1 /* 2 * Copyright (C) 2014 Red Hat 3 * Copyright (C) 2014 Intel Corp. 4 * 5 * Permission is hereby granted, free of charge, to any person obtaining a 6 * copy of this software and associated documentation files (the "Software"), 7 * to deal in the Software without restriction, including without limitation 8 * the rights to use, copy, modify, merge, publish, distribute, sublicense, 9 * and/or sell copies of the Software, and to permit persons to whom the 10 * Software is furnished to do so, subject to the following conditions: 11 * 12 * The above copyright notice and this permission notice shall be included in 13 * all copies or substantial portions of the Software. 14 * 15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 18 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR 19 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, 20 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR 21 * OTHER DEALINGS IN THE SOFTWARE. 22 * 23 * Authors: 24 * Rob Clark <robdclark@gmail.com> 25 * Daniel Vetter <daniel.vetter@ffwll.ch> 26 */ 27 28 #include <drm/drmP.h> 29 #include <drm/drm_atomic.h> 30 #include <drm/drm_plane_helper.h> 31 #include <drm/drm_crtc_helper.h> 32 #include <drm/drm_atomic_helper.h> 33 #include <linux/dma-fence.h> 34 35 #include "drm_crtc_helper_internal.h" 36 #include "drm_crtc_internal.h" 37 38 /** 39 * DOC: overview 40 * 41 * This helper library provides implementations of check and commit functions on 42 * top of the CRTC modeset helper callbacks and the plane helper callbacks. It 43 * also provides convenience implementations for the atomic state handling 44 * callbacks for drivers which don't need to subclass the drm core structures to 45 * add their own additional internal state. 46 * 47 * This library also provides default implementations for the check callback in 48 * drm_atomic_helper_check() and for the commit callback with 49 * drm_atomic_helper_commit(). But the individual stages and callbacks are 50 * exposed to allow drivers to mix and match and e.g. use the plane helpers only 51 * together with a driver private modeset implementation. 52 * 53 * This library also provides implementations for all the legacy driver 54 * interfaces on top of the atomic interface. See drm_atomic_helper_set_config(), 55 * drm_atomic_helper_disable_plane(), drm_atomic_helper_disable_plane() and the 56 * various functions to implement set_property callbacks. New drivers must not 57 * implement these functions themselves but must use the provided helpers. 58 * 59 * The atomic helper uses the same function table structures as all other 60 * modesetting helpers. See the documentation for &struct drm_crtc_helper_funcs, 61 * struct &drm_encoder_helper_funcs and &struct drm_connector_helper_funcs. It 62 * also shares the &struct drm_plane_helper_funcs function table with the plane 63 * helpers. 64 */ 65 static void 66 drm_atomic_helper_plane_changed(struct drm_atomic_state *state, 67 struct drm_plane_state *old_plane_state, 68 struct drm_plane_state *plane_state, 69 struct drm_plane *plane) 70 { 71 struct drm_crtc_state *crtc_state; 72 73 if (old_plane_state->crtc) { 74 crtc_state = drm_atomic_get_new_crtc_state(state, 75 old_plane_state->crtc); 76 77 if (WARN_ON(!crtc_state)) 78 return; 79 80 crtc_state->planes_changed = true; 81 } 82 83 if (plane_state->crtc) { 84 crtc_state = drm_atomic_get_new_crtc_state(state, plane_state->crtc); 85 86 if (WARN_ON(!crtc_state)) 87 return; 88 89 crtc_state->planes_changed = true; 90 } 91 } 92 93 static int handle_conflicting_encoders(struct drm_atomic_state *state, 94 bool disable_conflicting_encoders) 95 { 96 struct drm_connector_state *new_conn_state; 97 struct drm_connector *connector; 98 struct drm_connector_list_iter conn_iter; 99 struct drm_encoder *encoder; 100 unsigned encoder_mask = 0; 101 int i, ret = 0; 102 103 /* 104 * First loop, find all newly assigned encoders from the connectors 105 * part of the state. If the same encoder is assigned to multiple 106 * connectors bail out. 107 */ 108 for_each_new_connector_in_state(state, connector, new_conn_state, i) { 109 const struct drm_connector_helper_funcs *funcs = connector->helper_private; 110 struct drm_encoder *new_encoder; 111 112 if (!new_conn_state->crtc) 113 continue; 114 115 if (funcs->atomic_best_encoder) 116 new_encoder = funcs->atomic_best_encoder(connector, new_conn_state); 117 else if (funcs->best_encoder) 118 new_encoder = funcs->best_encoder(connector); 119 else 120 new_encoder = drm_atomic_helper_best_encoder(connector); 121 122 if (new_encoder) { 123 if (encoder_mask & (1 << drm_encoder_index(new_encoder))) { 124 DRM_DEBUG_ATOMIC("[ENCODER:%d:%s] on [CONNECTOR:%d:%s] already assigned\n", 125 new_encoder->base.id, new_encoder->name, 126 connector->base.id, connector->name); 127 128 return -EINVAL; 129 } 130 131 encoder_mask |= 1 << drm_encoder_index(new_encoder); 132 } 133 } 134 135 if (!encoder_mask) 136 return 0; 137 138 /* 139 * Second loop, iterate over all connectors not part of the state. 140 * 141 * If a conflicting encoder is found and disable_conflicting_encoders 142 * is not set, an error is returned. Userspace can provide a solution 143 * through the atomic ioctl. 144 * 145 * If the flag is set conflicting connectors are removed from the crtc 146 * and the crtc is disabled if no encoder is left. This preserves 147 * compatibility with the legacy set_config behavior. 148 */ 149 drm_connector_list_iter_begin(state->dev, &conn_iter); 150 drm_for_each_connector_iter(connector, &conn_iter) { 151 struct drm_crtc_state *crtc_state; 152 153 if (drm_atomic_get_new_connector_state(state, connector)) 154 continue; 155 156 encoder = connector->state->best_encoder; 157 if (!encoder || !(encoder_mask & (1 << drm_encoder_index(encoder)))) 158 continue; 159 160 if (!disable_conflicting_encoders) { 161 DRM_DEBUG_ATOMIC("[ENCODER:%d:%s] in use on [CRTC:%d:%s] by [CONNECTOR:%d:%s]\n", 162 encoder->base.id, encoder->name, 163 connector->state->crtc->base.id, 164 connector->state->crtc->name, 165 connector->base.id, connector->name); 166 ret = -EINVAL; 167 goto out; 168 } 169 170 new_conn_state = drm_atomic_get_connector_state(state, connector); 171 if (IS_ERR(new_conn_state)) { 172 ret = PTR_ERR(new_conn_state); 173 goto out; 174 } 175 176 DRM_DEBUG_ATOMIC("[ENCODER:%d:%s] in use on [CRTC:%d:%s], disabling [CONNECTOR:%d:%s]\n", 177 encoder->base.id, encoder->name, 178 new_conn_state->crtc->base.id, new_conn_state->crtc->name, 179 connector->base.id, connector->name); 180 181 crtc_state = drm_atomic_get_new_crtc_state(state, new_conn_state->crtc); 182 183 ret = drm_atomic_set_crtc_for_connector(new_conn_state, NULL); 184 if (ret) 185 goto out; 186 187 if (!crtc_state->connector_mask) { 188 ret = drm_atomic_set_mode_prop_for_crtc(crtc_state, 189 NULL); 190 if (ret < 0) 191 goto out; 192 193 crtc_state->active = false; 194 } 195 } 196 out: 197 drm_connector_list_iter_end(&conn_iter); 198 199 return ret; 200 } 201 202 static void 203 set_best_encoder(struct drm_atomic_state *state, 204 struct drm_connector_state *conn_state, 205 struct drm_encoder *encoder) 206 { 207 struct drm_crtc_state *crtc_state; 208 struct drm_crtc *crtc; 209 210 if (conn_state->best_encoder) { 211 /* Unset the encoder_mask in the old crtc state. */ 212 crtc = conn_state->connector->state->crtc; 213 214 /* A NULL crtc is an error here because we should have 215 * duplicated a NULL best_encoder when crtc was NULL. 216 * As an exception restoring duplicated atomic state 217 * during resume is allowed, so don't warn when 218 * best_encoder is equal to encoder we intend to set. 219 */ 220 WARN_ON(!crtc && encoder != conn_state->best_encoder); 221 if (crtc) { 222 crtc_state = drm_atomic_get_new_crtc_state(state, crtc); 223 224 crtc_state->encoder_mask &= 225 ~(1 << drm_encoder_index(conn_state->best_encoder)); 226 } 227 } 228 229 if (encoder) { 230 crtc = conn_state->crtc; 231 WARN_ON(!crtc); 232 if (crtc) { 233 crtc_state = drm_atomic_get_new_crtc_state(state, crtc); 234 235 crtc_state->encoder_mask |= 236 1 << drm_encoder_index(encoder); 237 } 238 } 239 240 conn_state->best_encoder = encoder; 241 } 242 243 static void 244 steal_encoder(struct drm_atomic_state *state, 245 struct drm_encoder *encoder) 246 { 247 struct drm_crtc_state *crtc_state; 248 struct drm_connector *connector; 249 struct drm_connector_state *old_connector_state, *new_connector_state; 250 int i; 251 252 for_each_oldnew_connector_in_state(state, connector, old_connector_state, new_connector_state, i) { 253 struct drm_crtc *encoder_crtc; 254 255 if (new_connector_state->best_encoder != encoder) 256 continue; 257 258 encoder_crtc = old_connector_state->crtc; 259 260 DRM_DEBUG_ATOMIC("[ENCODER:%d:%s] in use on [CRTC:%d:%s], stealing it\n", 261 encoder->base.id, encoder->name, 262 encoder_crtc->base.id, encoder_crtc->name); 263 264 set_best_encoder(state, new_connector_state, NULL); 265 266 crtc_state = drm_atomic_get_new_crtc_state(state, encoder_crtc); 267 crtc_state->connectors_changed = true; 268 269 return; 270 } 271 } 272 273 static int 274 update_connector_routing(struct drm_atomic_state *state, 275 struct drm_connector *connector, 276 struct drm_connector_state *old_connector_state, 277 struct drm_connector_state *new_connector_state) 278 { 279 const struct drm_connector_helper_funcs *funcs; 280 struct drm_encoder *new_encoder; 281 struct drm_crtc_state *crtc_state; 282 283 DRM_DEBUG_ATOMIC("Updating routing for [CONNECTOR:%d:%s]\n", 284 connector->base.id, 285 connector->name); 286 287 if (old_connector_state->crtc != new_connector_state->crtc) { 288 if (old_connector_state->crtc) { 289 crtc_state = drm_atomic_get_new_crtc_state(state, old_connector_state->crtc); 290 crtc_state->connectors_changed = true; 291 } 292 293 if (new_connector_state->crtc) { 294 crtc_state = drm_atomic_get_new_crtc_state(state, new_connector_state->crtc); 295 crtc_state->connectors_changed = true; 296 } 297 } 298 299 if (!new_connector_state->crtc) { 300 DRM_DEBUG_ATOMIC("Disabling [CONNECTOR:%d:%s]\n", 301 connector->base.id, 302 connector->name); 303 304 set_best_encoder(state, new_connector_state, NULL); 305 306 return 0; 307 } 308 309 funcs = connector->helper_private; 310 311 if (funcs->atomic_best_encoder) 312 new_encoder = funcs->atomic_best_encoder(connector, 313 new_connector_state); 314 else if (funcs->best_encoder) 315 new_encoder = funcs->best_encoder(connector); 316 else 317 new_encoder = drm_atomic_helper_best_encoder(connector); 318 319 if (!new_encoder) { 320 DRM_DEBUG_ATOMIC("No suitable encoder found for [CONNECTOR:%d:%s]\n", 321 connector->base.id, 322 connector->name); 323 return -EINVAL; 324 } 325 326 if (!drm_encoder_crtc_ok(new_encoder, new_connector_state->crtc)) { 327 DRM_DEBUG_ATOMIC("[ENCODER:%d:%s] incompatible with [CRTC:%d:%s]\n", 328 new_encoder->base.id, 329 new_encoder->name, 330 new_connector_state->crtc->base.id, 331 new_connector_state->crtc->name); 332 return -EINVAL; 333 } 334 335 if (new_encoder == new_connector_state->best_encoder) { 336 set_best_encoder(state, new_connector_state, new_encoder); 337 338 DRM_DEBUG_ATOMIC("[CONNECTOR:%d:%s] keeps [ENCODER:%d:%s], now on [CRTC:%d:%s]\n", 339 connector->base.id, 340 connector->name, 341 new_encoder->base.id, 342 new_encoder->name, 343 new_connector_state->crtc->base.id, 344 new_connector_state->crtc->name); 345 346 return 0; 347 } 348 349 steal_encoder(state, new_encoder); 350 351 set_best_encoder(state, new_connector_state, new_encoder); 352 353 crtc_state = drm_atomic_get_new_crtc_state(state, new_connector_state->crtc); 354 crtc_state->connectors_changed = true; 355 356 DRM_DEBUG_ATOMIC("[CONNECTOR:%d:%s] using [ENCODER:%d:%s] on [CRTC:%d:%s]\n", 357 connector->base.id, 358 connector->name, 359 new_encoder->base.id, 360 new_encoder->name, 361 new_connector_state->crtc->base.id, 362 new_connector_state->crtc->name); 363 364 return 0; 365 } 366 367 static int 368 mode_fixup(struct drm_atomic_state *state) 369 { 370 struct drm_crtc *crtc; 371 struct drm_crtc_state *new_crtc_state; 372 struct drm_connector *connector; 373 struct drm_connector_state *new_conn_state; 374 int i; 375 int ret; 376 377 for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) { 378 if (!new_crtc_state->mode_changed && 379 !new_crtc_state->connectors_changed) 380 continue; 381 382 drm_mode_copy(&new_crtc_state->adjusted_mode, &new_crtc_state->mode); 383 } 384 385 for_each_new_connector_in_state(state, connector, new_conn_state, i) { 386 const struct drm_encoder_helper_funcs *funcs; 387 struct drm_encoder *encoder; 388 389 WARN_ON(!!new_conn_state->best_encoder != !!new_conn_state->crtc); 390 391 if (!new_conn_state->crtc || !new_conn_state->best_encoder) 392 continue; 393 394 new_crtc_state = 395 drm_atomic_get_new_crtc_state(state, new_conn_state->crtc); 396 397 /* 398 * Each encoder has at most one connector (since we always steal 399 * it away), so we won't call ->mode_fixup twice. 400 */ 401 encoder = new_conn_state->best_encoder; 402 funcs = encoder->helper_private; 403 404 ret = drm_bridge_mode_fixup(encoder->bridge, &new_crtc_state->mode, 405 &new_crtc_state->adjusted_mode); 406 if (!ret) { 407 DRM_DEBUG_ATOMIC("Bridge fixup failed\n"); 408 return -EINVAL; 409 } 410 411 if (funcs && funcs->atomic_check) { 412 ret = funcs->atomic_check(encoder, new_crtc_state, 413 new_conn_state); 414 if (ret) { 415 DRM_DEBUG_ATOMIC("[ENCODER:%d:%s] check failed\n", 416 encoder->base.id, encoder->name); 417 return ret; 418 } 419 } else if (funcs && funcs->mode_fixup) { 420 ret = funcs->mode_fixup(encoder, &new_crtc_state->mode, 421 &new_crtc_state->adjusted_mode); 422 if (!ret) { 423 DRM_DEBUG_ATOMIC("[ENCODER:%d:%s] fixup failed\n", 424 encoder->base.id, encoder->name); 425 return -EINVAL; 426 } 427 } 428 } 429 430 for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) { 431 const struct drm_crtc_helper_funcs *funcs; 432 433 if (!new_crtc_state->enable) 434 continue; 435 436 if (!new_crtc_state->mode_changed && 437 !new_crtc_state->connectors_changed) 438 continue; 439 440 funcs = crtc->helper_private; 441 if (!funcs->mode_fixup) 442 continue; 443 444 ret = funcs->mode_fixup(crtc, &new_crtc_state->mode, 445 &new_crtc_state->adjusted_mode); 446 if (!ret) { 447 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] fixup failed\n", 448 crtc->base.id, crtc->name); 449 return -EINVAL; 450 } 451 } 452 453 return 0; 454 } 455 456 static enum drm_mode_status mode_valid_path(struct drm_connector *connector, 457 struct drm_encoder *encoder, 458 struct drm_crtc *crtc, 459 struct drm_display_mode *mode) 460 { 461 enum drm_mode_status ret; 462 463 ret = drm_encoder_mode_valid(encoder, mode); 464 if (ret != MODE_OK) { 465 DRM_DEBUG_ATOMIC("[ENCODER:%d:%s] mode_valid() failed\n", 466 encoder->base.id, encoder->name); 467 return ret; 468 } 469 470 ret = drm_bridge_mode_valid(encoder->bridge, mode); 471 if (ret != MODE_OK) { 472 DRM_DEBUG_ATOMIC("[BRIDGE] mode_valid() failed\n"); 473 return ret; 474 } 475 476 ret = drm_crtc_mode_valid(crtc, mode); 477 if (ret != MODE_OK) { 478 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] mode_valid() failed\n", 479 crtc->base.id, crtc->name); 480 return ret; 481 } 482 483 return ret; 484 } 485 486 static int 487 mode_valid(struct drm_atomic_state *state) 488 { 489 struct drm_connector_state *conn_state; 490 struct drm_connector *connector; 491 int i; 492 493 for_each_new_connector_in_state(state, connector, conn_state, i) { 494 struct drm_encoder *encoder = conn_state->best_encoder; 495 struct drm_crtc *crtc = conn_state->crtc; 496 struct drm_crtc_state *crtc_state; 497 enum drm_mode_status mode_status; 498 struct drm_display_mode *mode; 499 500 if (!crtc || !encoder) 501 continue; 502 503 crtc_state = drm_atomic_get_new_crtc_state(state, crtc); 504 if (!crtc_state) 505 continue; 506 if (!crtc_state->mode_changed && !crtc_state->connectors_changed) 507 continue; 508 509 mode = &crtc_state->mode; 510 511 mode_status = mode_valid_path(connector, encoder, crtc, mode); 512 if (mode_status != MODE_OK) 513 return -EINVAL; 514 } 515 516 return 0; 517 } 518 519 /** 520 * drm_atomic_helper_check_modeset - validate state object for modeset changes 521 * @dev: DRM device 522 * @state: the driver state object 523 * 524 * Check the state object to see if the requested state is physically possible. 