Linux 3.14
[deliverable/linux.git] / drivers / gpu / drm / i915 / i915_dma.c
1 /* i915_dma.c -- DMA support for the I915 -*- linux-c -*-
2 */
3 /*
4 * Copyright 2003 Tungsten Graphics, Inc., Cedar Park, Texas.
5 * All Rights Reserved.
6 *
7 * Permission is hereby granted, free of charge, to any person obtaining a
8 * copy of this software and associated documentation files (the
9 * "Software"), to deal in the Software without restriction, including
10 * without limitation the rights to use, copy, modify, merge, publish,
11 * distribute, sub license, and/or sell copies of the Software, and to
12 * permit persons to whom the Software is furnished to do so, subject to
13 * the following conditions:
14 *
15 * The above copyright notice and this permission notice (including the
16 * next paragraph) shall be included in all copies or substantial portions
17 * of the Software.
18 *
19 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
20 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
21 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
22 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
23 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
24 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
25 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
26 *
27 */
28
29 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
30
31 #include <drm/drmP.h>
32 #include <drm/drm_crtc_helper.h>
33 #include <drm/drm_fb_helper.h>
34 #include "intel_drv.h"
35 #include <drm/i915_drm.h>
36 #include "i915_drv.h"
37 #include "i915_trace.h"
38 #include <linux/pci.h>
39 #include <linux/vgaarb.h>
40 #include <linux/acpi.h>
41 #include <linux/pnp.h>
42 #include <linux/vga_switcheroo.h>
43 #include <linux/slab.h>
44 #include <acpi/video.h>
45 #include <linux/pm.h>
46 #include <linux/pm_runtime.h>
47
48 #define LP_RING(d) (&((struct drm_i915_private *)(d))->ring[RCS])
49
50 #define BEGIN_LP_RING(n) \
51 intel_ring_begin(LP_RING(dev_priv), (n))
52
53 #define OUT_RING(x) \
54 intel_ring_emit(LP_RING(dev_priv), x)
55
56 #define ADVANCE_LP_RING() \
57 __intel_ring_advance(LP_RING(dev_priv))
58
59 /**
60 * Lock test for when it's just for synchronization of ring access.
61 *
62 * In that case, we don't need to do it when GEM is initialized as nobody else
63 * has access to the ring.
64 */
65 #define RING_LOCK_TEST_WITH_RETURN(dev, file) do { \
66 if (LP_RING(dev->dev_private)->obj == NULL) \
67 LOCK_TEST_WITH_RETURN(dev, file); \
68 } while (0)
69
70 static inline u32
71 intel_read_legacy_status_page(struct drm_i915_private *dev_priv, int reg)
72 {
73 if (I915_NEED_GFX_HWS(dev_priv->dev))
74 return ioread32(dev_priv->dri1.gfx_hws_cpu_addr + reg);
75 else
76 return intel_read_status_page(LP_RING(dev_priv), reg);
77 }
78
79 #define READ_HWSP(dev_priv, reg) intel_read_legacy_status_page(dev_priv, reg)
80 #define READ_BREADCRUMB(dev_priv) READ_HWSP(dev_priv, I915_BREADCRUMB_INDEX)
81 #define I915_BREADCRUMB_INDEX 0x21
82
83 void i915_update_dri1_breadcrumb(struct drm_device *dev)
84 {
85 drm_i915_private_t *dev_priv = dev->dev_private;
86 struct drm_i915_master_private *master_priv;
87
88 /*
89 * The dri breadcrumb update races against the drm master disappearing.
90 * Instead of trying to fix this (this is by far not the only ums issue)
91 * just don't do the update in kms mode.
92 */
93 if (drm_core_check_feature(dev, DRIVER_MODESET))
94 return;
95
96 if (dev->primary->master) {
97 master_priv = dev->primary->master->driver_priv;
98 if (master_priv->sarea_priv)
99 master_priv->sarea_priv->last_dispatch =
100 READ_BREADCRUMB(dev_priv);
101 }
102 }
103
104 static void i915_write_hws_pga(struct drm_device *dev)
105 {
106 drm_i915_private_t *dev_priv = dev->dev_private;
107 u32 addr;
108
109 addr = dev_priv->status_page_dmah->busaddr;
110 if (INTEL_INFO(dev)->gen >= 4)
111 addr |= (dev_priv->status_page_dmah->busaddr >> 28) & 0xf0;
112 I915_WRITE(HWS_PGA, addr);
113 }
114
115 /**
116 * Frees the hardware status page, whether it's a physical address or a virtual
117 * address set up by the X Server.
118 */
119 static void i915_free_hws(struct drm_device *dev)
120 {
121 drm_i915_private_t *dev_priv = dev->dev_private;
122 struct intel_ring_buffer *ring = LP_RING(dev_priv);
123
124 if (dev_priv->status_page_dmah) {
125 drm_pci_free(dev, dev_priv->status_page_dmah);
126 dev_priv->status_page_dmah = NULL;
127 }
128
129 if (ring->status_page.gfx_addr) {
130 ring->status_page.gfx_addr = 0;
131 iounmap(dev_priv->dri1.gfx_hws_cpu_addr);
132 }
133
134 /* Need to rewrite hardware status page */
135 I915_WRITE(HWS_PGA, 0x1ffff000);
136 }
137
138 void i915_kernel_lost_context(struct drm_device * dev)
139 {
140 drm_i915_private_t *dev_priv = dev->dev_private;
141 struct drm_i915_master_private *master_priv;
142 struct intel_ring_buffer *ring = LP_RING(dev_priv);
143
144 /*
145 * We should never lose context on the ring with modesetting
146 * as we don't expose it to userspace
147 */
148 if (drm_core_check_feature(dev, DRIVER_MODESET))
149 return;
150
151 ring->head = I915_READ_HEAD(ring) & HEAD_ADDR;
152 ring->tail = I915_READ_TAIL(ring) & TAIL_ADDR;
153 ring->space = ring->head - (ring->tail + I915_RING_FREE_SPACE);
154 if (ring->space < 0)
155 ring->space += ring->size;
156
157 if (!dev->primary->master)
158 return;
159
160 master_priv = dev->primary->master->driver_priv;
161 if (ring->head == ring->tail && master_priv->sarea_priv)
162 master_priv->sarea_priv->perf_boxes |= I915_BOX_RING_EMPTY;
163 }
164
165 static int i915_dma_cleanup(struct drm_device * dev)
166 {
167 drm_i915_private_t *dev_priv = dev->dev_private;
168 int i;
169
170 /* Make sure interrupts are disabled here because the uninstall ioctl
171 * may not have been called from userspace and after dev_private
172 * is freed, it's too late.
173 */
174 if (dev->irq_enabled)
175 drm_irq_uninstall(dev);
176
177 mutex_lock(&dev->struct_mutex);
178 for (i = 0; i < I915_NUM_RINGS; i++)
179 intel_cleanup_ring_buffer(&dev_priv->ring[i]);
180 mutex_unlock(&dev->struct_mutex);
181
182 /* Clear the HWS virtual address at teardown */
183 if (I915_NEED_GFX_HWS(dev))
184 i915_free_hws(dev);
185
186 return 0;
187 }
188
189 static int i915_initialize(struct drm_device * dev, drm_i915_init_t * init)
190 {
191 drm_i915_private_t *dev_priv = dev->dev_private;
192 struct drm_i915_master_private *master_priv = dev->primary->master->driver_priv;
193 int ret;
194
195 master_priv->sarea = drm_getsarea(dev);
196 if (master_priv->sarea) {
197 master_priv->sarea_priv = (drm_i915_sarea_t *)
198 ((u8 *)master_priv->sarea->handle + init->sarea_priv_offset);
199 } else {
200 DRM_DEBUG_DRIVER("sarea not found assuming DRI2 userspace\n");
201 }
202
203 if (init->ring_size != 0) {
204 if (LP_RING(dev_priv)->obj != NULL) {
205 i915_dma_cleanup(dev);
206 DRM_ERROR("Client tried to initialize ringbuffer in "
207 "GEM mode\n");
208 return -EINVAL;
209 }
210
211 ret = intel_render_ring_init_dri(dev,
212 init->ring_start,
213 init->ring_size);
214 if (ret) {
215 i915_dma_cleanup(dev);
216 return ret;
217 }
218 }
219
220 dev_priv->dri1.cpp = init->cpp;
221 dev_priv->dri1.back_offset = init->back_offset;
222 dev_priv->dri1.front_offset = init->front_offset;
223 dev_priv->dri1.current_page = 0;
224 if (master_priv->sarea_priv)
225 master_priv->sarea_priv->pf_current_page = 0;
226
227 /* Allow hardware batchbuffers unless told otherwise.
228 */
229 dev_priv->dri1.allow_batchbuffer = 1;
230
231 return 0;
232 }
233
234 static int i915_dma_resume(struct drm_device * dev)
235 {
236 drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
237 struct intel_ring_buffer *ring = LP_RING(dev_priv);
238
239 DRM_DEBUG_DRIVER("%s\n", __func__);
240
241 if (ring->virtual_start == NULL) {
242 DRM_ERROR("can not ioremap virtual address for"
243 " ring buffer\n");
244 return -ENOMEM;
245 }
246
247 /* Program Hardware Status Page */
248 if (!ring->status_page.page_addr) {
249 DRM_ERROR("Can not find hardware status page\n");
250 return -EINVAL;
251 }
252 DRM_DEBUG_DRIVER("hw status page @ %p\n",
253 ring->status_page.page_addr);
254 if (ring->status_page.gfx_addr != 0)
255 intel_ring_setup_status_page(ring);
256 else
257 i915_write_hws_pga(dev);
258
259 DRM_DEBUG_DRIVER("Enabled hardware status page\n");
260
261 return 0;
262 }
263
264 static int i915_dma_init(struct drm_device *dev, void *data,
265 struct drm_file *file_priv)
266 {
267 drm_i915_init_t *init = data;
268 int retcode = 0;
269
270 if (drm_core_check_feature(dev, DRIVER_MODESET))
271 return -ENODEV;
272
273 switch (init->func) {
274 case I915_INIT_DMA:
275 retcode = i915_initialize(dev, init);
276 break;
277 case I915_CLEANUP_DMA:
278 retcode = i915_dma_cleanup(dev);
279 break;
280 case I915_RESUME_DMA:
281 retcode = i915_dma_resume(dev);
282 break;
283 default:
284 retcode = -EINVAL;
285 break;
286 }
287
288 return retcode;
289 }
290
291 /* Implement basically the same security restrictions as hardware does
292 * for MI_BATCH_NON_SECURE. These can be made stricter at any time.
