridge_state * 1371 drm_atomic_get_bridge_state(struct drm_atomic_commit *state, 1372 struct drm_bridge *bridge); 1373 struct drm_bridge_state * 1374 drm_atomic_get_old_bridge_state(const struct drm_atomic_commit *state, 1375 struct drm_bridge *bridge); 1376 struct drm_bridge_state * 1377 drm_atomic_get_new_bridge_state(const struct drm_atomic_commit *state, 1378 struct drm_bridge *bridge); 1379 1380 #endif /* DRM_ATOMIC_H_ */ 1381