525 * This does all the crtc and connector related computations for an atomic 526 * update and adds any additional connectors needed for full modesets. It calls 527 * the various per-object callbacks in the follow order: 528 * 529 * 1. &drm_connector_helper_funcs.atomic_best_encoder for determining the new encoder. 530 * 2. &drm_connector_helper_funcs.atomic_check to validate the connector state. 531 * 3. If it's determined a modeset is needed then all connectors on the affected crtc 532 * crtc are added and &drm_connector_helper_funcs.atomic_check is run on them. 533 * 4. &drm_encoder_helper_funcs.mode_valid, &drm_bridge_funcs.mode_valid and 534 * &drm_crtc_helper_funcs.mode_valid are called on the affected components. 535 * 5. &drm_bridge_funcs.mode_fixup is called on all encoder bridges. 536 * 6. &drm_encoder_helper_funcs.atomic_check is called to validate any encoder state. 537 * This function is only called when the encoder will be part of a configured crtc, 538 * it must not be used for implementing connector property validation. 539 * If this function is NULL, &drm_atomic_encoder_helper_funcs.mode_fixup is called 540 * instead. 541 * 7. &drm_crtc_helper_funcs.mode_fixup is called last, to fix up the mode with crtc constraints. 542 * 543 * &drm_crtc_state.mode_changed is set when the input mode is changed. 544 * &drm_crtc_state.connectors_changed is set when a connector is added or 545 * removed from the crtc. &drm_crtc_state.active_changed is set when 546 * &drm_crtc_state.active changes, which is used for DPMS. 547 * See also: drm_atomic_crtc_needs_modeset() 548 * 549 * IMPORTANT: 550 * 551 * Drivers which set &drm_crtc_state.mode_changed (e.g. in their 552 * &drm_plane_helper_funcs.atomic_check hooks if a plane update can't be done 553 * without a full modeset) _must_ call this function afterwards after that 554 * change. It is permitted to call this function multiple times for the same 555 * update, e.g. when the &drm_crtc_helper_funcs.atomic_check functions depend 556 * upon the adjusted dotclock for fifo space allocation and watermark 557 * computation. 558 * 559 * RETURNS: 560 * Zero for success or -errno 561 */ 562 int 563 drm_atomic_helper_check_modeset(struct drm_device *dev, 564 struct drm_atomic_state *state) 565 { 566 struct drm_crtc *crtc; 567 struct drm_crtc_state *old_crtc_state, *new_crtc_state; 568 struct drm_connector *connector; 569 struct drm_connector_state *old_connector_state, *new_connector_state; 570 int i, ret; 571 unsigned connectors_mask = 0; 572 573 for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) { 574 bool has_connectors = 575 !!new_crtc_state->connector_mask; 576 577 WARN_ON(!drm_modeset_is_locked(&crtc->mutex)); 578 579 if (!drm_mode_equal(&old_crtc_state->mode, &new_crtc_state->mode)) { 580 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] mode changed\n", 581 crtc->base.id, crtc->name); 582 new_crtc_state->mode_changed = true; 583 } 584 585 if (old_crtc_state->enable != new_crtc_state->enable) { 586 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] enable changed\n", 587 crtc->base.id, crtc->name); 588 589 /* 590 * For clarity this assignment is done here, but 591 * enable == 0 is only true when there are no 592 * connectors and a NULL mode. 593 * 594 * The other way around is true as well. enable != 0 595 * iff connectors are attached and a mode is set. 596 */ 597 new_crtc_state->mode_changed = true; 598 new_crtc_state->connectors_changed = true; 599 } 600 601 if (old_crtc_state->active != new_crtc_state->active) { 602 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] active changed\n", 603 crtc->base.id, crtc->name); 604 new_crtc_state->active_changed = true; 605 } 606 607 if (new_crtc_state->enable != has_connectors) { 608 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] enabled/connectors mismatch\n", 609 crtc->base.id, crtc->name); 610 611 return -EINVAL; 612 } 613 } 614 615 ret = handle_conflicting_encoders(state, false); 616 if (ret) 617 return ret; 618 619 for_each_oldnew_connector_in_state(state, connector, old_connector_state, new_connector_state, i) { 620 const struct drm_connector_helper_funcs *funcs = connector->helper_private; 621 622 WARN_ON(!drm_modeset_is_locked(&dev->mode_config.connection_mutex)); 623 624 /* 625 * This only sets crtc->connectors_changed for routing changes, 626 * drivers must set crtc->connectors_changed themselves when 627 * connector properties need to be updated. 628 */ 629 ret = update_connector_routing(state, connector, 630 old_connector_state, 631 new_connector_state); 632 if (ret) 633 return ret; 634 if (old_connector_state->crtc) { 635 new_crtc_state = drm_atomic_get_new_crtc_state(state, 636 old_connector_state->crtc); 637 if (old_connector_state->link_status != 638 new_connector_state->link_status) 639 new_crtc_state->connectors_changed = true; 640 } 641 642 if (funcs->atomic_check) 643 ret = funcs->atomic_check(connector, new_connector_state); 644 if (ret) 645 return ret; 646 647 connectors_mask += BIT(i); 648 } 649 650 /* 651 * After all the routing has been prepared we need to add in any 652 * connector which is itself unchanged, but who's crtc changes it's 653 * configuration. This must be done before calling mode_fixup in case a 654 * crtc only changed its mode but has the same set of connectors. 655 */ 656 for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) { 657 if (!drm_atomic_crtc_needs_modeset(new_crtc_state)) 658 continue; 659 660 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] needs all connectors, enable: %c, active: %c\n", 661 crtc->base.id, crtc->name, 662 new_crtc_state->enable ? 'y' : 'n', 663 new_crtc_state->active ? 'y' : 'n'); 664 665 ret = drm_atomic_add_affected_connectors(state, crtc); 666 if (ret != 0) 667 return ret; 668 669 ret = drm_atomic_add_affected_planes(state, crtc); 670 if (ret != 0) 671 return ret; 672 } 673 674 /* 675 * Iterate over all connectors again, to make sure atomic_check() 676 * has been called on them when a modeset is forced. 677 */ 678 for_each_oldnew_connector_in_state(state, connector, old_connector_state, new_connector_state, i) { 679 const struct drm_connector_helper_funcs *funcs = connector->helper_private; 680 681 if (connectors_mask & BIT(i)) 682 continue; 683 684 if (funcs->atomic_check) 685 ret = funcs->atomic_check(connector, new_connector_state); 686 if (ret) 687 return ret; 688 } 689 690 ret = mode_valid(state); 691 if (ret) 692 return ret; 693 694 return mode_fixup(state); 695 } 696 EXPORT_SYMBOL(drm_atomic_helper_check_modeset); 697 698 /** 699 * drm_atomic_helper_check_planes - validate state object for planes changes 700 * @dev: DRM device 701 * @state: the driver state object 702 * 703 * Check the state object to see if the requested state is physically possible. 704 * This does all the plane update related checks using by calling into the 705 * &drm_crtc_helper_funcs.atomic_check and &drm_plane_helper_funcs.atomic_check 706 * hooks provided by the driver. 707 * 708 * It also sets &drm_crtc_state.planes_changed to indicate that a crtc has 709 * updated planes. 710 * 711 * RETURNS: 712 * Zero for success or -errno 713 */ 714 int 715 drm_atomic_helper_check_planes(struct drm_device *dev, 716 struct drm_atomic_state *state) 717 { 718 struct drm_crtc *crtc; 719 struct drm_crtc_state *new_crtc_state; 720 struct drm_plane *plane; 721 struct drm_plane_state *new_plane_state, *old_plane_state; 722 int i, ret = 0; 723 724 for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i) { 725 const struct drm_plane_helper_funcs *funcs; 726 727 WARN_ON(!drm_modeset_is_locked(&plane->mutex)); 728 729 funcs = plane->helper_private; 730 731 drm_atomic_helper_plane_changed(state, old_plane_state, new_plane_state, plane); 732 733 if (!funcs || !funcs->atomic_check) 734 continue; 735 736 ret = funcs->atomic_check(plane, new_plane_state); 737 if (ret) { 738 DRM_DEBUG_ATOMIC("[PLANE:%d:%s] atomic driver check failed\n", 739 plane->base.id, plane->name); 740 return ret; 741 } 742 } 743 744 for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) { 745 const struct drm_crtc_helper_funcs *funcs; 746 747 funcs = crtc->helper_private; 748 749 if (!funcs || !funcs->atomic_check) 750 continue; 751 752 ret = funcs->atomic_check(crtc, new_crtc_state); 753 if (ret) { 754 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] atomic driver check failed\n", 755 crtc->base.id, crtc->name); 756 return ret; 757 } 758 } 759 760 return ret; 761 } 762 EXPORT_SYMBOL(drm_atomic_helper_check_planes); 763 764 /** 765 * drm_atomic_helper_check - validate state object 766 * @dev: DRM device 767 * @state: the driver state object 768 * 769 * Check the state object to see if the requested state is physically possible. 770 * Only crtcs and planes have check callbacks, so for any additional (global) 771 * checking that a driver needs it can simply wrap that around this function. 772 * Drivers without such needs can directly use this as their 773 * &drm_mode_config_funcs.atomic_check callback. 774 * 775 * This just wraps the two parts of the state checking for planes and modeset 776 * state in the default order: First it calls drm_atomic_helper_check_modeset() 777 * and then drm_atomic_helper_check_planes(). The assumption is that the 778 * @drm_plane_helper_funcs.atomic_check and @drm_crtc_helper_funcs.atomic_check 779 * functions depend upon an updated adjusted_mode.clock to e.g. properly compute 780 * watermarks. 781 * 782 * RETURNS: 783 * Zero for success or -errno 784 */ 785 int drm_atomic_helper_check(struct drm_device *dev, 786 struct drm_atomic_state *state) 787 { 788 int ret; 789 790 ret = drm_atomic_helper_check_modeset(dev, state); 791 if (ret) 792 return ret; 793 794 ret = drm_atomic_helper_check_planes(dev, state); 795 if (ret) 796 return ret; 797 798 return ret; 799 } 800 EXPORT_SYMBOL(drm_atomic_helper_check); 801 802 static void 803 disable_outputs(struct drm_device *dev, struct drm_atomic_state *old_state) 804 { 805 struct drm_connector *connector; 806 struct drm_connector_state *old_conn_state, *new_conn_state; 807 struct drm_crtc *crtc; 808 struct drm_crtc_state *old_crtc_state, *new_crtc_state; 809 int i; 810 811 for_each_oldnew_connector_in_state(old_state, connector, old_conn_state, new_conn_state, i) { 812 const struct drm_encoder_helper_funcs *funcs; 813 struct drm_encoder *encoder; 814 815 /* Shut down everything that's in the changeset and currently 816 * still on. So need to check the old, saved state. */ 817 if (!old_conn_state->crtc) 818 continue; 819 820 old_crtc_state = drm_atomic_get_old_crtc_state(old_state, old_conn_state->crtc); 821 822 if (!old_crtc_state->active || 823 !drm_atomic_crtc_needs_modeset(old_conn_state->crtc->state)) 824 continue; 825 826 encoder = old_conn_state->best_encoder; 827 828 /* We shouldn't get this far if we didn't previously have 829 * an encoder.. but WARN_ON() rather than explode. 830 */ 831 if (WARN_ON(!encoder)) 832 continue; 833 834 funcs = encoder->helper_private; 835 836 DRM_DEBUG_ATOMIC("disabling [ENCODER:%d:%s]\n", 837 encoder->base.id, encoder->name); 838 839 /* 840 * Each encoder has at most one connector (since we always steal 841 * it away), so we won't call disable hooks twice. 842 */ 843 drm_bridge_disable(encoder->bridge); 844 845 /* Right function depends upon target state. */ 846 if (funcs) { 847 if (new_conn_state->crtc && funcs->prepare) 848 funcs->prepare(encoder); 849 else if (funcs->disable) 850 funcs->disable(encoder); 851 else if (funcs->dpms) 852 funcs->dpms(encoder, DRM_MODE_DPMS_OFF); 853 } 854 855 drm_bridge_post_disable(encoder->bridge); 856 } 857 858 for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) { 859 const struct drm_crtc_helper_funcs *funcs; 860 861 /* Shut down everything that needs a full modeset. */ 862 if (!drm_atomic_crtc_needs_modeset(new_crtc_state)) 863 continue; 864 865 if (!old_crtc_state->active) 866 continue; 867 868 funcs = crtc->helper_private; 869 870 DRM_DEBUG_ATOMIC("disabling [CRTC:%d:%s]\n", 871 crtc->base.id, crtc->name); 872 873 874 /* Right function depends upon target state. */ 875 if (new_crtc_state->enable && funcs->prepare) 876 funcs->prepare(crtc); 877 else if (funcs->atomic_disable) 878 funcs->atomic_disable(crtc, old_crtc_state); 879 else if (funcs->disable) 880 funcs->disable(crtc); 881 else 882 funcs->dpms(crtc, DRM_MODE_DPMS_OFF); 883 } 884 } 885 886 /** 887 * drm_atomic_helper_update_legacy_modeset_state - update legacy modeset state 888 * @dev: DRM device 889 * @old_state: atomic state object with old state structures 890 * 891 * This function updates all the various legacy modeset state pointers in 892 * connectors, encoders and crtcs. It also updates the timestamping constants 893 * used for precise vblank timestamps by calling 894 * drm_calc_timestamping_constants(). 895 * 896 * Drivers can use this for building their own atomic commit if they don't have 897 * a pure helper-based modeset implementation. 