drm/i915: Disable self-refresh for untiled fbs on i915gm
[deliverable/linux.git] / drivers / gpu / drm / i915 / i915_drv.h
CommitLineData
1da177e4
LT
1/* i915_drv.h -- Private header for the I915 driver -*- linux-c -*-
2 */
0d6aa60b 3/*
bc54fd1a 4 *
1da177e4
LT
5 * Copyright 2003 Tungsten Graphics, Inc., Cedar Park, Texas.
6 * All Rights Reserved.
bc54fd1a
DA
7 *
8 * Permission is hereby granted, free of charge, to any person obtaining a
9 * copy of this software and associated documentation files (the
10 * "Software"), to deal in the Software without restriction, including
11 * without limitation the rights to use, copy, modify, merge, publish,
12 * distribute, sub license, and/or sell copies of the Software, and to
13 * permit persons to whom the Software is furnished to do so, subject to
14 * the following conditions:
15 *
16 * The above copyright notice and this permission notice (including the
17 * next paragraph) shall be included in all copies or substantial portions
18 * of the Software.
19 *
20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
21 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
22 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
23 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
24 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
25 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
26 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
27 *
0d6aa60b 28 */
1da177e4
LT
29
30#ifndef _I915_DRV_H_
31#define _I915_DRV_H_
32
e9b73c67
CW
33#include <uapi/drm/i915_drm.h>
34
585fb111 35#include "i915_reg.h"
79e53945 36#include "intel_bios.h"
8187a2b7 37#include "intel_ringbuffer.h"
0839ccb8 38#include <linux/io-mapping.h>
f899fc64 39#include <linux/i2c.h>
c167a6fc 40#include <linux/i2c-algo-bit.h>
0ade6386 41#include <drm/intel-gtt.h>
aaa6fd2a 42#include <linux/backlight.h>
2911a35b 43#include <linux/intel-iommu.h>
742cbee8 44#include <linux/kref.h>
9ee32fea 45#include <linux/pm_qos.h>
585fb111 46
1da177e4
LT
47/* General customization:
48 */
49
50#define DRIVER_AUTHOR "Tungsten Graphics, Inc."
51
52#define DRIVER_NAME "i915"
53#define DRIVER_DESC "Intel Graphics"
673a394b 54#define DRIVER_DATE "20080730"
1da177e4 55
317c35d1 56enum pipe {
752aa88a 57 INVALID_PIPE = -1,
317c35d1
JB
58 PIPE_A = 0,
59 PIPE_B,
9db4a9c7 60 PIPE_C,
a57c774a
AK
61 _PIPE_EDP,
62 I915_MAX_PIPES = _PIPE_EDP
317c35d1 63};
9db4a9c7 64#define pipe_name(p) ((p) + 'A')
317c35d1 65
a5c961d1
PZ
66enum transcoder {
67 TRANSCODER_A = 0,
68 TRANSCODER_B,
69 TRANSCODER_C,
a57c774a
AK
70 TRANSCODER_EDP,
71 I915_MAX_TRANSCODERS
a5c961d1
PZ
72};
73#define transcoder_name(t) ((t) + 'A')
74
80824003
JB
75enum plane {
76 PLANE_A = 0,
77 PLANE_B,
9db4a9c7 78 PLANE_C,
80824003 79};
9db4a9c7 80#define plane_name(p) ((p) + 'A')
52440211 81
d615a166 82#define sprite_name(p, s) ((p) * INTEL_INFO(dev)->num_sprites[(p)] + (s) + 'A')
06da8da2 83
2b139522
ED
84enum port {
85 PORT_A = 0,
86 PORT_B,
87 PORT_C,
88 PORT_D,
89 PORT_E,
90 I915_MAX_PORTS
91};
92#define port_name(p) ((p) + 'A')
93
e4607fcf
CML
94#define I915_NUM_PHYS_VLV 1
95
96enum dpio_channel {
97 DPIO_CH0,
98 DPIO_CH1
99};
100
101enum dpio_phy {
102 DPIO_PHY0,
103 DPIO_PHY1
104};
105
b97186f0
PZ
106enum intel_display_power_domain {
107 POWER_DOMAIN_PIPE_A,
108 POWER_DOMAIN_PIPE_B,
109 POWER_DOMAIN_PIPE_C,
110 POWER_DOMAIN_PIPE_A_PANEL_FITTER,
111 POWER_DOMAIN_PIPE_B_PANEL_FITTER,
112 POWER_DOMAIN_PIPE_C_PANEL_FITTER,
113 POWER_DOMAIN_TRANSCODER_A,
114 POWER_DOMAIN_TRANSCODER_B,
115 POWER_DOMAIN_TRANSCODER_C,
f52e353e 116 POWER_DOMAIN_TRANSCODER_EDP,
319be8ae
ID
117 POWER_DOMAIN_PORT_DDI_A_2_LANES,
118 POWER_DOMAIN_PORT_DDI_A_4_LANES,
119 POWER_DOMAIN_PORT_DDI_B_2_LANES,
120 POWER_DOMAIN_PORT_DDI_B_4_LANES,
121 POWER_DOMAIN_PORT_DDI_C_2_LANES,
122 POWER_DOMAIN_PORT_DDI_C_4_LANES,
123 POWER_DOMAIN_PORT_DDI_D_2_LANES,
124 POWER_DOMAIN_PORT_DDI_D_4_LANES,
125 POWER_DOMAIN_PORT_DSI,
126 POWER_DOMAIN_PORT_CRT,
127 POWER_DOMAIN_PORT_OTHER,
cdf8dd7f 128 POWER_DOMAIN_VGA,
fbeeaa23 129 POWER_DOMAIN_AUDIO,
baa70707 130 POWER_DOMAIN_INIT,
bddc7645
ID
131
132 POWER_DOMAIN_NUM,
b97186f0
PZ
133};
134
135#define POWER_DOMAIN_PIPE(pipe) ((pipe) + POWER_DOMAIN_PIPE_A)
136#define POWER_DOMAIN_PIPE_PANEL_FITTER(pipe) \
137 ((pipe) + POWER_DOMAIN_PIPE_A_PANEL_FITTER)
f52e353e
ID
138#define POWER_DOMAIN_TRANSCODER(tran) \
139 ((tran) == TRANSCODER_EDP ? POWER_DOMAIN_TRANSCODER_EDP : \
140 (tran) + POWER_DOMAIN_TRANSCODER_A)
b97186f0 141
1d843f9d
EE
142enum hpd_pin {
143 HPD_NONE = 0,
144 HPD_PORT_A = HPD_NONE, /* PORT_A is internal */
145 HPD_TV = HPD_NONE, /* TV is known to be unreliable */
146 HPD_CRT,
147 HPD_SDVO_B,
148 HPD_SDVO_C,
149 HPD_PORT_B,
150 HPD_PORT_C,
151 HPD_PORT_D,
152 HPD_NUM_PINS
153};
154
2a2d5482
CW
155#define I915_GEM_GPU_DOMAINS \
156 (I915_GEM_DOMAIN_RENDER | \
157 I915_GEM_DOMAIN_SAMPLER | \
158 I915_GEM_DOMAIN_COMMAND | \
159 I915_GEM_DOMAIN_INSTRUCTION | \
160 I915_GEM_DOMAIN_VERTEX)
62fdfeaf 161
7eb552ae 162#define for_each_pipe(p) for ((p) = 0; (p) < INTEL_INFO(dev)->num_pipes; (p)++)
d615a166 163#define for_each_sprite(p, s) for ((s) = 0; (s) < INTEL_INFO(dev)->num_sprites[(p)]; (s)++)
9db4a9c7 164
6c2b7c12
DV
165#define for_each_encoder_on_crtc(dev, __crtc, intel_encoder) \
166 list_for_each_entry((intel_encoder), &(dev)->mode_config.encoder_list, base.head) \
167 if ((intel_encoder)->base.crtc == (__crtc))
168
53f5e3ca
JB
169#define for_each_connector_on_encoder(dev, __encoder, intel_connector) \
170 list_for_each_entry((intel_connector), &(dev)->mode_config.connector_list, base.head) \
171 if ((intel_connector)->base.encoder == (__encoder))
172
e7b903d2
DV
173struct drm_i915_private;
174
46edb027
DV
175enum intel_dpll_id {
176 DPLL_ID_PRIVATE = -1, /* non-shared dpll in use */
177 /* real shared dpll ids must be >= 0 */
178 DPLL_ID_PCH_PLL_A,
179 DPLL_ID_PCH_PLL_B,
180};
181#define I915_NUM_PLLS 2
182
5358901f 183struct intel_dpll_hw_state {
66e985c0 184 uint32_t dpll;
8bcc2795 185 uint32_t dpll_md;
66e985c0
DV
186 uint32_t fp0;
187 uint32_t fp1;
5358901f
DV
188};
189
e72f9fbf 190struct intel_shared_dpll {
ee7b9f93
JB
191 int refcount; /* count of number of CRTCs sharing this PLL */
192 int active; /* count of number of active CRTCs (i.e. DPMS on) */
193 bool on; /* is the PLL actually active? Disabled during modeset */
46edb027
DV
194 const char *name;
195 /* should match the index in the dev_priv->shared_dplls array */
196 enum intel_dpll_id id;
5358901f 197 struct intel_dpll_hw_state hw_state;
15bdd4cf
DV
198 void (*mode_set)(struct drm_i915_private *dev_priv,
199 struct intel_shared_dpll *pll);
e7b903d2
DV
200 void (*enable)(struct drm_i915_private *dev_priv,
201 struct intel_shared_dpll *pll);
202 void (*disable)(struct drm_i915_private *dev_priv,
203 struct intel_shared_dpll *pll);
5358901f
DV
204 bool (*get_hw_state)(struct drm_i915_private *dev_priv,
205 struct intel_shared_dpll *pll,
206 struct intel_dpll_hw_state *hw_state);
ee7b9f93 207};
ee7b9f93 208
e69d0bc1
DV
209/* Used by dp and fdi links */
210struct intel_link_m_n {
211 uint32_t tu;
212 uint32_t gmch_m;
213 uint32_t gmch_n;
214 uint32_t link_m;
215 uint32_t link_n;
216};
217
218void intel_link_compute_m_n(int bpp, int nlanes,
219 int pixel_clock, int link_clock,
220 struct intel_link_m_n *m_n);
221
6441ab5f
PZ
222struct intel_ddi_plls {
223 int spll_refcount;
224 int wrpll1_refcount;
225 int wrpll2_refcount;
226};
227
1da177e4
LT
228/* Interface history:
229 *
230 * 1.1: Original.
0d6aa60b
DA
231 * 1.2: Add Power Management
232 * 1.3: Add vblank support
de227f5f 233 * 1.4: Fix cmdbuffer path, add heap destroy
702880f2 234 * 1.5: Add vblank pipe configuration
2228ed67
MCA
235 * 1.6: - New ioctl for scheduling buffer swaps on vertical blank
236 * - Support vertical blank on secondary display pipe
1da177e4
LT
237 */
238#define DRIVER_MAJOR 1
2228ed67 239#define DRIVER_MINOR 6
1da177e4
LT
240#define DRIVER_PATCHLEVEL 0
241
23bc5982 242#define WATCH_LISTS 0
42d6ab48 243#define WATCH_GTT 0
673a394b 244
71acb5eb
DA
245#define I915_GEM_PHYS_CURSOR_0 1
246#define I915_GEM_PHYS_CURSOR_1 2
247#define I915_GEM_PHYS_OVERLAY_REGS 3
248#define I915_MAX_PHYS_OBJECT (I915_GEM_PHYS_OVERLAY_REGS)
249
250struct drm_i915_gem_phys_object {
251 int id;
252 struct page **page_list;
253 drm_dma_handle_t *handle;
05394f39 254 struct drm_i915_gem_object *cur_obj;
71acb5eb
DA
255};
256
0a3e67a4
JB
257struct opregion_header;
258struct opregion_acpi;
259struct opregion_swsci;
260struct opregion_asle;
261
8ee1c3db 262struct intel_opregion {
5bc4418b
BW
263 struct opregion_header __iomem *header;
264 struct opregion_acpi __iomem *acpi;
265 struct opregion_swsci __iomem *swsci;
ebde53c7
JN
266 u32 swsci_gbda_sub_functions;
267 u32 swsci_sbcb_sub_functions;
5bc4418b
BW
268 struct opregion_asle __iomem *asle;
269 void __iomem *vbt;
01fe9dbd 270 u32 __iomem *lid_state;
91a60f20 271 struct work_struct asle_work;
8ee1c3db 272};
44834a67 273#define OPREGION_SIZE (8*1024)
8ee1c3db 274
6ef3d427
CW
275struct intel_overlay;
276struct intel_overlay_error_state;
277
7c1c2871
DA
278struct drm_i915_master_private {
279 drm_local_map_t *sarea;
280 struct _drm_i915_sarea *sarea_priv;
281};
de151cf6 282#define I915_FENCE_REG_NONE -1
42b5aeab
VS
283#define I915_MAX_NUM_FENCES 32
284/* 32 fences + sign bit for FENCE_REG_NONE */
285#define I915_MAX_NUM_FENCE_BITS 6
de151cf6
JB
286
287struct drm_i915_fence_reg {
007cc8ac 288 struct list_head lru_list;
caea7476 289 struct drm_i915_gem_object *obj;
1690e1eb 290 int pin_count;
de151cf6 291};
7c1c2871 292
9b9d172d 293struct sdvo_device_mapping {
e957d772 294 u8 initialized;
9b9d172d 295 u8 dvo_port;
296 u8 slave_addr;
297 u8 dvo_wiring;
e957d772 298 u8 i2c_pin;
b1083333 299 u8 ddc_pin;
9b9d172d 300};
301
c4a1d9e4
CW
302struct intel_display_error_state;
303
63eeaf38 304struct drm_i915_error_state {
742cbee8 305 struct kref ref;
585b0288
BW
306 struct timeval time;
307
cb383002 308 char error_msg[128];
48b031e3 309 u32 reset_count;
62d5d69b 310 u32 suspend_count;
cb383002 311
585b0288 312 /* Generic register state */
63eeaf38
JB
313 u32 eir;
314 u32 pgtbl_er;
be998e2e 315 u32 ier;
b9a3906b 316 u32 ccid;
0f3b6849
CW
317 u32 derrmr;
318 u32 forcewake;
585b0288
BW
319 u32 error; /* gen6+ */
320 u32 err_int; /* gen7 */
321 u32 done_reg;
91ec5d11
BW
322 u32 gac_eco;
323 u32 gam_ecochk;
324 u32 gab_ctl;
325 u32 gfx_mode;
585b0288 326 u32 extra_instdone[I915_NUM_INSTDONE_REG];
9db4a9c7 327 u32 pipestat[I915_MAX_PIPES];
585b0288
BW
328 u64 fence[I915_MAX_NUM_FENCES];
329 struct intel_overlay_error_state *overlay;
330 struct intel_display_error_state *display;
331
52d39a21 332 struct drm_i915_error_ring {
372fbb8e 333 bool valid;
362b8af7
BW
334 /* Software tracked state */
335 bool waiting;
336 int hangcheck_score;
337 enum intel_ring_hangcheck_action hangcheck_action;
338 int num_requests;
339
340 /* our own tracking of ring head and tail */
341 u32 cpu_ring_head;
342 u32 cpu_ring_tail;
343
344 u32 semaphore_seqno[I915_NUM_RINGS - 1];
345
346 /* Register state */
347 u32 tail;
348 u32 head;
349 u32 ctl;
350 u32 hws;
351 u32 ipeir;
352 u32 ipehr;
353 u32 instdone;
362b8af7
BW
354 u32 bbstate;
355 u32 instpm;
356 u32 instps;
357 u32 seqno;
358 u64 bbaddr;
50877445 359 u64 acthd;
362b8af7
BW
360 u32 fault_reg;
361 u32 faddr;
362 u32 rc_psmi; /* sleep state */
363 u32 semaphore_mboxes[I915_NUM_RINGS - 1];
364
52d39a21
CW
365 struct drm_i915_error_object {
366 int page_count;
367 u32 gtt_offset;
368 u32 *pages[0];
ab0e7ff9 369 } *ringbuffer, *batchbuffer, *wa_batchbuffer, *ctx, *hws_page;
362b8af7 370
52d39a21
CW
371 struct drm_i915_error_request {
372 long jiffies;
373 u32 seqno;
ee4f42b1 374 u32 tail;
52d39a21 375 } *requests;
6c7a01ec
BW
376
377 struct {
378 u32 gfx_mode;
379 union {
380 u64 pdp[4];
381 u32 pp_dir_base;
382 };
383 } vm_info;
ab0e7ff9
CW
384
385 pid_t pid;
386 char comm[TASK_COMM_LEN];
52d39a21 387 } ring[I915_NUM_RINGS];
9df30794 388 struct drm_i915_error_buffer {
a779e5ab 389 u32 size;
9df30794 390 u32 name;
0201f1ec 391 u32 rseqno, wseqno;
9df30794
CW
392 u32 gtt_offset;
393 u32 read_domains;
394 u32 write_domain;
4b9de737 395 s32 fence_reg:I915_MAX_NUM_FENCE_BITS;
9df30794
CW
396 s32 pinned:2;
397 u32 tiling:2;
398 u32 dirty:1;
399 u32 purgeable:1;
5d1333fc 400 s32 ring:4;
f56383cb 401 u32 cache_level:3;
95f5301d 402 } **active_bo, **pinned_bo;
6c7a01ec 403
95f5301d 404 u32 *active_bo_count, *pinned_bo_count;
63eeaf38
JB
405};
406
7bd688cd 407struct intel_connector;
b8cecdf5 408struct intel_crtc_config;
46f297fb 409struct intel_plane_config;
0e8ffe1b 410struct intel_crtc;
ee9300bb
DV
411struct intel_limit;
412struct dpll;
b8cecdf5 413
e70236a8 414struct drm_i915_display_funcs {
ee5382ae 415 bool (*fbc_enabled)(struct drm_device *dev);
993495ae 416 void (*enable_fbc)(struct drm_crtc *crtc);
e70236a8
JB
417 void (*disable_fbc)(struct drm_device *dev);
418 int (*get_display_clock_speed)(struct drm_device *dev);
419 int (*get_fifo_size)(struct drm_device *dev, int plane);
ee9300bb
DV
420 /**
421 * find_dpll() - Find the best values for the PLL
422 * @limit: limits for the PLL
423 * @crtc: current CRTC
424 * @target: target frequency in kHz
425 * @refclk: reference clock frequency in kHz
426 * @match_clock: if provided, @best_clock P divider must
427 * match the P divider from @match_clock
428 * used for LVDS downclocking
429 * @best_clock: best PLL values found
430 *
431 * Returns true on success, false on failure.
