1 /************************************************************************** 2 * 3 * Copyright © 2011-2015 VMware, Inc., Palo Alto, CA., USA 4 * All Rights Reserved. 5 * 6 * Permission is hereby granted, free of charge, to any person obtaining a 7 * copy of this software and associated documentation files (the 8 * "Software"), to deal in the Software without restriction, including 9 * without limitation the rights to use, copy, modify, merge, publish, 10 * distribute, sub license, and/or sell copies of the Software, and to 11 * permit persons to whom the Software is furnished to do so, subject to 12 * the following conditions: 13 * 14 * The above copyright notice and this permission notice (including the 15 * next paragraph) shall be included in all copies or substantial portions 16 * of the Software. 17 * 18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 19 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 20 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL 21 * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, 22 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR 23 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE 24 * USE OR OTHER DEALINGS IN THE SOFTWARE. 25 * 26 **************************************************************************/ 27 28 #include "vmwgfx_kms.h" 29 #include <drm/drm_plane_helper.h> 30 #include <drm/drm_atomic.h> 31 #include <drm/drm_atomic_helper.h> 32 33 34 #define vmw_crtc_to_sou(x) \ 35 container_of(x, struct vmw_screen_object_unit, base.crtc) 36 #define vmw_encoder_to_sou(x) \ 37 container_of(x, struct vmw_screen_object_unit, base.encoder) 38 #define vmw_connector_to_sou(x) \ 39 container_of(x, struct vmw_screen_object_unit, base.connector) 40 41 /** 42 * struct vmw_kms_sou_surface_dirty - Closure structure for 43 * blit surface to screen command. 44 * @base: The base type we derive from. Used by vmw_kms_helper_dirty(). 45 * @left: Left side of bounding box. 46 * @right: Right side of bounding box. 47 * @top: Top side of bounding box. 48 * @bottom: Bottom side of bounding box. 49 * @dst_x: Difference between source clip rects and framebuffer coordinates. 50 * @dst_y: Difference between source clip rects and framebuffer coordinates. 51 * @sid: Surface id of surface to copy from. 52 */ 53 struct vmw_kms_sou_surface_dirty { 54 struct vmw_kms_dirty base; 55 s32 left, right, top, bottom; 56 s32 dst_x, dst_y; 57 u32 sid; 58 }; 59 60 /* 61 * SVGA commands that are used by this code. Please see the device headers 62 * for explanation. 63 */ 64 struct vmw_kms_sou_readback_blit { 65 uint32 header; 66 SVGAFifoCmdBlitScreenToGMRFB body; 67 }; 68 69 struct vmw_kms_sou_dmabuf_blit { 70 uint32 header; 71 SVGAFifoCmdBlitGMRFBToScreen body; 72 }; 73 74 struct vmw_kms_sou_dirty_cmd { 75 SVGA3dCmdHeader header; 76 SVGA3dCmdBlitSurfaceToScreen body; 77 }; 78 79 /** 80 * Display unit using screen objects. 81 */ 82 struct vmw_screen_object_unit { 83 struct vmw_display_unit base; 84 85 unsigned long buffer_size; /**< Size of allocated buffer */ 86 struct vmw_dma_buffer *buffer; /**< Backing store buffer */ 87 88 bool defined; 89 }; 90 91 static void vmw_sou_destroy(struct vmw_screen_object_unit *sou) 92 { 93 vmw_du_cleanup(&sou->base); 94 kfree(sou); 95 } 96 97 98 /* 99 * Screen Object Display Unit CRTC functions 100 */ 101 102 static void vmw_sou_crtc_destroy(struct drm_crtc *crtc) 103 { 104 vmw_sou_destroy(vmw_crtc_to_sou(crtc)); 105 } 106 107 /** 108 * Send the fifo command to create a screen. 109 */ 110 static int vmw_sou_fifo_create(struct vmw_private *dev_priv, 111 struct vmw_screen_object_unit *sou, 112 uint32_t x, uint32_t y, 113 struct drm_display_mode *mode) 114 { 115 size_t fifo_size; 116 117 struct { 118 struct { 119 uint32_t cmdType; 120 } header; 121 SVGAScreenObject obj; 122 } *cmd; 123 124 BUG_ON(!sou->buffer); 125 126 fifo_size = sizeof(*cmd); 127 cmd = vmw_fifo_reserve(dev_priv, fifo_size); 128 /* The hardware has hung, nothing we can do about it here. */ 129 if (unlikely(cmd == NULL)) { 130 DRM_ERROR("Fifo reserve failed.