1 // SPDX-License-Identifier: GPL-2.0 OR MIT
2 /**************************************************************************
4 * Copyright 2011-2015 VMware, Inc., Palo Alto, CA., USA
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:
14 * The above copyright notice and this permission notice (including the
15 * next paragraph) shall be included in all copies or substantial portions
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.
26 **************************************************************************/
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>
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)
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.
53 struct vmw_kms_sou_surface_dirty
{
54 struct vmw_kms_dirty base
;
55 s32 left
, right
, top
, bottom
;
61 * SVGA commands that are used by this code. Please see the device headers
64 struct vmw_kms_sou_readback_blit
{
66 SVGAFifoCmdBlitScreenToGMRFB body
;
69 struct vmw_kms_sou_bo_blit
{
71 SVGAFifoCmdBlitGMRFBToScreen body
;
74 struct vmw_kms_sou_dirty_cmd
{
75 SVGA3dCmdHeader header
;
76 SVGA3dCmdBlitSurfaceToScreen body
;
80 * Display unit using screen objects.
82 struct vmw_screen_object_unit
{
83 struct vmw_display_unit base
;
85 unsigned long buffer_size
; /**< Size of allocated buffer */
86 struct vmw_buffer_object
*buffer
; /**< Backing store buffer */
91 static void vmw_sou_destroy(struct vmw_screen_object_unit
*sou
)
93 vmw_du_cleanup(&sou
->base
);
99 * Screen Object Display Unit CRTC functions
102 static void vmw_sou_crtc_destroy(struct drm_crtc
*crtc
)
104 vmw_sou_destroy(vmw_crtc_to_sou(crtc
));
108 * Send the fifo command to create a screen.
110 static int vmw_sou_fifo_create(struct vmw_private
*dev_priv
,
111 struct vmw_screen_object_unit
*sou
,
113 struct drm_display_mode
*mode
)
121 SVGAScreenObject obj
;
124 BUG_ON(!sou
->buffer
);
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");
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
;
144 sou
->base
.set_gui_x
= cmd
->obj
.root
.x
;
145 sou
->base
.set_gui_y
= cmd
->obj
.root
.y
;
147 /* Ok to assume that buffer is pinned in vram */
148 vmw_bo_get_guest_ptr(&sou
->buffer
->base
, &cmd
->obj
.backingStore
.ptr
);
149 cmd
->obj
.backingStore
.pitch
= mode
->hdisplay
* 4;
151 vmw_fifo_commit(dev_priv
, fifo_size
);
159 * Send the fifo command to destroy a screen.
161 static int vmw_sou_fifo_destroy(struct vmw_private
*dev_priv
,
162 struct vmw_screen_object_unit
*sou
)
171 SVGAFifoCmdDestroyScreen body
;
174 /* no need to do anything */
175 if (unlikely(!sou
->defined
))
178 fifo_size
= sizeof(*cmd
);
179 cmd
= vmw_fifo_reserve(dev_priv
, fifo_size
);
180 /* the hardware has hung, nothing we can do about it here */
181 if (unlikely(cmd
== NULL
)) {
182 DRM_ERROR("Fifo reserve failed.\n");
186 memset(cmd
, 0, fifo_size
);
187 cmd
->header
.cmdType
= SVGA_CMD_DESTROY_SCREEN
;
188 cmd
->body
.screenId
= sou
->base
.unit
;
190 vmw_fifo_commit(dev_priv
, fifo_size
);
193 ret
= vmw_fallback_wait(dev_priv
, false, true, 0, false, 3*HZ
);
194 if (unlikely(ret
!= 0))
195 DRM_ERROR("Failed to sync with HW");
197 sou
->defined
= false;
203 * vmw_sou_crtc_mode_set_nofb - Create new screen
205 * @crtc: CRTC associated with the new screen
207 * This function creates/destroys a screen. This function cannot fail, so if
208 * somehow we run into a failure, just do the best we can to get out.
210 static void vmw_sou_crtc_mode_set_nofb(struct drm_crtc
*crtc
)
212 struct vmw_private
*dev_priv
;
213 struct vmw_screen_object_unit
*sou
;
214 struct vmw_framebuffer
*vfb
;
215 struct drm_framebuffer
*fb
;
216 struct drm_plane_state
*ps
;
217 struct vmw_plane_state
*vps
;
220 sou
= vmw_crtc_to_sou(crtc
);
221 dev_priv
= vmw_priv(crtc
->dev
);
222 ps
= crtc
->primary
->state
;
224 vps
= vmw_plane_state_to_vps(ps
);
226 vfb
= (fb
) ? vmw_framebuffer_to_vfb(fb
) : NULL
;
229 ret
= vmw_sou_fifo_destroy(dev_priv
, sou
);
231 DRM_ERROR("Failed to destroy Screen Object\n");
237 struct drm_connector_state
*conn_state
;
238 struct vmw_connector_state
*vmw_conn_state
;
241 sou
->buffer
= vps
->bo
;
242 sou
->buffer_size
= vps
->bo_size
;
244 if (sou
->base
.is_implicit
) {
248 conn_state
= sou
->base
.connector
.state
;
249 vmw_conn_state
= vmw_connector_state_to_vcs(conn_state
);
251 x
= vmw_conn_state
->gui_x
;
252 y
= vmw_conn_state
->gui_y
;
255 ret
= vmw_sou_fifo_create(dev_priv
, sou
, x
, y
, &crtc
->mode
);
257 DRM_ERROR("Failed to define Screen Object %dx%d\n",
260 vmw_kms_add_active(dev_priv
, &sou
->base
, vfb
);
263 sou
->buffer_size
= 0;
265 vmw_kms_del_active(dev_priv
, &sou
->base
);
270 * vmw_sou_crtc_helper_prepare - Noop
272 * @crtc: CRTC associated with the new screen
274 * Prepares the CRTC for a mode set, but we don't need to do anything here.