293 *
294 * Most of the calculations below involve calculating the size of a
295 * particular instruction. It's important to get the size right as
296 * that tells us where the next instruction to check is. Any illegal
297 * instruction detected will be given a size of zero, which is a
298 * signal to abort the rest of the buffer.
299 */
300 static int validate_cmd(int cmd)
301 {
302 switch (((cmd >> 29) & 0x7)) {
303 case 0x0:
304 switch ((cmd >> 23) & 0x3f) {
305 case 0x0:
306 return 1; /* MI_NOOP */
307 case 0x4:
308 return 1; /* MI_FLUSH */
309 default:
310 return 0; /* disallow everything else */
311 }
312 break;
313 case 0x1:
314 return 0; /* reserved */
315 case 0x2:
316 return (cmd & 0xff) + 2; /* 2d commands */
317 case 0x3:
318 if (((cmd >> 24) & 0x1f) <= 0x18)
319 return 1;
320
321 switch ((cmd >> 24) & 0x1f) {
322 case 0x1c:
323 return 1;
324 case 0x1d:
325 switch ((cmd >> 16) & 0xff) {
326 case 0x3:
327 return (cmd & 0x1f) + 2;
328 case 0x4:
329 return (cmd & 0xf) + 2;
330 default:
331 return (cmd & 0xffff) + 2;
332 }
333 case 0x1e:
334 if (cmd & (1 << 23))
335 return (cmd & 0xffff) + 1;
336 else
337 return 1;
338 case 0x1f:
339 if ((cmd & (1 << 23)) == 0) /* inline vertices */
340 return (cmd & 0x1ffff) + 2;
341 else if (cmd & (1 << 17)) /* indirect random */
342 if ((cmd & 0xffff) == 0)
343 return 0; /* unknown length, too hard */
344 else
345 return (((cmd & 0xffff) + 1) / 2) + 1;
346 else
347 return 2; /* indirect sequential */
348 default:
349 return 0;
350 }
351 default:
352 return 0;
353 }
354
355 return 0;
356 }
357
358 static int i915_emit_cmds(struct drm_device * dev, int *buffer, int dwords)
359 {
360 drm_i915_private_t *dev_priv = dev->dev_private;
361 int i, ret;
362
363 if ((dwords+1) * sizeof(int) >= LP_RING(dev_priv)->size - 8)
364 return -EINVAL;
365
366 for (i = 0; i < dwords;) {
367 int sz = validate_cmd(buffer[i]);
368 if (sz == 0 || i + sz > dwords)
369 return -EINVAL;
370 i += sz;
371 }
372
373 ret = BEGIN_LP_RING((dwords+1)&~1);
374 if (ret)
375 return ret;
376
377 for (i = 0; i < dwords; i++)
378 OUT_RING(buffer[i]);
379 if (dwords & 1)
380 OUT_RING(0);
381
382 ADVANCE_LP_RING();
383
384 return 0;
385 }
386
387 int
388 i915_emit_box(struct drm_device *dev,
389 struct drm_clip_rect *box,
390 int DR1, int DR4)
391 {
392 struct drm_i915_private *dev_priv = dev->dev_private;
393 int ret;
394
395 if (box->y2 <= box->y1 || box->x2 <= box->x1 ||
396 box->y2 <= 0 || box->x2 <= 0) {
397 DRM_ERROR("Bad box %d,%d..%d,%d\n",
398 box->x1, box->y1, box->x2, box->y2);
399 return -EINVAL;
400 }
401
402 if (INTEL_INFO(dev)->gen >= 4) {
403 ret = BEGIN_LP_RING(4);
404 if (ret)
405 return ret;
406
407 OUT_RING(GFX_OP_DRAWRECT_INFO_I965);
408 OUT_RING((box->x1 & 0xffff) | (box->y1 << 16));
409 OUT_RING(((box->x2 - 1) & 0xffff) | ((box->y2 - 1) << 16));
410 OUT_RING(DR4);
411 } else {
412 ret = BEGIN_LP_RING(6);
413 if (ret)
414 return ret;
415
416 OUT_RING(GFX_OP_DRAWRECT_INFO);
417 OUT_RING(DR1);
418 OUT_RING((box->x1 & 0xffff) | (box->y1 << 16));
419 OUT_RING(((box->x2 - 1) & 0xffff) | ((box->y2 - 1) << 16));
420 OUT_RING(DR4);
421 OUT_RING(0);
422 }
423 ADVANCE_LP_RING();
424
425 return 0;
426 }
427
428 /* XXX: Emitting the counter should really be moved to part of the IRQ
429 * emit. For now, do it in both places:
430 */
431
432 static void i915_emit_breadcrumb(struct drm_device *dev)
433 {
434 drm_i915_private_t *dev_priv = dev->dev_private;
435 struct drm_i915_master_private *master_priv = dev->primary->master->driver_priv;
436
437 dev_priv->dri1.counter++;
438 if (dev_priv->dri1.counter > 0x7FFFFFFFUL)
439 dev_priv->dri1.counter = 0;
440 if (master_priv->sarea_priv)
441 master_priv->sarea_priv->last_enqueue = dev_priv->dri1.counter;
442
443 if (BEGIN_LP_RING(4) == 0) {
444 OUT_RING(MI_STORE_DWORD_INDEX);
445 OUT_RING(I915_BREADCRUMB_INDEX << MI_STORE_DWORD_INDEX_SHIFT);
446 OUT_RING(dev_priv->dri1.counter);
447 OUT_RING(0);
448 ADVANCE_LP_RING();
449 }
450 }
451
452 static int i915_dispatch_cmdbuffer(struct drm_device * dev,
453 drm_i915_cmdbuffer_t *cmd,
454 struct drm_clip_rect *cliprects,
455 void *cmdbuf)
456 {
457 int nbox = cmd->num_cliprects;
458 int i = 0, count, ret;
459
460 if (cmd->sz & 0x3) {
461 DRM_ERROR("alignment");
462 return -EINVAL;
463 }
464
465 i915_kernel_lost_context(dev);
466
467 count = nbox ? nbox : 1;
468
469 for (i = 0; i < count; i++) {
470 if (i < nbox) {
471 ret = i915_emit_box(dev, &cliprects[i],
472 cmd->DR1, cmd->DR4);
473 if (ret)
474 return ret;
475 }
476
477 ret = i915_emit_cmds(dev, cmdbuf, cmd->sz / 4);
478 if (ret)
479 return ret;
480 }
481
482 i915_emit_breadcrumb(dev);
483 return 0;
484 }
485
486 static int i915_dispatch_batchbuffer(struct drm_device * dev,
487 drm_i915_batchbuffer_t * batch,
488 struct drm_clip_rect *cliprects)
489 {
490 struct drm_i915_private *dev_priv = dev->dev_private;
491 int nbox = batch->num_cliprects;
492 int i, count, ret;
493
494 if ((batch->start | batch->used) & 0x7) {
495 DRM_ERROR("alignment");
496 return -EINVAL;
497 }
498
499 i915_kernel_lost_context(dev);
500
501 count = nbox ? nbox : 1;
502 for (i = 0; i < count; i++) {
503 if (i < nbox) {
504 ret = i915_emit_box(dev, &cliprects[i],
505 batch->DR1, batch->DR4);
506 if (ret)
507 return ret;
508 }
509
510 if (!IS_I830(dev) && !IS_845G(dev)) {
511 ret = BEGIN_LP_RING(2);
512 if (ret)
513 return ret;
514
515 if (INTEL_INFO(dev)->gen >= 4) {
516 OUT_RING(MI_BATCH_BUFFER_START | (2 << 6) | MI_BATCH_NON_SECURE_I965);
517 OUT_RING(batch->start);
518 } else {
519 OUT_RING(MI_BATCH_BUFFER_START | (2 << 6));
520 OUT_RING(batch->start | MI_BATCH_NON_SECURE);
521 }
522 } else {
523 ret = BEGIN_LP_RING(4);
524 if (ret)
525 return ret;
526
527 OUT_RING(MI_BATCH_BUFFER);
528 OUT_RING(batch->start | MI_BATCH_NON_SECURE);
529 OUT_RING(batch->start + batch->used - 4);
530 OUT_RING(0);
531 }
532 ADVANCE_LP_RING();
533 }
534
535
536 if (IS_G4X(dev) || IS_GEN5(dev)) {
537 if (BEGIN_LP_RING(2) == 0) {
538 OUT_RING(MI_FLUSH | MI_NO_WRITE_FLUSH | MI_INVALIDATE_ISP);
539 OUT_RING(MI_NOOP);
540 ADVANCE_LP_RING();
541 }
542 }
543
544 i915_emit_breadcrumb(dev);
545 return 0;
546 }
547
548 static int i915_dispatch_flip(struct drm_device * dev)
549 {
550 drm_i915_private_t *dev_priv = dev->dev_private;
551 struct drm_i915_master_private *master_priv =
552 dev->primary->master->driver_priv;
553 int ret;
554
555 if (!master_priv->sarea_priv)
556 return -EINVAL;
557
558 DRM_DEBUG_DRIVER("%s: page=%d pfCurrentPage=%d\n",
559 __func__,
560 dev_priv->dri1.current_page,
561 master_priv->sarea_priv->pf_current_page);
562
563 i915_kernel_lost_context(dev);
564
565 ret = BEGIN_LP_RING(10);
566 if (ret)
567 return ret;
568
569 OUT_RING(MI_FLUSH | MI_READ_FLUSH);