\n"); 131 return -ENOMEM; 132 } 133 134 memset(cmd, 0, fifo_size); 135 cmd->header.cmdType = SVGA_CMD_DEFINE_SCREEN; 136 cmd->obj.structSize = sizeof(SVGAScreenObject); 137 cmd->obj.id = sou->base.unit; 138 cmd->obj.flags = SVGA_SCREEN_HAS_ROOT | 139 (sou->base.unit == 0 ? SVGA_SCREEN_IS_PRIMARY : 0); 140 cmd->obj.size.width = mode->hdisplay; 141 cmd->obj.size.height = mode->vdisplay; 142 if (sou->base.is_implicit) { 143 cmd->obj.root.x = x; 144 cmd->obj.root.y = y; 145 } else { 146 cmd->obj.root.x = sou->base.gui_x; 147 cmd->obj.root.y = sou->base.gui_y; 148 } 149 sou->base.set_gui_x = cmd->obj.root.x; 150 sou->base.set_gui_y = cmd->obj.root.y; 151 152 /* Ok to assume that buffer is pinned in vram */ 153 vmw_bo_get_guest_ptr(&sou->buffer->base, &cmd->obj.backingStore.ptr); 154 cmd->obj.backingStore.pitch = mode->hdisplay * 4; 155 156 vmw_fifo_commit(dev_priv, fifo_size); 157 158 sou->defined = true; 159 160 return 0; 161 } 162 163 /** 164 * Send the fifo command to destroy a screen. 165 */ 166 static int vmw_sou_fifo_destroy(struct vmw_private *dev_priv, 167 struct vmw_screen_object_unit *sou) 168 { 169 size_t fifo_size; 170 int ret; 171 172 struct { 173 struct { 174 uint32_t cmdType; 175 } header; 176 SVGAFifoCmdDestroyScreen body; 177 } *cmd; 178 179 /* no need to do anything */ 180 if (unlikely(!sou->defined)) 181 return 0; 182 183 fifo_size = sizeof(*cmd); 184 cmd = vmw_fifo_reserve(dev_priv, fifo_size); 185 /* the hardware has hung, nothing we can do about it here */ 186 if (unlikely(cmd == NULL)) { 187 DRM_ERROR("Fifo reserve failed.\n"); 188 return -ENOMEM; 189 } 190 191 memset(cmd, 0, fifo_size); 192 cmd->header.cmdType = SVGA_CMD_DESTROY_SCREEN; 193 cmd->body.screenId = sou->base.unit; 194 195 vmw_fifo_commit(dev_priv, fifo_size); 196 197 /* Force sync */ 198 ret = vmw_fallback_wait(dev_priv, false, true, 0, false, 3*HZ); 199 if (unlikely(ret != 0)) 200 DRM_ERROR("Failed to sync with HW"); 201 else 202 sou->defined = false; 203 204 return ret; 205 } 206 207 /** 208 * vmw_sou_crtc_mode_set_nofb - Create new screen 209 * 210 * @crtc: CRTC associated with the new screen 211 * 212 * This function creates/destroys a screen. This function cannot fail, so if 213 * somehow we run into a failure, just do the best we can to get out. 214 */ 215 static void vmw_sou_crtc_mode_set_nofb(struct drm_crtc *crtc) 216 { 217 struct vmw_private *dev_priv; 218 struct vmw_screen_object_unit *sou; 219 struct vmw_framebuffer *vfb; 220 struct drm_framebuffer *fb; 221 struct drm_plane_state *ps; 222 struct vmw_plane_state *vps; 223 int ret; 224 225 226 sou = vmw_crtc_to_sou(crtc); 227 dev_priv = vmw_priv(crtc->dev); 228 ps = crtc->primary->state; 229 fb = ps->fb; 230 vps = vmw_plane_state_to_vps(ps); 231 232 vfb = (fb) ? vmw_framebuffer_to_vfb(fb) : NULL; 233 234 if (sou->defined) { 235 ret = vmw_sou_fifo_destroy(dev_priv, sou); 236 if (ret) { 237 DRM_ERROR("Failed to destroy Screen Object\n"); 238 return; 239 } 240 } 241 242 if (vfb) { 243 sou->buffer = vps->dmabuf; 244 sou->buffer_size = vps->dmabuf_size; 245 246 ret = vmw_sou_fifo_create(dev_priv, sou, crtc->x, crtc->y, 247 &crtc->mode); 248 if (ret) 249 DRM_ERROR("Failed to define Screen Object %dx%d\n", 250 crtc->x, crtc->y); 251 252 vmw_kms_add_active(dev_priv, &sou->base, vfb); 253 } else { 254 sou->buffer = NULL; 255 sou->buffer_size = 0; 256 257 vmw_kms_del_active(dev_priv, &sou->base); 258 } 259 } 260 261 /** 262 * vmw_sou_crtc_helper_prepare - Noop 263 * 264 * @crtc: CRTC associated with the new screen 265 * 266 * Prepares the CRTC for a mode set, but we don't need to do anything here. 267 */ 268 static void vmw_sou_crtc_helper_prepare(struct drm_crtc *crtc) 269 { 270 } 271 272 /** 273 * vmw_sou_crtc_atomic_enable - Noop 274 * 275 * @crtc: CRTC associated with the new screen 276 * 277 * This is called after a mode set has been completed. 278 */ 279 static void vmw_sou_crtc_atomic_enable(struct drm_crtc *crtc, 280 struct drm_crtc_state *old_state) 281 { 282 } 283 284 /** 285 * vmw_sou_crtc_atomic_disable - Turns off CRTC 286 * 287 * @crtc: CRTC to be turned off 288 */ 289 static void vmw_sou_crtc_atomic_disable(struct drm_crtc *crtc, 290 struct drm_crtc_state *old_state) 291 { 292 struct vmw_private *dev_priv; 293 struct vmw_screen_object_unit *sou; 294 int ret; 295 296 297 if (!crtc) { 298 DRM_ERROR("CRTC is NULL\n"); 299 return; 300 } 301 302 sou = vmw_crtc_to_sou(crtc); 303 dev_priv = vmw_priv(crtc->dev); 304 305 if (sou->defined) { 306 ret = vmw_sou_fifo_destroy(dev_priv, sou); 307 if (ret) 308 DRM_ERROR("Failed to destroy Screen Object\n"); 309 } 310 } 311 312 static int vmw_sou_crtc_page_flip(struct drm_crtc *crtc, 313 struct drm_framebuffer *new_fb, 314 struct drm_pending_vblank_event *event, 315 uint32_t flags, 316 struct drm_modeset_acquire_ctx *ctx) 317 { 318 struct vmw_private *dev_priv = vmw_priv(crtc->dev); 319 int ret; 320 321 if (!vmw_kms_crtc_flippable(dev_priv, crtc)) 322 return -EINVAL; 323 324 ret = drm_atomic_helper_page_flip(crtc, new_fb, event, flags, ctx); 325 if (ret) { 326 DRM_ERROR("Page flip error %d.