276 static void vmw_sou_crtc_helper_prepare(struct drm_crtc
*crtc
)
281 * vmw_sou_crtc_atomic_enable - Noop
283 * @crtc: CRTC associated with the new screen
285 * This is called after a mode set has been completed.
287 static void vmw_sou_crtc_atomic_enable(struct drm_crtc
*crtc
,
288 struct drm_crtc_state
*old_state
)
293 * vmw_sou_crtc_atomic_disable - Turns off CRTC
295 * @crtc: CRTC to be turned off
297 static void vmw_sou_crtc_atomic_disable(struct drm_crtc
*crtc
,
298 struct drm_crtc_state
*old_state
)
300 struct vmw_private
*dev_priv
;
301 struct vmw_screen_object_unit
*sou
;
306 DRM_ERROR("CRTC is NULL\n");
310 sou
= vmw_crtc_to_sou(crtc
);
311 dev_priv
= vmw_priv(crtc
->dev
);
314 ret
= vmw_sou_fifo_destroy(dev_priv
, sou
);
316 DRM_ERROR("Failed to destroy Screen Object\n");
320 static int vmw_sou_crtc_page_flip(struct drm_crtc
*crtc
,
321 struct drm_framebuffer
*new_fb
,
322 struct drm_pending_vblank_event
*event
,
324 struct drm_modeset_acquire_ctx
*ctx
)
326 struct vmw_private
*dev_priv
= vmw_priv(crtc
->dev
);
329 if (!vmw_kms_crtc_flippable(dev_priv
, crtc
))
332 ret
= drm_atomic_helper_page_flip(crtc
, new_fb
, event
, flags
, ctx
);
334 DRM_ERROR("Page flip error %d.\n", ret
);
338 if (vmw_crtc_to_du(crtc
)->is_implicit
)
339 vmw_kms_update_implicit_fb(dev_priv
, crtc
);
344 static const struct drm_crtc_funcs vmw_screen_object_crtc_funcs
= {
345 .gamma_set
= vmw_du_crtc_gamma_set
,
346 .destroy
= vmw_sou_crtc_destroy
,
347 .reset
= vmw_du_crtc_reset
,
348 .atomic_duplicate_state
= vmw_du_crtc_duplicate_state
,
349 .atomic_destroy_state
= vmw_du_crtc_destroy_state
,
350 .set_config
= vmw_kms_set_config
,
351 .page_flip
= vmw_sou_crtc_page_flip
,
355 * Screen Object Display Unit encoder functions
358 static void vmw_sou_encoder_destroy(struct drm_encoder
*encoder
)
360 vmw_sou_destroy(vmw_encoder_to_sou(encoder
));
363 static const struct drm_encoder_funcs vmw_screen_object_encoder_funcs
= {
364 .destroy
= vmw_sou_encoder_destroy
,
368 * Screen Object Display Unit connector functions
371 static void vmw_sou_connector_destroy(struct drm_connector
*connector
)
373 vmw_sou_destroy(vmw_connector_to_sou(connector
));
376 static const struct drm_connector_funcs vmw_sou_connector_funcs
= {
377 .dpms
= vmw_du_connector_dpms
,
378 .detect
= vmw_du_connector_detect
,
379 .fill_modes
= vmw_du_connector_fill_modes
,
380 .set_property
= vmw_du_connector_set_property
,
381 .destroy
= vmw_sou_connector_destroy
,
382 .reset
= vmw_du_connector_reset
,
383 .atomic_duplicate_state
= vmw_du_connector_duplicate_state
,
384 .atomic_destroy_state
= vmw_du_connector_destroy_state
,
385 .atomic_set_property
= vmw_du_connector_atomic_set_property
,
386 .atomic_get_property
= vmw_du_connector_atomic_get_property
,
391 drm_connector_helper_funcs vmw_sou_connector_helper_funcs
= {
392 .best_encoder
= drm_atomic_helper_best_encoder
,
398 * Screen Object Display Plane Functions
402 * vmw_sou_primary_plane_cleanup_fb - Frees sou backing buffer
404 * @plane: display plane
405 * @old_state: Contains the FB to clean up
407 * Unpins the display surface
409 * Returns 0 on success
412 vmw_sou_primary_plane_cleanup_fb(struct drm_plane
*plane
,
413 struct drm_plane_state
*old_state
)
415 struct vmw_plane_state
*vps
= vmw_plane_state_to_vps(old_state
);
416 struct drm_crtc
*crtc
= plane
->state
->crtc
?