570 OUT_RING(0);
571
572 OUT_RING(CMD_OP_DISPLAYBUFFER_INFO | ASYNC_FLIP);
573 OUT_RING(0);
574 if (dev_priv->dri1.current_page == 0) {
575 OUT_RING(dev_priv->dri1.back_offset);
576 dev_priv->dri1.current_page = 1;
577 } else {
578 OUT_RING(dev_priv->dri1.front_offset);
579 dev_priv->dri1.current_page = 0;
580 }
581 OUT_RING(0);
582
583 OUT_RING(MI_WAIT_FOR_EVENT | MI_WAIT_FOR_PLANE_A_FLIP);
584 OUT_RING(0);
585
586 ADVANCE_LP_RING();
587
588 master_priv->sarea_priv->last_enqueue = dev_priv->dri1.counter++;
589
590 if (BEGIN_LP_RING(4) == 0) {
591 OUT_RING(MI_STORE_DWORD_INDEX);
592 OUT_RING(I915_BREADCRUMB_INDEX << MI_STORE_DWORD_INDEX_SHIFT);
593 OUT_RING(dev_priv->dri1.counter);
594 OUT_RING(0);
595 ADVANCE_LP_RING();
596 }
597
598 master_priv->sarea_priv->pf_current_page = dev_priv->dri1.current_page;
599 return 0;
600 }
601
602 static int i915_quiescent(struct drm_device *dev)
603 {
604 i915_kernel_lost_context(dev);
605 return intel_ring_idle(LP_RING(dev->dev_private));
606 }
607
608 static int i915_flush_ioctl(struct drm_device *dev, void *data,
609 struct drm_file *file_priv)
610 {
611 int ret;
612
613 if (drm_core_check_feature(dev, DRIVER_MODESET))
614 return -ENODEV;
615
616 RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
617
618 mutex_lock(&dev->struct_mutex);
619 ret = i915_quiescent(dev);
620 mutex_unlock(&dev->struct_mutex);
621
622 return ret;
623 }
624
625 static int i915_batchbuffer(struct drm_device *dev, void *data,
626 struct drm_file *file_priv)
627 {
628 drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
629 struct drm_i915_master_private *master_priv = dev->primary->master->driver_priv;
630 drm_i915_sarea_t *sarea_priv = (drm_i915_sarea_t *)
631 master_priv->sarea_priv;
632 drm_i915_batchbuffer_t *batch = data;
633 int ret;
634 struct drm_clip_rect *cliprects = NULL;
635
636 if (drm_core_check_feature(dev, DRIVER_MODESET))
637 return -ENODEV;
638
639 if (!dev_priv->dri1.allow_batchbuffer) {
640 DRM_ERROR("Batchbuffer ioctl disabled\n");
641 return -EINVAL;
642 }
643
644 DRM_DEBUG_DRIVER("i915 batchbuffer, start %x used %d cliprects %d\n",
645 batch->start, batch->used, batch->num_cliprects);
646
647 RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
648
649 if (batch->num_cliprects < 0)
650 return -EINVAL;
651
652 if (batch->num_cliprects) {
653 cliprects = kcalloc(batch->num_cliprects,
654 sizeof(*cliprects),
655 GFP_KERNEL);
656 if (cliprects == NULL)
657 return -ENOMEM;
658
659 ret = copy_from_user(cliprects, batch->cliprects,
660 batch->num_cliprects *
661 sizeof(struct drm_clip_rect));
662 if (ret != 0) {
663 ret = -EFAULT;
664 goto fail_free;
665 }
666 }
667
668 mutex_lock(&dev->struct_mutex);
669 ret = i915_dispatch_batchbuffer(dev, batch, cliprects);
670 mutex_unlock(&dev->struct_mutex);
671
672 if (sarea_priv)
673 sarea_priv->last_dispatch = READ_BREADCRUMB(dev_priv);
674
675 fail_free:
676 kfree(cliprects);
677
678 return ret;
679 }
680
681 static int i915_cmdbuffer(struct drm_device *dev, void *data,
682 struct drm_file *file_priv)
683 {
684 drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
685 struct drm_i915_master_private *master_priv = dev->primary->master->driver_priv;
686 drm_i915_sarea_t *sarea_priv = (drm_i915_sarea_t *)
687 master_priv->sarea_priv;
688 drm_i915_cmdbuffer_t *cmdbuf = data;
689 struct drm_clip_rect *cliprects = NULL;
690 void *batch_data;
691 int ret;
692
693 DRM_DEBUG_DRIVER("i915 cmdbuffer, buf %p sz %d cliprects %d\n",
694 cmdbuf->buf, cmdbuf->sz, cmdbuf->num_cliprects);
695
696 if (drm_core_check_feature(dev, DRIVER_MODESET))
697 return -ENODEV;
698
699 RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
700
701 if (cmdbuf->num_cliprects < 0)
702 return -EINVAL;
703
704 batch_data = kmalloc(cmdbuf->sz, GFP_KERNEL);
705 if (batch_data == NULL)
706 return -ENOMEM;
707
708 ret = copy_from_user(batch_data, cmdbuf->buf, cmdbuf->sz);
709 if (ret != 0) {
710 ret = -EFAULT;
711 goto fail_batch_free;
712 }
713
714 if (cmdbuf->num_cliprects) {
715 cliprects = kcalloc(cmdbuf->num_cliprects,
716 sizeof(*cliprects), GFP_KERNEL);
717 if (cliprects == NULL) {
718 ret = -ENOMEM;
719 goto fail_batch_free;
720 }
721
722 ret = copy_from_user(cliprects, cmdbuf->cliprects,
723 cmdbuf->num_cliprects *
724 sizeof(struct drm_clip_rect));
725 if (ret != 0) {
726 ret = -EFAULT;
727 goto fail_clip_free;
728 }
729 }
730
731 mutex_lock(&dev->struct_mutex);
732 ret = i915_dispatch_cmdbuffer(dev, cmdbuf, cliprects, batch_data);
733 mutex_unlock(&dev->struct_mutex);
734 if (ret) {
735 DRM_ERROR("i915_dispatch_cmdbuffer failed\n");
736 goto fail_clip_free;
737 }
738
739 if (sarea_priv)
740 sarea_priv->last_dispatch = READ_BREADCRUMB(dev_priv);
741
742 fail_clip_free:
743 kfree(cliprects);
744 fail_batch_free:
745 kfree(batch_data);
746
747 return ret;
748 }
749
750 static int i915_emit_irq(struct drm_device * dev)
751 {
752 drm_i915_private_t *dev_priv = dev->dev_private;
753 struct drm_i915_master_private *master_priv = dev->primary->master->driver_priv;
754
755 i915_kernel_lost_context(dev);
756
757 DRM_DEBUG_DRIVER("\n");
758
759 dev_priv->dri1.counter++;
760 if (dev_priv->dri1.counter > 0x7FFFFFFFUL)
761 dev_priv->dri1.counter = 1;
762 if (master_priv->sarea_priv)
763 master_priv->sarea_priv->last_enqueue = dev_priv->dri1.counter;
764
765 if (BEGIN_LP_RING(4) == 0) {
766 OUT_RING(MI_STORE_DWORD_INDEX);
767 OUT_RING(I915_BREADCRUMB_INDEX << MI_STORE_DWORD_INDEX_SHIFT);
768 OUT_RING(dev_priv->dri1.counter);
769 OUT_RING(MI_USER_INTERRUPT);
770 ADVANCE_LP_RING();
771 }
772
773 return dev_priv->dri1.counter;
774 }
775
776 static int i915_wait_irq(struct drm_device * dev, int irq_nr)
777 {
778 drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
779 struct drm_i915_master_private *master_priv = dev->primary->master->driver_priv;
780 int ret = 0;
781 struct intel_ring_buffer *ring = LP_RING(dev_priv);
782
783 DRM_DEBUG_DRIVER("irq_nr=%d breadcrumb=%d\n", irq_nr,
784 READ_BREADCRUMB(dev_priv));
785
786 if (READ_BREADCRUMB(dev_priv) >= irq_nr) {
787 if (master_priv->sarea_priv)
788 master_priv->sarea_priv->last_dispatch = READ_BREADCRUMB(dev_priv);
789 return 0;
790 }
791
792 if (master_priv->sarea_priv)
793 master_priv->sarea_priv->perf_boxes |= I915_BOX_WAIT;
794
795 if (ring->irq_get(ring)) {
796 DRM_WAIT_ON(ret, ring->irq_queue, 3 * HZ,
797 READ_BREADCRUMB(dev_priv) >= irq_nr);
798 ring->irq_put(ring);
799 } else if (wait_for(READ_BREADCRUMB(dev_priv) >= irq_nr, 3000))
800 ret = -EBUSY;
801
802 if (ret == -EBUSY) {
803 DRM_ERROR("EBUSY -- rec: %d emitted: %d\n",
804 READ_BREADCRUMB(dev_priv), (int)dev_priv->dri1.counter);
805 }
806
807 return ret;
808 }
809
810 /* Needs the lock as it touches the ring.