432 */
433 bool (*find_dpll)(const struct intel_limit *limit,
434 struct drm_crtc *crtc,
435 int target, int refclk,
436 struct dpll *match_clock,
437 struct dpll *best_clock);
46ba614c 438 void (*update_wm)(struct drm_crtc *crtc);
adf3d35e
VS
439 void (*update_sprite_wm)(struct drm_plane *plane,
440 struct drm_crtc *crtc,
4c4ff43a 441 uint32_t sprite_width, int pixel_size,
bdd57d03 442 bool enable, bool scaled);
47fab737 443 void (*modeset_global_resources)(struct drm_device *dev);
0e8ffe1b
DV
444 /* Returns the active state of the crtc, and if the crtc is active,
445 * fills out the pipe-config with the hw state. */
446 bool (*get_pipe_config)(struct intel_crtc *,
447 struct intel_crtc_config *);
46f297fb
JB
448 void (*get_plane_config)(struct intel_crtc *,
449 struct intel_plane_config *);
f564048e 450 int (*crtc_mode_set)(struct drm_crtc *crtc,
f564048e
EA
451 int x, int y,
452 struct drm_framebuffer *old_fb);
76e5a89c
DV
453 void (*crtc_enable)(struct drm_crtc *crtc);
454 void (*crtc_disable)(struct drm_crtc *crtc);
ee7b9f93 455 void (*off)(struct drm_crtc *crtc);
e0dac65e 456 void (*write_eld)(struct drm_connector *connector,
34427052
JN
457 struct drm_crtc *crtc,
458 struct drm_display_mode *mode);
674cf967 459 void (*fdi_link_train)(struct drm_crtc *crtc);
6067aaea 460 void (*init_clock_gating)(struct drm_device *dev);
8c9f3aaf
JB
461 int (*queue_flip)(struct drm_device *dev, struct drm_crtc *crtc,
462 struct drm_framebuffer *fb,
ed8d1975
KP
463 struct drm_i915_gem_object *obj,
464 uint32_t flags);
262ca2b0
MR
465 int (*update_primary_plane)(struct drm_crtc *crtc,
466 struct drm_framebuffer *fb,
467 int x, int y);
20afbda2 468 void (*hpd_irq_setup)(struct drm_device *dev);
e70236a8
JB
469 /* clock updates for mode set */
470 /* cursor updates */
471 /* render clock increase/decrease */
472 /* display clock increase/decrease */
473 /* pll clock increase/decrease */
7bd688cd
JN
474
475 int (*setup_backlight)(struct intel_connector *connector);
7bd688cd
JN
476 uint32_t (*get_backlight)(struct intel_connector *connector);
477 void (*set_backlight)(struct intel_connector *connector,
478 uint32_t level);
479 void (*disable_backlight)(struct intel_connector *connector);
480 void (*enable_backlight)(struct intel_connector *connector);
e70236a8
JB
481};
482
907b28c5 483struct intel_uncore_funcs {
c8d9a590
D
484 void (*force_wake_get)(struct drm_i915_private *dev_priv,
485 int fw_engine);
486 void (*force_wake_put)(struct drm_i915_private *dev_priv,
487 int fw_engine);
0b274481
BW
488
489 uint8_t (*mmio_readb)(struct drm_i915_private *dev_priv, off_t offset, bool trace);
490 uint16_t (*mmio_readw)(struct drm_i915_private *dev_priv, off_t offset, bool trace);
491 uint32_t (*mmio_readl)(struct drm_i915_private *dev_priv, off_t offset, bool trace);
492 uint64_t (*mmio_readq)(struct drm_i915_private *dev_priv, off_t offset, bool trace);
493
494 void (*mmio_writeb)(struct drm_i915_private *dev_priv, off_t offset,
495 uint8_t val, bool trace);
496 void (*mmio_writew)(struct drm_i915_private *dev_priv, off_t offset,
497 uint16_t val, bool trace);
498 void (*mmio_writel)(struct drm_i915_private *dev_priv, off_t offset,
499 uint32_t val, bool trace);
500 void (*mmio_writeq)(struct drm_i915_private *dev_priv, off_t offset,
501 uint64_t val, bool trace);
990bbdad
CW
502};
503
907b28c5
CW
504struct intel_uncore {
505 spinlock_t lock; /** lock is also taken in irq contexts. */
506
507 struct intel_uncore_funcs funcs;
508
509 unsigned fifo_count;
510 unsigned forcewake_count;
aec347ab 511
940aece4
D
512 unsigned fw_rendercount;
513 unsigned fw_mediacount;
514
8232644c 515 struct timer_list force_wake_timer;
907b28c5
CW
516};
517
79fc46df
DL
518#define DEV_INFO_FOR_EACH_FLAG(func, sep) \
519 func(is_mobile) sep \
520 func(is_i85x) sep \
521 func(is_i915g) sep \
522 func(is_i945gm) sep \
523 func(is_g33) sep \
524 func(need_gfx_hws) sep \
525 func(is_g4x) sep \
526 func(is_pineview) sep \
527 func(is_broadwater) sep \
528 func(is_crestline) sep \
529 func(is_ivybridge) sep \
530 func(is_valleyview) sep \
531 func(is_haswell) sep \
b833d685 532 func(is_preliminary) sep \
79fc46df
DL
533 func(has_fbc) sep \
534 func(has_pipe_cxsr) sep \
535 func(has_hotplug) sep \
536 func(cursor_needs_physical) sep \
537 func(has_overlay) sep \
538 func(overlay_needs_physical) sep \
539 func(supports_tv) sep \
dd93be58 540 func(has_llc) sep \
30568c45
DL
541 func(has_ddi) sep \
542 func(has_fpga_dbg)
c96ea64e 543
a587f779
DL
544#define DEFINE_FLAG(name) u8 name:1
545#define SEP_SEMICOLON ;
c96ea64e 546
cfdf1fa2 547struct intel_device_info {
10fce67a 548 u32 display_mmio_offset;
7eb552ae 549 u8 num_pipes:3;
d615a166 550 u8 num_sprites[I915_MAX_PIPES];
c96c3a8c 551 u8 gen;
73ae478c 552 u8 ring_mask; /* Rings supported by the HW */
a587f779 553 DEV_INFO_FOR_EACH_FLAG(DEFINE_FLAG, SEP_SEMICOLON);
a57c774a
AK
554 /* Register offsets for the various display pipes and transcoders */
555 int pipe_offsets[I915_MAX_TRANSCODERS];
556 int trans_offsets[I915_MAX_TRANSCODERS];
557 int dpll_offsets[I915_MAX_PIPES];
558 int dpll_md_offsets[I915_MAX_PIPES];
559 int palette_offsets[I915_MAX_PIPES];
cfdf1fa2
KH
560};
561
a587f779
DL
562#undef DEFINE_FLAG
563#undef SEP_SEMICOLON
564
7faf1ab2
DV
565enum i915_cache_level {
566 I915_CACHE_NONE = 0,
350ec881
CW
567 I915_CACHE_LLC, /* also used for snoopable memory on non-LLC */
568 I915_CACHE_L3_LLC, /* gen7+, L3 sits between the domain specifc
569 caches, eg sampler/render caches, and the
570 large Last-Level-Cache. LLC is coherent with
571 the CPU, but L3 is only visible to the GPU. */
651d794f 572 I915_CACHE_WT, /* hsw:gt3e WriteThrough for scanouts */
7faf1ab2
DV
573};
574
2d04befb
KG
575typedef uint32_t gen6_gtt_pte_t;
576
6f65e29a
BW
577/**
578 * A VMA represents a GEM BO that is bound into an address space. Therefore, a
579 * VMA's presence cannot be guaranteed before binding, or after unbinding the
580 * object into/from the address space.
581 *
582 * To make things as simple as possible (ie. no refcounting), a VMA's lifetime
583 * will always be <= an objects lifetime. So object refcounting should cover us.
584 */
585struct i915_vma {
586 struct drm_mm_node node;
587 struct drm_i915_gem_object *obj;
588 struct i915_address_space *vm;
589
590 /** This object's place on the active/inactive lists */
591 struct list_head mm_list;
592
593 struct list_head vma_link; /* Link in the object's VMA list */
594
595 /** This vma's place in the batchbuffer or on the eviction list */
596 struct list_head exec_list;
597
598 /**
599 * Used for performing relocations during execbuffer insertion.
600 */
601 struct hlist_node exec_node;
602 unsigned long exec_handle;
603 struct drm_i915_gem_exec_object2 *exec_entry;
604
605 /**
606 * How many users have pinned this object in GTT space. The following
607 * users can each hold at most one reference: pwrite/pread, pin_ioctl
608 * (via user_pin_count), execbuffer (objects are not allowed multiple
609 * times for the same batchbuffer), and the framebuffer code. When
610 * switching/pageflipping, the framebuffer code has at most two buffers
611 * pinned per crtc.
612 *
613 * In the worst case this is 1 + 1 + 1 + 2*2 = 7. That would fit into 3
614 * bits with absolutely no headroom. So use 4 bits. */
615 unsigned int pin_count:4;
616#define DRM_I915_GEM_OBJECT_MAX_PIN_COUNT 0xf
617
618 /** Unmap an object from an address space. This usually consists of
619 * setting the valid PTE entries to a reserved scratch page. */
620 void (*unbind_vma)(struct i915_vma *vma);
621 /* Map an object into an address space with the given cache flags. */
622#define GLOBAL_BIND (1<<0)
623 void (*bind_vma)(struct i915_vma *vma,
624 enum i915_cache_level cache_level,
625 u32 flags);
626};
627
853ba5d2 628struct i915_address_space {
93bd8649 629 struct drm_mm mm;
853ba5d2 630 struct drm_device *dev;
a7bbbd63 631 struct list_head global_link;
853ba5d2
BW
632 unsigned long start; /* Start offset always 0 for dri2 */
633 size_t total; /* size addr space maps (ex. 2GB for ggtt) */
634
635 struct {
636 dma_addr_t addr;
637 struct page *page;
638 } scratch;
639
5cef07e1
BW
640 /**
641 * List of objects currently involved in rendering.
642 *
643 * Includes buffers having the contents of their GPU caches
644 * flushed, not necessarily primitives. last_rendering_seqno
645 * represents when the rendering involved will be completed.
646 *
647 * A reference is held on the buffer while on this list.
648 */
649 struct list_head active_list;
650
651 /**
652 * LRU list of objects which are not in the ringbuffer and
653 * are ready to unbind, but are still in the GTT.
654 *
655 * last_rendering_seqno is 0 while an object is in this list.
656 *
657 * A reference is not held on the buffer while on this list,
658 * as merely being GTT-bound shouldn't prevent its being
659 * freed, and we'll pull it off the list in the free path.
660 */
661 struct list_head inactive_list;
662
853ba5d2
BW
663 /* FIXME: Need a more generic return type */
664 gen6_gtt_pte_t (*pte_encode)(dma_addr_t addr,
b35b380e
BW
665 enum i915_cache_level level,
666 bool valid); /* Create a valid PTE */
853ba5d2 667 void (*clear_range)(struct i915_address_space *vm,
782f1495
BW
668 uint64_t start,
669 uint64_t length,
828c7908 670 bool use_scratch);
853ba5d2
BW
671 void (*insert_entries)(struct i915_address_space *vm,
672 struct sg_table *st,
782f1495 673 uint64_t start,
853ba5d2
BW
674 enum i915_cache_level cache_level);
675 void (*cleanup)(struct i915_address_space *vm);
676};
677
5d4545ae
BW
678/* The Graphics Translation Table is the way in which GEN hardware translates a
679 * Graphics Virtual Address into a Physical Address. In addition to the normal
680 * collateral associated with any va->pa translations GEN hardware also has a
681 * portion of the GTT which can be mapped by the CPU and remain both coherent
682 * and correct (in cases like swizzling). That region is referred to as GMADR in
683 * the spec.