417 plane
->state
->crtc
: old_state
->crtc
;
420 vmw_bo_unpin(vmw_priv(crtc
->dev
), vps
->bo
, false);
421 vmw_bo_unreference(&vps
->bo
);
424 vmw_du_plane_cleanup_fb(plane
, old_state
);
429 * vmw_sou_primary_plane_prepare_fb - allocate backing buffer
431 * @plane: display plane
432 * @new_state: info on the new plane state, including the FB
434 * The SOU backing buffer is our equivalent of the display plane.
436 * Returns 0 on success
439 vmw_sou_primary_plane_prepare_fb(struct drm_plane
*plane
,
440 struct drm_plane_state
*new_state
)
442 struct drm_framebuffer
*new_fb
= new_state
->fb
;
443 struct drm_crtc
*crtc
= plane
->state
->crtc
?: new_state
->crtc
;
444 struct vmw_plane_state
*vps
= vmw_plane_state_to_vps(new_state
);
445 struct vmw_private
*dev_priv
;
451 vmw_bo_unreference(&vps
->bo
);
457 size
= new_state
->crtc_w
* new_state
->crtc_h
* 4;
458 dev_priv
= vmw_priv(crtc
->dev
);
461 if (vps
->bo_size
== size
) {
463 * Note that this might temporarily up the pin-count
464 * to 2, until cleanup_fb() is called.
466 return vmw_bo_pin_in_vram(dev_priv
, vps
->bo
,
470 vmw_bo_unreference(&vps
->bo
);
474 vps
->bo
= kzalloc(sizeof(*vps
->bo
), GFP_KERNEL
);
478 vmw_svga_enable(dev_priv
);
480 /* After we have alloced the backing store might not be able to
481 * resume the overlays, this is preferred to failing to alloc.
483 vmw_overlay_pause_all(dev_priv
);
484 ret
= vmw_bo_init(dev_priv
, vps
->bo
, size
,
485 &vmw_vram_ne_placement
,
486 false, &vmw_bo_bo_free
);
487 vmw_overlay_resume_all(dev_priv
);
489 vps
->bo
= NULL
; /* vmw_bo_init frees on error */
496 * TTM already thinks the buffer is pinned, but make sure the
497 * pin_count is upped.
499 return vmw_bo_pin_in_vram(dev_priv
, vps
->bo
, true);
504 vmw_sou_primary_plane_atomic_update(struct drm_plane
*plane
,
505 struct drm_plane_state
*old_state
)
507 struct drm_crtc
*crtc
= plane
->state
->crtc
;
508 struct drm_pending_vblank_event
*event
= NULL
;
509 struct vmw_fence_obj
*fence
= NULL
;
512 if (crtc
&& plane
->state
->fb
) {
513 struct vmw_private
*dev_priv
= vmw_priv(crtc
->dev
);
514 struct vmw_framebuffer
*vfb
=
515 vmw_framebuffer_to_vfb(plane
->state
->fb
);
516 struct drm_vmw_rect vclips
;
520 vclips
.w
= crtc
->mode
.hdisplay
;
521 vclips
.h
= crtc
->mode
.vdisplay
;
524 ret
= vmw_kms_sou_do_bo_dirty(dev_priv
, vfb
, NULL
,
528 ret
= vmw_kms_sou_do_surface_dirty(dev_priv
, vfb
, NULL
,
533 * We cannot really fail this function, so if we do, then output
534 * an error and maintain consistent atomic state.
537 DRM_ERROR("Failed to update screen.\n");
540 * When disabling a plane, CRTC and FB should always be NULL
541 * together, otherwise it's an error.
542 * Here primary plane is being disable so should really blank
543 * the screen object display unit, if not already done.
548 event
= crtc
->state
->event
;
550 * In case of failure and other cases, vblank event will be sent in
551 * vmw_du_crtc_atomic_flush.