811 */
812 static int i915_irq_emit(struct drm_device *dev, void *data,
813 struct drm_file *file_priv)
814 {
815 drm_i915_private_t *dev_priv = dev->dev_private;
816 drm_i915_irq_emit_t *emit = data;
817 int result;
818
819 if (drm_core_check_feature(dev, DRIVER_MODESET))
820 return -ENODEV;
821
822 if (!dev_priv || !LP_RING(dev_priv)->virtual_start) {
823 DRM_ERROR("called with no initialization\n");
824 return -EINVAL;
825 }
826
827 RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
828
829 mutex_lock(&dev->struct_mutex);
830 result = i915_emit_irq(dev);
831 mutex_unlock(&dev->struct_mutex);
832
833 if (copy_to_user(emit->irq_seq, &result, sizeof(int))) {
834 DRM_ERROR("copy_to_user\n");
835 return -EFAULT;
836 }
837
838 return 0;
839 }
840
841 /* Doesn't need the hardware lock.
842 */
843 static int i915_irq_wait(struct drm_device *dev, void *data,
844 struct drm_file *file_priv)
845 {
846 drm_i915_private_t *dev_priv = dev->dev_private;
847 drm_i915_irq_wait_t *irqwait = data;
848
849 if (drm_core_check_feature(dev, DRIVER_MODESET))
850 return -ENODEV;
851
852 if (!dev_priv) {
853 DRM_ERROR("called with no initialization\n");
854 return -EINVAL;
855 }
856
857 return i915_wait_irq(dev, irqwait->irq_seq);
858 }
859
860 static int i915_vblank_pipe_get(struct drm_device *dev, void *data,
861 struct drm_file *file_priv)
862 {
863 drm_i915_private_t *dev_priv = dev->dev_private;
864 drm_i915_vblank_pipe_t *pipe = data;
865
866 if (drm_core_check_feature(dev, DRIVER_MODESET))
867 return -ENODEV;
868
869 if (!dev_priv) {
870 DRM_ERROR("called with no initialization\n");
871 return -EINVAL;
872 }
873
874 pipe->pipe = DRM_I915_VBLANK_PIPE_A | DRM_I915_VBLANK_PIPE_B;
875
876 return 0;
877 }
878
879 /**
880 * Schedule buffer swap at given vertical blank.
881 */
882 static int i915_vblank_swap(struct drm_device *dev, void *data,
883 struct drm_file *file_priv)
884 {
885 /* The delayed swap mechanism was fundamentally racy, and has been
886 * removed. The model was that the client requested a delayed flip/swap
887 * from the kernel, then waited for vblank before continuing to perform
888 * rendering. The problem was that the kernel might wake the client
889 * up before it dispatched the vblank swap (since the lock has to be
890 * held while touching the ringbuffer), in which case the client would
891 * clear and start the next frame before the swap occurred, and
892 * flicker would occur in addition to likely missing the vblank.
893 *
894 * In the absence of this ioctl, userland falls back to a correct path
895 * of waiting for a vblank, then dispatching the swap on its own.
896 * Context switching to userland and back is plenty fast enough for
897 * meeting the requirements of vblank swapping.
898 */
899 return -EINVAL;
900 }
901
902 static int i915_flip_bufs(struct drm_device *dev, void *data,
903 struct drm_file *file_priv)
904 {
905 int ret;
906
907 if (drm_core_check_feature(dev, DRIVER_MODESET))
908 return -ENODEV;
909
910 DRM_DEBUG_DRIVER("%s\n", __func__);
911
912 RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
913
914 mutex_lock(&dev->struct_mutex);
915 ret = i915_dispatch_flip(dev);
916 mutex_unlock(&dev->struct_mutex);
917
918 return ret;
919 }
920
921 static int i915_getparam(struct drm_device *dev, void *data,
922 struct drm_file *file_priv)
923 {
924 drm_i915_private_t *dev_priv = dev->dev_private;
925 drm_i915_getparam_t *param = data;
926 int value;
927
928 if (!dev_priv) {
929 DRM_ERROR("called with no initialization\n");
930 return -EINVAL;
931 }
932
933 switch (param->param) {
934 case I915_PARAM_IRQ_ACTIVE:
935 value = dev->pdev->irq ? 1 : 0;
936 break;
937 case I915_PARAM_ALLOW_BATCHBUFFER:
938 value = dev_priv->dri1.allow_batchbuffer ? 1 : 0;
939 break;
940 case I915_PARAM_LAST_DISPATCH:
941 value = READ_BREADCRUMB(dev_priv);
942 break;
943 case I915_PARAM_CHIPSET_ID:
944 value = dev->pdev->device;
945 break;
946 case I915_PARAM_HAS_GEM:
947 value = 1;
948 break;
949 case I915_PARAM_NUM_FENCES_AVAIL:
950 value = dev_priv->num_fence_regs - dev_priv->fence_reg_start;
951 break;
952 case I915_PARAM_HAS_OVERLAY:
953 value = dev_priv->overlay ? 1 : 0;
954 break;
955 case I915_PARAM_HAS_PAGEFLIPPING:
956 value = 1;
957 break;
958 case I915_PARAM_HAS_EXECBUF2:
959 /* depends on GEM */
960 value = 1;
961 break;
962 case I915_PARAM_HAS_BSD:
963 value = intel_ring_initialized(&dev_priv->ring[VCS]);
964 break;
965 case I915_PARAM_HAS_BLT:
966 value = intel_ring_initialized(&dev_priv->ring[BCS]);
967 break;
968 case I915_PARAM_HAS_VEBOX:
969 value = intel_ring_initialized(&dev_priv->ring[VECS]);
970 break;
971 case I915_PARAM_HAS_RELAXED_FENCING:
972 value = 1;
973 break;
974 case I915_PARAM_HAS_COHERENT_RINGS:
975 value = 1;
976 break;
977 case I915_PARAM_HAS_EXEC_CONSTANTS:
978 value = INTEL_INFO(dev)->gen >= 4;
979 break;
980 case I915_PARAM_HAS_RELAXED_DELTA:
981 value = 1;
982 break;
983 case I915_PARAM_HAS_GEN7_SOL_RESET:
984 value = 1;
985 break;
986 case I915_PARAM_HAS_LLC:
987 value = HAS_LLC(dev);
988 break;
989 case I915_PARAM_HAS_WT:
990 value = HAS_WT(dev);
991 break;
992 case I915_PARAM_HAS_ALIASING_PPGTT:
993 value = dev_priv->mm.aliasing_ppgtt ? 1 : 0;
994 break;
995 case I915_PARAM_HAS_WAIT_TIMEOUT:
996 value = 1;
997 break;
998 case I915_PARAM_HAS_SEMAPHORES:
999 value = i915_semaphore_is_enabled(dev);
1000 break;
1001 case I915_PARAM_HAS_PRIME_VMAP_FLUSH:
1002 value = 1;
1003 break;
1004 case I915_PARAM_HAS_SECURE_BATCHES:
1005 value = capable(CAP_SYS_ADMIN);
1006 break;
1007 case I915_PARAM_HAS_PINNED_BATCHES:
1008 value = 1;
1009 break;
1010 case I915_PARAM_HAS_EXEC_NO_RELOC:
1011 value = 1;
1012 break;
1013 case I915_PARAM_HAS_EXEC_HANDLE_LUT:
1014 value = 1;
1015 break;
1016 default:
1017 DRM_DEBUG("Unknown parameter %d\n", param->param);
1018 return -EINVAL;
1019 }
1020
1021 if (copy_to_user(param->value, &value, sizeof(int))) {
1022 DRM_ERROR("copy_to_user failed\n");
1023 return -EFAULT;
1024 }
1025
1026 return 0;
1027 }
1028
1029 static int i915_setparam(struct drm_device *dev, void *data,
1030 struct drm_file *file_priv)
1031 {
1032 drm_i915_private_t *dev_priv = dev->dev_private;
1033 drm_i915_setparam_t *param = data;
1034
1035 if (!dev_priv) {
1036 DRM_ERROR("called with no initialization\n");
1037 return -EINVAL;
1038 }
1039
1040 switch (param->param) {
1041 case I915_SETPARAM_USE_MI_BATCHBUFFER_START:
1042 break;
1043 case I915_SETPARAM_TEX_LRU_LOG_GRANULARITY:
1044 break;
1045 case I915_SETPARAM_ALLOW_BATCHBUFFER:
1046 dev_priv->dri1.allow_batchbuffer = param->value ? 1 : 0;
1047 break;
1048 case I915_SETPARAM_NUM_USED_FENCES:
1049 if (param->value > dev_priv->num_fence_regs ||
1050 param->value < 0)
1051 return -EINVAL;
1052 /* Userspace can use first N regs */
1053 dev_priv->fence_reg_start = param->value;
1054 break;
1055 default:
1056 DRM_DEBUG_DRIVER("unknown parameter %d\n",
1057 param->param);
1058 return -EINVAL;
1059 }
1060
1061 return 0;
1062 }
1063
1064 static int i915_set_status_page(struct drm_device *dev, void *data,
1065 struct drm_file *file_priv)
1066 {
1067 drm_i915_private_t *dev_priv = dev->dev_private;
1068 drm_i915_hws_addr_t *hws = data;
1069 struct intel_ring_buffer *ring;
1070
1071 if (drm_core_check_feature(dev, DRIVER_MODESET))
1072 return -ENODEV;
1073
1074 if (!I915_NEED_GFX_HWS(dev))
1075 return -EINVAL;
1076
1077 if (!dev_priv) {
1078 DRM_ERROR("called with no initialization\n");
1079 return -EINVAL;
1080 }
1081
1082 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
1083 WARN(1, "tried to set status page when mode setting active\n");