684 */
685struct i915_gtt {
853ba5d2 686 struct i915_address_space base;
baa09f5f 687 size_t stolen_size; /* Total size of stolen memory */
5d4545ae
BW
688
689 unsigned long mappable_end; /* End offset that we can CPU map */
690 struct io_mapping *mappable; /* Mapping to our CPU mappable region */
691 phys_addr_t mappable_base; /* PA of our GMADR */
692
693 /** "Graphics Stolen Memory" holds the global PTEs */
694 void __iomem *gsm;
a81cc00c
BW
695
696 bool do_idle_maps;
7faf1ab2 697
911bdf0a 698 int mtrr;
7faf1ab2
DV
699
700 /* global gtt ops */
baa09f5f 701 int (*gtt_probe)(struct drm_device *dev, size_t *gtt_total,
41907ddc
BW
702 size_t *stolen, phys_addr_t *mappable_base,
703 unsigned long *mappable_end);
5d4545ae 704};
853ba5d2 705#define gtt_total_entries(gtt) ((gtt).base.total >> PAGE_SHIFT)
5d4545ae 706
7ad47cf2 707#define GEN8_LEGACY_PDPS 4
1d2a314c 708struct i915_hw_ppgtt {
853ba5d2 709 struct i915_address_space base;
c7c48dfd 710 struct kref ref;
c8d4c0d6 711 struct drm_mm_node node;
1d2a314c 712 unsigned num_pd_entries;
5abbcca3 713 unsigned num_pd_pages; /* gen8+ */
37aca44a
BW
714 union {
715 struct page **pt_pages;
7ad47cf2 716 struct page **gen8_pt_pages[GEN8_LEGACY_PDPS];
37aca44a
BW
717 };
718 struct page *pd_pages;
37aca44a
BW
719 union {
720 uint32_t pd_offset;
7ad47cf2 721 dma_addr_t pd_dma_addr[GEN8_LEGACY_PDPS];
37aca44a
BW
722 };
723 union {
724 dma_addr_t *pt_dma_addr;
725 dma_addr_t *gen8_pt_dma_addr[4];
726 };
27173f1f 727
6313c204
CW
728 struct i915_hw_context *ctx;
729
a3d67d23 730 int (*enable)(struct i915_hw_ppgtt *ppgtt);
eeb9488e
BW
731 int (*switch_mm)(struct i915_hw_ppgtt *ppgtt,
732 struct intel_ring_buffer *ring,
733 bool synchronous);
87d60b63 734 void (*debug_dump)(struct i915_hw_ppgtt *ppgtt, struct seq_file *m);
1d2a314c
DV
735};
736
e59ec13d
MK
737struct i915_ctx_hang_stats {
738 /* This context had batch pending when hang was declared */
739 unsigned batch_pending;
740
741 /* This context had batch active when hang was declared */
742 unsigned batch_active;
be62acb4
MK
743
744 /* Time when this context was last blamed for a GPU reset */
745 unsigned long guilty_ts;
746
747 /* This context is banned to submit more work */
748 bool banned;
e59ec13d 749};
40521054
BW
750
751/* This must match up with the value previously used for execbuf2.rsvd1. */
752#define DEFAULT_CONTEXT_ID 0
753struct i915_hw_context {
dce3271b 754 struct kref ref;
40521054 755 int id;
e0556841 756 bool is_initialized;
3ccfd19d 757 uint8_t remap_slice;
40521054 758 struct drm_i915_file_private *file_priv;
0009e46c 759 struct intel_ring_buffer *last_ring;
40521054 760 struct drm_i915_gem_object *obj;
e59ec13d 761 struct i915_ctx_hang_stats hang_stats;
c7c48dfd 762 struct i915_address_space *vm;
a33afea5
BW
763
764 struct list_head link;
40521054
BW
765};
766
5c3fe8b0
BW
767struct i915_fbc {
768 unsigned long size;
769 unsigned int fb_id;
770 enum plane plane;
771 int y;
772
773 struct drm_mm_node *compressed_fb;
774 struct drm_mm_node *compressed_llb;
775
776 struct intel_fbc_work {
777 struct delayed_work work;
778 struct drm_crtc *crtc;
779 struct drm_framebuffer *fb;
5c3fe8b0
BW
780 } *fbc_work;
781
29ebf90f
CW
782 enum no_fbc_reason {
783 FBC_OK, /* FBC is enabled */
784 FBC_UNSUPPORTED, /* FBC is not supported by this chipset */
5c3fe8b0
BW
785 FBC_NO_OUTPUT, /* no outputs enabled to compress */
786 FBC_STOLEN_TOO_SMALL, /* not enough space for buffers */
787 FBC_UNSUPPORTED_MODE, /* interlace or doublescanned mode */
788 FBC_MODE_TOO_LARGE, /* mode too large for compression */
789 FBC_BAD_PLANE, /* fbc not supported on plane */
790 FBC_NOT_TILED, /* buffer not tiled */
791 FBC_MULTIPLE_PIPES, /* more than one pipe active */
792 FBC_MODULE_PARAM,
793 FBC_CHIP_DEFAULT, /* disabled by default on this chip */
794 } no_fbc_reason;
b5e50c3f
JB
795};
796
a031d709
RV
797struct i915_psr {
798 bool sink_support;
799 bool source_ok;
3f51e471 800};
5c3fe8b0 801
3bad0781 802enum intel_pch {
f0350830 803 PCH_NONE = 0, /* No PCH present */
3bad0781
ZW
804 PCH_IBX, /* Ibexpeak PCH */
805 PCH_CPT, /* Cougarpoint PCH */
eb877ebf 806 PCH_LPT, /* Lynxpoint PCH */
40c7ead9 807 PCH_NOP,
3bad0781
ZW
808};
809
988d6ee8
PZ
810enum intel_sbi_destination {
811 SBI_ICLK,
812 SBI_MPHY,
813};
814
b690e96c 815#define QUIRK_PIPEA_FORCE (1<<0)
435793df 816#define QUIRK_LVDS_SSC_DISABLE (1<<1)
4dca20ef 817#define QUIRK_INVERT_BRIGHTNESS (1<<2)
b690e96c 818
8be48d92 819struct intel_fbdev;
1630fe75 820struct intel_fbc_work;
38651674 821
c2b9152f
DV
822struct intel_gmbus {
823 struct i2c_adapter adapter;
f2ce9faf 824 u32 force_bit;
c2b9152f 825 u32 reg0;
36c785f0 826 u32 gpio_reg;
c167a6fc 827 struct i2c_algo_bit_data bit_algo;
c2b9152f
DV
828 struct drm_i915_private *dev_priv;
829};
830
f4c956ad 831struct i915_suspend_saved_registers {
ba8bbcf6
JB
832 u8 saveLBB;
833 u32 saveDSPACNTR;
834 u32 saveDSPBCNTR;
e948e994 835 u32 saveDSPARB;
ba8bbcf6
JB
836 u32 savePIPEACONF;
837 u32 savePIPEBCONF;
838 u32 savePIPEASRC;
839 u32 savePIPEBSRC;
840 u32 saveFPA0;
841 u32 saveFPA1;
842 u32 saveDPLL_A;
843 u32 saveDPLL_A_MD;
844 u32 saveHTOTAL_A;
845 u32 saveHBLANK_A;
846 u32 saveHSYNC_A;
847 u32 saveVTOTAL_A;
848 u32 saveVBLANK_A;
849 u32 saveVSYNC_A;
850 u32 saveBCLRPAT_A;
5586c8bc 851 u32 saveTRANSACONF;
42048781
ZW
852 u32 saveTRANS_HTOTAL_A;
853 u32 saveTRANS_HBLANK_A;
854 u32 saveTRANS_HSYNC_A;
855 u32 saveTRANS_VTOTAL_A;
856 u32 saveTRANS_VBLANK_A;
857 u32 saveTRANS_VSYNC_A;
0da3ea12 858 u32 savePIPEASTAT;
ba8bbcf6
JB
859 u32 saveDSPASTRIDE;
860 u32 saveDSPASIZE;
861 u32 saveDSPAPOS;
585fb111 862 u32 saveDSPAADDR;
ba8bbcf6
JB
863 u32 saveDSPASURF;
864 u32 saveDSPATILEOFF;
865 u32 savePFIT_PGM_RATIOS;
0eb96d6e 866 u32 saveBLC_HIST_CTL;
ba8bbcf6
JB
867 u32 saveBLC_PWM_CTL;
868 u32 saveBLC_PWM_CTL2;
07bf139b 869 u32 saveBLC_HIST_CTL_B;
42048781
ZW
870 u32 saveBLC_CPU_PWM_CTL;
871 u32 saveBLC_CPU_PWM_CTL2;
ba8bbcf6
JB
872 u32 saveFPB0;
873 u32 saveFPB1;
874 u32 saveDPLL_B;
875 u32 saveDPLL_B_MD;
876 u32 saveHTOTAL_B;
877 u32 saveHBLANK_B;
878 u32 saveHSYNC_B;
879 u32 saveVTOTAL_B;
880 u32 saveVBLANK_B;
881 u32 saveVSYNC_B;
882 u32 saveBCLRPAT_B;
5586c8bc 883 u32 saveTRANSBCONF;
42048781
ZW
884 u32 saveTRANS_HTOTAL_B;
885 u32 saveTRANS_HBLANK_B;
886 u32 saveTRANS_HSYNC_B;
887 u32 saveTRANS_VTOTAL_B;
888 u32 saveTRANS_VBLANK_B;
889 u32 saveTRANS_VSYNC_B;
0da3ea12 890 u32 savePIPEBSTAT;
ba8bbcf6
JB
891 u32 saveDSPBSTRIDE;
892 u32 saveDSPBSIZE;
893 u32 saveDSPBPOS;
585fb111 894 u32 saveDSPBADDR;
ba8bbcf6
JB
895 u32 saveDSPBSURF;
896 u32 saveDSPBTILEOFF;
585fb111
JB
897 u32 saveVGA0;
898 u32 saveVGA1;
899 u32 saveVGA_PD;
ba8bbcf6
JB
900 u32 saveVGACNTRL;
901 u32 saveADPA;
902 u32 saveLVDS;
585fb111
JB
903 u32 savePP_ON_DELAYS;
904 u32 savePP_OFF_DELAYS;
ba8bbcf6
JB
905 u32 saveDVOA;
906 u32 saveDVOB;
907 u32 saveDVOC;
908 u32 savePP_ON;
909 u32 savePP_OFF;
910 u32 savePP_CONTROL;
585fb111 911 u32 savePP_DIVISOR;
ba8bbcf6
JB
912 u32 savePFIT_CONTROL;
913 u32 save_palette_a[256];
914 u32 save_palette_b[256];
ba8bbcf6 915 u32 saveFBC_CONTROL;
0da3ea12
JB
916 u32 saveIER;
917 u32 saveIIR;
918 u32 saveIMR;
42048781
ZW
919 u32 saveDEIER;
920 u32 saveDEIMR;
921 u32 saveGTIER;
922 u32 saveGTIMR;
923 u32 saveFDI_RXA_IMR;
924 u32 saveFDI_RXB_IMR;
1f84e550 925 u32 saveCACHE_MODE_0;
1f84e550 926 u32 saveMI_ARB_STATE;
ba8bbcf6
JB
927 u32 saveSWF0[16];
928 u32 saveSWF1[16];
929 u32 saveSWF2[3];
930 u8 saveMSR;
931 u8 saveSR[8];
123f794f 932 u8 saveGR[25];
ba8bbcf6 933 u8 saveAR_INDEX;
a59e122a 934 u8 saveAR[21];
ba8bbcf6 935 u8 saveDACMASK;
a59e122a 936 u8 saveCR[37];
4b9de737 937 uint64_t saveFENCE[I915_MAX_NUM_FENCES];
1fd1c624
EA
938 u32 saveCURACNTR;
939 u32 saveCURAPOS;
940 u32 saveCURABASE;
941 u32 saveCURBCNTR;
942 u32 saveCURBPOS;
943 u32 saveCURBBASE;
944 u32 saveCURSIZE;
a4fc5ed6
KP
945 u32 saveDP_B;
946 u32 saveDP_C;
947 u32 saveDP_D;
948 u32 savePIPEA_GMCH_DATA_M;
949 u32 savePIPEB_GMCH_DATA_M;
950 u32 savePIPEA_GMCH_DATA_N;
951 u32 savePIPEB_GMCH_DATA_N;
952 u32 savePIPEA_DP_LINK_M;
953 u32 savePIPEB_DP_LINK_M;
954 u32 savePIPEA_DP_LINK_N;
955 u32 savePIPEB_DP_LINK_N;
42048781
ZW
956 u32 saveFDI_RXA_CTL;
957 u32 saveFDI_TXA_CTL;
958 u32 saveFDI_RXB_CTL;
959 u32 saveFDI_TXB_CTL;
960 u32 savePFA_CTL_1;
961 u32 savePFB_CTL_1;
962 u32 savePFA_WIN_SZ;
963 u32 savePFB_WIN_SZ;
964 u32 savePFA_WIN_POS;
965 u32 savePFB_WIN_POS;
5586c8bc
ZW
966 u32 savePCH_DREF_CONTROL;
967 u32 saveDISP_ARB_CTL;
968 u32 savePIPEA_DATA_M1;
969 u32 savePIPEA_DATA_N1;
970 u32 savePIPEA_LINK_M1;
971 u32 savePIPEA_LINK_N1;
972 u32 savePIPEB_DATA_M1;
973 u32 savePIPEB_DATA_N1;
974 u32 savePIPEB_LINK_M1;
975 u32 savePIPEB_LINK_N1;
b5b72e89 976 u32 saveMCHBAR_RENDER_STANDBY;
cda2bb78 977 u32 savePCH_PORT_HOTPLUG;
f4c956ad 978};
c85aa885
DV
979
980struct intel_gen6_power_mgmt {
59cdb63d 981 /* work and pm_iir are protected by dev_priv->irq_lock */
c85aa885
DV
982 struct work_struct work;
983 u32 pm_iir;
59cdb63d 984
b39fb297
BW
985 /* Frequencies are stored in potentially platform dependent multiples.
986 * In other words, *_freq needs to be multiplied by X to be interesting.
987 * Soft limits are those which are used for the dynamic reclocking done
988 * by the driver (raise frequencies under heavy loads, and lower for
989 * lighter loads). Hard limits are those imposed by the hardware.
990 *
991 * A distinction is made for overclocking, which is never enabled by
992 * default, and is considered to be above the hard limit if it's
993 * possible at all.
994 */
995 u8 cur_freq; /* Current frequency (cached, may not == HW) */
996 u8 min_freq_softlimit; /* Minimum frequency permitted by the driver */
997 u8 max_freq_softlimit; /* Max frequency permitted by the driver */
998 u8 max_freq; /* Maximum frequency, RP0 if not overclocking */
999 u8 min_freq; /* AKA RPn. Minimum frequency */
1000 u8 efficient_freq; /* AKA RPe. Pre-determined balanced frequency */
1001 u8 rp1_freq; /* "less than" RP0 power/freqency */
1002 u8 rp0_freq; /* Non-overclocked max frequency. */
1a01ab3b 1003
dd75fdc8
CW
1004 int last_adj;
1005 enum { LOW_POWER, BETWEEN, HIGH_POWER } power;
1006
c0951f0c 1007 bool enabled;
1a01ab3b 1008 struct delayed_work delayed_resume_work;
4fc688ce
JB
1009
1010 /*
1011 * Protects RPS/RC6 register access and PCU communication.
1012 * Must be taken after struct_mutex if nested.
1013 */
1014 struct mutex hw_lock;
c85aa885
DV
1015};
1016
1a240d4d
DV
1017/* defined intel_pm.c */
1018extern spinlock_t mchdev_lock;
1019
c85aa885
DV
1020struct intel_ilk_power_mgmt {
1021 u8 cur_delay;
1022 u8 min_delay;
1023 u8 max_delay;
1024 u8 fmax;
1025 u8 fstart;
1026
1027 u64 last_count1;
1028 unsigned long last_time1;
1029 unsigned long chipset_power;
1030 u64 last_count2;
1031 struct timespec last_time2;
1032 unsigned long gfx_power;
1033 u8 corr;
1034
1035 int c_m;
1036 int r_t;
3e373948
DV
1037
1038 struct drm_i915_gem_object *pwrctx;
1039 struct drm_i915_gem_object *renderctx;
c85aa885
DV
1040};
1041
c6cb582e
ID
1042struct drm_i915_private;
1043struct i915_power_well;
1044
1045struct i915_power_well_ops {
1046 /*
1047 * Synchronize the well's hw state to match the current sw state, for
1048 * example enable/disable it based on the current refcount. Called
1049 * during driver init and resume time, possibly after first calling
1050 * the enable/disable handlers.
1051 */
1052 void (*sync_hw)(struct drm_i915_private *dev_priv,
1053 struct i915_power_well *power_well);
1054 /*
1055 * Enable the well and resources that depend on it (for example
1056 * interrupts located on the well). Called after the 0->1 refcount
1057 * transition.
1058 */
1059 void (*enable)(struct drm_i915_private *dev_priv,
1060 struct i915_power_well *power_well);
1061 /*
1062 * Disable the well and resources that depend on it. Called after
1063 * the 1->0 refcount transition.