553 if (event
&& fence
) {
554 struct drm_file
*file_priv
= event
->base
.file_priv
;
556 ret
= vmw_event_fence_action_queue(file_priv
,
559 &event
->event
.vbl
.tv_sec
,
560 &event
->event
.vbl
.tv_usec
,
563 if (unlikely(ret
!= 0))
564 DRM_ERROR("Failed to queue event on fence.\n");
566 crtc
->state
->event
= NULL
;
570 vmw_fence_obj_unreference(&fence
);
574 static const struct drm_plane_funcs vmw_sou_plane_funcs
= {
575 .update_plane
= drm_atomic_helper_update_plane
,
576 .disable_plane
= drm_atomic_helper_disable_plane
,
577 .destroy
= vmw_du_primary_plane_destroy
,
578 .reset
= vmw_du_plane_reset
,
579 .atomic_duplicate_state
= vmw_du_plane_duplicate_state
,
580 .atomic_destroy_state
= vmw_du_plane_destroy_state
,
583 static const struct drm_plane_funcs vmw_sou_cursor_funcs
= {
584 .update_plane
= drm_atomic_helper_update_plane
,
585 .disable_plane
= drm_atomic_helper_disable_plane
,
586 .destroy
= vmw_du_cursor_plane_destroy
,
587 .reset
= vmw_du_plane_reset
,
588 .atomic_duplicate_state
= vmw_du_plane_duplicate_state
,
589 .atomic_destroy_state
= vmw_du_plane_destroy_state
,
596 drm_plane_helper_funcs vmw_sou_cursor_plane_helper_funcs
= {
597 .atomic_check
= vmw_du_cursor_plane_atomic_check
,
598 .atomic_update
= vmw_du_cursor_plane_atomic_update
,
599 .prepare_fb
= vmw_du_cursor_plane_prepare_fb
,
600 .cleanup_fb
= vmw_du_plane_cleanup_fb
,
604 drm_plane_helper_funcs vmw_sou_primary_plane_helper_funcs
= {
605 .atomic_check
= vmw_du_primary_plane_atomic_check
,
606 .atomic_update
= vmw_sou_primary_plane_atomic_update
,
607 .prepare_fb
= vmw_sou_primary_plane_prepare_fb
,
608 .cleanup_fb
= vmw_sou_primary_plane_cleanup_fb
,
611 static const struct drm_crtc_helper_funcs vmw_sou_crtc_helper_funcs
= {
612 .prepare
= vmw_sou_crtc_helper_prepare
,
613 .mode_set_nofb
= vmw_sou_crtc_mode_set_nofb
,
614 .atomic_check
= vmw_du_crtc_atomic_check
,
615 .atomic_begin
= vmw_du_crtc_atomic_begin
,
616 .atomic_flush
= vmw_du_crtc_atomic_flush
,
617 .atomic_enable
= vmw_sou_crtc_atomic_enable
,
618 .atomic_disable
= vmw_sou_crtc_atomic_disable
,
622 static int vmw_sou_init(struct vmw_private
*dev_priv
, unsigned unit
)
624 struct vmw_screen_object_unit
*sou
;
625 struct drm_device
*dev
= dev_priv
->dev
;
626 struct drm_connector
*connector
;
627 struct drm_encoder
*encoder
;
628 struct drm_plane
*primary
, *cursor
;
629 struct drm_crtc
*crtc
;
632 sou
= kzalloc(sizeof(*sou
), GFP_KERNEL
);
636 sou
->base
.unit
= unit
;
637 crtc
= &sou
->base
.crtc
;
638 encoder
= &sou
->base
.encoder
;
639 connector
= &sou
->base
.connector
;
640 primary
= &sou
->base
.primary
;
641 cursor
= &sou
->base
.cursor
;
643 sou
->base
.active_implicit
= false;
644 sou
->base
.pref_active
= (unit
== 0);
645 sou
->base
.pref_width
= dev_priv
->initial_width
;
646 sou
->base
.pref_height
= dev_priv
->initial_height
;
647 sou
->base
.pref_mode
= NULL
;
650 * Remove this after enabling atomic because property values can
651 * only exist in a state object
653 sou
->base
.is_implicit
= false;
655 /* Initialize primary plane */
656 vmw_du_plane_reset(primary
);
658 ret
= drm_universal_plane_init(dev
, &sou
->base
.primary
,
659 0, &vmw_sou_plane_funcs
,
660 vmw_primary_plane_formats
,
661 ARRAY_SIZE(vmw_primary_plane_formats
),
662 NULL
, DRM_PLANE_TYPE_PRIMARY
, NULL
);
664 DRM_ERROR("Failed to initialize primary plane");
668 drm_plane_helper_add(primary
, &vmw_sou_primary_plane_helper_funcs
);
670 /* Initialize cursor plane */
671 vmw_du_plane_reset(cursor
);
673 ret
= drm_universal_plane_init(dev
, &sou
->base
.cursor
,
674 0, &vmw_sou_cursor_funcs
,
675 vmw_cursor_plane_formats
,
676 ARRAY_SIZE(vmw_cursor_plane_formats
),
677 NULL
, DRM_PLANE_TYPE_CURSOR
, NULL
);
679 DRM_ERROR("Failed to initialize cursor plane");
680 drm_plane_cleanup(&sou
->base
.primary
);
684 drm_plane_helper_add(cursor