1084 return 0;
1085 }
1086
1087 DRM_DEBUG_DRIVER("set status page addr 0x%08x\n", (u32)hws->addr);
1088
1089 ring = LP_RING(dev_priv);
1090 ring->status_page.gfx_addr = hws->addr & (0x1ffff<<12);
1091
1092 dev_priv->dri1.gfx_hws_cpu_addr =
1093 ioremap_wc(dev_priv->gtt.mappable_base + hws->addr, 4096);
1094 if (dev_priv->dri1.gfx_hws_cpu_addr == NULL) {
1095 i915_dma_cleanup(dev);
1096 ring->status_page.gfx_addr = 0;
1097 DRM_ERROR("can not ioremap virtual address for"
1098 " G33 hw status page\n");
1099 return -ENOMEM;
1100 }
1101
1102 memset_io(dev_priv->dri1.gfx_hws_cpu_addr, 0, PAGE_SIZE);
1103 I915_WRITE(HWS_PGA, ring->status_page.gfx_addr);
1104
1105 DRM_DEBUG_DRIVER("load hws HWS_PGA with gfx mem 0x%x\n",
1106 ring->status_page.gfx_addr);
1107 DRM_DEBUG_DRIVER("load hws at %p\n",
1108 ring->status_page.page_addr);
1109 return 0;
1110 }
1111
1112 static int i915_get_bridge_dev(struct drm_device *dev)
1113 {
1114 struct drm_i915_private *dev_priv = dev->dev_private;
1115
1116 dev_priv->bridge_dev = pci_get_bus_and_slot(0, PCI_DEVFN(0, 0));
1117 if (!dev_priv->bridge_dev) {
1118 DRM_ERROR("bridge device not found\n");
1119 return -1;
1120 }
1121 return 0;
1122 }
1123
1124 #define MCHBAR_I915 0x44
1125 #define MCHBAR_I965 0x48
1126 #define MCHBAR_SIZE (4*4096)
1127
1128 #define DEVEN_REG 0x54
1129 #define DEVEN_MCHBAR_EN (1 << 28)
1130
1131 /* Allocate space for the MCH regs if needed, return nonzero on error */
1132 static int
1133 intel_alloc_mchbar_resource(struct drm_device *dev)
1134 {
1135 drm_i915_private_t *dev_priv = dev->dev_private;
1136 int reg = INTEL_INFO(dev)->gen >= 4 ? MCHBAR_I965 : MCHBAR_I915;
1137 u32 temp_lo, temp_hi = 0;
1138 u64 mchbar_addr;
1139 int ret;
1140
1141 if (INTEL_INFO(dev)->gen >= 4)
1142 pci_read_config_dword(dev_priv->bridge_dev, reg + 4, &temp_hi);
1143 pci_read_config_dword(dev_priv->bridge_dev, reg, &temp_lo);
1144 mchbar_addr = ((u64)temp_hi << 32) | temp_lo;
1145
1146 /* If ACPI doesn't have it, assume we need to allocate it ourselves */
1147 #ifdef CONFIG_PNP
1148 if (mchbar_addr &&
1149 pnp_range_reserved(mchbar_addr, mchbar_addr + MCHBAR_SIZE))
1150 return 0;
1151 #endif
1152
1153 /* Get some space for it */
1154 dev_priv->mch_res.name = "i915 MCHBAR";
1155 dev_priv->mch_res.flags = IORESOURCE_MEM;
1156 ret = pci_bus_alloc_resource(dev_priv->bridge_dev->bus,
1157 &dev_priv->mch_res,
1158 MCHBAR_SIZE, MCHBAR_SIZE,
1159 PCIBIOS_MIN_MEM,
1160 0, pcibios_align_resource,
1161 dev_priv->bridge_dev);
1162 if (ret) {
1163 DRM_DEBUG_DRIVER("failed bus alloc: %d\n", ret);
1164 dev_priv->mch_res.start = 0;
1165 return ret;
1166 }
1167
1168 if (INTEL_INFO(dev)->gen >= 4)
1169 pci_write_config_dword(dev_priv->bridge_dev, reg + 4,
1170 upper_32_bits(dev_priv->mch_res.start));
1171
1172 pci_write_config_dword(dev_priv->bridge_dev, reg,
1173 lower_32_bits(dev_priv->mch_res.start));
1174 return 0;
1175 }
1176
1177 /* Setup MCHBAR if possible, return true if we should disable it again */
1178 static void
1179 intel_setup_mchbar(struct drm_device *dev)
1180 {
1181 drm_i915_private_t *dev_priv = dev->dev_private;
1182 int mchbar_reg = INTEL_INFO(dev)->gen >= 4 ? MCHBAR_I965 : MCHBAR_I915;
1183 u32 temp;
1184 bool enabled;
1185
1186 dev_priv->mchbar_need_disable = false;
1187
1188 if (IS_I915G(dev) || IS_I915GM(dev)) {
1189 pci_read_config_dword(dev_priv->bridge_dev, DEVEN_REG, &temp);
1190 enabled = !!(temp & DEVEN_MCHBAR_EN);
1191 } else {
1192 pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg, &temp);
1193 enabled = temp & 1;
1194 }
1195
1196 /* If it's already enabled, don't have to do anything */
1197 if (enabled)
1198 return;
1199
1200 if (intel_alloc_mchbar_resource(dev))
1201 return;
1202
1203 dev_priv->mchbar_need_disable = true;
1204
1205 /* Space is allocated or reserved, so enable it. */
1206 if (IS_I915G(dev) || IS_I915GM(dev)) {
1207 pci_write_config_dword(dev_priv->bridge_dev, DEVEN_REG,
1208 temp | DEVEN_MCHBAR_EN);
1209 } else {
1210 pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg, &temp);
1211 pci_write_config_dword(dev_priv->bridge_dev, mchbar_reg, temp | 1);
1212 }
1213 }
1214
1215 static void
1216 intel_teardown_mchbar(struct drm_device *dev)
1217 {
1218 drm_i915_private_t *dev_priv = dev->dev_private;
1219 int mchbar_reg = INTEL_INFO(dev)->gen >= 4 ? MCHBAR_I965 : MCHBAR_I915;
1220 u32 temp;
1221
1222 if (dev_priv->mchbar_need_disable) {
1223 if (IS_I915G(dev) || IS_I915GM(dev)) {
1224 pci_read_config_dword(dev_priv->bridge_dev, DEVEN_REG, &temp);
1225 temp &= ~DEVEN_MCHBAR_EN;
1226 pci_write_config_dword(dev_priv->bridge_dev, DEVEN_REG, temp);
1227 } else {
1228 pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg, &temp);
1229 temp &= ~1;
1230 pci_write_config_dword(dev_priv->bridge_dev, mchbar_reg, temp);
1231 }
1232 }
1233
1234 if (dev_priv->mch_res.start)
1235 release_resource(&dev_priv->mch_res);
1236 }
1237
1238 /* true = enable decode, false = disable decoder */
1239 static unsigned int i915_vga_set_decode(void *cookie, bool state)
1240 {
1241 struct drm_device *dev = cookie;
1242
1243 intel_modeset_vga_set_state(dev, state);
1244 if (state)
1245 return VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM |
1246 VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM;
1247 else
1248 return VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM;
1249 }
1250
1251 static void i915_switcheroo_set_state(struct pci_dev *pdev, enum vga_switcheroo_state state)
1252 {
1253 struct drm_device *dev = pci_get_drvdata(pdev);
1254 pm_message_t pmm = { .event = PM_EVENT_SUSPEND };
1255 if (state == VGA_SWITCHEROO_ON) {
1256 pr_info("switched on\n");
1257 dev->switch_power_state = DRM_SWITCH_POWER_CHANGING;
1258 /* i915 resume handler doesn't set to D0 */
1259 pci_set_power_state(dev->pdev, PCI_D0);
1260 i915_resume(dev);
1261 dev->switch_power_state = DRM_SWITCH_POWER_ON;
1262 } else {
1263 pr_err("switched off\n");
1264 dev->switch_power_state = DRM_SWITCH_POWER_CHANGING;
1265 i915_suspend(dev, pmm);
1266 dev->switch_power_state = DRM_SWITCH_POWER_OFF;
1267 }
1268 }
1269
1270 static bool i915_switcheroo_can_switch(struct pci_dev *pdev)
1271 {
1272 struct drm_device *dev = pci_get_drvdata(pdev);
1273 bool can_switch;
1274
1275 spin_lock(&dev->count_lock);
1276 can_switch = (dev->open_count == 0);
1277 spin_unlock(&dev->count_lock);
1278 return can_switch;
1279 }
1280
1281 static const struct vga_switcheroo_client_ops i915_switcheroo_ops = {
1282 .set_gpu_state = i915_switcheroo_set_state,
1283 .reprobe = NULL,
1284 .can_switch = i915_switcheroo_can_switch,
1285 };
1286
1287 static int i915_load_modeset_init(struct drm_device *dev)
1288 {
1289 struct drm_i915_private *dev_priv = dev->dev_private;
1290 int ret;
1291
1292 ret = intel_parse_bios(dev);
1293 if (ret)
1294 DRM_INFO("failed to find VBIOS tables\n");
1295
1296 /* If we have > 1 VGA cards, then we need to arbitrate access
1297 * to the common VGA resources.
1298 *
1299 * If we are a secondary display controller (!PCI_DISPLAY_CLASS_VGA),
1300 * then we do not take part in VGA arbitration and the
1301 * vga_client_register() fails with -ENODEV.
1302 */
1303 ret = vga_client_register(dev->pdev, dev, NULL, i915_vga_set_decode);
1304 if (ret && ret != -ENODEV)
1305 goto out;
1306
1307 intel_register_dsm_handler();
1308
1309 ret = vga_switcheroo_register_client(dev->pdev, &i915_switcheroo_ops, false);
1310 if (ret)
1311 goto cleanup_vga_client;
1312
1313 /* Initialise stolen first so that we may reserve preallocated
1314 * objects for the BIOS to KMS transition.