1064 */
1065 void (*disable)(struct drm_i915_private *dev_priv,
1066 struct i915_power_well *power_well);
1067 /* Returns the hw enabled state. */
1068 bool (*is_enabled)(struct drm_i915_private *dev_priv,
1069 struct i915_power_well *power_well);
1070};
1071
a38911a3
WX
1072/* Power well structure for haswell */
1073struct i915_power_well {
c1ca727f 1074 const char *name;
6f3ef5dd 1075 bool always_on;
a38911a3
WX
1076 /* power well enable/disable usage count */
1077 int count;
c1ca727f 1078 unsigned long domains;
77961eb9 1079 unsigned long data;
c6cb582e 1080 const struct i915_power_well_ops *ops;
a38911a3
WX
1081};
1082
83c00f55 1083struct i915_power_domains {
baa70707
ID
1084 /*
1085 * Power wells needed for initialization at driver init and suspend
1086 * time are on. They are kept on until after the first modeset.
1087 */
1088 bool init_power_on;
c1ca727f 1089 int power_well_count;
baa70707 1090
83c00f55 1091 struct mutex lock;
1da51581 1092 int domain_use_count[POWER_DOMAIN_NUM];
c1ca727f 1093 struct i915_power_well *power_wells;
83c00f55
ID
1094};
1095
231f42a4
DV
1096struct i915_dri1_state {
1097 unsigned allow_batchbuffer : 1;
1098 u32 __iomem *gfx_hws_cpu_addr;
1099
1100 unsigned int cpp;
1101 int back_offset;
1102 int front_offset;
1103 int current_page;
1104 int page_flipping;
1105
1106 uint32_t counter;
1107};
1108
db1b76ca
DV
1109struct i915_ums_state {
1110 /**
1111 * Flag if the X Server, and thus DRM, is not currently in
1112 * control of the device.
1113 *
1114 * This is set between LeaveVT and EnterVT. It needs to be
1115 * replaced with a semaphore. It also needs to be
1116 * transitioned away from for kernel modesetting.
1117 */
1118 int mm_suspended;
1119};
1120
35a85ac6 1121#define MAX_L3_SLICES 2
a4da4fa4 1122struct intel_l3_parity {
35a85ac6 1123 u32 *remap_info[MAX_L3_SLICES];
a4da4fa4 1124 struct work_struct error_work;
35a85ac6 1125 int which_slice;
a4da4fa4
DV
1126};
1127
4b5aed62 1128struct i915_gem_mm {
4b5aed62
DV
1129 /** Memory allocator for GTT stolen memory */
1130 struct drm_mm stolen;
4b5aed62
DV
1131 /** List of all objects in gtt_space. Used to restore gtt
1132 * mappings on resume */
1133 struct list_head bound_list;
1134 /**
1135 * List of objects which are not bound to the GTT (thus
1136 * are idle and not used by the GPU) but still have
1137 * (presumably uncached) pages still attached.
1138 */
1139 struct list_head unbound_list;
1140
1141 /** Usable portion of the GTT for GEM */
1142 unsigned long stolen_base; /* limited to low memory (32-bit) */
1143
4b5aed62
DV
1144 /** PPGTT used for aliasing the PPGTT with the GTT */
1145 struct i915_hw_ppgtt *aliasing_ppgtt;
1146
1147 struct shrinker inactive_shrinker;
1148 bool shrinker_no_lock_stealing;
1149
4b5aed62
DV
1150 /** LRU list of objects with fence regs on them. */
1151 struct list_head fence_list;
1152
1153 /**
1154 * We leave the user IRQ off as much as possible,
1155 * but this means that requests will finish and never
1156 * be retired once the system goes idle. Set a timer to
1157 * fire periodically while the ring is running. When it
1158 * fires, go retire requests.
1159 */
1160 struct delayed_work retire_work;
1161
b29c19b6
CW
1162 /**
1163 * When we detect an idle GPU, we want to turn on
1164 * powersaving features. So once we see that there
1165 * are no more requests outstanding and no more
1166 * arrive within a small period of time, we fire
1167 * off the idle_work.
1168 */
1169 struct delayed_work idle_work;
1170
4b5aed62
DV
1171 /**
1172 * Are we in a non-interruptible section of code like
1173 * modesetting?
1174 */
1175 bool interruptible;
1176
f62a0076
CW
1177 /**
1178 * Is the GPU currently considered idle, or busy executing userspace
1179 * requests? Whilst idle, we attempt to power down the hardware and
1180 * display clocks. In order to reduce the effect on performance, there
1181 * is a slight delay before we do so.
1182 */
1183 bool busy;
1184
4b5aed62
DV
1185 /** Bit 6 swizzling required for X tiling */
1186 uint32_t bit_6_swizzle_x;
1187 /** Bit 6 swizzling required for Y tiling */
1188 uint32_t bit_6_swizzle_y;
1189
1190 /* storage for physical objects */
1191 struct drm_i915_gem_phys_object *phys_objs[I915_MAX_PHYS_OBJECT];
1192
1193 /* accounting, useful for userland debugging */
c20e8355 1194 spinlock_t object_stat_lock;
4b5aed62
DV
1195 size_t object_memory;
1196 u32 object_count;
1197};
1198
edc3d884
MK
1199struct drm_i915_error_state_buf {
1200 unsigned bytes;
1201 unsigned size;
1202 int err;
1203 u8 *buf;
1204 loff_t start;
1205 loff_t pos;
1206};
1207
fc16b48b
MK
1208struct i915_error_state_file_priv {
1209 struct drm_device *dev;
1210 struct drm_i915_error_state *error;
1211};
1212
99584db3
DV
1213struct i915_gpu_error {
1214 /* For hangcheck timer */
1215#define DRM_I915_HANGCHECK_PERIOD 1500 /* in ms */
1216#define DRM_I915_HANGCHECK_JIFFIES msecs_to_jiffies(DRM_I915_HANGCHECK_PERIOD)
be62acb4
MK
1217 /* Hang gpu twice in this window and your context gets banned */
1218#define DRM_I915_CTX_BAN_PERIOD DIV_ROUND_UP(8*DRM_I915_HANGCHECK_PERIOD, 1000)
1219
99584db3 1220 struct timer_list hangcheck_timer;
99584db3
DV
1221
1222 /* For reset and error_state handling. */
1223 spinlock_t lock;
1224 /* Protected by the above dev->gpu_error.lock. */
1225 struct drm_i915_error_state *first_error;
1226 struct work_struct work;
99584db3 1227
094f9a54
CW
1228
1229 unsigned long missed_irq_rings;
1230
1f83fee0 1231 /**
2ac0f450 1232 * State variable controlling the reset flow and count
1f83fee0 1233 *
2ac0f450
MK
1234 * This is a counter which gets incremented when reset is triggered,
1235 * and again when reset has been handled. So odd values (lowest bit set)
1236 * means that reset is in progress and even values that
1237 * (reset_counter >> 1):th reset was successfully completed.
1238 *
1239 * If reset is not completed succesfully, the I915_WEDGE bit is
1240 * set meaning that hardware is terminally sour and there is no
1241 * recovery. All waiters on the reset_queue will be woken when
1242 * that happens.
1243 *
1244 * This counter is used by the wait_seqno code to notice that reset
1245 * event happened and it needs to restart the entire ioctl (since most
1246 * likely the seqno it waited for won't ever signal anytime soon).
f69061be
DV
1247 *
1248 * This is important for lock-free wait paths, where no contended lock
1249 * naturally enforces the correct ordering between the bail-out of the
1250 * waiter and the gpu reset work code.
1f83fee0
DV
1251 */
1252 atomic_t reset_counter;
1253
1f83fee0 1254#define I915_RESET_IN_PROGRESS_FLAG 1
2ac0f450 1255#define I915_WEDGED (1 << 31)
1f83fee0
DV
1256
1257 /**
1258 * Waitqueue to signal when the reset has completed. Used by clients
1259 * that wait for dev_priv->mm.wedged to settle.
1260 */
1261 wait_queue_head_t reset_queue;
33196ded 1262
99584db3
DV
1263 /* For gpu hang simulation. */
1264 unsigned int stop_rings;
094f9a54
CW
1265
1266 /* For missed irq/seqno simulation. */
1267 unsigned int test_irq_rings;
99584db3
DV
1268};
1269
b8efb17b
ZR
1270enum modeset_restore {
1271 MODESET_ON_LID_OPEN,
1272 MODESET_DONE,
1273 MODESET_SUSPENDED,
1274};
1275
6acab15a
PZ
1276struct ddi_vbt_port_info {
1277 uint8_t hdmi_level_shift;
311a2094
PZ
1278
1279 uint8_t supports_dvi:1;
1280 uint8_t supports_hdmi:1;
1281 uint8_t supports_dp:1;
6acab15a
PZ
1282};
1283
41aa3448
RV
1284struct intel_vbt_data {
1285 struct drm_display_mode *lfp_lvds_vbt_mode; /* if any */
1286 struct drm_display_mode *sdvo_lvds_vbt_mode; /* if any */
1287
1288 /* Feature bits */
1289 unsigned int int_tv_support:1;
1290 unsigned int lvds_dither:1;
1291 unsigned int lvds_vbt:1;
1292 unsigned int int_crt_support:1;
1293 unsigned int lvds_use_ssc:1;
1294 unsigned int display_clock_mode:1;
1295 unsigned int fdi_rx_polarity_inverted:1;
1296 int lvds_ssc_freq;
1297 unsigned int bios_lvds_val; /* initial [PCH_]LVDS reg val in VBIOS */
1298
1299 /* eDP */
1300 int edp_rate;
1301 int edp_lanes;
1302 int edp_preemphasis;
1303 int edp_vswing;
1304 bool edp_initialized;
1305 bool edp_support;
1306 int edp_bpp;
1307 struct edp_power_seq edp_pps;
1308
f00076d2
JN
1309 struct {
1310 u16 pwm_freq_hz;
1311 bool active_low_pwm;
1312 } backlight;
1313
d17c5443
SK
1314 /* MIPI DSI */
1315 struct {
1316 u16 panel_id;
1317 } dsi;
1318
41aa3448
RV
1319 int crt_ddc_pin;
1320
1321 int child_dev_num;
768f69c9 1322 union child_device_config *child_dev;
6acab15a
PZ
1323
1324 struct ddi_vbt_port_info ddi_port_info[I915_MAX_PORTS];
41aa3448
RV
1325};
1326
77c122bc
VS
1327enum intel_ddb_partitioning {
1328 INTEL_DDB_PART_1_2,
1329 INTEL_DDB_PART_5_6, /* IVB+ */
1330};
1331
1fd527cc
VS
1332struct intel_wm_level {
1333 bool enable;
1334 uint32_t pri_val;
1335 uint32_t spr_val;
1336 uint32_t cur_val;
1337 uint32_t fbc_val;
1338};
1339
820c1980 1340struct ilk_wm_values {
609cedef
VS
1341 uint32_t wm_pipe[3];
1342 uint32_t wm_lp[3];
1343 uint32_t wm_lp_spr[3];
1344 uint32_t wm_linetime[3];
1345 bool enable_fbc_wm;
1346 enum intel_ddb_partitioning partitioning;
1347};
1348
c67a470b 1349/*
765dab67
PZ
1350 * This struct helps tracking the state needed for runtime PM, which puts the
1351 * device in PCI D3 state. Notice that when this happens, nothing on the
1352 * graphics device works, even register access, so we don't get interrupts nor
1353 * anything else.
c67a470b 1354 *
765dab67
PZ
1355 * Every piece of our code that needs to actually touch the hardware needs to
1356 * either call intel_runtime_pm_get or call intel_display_power_get with the
1357 * appropriate power domain.
a8a8bd54 1358 *
765dab67
PZ
1359 * Our driver uses the autosuspend delay feature, which means we'll only really
1360 * suspend if we stay with zero refcount for a certain amount of time. The
1361 * default value is currently very conservative (see intel_init_runtime_pm), but
1362 * it can be changed with the standard runtime PM files from sysfs.
c67a470b
PZ
1363 *
1364 * The irqs_disabled variable becomes true exactly after we disable the IRQs and
1365 * goes back to false exactly before we reenable the IRQs. We use this variable
1366 * to check if someone is trying to enable/disable IRQs while they're supposed
1367 * to be disabled. This shouldn't happen and we'll print some error messages in
1368 * case it happens, but if it actually happens we'll also update the variables
1369 * inside struct regsave so when we restore the IRQs they will contain the
1370 * latest expected values.
1371 *
765dab67 1372 * For more, read the Documentation/power/runtime_pm.txt.
c67a470b 1373 */
5d584b2e
PZ
1374struct i915_runtime_pm {
1375 bool suspended;
1376 bool irqs_disabled;
c67a470b
PZ
1377
1378 struct {
1379 uint32_t deimr;
1380 uint32_t sdeimr;
1381 uint32_t gtimr;
1382 uint32_t gtier;
1383 uint32_t gen6_pmimr;
1384 } regsave;
1385};
1386
926321d5
DV
1387enum intel_pipe_crc_source {
1388 INTEL_PIPE_CRC_SOURCE_NONE,
1389 INTEL_PIPE_CRC_SOURCE_PLANE1,
1390 INTEL_PIPE_CRC_SOURCE_PLANE2,
1391 INTEL_PIPE_CRC_SOURCE_PF,
5b3a856b 1392 INTEL_PIPE_CRC_SOURCE_PIPE,
3d099a05
DV
1393 /* TV/DP on pre-gen5/vlv can't use the pipe source. */
1394 INTEL_PIPE_CRC_SOURCE_TV,
1395 INTEL_PIPE_CRC_SOURCE_DP_B,
1396 INTEL_PIPE_CRC_SOURCE_DP_C,
1397 INTEL_PIPE_CRC_SOURCE_DP_D,
46a19188 1398 INTEL_PIPE_CRC_SOURCE_AUTO,
926321d5
DV
1399 INTEL_PIPE_CRC_SOURCE_MAX,
1400};
1401
8bf1e9f1 1402struct intel_pipe_crc_entry {
ac2300d4 1403 uint32_t frame;
8bf1e9f1
SH
1404 uint32_t crc[5];
1405};
1406
b2c88f5b 1407#define INTEL_PIPE_CRC_ENTRIES_NR 128
8bf1e9f1 1408struct intel_pipe_crc {
d538bbdf
DL
1409 spinlock_t lock;
1410 bool opened; /* exclusive access to the result file */
e5f75aca 1411 struct intel_pipe_crc_entry *entries;
926321d5 1412 enum intel_pipe_crc_source source;
d538bbdf 1413 int head, tail;
07144428 1414 wait_queue_head_t wq;
8bf1e9f1
SH
1415};
1416
f4c956ad
DV
1417typedef struct drm_i915_private {
1418 struct drm_device *dev;
42dcedd4 1419 struct kmem_cache *slab;
f4c956ad 1420
5c969aa7 1421 const struct intel_device_info info;
f4c956ad
DV
1422
1423 int relative_constants_mode;
1424
1425 void __iomem *regs;
1426
907b28c5 1427 struct intel_uncore uncore;
f4c956ad
DV
1428
1429 struct intel_gmbus gmbus[GMBUS_NUM_PORTS];
1430
28c70f16 1431
f4c956ad
DV
1432 /** gmbus_mutex protects against concurrent usage of the single hw gmbus
1433 * controller on different i2c buses. */
1434 struct mutex gmbus_mutex;
1435
1436 /**
1437 * Base address of the gmbus and gpio block.