, &vmw_sou_cursor_plane_helper_funcs
);
686 vmw_du_connector_reset(connector
);
687 ret
= drm_connector_init(dev
, connector
, &vmw_sou_connector_funcs
,
688 DRM_MODE_CONNECTOR_VIRTUAL
);
690 DRM_ERROR("Failed to initialize connector\n");
694 drm_connector_helper_add(connector
, &vmw_sou_connector_helper_funcs
);
695 connector
->status
= vmw_du_connector_detect(connector
, true);
696 vmw_connector_state_to_vcs(connector
->state
)->is_implicit
= false;
699 ret
= drm_encoder_init(dev
, encoder
, &vmw_screen_object_encoder_funcs
,
700 DRM_MODE_ENCODER_VIRTUAL
, NULL
);
702 DRM_ERROR("Failed to initialize encoder\n");
703 goto err_free_connector
;
706 (void) drm_connector_attach_encoder(connector
, encoder
);
707 encoder
->possible_crtcs
= (1 << unit
);
708 encoder
->possible_clones
= 0;
710 ret
= drm_connector_register(connector
);
712 DRM_ERROR("Failed to register connector\n");
713 goto err_free_encoder
;
717 vmw_du_crtc_reset(crtc
);
718 ret
= drm_crtc_init_with_planes(dev
, crtc
, &sou
->base
.primary
,
720 &vmw_screen_object_crtc_funcs
, NULL
);
722 DRM_ERROR("Failed to initialize CRTC\n");
723 goto err_free_unregister
;
726 drm_crtc_helper_add(crtc
, &vmw_sou_crtc_helper_funcs
);
728 drm_mode_crtc_set_gamma_size(crtc
, 256);
730 drm_object_attach_property(&connector
->base
,
731 dev_priv
->hotplug_mode_update_property
, 1);
732 drm_object_attach_property(&connector
->base
,
733 dev
->mode_config
.suggested_x_property
, 0);
734 drm_object_attach_property(&connector
->base
,
735 dev
->mode_config
.suggested_y_property
, 0);
736 if (dev_priv
->implicit_placement_property
)
737 drm_object_attach_property
739 dev_priv
->implicit_placement_property
,
740 sou
->base
.is_implicit
);
745 drm_connector_unregister(connector
);
747 drm_encoder_cleanup(encoder
);
749 drm_connector_cleanup(connector
);
755 int vmw_kms_sou_init_display(struct vmw_private
*dev_priv
)
757 struct drm_device
*dev
= dev_priv
->dev
;
760 if (!(dev_priv
->capabilities
& SVGA_CAP_SCREEN_OBJECT_2
)) {
761 DRM_INFO("Not using screen objects,"
762 " missing cap SCREEN_OBJECT_2\n");
767 dev_priv
->num_implicit
= 0;
768 dev_priv
->implicit_fb
= NULL
;
770 ret
= drm_vblank_init(dev
, VMWGFX_NUM_DISPLAY_UNITS
);
771 if (unlikely(ret
!= 0))
774 vmw_kms_create_implicit_placement_property(dev_priv
, false);
776 for (i
= 0; i
< VMWGFX_NUM_DISPLAY_UNITS
; ++i
)
777 vmw_sou_init(dev_priv
, i
);
779 dev_priv
->active_display_unit
= vmw_du_screen_object
;
781 DRM_INFO("Screen Objects Display Unit initialized\n");
786 static int do_bo_define_gmrfb(struct vmw_private
*dev_priv
,
787 struct vmw_framebuffer
*framebuffer
)
789 struct vmw_buffer_object
*buf
=
790 container_of(framebuffer
, struct vmw_framebuffer_bo
,
792 int depth
= framebuffer
->base
.format
->depth
;
795 SVGAFifoCmdDefineGMRFB body
;
798 /* Emulate RGBA support, contrary to svga_reg.h this is not
799 * supported by hosts. This is only a problem if we are reading
800 * this value later and expecting what we uploaded back.
805 cmd
= vmw_fifo_reserve(dev_priv
, sizeof(*cmd
));
807 DRM_ERROR("Out of fifo space for dirty framebuffer command.\n");
811 cmd
->header
= SVGA_CMD_DEFINE_GMRFB
;
812 cmd
->body
.format
.bitsPerPixel
= framebuffer
->base
.format
->cpp
[0] * 8;
813 cmd
->body
.format
.colorDepth
= depth
;
814 cmd
->body
.format
.reserved
= 0;
815 cmd
->body
.bytesPerLine
= framebuffer
->base
.pitches
[0];
816 /* Buffer is reserved in vram or GMR */
817 vmw_bo_get_guest_ptr(&buf
->base
, &cmd
->body
.ptr
);
818 vmw_fifo_commit(dev_priv
, sizeof(*cmd
));
824 * vmw_sou_surface_fifo_commit - Callback to fill in and submit a
825 * blit surface to screen command.
827 * @dirty: The closure structure.
829 * Fills in the missing fields in the command, and translates the cliprects
830 * to match the destination bounding box encoded.