1315 */
1316 ret = i915_gem_init_stolen(dev);
1317 if (ret)
1318 goto cleanup_vga_switcheroo;
1319
1320 ret = drm_irq_install(dev);
1321 if (ret)
1322 goto cleanup_gem_stolen;
1323
1324 intel_power_domains_init_hw(dev);
1325
1326 /* Important: The output setup functions called by modeset_init need
1327 * working irqs for e.g. gmbus and dp aux transfers. */
1328 intel_modeset_init(dev);
1329
1330 ret = i915_gem_init(dev);
1331 if (ret)
1332 goto cleanup_power;
1333
1334 INIT_WORK(&dev_priv->console_resume_work, intel_console_resume);
1335
1336 intel_modeset_gem_init(dev);
1337
1338 /* Always safe in the mode setting case. */
1339 /* FIXME: do pre/post-mode set stuff in core KMS code */
1340 dev->vblank_disable_allowed = true;
1341 if (INTEL_INFO(dev)->num_pipes == 0) {
1342 intel_display_power_put(dev, POWER_DOMAIN_VGA);
1343 return 0;
1344 }
1345
1346 ret = intel_fbdev_init(dev);
1347 if (ret)
1348 goto cleanup_gem;
1349
1350 /* Only enable hotplug handling once the fbdev is fully set up. */
1351 intel_hpd_init(dev);
1352
1353 /*
1354 * Some ports require correctly set-up hpd registers for detection to
1355 * work properly (leading to ghost connected connector status), e.g. VGA
1356 * on gm45. Hence we can only set up the initial fbdev config after hpd
1357 * irqs are fully enabled. Now we should scan for the initial config
1358 * only once hotplug handling is enabled, but due to screwed-up locking
1359 * around kms/fbdev init we can't protect the fdbev initial config
1360 * scanning against hotplug events. Hence do this first and ignore the
1361 * tiny window where we will loose hotplug notifactions.
1362 */
1363 intel_fbdev_initial_config(dev);
1364
1365 /* Only enable hotplug handling once the fbdev is fully set up. */
1366 dev_priv->enable_hotplug_processing = true;
1367
1368 drm_kms_helper_poll_init(dev);
1369
1370 return 0;
1371
1372 cleanup_gem:
1373 mutex_lock(&dev->struct_mutex);
1374 i915_gem_cleanup_ringbuffer(dev);
1375 i915_gem_context_fini(dev);
1376 mutex_unlock(&dev->struct_mutex);
1377 i915_gem_cleanup_aliasing_ppgtt(dev);
1378 drm_mm_takedown(&dev_priv->gtt.base.mm);
1379 cleanup_power:
1380 intel_display_power_put(dev, POWER_DOMAIN_VGA);
1381 drm_irq_uninstall(dev);
1382 cleanup_gem_stolen:
1383 i915_gem_cleanup_stolen(dev);
1384 cleanup_vga_switcheroo:
1385 vga_switcheroo_unregister_client(dev->pdev);
1386 cleanup_vga_client:
1387 vga_client_register(dev->pdev, NULL, NULL, NULL);
1388 out:
1389 return ret;
1390 }
1391
1392 int i915_master_create(struct drm_device *dev, struct drm_master *master)
1393 {
1394 struct drm_i915_master_private *master_priv;
1395
1396 master_priv = kzalloc(sizeof(*master_priv), GFP_KERNEL);
1397 if (!master_priv)
1398 return -ENOMEM;
1399
1400 master->driver_priv = master_priv;
1401 return 0;
1402 }
1403
1404 void i915_master_destroy(struct drm_device *dev, struct drm_master *master)
1405 {
1406 struct drm_i915_master_private *master_priv = master->driver_priv;
1407
1408 if (!master_priv)
1409 return;
1410
1411 kfree(master_priv);
1412
1413 master->driver_priv = NULL;
1414 }
1415
1416 #if IS_ENABLED(CONFIG_FB)
1417 static void i915_kick_out_firmware_fb(struct drm_i915_private *dev_priv)
1418 {
1419 struct apertures_struct *ap;
1420 struct pci_dev *pdev = dev_priv->dev->pdev;
1421 bool primary;
1422
1423 ap = alloc_apertures(1);
1424 if (!ap)
1425 return;
1426
1427 ap->ranges[0].base = dev_priv->gtt.mappable_base;
1428 ap->ranges[0].size = dev_priv->gtt.mappable_end;
1429
1430 primary =
1431 pdev->resource[PCI_ROM_RESOURCE].flags & IORESOURCE_ROM_SHADOW;
1432
1433 remove_conflicting_framebuffers(ap, "inteldrmfb", primary);
1434
1435 kfree(ap);
1436 }
1437 #else
1438 static void i915_kick_out_firmware_fb(struct drm_i915_private *dev_priv)
1439 {
1440 }
1441 #endif
1442
1443 static void i915_dump_device_info(struct drm_i915_private *dev_priv)
1444 {
1445 const struct intel_device_info *info = dev_priv->info;
1446
1447 #define PRINT_S(name) "%s"
1448 #define SEP_EMPTY
1449 #define PRINT_FLAG(name) info->name ? #name "," : ""
1450 #define SEP_COMMA ,
1451 DRM_DEBUG_DRIVER("i915 device info: gen=%i, pciid=0x%04x flags="
1452 DEV_INFO_FOR_EACH_FLAG(PRINT_S, SEP_EMPTY),
1453 info->gen,
1454 dev_priv->dev->pdev->device,
1455 DEV_INFO_FOR_EACH_FLAG(PRINT_FLAG, SEP_COMMA));
1456 #undef PRINT_S
1457 #undef SEP_EMPTY
1458 #undef PRINT_FLAG
1459 #undef SEP_COMMA
1460 }
1461
1462 /**
1463 * i915_driver_load - setup chip and create an initial config
1464 * @dev: DRM device
1465 * @flags: startup flags
1466 *
1467 * The driver load routine has to do several things:
1468 * - drive output discovery via intel_modeset_init()
1469 * - initialize the memory manager
1470 * - allocate initial config memory
1471 * - setup the DRM framebuffer with the allocated memory
1472 */
1473 int i915_driver_load(struct drm_device *dev, unsigned long flags)
1474 {
1475 struct drm_i915_private *dev_priv;
1476 struct intel_device_info *info;
1477 int ret = 0, mmio_bar, mmio_size;
1478 uint32_t aperture_size;
1479
1480 info = (struct intel_device_info *) flags;
1481
1482 /* Refuse to load on gen6+ without kms enabled. */
1483 if (info->gen >= 6 && !drm_core_check_feature(dev, DRIVER_MODESET)) {
1484 DRM_INFO("Your hardware requires kernel modesetting (KMS)\n");
1485 DRM_INFO("See CONFIG_DRM_I915_KMS, nomodeset, and i915.modeset parameters\n");
1486 return -ENODEV;
1487 }
1488
1489 /* UMS needs agp support. */
1490 if (!drm_core_check_feature(dev, DRIVER_MODESET) && !dev->agp)
1491 return -EINVAL;
1492
1493 dev_priv = kzalloc(sizeof(*dev_priv), GFP_KERNEL);
1494 if (dev_priv == NULL)
1495 return -ENOMEM;
1496
1497 dev->dev_private = (void *)dev_priv;
1498 dev_priv->dev = dev;
1499 dev_priv->info = info;
1500
1501 spin_lock_init(&dev_priv->irq_lock);
1502 spin_lock_init(&dev_priv->gpu_error.lock);
1503 spin_lock_init(&dev_priv->backlight_lock);
1504 spin_lock_init(&dev_priv->uncore.lock);
1505 spin_lock_init(&dev_priv->mm.object_stat_lock);
1506 mutex_init(&dev_priv->dpio_lock);
1507 mutex_init(&dev_priv->modeset_restore_lock);
1508
1509 intel_pm_setup(dev);
1510
1511 intel_display_crc_init(dev);
1512
1513 i915_dump_device_info(dev_priv);
1514
1515 /* Not all pre-production machines fall into this category, only the
1516 * very first ones. Almost everything should work, except for maybe
1517 * suspend/resume. And we don't implement workarounds that affect only
1518 * pre-production machines. */
1519 if (IS_HSW_EARLY_SDV(dev))
1520 DRM_INFO("This is an early pre-production Haswell machine. "
1521 "It may not be fully functional.\n");
1522
1523 if (i915_get_bridge_dev(dev)) {
1524 ret = -EIO;
1525 goto free_priv;
1526 }
1527
1528 mmio_bar = IS_GEN2(dev) ? 1 : 0;
1529 /* Before gen4, the registers and the GTT are behind different BARs.
1530 * However, from gen4 onwards, the registers and the GTT are shared
1531 * in the same BAR, so we want to restrict this ioremap from
1532 * clobbering the GTT which we want ioremap_wc instead. Fortunately,
1533 * the register BAR remains the same size for all the earlier
1534 * generations up to Ironlake.
1535 */
1536 if (info->gen < 5)
1537 mmio_size = 512*1024;
1538 else
1539 mmio_size = 2*1024*1024;
1540
1541 dev_priv->regs = pci_iomap(dev->pdev, mmio_bar, mmio_size);
1542 if (!dev_priv->regs) {
1543 DRM_ERROR("failed to map registers\n");
1544 ret = -EIO;
1545 goto put_bridge;
1546 }
1547
1548 intel_uncore_early_sanitize(dev);
1549
1550 /* This must be called before any calls to HAS_PCH_* */
1551 intel_detect_pch(dev);
1552
1553 intel_uncore_init(dev);
1554
1555 ret = i915_gem_gtt_init(dev);
1556 if (ret)
1557 goto out_regs;
1558
1559 if (drm_core_check_feature(dev, DRIVER_MODESET))
1560 i915_kick_out_firmware_fb(dev_priv);
1561
1562 pci_set_master(dev->pdev);
1563
1564 /* overlay on gen2 is broken and can't address above 1G */
1565 if (IS_GEN2(dev))
1566 dma_set_coherent_mask(&dev->pdev->dev, DMA_BIT_MASK(30));
1567
1568 /* 965GM sometimes incorrectly writes to hardware status page (HWS)
1569 * using 32bit addressing, overwriting memory if HWS is located
1570 * above 4GB.