1438 */
1439 uint32_t gpio_mmio_base;
1440
28c70f16
DV
1441 wait_queue_head_t gmbus_wait_queue;
1442
f4c956ad
DV
1443 struct pci_dev *bridge_dev;
1444 struct intel_ring_buffer ring[I915_NUM_RINGS];
f72b3435 1445 uint32_t last_seqno, next_seqno;
f4c956ad
DV
1446
1447 drm_dma_handle_t *status_page_dmah;
f4c956ad
DV
1448 struct resource mch_res;
1449
f4c956ad
DV
1450 /* protects the irq masks */
1451 spinlock_t irq_lock;
1452
f8b79e58
ID
1453 bool display_irqs_enabled;
1454
9ee32fea
DV
1455 /* To control wakeup latency, e.g. for irq-driven dp aux transfers. */
1456 struct pm_qos_request pm_qos;
1457
f4c956ad 1458 /* DPIO indirect register protection */
09153000 1459 struct mutex dpio_lock;
f4c956ad
DV
1460
1461 /** Cached value of IMR to avoid reads in updating the bitfield */
abd58f01
BW
1462 union {
1463 u32 irq_mask;
1464 u32 de_irq_mask[I915_MAX_PIPES];
1465 };
f4c956ad 1466 u32 gt_irq_mask;
605cd25b 1467 u32 pm_irq_mask;
a6706b45 1468 u32 pm_rps_events;
91d181dd 1469 u32 pipestat_irq_mask[I915_MAX_PIPES];
f4c956ad 1470
f4c956ad 1471 struct work_struct hotplug_work;
52d7eced 1472 bool enable_hotplug_processing;
b543fb04
EE
1473 struct {
1474 unsigned long hpd_last_jiffies;
1475 int hpd_cnt;
1476 enum {
1477 HPD_ENABLED = 0,
1478 HPD_DISABLED = 1,
1479 HPD_MARK_DISABLED = 2
1480 } hpd_mark;
1481 } hpd_stats[HPD_NUM_PINS];
142e2398 1482 u32 hpd_event_bits;
ac4c16c5 1483 struct timer_list hotplug_reenable_timer;
f4c956ad 1484
5c3fe8b0 1485 struct i915_fbc fbc;
f4c956ad 1486 struct intel_opregion opregion;
41aa3448 1487 struct intel_vbt_data vbt;
f4c956ad
DV
1488
1489 /* overlay */
1490 struct intel_overlay *overlay;
f4c956ad 1491
58c68779
JN
1492 /* backlight registers and fields in struct intel_panel */
1493 spinlock_t backlight_lock;
31ad8ec6 1494
f4c956ad 1495 /* LVDS info */
f4c956ad
DV
1496 bool no_aux_handshake;
1497
f4c956ad
DV
1498 struct drm_i915_fence_reg fence_regs[I915_MAX_NUM_FENCES]; /* assume 965 */
1499 int fence_reg_start; /* 4 if userland hasn't ioctl'd us yet */
1500 int num_fence_regs; /* 8 on pre-965, 16 otherwise */
1501
1502 unsigned int fsb_freq, mem_freq, is_ddr3;
1503
645416f5
DV
1504 /**
1505 * wq - Driver workqueue for GEM.
1506 *
1507 * NOTE: Work items scheduled here are not allowed to grab any modeset
1508 * locks, for otherwise the flushing done in the pageflip code will
1509 * result in deadlocks.
1510 */
f4c956ad
DV
1511 struct workqueue_struct *wq;
1512
1513 /* Display functions */
1514 struct drm_i915_display_funcs display;
1515
1516 /* PCH chipset type */
1517 enum intel_pch pch_type;
17a303ec 1518 unsigned short pch_id;
f4c956ad
DV
1519
1520 unsigned long quirks;
1521
b8efb17b
ZR
1522 enum modeset_restore modeset_restore;
1523 struct mutex modeset_restore_lock;
673a394b 1524
a7bbbd63 1525 struct list_head vm_list; /* Global list of all address spaces */
853ba5d2 1526 struct i915_gtt gtt; /* VMA representing the global address space */
5d4545ae 1527
4b5aed62 1528 struct i915_gem_mm mm;
8781342d 1529
8781342d
DV
1530 /* Kernel Modesetting */
1531
9b9d172d 1532 struct sdvo_device_mapping sdvo_mappings[2];
652c393a 1533
76c4ac04
DL
1534 struct drm_crtc *plane_to_crtc_mapping[I915_MAX_PIPES];
1535 struct drm_crtc *pipe_to_crtc_mapping[I915_MAX_PIPES];
6b95a207
KH
1536 wait_queue_head_t pending_flip_queue;
1537
c4597872
DV
1538#ifdef CONFIG_DEBUG_FS
1539 struct intel_pipe_crc pipe_crc[I915_MAX_PIPES];
1540#endif
1541
e72f9fbf
DV
1542 int num_shared_dpll;
1543 struct intel_shared_dpll shared_dplls[I915_NUM_PLLS];
6441ab5f 1544 struct intel_ddi_plls ddi_plls;
e4607fcf 1545 int dpio_phy_iosf_port[I915_NUM_PHYS_VLV];
ee7b9f93 1546
652c393a
JB
1547 /* Reclocking support */
1548 bool render_reclock_avail;
1549 bool lvds_downclock_avail;
18f9ed12
ZY
1550 /* indicates the reduced downclock for LVDS*/
1551 int lvds_downclock;
652c393a 1552 u16 orig_clock;
f97108d1 1553
c4804411 1554 bool mchbar_need_disable;
f97108d1 1555
a4da4fa4
DV
1556 struct intel_l3_parity l3_parity;
1557
59124506
BW
1558 /* Cannot be determined by PCIID. You must always read a register. */
1559 size_t ellc_size;
1560
c6a828d3 1561 /* gen6+ rps state */
c85aa885 1562 struct intel_gen6_power_mgmt rps;
c6a828d3 1563
20e4d407
DV
1564 /* ilk-only ips/rps state. Everything in here is protected by the global
1565 * mchdev_lock in intel_pm.c */
c85aa885 1566 struct intel_ilk_power_mgmt ips;
b5e50c3f 1567
83c00f55 1568 struct i915_power_domains power_domains;
a38911a3 1569
a031d709 1570 struct i915_psr psr;
3f51e471 1571
99584db3 1572 struct i915_gpu_error gpu_error;
ae681d96 1573
c9cddffc
JB
1574 struct drm_i915_gem_object *vlv_pctx;
1575
4520f53a 1576#ifdef CONFIG_DRM_I915_FBDEV
8be48d92
DA
1577 /* list of fbdev register on this device */
1578 struct intel_fbdev *fbdev;
4520f53a 1579#endif
e953fd7b 1580
073f34d9
JB
1581 /*
1582 * The console may be contended at resume, but we don't
1583 * want it to block on it.
1584 */
1585 struct work_struct console_resume_work;
1586
e953fd7b 1587 struct drm_property *broadcast_rgb_property;
3f43c48d 1588 struct drm_property *force_audio_property;
e3689190 1589
254f965c 1590 uint32_t hw_context_size;
a33afea5 1591 struct list_head context_list;
f4c956ad 1592
3e68320e 1593 u32 fdi_rx_config;
68d18ad7 1594
842f1c8b 1595 u32 suspend_count;
f4c956ad 1596 struct i915_suspend_saved_registers regfile;
231f42a4 1597
53615a5e
VS
1598 struct {
1599 /*
1600 * Raw watermark latency values:
1601 * in 0.1us units for WM0,
1602 * in 0.5us units for WM1+.
1603 */
1604 /* primary */
1605 uint16_t pri_latency[5];
1606 /* sprite */
1607 uint16_t spr_latency[5];
1608 /* cursor */
1609 uint16_t cur_latency[5];
609cedef
VS
1610
1611 /* current hardware state */
820c1980 1612 struct ilk_wm_values hw;
53615a5e
VS
1613 } wm;
1614
8a187455
PZ
1615 struct i915_runtime_pm pm;
1616
231f42a4
DV
1617 /* Old dri1 support infrastructure, beware the dragons ya fools entering
1618 * here! */
1619 struct i915_dri1_state dri1;
db1b76ca
DV
1620 /* Old ums support infrastructure, same warning applies. */
1621 struct i915_ums_state ums;
1da177e4
LT
1622} drm_i915_private_t;
1623
2c1792a1
CW
1624static inline struct drm_i915_private *to_i915(const struct drm_device *dev)
1625{
1626 return dev->dev_private;
1627}
1628
b4519513
CW
1629/* Iterate over initialised rings */
1630#define for_each_ring(ring__, dev_priv__, i__) \
1631 for ((i__) = 0; (i__) < I915_NUM_RINGS; (i__)++) \
1632 if (((ring__) = &(dev_priv__)->ring[(i__)]), intel_ring_initialized((ring__)))
1633
b1d7e4b4
WF
1634enum hdmi_force_audio {
1635 HDMI_AUDIO_OFF_DVI = -2, /* no aux data for HDMI-DVI converter */
1636 HDMI_AUDIO_OFF, /* force turn off HDMI audio */
1637 HDMI_AUDIO_AUTO, /* trust EDID */
1638 HDMI_AUDIO_ON, /* force turn on HDMI audio */
1639};
1640
190d6cd5 1641#define I915_GTT_OFFSET_NONE ((u32)-1)
ed2f3452 1642
37e680a1
CW
1643struct drm_i915_gem_object_ops {
1644 /* Interface between the GEM object and its backing storage.
1645 * get_pages() is called once prior to the use of the associated set
1646 * of pages before to binding them into the GTT, and put_pages() is
1647 * called after we no longer need them. As we expect there to be
1648 * associated cost with migrating pages between the backing storage
1649 * and making them available for the GPU (e.g. clflush), we may hold
1650 * onto the pages after they are no longer referenced by the GPU
1651 * in case they may be used again shortly (for example migrating the
1652 * pages to a different memory domain within the GTT). put_pages()
1653 * will therefore most likely be called when the object itself is
1654 * being released or under memory pressure (where we attempt to
1655 * reap pages for the shrinker).
1656 */
1657 int (*get_pages)(struct drm_i915_gem_object *);
1658 void (*put_pages)(struct drm_i915_gem_object *);
1659};
1660
673a394b 1661struct drm_i915_gem_object {
c397b908 1662 struct drm_gem_object base;
673a394b 1663
37e680a1
CW
1664 const struct drm_i915_gem_object_ops *ops;
1665
2f633156
BW
1666 /** List of VMAs backed by this object */
1667 struct list_head vma_list;
1668
c1ad11fc
CW
1669 /** Stolen memory for this object, instead of being backed by shmem. */
1670 struct drm_mm_node *stolen;
35c20a60 1671 struct list_head global_list;
673a394b 1672
69dc4987 1673 struct list_head ring_list;
b25cb2f8
BW
1674 /** Used in execbuf to temporarily hold a ref */
1675 struct list_head obj_exec_link;
673a394b
EA
1676
1677 /**
65ce3027
CW
1678 * This is set if the object is on the active lists (has pending
1679 * rendering and so a non-zero seqno), and is not set if it i s on
1680 * inactive (ready to be unbound) list.
673a394b 1681 */
0206e353 1682 unsigned int active:1;
673a394b
EA
1683
1684 /**
1685 * This is set if the object has been written to since last bound
1686 * to the GTT
1687 */
0206e353 1688 unsigned int dirty:1;
778c3544
DV
1689
1690 /**
1691 * Fence register bits (if any) for this object. Will be set
1692 * as needed when mapped into the GTT.
1693 * Protected by dev->struct_mutex.
778c3544 1694 */
4b9de737 1695 signed int fence_reg:I915_MAX_NUM_FENCE_BITS;
778c3544 1696
778c3544
DV
1697 /**
1698 * Advice: are the backing pages purgeable?
1699 */
0206e353 1700 unsigned int madv:2;
778c3544 1701
778c3544
DV
1702 /**
1703 * Current tiling mode for the object.
1704 */
0206e353 1705 unsigned int tiling_mode:2;
5d82e3e6
CW
1706 /**
1707 * Whether the tiling parameters for the currently associated fence
1708 * register have changed. Note that for the purposes of tracking
1709 * tiling changes we also treat the unfenced register, the register
1710 * slot that the object occupies whilst it executes a fenced
1711 * command (such as BLT on gen2/3), as a "fence".
1712 */
1713 unsigned int fence_dirty:1;
778c3544 1714
75e9e915
DV
1715 /**
1716 * Is the object at the current location in the gtt mappable and
1717 * fenceable? Used to avoid costly recalculations.
1718 */
0206e353 1719 unsigned int map_and_fenceable:1;
75e9e915 1720
fb7d516a
DV
1721 /**
1722 * Whether the current gtt mapping needs to be mappable (and isn't just
1723 * mappable by accident). Track pin and fault separate for a more
1724 * accurate mappable working set.
1725 */
0206e353
AJ
1726 unsigned int fault_mappable:1;
1727 unsigned int pin_mappable:1;
cc98b413 1728 unsigned int pin_display:1;
fb7d516a 1729
caea7476
CW
1730 /*
1731 * Is the GPU currently using a fence to access this buffer,
1732 */
1733 unsigned int pending_fenced_gpu_access:1;
1734 unsigned int fenced_gpu_access:1;
1735
651d794f 1736 unsigned int cache_level:3;
93dfb40c 1737
7bddb01f 1738 unsigned int has_aliasing_ppgtt_mapping:1;
74898d7e 1739 unsigned int has_global_gtt_mapping:1;
9da3da66 1740 unsigned int has_dma_mapping:1;
7bddb01f 1741
9da3da66 1742 struct sg_table *pages;
a5570178 1743 int pages_pin_count;
673a394b 1744
1286ff73 1745 /* prime dma-buf support */
9a70cc2a
DA
1746 void *dma_buf_vmapping;
1747 int vmapping_count;
1748
caea7476
CW
1749 struct intel_ring_buffer *ring;
1750
1c293ea3 1751 /** Breadcrumb of last rendering to the buffer. */
0201f1ec
CW
1752 uint32_t last_read_seqno;
1753 uint32_t last_write_seqno;
caea7476
CW
1754 /** Breadcrumb of last fenced GPU access to the buffer. */
1755 uint32_t last_fenced_seqno;
673a394b 1756
778c3544 1757 /** Current tiling stride for the object, if it's tiled. */
de151cf6 1758 uint32_t stride;
673a394b 1759
80075d49
DV
1760 /** References from framebuffers, locks out tiling changes. */
1761 unsigned long framebuffer_references;
1762
280b713b 1763 /** Record of address bit 17 of each page at last unbind. */
d312ec25 1764 unsigned long *bit_17;
280b713b 1765
79e53945 1766 /** User space pin count and filp owning the pin */
aa5f8021 1767 unsigned long user_pin_count;
79e53945 1768 struct drm_file *pin_filp;
71acb5eb
DA
1769
1770 /** for phy allocated objects */
1771 struct drm_i915_gem_phys_object *phys_obj;
673a394b
EA
1772};
1773
62b8b215 1774#define to_intel_bo(x) container_of(x, struct drm_i915_gem_object, base)
23010e43 1775
673a394b
EA
1776/**
1777 * Request queue structure.
1778 *
1779 * The request queue allows us to note sequence numbers that have been emitted
1780 * and may be associated with active buffers to be retired.
1781 *
1782 * By keeping this list, we can avoid having to do questionable
1783 * sequence-number comparisons on buffer last_rendering_seqnos, and associate
1784 * an emission time with seqnos for tracking how far ahead of the GPU we are.
1785 */
1786struct drm_i915_gem_request {
852835f3
ZN
1787 /** On Which ring this request was generated */
1788 struct intel_ring_buffer *ring;
1789
673a394b
EA
1790 /** GEM sequence number associated with this request. */
1791 uint32_t seqno;
1792
7d736f4f
MK
1793 /** Position in the ringbuffer of the start of the request */
1794 u32 head;
1795
1796 /** Position in the ringbuffer of the end of the request */
a71d8d94
CW
1797 u32 tail;
1798
0e50e96b
MK
1799 /** Context related to this request */
1800 struct i915_hw_context *ctx;
1801
7d736f4f
MK
1802 /** Batch buffer related to this request if any */
1803 struct drm_i915_gem_object *batch_obj;
1804
673a394b
EA
1805 /** Time at which this request was emitted, in jiffies. */
1806 unsigned long emitted_jiffies;
1807
b962442e 1808 /** global list entry for this request */
673a394b 1809 struct list_head list;
b962442e 1810
f787a5f5 1811 struct drm_i915_file_private *file_priv;
b962442e
EA
1812 /** file_priv list entry for this request */
1813 struct list_head client_list;
673a394b
EA
1814};
1815
1816struct drm_i915_file_private {
b29c19b6 1817 struct drm_i915_private *dev_priv;
ab0e7ff9 1818 struct drm_file *file;
b29c19b6 1819
673a394b 1820 struct {
99057c81 1821 spinlock_t lock;
b962442e 1822 struct list_head request_list;
b29c19b6 1823 struct delayed_work idle_work;
673a394b 1824 } mm;
40521054 1825 struct idr context_idr;
e59ec13d 1826
0eea67eb 1827 struct i915_hw_context *private_default_ctx;
b29c19b6 1828 atomic_t rps_wait_boost;
673a394b
EA
1829};
1830
351e3db2
BV
1831/*
1832 * A command that requires special handling by the command parser.