\n", ret); 327 return ret; 328 } 329 330 if (vmw_crtc_to_du(crtc)->is_implicit) 331 vmw_kms_update_implicit_fb(dev_priv, crtc); 332 333 return ret; 334 } 335 336 static const struct drm_crtc_funcs vmw_screen_object_crtc_funcs = { 337 .gamma_set = vmw_du_crtc_gamma_set, 338 .destroy = vmw_sou_crtc_destroy, 339 .reset = vmw_du_crtc_reset, 340 .atomic_duplicate_state = vmw_du_crtc_duplicate_state, 341 .atomic_destroy_state = vmw_du_crtc_destroy_state, 342 .set_config = vmw_kms_set_config, 343 .page_flip = vmw_sou_crtc_page_flip, 344 }; 345 346 /* 347 * Screen Object Display Unit encoder functions 348 */ 349 350 static void vmw_sou_encoder_destroy(struct drm_encoder *encoder) 351 { 352 vmw_sou_destroy(vmw_encoder_to_sou(encoder)); 353 } 354 355 static const struct drm_encoder_funcs vmw_screen_object_encoder_funcs = { 356 .destroy = vmw_sou_encoder_destroy, 357 }; 358 359 /* 360 * Screen Object Display Unit connector functions 361 */ 362 363 static void vmw_sou_connector_destroy(struct drm_connector *connector) 364 { 365 vmw_sou_destroy(vmw_connector_to_sou(connector)); 366 } 367 368 static const struct drm_connector_funcs vmw_sou_connector_funcs = { 369 .dpms = vmw_du_connector_dpms, 370 .detect = vmw_du_connector_detect, 371 .fill_modes = vmw_du_connector_fill_modes, 372 .set_property = vmw_du_connector_set_property, 373 .destroy = vmw_sou_connector_destroy, 374 .reset = vmw_du_connector_reset, 375 .atomic_duplicate_state = vmw_du_connector_duplicate_state, 376 .atomic_destroy_state = vmw_du_connector_destroy_state, 377 .atomic_set_property = vmw_du_connector_atomic_set_property, 378 .atomic_get_property = vmw_du_connector_atomic_get_property, 379 }; 380 381 382 static const struct 383 drm_connector_helper_funcs vmw_sou_connector_helper_funcs = { 384 .best_encoder = drm_atomic_helper_best_encoder, 385 }; 386 387 388 389 /* 390 * Screen Object Display Plane Functions 391 */ 392 393 /** 394 * vmw_sou_primary_plane_cleanup_fb - Frees sou backing buffer 395 * 396 * @plane: display plane 397 * @old_state: Contains the FB to clean up 398 * 399 * Unpins the display surface 400 * 401 * Returns 0 on success 402 */ 403 static void 404 vmw_sou_primary_plane_cleanup_fb(struct drm_plane *plane, 405 struct drm_plane_state *old_state) 406 { 407 struct vmw_plane_state *vps = vmw_plane_state_to_vps(old_state); 408 struct drm_crtc *crtc = plane->state->crtc ? 409 plane->state->crtc : old_state->crtc; 410 411 if (vps->dmabuf) 412 vmw_dmabuf_unpin(vmw_priv(crtc->dev), vps->dmabuf, false); 413 vmw_dmabuf_unreference(&vps->dmabuf); 414 vps->dmabuf_size = 0; 415 416 vmw_du_plane_cleanup_fb(plane, old_state); 417 } 418 419 420 /** 421 * vmw_sou_primary_plane_prepare_fb - allocate backing buffer 422 * 423 * @plane: display plane 424 * @new_state: info on the new plane state, including the FB 425 * 426 * The SOU backing buffer is our equivalent of the display plane. 427 * 428 * Returns 0 on success 429 */ 430 static int 431 vmw_sou_primary_plane_prepare_fb(struct drm_plane *plane, 432 struct drm_plane_state *new_state) 433 { 434 struct drm_framebuffer *new_fb = new_state->fb; 435 struct drm_crtc *crtc = plane->state->crtc ?: new_state->crtc; 436 struct vmw_plane_state *vps = vmw_plane_state_to_vps(new_state); 437 struct vmw_private *dev_priv; 438 size_t size; 439 int ret; 440 441 442 if (!new_fb) { 443 vmw_dmabuf_unreference(&vps->dmabuf); 444 vps->dmabuf_size = 0; 445 446 return 0; 447 } 448 449 size = new_state->crtc_w * new_state->crtc_h * 4; 450 dev_priv = vmw_priv(crtc->dev); 451 452 if (vps->dmabuf) { 453 if (vps->dmabuf_size == size) { 454 /* 455 * Note that this might temporarily up the pin-count 456 * to 2, until cleanup_fb() is called. 457 */ 458 return vmw_dmabuf_pin_in_vram(dev_priv, vps->dmabuf, 459 true); 460 } 461 462 vmw_dmabuf_unreference(&vps->dmabuf); 463 vps->dmabuf_size = 0; 464 } 465 466 vps->dmabuf = kzalloc(sizeof(*vps->dmabuf), GFP_KERNEL); 467 if (!vps->dmabuf) 468 return -ENOMEM; 469 470 vmw_svga_enable(dev_priv); 471 472 /* After we have alloced the backing store might not be able to 473 * resume the overlays, this is preferred to failing to alloc. 