1571 *
1572 * The documentation also mentions an issue with undefined
1573 * behaviour if any general state is accessed within a page above 4GB,
1574 * which also needs to be handled carefully.
1575 */
1576 if (IS_BROADWATER(dev) || IS_CRESTLINE(dev))
1577 dma_set_coherent_mask(&dev->pdev->dev, DMA_BIT_MASK(32));
1578
1579 aperture_size = dev_priv->gtt.mappable_end;
1580
1581 dev_priv->gtt.mappable =
1582 io_mapping_create_wc(dev_priv->gtt.mappable_base,
1583 aperture_size);
1584 if (dev_priv->gtt.mappable == NULL) {
1585 ret = -EIO;
1586 goto out_gtt;
1587 }
1588
1589 dev_priv->gtt.mtrr = arch_phys_wc_add(dev_priv->gtt.mappable_base,
1590 aperture_size);
1591
1592 /* The i915 workqueue is primarily used for batched retirement of
1593 * requests (and thus managing bo) once the task has been completed
1594 * by the GPU. i915_gem_retire_requests() is called directly when we
1595 * need high-priority retirement, such as waiting for an explicit
1596 * bo.
1597 *
1598 * It is also used for periodic low-priority events, such as
1599 * idle-timers and recording error state.
1600 *
1601 * All tasks on the workqueue are expected to acquire the dev mutex
1602 * so there is no point in running more than one instance of the
1603 * workqueue at any time. Use an ordered one.
1604 */
1605 dev_priv->wq = alloc_ordered_workqueue("i915", 0);
1606 if (dev_priv->wq == NULL) {
1607 DRM_ERROR("Failed to create our workqueue.\n");
1608 ret = -ENOMEM;
1609 goto out_mtrrfree;
1610 }
1611
1612 intel_irq_init(dev);
1613 intel_uncore_sanitize(dev);
1614
1615 /* Try to make sure MCHBAR is enabled before poking at it */
1616 intel_setup_mchbar(dev);
1617 intel_setup_gmbus(dev);
1618 intel_opregion_setup(dev);
1619
1620 intel_setup_bios(dev);
1621
1622 i915_gem_load(dev);
1623
1624 /* On the 945G/GM, the chipset reports the MSI capability on the
1625 * integrated graphics even though the support isn't actually there
1626 * according to the published specs. It doesn't appear to function
1627 * correctly in testing on 945G.
1628 * This may be a side effect of MSI having been made available for PEG
1629 * and the registers being closely associated.
1630 *
1631 * According to chipset errata, on the 965GM, MSI interrupts may
1632 * be lost or delayed, but we use them anyways to avoid
1633 * stuck interrupts on some machines.
1634 */
1635 if (!IS_I945G(dev) && !IS_I945GM(dev))
1636 pci_enable_msi(dev->pdev);
1637
1638 dev_priv->num_plane = 1;
1639 if (IS_VALLEYVIEW(dev))
1640 dev_priv->num_plane = 2;
1641
1642 if (INTEL_INFO(dev)->num_pipes) {
1643 ret = drm_vblank_init(dev, INTEL_INFO(dev)->num_pipes);
1644 if (ret)
1645 goto out_gem_unload;
1646 }
1647
1648 intel_power_domains_init(dev);
1649
1650 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
1651 ret = i915_load_modeset_init(dev);
1652 if (ret < 0) {
1653 DRM_ERROR("failed to init modeset\n");
1654 goto out_power_well;
1655 }
1656 } else {
1657 /* Start out suspended in ums mode. */
1658 dev_priv->ums.mm_suspended = 1;
1659 }
1660
1661 i915_setup_sysfs(dev);
1662
1663 if (INTEL_INFO(dev)->num_pipes) {
1664 /* Must be done after probing outputs */
1665 intel_opregion_init(dev);
1666 acpi_video_register();
1667 }
1668
1669 if (IS_GEN5(dev))
1670 intel_gpu_ips_init(dev_priv);
1671
1672 intel_init_runtime_pm(dev_priv);
1673
1674 return 0;
1675
1676 out_power_well:
1677 intel_power_domains_remove(dev);
1678 drm_vblank_cleanup(dev);
1679 out_gem_unload:
1680 if (dev_priv->mm.inactive_shrinker.scan_objects)
1681 unregister_shrinker(&dev_priv->mm.inactive_shrinker);
1682
1683 if (dev->pdev->msi_enabled)
1684 pci_disable_msi(dev->pdev);
1685
1686 intel_teardown_gmbus(dev);
1687 intel_teardown_mchbar(dev);
1688 pm_qos_remove_request(&dev_priv->pm_qos);
1689 destroy_workqueue(dev_priv->wq);
1690 out_mtrrfree:
1691 arch_phys_wc_del(dev_priv->gtt.mtrr);
1692 io_mapping_free(dev_priv->gtt.mappable);
1693 out_gtt:
1694 list_del(&dev_priv->gtt.base.global_link);
1695 drm_mm_takedown(&dev_priv->gtt.base.mm);
1696 dev_priv->gtt.base.cleanup(&dev_priv->gtt.base);
1697 out_regs:
1698 intel_uncore_fini(dev);
1699 pci_iounmap(dev->pdev, dev_priv->regs);
1700 put_bridge:
1701 pci_dev_put(dev_priv->bridge_dev);
1702 free_priv:
1703 if (dev_priv->slab)
1704 kmem_cache_destroy(dev_priv->slab);
1705 kfree(dev_priv);
1706 return ret;
1707 }
1708
1709 int i915_driver_unload(struct drm_device *dev)
1710 {
1711 struct drm_i915_private *dev_priv = dev->dev_private;
1712 int ret;
1713
1714 ret = i915_gem_suspend(dev);
1715 if (ret) {
1716 DRM_ERROR("failed to idle hardware: %d\n", ret);
1717 return ret;
1718 }
1719
1720 intel_fini_runtime_pm(dev_priv);
1721
1722 intel_gpu_ips_teardown();
1723
1724 /* The i915.ko module is still not prepared to be loaded when
1725 * the power well is not enabled, so just enable it in case
1726 * we're going to unload/reload. */
1727 intel_display_set_init_power(dev, true);
1728 intel_power_domains_remove(dev);
1729
1730 i915_teardown_sysfs(dev);
1731
1732 if (dev_priv->mm.inactive_shrinker.scan_objects)
1733 unregister_shrinker(&dev_priv->mm.inactive_shrinker);
1734
1735 io_mapping_free(dev_priv->gtt.mappable);
1736 arch_phys_wc_del(dev_priv->gtt.mtrr);
1737
1738 acpi_video_unregister();
1739
1740 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
1741 intel_fbdev_fini(dev);
1742 intel_modeset_cleanup(dev);
1743 cancel_work_sync(&dev_priv->console_resume_work);
1744
1745 /*
1746 * free the memory space allocated for the child device
1747 * config parsed from VBT
1748 */
1749 if (dev_priv->vbt.child_dev && dev_priv->vbt.child_dev_num) {
1750 kfree(dev_priv->vbt.child_dev);
1751 dev_priv->vbt.child_dev = NULL;
1752 dev_priv->vbt.child_dev_num = 0;
1753 }
1754
1755 vga_switcheroo_unregister_client(dev->pdev);
1756 vga_client_register(dev->pdev, NULL, NULL, NULL);
1757 }
1758
1759 /* Free error state after interrupts are fully disabled. */
1760 del_timer_sync(&dev_priv->gpu_error.hangcheck_timer);
1761 cancel_work_sync(&dev_priv->gpu_error.work);
1762 i915_destroy_error_state(dev);
1763
1764 cancel_delayed_work_sync(&dev_priv->pc8.enable_work);
1765
1766 if (dev->pdev->msi_enabled)
1767 pci_disable_msi(dev->pdev);
1768
1769 intel_opregion_fini(dev);
1770
1771 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
1772 /* Flush any outstanding unpin_work. */
1773 flush_workqueue(dev_priv->wq);
1774
1775 mutex_lock(&dev->struct_mutex);
1776 i915_gem_free_all_phys_object(dev);
1777 i915_gem_cleanup_ringbuffer(dev);
1778 i915_gem_context_fini(dev);
1779 mutex_unlock(&dev->struct_mutex);
1780 i915_gem_cleanup_aliasing_ppgtt(dev);
1781 i915_gem_cleanup_stolen(dev);
1782
1783 if (!I915_NEED_GFX_HWS(dev))
1784 i915_free_hws(dev);
1785 }
1786
1787 list_del(&dev_priv->gtt.base.global_link);
1788 WARN_ON(!list_empty(&dev_priv->vm_list));
1789
1790 drm_vblank_cleanup(dev);
1791
1792 intel_teardown_gmbus(dev);
1793 intel_teardown_mchbar(dev);
1794
1795 destroy_workqueue(dev_priv->wq);
1796 pm_qos_remove_request(&dev_priv->pm_qos);
1797
1798 dev_priv->gtt.base.cleanup(&dev_priv->gtt.base);
1799
1800 intel_uncore_fini(dev);
1801 if (dev_priv->regs != NULL)
1802 pci_iounmap(dev->pdev, dev_priv->regs);
1803
1804 if (dev_priv->slab)
1805 kmem_cache_destroy(dev_priv->slab);
1806
1807 pci_dev_put(dev_priv->bridge_dev);
1808 kfree(dev->dev_private);
1809
1810 return 0;
1811 }
1812
1813 int i915_driver_open(struct drm_device *dev, struct drm_file *file)
1814 {
1815 int ret;
1816
1817 ret = i915_gem_open(dev, file);
1818 if (ret)
1819 return ret;
1820
1821 return 0;
1822 }
1823
1824 /**
1825 * i915_driver_lastclose - clean up after all DRM clients have exited
1826 * @dev: DRM device
1827 *
1828 * Take care of cleaning up after all DRM clients have exited. In the
1829 * mode setting case, we want to restore the kernel's initial mode (just
1830 * in case the last client left us in a bad state).