1833 */
1834struct drm_i915_cmd_descriptor {
1835 /*
1836 * Flags describing how the command parser processes the command.
1837 *
1838 * CMD_DESC_FIXED: The command has a fixed length if this is set,
1839 * a length mask if not set
1840 * CMD_DESC_SKIP: The command is allowed but does not follow the
1841 * standard length encoding for the opcode range in
1842 * which it falls
1843 * CMD_DESC_REJECT: The command is never allowed
1844 * CMD_DESC_REGISTER: The command should be checked against the
1845 * register whitelist for the appropriate ring
1846 * CMD_DESC_MASTER: The command is allowed if the submitting process
1847 * is the DRM master
1848 */
1849 u32 flags;
1850#define CMD_DESC_FIXED (1<<0)
1851#define CMD_DESC_SKIP (1<<1)
1852#define CMD_DESC_REJECT (1<<2)
1853#define CMD_DESC_REGISTER (1<<3)
1854#define CMD_DESC_BITMASK (1<<4)
1855#define CMD_DESC_MASTER (1<<5)
1856
1857 /*
1858 * The command's unique identification bits and the bitmask to get them.
1859 * This isn't strictly the opcode field as defined in the spec and may
1860 * also include type, subtype, and/or subop fields.
1861 */
1862 struct {
1863 u32 value;
1864 u32 mask;
1865 } cmd;
1866
1867 /*
1868 * The command's length. The command is either fixed length (i.e. does
1869 * not include a length field) or has a length field mask. The flag
1870 * CMD_DESC_FIXED indicates a fixed length. Otherwise, the command has
1871 * a length mask. All command entries in a command table must include
1872 * length information.
1873 */
1874 union {
1875 u32 fixed;
1876 u32 mask;
1877 } length;
1878
1879 /*
1880 * Describes where to find a register address in the command to check
1881 * against the ring's register whitelist. Only valid if flags has the
1882 * CMD_DESC_REGISTER bit set.
1883 */
1884 struct {
1885 u32 offset;
1886 u32 mask;
1887 } reg;
1888
1889#define MAX_CMD_DESC_BITMASKS 3
1890 /*
1891 * Describes command checks where a particular dword is masked and
1892 * compared against an expected value. If the command does not match
1893 * the expected value, the parser rejects it. Only valid if flags has
1894 * the CMD_DESC_BITMASK bit set. Only entries where mask is non-zero
1895 * are valid.
1896 */
1897 struct {
1898 u32 offset;
1899 u32 mask;
1900 u32 expected;
1901 } bits[MAX_CMD_DESC_BITMASKS];
1902};
1903
1904/*
1905 * A table of commands requiring special handling by the command parser.
1906 *
1907 * Each ring has an array of tables. Each table consists of an array of command
1908 * descriptors, which must be sorted with command opcodes in ascending order.
1909 */
1910struct drm_i915_cmd_table {
1911 const struct drm_i915_cmd_descriptor *table;
1912 int count;
1913};
1914
5c969aa7 1915#define INTEL_INFO(dev) (&to_i915(dev)->info)
cae5852d 1916
ffbab09b
VS
1917#define IS_I830(dev) ((dev)->pdev->device == 0x3577)
1918#define IS_845G(dev) ((dev)->pdev->device == 0x2562)
cae5852d 1919#define IS_I85X(dev) (INTEL_INFO(dev)->is_i85x)
ffbab09b 1920#define IS_I865G(dev) ((dev)->pdev->device == 0x2572)
cae5852d 1921#define IS_I915G(dev) (INTEL_INFO(dev)->is_i915g)
ffbab09b
VS
1922#define IS_I915GM(dev) ((dev)->pdev->device == 0x2592)
1923#define IS_I945G(dev) ((dev)->pdev->device == 0x2772)
cae5852d
ZN
1924#define IS_I945GM(dev) (INTEL_INFO(dev)->is_i945gm)
1925#define IS_BROADWATER(dev) (INTEL_INFO(dev)->is_broadwater)
1926#define IS_CRESTLINE(dev) (INTEL_INFO(dev)->is_crestline)
ffbab09b 1927#define IS_GM45(dev) ((dev)->pdev->device == 0x2A42)
cae5852d 1928#define IS_G4X(dev) (INTEL_INFO(dev)->is_g4x)
ffbab09b
VS
1929#define IS_PINEVIEW_G(dev) ((dev)->pdev->device == 0xa001)
1930#define IS_PINEVIEW_M(dev) ((dev)->pdev->device == 0xa011)
cae5852d
ZN
1931#define IS_PINEVIEW(dev) (INTEL_INFO(dev)->is_pineview)
1932#define IS_G33(dev) (INTEL_INFO(dev)->is_g33)
ffbab09b 1933#define IS_IRONLAKE_M(dev) ((dev)->pdev->device == 0x0046)
4b65177b 1934#define IS_IVYBRIDGE(dev) (INTEL_INFO(dev)->is_ivybridge)
ffbab09b
VS
1935#define IS_IVB_GT1(dev) ((dev)->pdev->device == 0x0156 || \
1936 (dev)->pdev->device == 0x0152 || \
1937 (dev)->pdev->device == 0x015a)
1938#define IS_SNB_GT1(dev) ((dev)->pdev->device == 0x0102 || \
1939 (dev)->pdev->device == 0x0106 || \
1940 (dev)->pdev->device == 0x010A)
70a3eb7a 1941#define IS_VALLEYVIEW(dev) (INTEL_INFO(dev)->is_valleyview)
4cae9ae0 1942#define IS_HASWELL(dev) (INTEL_INFO(dev)->is_haswell)
4e8058a2 1943#define IS_BROADWELL(dev) (INTEL_INFO(dev)->gen == 8)
cae5852d 1944#define IS_MOBILE(dev) (INTEL_INFO(dev)->is_mobile)
ed1c9e2c 1945#define IS_HSW_EARLY_SDV(dev) (IS_HASWELL(dev) && \
ffbab09b 1946 ((dev)->pdev->device & 0xFF00) == 0x0C00)
5dd8c4c3
BW
1947#define IS_BDW_ULT(dev) (IS_BROADWELL(dev) && \
1948 (((dev)->pdev->device & 0xf) == 0x2 || \
1949 ((dev)->pdev->device & 0xf) == 0x6 || \
1950 ((dev)->pdev->device & 0xf) == 0xe))
1951#define IS_HSW_ULT(dev) (IS_HASWELL(dev) && \
ffbab09b 1952 ((dev)->pdev->device & 0xFF00) == 0x0A00)
5dd8c4c3 1953#define IS_ULT(dev) (IS_HSW_ULT(dev) || IS_BDW_ULT(dev))
9435373e 1954#define IS_HSW_GT3(dev) (IS_HASWELL(dev) && \
ffbab09b 1955 ((dev)->pdev->device & 0x00F0) == 0x0020)
b833d685 1956#define IS_PRELIMINARY_HW(intel_info) ((intel_info)->is_preliminary)
cae5852d 1957
85436696
JB
1958/*
1959 * The genX designation typically refers to the render engine, so render
1960 * capability related checks should use IS_GEN, while display and other checks
1961 * have their own (e.g. HAS_PCH_SPLIT for ILK+ display, IS_foo for particular
1962 * chips, etc.).
1963 */
cae5852d
ZN
1964#define IS_GEN2(dev) (INTEL_INFO(dev)->gen == 2)
1965#define IS_GEN3(dev) (INTEL_INFO(dev)->gen == 3)
1966#define IS_GEN4(dev) (INTEL_INFO(dev)->gen == 4)
1967#define IS_GEN5(dev) (INTEL_INFO(dev)->gen == 5)
1968#define IS_GEN6(dev) (INTEL_INFO(dev)->gen == 6)
85436696 1969#define IS_GEN7(dev) (INTEL_INFO(dev)->gen == 7)
d2980845 1970#define IS_GEN8(dev) (INTEL_INFO(dev)->gen == 8)
cae5852d 1971
73ae478c
BW
1972#define RENDER_RING (1<<RCS)
1973#define BSD_RING (1<<VCS)
1974#define BLT_RING (1<<BCS)
1975#define VEBOX_RING (1<<VECS)
1976#define HAS_BSD(dev) (INTEL_INFO(dev)->ring_mask & BSD_RING)
1977#define HAS_BLT(dev) (INTEL_INFO(dev)->ring_mask & BLT_RING)
1978#define HAS_VEBOX(dev) (INTEL_INFO(dev)->ring_mask & VEBOX_RING)
3d29b842 1979#define HAS_LLC(dev) (INTEL_INFO(dev)->has_llc)
651d794f 1980#define HAS_WT(dev) (IS_HASWELL(dev) && to_i915(dev)->ellc_size)
cae5852d
ZN
1981#define I915_NEED_GFX_HWS(dev) (INTEL_INFO(dev)->need_gfx_hws)
1982
254f965c 1983#define HAS_HW_CONTEXTS(dev) (INTEL_INFO(dev)->gen >= 6)
246cbfb5 1984#define HAS_ALIASING_PPGTT(dev) (INTEL_INFO(dev)->gen >= 6 && !IS_VALLEYVIEW(dev))
c5dc5cec
BW
1985#define HAS_PPGTT(dev) (INTEL_INFO(dev)->gen >= 7 && !IS_VALLEYVIEW(dev) \
1986 && !IS_BROADWELL(dev))
1987#define USES_PPGTT(dev) intel_enable_ppgtt(dev, false)
7e0d96bc 1988#define USES_FULL_PPGTT(dev) intel_enable_ppgtt(dev, true)
1d2a314c 1989
05394f39 1990#define HAS_OVERLAY(dev) (INTEL_INFO(dev)->has_overlay)
cae5852d
ZN
1991#define OVERLAY_NEEDS_PHYSICAL(dev) (INTEL_INFO(dev)->overlay_needs_physical)
1992
b45305fc
DV
1993/* Early gen2 have a totally busted CS tlb and require pinned batches. */
1994#define HAS_BROKEN_CS_TLB(dev) (IS_I830(dev) || IS_845G(dev))
4e6b788c
DV
1995/*
1996 * dp aux and gmbus irq on gen4 seems to be able to generate legacy interrupts
1997 * even when in MSI mode. This results in spurious interrupt warnings if the
1998 * legacy irq no. is shared with another device. The kernel then disables that
1999 * interrupt source and so prevents the other device from working properly.
2000 */
2001#define HAS_AUX_IRQ(dev) (INTEL_INFO(dev)->gen >= 5)
2002#define HAS_GMBUS_IRQ(dev) (INTEL_INFO(dev)->gen >= 5)
b45305fc 2003
cae5852d
ZN
2004/* With the 945 and later, Y tiling got adjusted so that it was 32 128-byte
2005 * rows, which changed the alignment requirements and fence programming.