832 static void vmw_sou_surface_fifo_commit(struct vmw_kms_dirty
*dirty
)
834 struct vmw_kms_sou_surface_dirty
*sdirty
=
835 container_of(dirty
, typeof(*sdirty
), base
);
836 struct vmw_kms_sou_dirty_cmd
*cmd
= dirty
->cmd
;
837 s32 trans_x
= dirty
->unit
->crtc
.x
- sdirty
->dst_x
;
838 s32 trans_y
= dirty
->unit
->crtc
.y
- sdirty
->dst_y
;
839 size_t region_size
= dirty
->num_hits
* sizeof(SVGASignedRect
);
840 SVGASignedRect
*blit
= (SVGASignedRect
*) &cmd
[1];
843 if (!dirty
->num_hits
) {
844 vmw_fifo_commit(dirty
->dev_priv
, 0);
848 cmd
->header
.id
= SVGA_3D_CMD_BLIT_SURFACE_TO_SCREEN
;
849 cmd
->header
.size
= sizeof(cmd
->body
) + region_size
;
852 * Use the destination bounding box to specify destination - and
853 * source bounding regions.
855 cmd
->body
.destRect
.left
= sdirty
->left
;
856 cmd
->body
.destRect
.right
= sdirty
->right
;
857 cmd
->body
.destRect
.top
= sdirty
->top
;
858 cmd
->body
.destRect
.bottom
= sdirty
->bottom
;
860 cmd
->body
.srcRect
.left
= sdirty
->left
+ trans_x
;
861 cmd
->body
.srcRect
.right
= sdirty
->right
+ trans_x
;
862 cmd
->body
.srcRect
.top
= sdirty
->top
+ trans_y
;
863 cmd
->body
.srcRect
.bottom
= sdirty
->bottom
+ trans_y
;
865 cmd
->body
.srcImage
.sid
= sdirty
->sid
;
866 cmd
->body
.destScreenId
= dirty
->unit
->unit
;
868 /* Blits are relative to the destination rect. Translate. */
869 for (i
= 0; i
< dirty
->num_hits
; ++i
, ++blit
) {
870 blit
->left
-= sdirty
->left
;
871 blit
->right
-= sdirty
->left
;
872 blit
->top
-= sdirty
->top
;
873 blit
->bottom
-= sdirty
->top
;
876 vmw_fifo_commit(dirty
->dev_priv
, region_size
+ sizeof(*cmd
));
878 sdirty
->left
= sdirty
->top
= S32_MAX
;
879 sdirty
->right
= sdirty
->bottom
= S32_MIN
;
883 * vmw_sou_surface_clip - Callback to encode a blit surface to screen cliprect.
885 * @dirty: The closure structure
887 * Encodes a SVGASignedRect cliprect and updates the bounding box of the
888 * BLIT_SURFACE_TO_SCREEN command.
890 static void vmw_sou_surface_clip(struct vmw_kms_dirty
*dirty
)
892 struct vmw_kms_sou_surface_dirty
*sdirty
=
893 container_of(dirty
, typeof(*sdirty
), base
);
894 struct vmw_kms_sou_dirty_cmd
*cmd
= dirty
->cmd
;
895 SVGASignedRect
*blit
= (SVGASignedRect
*) &cmd
[1];
897 /* Destination rect. */
898 blit
+= dirty
->num_hits
;
899 blit
->left
= dirty
->unit_x1
;
900 blit
->top
= dirty
->unit_y1
;
901 blit
->right
= dirty
->unit_x2
;
902 blit
->bottom
= dirty
->unit_y2
;
904 /* Destination bounding box */
905 sdirty
->left
= min_t(s32
, sdirty
->left
, dirty
->unit_x1
);
906 sdirty
->top
= min_t(s32
, sdirty
->top
, dirty
->unit_y1
);
907 sdirty
->right
= max_t(s32
, sdirty
->right
, dirty
->unit_x2
);
908 sdirty
->bottom
= max_t(s32
, sdirty
->bottom
, dirty
->unit_y2
);
914 * vmw_kms_sou_do_surface_dirty - Dirty part of a surface backed framebuffer
916 * @dev_priv: Pointer to the device private structure.
917 * @framebuffer: Pointer to the surface-buffer backed framebuffer.
918 * @clips: Array of clip rects. Either @clips or @vclips must be NULL.
919 * @vclips: Alternate array of clip rects. Either @clips or @vclips must
921 * @srf: Pointer to surface to blit from. If NULL, the surface attached
922 * to @framebuffer will be used.
923 * @dest_x: X coordinate offset to align @srf with framebuffer coordinates.
924 * @dest_y: Y coordinate offset to align @srf with framebuffer coordinates.
925 * @num_clips: Number of clip rects in @clips.
926 * @inc: Increment to use when looping over @clips.
927 * @out_fence: If non-NULL, will return a ref-counted pointer to a
928 * struct vmw_fence_obj. The returned fence pointer may be NULL in which
929 * case the device has already synchronized.