1831 *
1832 * Additionally, in the non-mode setting case, we'll tear down the GTT
1833 * and DMA structures, since the kernel won't be using them, and clea
1834 * up any GEM state.
1835 */
1836 void i915_driver_lastclose(struct drm_device * dev)
1837 {
1838 drm_i915_private_t *dev_priv = dev->dev_private;
1839
1840 /* On gen6+ we refuse to init without kms enabled, but then the drm core
1841 * goes right around and calls lastclose. Check for this and don't clean
1842 * up anything. */
1843 if (!dev_priv)
1844 return;
1845
1846 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
1847 intel_fbdev_restore_mode(dev);
1848 vga_switcheroo_process_delayed_switch();
1849 return;
1850 }
1851
1852 i915_gem_lastclose(dev);
1853
1854 i915_dma_cleanup(dev);
1855 }
1856
1857 void i915_driver_preclose(struct drm_device * dev, struct drm_file *file_priv)
1858 {
1859 mutex_lock(&dev->struct_mutex);
1860 i915_gem_context_close(dev, file_priv);
1861 i915_gem_release(dev, file_priv);
1862 mutex_unlock(&dev->struct_mutex);
1863 }
1864
1865 void i915_driver_postclose(struct drm_device *dev, struct drm_file *file)
1866 {
1867 struct drm_i915_file_private *file_priv = file->driver_priv;
1868
1869 kfree(file_priv);
1870 }
1871
1872 const struct drm_ioctl_desc i915_ioctls[] = {
1873 DRM_IOCTL_DEF_DRV(I915_INIT, i915_dma_init, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
1874 DRM_IOCTL_DEF_DRV(I915_FLUSH, i915_flush_ioctl, DRM_AUTH),
1875 DRM_IOCTL_DEF_DRV(I915_FLIP, i915_flip_bufs, DRM_AUTH),
1876 DRM_IOCTL_DEF_DRV(I915_BATCHBUFFER, i915_batchbuffer, DRM_AUTH),
1877 DRM_IOCTL_DEF_DRV(I915_IRQ_EMIT, i915_irq_emit, DRM_AUTH),
1878 DRM_IOCTL_DEF_DRV(I915_IRQ_WAIT, i915_irq_wait, DRM_AUTH),
1879 DRM_IOCTL_DEF_DRV(I915_GETPARAM, i915_getparam, DRM_AUTH|DRM_RENDER_ALLOW),
1880 DRM_IOCTL_DEF_DRV(I915_SETPARAM, i915_setparam, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
1881 DRM_IOCTL_DEF_DRV(I915_ALLOC, drm_noop, DRM_AUTH),
1882 DRM_IOCTL_DEF_DRV(I915_FREE, drm_noop, DRM_AUTH),
1883 DRM_IOCTL_DEF_DRV(I915_INIT_HEAP, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
1884 DRM_IOCTL_DEF_DRV(I915_CMDBUFFER, i915_cmdbuffer, DRM_AUTH),
1885 DRM_IOCTL_DEF_DRV(I915_DESTROY_HEAP, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
1886 DRM_IOCTL_DEF_DRV(I915_SET_VBLANK_PIPE, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
1887 DRM_IOCTL_DEF_DRV(I915_GET_VBLANK_PIPE, i915_vblank_pipe_get, DRM_AUTH),
1888 DRM_IOCTL_DEF_DRV(I915_VBLANK_SWAP, i915_vblank_swap, DRM_AUTH),
1889 DRM_IOCTL_DEF_DRV(I915_HWS_ADDR, i915_set_status_page, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
1890 DRM_IOCTL_DEF_DRV(I915_GEM_INIT, i915_gem_init_ioctl, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY|DRM_UNLOCKED),
1891 DRM_IOCTL_DEF_DRV(I915_GEM_EXECBUFFER, i915_gem_execbuffer, DRM_AUTH|DRM_UNLOCKED),
1892 DRM_IOCTL_DEF_DRV(I915_GEM_EXECBUFFER2, i915_gem_execbuffer2, DRM_AUTH|DRM_UNLOCKED|DRM_RENDER_ALLOW),
1893 DRM_IOCTL_DEF_DRV(I915_GEM_PIN, i915_gem_pin_ioctl, DRM_AUTH|DRM_ROOT_ONLY|DRM_UNLOCKED),
1894 DRM_IOCTL_DEF_DRV(I915_GEM_UNPIN, i915_gem_unpin_ioctl, DRM_AUTH|DRM_ROOT_ONLY|DRM_UNLOCKED),
1895 DRM_IOCTL_DEF_DRV(I915_GEM_BUSY, i915_gem_busy_ioctl, DRM_AUTH|DRM_UNLOCKED|DRM_RENDER_ALLOW),
1896 DRM_IOCTL_DEF_DRV(I915_GEM_SET_CACHING, i915_gem_set_caching_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1897 DRM_IOCTL_DEF_DRV(I915_GEM_GET_CACHING, i915_gem_get_caching_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1898 DRM_IOCTL_DEF_DRV(I915_GEM_THROTTLE, i915_gem_throttle_ioctl, DRM_AUTH|DRM_UNLOCKED|DRM_RENDER_ALLOW),
1899 DRM_IOCTL_DEF_DRV(I915_GEM_ENTERVT, i915_gem_entervt_ioctl, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY|DRM_UNLOCKED),
1900 DRM_IOCTL_DEF_DRV(I915_GEM_LEAVEVT, i915_gem_leavevt_ioctl, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY|DRM_UNLOCKED),
1901 DRM_IOCTL_DEF_DRV(I915_GEM_CREATE, i915_gem_create_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1902 DRM_IOCTL_DEF_DRV(I915_GEM_PREAD, i915_gem_pread_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1903 DRM_IOCTL_DEF_DRV(I915_GEM_PWRITE, i915_gem_pwrite_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1904 DRM_IOCTL_DEF_DRV(I915_GEM_MMAP, i915_gem_mmap_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1905 DRM_IOCTL_DEF_DRV(I915_GEM_MMAP_GTT, i915_gem_mmap_gtt_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1906 DRM_IOCTL_DEF_DRV(I915_GEM_SET_DOMAIN, i915_gem_set_domain_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1907 DRM_IOCTL_DEF_DRV(I915_GEM_SW_FINISH, i915_gem_sw_finish_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1908 DRM_IOCTL_DEF_DRV(I915_GEM_SET_TILING, i915_gem_set_tiling, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1909 DRM_IOCTL_DEF_DRV(I915_GEM_GET_TILING, i915_gem_get_tiling, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1910 DRM_IOCTL_DEF_DRV(I915_GEM_GET_APERTURE, i915_gem_get_aperture_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1911 DRM_IOCTL_DEF_DRV(I915_GET_PIPE_FROM_CRTC_ID, intel_get_pipe_from_crtc_id, DRM_UNLOCKED),
1912 DRM_IOCTL_DEF_DRV(I915_GEM_MADVISE, i915_gem_madvise_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1913 DRM_IOCTL_DEF_DRV(I915_OVERLAY_PUT_IMAGE, intel_overlay_put_image, DRM_MASTER|DRM_CONTROL_ALLOW|DRM_UNLOCKED),
1914 DRM_IOCTL_DEF_DRV(I915_OVERLAY_ATTRS, intel_overlay_attrs, DRM_MASTER|DRM_CONTROL_ALLOW|DRM_UNLOCKED),
1915 DRM_IOCTL_DEF_DRV(I915_SET_SPRITE_COLORKEY, intel_sprite_set_colorkey, DRM_MASTER|DRM_CONTROL_ALLOW|DRM_UNLOCKED),
1916 DRM_IOCTL_DEF_DRV(I915_GET_SPRITE_COLORKEY, intel_sprite_get_colorkey, DRM_MASTER|DRM_CONTROL_ALLOW|DRM_UNLOCKED),
1917 DRM_IOCTL_DEF_DRV(I915_GEM_WAIT, i915_gem_wait_ioctl, DRM_AUTH|DRM_UNLOCKED|DRM_RENDER_ALLOW),
1918 DRM_IOCTL_DEF_DRV(I915_GEM_CONTEXT_CREATE, i915_gem_context_create_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1919 DRM_IOCTL_DEF_DRV(I915_GEM_CONTEXT_DESTROY, i915_gem_context_destroy_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1920 DRM_IOCTL_DEF_DRV(I915_REG_READ, i915_reg_read_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1921 DRM_IOCTL_DEF_DRV(I915_GET_RESET_STATS, i915_get_reset_stats_ioctl, DRM_UNLOCKED|DRM_RENDER_ALLOW),
1922 };
1923
1924 int i915_max_ioctl = DRM_ARRAY_SIZE(i915_ioctls);
1925
1926 /*
1927 * This is really ugly: Because old userspace abused the linux agp interface to
1928 * manage the gtt, we need to claim that all intel devices are agp. For
1929 * otherwise the drm core refuses to initialize the agp support code.
1930 */
1931 int i915_driver_device_is_agp(struct drm_device * dev)
1932 {
1933 return 1;
1934 }
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