898 */ 899 void 900 drm_atomic_helper_update_legacy_modeset_state(struct drm_device *dev, 901 struct drm_atomic_state *old_state) 902 { 903 struct drm_connector *connector; 904 struct drm_connector_state *old_conn_state, *new_conn_state; 905 struct drm_crtc *crtc; 906 struct drm_crtc_state *new_crtc_state; 907 int i; 908 909 /* clear out existing links and update dpms */ 910 for_each_oldnew_connector_in_state(old_state, connector, old_conn_state, new_conn_state, i) { 911 if (connector->encoder) { 912 WARN_ON(!connector->encoder->crtc); 913 914 connector->encoder->crtc = NULL; 915 connector->encoder = NULL; 916 } 917 918 crtc = new_conn_state->crtc; 919 if ((!crtc && old_conn_state->crtc) || 920 (crtc && drm_atomic_crtc_needs_modeset(crtc->state))) { 921 struct drm_property *dpms_prop = 922 dev->mode_config.dpms_property; 923 int mode = DRM_MODE_DPMS_OFF; 924 925 if (crtc && crtc->state->active) 926 mode = DRM_MODE_DPMS_ON; 927 928 connector->dpms = mode; 929 drm_object_property_set_value(&connector->base, 930 dpms_prop, mode); 931 } 932 } 933 934 /* set new links */ 935 for_each_new_connector_in_state(old_state, connector, new_conn_state, i) { 936 if (!new_conn_state->crtc) 937 continue; 938 939 if (WARN_ON(!new_conn_state->best_encoder)) 940 continue; 941 942 connector->encoder = new_conn_state->best_encoder; 943 connector->encoder->crtc = new_conn_state->crtc; 944 } 945 946 /* set legacy state in the crtc structure */ 947 for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) { 948 struct drm_plane *primary = crtc->primary; 949 struct drm_plane_state *new_plane_state; 950 951 crtc->mode = new_crtc_state->mode; 952 crtc->enabled = new_crtc_state->enable; 953 954 new_plane_state = 955 drm_atomic_get_new_plane_state(old_state, primary); 956 957 if (new_plane_state && new_plane_state->crtc == crtc) { 958 crtc->x = new_plane_state->src_x >> 16; 959 crtc->y = new_plane_state->src_y >> 16; 960 } 961 962 if (new_crtc_state->enable) 963 drm_calc_timestamping_constants(crtc, 964 &new_crtc_state->adjusted_mode); 965 } 966 } 967 EXPORT_SYMBOL(drm_atomic_helper_update_legacy_modeset_state); 968 969 static void 970 crtc_set_mode(struct drm_device *dev, struct drm_atomic_state *old_state) 971 { 972 struct drm_crtc *crtc; 973 struct drm_crtc_state *new_crtc_state; 974 struct drm_connector *connector; 975 struct drm_connector_state *new_conn_state; 976 int i; 977 978 for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) { 979 const struct drm_crtc_helper_funcs *funcs; 980 981 if (!new_crtc_state->mode_changed) 982 continue; 983 984 funcs = crtc->helper_private; 985 986 if (new_crtc_state->enable && funcs->mode_set_nofb) { 987 DRM_DEBUG_ATOMIC("modeset on [CRTC:%d:%s]\n", 988 crtc->base.id, crtc->name); 989 990 funcs->mode_set_nofb(crtc); 991 } 992 } 993 994 for_each_new_connector_in_state(old_state, connector, new_conn_state, i) { 995 const struct drm_encoder_helper_funcs *funcs; 996 struct drm_encoder *encoder; 997 struct drm_display_mode *mode, *adjusted_mode; 998 999 if (!new_conn_state->best_encoder) 1000 continue; 1001 1002 encoder = new_conn_state->best_encoder; 1003 funcs = encoder->helper_private; 1004 new_crtc_state = new_conn_state->crtc->state; 1005 mode = &new_crtc_state->mode; 1006 adjusted_mode = &new_crtc_state->adjusted_mode; 1007 1008 if (!new_crtc_state->mode_changed) 1009 continue; 1010 1011 DRM_DEBUG_ATOMIC("modeset on [ENCODER:%d:%s]\n", 1012 encoder->base.id, encoder->name); 1013 1014 /* 1015 * Each encoder has at most one connector (since we always steal 1016 * it away), so we won't call mode_set hooks twice. 1017 */ 1018 if (funcs && funcs->atomic_mode_set) { 1019 funcs->atomic_mode_set(encoder, new_crtc_state, 1020 new_conn_state); 1021 } else if (funcs && funcs->mode_set) { 1022 funcs->mode_set(encoder, mode, adjusted_mode); 1023 } 1024 1025 drm_bridge_mode_set(encoder->bridge, mode, adjusted_mode); 1026 } 1027 } 1028 1029 /** 1030 * drm_atomic_helper_commit_modeset_disables - modeset commit to disable outputs 1031 * @dev: DRM device 1032 * @old_state: atomic state object with old state structures 1033 * 1034 * This function shuts down all the outputs that need to be shut down and 1035 * prepares them (if required) with the new mode. 1036 * 1037 * For compatibility with legacy crtc helpers this should be called before 1038 * drm_atomic_helper_commit_planes(), which is what the default commit function 1039 * does. But drivers with different needs can group the modeset commits together 1040 * and do the plane commits at the end. This is useful for drivers doing runtime 1041 * PM since planes updates then only happen when the CRTC is actually enabled. 1042 */ 1043 void drm_atomic_helper_commit_modeset_disables(struct drm_device *dev, 1044 struct drm_atomic_state *old_state) 1045 { 1046 disable_outputs(dev, old_state); 1047 1048 drm_atomic_helper_update_legacy_modeset_state(dev, old_state); 1049 1050 crtc_set_mode(dev, old_state); 1051 } 1052 EXPORT_SYMBOL(drm_atomic_helper_commit_modeset_disables); 1053 1054 /** 1055 * drm_atomic_helper_commit_modeset_enables - modeset commit to enable outputs 1056 * @dev: DRM device 1057 * @old_state: atomic state object with old state structures 1058 * 1059 * This function enables all the outputs with the new configuration which had to 1060 * be turned off for the update. 1061 * 1062 * For compatibility with legacy crtc helpers this should be called after 1063 * drm_atomic_helper_commit_planes(), which is what the default commit function 1064 * does. But drivers with different needs can group the modeset commits together 1065 * and do the plane commits at the end. This is useful for drivers doing runtime 1066 * PM since planes updates then only happen when the CRTC is actually enabled. 1067 */ 1068 void drm_atomic_helper_commit_modeset_enables(struct drm_device *dev, 1069 struct drm_atomic_state *old_state) 1070 { 1071 struct drm_crtc *crtc; 1072 struct drm_crtc_state *new_crtc_state; 1073 struct drm_connector *connector; 1074 struct drm_connector_state *new_conn_state; 1075 int i; 1076 1077 for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) { 1078 const struct drm_crtc_helper_funcs *funcs; 1079 1080 /* Need to filter out CRTCs where only planes change. */ 1081 if (!drm_atomic_crtc_needs_modeset(new_crtc_state)) 1082 continue; 1083 1084 if (!new_crtc_state->active) 1085 continue; 1086 1087 funcs = crtc->helper_private; 1088 1089 if (new_crtc_state->enable) { 1090 DRM_DEBUG_ATOMIC("enabling [CRTC:%d:%s]\n", 1091 crtc->base.id, crtc->name); 1092 1093 if (funcs->enable) 1094 funcs->enable(crtc); 1095 else 1096 funcs->commit(crtc); 1097 } 1098 } 1099 1100 for_each_new_connector_in_state(old_state, connector, new_conn_state, i) { 1101 const struct drm_encoder_helper_funcs *funcs; 1102 struct drm_encoder *encoder; 1103 1104 if (!new_conn_state->best_encoder) 1105 continue; 1106 1107 if (!new_conn_state->crtc->state->active || 1108 !drm_atomic_crtc_needs_modeset(new_conn_state->crtc->state)) 1109 continue; 1110 1111 encoder = new_conn_state->best_encoder; 1112 funcs = encoder->helper_private; 1113 1114 DRM_DEBUG_ATOMIC("enabling [ENCODER:%d:%s]\n", 1115 encoder->base.id, encoder->name); 1116 1117 /* 1118 * Each encoder has at most one connector (since we always steal 1119 * it away), so we won't call enable hooks twice. 1120 */ 1121 drm_bridge_pre_enable(encoder->bridge); 1122 1123 if (funcs) { 1124 if (funcs->enable) 1125 funcs->enable(encoder); 1126 else if (funcs->commit) 1127 funcs->commit(encoder); 1128 } 1129 1130 drm_bridge_enable(encoder->bridge); 1131 } 1132 } 1133 EXPORT_SYMBOL(drm_atomic_helper_commit_modeset_enables); 1134 1135 /** 1136 * drm_atomic_helper_wait_for_fences - wait for fences stashed in plane state 1137 * @dev: DRM device 1138 * @state: atomic state object with old state structures 1139 * @pre_swap: If true, do an interruptible wait, and @state is the new state. 1140 * Otherwise @state is the old state. 1141 * 1142 * For implicit sync, driver should fish the exclusive fence out from the 1143 * incoming fb's and stash it in the drm_plane_state. This is called after 1144 * drm_atomic_helper_swap_state() so it uses the current plane state (and 1145 * just uses the atomic state to find the changed planes) 1146 * 1147 * Note that @pre_swap is needed since the point where we block for fences moves 1148 * around depending upon whether an atomic commit is blocking or 1149 * non-blocking. For non-blocking commit all waiting needs to happen after 1150 * drm_atomic_helper_swap_state() is called, but for blocking commits we want 1151 * to wait **before** we do anything that can't be easily rolled back. That is 1152 * before we call drm_atomic_helper_swap_state(). 1153 * 1154 * Returns zero if success or < 0 if dma_fence_wait() fails. 1155 */ 1156 int drm_atomic_helper_wait_for_fences(struct drm_device *dev, 1157 struct drm_atomic_state *state, 1158 bool pre_swap) 1159 { 1160 struct drm_plane *plane; 1161 struct drm_plane_state *new_plane_state; 1162 int i, ret; 1163 1164 for_each_new_plane_in_state(state, plane, new_plane_state, i) { 1165 if (!new_plane_state->fence) 1166 continue; 1167 1168 WARN_ON(!new_plane_state->fb); 1169 1170 /* 1171 * If waiting for fences pre-swap (ie: nonblock), userspace can 1172 * still interrupt the operation. Instead of blocking until the 1173 * timer expires, make the wait interruptible. 1174 */ 1175 ret = dma_fence_wait(new_plane_state->fence, pre_swap); 1176 if (ret) 1177 return ret; 1178 1179 dma_fence_put(new_plane_state->fence); 1180 new_plane_state->fence = NULL; 1181 } 1182 1183 return 0; 1184 } 1185 EXPORT_SYMBOL(drm_atomic_helper_wait_for_fences); 1186 1187 /** 1188 * drm_atomic_helper_wait_for_vblanks - wait for vblank on crtcs 1189 * @dev: DRM device 1190 * @old_state: atomic state object with old state structures 1191 * 1192 * Helper to, after atomic commit, wait for vblanks on all effected 1193 * crtcs (ie. before cleaning up old framebuffers using 1194 * drm_atomic_helper_cleanup_planes()). It will only wait on crtcs where the 1195 * framebuffers have actually changed to optimize for the legacy cursor and 1196 * plane update use-case. 1197 */ 1198 void 1199 drm_atomic_helper_wait_for_vblanks(struct drm_device *dev, 1200 struct drm_atomic_state *old_state) 1201 { 1202 struct drm_crtc *crtc; 1203 struct drm_crtc_state *old_crtc_state, *new_crtc_state; 1204 int i, ret; 1205 unsigned crtc_mask = 0; 1206 1207 /* 1208 * Legacy cursor ioctls are completely unsynced, and userspace 1209 * relies on that (by doing tons of cursor updates). 1210 */ 1211 if (old_state->legacy_cursor_update) 1212 return; 1213 1214 for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) { 1215 if (!new_crtc_state->active || !new_crtc_state->planes_changed) 1216 continue; 1217 1218 ret = drm_crtc_vblank_get(crtc); 1219 if (ret != 0) 1220 continue; 1221 1222 crtc_mask |= drm_crtc_mask(crtc); 1223 old_state->crtcs[i].last_vblank_count = drm_crtc_vblank_count(crtc); 1224 } 1225 1226 for_each_old_crtc_in_state(old_state, crtc, old_crtc_state, i) { 1227 if (!(crtc_mask & drm_crtc_mask(crtc))) 1228 continue; 1229 1230 ret = wait_event_timeout(dev->vblank[i].queue, 1231 old_state->crtcs[i].last_vblank_count != 1232 drm_crtc_vblank_count(crtc), 1233 msecs_to_jiffies(50)); 1234 1235 WARN(!ret, "[CRTC:%d:%s] vblank wait timed out\n", 1236 crtc->base.id, crtc->name); 1237 1238 drm_crtc_vblank_put(crtc); 1239 } 1240 } 1241 EXPORT_SYMBOL(drm_atomic_helper_wait_for_vblanks); 1242 1243 /** 1244 * drm_atomic_helper_commit_tail - commit atomic update to hardware 1245 * @old_state: atomic state object with old state structures 1246 * 1247 * This is the default implementation for the 1248 * &drm_mode_config_helper_funcs.atomic_commit_tail hook. 1249 * 1250 * Note that the default ordering of how the various stages are called is to 1251 * match the legacy modeset helper library closest. One peculiarity of that is 1252 * that it doesn't mesh well with runtime PM at all. 1253 * 1254 * For drivers supporting runtime PM the recommended sequence is instead :: 1255 * 1256 * drm_atomic_helper_commit_modeset_disables(dev, old_state); 1257 * 1258 * drm_atomic_helper_commit_modeset_enables(dev, old_state); 1259 * 1260 * drm_atomic_helper_commit_planes(dev, old_state, 1261 * DRM_PLANE_COMMIT_ACTIVE_ONLY); 1262 * 1263 * for committing the atomic update to hardware. See the kerneldoc entries for 1264 * these three functions for more details. 1265 */ 1266 void drm_atomic_helper_commit_tail(struct drm_atomic_state *old_state) 1267 { 1268 struct drm_device *dev = old_state->dev; 1269 1270 drm_atomic_helper_commit_modeset_disables(dev, old_state); 1271 1272 drm_atomic_helper_commit_planes(dev, old_state, 0); 1273 1274 drm_atomic_helper_commit_modeset_enables(dev, old_state); 1275 1276 drm_atomic_helper_commit_hw_done(old_state); 1277 1278 drm_atomic_helper_wait_for_vblanks(dev, old_state); 1279 1280 drm_atomic_helper_cleanup_planes(dev, old_state); 1281 } 1282 EXPORT_SYMBOL(drm_atomic_helper_commit_tail); 1283 1284 static void commit_tail(struct drm_atomic_state *old_state) 1285 { 1286 struct drm_device *dev = old_state->dev; 1287 const struct drm_mode_config_helper_funcs *funcs; 1288 1289 funcs = dev->mode_config.helper_private; 1290 1291 drm_atomic_helper_wait_for_fences(dev, old_state, false); 1292 1293 drm_atomic_helper_wait_for_dependencies(old_state); 1294 1295 if (funcs && funcs->atomic_commit_tail) 1296 funcs->atomic_commit_tail(old_state); 1297 else 1298 drm_atomic_helper_commit_tail(old_state); 1299 1300 drm_atomic_helper_commit_cleanup_done(old_state); 1301 1302 drm_atomic_state_put(old_state); 1303 } 1304 1305 static void commit_work(struct work_struct *work) 1306 { 1307 struct drm_atomic_state *state = container_of(work, 1308 struct drm_atomic_state, 1309 commit_work); 1310 commit_tail(state); 1311 } 1312 1313 /** 1314 * drm_atomic_helper_commit - commit validated state object 1315 * @dev: DRM device 1316 * @state: the driver state object 1317 * @nonblock: whether nonblocking behavior is requested. 1318 * 1319 * This function commits a with drm_atomic_helper_check() pre-validated state 1320 * object. This can still fail when e.g. the framebuffer reservation fails. This 1321 * function implements nonblocking commits, using 1322 * drm_atomic_helper_setup_commit() and related functions. 1323 * 1324 * Committing the actual hardware state is done through the 1325 * &drm_mode_config_helper_funcs.atomic_commit_tail callback, or it's default 1326 * implementation drm_atomic_helper_commit_tail(). 1327 * 1328 * RETURNS: 1329 * Zero for success or -errno. 1330 */ 1331 int drm_atomic_helper_commit(struct drm_device *dev, 1332 struct drm_atomic_state *state, 1333 bool nonblock) 1334 { 1335 int ret; 1336 1337 ret = drm_atomic_helper_setup_commit(state, nonblock); 1338 if (ret) 1339 return ret; 1340 1341 INIT_WORK(&state->commit_work, commit_work); 1342 1343 ret = drm_atomic_helper_prepare_planes(dev, state); 1344 if (ret) 1345 return ret; 1346 1347 if (!nonblock) { 1348 ret = drm_atomic_helper_wait_for_fences(dev, state, true); 1349 if (ret) { 1350 drm_atomic_helper_cleanup_planes(dev, state); 1351 return ret; 1352 } 1353 } 1354 1355 /* 1356 * This is the point of no return - everything below never fails except 1357 * when the hw goes bonghits. Which means we can commit the new state on 1358 * the software side now. 1359 */ 1360 1361 drm_atomic_helper_swap_state(state, true); 1362 1363 /* 1364 * Everything below can be run asynchronously without the need to grab 1365 * any modeset locks at all under one condition: It must be guaranteed 1366 * that the asynchronous work has either been cancelled (if the driver 1367 * supports it, which at least requires that the framebuffers get 1368 * cleaned up with drm_atomic_helper_cleanup_planes()) or completed 1369 * before the new state gets committed on the software side with 1370 * drm_atomic_helper_swap_state(). 1371 * 1372 * This scheme allows new atomic state updates to be prepared and 1373 * checked in parallel to the asynchronous completion of the previous 1374 * update. Which is important since compositors need to figure out the 1375 * composition of the next frame right after having submitted the 1376 * current layout. 