474 */ 475 vmw_overlay_pause_all(dev_priv); 476 ret = vmw_dmabuf_init(dev_priv, vps->dmabuf, size, 477 &vmw_vram_ne_placement, 478 false, &vmw_dmabuf_bo_free); 479 vmw_overlay_resume_all(dev_priv); 480 if (ret) { 481 vps->dmabuf = NULL; /* vmw_dmabuf_init frees on error */ 482 return ret; 483 } 484 485 /* 486 * TTM already thinks the buffer is pinned, but make sure the 487 * pin_count is upped. 488 */ 489 return vmw_dmabuf_pin_in_vram(dev_priv, vps->dmabuf, true); 490 } 491 492 493 static void 494 vmw_sou_primary_plane_atomic_update(struct drm_plane *plane, 495 struct drm_plane_state *old_state) 496 { 497 struct drm_crtc *crtc = plane->state->crtc; 498 struct drm_pending_vblank_event *event = NULL; 499 struct vmw_fence_obj *fence = NULL; 500 int ret; 501 502 if (crtc && plane->state->fb) { 503 struct vmw_private *dev_priv = vmw_priv(crtc->dev); 504 struct vmw_framebuffer *vfb = 505 vmw_framebuffer_to_vfb(plane->state->fb); 506 struct drm_vmw_rect vclips; 507 508 vclips.x = crtc->x; 509 vclips.y = crtc->y; 510 vclips.w = crtc->mode.hdisplay; 511 vclips.h = crtc->mode.vdisplay; 512 513 if (vfb->dmabuf) 514 ret = vmw_kms_sou_do_dmabuf_dirty(dev_priv, vfb, NULL, 515 &vclips, 1, 1, true, 516 &fence, crtc); 517 else 518 ret = vmw_kms_sou_do_surface_dirty(dev_priv, vfb, NULL, 519 &vclips, NULL, 0, 0, 520 1, 1, &fence, crtc); 521 522 /* 523 * We cannot really fail this function, so if we do, then output 524 * an error and maintain consistent atomic state. 525 */ 526 if (ret != 0) 527 DRM_ERROR("Failed to update screen.\n"); 528 529 crtc->primary->fb = plane->state->fb; 530 } else { 531 /* 532 * When disabling a plane, CRTC and FB should always be NULL 533 * together, otherwise it's an error. 534 * Here primary plane is being disable so should really blank 535 * the screen object display unit, if not already done. 536 */ 537 return; 538 } 539 540 event = crtc->state->event; 541 /* 542 * In case of failure and other cases, vblank event will be sent in 543 * vmw_du_crtc_atomic_flush. 544 */ 545 if (event && fence) { 546 struct drm_file *file_priv = event->base.file_priv; 547 548 ret = vmw_event_fence_action_queue(file_priv, 549 fence, 550 &event->base, 551 &event->event.vbl.tv_sec, 552 &event->event.vbl.tv_usec, 553 true); 554 555 if (unlikely(ret != 0)) 556 DRM_ERROR("Failed to queue event on fence.\n"); 557 else 558 crtc->state->event = NULL; 559 } 560 561 if (fence) 562 vmw_fence_obj_unreference(&fence); 563 } 564 565 566 static const struct drm_plane_funcs vmw_sou_plane_funcs = { 567 .update_plane = drm_atomic_helper_update_plane, 568 .disable_plane = drm_atomic_helper_disable_plane, 569 .destroy = vmw_du_primary_plane_destroy, 570 .reset = vmw_du_plane_reset, 571 .atomic_duplicate_state = vmw_du_plane_duplicate_state, 572 .atomic_destroy_state = vmw_du_plane_destroy_state, 573 }; 574 575 static const struct drm_plane_funcs vmw_sou_cursor_funcs = { 576 .update_plane = drm_atomic_helper_update_plane, 577 .disable_plane = drm_atomic_helper_disable_plane, 578 .destroy = vmw_du_cursor_plane_destroy, 579 .reset = vmw_du_plane_reset, 580 .atomic_duplicate_state = vmw_du_plane_duplicate_state, 581 .atomic_destroy_state = vmw_du_plane_destroy_state, 582 }; 583 584 /* 585 * Atomic Helpers 586 */ 587 static const struct 588 drm_plane_helper_funcs vmw_sou_cursor_plane_helper_funcs = { 589 .atomic_check = vmw_du_cursor_plane_atomic_check, 590 .atomic_update = vmw_du_cursor_plane_atomic_update, 591 .prepare_fb = vmw_du_cursor_plane_prepare_fb, 592 .cleanup_fb = vmw_du_plane_cleanup_fb, 593 }; 594 595 static const struct 596 drm_plane_helper_funcs vmw_sou_primary_plane_helper_funcs = { 597 .atomic_check = vmw_du_primary_plane_atomic_check, 598 .atomic_update = vmw_sou_primary_plane_atomic_update, 599 .prepare_fb = vmw_sou_primary_plane_prepare_fb, 600 .cleanup_fb = vmw_sou_primary_plane_cleanup_fb, 601 }; 602 603 static const struct drm_crtc_helper_funcs vmw_sou_crtc_helper_funcs = { 604 .prepare = vmw_sou_crtc_helper_prepare, 605 .mode_set_nofb = vmw_sou_crtc_mode_set_nofb, 606 .atomic_check = vmw_du_crtc_atomic_check, 607 .atomic_begin = vmw_du_crtc_atomic_begin, 608 .atomic_flush = vmw_du_crtc_atomic_flush, 609 .atomic_enable = vmw_sou_crtc_atomic_enable, 610 .atomic_disable = vmw_sou_crtc_atomic_disable, 611 }; 612 613 614 static int vmw_sou_init(struct vmw_private *dev_priv, unsigned unit) 615 { 616 struct vmw_screen_object_unit *sou; 617 struct drm_device *dev = dev_priv->dev; 618 struct drm_connector *connector; 619 struct drm_encoder *encoder; 620 struct drm_plane *primary, *cursor; 621 struct drm_crtc *crtc; 622 int ret; 