2006 */
2007#define HAS_128_BYTE_Y_TILING(dev) (!IS_GEN2(dev) && !(IS_I915G(dev) || \
2008 IS_I915GM(dev)))
2009#define SUPPORTS_DIGITAL_OUTPUTS(dev) (!IS_GEN2(dev) && !IS_PINEVIEW(dev))
2010#define SUPPORTS_INTEGRATED_HDMI(dev) (IS_G4X(dev) || IS_GEN5(dev))
2011#define SUPPORTS_INTEGRATED_DP(dev) (IS_G4X(dev) || IS_GEN5(dev))
cae5852d
ZN
2012#define SUPPORTS_TV(dev) (INTEL_INFO(dev)->supports_tv)
2013#define I915_HAS_HOTPLUG(dev) (INTEL_INFO(dev)->has_hotplug)
cae5852d
ZN
2014
2015#define HAS_FW_BLC(dev) (INTEL_INFO(dev)->gen > 2)
2016#define HAS_PIPE_CXSR(dev) (INTEL_INFO(dev)->has_pipe_cxsr)
3a77c4c4 2017#define HAS_FBC(dev) (INTEL_INFO(dev)->has_fbc)
cae5852d 2018
2a114cc1 2019#define HAS_IPS(dev) (IS_ULT(dev) || IS_BROADWELL(dev))
f5adf94e 2020
dd93be58 2021#define HAS_DDI(dev) (INTEL_INFO(dev)->has_ddi)
30568c45 2022#define HAS_FPGA_DBG_UNCLAIMED(dev) (INTEL_INFO(dev)->has_fpga_dbg)
ed8546ac 2023#define HAS_PSR(dev) (IS_HASWELL(dev) || IS_BROADWELL(dev))
7c6c2652 2024#define HAS_PC8(dev) (IS_HASWELL(dev)) /* XXX HSW:ULX */
df4547d8 2025#define HAS_RUNTIME_PM(dev) (IS_HASWELL(dev))
affa9354 2026
17a303ec
PZ
2027#define INTEL_PCH_DEVICE_ID_MASK 0xff00
2028#define INTEL_PCH_IBX_DEVICE_ID_TYPE 0x3b00
2029#define INTEL_PCH_CPT_DEVICE_ID_TYPE 0x1c00
2030#define INTEL_PCH_PPT_DEVICE_ID_TYPE 0x1e00
2031#define INTEL_PCH_LPT_DEVICE_ID_TYPE 0x8c00
2032#define INTEL_PCH_LPT_LP_DEVICE_ID_TYPE 0x9c00
2033
2c1792a1 2034#define INTEL_PCH_TYPE(dev) (to_i915(dev)->pch_type)
eb877ebf 2035#define HAS_PCH_LPT(dev) (INTEL_PCH_TYPE(dev) == PCH_LPT)
cae5852d
ZN
2036#define HAS_PCH_CPT(dev) (INTEL_PCH_TYPE(dev) == PCH_CPT)
2037#define HAS_PCH_IBX(dev) (INTEL_PCH_TYPE(dev) == PCH_IBX)
40c7ead9 2038#define HAS_PCH_NOP(dev) (INTEL_PCH_TYPE(dev) == PCH_NOP)
45e6e3a1 2039#define HAS_PCH_SPLIT(dev) (INTEL_PCH_TYPE(dev) != PCH_NONE)
cae5852d 2040
040d2baa
BW
2041/* DPF == dynamic parity feature */
2042#define HAS_L3_DPF(dev) (IS_IVYBRIDGE(dev) || IS_HASWELL(dev))
2043#define NUM_L3_SLICES(dev) (IS_HSW_GT3(dev) ? 2 : HAS_L3_DPF(dev))
e1ef7cc2 2044
c8735b0c
BW
2045#define GT_FREQUENCY_MULTIPLIER 50
2046
05394f39
CW
2047#include "i915_trace.h"
2048
baa70943 2049extern const struct drm_ioctl_desc i915_ioctls[];
b3a83639
DA
2050extern int i915_max_ioctl;
2051
6a9ee8af
DA
2052extern int i915_suspend(struct drm_device *dev, pm_message_t state);
2053extern int i915_resume(struct drm_device *dev);
7c1c2871
DA
2054extern int i915_master_create(struct drm_device *dev, struct drm_master *master);
2055extern void i915_master_destroy(struct drm_device *dev, struct drm_master *master);
2056
d330a953
JN
2057/* i915_params.c */
2058struct i915_params {
2059 int modeset;
2060 int panel_ignore_lid;
2061 unsigned int powersave;
2062 int semaphores;
2063 unsigned int lvds_downclock;
2064 int lvds_channel_mode;
2065 int panel_use_ssc;
2066 int vbt_sdvo_panel_type;
2067 int enable_rc6;
2068 int enable_fbc;
d330a953
JN
2069 int enable_ppgtt;
2070 int enable_psr;
2071 unsigned int preliminary_hw_support;
2072 int disable_power_well;
2073 int enable_ips;
e5aa6541 2074 int invert_brightness;
351e3db2 2075 int enable_cmd_parser;
e5aa6541
DL
2076 /* leave bools at the end to not create holes */
2077 bool enable_hangcheck;
2078 bool fastboot;
d330a953
JN
2079 bool prefault_disable;
2080 bool reset;
a0bae57f 2081 bool disable_display;
d330a953
JN
2082};
2083extern struct i915_params i915 __read_mostly;
2084
1da177e4 2085 /* i915_dma.c */
d05c617e 2086void i915_update_dri1_breadcrumb(struct drm_device *dev);
84b1fd10 2087extern void i915_kernel_lost_context(struct drm_device * dev);
22eae947 2088extern int i915_driver_load(struct drm_device *, unsigned long flags);
ba8bbcf6 2089extern int i915_driver_unload(struct drm_device *);
673a394b 2090extern int i915_driver_open(struct drm_device *dev, struct drm_file *file_priv);
84b1fd10 2091extern void i915_driver_lastclose(struct drm_device * dev);
6c340eac
EA
2092extern void i915_driver_preclose(struct drm_device *dev,
2093 struct drm_file *file_priv);
673a394b
EA
2094extern void i915_driver_postclose(struct drm_device *dev,
2095 struct drm_file *file_priv);
84b1fd10 2096extern int i915_driver_device_is_agp(struct drm_device * dev);
c43b5634 2097#ifdef CONFIG_COMPAT
0d6aa60b
DA
2098extern long i915_compat_ioctl(struct file *filp, unsigned int cmd,
2099 unsigned long arg);
c43b5634 2100#endif
673a394b 2101extern int i915_emit_box(struct drm_device *dev,
c4e7a414
CW
2102 struct drm_clip_rect *box,
2103 int DR1, int DR4);
8e96d9c4 2104extern int intel_gpu_reset(struct drm_device *dev);
d4b8bb2a 2105extern int i915_reset(struct drm_device *dev);
7648fa99
JB
2106extern unsigned long i915_chipset_val(struct drm_i915_private *dev_priv);
2107extern unsigned long i915_mch_val(struct drm_i915_private *dev_priv);
2108extern unsigned long i915_gfx_val(struct drm_i915_private *dev_priv);
2109extern void i915_update_gfx_val(struct drm_i915_private *dev_priv);
2110
073f34d9 2111extern void intel_console_resume(struct work_struct *work);
af6061af 2112
1da177e4 2113/* i915_irq.c */
10cd45b6 2114void i915_queue_hangcheck(struct drm_device *dev);
58174462
MK
2115__printf(3, 4)
2116void i915_handle_error(struct drm_device *dev, bool wedged,
2117 const char *fmt, ...);
1da177e4 2118
76c3552f
D
2119void gen6_set_pm_mask(struct drm_i915_private *dev_priv, u32 pm_iir,
2120 int new_delay);
f71d4af4 2121extern void intel_irq_init(struct drm_device *dev);
20afbda2 2122extern void intel_hpd_init(struct drm_device *dev);
907b28c5
CW
2123
2124extern void intel_uncore_sanitize(struct drm_device *dev);
2125extern void intel_uncore_early_sanitize(struct drm_device *dev);
2126extern void intel_uncore_init(struct drm_device *dev);
907b28c5 2127extern void intel_uncore_check_errors(struct drm_device *dev);
aec347ab 2128extern void intel_uncore_fini(struct drm_device *dev);
b1f14ad0 2129
7c463586 2130void
50227e1c 2131i915_enable_pipestat(struct drm_i915_private *dev_priv, enum pipe pipe,
755e9019 2132 u32 status_mask);
7c463586
KP
2133
2134void
50227e1c 2135i915_disable_pipestat(struct drm_i915_private *dev_priv, enum pipe pipe,
755e9019 2136 u32 status_mask);
7c463586 2137
f8b79e58
ID
2138void valleyview_enable_display_irqs(struct drm_i915_private *dev_priv);
2139void valleyview_disable_display_irqs(struct drm_i915_private *dev_priv);
2140
673a394b
EA
2141/* i915_gem.c */
2142int i915_gem_init_ioctl(struct drm_device *dev, void *data,
2143 struct drm_file *file_priv);
2144int i915_gem_create_ioctl(struct drm_device *dev, void *data,
2145 struct drm_file *file_priv);
2146int i915_gem_pread_ioctl(struct drm_device *dev, void *data,
2147 struct drm_file *file_priv);
2148int i915_gem_pwrite_ioctl(struct drm_device *dev, void *data,
2149 struct drm_file *file_priv);
2150int i915_gem_mmap_ioctl(struct drm_device *dev, void *data,
2151 struct drm_file *file_priv);
de151cf6
JB
2152int i915_gem_mmap_gtt_ioctl(struct drm_device *dev, void *data,
2153 struct drm_file *file_priv);
673a394b
EA
2154int i915_gem_set_domain_ioctl(struct drm_device *dev, void *data,
2155 struct drm_file *file_priv);
2156int i915_gem_sw_finish_ioctl(struct drm_device *dev, void *data,
2157 struct drm_file *file_priv);
2158int i915_gem_execbuffer(struct drm_device *dev, void *data,
2159 struct drm_file *file_priv);
76446cac
JB
2160int i915_gem_execbuffer2(struct drm_device *dev, void *data,
2161 struct drm_file *file_priv);
673a394b
EA
2162int i915_gem_pin_ioctl(struct drm_device *dev, void *data,
2163 struct drm_file *file_priv);
2164int i915_gem_unpin_ioctl(struct drm_device *dev, void *data,
2165 struct drm_file *file_priv);
2166int i915_gem_busy_ioctl(struct drm_device *dev, void *data,
2167 struct drm_file *file_priv);
199adf40
BW
2168int i915_gem_get_caching_ioctl(struct drm_device *dev, void *data,
2169 struct drm_file *file);
2170int i915_gem_set_caching_ioctl(struct drm_device *dev, void *data,
2171 struct drm_file *file);
673a394b
EA
2172int i915_gem_throttle_ioctl(struct drm_device *dev, void *data,
2173 struct drm_file *file_priv);
3ef94daa
CW
2174int i915_gem_madvise_ioctl(struct drm_device *dev, void *data,
2175 struct drm_file *file_priv);
673a394b
EA
2176int i915_gem_entervt_ioctl(struct drm_device *dev, void *data,
2177 struct drm_file *file_priv);
2178int i915_gem_leavevt_ioctl(struct drm_device *dev, void *data,
2179 struct drm_file *file_priv);
2180int i915_gem_set_tiling(struct drm_device *dev, void *data,
2181 struct drm_file *file_priv);
2182int i915_gem_get_tiling(struct drm_device *dev, void *data,
2183 struct drm_file *file_priv);
5a125c3c
EA
2184int i915_gem_get_aperture_ioctl(struct drm_device *dev, void *data,
2185 struct drm_file *file_priv);
23ba4fd0
BW
2186int i915_gem_wait_ioctl(struct drm_device *dev, void *data,
2187 struct drm_file *file_priv);
673a394b 2188void i915_gem_load(struct drm_device *dev);
42dcedd4
CW
2189void *i915_gem_object_alloc(struct drm_device *dev);
2190void i915_gem_object_free(struct drm_i915_gem_object *obj);
37e680a1
CW
2191void i915_gem_object_init(struct drm_i915_gem_object *obj,
2192 const struct drm_i915_gem_object_ops *ops);
05394f39
CW
2193struct drm_i915_gem_object *i915_gem_alloc_object(struct drm_device *dev,
2194 size_t size);
7e0d96bc
BW
2195void i915_init_vm(struct drm_i915_private *dev_priv,
2196 struct i915_address_space *vm);
673a394b 2197void i915_gem_free_object(struct drm_gem_object *obj);
2f633156 2198void i915_gem_vma_destroy(struct i915_vma *vma);
42dcedd4 2199
1ec9e26d
DV
2200#define PIN_MAPPABLE 0x1
2201#define PIN_NONBLOCK 0x2
bf3d149b 2202#define PIN_GLOBAL 0x4
2021746e 2203int __must_check i915_gem_object_pin(struct drm_i915_gem_object *obj,
c37e2204 2204 struct i915_address_space *vm,
2021746e 2205 uint32_t alignment,
1ec9e26d 2206 unsigned flags);
07fe0b12 2207int __must_check i915_vma_unbind(struct i915_vma *vma);
dd624afd 2208int i915_gem_object_put_pages(struct drm_i915_gem_object *obj);
48018a57 2209void i915_gem_release_all_mmaps(struct drm_i915_private *dev_priv);
05394f39 2210void i915_gem_release_mmap(struct drm_i915_gem_object *obj);
673a394b 2211void i915_gem_lastclose(struct drm_device *dev);
f787a5f5 2212
4c914c0c
BV
2213int i915_gem_obj_prepare_shmem_read(struct drm_i915_gem_object *obj,
2214 int *needs_clflush);
2215
37e680a1 2216int __must_check i915_gem_object_get_pages(struct drm_i915_gem_object *obj);
9da3da66
CW
2217static inline struct page *i915_gem_object_get_page(struct drm_i915_gem_object *obj, int n)
2218{
67d5a50c
ID
2219 struct sg_page_iter sg_iter;
2220
2221 for_each_sg_page(obj->pages->sgl, &sg_iter, obj->pages->nents, n)
2db76d7c 2222 return sg_page_iter_page(&sg_iter);
67d5a50c
ID
2223
2224 return NULL;
9da3da66 2225}
a5570178
CW
2226static inline void i915_gem_object_pin_pages(struct drm_i915_gem_object *obj)
2227{
2228 BUG_ON(obj->pages == NULL);
2229 obj->pages_pin_count++;
2230}
2231static inline void i915_gem_object_unpin_pages(struct drm_i915_gem_object *obj)
2232{
2233 BUG_ON(obj->pages_pin_count == 0);
2234 obj->pages_pin_count--;
2235}
2236
54cf91dc 2237int __must_check i915_mutex_lock_interruptible(struct drm_device *dev);
2911a35b
BW
2238int i915_gem_object_sync(struct drm_i915_gem_object *obj,
2239 struct intel_ring_buffer *to);
e2d05a8b
BW
2240void i915_vma_move_to_active(struct i915_vma *vma,
2241 struct intel_ring_buffer *ring);
ff72145b
DA
2242int i915_gem_dumb_create(struct drm_file *file_priv,
2243 struct drm_device *dev,
2244 struct drm_mode_create_dumb *args);
2245int i915_gem_mmap_gtt(struct drm_file *file_priv, struct drm_device *dev,
2246 uint32_t handle, uint64_t *offset);
f787a5f5
CW
2247/**
2248 * Returns true if seq1 is later than seq2.
2249 */
2250static inline bool
2251i915_seqno_passed(uint32_t seq1, uint32_t seq2)
2252{
2253 return (int32_t)(seq1 - seq2) >= 0;
2254}
2255
fca26bb4
MK
2256int __must_check i915_gem_get_seqno(struct drm_device *dev, u32 *seqno);
2257int __must_check i915_gem_set_seqno(struct drm_device *dev, u32 seqno);
06d98131 2258int __must_check i915_gem_object_get_fence(struct drm_i915_gem_object *obj);
d9e86c0e 2259int __must_check i915_gem_object_put_fence(struct drm_i915_gem_object *obj);
2021746e 2260
9a5a53b3 2261static inline bool
1690e1eb
CW
2262i915_gem_object_pin_fence(struct drm_i915_gem_object *obj)
2263{
2264 if (obj->fence_reg != I915_FENCE_REG_NONE) {
2265 struct drm_i915_private *dev_priv = obj->base.dev->dev_private;
2266 dev_priv->fence_regs[obj->fence_reg].pin_count++;
9a5a53b3
CW
2267 return true;
2268 } else
2269 return false;
1690e1eb
CW
2270}
2271
2272static inline void
2273i915_gem_object_unpin_fence(struct drm_i915_gem_object *obj)
2274{
2275 if (obj->fence_reg != I915_FENCE_REG_NONE) {
2276 struct drm_i915_private *dev_priv = obj->base.dev->dev_private;
b8c3af76 2277 WARN_ON(dev_priv->fence_regs[obj->fence_reg].pin_count <= 0);
1690e1eb
CW
2278 dev_priv->fence_regs[obj->fence_reg].pin_count--;
2279 }
2280}
2281
8d9fc7fd
CW
2282struct drm_i915_gem_request *
2283i915_gem_find_active_request(struct intel_ring_buffer *ring);
2284
b29c19b6 2285bool i915_gem_retire_requests(struct drm_device *dev);
33196ded 2286int __must_check i915_gem_check_wedge(struct i915_gpu_error *error,
d6b2c790 2287 bool interruptible);
1f83fee0
DV
2288static inline bool i915_reset_in_progress(struct i915_gpu_error *error)
2289{
2290 return unlikely(atomic_read(&error->reset_counter)
2ac0f450 2291 & (I915_RESET_IN_PROGRESS_FLAG | I915_WEDGED));
1f83fee0
DV
2292}
2293
2294static inline bool i915_terminally_wedged(struct i915_gpu_error *error)
2295{
2ac0f450
MK
2296 return atomic_read(&error->reset_counter) & I915_WEDGED;
2297}
2298
2299static inline u32 i915_reset_count(struct i915_gpu_error *error)
2300{
2301 return ((atomic_read(&error->reset_counter) & ~I915_WEDGED) + 1) / 2;
1f83fee0 2302}
a71d8d94 2303
069efc1d 2304void i915_gem_reset(struct drm_device *dev);
000433b6 2305bool i915_gem_clflush_object(struct drm_i915_gem_object *obj, bool force);
a8198eea 2306int __must_check i915_gem_object_finish_gpu(struct drm_i915_gem_object *obj);
1070a42b 2307int __must_check i915_gem_init(struct drm_device *dev);
f691e2f4 2308int __must_check i915_gem_init_hw(struct drm_device *dev);