1377 * 1378 * NOTE: Commit work has multiple phases, first hardware commit, then 1379 * cleanup. We want them to overlap, hence need system_unbound_wq to 1380 * make sure work items don't artifically stall on each another. 1381 */ 1382 1383 drm_atomic_state_get(state); 1384 if (nonblock) 1385 queue_work(system_unbound_wq, &state->commit_work); 1386 else 1387 commit_tail(state); 1388 1389 return 0; 1390 } 1391 EXPORT_SYMBOL(drm_atomic_helper_commit); 1392 1393 /** 1394 * DOC: implementing nonblocking commit 1395 * 1396 * Nonblocking atomic commits have to be implemented in the following sequence: 1397 * 1398 * 1. Run drm_atomic_helper_prepare_planes() first. This is the only function 1399 * which commit needs to call which can fail, so we want to run it first and 1400 * synchronously. 1401 * 1402 * 2. Synchronize with any outstanding nonblocking commit worker threads which 1403 * might be affected the new state update. This can be done by either cancelling 1404 * or flushing the work items, depending upon whether the driver can deal with 1405 * cancelled updates. Note that it is important to ensure that the framebuffer 1406 * cleanup is still done when cancelling. 1407 * 1408 * Asynchronous workers need to have sufficient parallelism to be able to run 1409 * different atomic commits on different CRTCs in parallel. The simplest way to 1410 * achive this is by running them on the &system_unbound_wq work queue. Note 1411 * that drivers are not required to split up atomic commits and run an 1412 * individual commit in parallel - userspace is supposed to do that if it cares. 1413 * But it might be beneficial to do that for modesets, since those necessarily 1414 * must be done as one global operation, and enabling or disabling a CRTC can 1415 * take a long time. But even that is not required. 1416 * 1417 * 3. The software state is updated synchronously with 1418 * drm_atomic_helper_swap_state(). Doing this under the protection of all modeset 1419 * locks means concurrent callers never see inconsistent state. And doing this 1420 * while it's guaranteed that no relevant nonblocking worker runs means that 1421 * nonblocking workers do not need grab any locks. Actually they must not grab 1422 * locks, for otherwise the work flushing will deadlock. 1423 * 1424 * 4. Schedule a work item to do all subsequent steps, using the split-out 1425 * commit helpers: a) pre-plane commit b) plane commit c) post-plane commit and 1426 * then cleaning up the framebuffers after the old framebuffer is no longer 1427 * being displayed. 1428 * 1429 * The above scheme is implemented in the atomic helper libraries in 1430 * drm_atomic_helper_commit() using a bunch of helper functions. See 1431 * drm_atomic_helper_setup_commit() for a starting point. 1432 */ 1433 1434 static int stall_checks(struct drm_crtc *crtc, bool nonblock) 1435 { 1436 struct drm_crtc_commit *commit, *stall_commit = NULL; 1437 bool completed = true; 1438 int i; 1439 long ret = 0; 1440 1441 spin_lock(&crtc->commit_lock); 1442 i = 0; 1443 list_for_each_entry(commit, &crtc->commit_list, commit_entry) { 1444 if (i == 0) { 1445 completed = try_wait_for_completion(&commit->flip_done); 1446 /* Userspace is not allowed to get ahead of the previous 1447 * commit with nonblocking ones. */ 1448 if (!completed && nonblock) { 1449 spin_unlock(&crtc->commit_lock); 1450 return -EBUSY; 1451 } 1452 } else if (i == 1) { 1453 stall_commit = commit; 1454 drm_crtc_commit_get(stall_commit); 1455 break; 1456 } 1457 1458 i++; 1459 } 1460 spin_unlock(&crtc->commit_lock); 1461 1462 if (!stall_commit) 1463 return 0; 1464 1465 /* We don't want to let commits get ahead of cleanup work too much, 1466 * stalling on 2nd previous commit means triple-buffer won't ever stall. 1467 */ 1468 ret = wait_for_completion_interruptible_timeout(&stall_commit->cleanup_done, 1469 10*HZ); 1470 if (ret == 0) 1471 DRM_ERROR("[CRTC:%d:%s] cleanup_done timed out\n", 1472 crtc->base.id, crtc->name); 1473 1474 drm_crtc_commit_put(stall_commit); 1475 1476 return ret < 0 ? ret : 0; 1477 } 1478 1479 static void release_crtc_commit(struct completion *completion) 1480 { 1481 struct drm_crtc_commit *commit = container_of(completion, 1482 typeof(*commit), 1483 flip_done); 1484 1485 drm_crtc_commit_put(commit); 1486 } 1487 1488 /** 1489 * drm_atomic_helper_setup_commit - setup possibly nonblocking commit 1490 * @state: new modeset state to be committed 1491 * @nonblock: whether nonblocking behavior is requested. 1492 * 1493 * This function prepares @state to be used by the atomic helper's support for 1494 * nonblocking commits. Drivers using the nonblocking commit infrastructure 1495 * should always call this function from their 1496 * &drm_mode_config_funcs.atomic_commit hook. 1497 * 1498 * To be able to use this support drivers need to use a few more helper 1499 * functions. drm_atomic_helper_wait_for_dependencies() must be called before 1500 * actually committing the hardware state, and for nonblocking commits this call 1501 * must be placed in the async worker. See also drm_atomic_helper_swap_state() 1502 * and it's stall parameter, for when a driver's commit hooks look at the 1503 * &drm_crtc.state, &drm_plane.state or &drm_connector.state pointer directly. 1504 * 1505 * Completion of the hardware commit step must be signalled using 1506 * drm_atomic_helper_commit_hw_done(). After this step the driver is not allowed 1507 * to read or change any permanent software or hardware modeset state. The only 1508 * exception is state protected by other means than &drm_modeset_lock locks. 1509 * Only the free standing @state with pointers to the old state structures can 1510 * be inspected, e.g. to clean up old buffers using 1511 * drm_atomic_helper_cleanup_planes(). 1512 * 1513 * At the very end, before cleaning up @state drivers must call 1514 * drm_atomic_helper_commit_cleanup_done(). 1515 * 1516 * This is all implemented by in drm_atomic_helper_commit(), giving drivers a 1517 * complete and esay-to-use default implementation of the atomic_commit() hook. 1518 * 1519 * The tracking of asynchronously executed and still pending commits is done 1520 * using the core structure &drm_crtc_commit. 1521 * 1522 * By default there's no need to clean up resources allocated by this function 1523 * explicitly: drm_atomic_state_default_clear() will take care of that 1524 * automatically. 1525 * 1526 * Returns: 1527 * 1528 * 0 on success. -EBUSY when userspace schedules nonblocking commits too fast, 1529 * -ENOMEM on allocation failures and -EINTR when a signal is pending. 1530 */ 1531 int drm_atomic_helper_setup_commit(struct drm_atomic_state *state, 1532 bool nonblock) 1533 { 1534 struct drm_crtc *crtc; 1535 struct drm_crtc_state *old_crtc_state, *new_crtc_state; 1536 struct drm_crtc_commit *commit; 1537 int i, ret; 1538 1539 for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) { 1540 commit = kzalloc(sizeof(*commit), GFP_KERNEL); 1541 if (!commit) 1542 return -ENOMEM; 1543 1544 init_completion(&commit->flip_done); 1545 init_completion(&commit->hw_done); 1546 init_completion(&commit->cleanup_done); 1547 INIT_LIST_HEAD(&commit->commit_entry); 1548 kref_init(&commit->ref); 1549 commit->crtc = crtc; 1550 1551 state->crtcs[i].commit = commit; 1552 1553 ret = stall_checks(crtc, nonblock); 1554 if (ret) 1555 return ret; 1556 1557 /* Drivers only send out events when at least either current or 1558 * new CRTC state is active. Complete right away if everything 1559 * stays off. */ 1560 if (!old_crtc_state->active && !new_crtc_state->active) { 1561 complete_all(&commit->flip_done); 1562 continue; 1563 } 1564 1565 /* Legacy cursor updates are fully unsynced. */ 1566 if (state->legacy_cursor_update) { 1567 complete_all(&commit->flip_done); 1568 continue; 1569 } 1570 1571 if (!new_crtc_state->event) { 1572 commit->event = kzalloc(sizeof(*commit->event), 1573 GFP_KERNEL); 1574 if (!commit->event) 1575 return -ENOMEM; 1576 1577 new_crtc_state->event = commit->event; 1578 } 1579 1580 new_crtc_state->event->base.completion = &commit->flip_done; 1581 new_crtc_state->event->base.completion_release = release_crtc_commit; 1582 drm_crtc_commit_get(commit); 1583 } 1584 1585 return 0; 1586 } 1587 EXPORT_SYMBOL(drm_atomic_helper_setup_commit); 1588 1589 1590 static struct drm_crtc_commit *preceeding_commit(struct drm_crtc *crtc) 1591 { 1592 struct drm_crtc_commit *commit; 1593 int i = 0; 1594 1595 list_for_each_entry(commit, &crtc->commit_list, commit_entry) { 1596 /* skip the first entry, that's the current commit */ 1597 if (i == 1) 1598 return commit; 1599 i++; 1600 } 1601 1602 return NULL; 1603 } 1604 1605 /** 1606 * drm_atomic_helper_wait_for_dependencies - wait for required preceeding commits 1607 * @old_state: atomic state object with old state structures 1608 * 1609 * This function waits for all preceeding commits that touch the same CRTC as 1610 * @old_state to both be committed to the hardware (as signalled by 1611 * drm_atomic_helper_commit_hw_done) and executed by the hardware (as signalled 1612 * by calling drm_crtc_vblank_send_event() on the &drm_crtc_state.event). 1613 * 1614 * This is part of the atomic helper support for nonblocking commits, see 1615 * drm_atomic_helper_setup_commit() for an overview. 1616 */ 1617 void drm_atomic_helper_wait_for_dependencies(struct drm_atomic_state *old_state) 1618 { 1619 struct drm_crtc *crtc; 1620 struct drm_crtc_state *new_crtc_state; 1621 struct drm_crtc_commit *commit; 1622 int i; 1623 long ret; 1624 1625 for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) { 1626 spin_lock(&crtc->commit_lock); 1627 commit = preceeding_commit(crtc); 1628 if (commit) 1629 drm_crtc_commit_get(commit); 1630 spin_unlock(&crtc->commit_lock); 1631 1632 if (!commit) 1633 continue; 1634 1635 ret = wait_for_completion_timeout(&commit->hw_done, 1636 10*HZ); 1637 if (ret == 0) 1638 DRM_ERROR("[CRTC:%d:%s] hw_done timed out\n", 1639 crtc->base.id, crtc->name); 1640 1641 /* Currently no support for overwriting flips, hence 1642 * stall for previous one to execute completely. */ 1643 ret = wait_for_completion_timeout(&commit->flip_done, 1644 10*HZ); 1645 if (ret == 0) 1646 DRM_ERROR("[CRTC:%d:%s] flip_done timed out\n", 1647 crtc->base.id, crtc->name); 1648 1649 drm_crtc_commit_put(commit); 1650 } 1651 } 1652 EXPORT_SYMBOL(drm_atomic_helper_wait_for_dependencies); 1653 1654 /** 1655 * drm_atomic_helper_commit_hw_done - setup possible nonblocking commit 1656 * @old_state: atomic state object with old state structures 1657 * 1658 * This function is used to signal completion of the hardware commit step. After 1659 * this step the driver is not allowed to read or change any permanent software 1660 * or hardware modeset state. The only exception is state protected by other 1661 * means than &drm_modeset_lock locks. 1662 * 1663 * Drivers should try to postpone any expensive or delayed cleanup work after 1664 * this function is called. 1665 * 1666 * This is part of the atomic helper support for nonblocking commits, see 1667 * drm_atomic_helper_setup_commit() for an overview. 1668 */ 1669 void drm_atomic_helper_commit_hw_done(struct drm_atomic_state *old_state) 1670 { 1671 struct drm_crtc *crtc; 1672 struct drm_crtc_state *new_crtc_state; 1673 struct drm_crtc_commit *commit; 1674 int i; 1675 1676 for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) { 1677 commit = old_state->crtcs[i].commit; 1678 if (!commit) 1679 continue; 1680 1681 /* backend must have consumed any event by now */ 1682 WARN_ON(new_crtc_state->event); 1683 spin_lock(&crtc->commit_lock); 1684 complete_all(&commit->hw_done); 1685 spin_unlock(&crtc->commit_lock); 1686 } 1687 } 1688 EXPORT_SYMBOL(drm_atomic_helper_commit_hw_done); 1689 1690 /** 1691 * drm_atomic_helper_commit_cleanup_done - signal completion of commit 1692 * @old_state: atomic state object with old state structures 1693 * 1694 * This signals completion of the atomic update @old_state, including any 1695 * cleanup work. If used, it must be called right before calling 1696 * drm_atomic_state_put(). 1697 * 1698 * This is part of the atomic helper support for nonblocking commits, see 1699 * drm_atomic_helper_setup_commit() for an overview. 1700 */ 1701 void drm_atomic_helper_commit_cleanup_done(struct drm_atomic_state *old_state) 1702 { 1703 struct drm_crtc *crtc; 1704 struct drm_crtc_state *new_crtc_state; 1705 struct drm_crtc_commit *commit; 1706 int i; 1707 long ret; 1708 1709 for_each_new_crtc_in_state(old_state, crtc, new_crtc_state, i) { 1710 commit = old_state->crtcs[i].commit; 1711 if (WARN_ON(!commit)) 1712 continue; 1713 1714 spin_lock(&crtc->commit_lock); 1715 complete_all(&commit->cleanup_done); 1716 WARN_ON(!try_wait_for_completion(&commit->hw_done)); 1717 1718 /* commit_list borrows our reference, need to remove before we 1719 * clean up our drm_atomic_state. But only after it actually 1720 * completed, otherwise subsequent commits won't stall properly. */ 1721 if (try_wait_for_completion(&commit->flip_done)) 1722 goto del_commit; 1723 1724 spin_unlock(&crtc->commit_lock); 1725 1726 /* We must wait for the vblank event to signal our completion 1727 * before releasing our reference, since the vblank work does 1728 * not hold a reference of its own. */ 1729 ret = wait_for_completion_timeout(&commit->flip_done, 1730 10*HZ); 1731 if (ret == 0) 1732 DRM_ERROR("[CRTC:%d:%s] flip_done timed out\n", 1733 crtc->base.id, crtc->name); 1734 1735 spin_lock(&crtc->commit_lock); 1736 del_commit: 1737 list_del(&commit->commit_entry); 1738 spin_unlock(&crtc->commit_lock); 1739 } 1740 } 1741 EXPORT_SYMBOL(drm_atomic_helper_commit_cleanup_done); 1742 1743 /** 1744 * drm_atomic_helper_prepare_planes - prepare plane resources before commit 1745 * @dev: DRM device 1746 * @state: atomic state object with new state structures 1747 * 1748 * This function prepares plane state, specifically framebuffers, for the new 1749 * configuration, by calling &drm_plane_helper_funcs.prepare_fb. If any failure 1750 * is encountered this function will call &drm_plane_helper_funcs.cleanup_fb on 1751 * any already successfully prepared framebuffer. 1752 * 1753 * Returns: 1754 * 0 on success, negative error code on failure. 1755 */ 1756 int drm_atomic_helper_prepare_planes(struct drm_device *dev, 1757 struct drm_atomic_state *state) 1758 { 1759 struct drm_plane *plane; 1760 struct drm_plane_state *new_plane_state; 1761 int ret, i, j; 1762 1763 for_each_new_plane_in_state(state, plane, new_plane_state, i) { 1764 const struct drm_plane_helper_funcs *funcs; 1765 1766 funcs = plane->helper_private; 1767 1768 if (funcs->prepare_fb) { 1769 ret = funcs->prepare_fb(plane, new_plane_state); 1770 if (ret) 1771 goto fail; 1772 } 1773 } 1774 1775 return 0; 1776 1777 fail: 1778 for_each_new_plane_in_state(state, plane, new_plane_state, j) { 1779 const struct drm_plane_helper_funcs *funcs; 1780 1781 if (j >= i) 1782 continue; 1783 1784 funcs = plane->helper_private; 1785 1786 if (funcs->cleanup_fb) 1787 funcs->cleanup_fb(plane, new_plane_state); 1788 } 1789 1790 return ret; 1791 } 1792 EXPORT_SYMBOL(drm_atomic_helper_prepare_planes); 1793 1794 static bool plane_crtc_active(const struct drm_plane_state *state) 1795 { 1796 return state->crtc && state->crtc->state->active; 1797 } 1798 1799 /** 1800 * drm_atomic_helper_commit_planes - commit plane state 1801 * @dev: DRM device 1802 * @old_state: atomic state object with old state structures 1803 * @flags: flags for committing plane state 1804 * 1805 * This function commits the new plane state using the plane and atomic helper 1806 * functions for planes and crtcs. It assumes that the atomic state has already 1807 * been pushed into the relevant object state pointers, since this step can no 1808 * longer fail. 1809 * 1810 * It still requires the global state object @old_state to know which planes and 1811 * crtcs need to be updated though. 