623 624 sou = kzalloc(sizeof(*sou), GFP_KERNEL); 625 if (!sou) 626 return -ENOMEM; 627 628 sou->base.unit = unit; 629 crtc = &sou->base.crtc; 630 encoder = &sou->base.encoder; 631 connector = &sou->base.connector; 632 primary = &sou->base.primary; 633 cursor = &sou->base.cursor; 634 635 sou->base.active_implicit = false; 636 sou->base.pref_active = (unit == 0); 637 sou->base.pref_width = dev_priv->initial_width; 638 sou->base.pref_height = dev_priv->initial_height; 639 sou->base.pref_mode = NULL; 640 641 /* 642 * Remove this after enabling atomic because property values can 643 * only exist in a state object 644 */ 645 sou->base.is_implicit = false; 646 647 /* Initialize primary plane */ 648 vmw_du_plane_reset(primary); 649 650 ret = drm_universal_plane_init(dev, &sou->base.primary, 651 0, &vmw_sou_plane_funcs, 652 vmw_primary_plane_formats, 653 ARRAY_SIZE(vmw_primary_plane_formats), 654 NULL, DRM_PLANE_TYPE_PRIMARY, NULL); 655 if (ret) { 656 DRM_ERROR("Failed to initialize primary plane"); 657 goto err_free; 658 } 659 660 drm_plane_helper_add(primary, &vmw_sou_primary_plane_helper_funcs); 661 662 /* Initialize cursor plane */ 663 vmw_du_plane_reset(cursor); 664 665 ret = drm_universal_plane_init(dev, &sou->base.cursor, 666 0, &vmw_sou_cursor_funcs, 667 vmw_cursor_plane_formats, 668 ARRAY_SIZE(vmw_cursor_plane_formats), 669 NULL, DRM_PLANE_TYPE_CURSOR, NULL); 670 if (ret) { 671 DRM_ERROR("Failed to initialize cursor plane"); 672 drm_plane_cleanup(&sou->base.primary); 673 goto err_free; 674 } 675 676 drm_plane_helper_add(cursor, &vmw_sou_cursor_plane_helper_funcs); 677 678 vmw_du_connector_reset(connector); 679 ret = drm_connector_init(dev, connector, &vmw_sou_connector_funcs, 680 DRM_MODE_CONNECTOR_VIRTUAL); 681 if (ret) { 682 DRM_ERROR("Failed to initialize connector\n"); 683 goto err_free; 684 } 685 686 drm_connector_helper_add(connector, &vmw_sou_connector_helper_funcs); 687 connector->status = vmw_du_connector_detect(connector, true); 688 vmw_connector_state_to_vcs(connector->state)->is_implicit = false; 689 690 691 ret = drm_encoder_init(dev, encoder, &vmw_screen_object_encoder_funcs, 692 DRM_MODE_ENCODER_VIRTUAL, NULL); 693 if (ret) { 694 DRM_ERROR("Failed to initialize encoder\n"); 695 goto err_free_connector; 696 } 697 698 (void) drm_mode_connector_attach_encoder(connector, encoder); 699 encoder->possible_crtcs = (1 << unit); 700 encoder->possible_clones = 0; 701 702 ret = drm_connector_register(connector); 703 if (ret) { 704 DRM_ERROR("Failed to register connector\n"); 705 goto err_free_encoder; 706 } 707 708 709 vmw_du_crtc_reset(crtc); 710 ret = drm_crtc_init_with_planes(dev, crtc, &sou->base.primary, 711 &sou->base.cursor, 712 &vmw_screen_object_crtc_funcs, NULL); 713 if (ret) { 714 DRM_ERROR("Failed to initialize CRTC\n"); 715 goto err_free_unregister; 716 } 717 718 drm_crtc_helper_add(crtc, &vmw_sou_crtc_helper_funcs); 719 720 drm_mode_crtc_set_gamma_size(crtc, 256); 721 722 drm_object_attach_property(&connector->base, 723 dev_priv->hotplug_mode_update_property, 1); 724 drm_object_attach_property(&connector->base, 725 dev->mode_config.suggested_x_property, 0); 726 drm_object_attach_property(&connector->base, 727 dev->mode_config.suggested_y_property, 0); 728 if (dev_priv->implicit_placement_property) 729 drm_object_attach_property 730 (&connector->base, 731 dev_priv->implicit_placement_property, 732 sou->base.is_implicit); 733 734 return 0; 735 736 err_free_unregister: 737 drm_connector_unregister(connector); 738 err_free_encoder: 739 drm_encoder_cleanup(encoder); 740 err_free_connector: 741 drm_connector_cleanup(connector); 742 err_free: 743 kfree(sou); 744 return ret; 745 } 746 747 int vmw_kms_sou_init_display(struct vmw_private *dev_priv) 748 { 749 struct drm_device *dev = dev_priv->dev; 750 int i, ret; 751 752 if (!