930 * @crtc: If crtc is passed, perform surface dirty on that crtc only.
932 * Returns 0 on success, negative error code on failure. -ERESTARTSYS if
935 int vmw_kms_sou_do_surface_dirty(struct vmw_private
*dev_priv
,
936 struct vmw_framebuffer
*framebuffer
,
937 struct drm_clip_rect
*clips
,
938 struct drm_vmw_rect
*vclips
,
939 struct vmw_resource
*srf
,
942 unsigned num_clips
, int inc
,
943 struct vmw_fence_obj
**out_fence
,
944 struct drm_crtc
*crtc
)
946 struct vmw_framebuffer_surface
*vfbs
=
947 container_of(framebuffer
, typeof(*vfbs
), base
);
948 struct vmw_kms_sou_surface_dirty sdirty
;
949 struct vmw_validation_ctx ctx
;
953 srf
= &vfbs
->surface
->res
;
955 ret
= vmw_kms_helper_resource_prepare(srf
, true, &ctx
);
959 sdirty
.base
.fifo_commit
= vmw_sou_surface_fifo_commit
;
960 sdirty
.base
.clip
= vmw_sou_surface_clip
;
961 sdirty
.base
.dev_priv
= dev_priv
;
962 sdirty
.base
.fifo_reserve_size
= sizeof(struct vmw_kms_sou_dirty_cmd
) +
963 sizeof(SVGASignedRect
) * num_clips
;
964 sdirty
.base
.crtc
= crtc
;
966 sdirty
.sid
= srf
->id
;
967 sdirty
.left
= sdirty
.top
= S32_MAX
;
968 sdirty
.right
= sdirty
.bottom
= S32_MIN
;
969 sdirty
.dst_x
= dest_x
;
970 sdirty
.dst_y
= dest_y
;
972 ret
= vmw_kms_helper_dirty(dev_priv
, framebuffer
, clips
, vclips
,
973 dest_x
, dest_y
, num_clips
, inc
,
975 vmw_kms_helper_resource_finish(&ctx
, out_fence
);
981 * vmw_sou_bo_fifo_commit - Callback to submit a set of readback clips.
983 * @dirty: The closure structure.
985 * Commits a previously built command buffer of readback clips.
987 static void vmw_sou_bo_fifo_commit(struct vmw_kms_dirty
*dirty
)
989 if (!dirty
->num_hits
) {
990 vmw_fifo_commit(dirty
->dev_priv
, 0);
994 vmw_fifo_commit(dirty
->dev_priv
,
995 sizeof(struct vmw_kms_sou_bo_blit
) *
1000 * vmw_sou_bo_clip - Callback to encode a readback cliprect.
1002 * @dirty: The closure structure
1004 * Encodes a BLIT_GMRFB_TO_SCREEN cliprect.
1006 static void vmw_sou_bo_clip(struct vmw_kms_dirty
*dirty
)
1008 struct vmw_kms_sou_bo_blit
*blit
= dirty
->cmd
;
1010 blit
+= dirty
->num_hits
;
1011 blit
->header
= SVGA_CMD_BLIT_GMRFB_TO_SCREEN
;
1012 blit
->body
.destScreenId
= dirty
->unit
->unit
;
1013 blit
->body
.srcOrigin
.x
= dirty
->fb_x
;
1014 blit
->body
.srcOrigin
.y
= dirty
->fb_y
;
1015 blit
->body
.destRect
.left
= dirty
->unit_x1
;
1016 blit
->body
.destRect
.top
= dirty
->unit_y1
;
1017 blit
->body
.destRect
.right
= dirty
->unit_x2
;
1018 blit
->body
.destRect
.bottom
= dirty
->unit_y2
;
1023 * vmw_kms_do_bo_dirty - Dirty part of a buffer-object backed framebuffer
1025 * @dev_priv: Pointer to the device private structure.
1026 * @framebuffer: Pointer to the buffer-object backed framebuffer.
1027 * @clips: Array of clip rects.
1028 * @vclips: Alternate array of clip rects. Either @clips or @vclips must
1030 * @num_clips: Number of clip rects in @clips.
1031 * @increment: Increment to use when looping over @clips.
1032 * @interruptible: Whether to perform waits interruptible if possible.
1033 * @out_fence: If non-NULL, will return a ref-counted pointer to a
1034 * struct vmw_fence_obj. The returned fence pointer may be NULL in which
1035 * case the device has already synchronized.
1036 * @crtc: If crtc is passed, perform bo dirty on that crtc only.