1812 * 1813 * Note that this function does all plane updates across all CRTCs in one step. 1814 * If the hardware can't support this approach look at 1815 * drm_atomic_helper_commit_planes_on_crtc() instead. 1816 * 1817 * Plane parameters can be updated by applications while the associated CRTC is 1818 * disabled. The DRM/KMS core will store the parameters in the plane state, 1819 * which will be available to the driver when the CRTC is turned on. As a result 1820 * most drivers don't need to be immediately notified of plane updates for a 1821 * disabled CRTC. 1822 * 1823 * Unless otherwise needed, drivers are advised to set the ACTIVE_ONLY flag in 1824 * @flags in order not to receive plane update notifications related to a 1825 * disabled CRTC. This avoids the need to manually ignore plane updates in 1826 * driver code when the driver and/or hardware can't or just don't need to deal 1827 * with updates on disabled CRTCs, for example when supporting runtime PM. 1828 * 1829 * Drivers may set the NO_DISABLE_AFTER_MODESET flag in @flags if the relevant 1830 * display controllers require to disable a CRTC's planes when the CRTC is 1831 * disabled. This function would skip the &drm_plane_helper_funcs.atomic_disable 1832 * call for a plane if the CRTC of the old plane state needs a modesetting 1833 * operation. Of course, the drivers need to disable the planes in their CRTC 1834 * disable callbacks since no one else would do that. 1835 * 1836 * The drm_atomic_helper_commit() default implementation doesn't set the 1837 * ACTIVE_ONLY flag to most closely match the behaviour of the legacy helpers. 1838 * This should not be copied blindly by drivers. 1839 */ 1840 void drm_atomic_helper_commit_planes(struct drm_device *dev, 1841 struct drm_atomic_state *old_state, 1842 uint32_t flags) 1843 { 1844 struct drm_crtc *crtc; 1845 struct drm_crtc_state *old_crtc_state, *new_crtc_state; 1846 struct drm_plane *plane; 1847 struct drm_plane_state *old_plane_state, *new_plane_state; 1848 int i; 1849 bool active_only = flags & DRM_PLANE_COMMIT_ACTIVE_ONLY; 1850 bool no_disable = flags & DRM_PLANE_COMMIT_NO_DISABLE_AFTER_MODESET; 1851 1852 for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) { 1853 const struct drm_crtc_helper_funcs *funcs; 1854 1855 funcs = crtc->helper_private; 1856 1857 if (!funcs || !funcs->atomic_begin) 1858 continue; 1859 1860 if (active_only && !new_crtc_state->active) 1861 continue; 1862 1863 funcs->atomic_begin(crtc, old_crtc_state); 1864 } 1865 1866 for_each_oldnew_plane_in_state(old_state, plane, old_plane_state, new_plane_state, i) { 1867 const struct drm_plane_helper_funcs *funcs; 1868 bool disabling; 1869 1870 funcs = plane->helper_private; 1871 1872 if (!funcs) 1873 continue; 1874 1875 disabling = drm_atomic_plane_disabling(old_plane_state, 1876 new_plane_state); 1877 1878 if (active_only) { 1879 /* 1880 * Skip planes related to inactive CRTCs. If the plane 1881 * is enabled use the state of the current CRTC. If the 1882 * plane is being disabled use the state of the old 1883 * CRTC to avoid skipping planes being disabled on an 1884 * active CRTC. 1885 */ 1886 if (!disabling && !plane_crtc_active(new_plane_state)) 1887 continue; 1888 if (disabling && !plane_crtc_active(old_plane_state)) 1889 continue; 1890 } 1891 1892 /* 1893 * Special-case disabling the plane if drivers support it. 1894 */ 1895 if (disabling && funcs->atomic_disable) { 1896 struct drm_crtc_state *crtc_state; 1897 1898 crtc_state = old_plane_state->crtc->state; 1899 1900 if (drm_atomic_crtc_needs_modeset(crtc_state) && 1901 no_disable) 1902 continue; 1903 1904 funcs->atomic_disable(plane, old_plane_state); 1905 } else if (new_plane_state->crtc || disabling) { 1906 funcs->atomic_update(plane, old_plane_state); 1907 } 1908 } 1909 1910 for_each_oldnew_crtc_in_state(old_state, crtc, old_crtc_state, new_crtc_state, i) { 1911 const struct drm_crtc_helper_funcs *funcs; 1912 1913 funcs = crtc->helper_private; 1914 1915 if (!funcs || !funcs->atomic_flush) 1916 continue; 1917 1918 if (active_only && !new_crtc_state->active) 1919 continue; 1920 1921 funcs->atomic_flush(crtc, old_crtc_state); 1922 } 1923 } 1924 EXPORT_SYMBOL(drm_atomic_helper_commit_planes); 1925 1926 /** 1927 * drm_atomic_helper_commit_planes_on_crtc - commit plane state for a crtc 1928 * @old_crtc_state: atomic state object with the old crtc state 1929 * 1930 * This function commits the new plane state using the plane and atomic helper 1931 * functions for planes on the specific crtc. It assumes that the atomic state 1932 * has already been pushed into the relevant object state pointers, since this 1933 * step can no longer fail. 1934 * 1935 * This function is useful when plane updates should be done crtc-by-crtc 1936 * instead of one global step like drm_atomic_helper_commit_planes() does. 1937 * 1938 * This function can only be savely used when planes are not allowed to move 1939 * between different CRTCs because this function doesn't handle inter-CRTC 1940 * depencies. Callers need to ensure that either no such depencies exist, 1941 * resolve them through ordering of commit calls or through some other means. 1942 */ 1943 void 1944 drm_atomic_helper_commit_planes_on_crtc(struct drm_crtc_state *old_crtc_state) 1945 { 1946 const struct drm_crtc_helper_funcs *crtc_funcs; 1947 struct drm_crtc *crtc = old_crtc_state->crtc; 1948 struct drm_atomic_state *old_state = old_crtc_state->state; 1949 struct drm_plane *plane; 1950 unsigned plane_mask; 1951 1952 plane_mask = old_crtc_state->plane_mask; 1953 plane_mask |= crtc->state->plane_mask; 1954 1955 crtc_funcs = crtc->helper_private; 1956 if (crtc_funcs && crtc_funcs->atomic_begin) 1957 crtc_funcs->atomic_begin(crtc, old_crtc_state); 1958 1959 drm_for_each_plane_mask(plane, crtc->dev, plane_mask) { 1960 struct drm_plane_state *old_plane_state = 1961 drm_atomic_get_old_plane_state(old_state, plane); 1962 const struct drm_plane_helper_funcs *plane_funcs; 1963 1964 plane_funcs = plane->helper_private; 1965 1966 if (!old_plane_state || !plane_funcs) 1967 continue; 1968 1969 WARN_ON(plane->state->crtc && plane->state->crtc != crtc); 1970 1971 if (drm_atomic_plane_disabling(old_plane_state, plane->state) && 1972 plane_funcs->atomic_disable) 1973 plane_funcs->atomic_disable(plane, old_plane_state); 1974 else if (plane->state->crtc || 1975 drm_atomic_plane_disabling(old_plane_state, plane->state)) 1976 plane_funcs->atomic_update(plane, old_plane_state); 1977 } 1978 1979 if (crtc_funcs && crtc_funcs->atomic_flush) 1980 crtc_funcs->atomic_flush(crtc, old_crtc_state); 1981 } 1982 EXPORT_SYMBOL(drm_atomic_helper_commit_planes_on_crtc); 1983 1984 /** 1985 * drm_atomic_helper_disable_planes_on_crtc - helper to disable CRTC's planes 1986 * @old_crtc_state: atomic state object with the old CRTC state 1987 * @atomic: if set, synchronize with CRTC's atomic_begin/flush hooks 1988 * 1989 * Disables all planes associated with the given CRTC. This can be 1990 * used for instance in the CRTC helper atomic_disable callback to disable 1991 * all planes. 1992 * 1993 * If the atomic-parameter is set the function calls the CRTC's 1994 * atomic_begin hook before and atomic_flush hook after disabling the 1995 * planes. 1996 * 1997 * It is a bug to call this function without having implemented the 1998 * &drm_plane_helper_funcs.atomic_disable plane hook. 1999 */ 2000 void 2001 drm_atomic_helper_disable_planes_on_crtc(struct drm_crtc_state *old_crtc_state, 2002 bool atomic) 2003 { 2004 struct drm_crtc *crtc = old_crtc_state->crtc; 2005 const struct drm_crtc_helper_funcs *crtc_funcs = 2006 crtc->helper_private; 2007 struct drm_plane *plane; 2008 2009 if (atomic && crtc_funcs && crtc_funcs->atomic_begin) 2010 crtc_funcs->atomic_begin(crtc, NULL); 2011 2012 drm_atomic_crtc_state_for_each_plane(plane, old_crtc_state) { 2013 const struct drm_plane_helper_funcs *plane_funcs = 2014 plane->helper_private; 2015 2016 if (!plane_funcs) 2017 continue; 2018 2019 WARN_ON(!plane_funcs->atomic_disable); 2020 if (plane_funcs->atomic_disable) 2021 plane_funcs->atomic_disable(plane, NULL); 2022 } 2023 2024 if (atomic && crtc_funcs && crtc_funcs->atomic_flush) 2025 crtc_funcs->atomic_flush(crtc, NULL); 2026 } 2027 EXPORT_SYMBOL(drm_atomic_helper_disable_planes_on_crtc); 2028 2029 /** 2030 * drm_atomic_helper_cleanup_planes - cleanup plane resources after commit 2031 * @dev: DRM device 2032 * @old_state: atomic state object with old state structures 2033 * 2034 * This function cleans up plane state, specifically framebuffers, from the old 2035 * configuration. Hence the old configuration must be perserved in @old_state to 2036 * be able to call this function. 2037 * 2038 * This function must also be called on the new state when the atomic update 2039 * fails at any point after calling drm_atomic_helper_prepare_planes(). 2040 */ 2041 void drm_atomic_helper_cleanup_planes(struct drm_device *dev, 2042 struct drm_atomic_state *old_state) 2043 { 2044 struct drm_plane *plane; 2045 struct drm_plane_state *old_plane_state, *new_plane_state; 2046 int i; 2047 2048 for_each_oldnew_plane_in_state(old_state, plane, old_plane_state, new_plane_state, i) { 2049 const struct drm_plane_helper_funcs *funcs; 2050 struct drm_plane_state *plane_state; 2051 2052 /* 2053 * This might be called before swapping when commit is aborted, 2054 * in which case we have to cleanup the new state. 2055 */ 2056 if (old_plane_state == plane->state) 2057 plane_state = new_plane_state; 2058 else 2059 plane_state = old_plane_state; 2060 2061 funcs = plane->helper_private; 2062 2063 if (funcs->cleanup_fb) 2064 funcs->cleanup_fb(plane, plane_state); 2065 } 2066 } 2067 EXPORT_SYMBOL(drm_atomic_helper_cleanup_planes); 2068 2069 /** 2070 * drm_atomic_helper_swap_state - store atomic state into current sw state 2071 * @state: atomic state 2072 * @stall: stall for proceeding commits 2073 * 2074 * This function stores the atomic state into the current state pointers in all 2075 * driver objects. It should be called after all failing steps have been done 2076 * and succeeded, but before the actual hardware state is committed. 2077 * 2078 * For cleanup and error recovery the current state for all changed objects will 2079 * be swaped into @state. 2080 * 2081 * With that sequence it fits perfectly into the plane prepare/cleanup sequence: 2082 * 2083 * 1. Call drm_atomic_helper_prepare_planes() with the staged atomic state. 2084 * 2085 * 2. Do any other steps that might fail. 2086 * 2087 * 3. Put the staged state into the current state pointers with this function. 2088 * 2089 * 4. Actually commit the hardware state. 2090 * 2091 * 5. Call drm_atomic_helper_cleanup_planes() with @state, which since step 3 2092 * contains the old state. Also do any other cleanup required with that state. 2093 * 2094 * @stall must be set when nonblocking commits for this driver directly access 2095 * the &drm_plane.state, &drm_crtc.state or &drm_connector.state pointer. With 2096 * the current atomic helpers this is almost always the case, since the helpers 2097 * don't pass the right state structures to the callbacks. 2098 */ 2099 void drm_atomic_helper_swap_state(struct drm_atomic_state *state, 2100 bool stall) 2101 { 2102 int i; 2103 long ret; 2104 struct drm_connector *connector; 2105 struct drm_connector_state *old_conn_state, *new_conn_state; 2106 struct drm_crtc *crtc; 2107 struct drm_crtc_state *old_crtc_state, *new_crtc_state; 2108 struct drm_plane *plane; 2109 struct drm_plane_state *old_plane_state, *new_plane_state; 2110 struct drm_crtc_commit *commit; 2111 void *obj, *obj_state; 2112 const struct drm_private_state_funcs *funcs; 2113 2114 if (stall) { 2115 for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) { 2116 spin_lock(&crtc->commit_lock); 2117 commit = list_first_entry_or_null(&crtc->commit_list, 2118 struct drm_crtc_commit, commit_entry); 2119 if (commit) 2120 drm_crtc_commit_get(commit); 2121 spin_unlock(&crtc->commit_lock); 2122 2123 if (!commit) 2124 continue; 2125 2126 ret = wait_for_completion_timeout(&commit->hw_done, 2127 10*HZ); 2128 if (ret == 0) 2129 DRM_ERROR("[CRTC:%d:%s] hw_done timed out\n", 2130 crtc->base.id, crtc->name); 2131 drm_crtc_commit_put(commit); 2132 } 2133 } 2134 2135 for_each_oldnew_connector_in_state(state, connector, old_conn_state, new_conn_state, i) { 2136 WARN_ON(connector->state != old_conn_state); 2137 2138 old_conn_state->state = state; 2139 new_conn_state->state = NULL; 2140 2141 state->connectors[i].state = old_conn_state; 2142 connector->state = new_conn_state; 2143 } 2144 2145 for_each_oldnew_crtc_in_state(state, crtc, old_crtc_state, new_crtc_state, i) { 2146 WARN_ON(crtc->state != old_crtc_state); 2147 2148 old_crtc_state->state = state; 2149 new_crtc_state->state = NULL; 2150 2151 state->crtcs[i].state = old_crtc_state; 2152 crtc->state = new_crtc_state; 2153 2154 if (state->crtcs[i].commit) { 2155 spin_lock(&crtc->commit_lock); 2156 list_add(&state->crtcs[i].commit->commit_entry, 2157 &crtc->commit_list); 2158 spin_unlock(&crtc->commit_lock); 2159 2160 state->crtcs[i].commit->event = NULL; 2161 } 2162 } 2163 2164 for_each_oldnew_plane_in_state(state, plane, old_plane_state, new_plane_state, i) { 2165 WARN_ON(plane->state != old_plane_state); 2166 2167 old_plane_state->state = state; 2168 new_plane_state->state = NULL; 2169 2170 state->planes[i].state = old_plane_state; 2171 plane->state = new_plane_state; 2172 } 2173 2174 __for_each_private_obj(state, obj, obj_state, i, funcs) 2175 funcs->swap_state(obj, &state->private_objs[i].obj_state); 2176 } 2177 EXPORT_SYMBOL(drm_atomic_helper_swap_state); 2178 2179 /** 2180 * drm_atomic_helper_update_plane - Helper for primary plane update using atomic 2181 * @plane: plane object to update 2182 * @crtc: owning CRTC of owning plane 2183 * @fb: framebuffer to flip onto plane 2184 * @crtc_x: x offset of primary plane on crtc 2185 * @crtc_y: y offset of primary plane on crtc 2186 * @crtc_w: width of primary plane rectangle on crtc 2187 * @crtc_h: height of primary plane rectangle on crtc 2188 * @src_x: x offset of @fb for panning 2189 * @src_y: y offset of @fb for panning 2190 * @src_w: width of source rectangle in @fb 2191 * @src_h: height of source rectangle in @fb 2192 * @ctx: lock acquire context 2193 * 2194 * Provides a default plane update handler using the atomic driver interface. 