(dev_priv->capabilities & SVGA_CAP_SCREEN_OBJECT_2)) { 753 DRM_INFO("Not using screen objects," 754 " missing cap SCREEN_OBJECT_2\n"); 755 return -ENOSYS; 756 } 757 758 ret = -ENOMEM; 759 dev_priv->num_implicit = 0; 760 dev_priv->implicit_fb = NULL; 761 762 ret = drm_vblank_init(dev, VMWGFX_NUM_DISPLAY_UNITS); 763 if (unlikely(ret != 0)) 764 return ret; 765 766 vmw_kms_create_implicit_placement_property(dev_priv, false); 767 768 for (i = 0; i < VMWGFX_NUM_DISPLAY_UNITS; ++i) 769 vmw_sou_init(dev_priv, i); 770 771 dev_priv->active_display_unit = vmw_du_screen_object; 772 773 DRM_INFO("Screen Objects Display Unit initialized\n"); 774 775 return 0; 776 } 777 778 static int do_dmabuf_define_gmrfb(struct vmw_private *dev_priv, 779 struct vmw_framebuffer *framebuffer) 780 { 781 struct vmw_dma_buffer *buf = 782 container_of(framebuffer, struct vmw_framebuffer_dmabuf, 783 base)->buffer; 784 int depth = framebuffer->base.format->depth; 785 struct { 786 uint32_t header; 787 SVGAFifoCmdDefineGMRFB body; 788 } *cmd; 789 790 /* Emulate RGBA support, contrary to svga_reg.h this is not 791 * supported by hosts. This is only a problem if we are reading 792 * this value later and expecting what we uploaded back. 793 */ 794 if (depth == 32) 795 depth = 24; 796 797 cmd = vmw_fifo_reserve(dev_priv, sizeof(*cmd)); 798 if (!cmd) { 799 DRM_ERROR("Out of fifo space for dirty framebuffer command.\n"); 800 return -ENOMEM; 801 } 802 803 cmd->header = SVGA_CMD_DEFINE_GMRFB; 804 cmd->body.format.bitsPerPixel = framebuffer->base.format->cpp[0] * 8; 805 cmd->body.format.colorDepth = depth; 806 cmd->body.format.reserved = 0; 807 cmd->body.bytesPerLine = framebuffer->base.pitches[0]; 808 /* Buffer is reserved in vram or GMR */ 809 vmw_bo_get_guest_ptr(&buf->base, &cmd->body.ptr); 810 vmw_fifo_commit(dev_priv, sizeof(*cmd)); 811 812 return 0; 813 } 814 815 /** 816 * vmw_sou_surface_fifo_commit - Callback to fill in and submit a 817 * blit surface to screen command. 818 * 819 * @dirty: The closure structure. 820 * 821 * Fills in the missing fields in the command, and translates the cliprects 822 * to match the destination bounding box encoded. 823 */ 824 static void vmw_sou_surface_fifo_commit(struct vmw_kms_dirty *dirty) 825 { 826 struct vmw_kms_sou_surface_dirty *sdirty = 827 container_of(dirty, typeof(*sdirty), base); 828 struct vmw_kms_sou_dirty_cmd *cmd = dirty->cmd; 829 s32 trans_x = dirty->unit->crtc.x - sdirty->dst_x; 830 s32 trans_y = dirty->unit->crtc.y - sdirty->dst_y; 831 size_t region_size = dirty->num_hits * sizeof(SVGASignedRect); 832 SVGASignedRect *blit = (SVGASignedRect *) &cmd[1]; 833 int i; 834 835 if (!dirty->num_hits) { 836 vmw_fifo_commit(dirty->dev_priv, 0); 837 return; 838 } 839 840 cmd->header.id = SVGA_3D_CMD_BLIT_SURFACE_TO_SCREEN; 841 cmd->header.size = sizeof(cmd->body) + region_size; 842 843 /* 844 * Use the destination bounding box to specify destination - and 845 * source bounding regions. 846 */ 847 cmd->body.destRect.left = sdirty->left; 848 cmd->body.destRect.right = sdirty->right; 849 cmd->body.destRect.top = sdirty->top; 850 cmd->body.destRect.bottom = sdirty->bottom; 851 852 cmd->body.srcRect.left = sdirty->left + trans_x; 853 cmd->body.srcRect.right = sdirty->right + trans_x; 854 cmd->body.srcRect.top = sdirty->top + trans_y; 855 cmd->body.srcRect.bottom = sdirty->bottom + trans_y; 856 857 cmd->body.srcImage.sid = sdirty->sid; 858 cmd->body.destScreenId = dirty->unit->unit; 859 860 /* Blits are relative to the destination rect. Translate. */ 861 for (i = 0; i < dirty->num_hits; ++i, ++blit) { 862 blit->left -= sdirty->left; 863 blit->right -= sdirty->left; 864 blit->top -= sdirty->top; 865 blit->bottom -= sdirty->top; 866 } 867 868 vmw_fifo_commit(dirty->dev_priv, region_size + sizeof(*cmd)); 869 870 sdirty->left = sdirty->top = S32_MAX; 871 sdirty->right = sdirty->bottom = S32_MIN; 872 } 873 874 /** 875 * vmw_sou_surface_clip - Callback to encode a blit surface to screen cliprect. 876 * 877 * @dirty: The closure structure 878 * 879 * Encodes a SVGASignedRect cliprect and updates the bounding box of the 880 * BLIT_SURFACE_TO_SCREEN command. 881 */ 882 static void vmw_sou_surface_clip(struct vmw_kms_dirty *dirty) 883 { 884 struct vmw_kms_sou_surface_dirty *sdirty = 885 container_of(dirty, typeof(*sdirty), base); 886 struct vmw_kms_sou_dirty_cmd *cmd = dirty->cmd; 887 SVGASignedRect *blit = (SVGASignedRect *) &cmd[1]; 888 889 /* Destination rect. */ 890 blit += dirty->num_hits; 891 blit->left = dirty->unit_x1; 892 blit->top = dirty->unit_y1; 893 blit->right = dirty->unit_x2; 894 blit->bottom = dirty->unit_y2; 895 896 /* Destination bounding box */ 897 sdirty->left = min_t(s32, sdirty->left, dirty->unit_x1); 898 sdirty->top = min_t(s32, sdirty->top, dirty->unit_y1); 899 sdirty->right = max_t(s32, sdirty->right, dirty->unit_x2); 900 sdirty->bottom = max_t(s32, sdirty->bottom, dirty->unit_y2); 901 902 dirty->num_hits++; 903 } 904 905 /** 906 * vmw_kms_sou_do_surface_dirty - Dirty part of a surface backed framebuffer 907 * 908 * @dev_priv: Pointer to the device private structure. 909 * @framebuffer: Pointer to the surface-buffer backed framebuffer. 