1038 * Returns 0 on success, negative error code on failure. -ERESTARTSYS if
1041 int vmw_kms_sou_do_bo_dirty(struct vmw_private
*dev_priv
,
1042 struct vmw_framebuffer
*framebuffer
,
1043 struct drm_clip_rect
*clips
,
1044 struct drm_vmw_rect
*vclips
,
1045 unsigned num_clips
, int increment
,
1047 struct vmw_fence_obj
**out_fence
,
1048 struct drm_crtc
*crtc
)
1050 struct vmw_buffer_object
*buf
=
1051 container_of(framebuffer
, struct vmw_framebuffer_bo
,
1053 struct vmw_kms_dirty dirty
;
1056 ret
= vmw_kms_helper_buffer_prepare(dev_priv
, buf
, interruptible
,
1061 ret
= do_bo_define_gmrfb(dev_priv
, framebuffer
);
1062 if (unlikely(ret
!= 0))
1066 dirty
.fifo_commit
= vmw_sou_bo_fifo_commit
;
1067 dirty
.clip
= vmw_sou_bo_clip
;
1068 dirty
.fifo_reserve_size
= sizeof(struct vmw_kms_sou_bo_blit
) *
1070 ret
= vmw_kms_helper_dirty(dev_priv
, framebuffer
, clips
, vclips
,
1071 0, 0, num_clips
, increment
, &dirty
);
1072 vmw_kms_helper_buffer_finish(dev_priv
, NULL
, buf
, out_fence
, NULL
);
1077 vmw_kms_helper_buffer_revert(buf
);
1084 * vmw_sou_readback_fifo_commit - Callback to submit a set of readback clips.
1086 * @dirty: The closure structure.
1088 * Commits a previously built command buffer of readback clips.
1090 static void vmw_sou_readback_fifo_commit(struct vmw_kms_dirty
*dirty
)
1092 if (!dirty
->num_hits
) {
1093 vmw_fifo_commit(dirty
->dev_priv
, 0);
1097 vmw_fifo_commit(dirty
->dev_priv
,
1098 sizeof(struct vmw_kms_sou_readback_blit
) *
1103 * vmw_sou_readback_clip - Callback to encode a readback cliprect.
1105 * @dirty: The closure structure
1107 * Encodes a BLIT_SCREEN_TO_GMRFB cliprect.
1109 static void vmw_sou_readback_clip(struct vmw_kms_dirty
*dirty
)
1111 struct vmw_kms_sou_readback_blit
*blit
= dirty
->cmd
;
1113 blit
+= dirty
->num_hits
;
1114 blit
->header
= SVGA_CMD_BLIT_SCREEN_TO_GMRFB
;
1115 blit
->body
.srcScreenId
= dirty
->unit
->unit
;
1116 blit
->body
.destOrigin
.x
= dirty
->fb_x
;
1117 blit
->body
.destOrigin
.y
= dirty
->fb_y
;
1118 blit
->body
.srcRect
.left
= dirty
->unit_x1
;
1119 blit
->body
.srcRect
.top
= dirty
->unit_y1
;
1120 blit
->body
.srcRect
.right
= dirty
->unit_x2
;
1121 blit
->body
.srcRect
.bottom
= dirty
->unit_y2
;
1126 * vmw_kms_sou_readback - Perform a readback from the screen object system to
1127 * a buffer-object backed framebuffer.
1129 * @dev_priv: Pointer to the device private structure.
1130 * @file_priv: Pointer to a struct drm_file identifying the caller.
1131 * Must be set to NULL if @user_fence_rep is NULL.
1132 * @vfb: Pointer to the buffer-object backed framebuffer.
1133 * @user_fence_rep: User-space provided structure for fence information.
1134 * Must be set to non-NULL if @file_priv is non-NULL.
1135 * @vclips: Array of clip rects.
1136 * @num_clips: Number of clip rects in @vclips.
1137 * @crtc: If crtc is passed, readback on that crtc only.
1139 * Returns 0 on success, negative error code on failure. -ERESTARTSYS if
1142 int vmw_kms_sou_readback(struct vmw_private
*dev_priv
,
1143 struct drm_file
*file_priv
,
1144 struct vmw_framebuffer
*vfb
,
1145 struct drm_vmw_fence_rep __user
*user_fence_rep
,
1146 struct drm_vmw_rect
*vclips
,
1148 struct drm_crtc
*crtc
)
1150 struct vmw_buffer_object
*buf
=
1151 container_of(vfb
, struct vmw_framebuffer_bo
, base
)->buffer
;
1152 struct vmw_kms_dirty dirty
;
1155 ret
= vmw_kms_helper_buffer_prepare(dev_priv
, buf
, true, false,
1160 ret
= do_bo_define_gmrfb(dev_priv
, vfb
);
1161 if (unlikely(ret
!= 0))
1165 dirty
.fifo_commit
= vmw_sou_readback_fifo_commit
;
1166 dirty
.clip
= vmw_sou_readback_clip
;
1167 dirty
.fifo_reserve_size
= sizeof(struct vmw_kms_sou_readback_blit
) *
1169 ret
= vmw_kms_helper_dirty(dev_priv
, vfb
, NULL
, vclips
,
1170 0, 0, num_clips
, 1, &dirty
);
1171 vmw_kms_helper_buffer_finish(dev_priv
, file_priv
, buf
, NULL
,
1177 vmw_kms_helper_buffer_revert(buf
);