2195 * 2196 * RETURNS: 2197 * Zero on success, error code on failure 2198 */ 2199 int drm_atomic_helper_update_plane(struct drm_plane *plane, 2200 struct drm_crtc *crtc, 2201 struct drm_framebuffer *fb, 2202 int crtc_x, int crtc_y, 2203 unsigned int crtc_w, unsigned int crtc_h, 2204 uint32_t src_x, uint32_t src_y, 2205 uint32_t src_w, uint32_t src_h, 2206 struct drm_modeset_acquire_ctx *ctx) 2207 { 2208 struct drm_atomic_state *state; 2209 struct drm_plane_state *plane_state; 2210 int ret = 0; 2211 2212 state = drm_atomic_state_alloc(plane->dev); 2213 if (!state) 2214 return -ENOMEM; 2215 2216 state->acquire_ctx = ctx; 2217 plane_state = drm_atomic_get_plane_state(state, plane); 2218 if (IS_ERR(plane_state)) { 2219 ret = PTR_ERR(plane_state); 2220 goto fail; 2221 } 2222 2223 ret = drm_atomic_set_crtc_for_plane(plane_state, crtc); 2224 if (ret != 0) 2225 goto fail; 2226 drm_atomic_set_fb_for_plane(plane_state, fb); 2227 plane_state->crtc_x = crtc_x; 2228 plane_state->crtc_y = crtc_y; 2229 plane_state->crtc_w = crtc_w; 2230 plane_state->crtc_h = crtc_h; 2231 plane_state->src_x = src_x; 2232 plane_state->src_y = src_y; 2233 plane_state->src_w = src_w; 2234 plane_state->src_h = src_h; 2235 2236 if (plane == crtc->cursor) 2237 state->legacy_cursor_update = true; 2238 2239 ret = drm_atomic_commit(state); 2240 fail: 2241 drm_atomic_state_put(state); 2242 return ret; 2243 } 2244 EXPORT_SYMBOL(drm_atomic_helper_update_plane); 2245 2246 /** 2247 * drm_atomic_helper_disable_plane - Helper for primary plane disable using * atomic 2248 * @plane: plane to disable 2249 * @ctx: lock acquire context 2250 * 2251 * Provides a default plane disable handler using the atomic driver interface. 2252 * 2253 * RETURNS: 2254 * Zero on success, error code on failure 2255 */ 2256 int drm_atomic_helper_disable_plane(struct drm_plane *plane, 2257 struct drm_modeset_acquire_ctx *ctx) 2258 { 2259 struct drm_atomic_state *state; 2260 struct drm_plane_state *plane_state; 2261 int ret = 0; 2262 2263 state = drm_atomic_state_alloc(plane->dev); 2264 if (!state) 2265 return -ENOMEM; 2266 2267 state->acquire_ctx = ctx; 2268 plane_state = drm_atomic_get_plane_state(state, plane); 2269 if (IS_ERR(plane_state)) { 2270 ret = PTR_ERR(plane_state); 2271 goto fail; 2272 } 2273 2274 if (plane_state->crtc && (plane == plane->crtc->cursor)) 2275 plane_state->state->legacy_cursor_update = true; 2276 2277 ret = __drm_atomic_helper_disable_plane(plane, plane_state); 2278 if (ret != 0) 2279 goto fail; 2280 2281 ret = drm_atomic_commit(state); 2282 fail: 2283 drm_atomic_state_put(state); 2284 return ret; 2285 } 2286 EXPORT_SYMBOL(drm_atomic_helper_disable_plane); 2287 2288 /* just used from fb-helper and atomic-helper: */ 2289 int __drm_atomic_helper_disable_plane(struct drm_plane *plane, 2290 struct drm_plane_state *plane_state) 2291 { 2292 int ret; 2293 2294 ret = drm_atomic_set_crtc_for_plane(plane_state, NULL); 2295 if (ret != 0) 2296 return ret; 2297 2298 drm_atomic_set_fb_for_plane(plane_state, NULL); 2299 plane_state->crtc_x = 0; 2300 plane_state->crtc_y = 0; 2301 plane_state->crtc_w = 0; 2302 plane_state->crtc_h = 0; 2303 plane_state->src_x = 0; 2304 plane_state->src_y = 0; 2305 plane_state->src_w = 0; 2306 plane_state->src_h = 0; 2307 2308 return 0; 2309 } 2310 2311 static int update_output_state(struct drm_atomic_state *state, 2312 struct drm_mode_set *set) 2313 { 2314 struct drm_device *dev = set->crtc->dev; 2315 struct drm_crtc *crtc; 2316 struct drm_crtc_state *new_crtc_state; 2317 struct drm_connector *connector; 2318 struct drm_connector_state *new_conn_state; 2319 int ret, i; 2320 2321 ret = drm_modeset_lock(&dev->mode_config.connection_mutex, 2322 state->acquire_ctx); 2323 if (ret) 2324 return ret; 2325 2326 /* First disable all connectors on the target crtc. */ 2327 ret = drm_atomic_add_affected_connectors(state, set->crtc); 2328 if (ret) 2329 return ret; 2330 2331 for_each_new_connector_in_state(state, connector, new_conn_state, i) { 2332 if (new_conn_state->crtc == set->crtc) { 2333 ret = drm_atomic_set_crtc_for_connector(new_conn_state, 2334 NULL); 2335 if (ret) 2336 return ret; 2337 2338 /* Make sure legacy setCrtc always re-trains */ 2339 new_conn_state->link_status = DRM_LINK_STATUS_GOOD; 2340 } 2341 } 2342 2343 /* Then set all connectors from set->connectors on the target crtc */ 2344 for (i = 0; i < set->num_connectors; i++) { 2345 new_conn_state = drm_atomic_get_connector_state(state, 2346 set->connectors[i]); 2347 if (IS_ERR(new_conn_state)) 2348 return PTR_ERR(new_conn_state); 2349 2350 ret = drm_atomic_set_crtc_for_connector(new_conn_state, 2351 set->crtc); 2352 if (ret) 2353 return ret; 2354 } 2355 2356 for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) { 2357 /* Don't update ->enable for the CRTC in the set_config request, 2358 * since a mismatch would indicate a bug in the upper layers. 2359 * The actual modeset code later on will catch any 2360 * inconsistencies here. */ 2361 if (crtc == set->crtc) 2362 continue; 2363 2364 if (!new_crtc_state->connector_mask) { 2365 ret = drm_atomic_set_mode_prop_for_crtc(new_crtc_state, 2366 NULL); 2367 if (ret < 0) 2368 return ret; 2369 2370 new_crtc_state->active = false; 2371 } 2372 } 2373 2374 return 0; 2375 } 2376 2377 /** 2378 * drm_atomic_helper_set_config - set a new config from userspace 2379 * @set: mode set configuration 2380 * @ctx: lock acquisition context 2381 * 2382 * Provides a default crtc set_config handler using the atomic driver interface. 2383 * 2384 * NOTE: For backwards compatibility with old userspace this automatically 2385 * resets the "link-status" property to GOOD, to force any link 2386 * re-training. The SETCRTC ioctl does not define whether an update does 2387 * need a full modeset or just a plane update, hence we're allowed to do 2388 * that. See also drm_mode_connector_set_link_status_property(). 2389 * 2390 * Returns: 2391 * Returns 0 on success, negative errno numbers on failure. 2392 */ 2393 int drm_atomic_helper_set_config(struct drm_mode_set *set, 2394 struct drm_modeset_acquire_ctx *ctx) 2395 { 2396 struct drm_atomic_state *state; 2397 struct drm_crtc *crtc = set->crtc; 2398 int ret = 0; 2399 2400 state = drm_atomic_state_alloc(crtc->dev); 2401 if (!state) 2402 return -ENOMEM; 2403 2404 state->acquire_ctx = ctx; 2405 ret = __drm_atomic_helper_set_config(set, state); 2406 if (ret != 0) 2407 goto fail; 2408 2409 ret = handle_conflicting_encoders(state, true); 2410 if (ret) 2411 return ret; 2412 2413 ret = drm_atomic_commit(state); 2414 2415 fail: 2416 drm_atomic_state_put(state); 2417 return ret; 2418 } 2419 EXPORT_SYMBOL(drm_atomic_helper_set_config); 2420 2421 /* just used from fb-helper and atomic-helper: */ 2422 int __drm_atomic_helper_set_config(struct drm_mode_set *set, 2423 struct drm_atomic_state *state) 2424 { 2425 struct drm_crtc_state *crtc_state; 2426 struct drm_plane_state *primary_state; 2427 struct drm_crtc *crtc = set->crtc; 2428 int hdisplay, vdisplay; 2429 int ret; 2430 2431 crtc_state = drm_atomic_get_crtc_state(state, crtc); 2432 if (IS_ERR(crtc_state)) 2433 return PTR_ERR(crtc_state); 2434 2435 primary_state = drm_atomic_get_plane_state(state, crtc->primary); 2436 if (IS_ERR(primary_state)) 2437 return PTR_ERR(primary_state); 2438 2439 if (!set->mode) { 2440 WARN_ON(set->fb); 2441 WARN_ON(set->num_connectors); 2442 2443 ret = drm_atomic_set_mode_for_crtc(crtc_state, NULL); 2444 if (ret != 0) 2445 return ret; 2446 2447 crtc_state->active = false; 2448 2449 ret = drm_atomic_set_crtc_for_plane(primary_state, NULL); 2450 if (ret != 0) 2451 return ret; 2452 2453 drm_atomic_set_fb_for_plane(primary_state, NULL); 2454 2455 goto commit; 2456 } 2457 2458 WARN_ON(!set->fb); 2459 WARN_ON(!set->num_connectors); 2460 2461 ret = drm_atomic_set_mode_for_crtc(crtc_state, set->mode); 2462 if (ret != 0) 2463 return ret; 2464 2465 crtc_state->active = true; 2466 2467 ret = drm_atomic_set_crtc_for_plane(primary_state, crtc); 2468 if (ret != 0) 2469 return ret; 2470 2471 drm_mode_get_hv_timing(set->mode, &hdisplay, &vdisplay); 2472 2473 drm_atomic_set_fb_for_plane(primary_state, set->fb); 2474 primary_state->crtc_x = 0; 2475 primary_state->crtc_y = 0; 2476 primary_state->crtc_w = hdisplay; 2477 primary_state->crtc_h = vdisplay; 2478 primary_state->src_x = set->x << 16; 2479 primary_state->src_y = set->y << 16; 2480 if (drm_rotation_90_or_270(primary_state->rotation)) { 2481 primary_state->src_w = vdisplay << 16; 2482 primary_state->src_h = hdisplay << 16; 2483 } else { 2484 primary_state->src_w = hdisplay << 16; 2485 primary_state->src_h = vdisplay << 16; 2486 } 2487 2488 commit: 2489 ret = update_output_state(state, set); 2490 if (ret) 2491 return ret; 2492 2493 return 0; 2494 } 2495 2496 /** 2497 * drm_atomic_helper_disable_all - disable all currently active outputs 2498 * @dev: DRM device 2499 * @ctx: lock acquisition context 2500 * 2501 * Loops through all connectors, finding those that aren't turned off and then 2502 * turns them off by setting their DPMS mode to OFF and deactivating the CRTC 2503 * that they are connected to. 2504 * 2505 * This is used for example in suspend/resume to disable all currently active 2506 * functions when suspending. If you just want to shut down everything at e.g. 2507 * driver unload, look at drm_atomic_helper_shutdown(). 2508 * 2509 * Note that if callers haven't already acquired all modeset locks this might 2510 * return -EDEADLK, which must be handled by calling drm_modeset_backoff(). 2511 * 2512 * Returns: 2513 * 0 on success or a negative error code on failure. 2514 * 2515 * See also: 2516 * drm_atomic_helper_suspend(), drm_atomic_helper_resume() and 2517 * drm_atomic_helper_shutdown(). 2518 */ 2519 int drm_atomic_helper_disable_all(struct drm_device *dev, 2520 struct drm_modeset_acquire_ctx *ctx) 2521 { 2522 struct drm_atomic_state *state; 2523 struct drm_connector_state *conn_state; 2524 struct drm_connector *conn; 2525 struct drm_plane_state *plane_state; 2526 struct drm_plane *plane; 2527 struct drm_crtc_state *crtc_state; 2528 struct drm_crtc *crtc; 2529 int ret, i; 2530 2531 state = drm_atomic_state_alloc(dev); 2532 if (!state) 2533 return -ENOMEM; 2534 2535 state->acquire_ctx = ctx; 2536 2537 drm_for_each_crtc(crtc, dev) { 2538 crtc_state = drm_atomic_get_crtc_state(state, crtc); 2539 if (IS_ERR(crtc_state)) { 2540 ret = PTR_ERR(crtc_state); 2541 goto free; 2542 } 2543 2544 crtc_state->active = false; 2545 2546 ret = drm_atomic_set_mode_prop_for_crtc(crtc_state, NULL); 2547 if (ret < 0) 2548 goto free; 2549 2550 ret = drm_atomic_add_affected_planes(state, crtc); 2551 if (ret < 0) 2552 goto free; 2553 2554 ret = drm_atomic_add_affected_connectors(state, crtc); 2555 if (ret < 0) 2556 goto free; 2557 } 2558 2559 for_each_connector_in_state(state, conn, conn_state, i) { 2560 ret = drm_atomic_set_crtc_for_connector(conn_state, NULL); 2561 if (ret < 0) 2562 goto free; 2563 } 2564 2565 for_each_plane_in_state(state, plane, plane_state, i) { 2566 ret = drm_atomic_set_crtc_for_plane(plane_state, NULL); 2567 if (ret < 0) 2568 goto free; 2569 2570 drm_atomic_set_fb_for_plane(plane_state, NULL); 2571 } 2572 2573 ret = drm_atomic_commit(state); 2574 free: 2575 drm_atomic_state_put(state); 2576 return ret; 2577 } 2578 2579 EXPORT_SYMBOL(drm_atomic_helper_disable_all); 2580 2581 /** 2582 * drm_atomic_helper_shutdown - shutdown all CRTC 2583 * @dev: DRM device 2584 * 2585 * This shuts down all CRTC, which is useful for driver unloading. Shutdown on 2586 * suspend should instead be handled with drm_atomic_helper_suspend(), since 2587 * that also takes a snapshot of the modeset state to be restored on resume. 2588 * 2589 * This is just a convenience wrapper around drm_atomic_helper_disable_all(), 2590 * and it is the atomic version of drm_crtc_force_disable_all(). 2591 */ 2592 void drm_atomic_helper_shutdown(struct drm_device *dev) 2593 { 2594 struct drm_modeset_acquire_ctx ctx; 2595 int ret; 2596 2597 drm_modeset_acquire_init(&ctx, 0); 2598 while (1) { 2599 ret = drm_modeset_lock_all_ctx(dev, &ctx); 2600 if (!ret) 2601 ret = drm_atomic_helper_disable_all(dev, &ctx); 2602 2603 if (ret != -EDEADLK) 2604 break; 2605 2606 drm_modeset_backoff(&ctx); 2607 } 2608 2609 if (ret) 2610 DRM_ERROR("Disabling all crtc's during unload failed with %i\n", ret); 2611 2612 drm_modeset_drop_locks(&ctx); 2613 drm_modeset_acquire_fini(&ctx); 2614 } 2615 EXPORT_SYMBOL(drm_atomic_helper_shutdown); 2616 2617 /** 2618 * drm_atomic_helper_suspend - subsystem-level suspend helper 2619 * @dev: DRM device 2620 * 2621 * Duplicates the current atomic state, disables all active outputs and then 2622 * returns a pointer to the original atomic state to the caller. Drivers can 2623 * pass this pointer to the drm_atomic_helper_resume() helper upon resume to 2624 * restore the output configuration that was active at the time the system 2625 * entered suspend. 2626 * 2627 * Note that it is potentially unsafe to use this. The atomic state object 2628 * returned by this function is assumed to be persistent. Drivers must ensure 2629 * that this holds true. Before calling this function, drivers must make sure 2630 * to suspend fbdev emulation so that nothing can be using the device. 2631 * 2632 * Returns: 2633 * A pointer to a copy of the state before suspend on success or an ERR_PTR()- 2634 * encoded error code on failure. Drivers should store the returned atomic 2635 * state object and pass it to the drm_atomic_helper_resume() helper upon 2636 * resume. 2637 * 2638 * See also: 2639 * drm_atomic_helper_duplicate_state(), drm_atomic_helper_disable_all(), 2640 * drm_atomic_helper_resume(), drm_atomic_helper_commit_duplicated_state() 2641 */ 2642 struct drm_atomic_state *drm_atomic_helper_suspend(struct drm_device *dev) 2643 { 2644 struct drm_modeset_acquire_ctx ctx; 2645 struct drm_atomic_state *state; 2646 int err; 2647 2648 drm_modeset_acquire_init(&ctx, 0); 2649 2650 retry: 2651 err = drm_modeset_lock_all_ctx(dev, &ctx); 2652 if (err < 0) { 2653 state = ERR_PTR(err); 2654 goto unlock; 2655 } 2656 2657 state = drm_atomic_helper_duplicate_state(dev, &ctx); 2658 if (IS_ERR(state)) 2659 goto unlock; 2660 2661 err = drm_atomic_helper_disable_all(dev, &ctx); 2662 if (err < 0) { 2663 drm_atomic_state_put(state); 2664 state = ERR_PTR(err); 2665 goto unlock; 2666 } 2667 2668 unlock: 2669 if (PTR_ERR(state) == -EDEADLK) { 2670 drm_modeset_backoff(&ctx); 2671 goto retry; 2672 } 2673 2674 drm_modeset_drop_locks(&ctx); 2675 drm_modeset_acquire_fini(&ctx); 2676 return state; 2677 } 2678 EXPORT_SYMBOL(drm_atomic_helper_suspend); 2679 2680 /** 2681 * drm_atomic_helper_commit_duplicated_state - commit duplicated state 2682 * @state: duplicated atomic state to commit 2683 * @ctx: pointer to acquire_ctx to use for commit. 2684 * 2685 * The state returned by drm_atomic_helper_duplicate_state() and 2686 * drm_atomic_helper_suspend() is partially invalid, and needs to 2687 * be fixed up before commit. 2688 * 2689 * Returns: 2690 * 0 on success or a negative error code on failure. 