910 * @clips: Array of clip rects. Either @clips or @vclips must be NULL. 911 * @vclips: Alternate array of clip rects. Either @clips or @vclips must 912 * be NULL. 913 * @srf: Pointer to surface to blit from. If NULL, the surface attached 914 * to @framebuffer will be used. 915 * @dest_x: X coordinate offset to align @srf with framebuffer coordinates. 916 * @dest_y: Y coordinate offset to align @srf with framebuffer coordinates. 917 * @num_clips: Number of clip rects in @clips. 918 * @inc: Increment to use when looping over @clips. 919 * @out_fence: If non-NULL, will return a ref-counted pointer to a 920 * struct vmw_fence_obj. The returned fence pointer may be NULL in which 921 * case the device has already synchronized. 922 * @crtc: If crtc is passed, perform surface dirty on that crtc only. 923 * 924 * Returns 0 on success, negative error code on failure. -ERESTARTSYS if 925 * interrupted. 926 */ 927 int vmw_kms_sou_do_surface_dirty(struct vmw_private *dev_priv, 928 struct vmw_framebuffer *framebuffer, 929 struct drm_clip_rect *clips, 930 struct drm_vmw_rect *vclips, 931 struct vmw_resource *srf, 932 s32 dest_x, 933 s32 dest_y, 934 unsigned num_clips, int inc, 935 struct vmw_fence_obj **out_fence, 936 struct drm_crtc *crtc) 937 { 938 struct vmw_framebuffer_surface *vfbs = 939 container_of(framebuffer, typeof(*vfbs), base); 940 struct vmw_kms_sou_surface_dirty sdirty; 941 struct vmw_validation_ctx ctx; 942 int ret; 943 944 if (!srf) 945 srf = &vfbs->surface->res; 946 947 ret = vmw_kms_helper_resource_prepare(srf, true, &ctx); 948 if (ret) 949 return ret; 950 951 sdirty.base.fifo_commit = vmw_sou_surface_fifo_commit; 952 sdirty.base.clip = vmw_sou_surface_clip; 953 sdirty.base.dev_priv = dev_priv; 954 sdirty.base.fifo_reserve_size = sizeof(struct vmw_kms_sou_dirty_cmd) + 955 sizeof(SVGASignedRect) * num_clips; 956 sdirty.base.crtc = crtc; 957 958 sdirty.sid = srf->id; 959 sdirty.left = sdirty.top = S32_MAX; 960 sdirty.right = sdirty.bottom = S32_MIN; 961 sdirty.dst_x = dest_x; 962 sdirty.dst_y = dest_y; 963 964 ret = vmw_kms_helper_dirty(dev_priv, framebuffer, clips, vclips, 965 dest_x, dest_y, num_clips, inc, 966 &sdirty.base); 967 vmw_kms_helper_resource_finish(&ctx, out_fence); 968 969 return ret; 970 } 971 972 /** 973 * vmw_sou_dmabuf_fifo_commit - Callback to submit a set of readback clips. 974 * 975 * @dirty: The closure structure. 976 * 977 * Commits a previously built command buffer of readback clips. 978 */ 979 static void vmw_sou_dmabuf_fifo_commit(struct vmw_kms_dirty *dirty) 980 { 981 if (!dirty->num_hits) { 982 vmw_fifo_commit(dirty->dev_priv, 0); 983 return; 984 } 985 986 vmw_fifo_commit(dirty->dev_priv, 987 sizeof(struct vmw_kms_sou_dmabuf_blit) * 988 dirty->num_hits); 989 } 990 991 /** 992 * vmw_sou_dmabuf_clip - Callback to encode a readback cliprect. 993 * 994 * @dirty: The closure structure 995 * 996 * Encodes a BLIT_GMRFB_TO_SCREEN cliprect. 997 */ 998 static void vmw_sou_dmabuf_clip(struct vmw_kms_dirty *dirty) 999 { 1000 struct vmw_kms_sou_dmabuf_blit *blit = dirty->cmd; 1001 1002 blit += dirty->num_hits; 1003 blit->header = SVGA_CMD_BLIT_GMRFB_TO_SCREEN; 1004 blit->body.destScreenId = dirty->unit->unit; 1005 blit->body.srcOrigin.x = dirty->fb_x; 1006 blit->body.srcOrigin.y = dirty->fb_y; 1007 blit->body.destRect.left = dirty->unit_x1; 1008 blit->body.destRect.top = dirty->unit_y1; 1009 blit->body.destRect.right = dirty->unit_x2; 1010 blit->body.destRect.bottom = dirty->unit_y2; 1011 dirty->num_hits++; 1012 } 1013 1014 /** 1015 * vmw_kms_do_dmabuf_dirty - Dirty part of a dma-buffer backed framebuffer 1016 * 1017 * @dev_priv: Pointer to the device private structure. 1018 * @framebuffer: Pointer to the dma-buffer backed framebuffer. 1019 * @clips: Array of clip rects. 1020 * @vclips: Alternate array of clip rects. Either @clips or @vclips must 1021 * be NULL. 1022 * @num_clips: Number of clip rects in @clips. 1023 * @increment: Increment to use when looping over @clips. 1024 * @interruptible: Whether to perform waits interruptible if possible. 1025 * @out_fence: If non-NULL, will return a ref-counted pointer to a 1026 * struct vmw_fence_obj. The returned fence pointer may be NULL in which 1027 * case the device has already synchronized. 1028 * @crtc: If crtc is passed, perform dmabuf dirty on that crtc only. 1029 * 1030 * Returns 0 on success, negative error code on failure. -ERESTARTSYS if 1031 * interrupted. 