2691 * 2692 * See also: 2693 * drm_atomic_helper_suspend() 2694 */ 2695 int drm_atomic_helper_commit_duplicated_state(struct drm_atomic_state *state, 2696 struct drm_modeset_acquire_ctx *ctx) 2697 { 2698 int i; 2699 struct drm_plane *plane; 2700 struct drm_plane_state *new_plane_state; 2701 struct drm_connector *connector; 2702 struct drm_connector_state *new_conn_state; 2703 struct drm_crtc *crtc; 2704 struct drm_crtc_state *new_crtc_state; 2705 2706 state->acquire_ctx = ctx; 2707 2708 for_each_new_plane_in_state(state, plane, new_plane_state, i) 2709 state->planes[i].old_state = plane->state; 2710 2711 for_each_new_crtc_in_state(state, crtc, new_crtc_state, i) 2712 state->crtcs[i].old_state = crtc->state; 2713 2714 for_each_new_connector_in_state(state, connector, new_conn_state, i) 2715 state->connectors[i].old_state = connector->state; 2716 2717 return drm_atomic_commit(state); 2718 } 2719 EXPORT_SYMBOL(drm_atomic_helper_commit_duplicated_state); 2720 2721 /** 2722 * drm_atomic_helper_resume - subsystem-level resume helper 2723 * @dev: DRM device 2724 * @state: atomic state to resume to 2725 * 2726 * Calls drm_mode_config_reset() to synchronize hardware and software states, 2727 * grabs all modeset locks and commits the atomic state object. This can be 2728 * used in conjunction with the drm_atomic_helper_suspend() helper to 2729 * implement suspend/resume for drivers that support atomic mode-setting. 2730 * 2731 * Returns: 2732 * 0 on success or a negative error code on failure. 2733 * 2734 * See also: 2735 * drm_atomic_helper_suspend() 2736 */ 2737 int drm_atomic_helper_resume(struct drm_device *dev, 2738 struct drm_atomic_state *state) 2739 { 2740 struct drm_modeset_acquire_ctx ctx; 2741 int err; 2742 2743 drm_mode_config_reset(dev); 2744 2745 drm_modeset_acquire_init(&ctx, 0); 2746 while (1) { 2747 err = drm_modeset_lock_all_ctx(dev, &ctx); 2748 if (err) 2749 goto out; 2750 2751 err = drm_atomic_helper_commit_duplicated_state(state, &ctx); 2752 out: 2753 if (err != -EDEADLK) 2754 break; 2755 2756 drm_modeset_backoff(&ctx); 2757 } 2758 2759 drm_modeset_drop_locks(&ctx); 2760 drm_modeset_acquire_fini(&ctx); 2761 2762 return err; 2763 } 2764 EXPORT_SYMBOL(drm_atomic_helper_resume); 2765 2766 /** 2767 * drm_atomic_helper_crtc_set_property - helper for crtc properties 2768 * @crtc: DRM crtc 2769 * @property: DRM property 2770 * @val: value of property 2771 * 2772 * Provides a default crtc set_property handler using the atomic driver 2773 * interface. 2774 * 2775 * RETURNS: 2776 * Zero on success, error code on failure 2777 */ 2778 int 2779 drm_atomic_helper_crtc_set_property(struct drm_crtc *crtc, 2780 struct drm_property *property, 2781 uint64_t val) 2782 { 2783 struct drm_atomic_state *state; 2784 struct drm_crtc_state *crtc_state; 2785 int ret = 0; 2786 2787 state = drm_atomic_state_alloc(crtc->dev); 2788 if (!state) 2789 return -ENOMEM; 2790 2791 /* ->set_property is always called with all locks held. */ 2792 state->acquire_ctx = crtc->dev->mode_config.acquire_ctx; 2793 retry: 2794 crtc_state = drm_atomic_get_crtc_state(state, crtc); 2795 if (IS_ERR(crtc_state)) { 2796 ret = PTR_ERR(crtc_state); 2797 goto fail; 2798 } 2799 2800 ret = drm_atomic_crtc_set_property(crtc, crtc_state, 2801 property, val); 2802 if (ret) 2803 goto fail; 2804 2805 ret = drm_atomic_commit(state); 2806 fail: 2807 if (ret == -EDEADLK) 2808 goto backoff; 2809 2810 drm_atomic_state_put(state); 2811 return ret; 2812 2813 backoff: 2814 drm_atomic_state_clear(state); 2815 drm_atomic_legacy_backoff(state); 2816 2817 goto retry; 2818 } 2819 EXPORT_SYMBOL(drm_atomic_helper_crtc_set_property); 2820 2821 /** 2822 * drm_atomic_helper_plane_set_property - helper for plane properties 2823 * @plane: DRM plane 2824 * @property: DRM property 2825 * @val: value of property 2826 * 2827 * Provides a default plane set_property handler using the atomic driver 2828 * interface. 2829 * 2830 * RETURNS: 2831 * Zero on success, error code on failure 2832 */ 2833 int 2834 drm_atomic_helper_plane_set_property(struct drm_plane *plane, 2835 struct drm_property *property, 2836 uint64_t val) 2837 { 2838 struct drm_atomic_state *state; 2839 struct drm_plane_state *plane_state; 2840 int ret = 0; 2841 2842 state = drm_atomic_state_alloc(plane->dev); 2843 if (!state) 2844 return -ENOMEM; 2845 2846 /* ->set_property is always called with all locks held. */ 2847 state->acquire_ctx = plane->dev->mode_config.acquire_ctx; 2848 retry: 2849 plane_state = drm_atomic_get_plane_state(state, plane); 2850 if (IS_ERR(plane_state)) { 2851 ret = PTR_ERR(plane_state); 2852 goto fail; 2853 } 2854 2855 ret = drm_atomic_plane_set_property(plane, plane_state, 2856 property, val); 2857 if (ret) 2858 goto fail; 2859 2860 ret = drm_atomic_commit(state); 2861 fail: 2862 if (ret == -EDEADLK) 2863 goto backoff; 2864 2865 drm_atomic_state_put(state); 2866 return ret; 2867 2868 backoff: 2869 drm_atomic_state_clear(state); 2870 drm_atomic_legacy_backoff(state); 2871 2872 goto retry; 2873 } 2874 EXPORT_SYMBOL(drm_atomic_helper_plane_set_property); 2875 2876 /** 2877 * drm_atomic_helper_connector_set_property - helper for connector properties 2878 * @connector: DRM connector 2879 * @property: DRM property 2880 * @val: value of property 2881 * 2882 * Provides a default connector set_property handler using the atomic driver 2883 * interface. 2884 * 2885 * RETURNS: 2886 * Zero on success, error code on failure 2887 */ 2888 int 2889 drm_atomic_helper_connector_set_property(struct drm_connector *connector, 2890 struct drm_property *property, 2891 uint64_t val) 2892 { 2893 struct drm_atomic_state *state; 2894 struct drm_connector_state *connector_state; 2895 int ret = 0; 2896 2897 state = drm_atomic_state_alloc(connector->dev); 2898 if (!state) 2899 return -ENOMEM; 2900 2901 /* ->set_property is always called with all locks held. */ 2902 state->acquire_ctx = connector->dev->mode_config.acquire_ctx; 2903 retry: 2904 connector_state = drm_atomic_get_connector_state(state, connector); 2905 if (IS_ERR(connector_state)) { 2906 ret = PTR_ERR(connector_state); 2907 goto fail; 2908 } 2909 2910 ret = drm_atomic_connector_set_property(connector, connector_state, 2911 property, val); 2912 if (ret) 2913 goto fail; 2914 2915 ret = drm_atomic_commit(state); 2916 fail: 2917 if (ret == -EDEADLK) 2918 goto backoff; 2919 2920 drm_atomic_state_put(state); 2921 return ret; 2922 2923 backoff: 2924 drm_atomic_state_clear(state); 2925 drm_atomic_legacy_backoff(state); 2926 2927 goto retry; 2928 } 2929 EXPORT_SYMBOL(drm_atomic_helper_connector_set_property); 2930 2931 static int page_flip_common( 2932 struct drm_atomic_state *state, 2933 struct drm_crtc *crtc, 2934 struct drm_framebuffer *fb, 2935 struct drm_pending_vblank_event *event, 2936 uint32_t flags) 2937 { 2938 struct drm_plane *plane = crtc->primary; 2939 struct drm_plane_state *plane_state; 2940 struct drm_crtc_state *crtc_state; 2941 int ret = 0; 2942 2943 crtc_state = drm_atomic_get_crtc_state(state, crtc); 2944 if (IS_ERR(crtc_state)) 2945 return PTR_ERR(crtc_state); 2946 2947 crtc_state->event = event; 2948 crtc_state->pageflip_flags = flags; 2949 2950 plane_state = drm_atomic_get_plane_state(state, plane); 2951 if (IS_ERR(plane_state)) 2952 return PTR_ERR(plane_state); 2953 2954 ret = drm_atomic_set_crtc_for_plane(plane_state, crtc); 2955 if (ret != 0) 2956 return ret; 2957 drm_atomic_set_fb_for_plane(plane_state, fb); 2958 2959 /* Make sure we don't accidentally do a full modeset. */ 2960 state->allow_modeset = false; 2961 if (!crtc_state->active) { 2962 DRM_DEBUG_ATOMIC("[CRTC:%d:%s] disabled, rejecting legacy flip\n", 2963 crtc->base.id, crtc->name); 2964 return -EINVAL; 2965 } 2966 2967 return ret; 2968 } 2969 2970 /** 2971 * drm_atomic_helper_page_flip - execute a legacy page flip 2972 * @crtc: DRM crtc 2973 * @fb: DRM framebuffer 2974 * @event: optional DRM event to signal upon completion 2975 * @flags: flip flags for non-vblank sync'ed updates 2976 * @ctx: lock acquisition context 2977 * 2978 * Provides a default &drm_crtc_funcs.page_flip implementation 2979 * using the atomic driver interface. 2980 * 2981 * Returns: 2982 * Returns 0 on success, negative errno numbers on failure. 2983 * 2984 * See also: 2985 * drm_atomic_helper_page_flip_target() 2986 */ 2987 int drm_atomic_helper_page_flip(struct drm_crtc *crtc, 2988 struct drm_framebuffer *fb, 2989 struct drm_pending_vblank_event *event, 2990 uint32_t flags, 2991 struct drm_modeset_acquire_ctx *ctx) 2992 { 2993 struct drm_plane *plane = crtc->primary; 2994 struct drm_atomic_state *state; 2995 int ret = 0; 2996 2997 state = drm_atomic_state_alloc(plane->dev); 2998 if (!state) 2999 return -ENOMEM; 3000 3001 state->acquire_ctx = ctx; 3002 3003 ret = page_flip_common(state, crtc, fb, event, flags); 3004 if (ret != 0) 3005 goto fail; 3006 3007 ret = drm_atomic_nonblocking_commit(state); 3008 fail: 3009 drm_atomic_state_put(state); 3010 return ret; 3011 } 3012 EXPORT_SYMBOL(drm_atomic_helper_page_flip); 3013 3014 /** 3015 * drm_atomic_helper_page_flip_target - do page flip on target vblank period. 3016 * @crtc: DRM crtc 3017 * @fb: DRM framebuffer 3018 * @event: optional DRM event to signal upon completion 3019 * @flags: flip flags for non-vblank sync'ed updates 3020 * @target: specifying the target vblank period when the flip to take effect 3021 * @ctx: lock acquisition context 3022 * 3023 * Provides a default &drm_crtc_funcs.page_flip_target implementation. 3024 * Similar to drm_atomic_helper_page_flip() with extra parameter to specify 3025 * target vblank period to flip. 3026 * 3027 * Returns: 3028 * Returns 0 on success, negative errno numbers on failure. 3029 */ 3030 int drm_atomic_helper_page_flip_target( 3031 struct drm_crtc *crtc, 3032 struct drm_framebuffer *fb, 3033 struct drm_pending_vblank_event *event, 3034 uint32_t flags, 3035 uint32_t target, 3036 struct drm_modeset_acquire_ctx *ctx) 3037 { 3038 struct drm_plane *plane = crtc->primary; 3039 struct drm_atomic_state *state; 3040 struct drm_crtc_state *crtc_state; 3041 int ret = 0; 3042 3043 state = drm_atomic_state_alloc(plane->dev); 3044 if (!state) 3045 return -ENOMEM; 3046 3047 state->acquire_ctx = ctx; 3048 3049 ret = page_flip_common(state, crtc, fb, event, flags); 3050 if (ret != 0) 3051 goto fail; 3052 3053 crtc_state = drm_atomic_get_new_crtc_state(state, crtc); 3054 if (WARN_ON(!crtc_state)) { 3055 ret = -EINVAL; 3056 goto fail; 3057 } 3058 crtc_state->target_vblank = target; 3059 3060 ret = drm_atomic_nonblocking_commit(state); 3061 fail: 3062 drm_atomic_state_put(state); 3063 return ret; 3064 } 3065 EXPORT_SYMBOL(drm_atomic_helper_page_flip_target); 3066 3067 /** 3068 * drm_atomic_helper_connector_dpms() - connector dpms helper implementation 3069 * @connector: affected connector 3070 * @mode: DPMS mode 3071 * 3072 * This is the main helper function provided by the atomic helper framework for 3073 * implementing the legacy DPMS connector interface. It computes the new desired 3074 * &drm_crtc_state.active state for the corresponding CRTC (if the connector is 3075 * enabled) and updates it. 3076 * 3077 * Returns: 3078 * Returns 0 on success, negative errno numbers on failure. 3079 */ 3080 int drm_atomic_helper_connector_dpms(struct drm_connector *connector, 3081 int mode) 3082 { 3083 struct drm_mode_config *config = &connector->dev->mode_config; 3084 struct drm_atomic_state *state; 3085 struct drm_crtc_state *crtc_state; 3086 struct drm_crtc *crtc; 3087 struct drm_connector *tmp_connector; 3088 struct drm_connector_list_iter conn_iter; 3089 int ret; 3090 bool active = false; 3091 int old_mode = connector->dpms; 3092 3093 if (mode != DRM_MODE_DPMS_ON) 3094 mode = DRM_MODE_DPMS_OFF; 3095 3096 connector->dpms = mode; 3097 crtc = connector->state->crtc; 3098 3099 if (!crtc) 3100 return 0; 3101 3102 state = drm_atomic_state_alloc(connector->dev); 3103 if (!state) 3104 return -ENOMEM; 3105 3106 state->acquire_ctx = crtc->dev->mode_config.acquire_ctx; 3107 retry: 3108 crtc_state = drm_atomic_get_crtc_state(state, crtc); 3109 if (IS_ERR(crtc_state)) { 3110 ret = PTR_ERR(crtc_state); 3111 goto fail; 3112 } 3113 3114 WARN_ON(!drm_modeset_is_locked(&config->connection_mutex)); 3115 3116 drm_connector_list_iter_begin(connector->dev, &conn_iter); 3117 drm_for_each_connector_iter(tmp_connector, &conn_iter) { 3118 if (tmp_connector->state->crtc != crtc) 3119 continue; 3120 3121 if (tmp_connector->dpms == DRM_MODE_DPMS_ON) { 3122 active = true; 3123 break; 3124 } 3125 } 3126 drm_connector_list_iter_end(&conn_iter); 3127 crtc_state->active = active; 3128 3129 ret = drm_atomic_commit(state); 3130 fail: 3131 if (ret == -EDEADLK) 3132 goto backoff; 3133 if (ret != 0) 3134 connector->dpms = old_mode; 3135 drm_atomic_state_put(state); 3136 return ret; 3137 3138 backoff: 3139 drm_atomic_state_clear(state); 3140 drm_atomic_legacy_backoff(state); 3141 3142 goto retry; 3143 } 3144 EXPORT_SYMBOL(drm_atomic_helper_connector_dpms); 3145 3146 /** 3147 * drm_atomic_helper_best_encoder - Helper for 3148 * &drm_connector_helper_funcs.best_encoder callback 3149 * @connector: Connector control structure 3150 * 3151 * This is a &drm_connector_helper_funcs.best_encoder callback helper for 3152 * connectors that support exactly 1 encoder, statically determined at driver 3153 * init time. 3154 */ 3155 struct drm_encoder * 3156 drm_atomic_helper_best_encoder(struct drm_connector *connector) 3157 { 3158 WARN_ON(connector->encoder_ids[1]); 3159 return drm_encoder_find(connector->dev, connector->encoder_ids[0]); 3160 } 3161 EXPORT_SYMBOL(drm_atomic_helper_best_encoder); 3162 3163 /** 3164 * DOC: atomic state reset and initialization 3165 * 3166 * Both the drm core and the atomic helpers assume that there is always the full 3167 * and correct atomic software state for all connectors, CRTCs and planes 3168 * available. Which is a bit a problem on driver load and also after system 3169 * suspend. One way to solve this is to have a hardware state read-out 3170 * infrastructure which reconstructs the full software state (e.g. the i915 3171 * driver). 3172 * 3173 * The simpler solution is to just reset the software state to everything off, 3174 * which is easiest to do by calling drm_mode_config_reset(). To facilitate this 3175 * the atomic helpers provide default reset implementations for all hooks. 3176 * 3177 * On the upside the precise state tracking of atomic simplifies system suspend 3178 * and resume a lot. For drivers using drm_mode_config_reset() a complete recipe 3179 * is implemented in drm_atomic_helper_suspend() and drm_atomic_helper_resume(). 3180 * For other drivers the building blocks are split out, see the documentation 3181 * for these functions. 3182 */ 3183 3184 /** 3185 * drm_atomic_helper_crtc_reset - default &drm_crtc_funcs.reset hook for CRTCs 3186 * @crtc: drm CRTC 3187 * 3188 * Resets the atomic state for @crtc by freeing the state pointer (which might 3189 * be NULL, e.g. at driver load time) and allocating a new empty state object. 3190 */ 3191 void drm_atomic_helper_crtc_reset(struct drm_crtc *crtc) 3192 { 3193 if (crtc->state) 3194 __drm_atomic_helper_crtc_destroy_state(crtc->state); 3195 3196 kfree(crtc->state); 3197 crtc->state = kzalloc(sizeof(*crtc->state), GFP_KERNEL); 3198 3199 if (crtc->state) 3200 crtc->state->crtc = crtc; 3201 } 3202 EXPORT_SYMBOL(drm_atomic_helper_crtc_reset); 3203 3204 /** 3205 * __drm_atomic_helper_crtc_duplicate_state - copy atomic CRTC state 3206 * @crtc: CRTC object 3207 * @state: atomic CRTC state 3208 * 3209 * Copies atomic state from a CRTC's current state and resets inferred values. 3210 * This is useful for drivers that subclass the CRTC state. 3211 */ 3212 void __drm_atomic_helper_crtc_duplicate_state(struct drm_crtc *crtc, 3213 struct drm_crtc_state *state) 3214 { 3215 memcpy(state, crtc->state, sizeof(*state)); 3216 3217 if (state->mode_blob) 3218 drm_property_blob_get(state->mode_blob); 3219 if (state->degamma_lut) 3220 drm_property_blob_get(state->degamma_lut); 3221 if (state->ctm) 3222 drm_property_blob_get(state->ctm); 3223 if (state->gamma_lut) 3224 drm_property_blob_get(state->gamma_lut); 3225 state->mode_changed = false; 3226 state->active_changed = false; 3227 state->planes_changed = false; 3228 state->connectors_changed = false; 3229 state->color_mgmt_changed = false; 3230 state->zpos_changed = false; 3231 state->event = NULL; 3232 state->pageflip_flags = 0; 3233 } 3234 EXPORT_SYMBOL(__drm_atomic_helper_crtc_duplicate_state); 3235 3236 /** 3237 * drm_atomic_helper_crtc_duplicate_state - default state duplicate hook 3238 * @crtc: drm CRTC 3239 * 3240 * Default CRTC state duplicate hook for drivers which don't have their own 3241 * subclassed CRTC state structure. 3242 */ 3243 struct drm_crtc_state * 3244 drm_atomic_helper_crtc_duplicate_state(struct drm_crtc *crtc) 3245 { 3246 struct drm_crtc_state *state; 3247 3248 if (WARN_ON(!crtc->state)) 3249 return NULL; 3250 3251 state = kmalloc(sizeof(*state), GFP_KERNEL); 3252 if (state) 3253 __drm_atomic_helper_crtc_duplicate_state(crtc, state); 3254 3255 return state; 3256 } 3257 EXPORT_SYMBOL(drm_atomic_helper_crtc_duplicate_state); 3258 3259 /** 3260 * __drm_atomic_helper_crtc_destroy_state - release CRTC state 3261 * @state: CRTC state object to release 3262 * 3263 * Releases all resources stored in the CRTC state without actually freeing 3264 * the memory of the CRTC state. This is useful for drivers that subclass the 3265 * CRTC state. 3266 */ 3267 void __drm_atomic_helper_crtc_destroy_state(struct drm_crtc_state *state) 3268 { 3269 drm_property_blob_put(state->mode_blob); 3270 drm_property_blob_put(state->degamma_lut); 3271 drm_property_blob_put(state->ctm); 3272 drm_property_blob_put(state->gamma_lut); 3273 } 3274 EXPORT_SYMBOL(__drm_atomic_helper_crtc_destroy_state); 3275 3276 /** 3277 * drm_atomic_helper_crtc_destroy_state - default state destroy hook 3278 * @crtc: drm CRTC 3279 * @state: CRTC state object to release 3280 * 3281 * Default CRTC state destroy hook for drivers which don't have their own 3282 * subclassed CRTC state structure. 3283 */ 3284 void drm_atomic_helper_crtc_destroy_state(struct drm_crtc *crtc, 3285 struct drm_crtc_state *state) 3286 { 3287 __drm_atomic_helper_crtc_destroy_state(state); 3288 kfree(state); 3289 } 3290 EXPORT_SYMBOL(drm_atomic_helper_crtc_destroy_state); 3291 3292 /** 3293 * drm_atomic_helper_plane_reset - default &drm_plane_funcs.reset hook for planes 3294 * @plane: drm plane 3295 * 3296 * Resets the atomic state for @plane by freeing the state pointer (which might 3297 * be NULL, e.g. at driver load time) and allocating a new empty state object. 3298 */ 3299 void drm_atomic_helper_plane_reset(struct drm_plane *plane) 3300 { 3301 if (plane->state) 3302 __drm_atomic_helper_plane_destroy_state(plane->state); 3303 3304 kfree(plane->state); 3305 plane->state = kzalloc(sizeof(*plane->state), GFP_KERNEL); 3306 3307 if (plane->state) { 3308 plane->state->plane = plane; 3309 plane->state->rotation = DRM_MODE_ROTATE_0; 3310 } 3311 } 3312 EXPORT_SYMBOL(drm_atomic_helper_plane_reset); 3313 3314 /** 3315 * __drm_atomic_helper_plane_duplicate_state - copy atomic plane state 3316 * @plane: plane object 3317 * @state: atomic plane state 3318 * 3319 * Copies atomic state from a plane's current state. This is useful for 3320 * drivers that subclass the plane state. 3321 */ 3322 void __drm_atomic_helper_plane_duplicate_state(struct drm_plane *plane, 3323 struct drm_plane_state *state) 3324 { 3325 memcpy(state, plane->state, sizeof(*state)); 3326 3327 if (state->fb) 3328 drm_framebuffer_get(state->fb); 3329 3330 state->fence = NULL; 3331 } 3332 EXPORT_SYMBOL(__drm_atomic_helper_plane_duplicate_state); 3333 3334 /** 3335 * drm_atomic_helper_plane_duplicate_state - default state duplicate hook 3336 * @plane: drm plane 3337 * 3338 * Default plane state duplicate hook for drivers which don't have their own 3339 * subclassed plane state structure. 3340 */ 3341 struct drm_plane_state * 3342 drm_atomic_helper_plane_duplicate_state(struct drm_plane *plane) 3343 { 3344 struct drm_plane_state *state; 3345 3346 if (WARN_ON(!plane->state)) 3347 return NULL; 3348 3349 state = kmalloc(sizeof(*state), GFP_KERNEL); 3350 if (state) 3351 __drm_atomic_helper_plane_duplicate_state(plane, state); 3352 3353 return state; 3354 } 3355 EXPORT_SYMBOL(drm_atomic_helper_plane_duplicate_state); 3356 3357 /** 3358 * __drm_atomic_helper_plane_destroy_state - release plane state 3359 * @state: plane state object to release 3360 * 3361 * Releases all resources stored in the plane state without actually freeing 3362 * the memory of the plane state. This is useful for drivers that subclass the 3363 * plane state. 3364 */ 3365 void __drm_atomic_helper_plane_destroy_state(struct drm_plane_state *state) 3366 { 3367 if (state->fb) 3368 drm_framebuffer_put(state->fb); 3369 3370 if (state->fence) 3371 dma_fence_put(state->fence); 3372 } 3373 EXPORT_SYMBOL(__drm_atomic_helper_plane_destroy_state); 3374 3375 /** 3376 * drm_atomic_helper_plane_destroy_state - default state destroy hook 3377 * @plane: drm plane 3378 * @state: plane state object to release 3379 * 3380 * Default plane state destroy hook for drivers which don't have their own 3381 * subclassed plane state structure. 3382 */ 3383 void drm_atomic_helper_plane_destroy_state(struct drm_plane *plane, 3384 struct drm_plane_state *state) 3385 { 3386 __drm_atomic_helper_plane_destroy_state(state); 3387 kfree(state); 3388 } 3389 EXPORT_SYMBOL(drm_atomic_helper_plane_destroy_state); 3390 3391 /** 3392 * __drm_atomic_helper_connector_reset - reset state on connector 3393 * @connector: drm connector 3394 * @conn_state: connector state to assign 3395 * 3396 * Initializes the newly allocated @conn_state and assigns it to 3397 * the &drm_conector->state pointer of @connector, usually required when 3398 * initializing the drivers or when called from the &drm_connector_funcs.reset 3399 * hook. 3400 * 3401 * This is useful for drivers that subclass the connector state. 3402 */ 3403 void 3404 __drm_atomic_helper_connector_reset(struct drm_connector *connector, 3405 struct drm_connector_state *conn_state) 3406 { 3407 if (conn_state) 3408 conn_state->connector = connector; 3409 3410 connector->state = conn_state; 3411 } 3412 EXPORT_SYMBOL(__drm_atomic_helper_connector_reset); 3413 3414 /** 3415 * drm_atomic_helper_connector_reset - default &drm_connector_funcs.reset hook for connectors 3416 * @connector: drm connector 3417 * 3418 * Resets the atomic state for @connector by freeing the state pointer (which 3419 * might be NULL, e.g. at driver load time) and allocating a new empty state 3420 * object. 3421 */ 3422 void drm_atomic_helper_connector_reset(struct drm_connector *connector) 3423 { 3424 struct drm_connector_state *conn_state = 3425 kzalloc(sizeof(*conn_state), GFP_KERNEL); 3426 3427 if (connector->state) 3428 __drm_atomic_helper_connector_destroy_state(connector->state); 3429 3430 kfree(connector->state); 3431 __drm_atomic_helper_connector_reset(connector, conn_state); 3432 } 3433 EXPORT_SYMBOL(drm_atomic_helper_connector_reset); 3434 3435 /** 3436 * __drm_atomic_helper_connector_duplicate_state - copy atomic connector state 3437 * @connector: connector object 3438 * @state: atomic connector state 3439 * 3440 * Copies atomic state from a connector's current state. This is useful for 3441 * drivers that subclass the connector state. 3442 */ 3443 void 3444 __drm_atomic_helper_connector_duplicate_state(struct drm_connector *connector, 3445 struct drm_connector_state *state) 3446 { 3447 memcpy(state, connector->state, sizeof(*state)); 3448 if (state->crtc) 3449 drm_connector_get(connector); 3450 } 3451 EXPORT_SYMBOL(__drm_atomic_helper_connector_duplicate_state); 3452 3453 /** 3454 * drm_atomic_helper_connector_duplicate_state - default state duplicate hook 3455 * @connector: drm connector 3456 * 3457 * Default connector state duplicate hook for drivers which don't have their own 3458 * subclassed connector state structure. 3459 */ 3460 struct drm_connector_state * 3461 drm_atomic_helper_connector_duplicate_state(struct drm_connector *connector) 3462 { 3463 struct drm_connector_state *state; 3464 3465 if (WARN_ON(!connector->state)) 3466 return NULL; 3467 3468 state = kmalloc(sizeof(*state), GFP_KERNEL); 3469 if (state) 3470 __drm_atomic_helper_connector_duplicate_state(connector, state); 3471 3472 return state; 3473 } 3474 EXPORT_SYMBOL(drm_atomic_helper_connector_duplicate_state); 3475 3476 /** 3477 * drm_atomic_helper_duplicate_state - duplicate an atomic state object 3478 * @dev: DRM device 3479 * @ctx: lock acquisition context 3480 * 3481 * Makes a copy of the current atomic state by looping over all objects and 3482 * duplicating their respective states. This is used for example by suspend/ 3483 * resume support code to save the state prior to suspend such that it can 3484 * be restored upon resume. 3485 * 3486 * Note that this treats atomic state as persistent between save and restore. 3487 * Drivers must make sure that this is possible and won't result in confusion 3488 * or erroneous behaviour. 3489 * 3490 * Note that if callers haven't already acquired all modeset locks this might 3491 * return -EDEADLK, which must be handled by calling drm_modeset_backoff(). 3492 * 3493 * Returns: 3494 * A pointer to the copy of the atomic state object on success or an 3495 * ERR_PTR()-encoded error code on failure. 3496 * 3497 * See also: 3498 * drm_atomic_helper_suspend(), drm_atomic_helper_resume() 3499 */ 3500 struct drm_atomic_state * 3501 drm_atomic_helper_duplicate_state(struct drm_device *dev, 3502 struct drm_modeset_acquire_ctx *ctx) 3503 { 3504 struct drm_atomic_state *state; 3505 struct drm_connector *conn; 3506 struct drm_connector_list_iter conn_iter; 3507 struct drm_plane *plane; 3508 struct drm_crtc *crtc; 3509 int err = 0; 3510 3511 state = drm_atomic_state_alloc(dev); 3512 if (!state) 3513 return ERR_PTR(-ENOMEM); 3514 3515 state->acquire_ctx = ctx; 3516 3517 drm_for_each_crtc(crtc, dev) { 3518 struct drm_crtc_state *crtc_state; 3519 3520 crtc_state = drm_atomic_get_crtc_state(state, crtc); 3521 if (IS_ERR(crtc_state)) { 3522 err = PTR_ERR(crtc_state); 3523 goto free; 3524 } 3525 } 3526 3527 drm_for_each_plane(plane, dev) { 3528 struct drm_plane_state *plane_state; 3529 3530 plane_state = drm_atomic_get_plane_state(state, plane); 3531 if (IS_ERR(plane_state)) { 3532 err = PTR_ERR(plane_state); 3533 goto free; 3534 } 3535 } 3536 3537 drm_connector_list_iter_begin(dev, &conn_iter); 3538 drm_for_each_connector_iter(conn, &conn_iter) { 3539 struct drm_connector_state *conn_state; 3540 3541 conn_state = drm_atomic_get_connector_state(state, conn); 3542 if (IS_ERR(conn_state)) { 3543 err = PTR_ERR(conn_state); 3544 drm_connector_list_iter_end(&conn_iter); 3545 goto free; 3546 } 3547 } 3548 drm_connector_list_iter_end(&conn_iter); 3549 3550 /* clear the acquire context so that it isn't accidentally reused */ 3551 state->acquire_ctx = NULL; 3552 3553 free: 3554 if (err < 0) { 3555 drm_atomic_state_put(state); 3556 state = ERR_PTR(err); 3557 } 3558 3559 return state; 3560 } 3561 EXPORT_SYMBOL(drm_atomic_helper_duplicate_state); 3562 3563 /** 3564 * __drm_atomic_helper_connector_destroy_state - release connector state 3565 * @state: connector state object to release 3566 * 3567 * Releases all resources stored in the connector state without actually 3568 * freeing the memory of the connector state. This is useful for drivers that 3569 * subclass the connector state. 3570 */ 3571 void 3572 __drm_atomic_helper_connector_destroy_state(struct drm_connector_state *state) 3573 { 3574 if (state->crtc) 3575 drm_connector_put(state->connector); 3576 } 3577 EXPORT_SYMBOL(__drm_atomic_helper_connector_destroy_state); 3578 3579 /** 3580 * drm_atomic_helper_connector_destroy_state - default state destroy hook 3581 * @connector: drm connector 3582 * @state: connector state object to release 3583 * 3584 * Default connector state destroy hook for drivers which don't have their own 3585 * subclassed connector state structure. 3586 */ 3587 void drm_atomic_helper_connector_destroy_state(struct drm_connector *connector, 3588 struct drm_connector_state *state) 3589 { 3590 __drm_atomic_helper_connector_destroy_state(state); 3591 kfree(state); 3592 } 3593 EXPORT_SYMBOL(drm_atomic_helper_connector_destroy_state); 3594 3595 /** 3596 * drm_atomic_helper_legacy_gamma_set - set the legacy gamma correction table 3597 * @crtc: CRTC object 3598 * @red: red correction table 3599 * @green: green correction table 3600 * @blue: green correction table 3601 * @size: size of the tables 3602 * @ctx: lock acquire context 3603 * 3604 * Implements support for legacy gamma correction table for drivers 3605 * that support color management through the DEGAMMA_LUT/GAMMA_LUT 3606 * properties. See drm_crtc_enable_color_mgmt() and the containing chapter for 3607 * how the atomic color management and gamma tables work. 3608 */ 3609 int drm_atomic_helper_legacy_gamma_set(struct drm_crtc *crtc, 3610 u16 *red, u16 *green, u16 *blue, 3611 uint32_t size, 3612 struct drm_modeset_acquire_ctx *ctx) 3613 { 3614 struct drm_device *dev = crtc->dev; 3615 struct drm_mode_config *config = &dev->mode_config; 3616 struct drm_atomic_state *state; 3617 struct drm_crtc_state *crtc_state; 3618 struct drm_property_blob *blob = NULL; 3619 struct drm_color_lut *blob_data; 3620 int i, ret = 0; 3621 3622 state = drm_atomic_state_alloc(crtc->dev); 3623 if (!state) 3624 return -ENOMEM; 3625 3626 blob = drm_property_create_blob(dev, 3627 sizeof(struct drm_color_lut) * size, 3628 NULL); 3629 if (IS_ERR(blob)) { 3630 ret = PTR_ERR(blob); 3631 blob = NULL; 3632 goto fail; 3633 } 3634 3635 /* Prepare GAMMA_LUT with the legacy values. */ 3636 blob_data = (struct drm_color_lut *) blob->data; 3637 for (i = 0; i < size; i++) { 3638 blob_data[i].red = red[i]; 3639 blob_data[i].green = green[i]; 3640 blob_data[i].blue = blue[i]; 3641 } 3642 3643 state->acquire_ctx = ctx; 3644 crtc_state = drm_atomic_get_crtc_state(state, crtc); 3645 if (IS_ERR(crtc_state)) { 3646 ret = PTR_ERR(crtc_state); 3647 goto fail; 3648 } 3649 3650 /* Reset DEGAMMA_LUT and CTM properties. */ 3651 ret = drm_atomic_crtc_set_property(crtc, crtc_state, 3652 config->degamma_lut_property, 0); 3653 if (ret) 3654 goto fail; 3655 3656 ret = drm_atomic_crtc_set_property(crtc, crtc_state, 3657 config->ctm_property, 0); 3658 if (ret) 3659 goto fail; 3660 3661 ret = drm_atomic_crtc_set_property(crtc, crtc_state, 3662 config->gamma_lut_property, blob->base.id); 3663 if (ret) 3664 goto fail; 3665 3666 ret = drm_atomic_commit(state); 3667 3668 fail: 3669 drm_atomic_state_put(state); 3670 drm_property_blob_put(blob); 3671 return ret; 3672 } 3673 EXPORT_SYMBOL(drm_atomic_helper_legacy_gamma_set); 3674