1032 */ 1033 int vmw_kms_sou_do_dmabuf_dirty(struct vmw_private *dev_priv, 1034 struct vmw_framebuffer *framebuffer, 1035 struct drm_clip_rect *clips, 1036 struct drm_vmw_rect *vclips, 1037 unsigned num_clips, int increment, 1038 bool interruptible, 1039 struct vmw_fence_obj **out_fence, 1040 struct drm_crtc *crtc) 1041 { 1042 struct vmw_dma_buffer *buf = 1043 container_of(framebuffer, struct vmw_framebuffer_dmabuf, 1044 base)->buffer; 1045 struct vmw_kms_dirty dirty; 1046 int ret; 1047 1048 ret = vmw_kms_helper_buffer_prepare(dev_priv, buf, interruptible, 1049 false, false); 1050 if (ret) 1051 return ret; 1052 1053 ret = do_dmabuf_define_gmrfb(dev_priv, framebuffer); 1054 if (unlikely(ret != 0)) 1055 goto out_revert; 1056 1057 dirty.crtc = crtc; 1058 dirty.fifo_commit = vmw_sou_dmabuf_fifo_commit; 1059 dirty.clip = vmw_sou_dmabuf_clip; 1060 dirty.fifo_reserve_size = sizeof(struct vmw_kms_sou_dmabuf_blit) * 1061 num_clips; 1062 ret = vmw_kms_helper_dirty(dev_priv, framebuffer, clips, vclips, 1063 0, 0, num_clips, increment, &dirty); 1064 vmw_kms_helper_buffer_finish(dev_priv, NULL, buf, out_fence, NULL); 1065 1066 return ret; 1067 1068 out_revert: 1069 vmw_kms_helper_buffer_revert(buf); 1070 1071 return ret; 1072 } 1073 1074 1075 /** 1076 * vmw_sou_readback_fifo_commit - Callback to submit a set of readback clips. 1077 * 1078 * @dirty: The closure structure. 1079 * 1080 * Commits a previously built command buffer of readback clips. 1081 */ 1082 static void vmw_sou_readback_fifo_commit(struct vmw_kms_dirty *dirty) 1083 { 1084 if (!dirty->num_hits) { 1085 vmw_fifo_commit(dirty->dev_priv, 0); 1086 return; 1087 } 1088 1089 vmw_fifo_commit(dirty->dev_priv, 1090 sizeof(struct vmw_kms_sou_readback_blit) * 1091 dirty->num_hits); 1092 } 1093 1094 /** 1095 * vmw_sou_readback_clip - Callback to encode a readback cliprect. 1096 * 1097 * @dirty: The closure structure 1098 * 1099 * Encodes a BLIT_SCREEN_TO_GMRFB cliprect. 1100 */ 1101 static void vmw_sou_readback_clip(struct vmw_kms_dirty *dirty) 1102 { 1103 struct vmw_kms_sou_readback_blit *blit = dirty->cmd; 1104 1105 blit += dirty->num_hits; 1106 blit->header = SVGA_CMD_BLIT_SCREEN_TO_GMRFB; 1107 blit->body.srcScreenId = dirty->unit->unit; 1108 blit->body.destOrigin.x = dirty->fb_x; 1109 blit->body.destOrigin.y = dirty->fb_y; 1110 blit->body.srcRect.left = dirty->unit_x1; 1111 blit->body.srcRect.top = dirty->unit_y1; 1112 blit->body.srcRect.right = dirty->unit_x2; 1113 blit->body.srcRect.bottom = dirty->unit_y2; 1114 dirty->num_hits++; 1115 } 1116 1117 /** 1118 * vmw_kms_sou_readback - Perform a readback from the screen object system to 1119 * a dma-buffer backed framebuffer. 1120 * 1121 * @dev_priv: Pointer to the device private structure. 1122 * @file_priv: Pointer to a struct drm_file identifying the caller. 1123 * Must be set to NULL if @user_fence_rep is NULL. 1124 * @vfb: Pointer to the dma-buffer backed framebuffer. 1125 * @user_fence_rep: User-space provided structure for fence information. 1126 * Must be set to non-NULL if @file_priv is non-NULL. 1127 * @vclips: Array of clip rects. 1128 * @num_clips: Number of clip rects in @vclips. 1129 * @crtc: If crtc is passed, readback on that crtc only. 1130 * 1131 * Returns 0 on success, negative error code on failure. -ERESTARTSYS if 1132 * interrupted. 1133 */ 1134 int vmw_kms_sou_readback(struct vmw_private *dev_priv, 1135 struct drm_file *file_priv, 1136 struct vmw_framebuffer *vfb, 1137 struct drm_vmw_fence_rep __user *user_fence_rep, 1138 struct drm_vmw_rect *vclips, 1139 uint32_t num_clips, 1140 struct drm_crtc *crtc) 1141 { 1142 struct vmw_dma_buffer *buf = 1143 container_of(vfb, struct vmw_framebuffer_dmabuf, base)->buffer; 1144 struct vmw_kms_dirty dirty; 1145 int ret; 1146 1147 ret = vmw_kms_helper_buffer_prepare(dev_priv, buf, true, false, 1148 false); 1149 if (ret) 1150 return ret; 1151 1152 ret = do_dmabuf_define_gmrfb(dev_priv, vfb); 1153 if (unlikely(ret != 0)) 1154 goto out_revert; 1155 1156 dirty.crtc = crtc; 1157 dirty.fifo_commit = vmw_sou_readback_fifo_commit; 1158 dirty.clip = vmw_sou_readback_clip; 1159 dirty.fifo_reserve_size = sizeof(struct vmw_kms_sou_readback_blit) * 1160 num_clips; 1161 ret = vmw_kms_helper_dirty(dev_priv, vfb, NULL, vclips, 1162 0, 0, num_clips, 1, &dirty); 1163 vmw_kms_helper_buffer_finish(dev_priv, file_priv, buf, NULL, 1164 user_fence_rep); 1165 1166 return ret; 1167 1168 out_revert: 1169 vmw_kms_helper_buffer_revert(buf); 1170 1171 return ret; 1172 } 1173