c3787e2e 2309int i915_gem_l3_remap(struct intel_ring_buffer *ring, int slice);
f691e2f4 2310void i915_gem_init_swizzling(struct drm_device *dev);
79e53945 2311void i915_gem_cleanup_ringbuffer(struct drm_device *dev);
b2da9fe5 2312int __must_check i915_gpu_idle(struct drm_device *dev);
45c5f202 2313int __must_check i915_gem_suspend(struct drm_device *dev);
0025c077
MK
2314int __i915_add_request(struct intel_ring_buffer *ring,
2315 struct drm_file *file,
7d736f4f 2316 struct drm_i915_gem_object *batch_obj,
0025c077
MK
2317 u32 *seqno);
2318#define i915_add_request(ring, seqno) \
854c94a7 2319 __i915_add_request(ring, NULL, NULL, seqno)
199b2bc2
BW
2320int __must_check i915_wait_seqno(struct intel_ring_buffer *ring,
2321 uint32_t seqno);
de151cf6 2322int i915_gem_fault(struct vm_area_struct *vma, struct vm_fault *vmf);
2021746e
CW
2323int __must_check
2324i915_gem_object_set_to_gtt_domain(struct drm_i915_gem_object *obj,
2325 bool write);
2326int __must_check
dabdfe02
CW
2327i915_gem_object_set_to_cpu_domain(struct drm_i915_gem_object *obj, bool write);
2328int __must_check
2da3b9b9
CW
2329i915_gem_object_pin_to_display_plane(struct drm_i915_gem_object *obj,
2330 u32 alignment,
2021746e 2331 struct intel_ring_buffer *pipelined);
cc98b413 2332void i915_gem_object_unpin_from_display_plane(struct drm_i915_gem_object *obj);
71acb5eb 2333int i915_gem_attach_phys_object(struct drm_device *dev,
05394f39 2334 struct drm_i915_gem_object *obj,
6eeefaf3
CW
2335 int id,
2336 int align);
71acb5eb 2337void i915_gem_detach_phys_object(struct drm_device *dev,
05394f39 2338 struct drm_i915_gem_object *obj);
71acb5eb 2339void i915_gem_free_all_phys_object(struct drm_device *dev);
b29c19b6 2340int i915_gem_open(struct drm_device *dev, struct drm_file *file);
05394f39 2341void i915_gem_release(struct drm_device *dev, struct drm_file *file);
673a394b 2342
0fa87796
ID
2343uint32_t
2344i915_gem_get_gtt_size(struct drm_device *dev, uint32_t size, int tiling_mode);
467cffba 2345uint32_t
d865110c
ID
2346i915_gem_get_gtt_alignment(struct drm_device *dev, uint32_t size,
2347 int tiling_mode, bool fenced);
467cffba 2348
e4ffd173
CW
2349int i915_gem_object_set_cache_level(struct drm_i915_gem_object *obj,
2350 enum i915_cache_level cache_level);
2351
1286ff73
DV
2352struct drm_gem_object *i915_gem_prime_import(struct drm_device *dev,
2353 struct dma_buf *dma_buf);
2354
2355struct dma_buf *i915_gem_prime_export(struct drm_device *dev,
2356 struct drm_gem_object *gem_obj, int flags);
2357
19b2dbde
CW
2358void i915_gem_restore_fences(struct drm_device *dev);
2359
a70a3148
BW
2360unsigned long i915_gem_obj_offset(struct drm_i915_gem_object *o,
2361 struct i915_address_space *vm);
2362bool i915_gem_obj_bound_any(struct drm_i915_gem_object *o);
2363bool i915_gem_obj_bound(struct drm_i915_gem_object *o,
2364 struct i915_address_space *vm);
2365unsigned long i915_gem_obj_size(struct drm_i915_gem_object *o,
2366 struct i915_address_space *vm);
2367struct i915_vma *i915_gem_obj_to_vma(struct drm_i915_gem_object *obj,
2368 struct i915_address_space *vm);
accfef2e
BW
2369struct i915_vma *
2370i915_gem_obj_lookup_or_create_vma(struct drm_i915_gem_object *obj,
2371 struct i915_address_space *vm);
5c2abbea
BW
2372
2373struct i915_vma *i915_gem_obj_to_ggtt(struct drm_i915_gem_object *obj);
d7f46fc4
BW
2374static inline bool i915_gem_obj_is_pinned(struct drm_i915_gem_object *obj) {
2375 struct i915_vma *vma;
2376 list_for_each_entry(vma, &obj->vma_list, vma_link)
2377 if (vma->pin_count > 0)
2378 return true;
2379 return false;
2380}
5c2abbea 2381
a70a3148
BW
2382/* Some GGTT VM helpers */
2383#define obj_to_ggtt(obj) \
2384 (&((struct drm_i915_private *)(obj)->base.dev->dev_private)->gtt.base)
2385static inline bool i915_is_ggtt(struct i915_address_space *vm)
2386{
2387 struct i915_address_space *ggtt =
2388 &((struct drm_i915_private *)(vm)->dev->dev_private)->gtt.base;
2389 return vm == ggtt;
2390}
2391
2392static inline bool i915_gem_obj_ggtt_bound(struct drm_i915_gem_object *obj)
2393{
2394 return i915_gem_obj_bound(obj, obj_to_ggtt(obj));
2395}
2396
2397static inline unsigned long
2398i915_gem_obj_ggtt_offset(struct drm_i915_gem_object *obj)
2399{
2400 return i915_gem_obj_offset(obj, obj_to_ggtt(obj));
2401}
2402
2403static inline unsigned long
2404i915_gem_obj_ggtt_size(struct drm_i915_gem_object *obj)
2405{
2406 return i915_gem_obj_size(obj, obj_to_ggtt(obj));
2407}
c37e2204
BW
2408
2409static inline int __must_check
2410i915_gem_obj_ggtt_pin(struct drm_i915_gem_object *obj,
2411 uint32_t alignment,
1ec9e26d 2412 unsigned flags)
c37e2204 2413{
bf3d149b 2414 return i915_gem_object_pin(obj, obj_to_ggtt(obj), alignment, flags | PIN_GLOBAL);
c37e2204 2415}
a70a3148 2416
b287110e
DV
2417static inline int
2418i915_gem_object_ggtt_unbind(struct drm_i915_gem_object *obj)
2419{
2420 return i915_vma_unbind(i915_gem_obj_to_ggtt(obj));
2421}
2422
2423void i915_gem_object_ggtt_unpin(struct drm_i915_gem_object *obj);
2424
254f965c 2425/* i915_gem_context.c */
0eea67eb 2426#define ctx_to_ppgtt(ctx) container_of((ctx)->vm, struct i915_hw_ppgtt, base)
8245be31 2427int __must_check i915_gem_context_init(struct drm_device *dev);
254f965c 2428void i915_gem_context_fini(struct drm_device *dev);
acce9ffa 2429void i915_gem_context_reset(struct drm_device *dev);
e422b888 2430int i915_gem_context_open(struct drm_device *dev, struct drm_file *file);
2fa48d8d 2431int i915_gem_context_enable(struct drm_i915_private *dev_priv);
254f965c 2432void i915_gem_context_close(struct drm_device *dev, struct drm_file *file);
e0556841 2433int i915_switch_context(struct intel_ring_buffer *ring,
41bde553
BW
2434 struct drm_file *file, struct i915_hw_context *to);
2435struct i915_hw_context *
2436i915_gem_context_get(struct drm_i915_file_private *file_priv, u32 id);
dce3271b
MK
2437void i915_gem_context_free(struct kref *ctx_ref);
2438static inline void i915_gem_context_reference(struct i915_hw_context *ctx)
2439{
c482972a
BW
2440 if (ctx->obj && HAS_HW_CONTEXTS(ctx->obj->base.dev))
2441 kref_get(&ctx->ref);
dce3271b
MK
2442}
2443
2444static inline void i915_gem_context_unreference(struct i915_hw_context *ctx)
2445{
c482972a
BW
2446 if (ctx->obj && HAS_HW_CONTEXTS(ctx->obj->base.dev))
2447 kref_put(&ctx->ref, i915_gem_context_free);
dce3271b
MK
2448}
2449
3fac8978
MK
2450static inline bool i915_gem_context_is_default(const struct i915_hw_context *c)
2451{
2452 return c->id == DEFAULT_CONTEXT_ID;
2453}
2454
84624813
BW
2455int i915_gem_context_create_ioctl(struct drm_device *dev, void *data,
2456 struct drm_file *file);
2457int i915_gem_context_destroy_ioctl(struct drm_device *dev, void *data,
2458 struct drm_file *file);
1286ff73 2459
679845ed
BW
2460/* i915_gem_evict.c */
2461int __must_check i915_gem_evict_something(struct drm_device *dev,
2462 struct i915_address_space *vm,
2463 int min_size,
2464 unsigned alignment,
2465 unsigned cache_level,
1ec9e26d 2466 unsigned flags);
679845ed
BW
2467int i915_gem_evict_vm(struct i915_address_space *vm, bool do_idle);
2468int i915_gem_evict_everything(struct drm_device *dev);
1d2a314c 2469
76aaf220 2470/* i915_gem_gtt.c */
828c7908
BW
2471void i915_check_and_clear_faults(struct drm_device *dev);
2472void i915_gem_suspend_gtt_mappings(struct drm_device *dev);
76aaf220 2473void i915_gem_restore_gtt_mappings(struct drm_device *dev);
74163907 2474int __must_check i915_gem_gtt_prepare_object(struct drm_i915_gem_object *obj);
74163907 2475void i915_gem_gtt_finish_object(struct drm_i915_gem_object *obj);
d7e5008f
BW
2476void i915_gem_init_global_gtt(struct drm_device *dev);
2477void i915_gem_setup_global_gtt(struct drm_device *dev, unsigned long start,
2478 unsigned long mappable_end, unsigned long end);
e76e9aeb 2479int i915_gem_gtt_init(struct drm_device *dev);
d09105c6 2480static inline void i915_gem_chipset_flush(struct drm_device *dev)
e76e9aeb
BW
2481{
2482 if (INTEL_INFO(dev)->gen < 6)
2483 intel_gtt_chipset_flush();
2484}
246cbfb5 2485int i915_gem_init_ppgtt(struct drm_device *dev, struct i915_hw_ppgtt *ppgtt);
93a25a9e 2486bool intel_enable_ppgtt(struct drm_device *dev, bool full);
246cbfb5 2487
9797fbfb
CW
2488/* i915_gem_stolen.c */
2489int i915_gem_init_stolen(struct drm_device *dev);
11be49eb
CW
2490int i915_gem_stolen_setup_compression(struct drm_device *dev, int size);
2491void i915_gem_stolen_cleanup_compression(struct drm_device *dev);
9797fbfb 2492void i915_gem_cleanup_stolen(struct drm_device *dev);
0104fdbb
CW
2493struct drm_i915_gem_object *
2494i915_gem_object_create_stolen(struct drm_device *dev, u32 size);
866d12b4
CW
2495struct drm_i915_gem_object *
2496i915_gem_object_create_stolen_for_preallocated(struct drm_device *dev,
2497 u32 stolen_offset,
2498 u32 gtt_offset,
2499 u32 size);
0104fdbb 2500void i915_gem_object_release_stolen(struct drm_i915_gem_object *obj);
9797fbfb 2501
673a394b 2502/* i915_gem_tiling.c */
2c1792a1 2503static inline bool i915_gem_object_needs_bit17_swizzle(struct drm_i915_gem_object *obj)
e9b73c67 2504{
50227e1c 2505 struct drm_i915_private *dev_priv = obj->base.dev->dev_private;
e9b73c67
CW
2506
2507 return dev_priv->mm.bit_6_swizzle_x == I915_BIT_6_SWIZZLE_9_10_17 &&
2508 obj->tiling_mode != I915_TILING_NONE;
2509}
2510
673a394b 2511void i915_gem_detect_bit_6_swizzle(struct drm_device *dev);
05394f39
CW
2512void i915_gem_object_do_bit_17_swizzle(struct drm_i915_gem_object *obj);
2513void i915_gem_object_save_bit_17_swizzle(struct drm_i915_gem_object *obj);
673a394b
EA
2514
2515/* i915_gem_debug.c */
23bc5982
CW
2516#if WATCH_LISTS
2517int i915_verify_lists(struct drm_device *dev);
673a394b 2518#else
23bc5982 2519#define i915_verify_lists(dev) 0
673a394b 2520#endif
1da177e4 2521
2017263e 2522/* i915_debugfs.c */
27c202ad
BG
2523int i915_debugfs_init(struct drm_minor *minor);
2524void i915_debugfs_cleanup(struct drm_minor *minor);
f8c168fa 2525#ifdef CONFIG_DEBUG_FS
07144428
DL
2526void intel_display_crc_init(struct drm_device *dev);
2527#else
f8c168fa 2528static inline void intel_display_crc_init(struct drm_device *dev) {}
07144428 2529#endif
84734a04
MK
2530
2531/* i915_gpu_error.c */
edc3d884
MK
2532__printf(2, 3)
2533void i915_error_printf(struct drm_i915_error_state_buf *e, const char *f, ...);
fc16b48b
MK
2534int i915_error_state_to_str(struct drm_i915_error_state_buf *estr,
2535 const struct i915_error_state_file_priv *error);
4dc955f7
MK
2536int i915_error_state_buf_init(struct drm_i915_error_state_buf *eb,
2537 size_t count, loff_t pos);
2538static inline void i915_error_state_buf_release(
2539 struct drm_i915_error_state_buf *eb)
2540{
2541 kfree(eb->buf);
2542}
58174462
MK
2543void i915_capture_error_state(struct drm_device *dev, bool wedge,
2544 const char *error_msg);
84734a04
MK
2545void i915_error_state_get(struct drm_device *dev,
2546 struct i915_error_state_file_priv *error_priv);
2547void i915_error_state_put(struct i915_error_state_file_priv *error_priv);
2548void i915_destroy_error_state(struct drm_device *dev);
2549
2550void i915_get_extra_instdone(struct drm_device *dev, uint32_t *instdone);
2551const char *i915_cache_level_str(int type);
2017263e 2552
351e3db2
BV
2553/* i915_cmd_parser.c */
2554void i915_cmd_parser_init_ring(struct intel_ring_buffer *ring);
2555bool i915_needs_cmd_parser(struct intel_ring_buffer *ring);
2556int i915_parse_cmds(struct intel_ring_buffer *ring,
2557 struct drm_i915_gem_object *batch_obj,
2558 u32 batch_start_offset,
2559 bool is_master);
2560
317c35d1
JB
2561/* i915_suspend.c */
2562extern int i915_save_state(struct drm_device *dev);
2563extern int i915_restore_state(struct drm_device *dev);
0a3e67a4 2564
d8157a36
DV
2565/* i915_ums.c */
2566void i915_save_display_reg(struct drm_device *dev);
2567void i915_restore_display_reg(struct drm_device *dev);
317c35d1 2568
0136db58
BW
2569/* i915_sysfs.c */
2570void i915_setup_sysfs(struct drm_device *dev_priv);
2571void i915_teardown_sysfs(struct drm_device *dev_priv);
2572
f899fc64
CW
2573/* intel_i2c.c */
2574extern int intel_setup_gmbus(struct drm_device *dev);
2575extern void intel_teardown_gmbus(struct drm_device *dev);
8f375e10 2576static inline bool intel_gmbus_is_port_valid(unsigned port)
3bd7d909 2577{
2ed06c93 2578 return (port >= GMBUS_PORT_SSC && port <= GMBUS_PORT_DPD);
3bd7d909
DK
2579}
2580
2581extern struct i2c_adapter *intel_gmbus_get_adapter(
2582 struct drm_i915_private *dev_priv, unsigned port);
e957d772
CW
2583extern void intel_gmbus_set_speed(struct i2c_adapter *adapter, int speed);
2584extern void intel_gmbus_force_bit(struct i2c_adapter *adapter, bool force_bit);
8f375e10 2585static inline bool intel_gmbus_is_forced_bit(struct i2c_adapter *adapter)
b8232e90
CW
2586{
2587 return container_of(adapter, struct intel_gmbus, adapter)->force_bit;
2588}
f899fc64
CW
2589extern void intel_i2c_reset(struct drm_device *dev);
2590
3b617967 2591/* intel_opregion.c */
9c4b0a68 2592struct intel_encoder;
44834a67 2593#ifdef CONFIG_ACPI
27d50c82 2594extern int intel_opregion_setup(struct drm_device *dev);
44834a67
CW
2595extern void intel_opregion_init(struct drm_device *dev);
2596extern void intel_opregion_fini(struct drm_device *dev);
3b617967 2597extern void intel_opregion_asle_intr(struct drm_device *dev);
9c4b0a68
JN
2598extern int intel_opregion_notify_encoder(struct intel_encoder *intel_encoder,
2599 bool enable);
ecbc5cf3
JN
2600extern int intel_opregion_notify_adapter(struct drm_device *dev,
2601 pci_power_t state);
65e082c9 2602#else
27d50c82 2603static inline int intel_opregion_setup(struct drm_device *dev) { return 0; }
44834a67
CW
2604static inline void intel_opregion_init(struct drm_device *dev) { return; }
2605static inline void intel_opregion_fini(struct drm_device *dev) { return; }
3b617967 2606static inline void intel_opregion_asle_intr(struct drm_device *dev) { return; }
9c4b0a68
JN
2607static inline int
2608intel_opregion_notify_encoder(struct intel_encoder *intel_encoder, bool enable)
2609{
2610 return 0;
2611}
ecbc5cf3
JN
2612static inline int
2613intel_opregion_notify_adapter(struct drm_device *dev, pci_power_t state)
2614{
2615 return 0;
2616}
65e082c9 2617#endif
8ee1c3db 2618
723bfd70
JB
2619/* intel_acpi.c */
2620#ifdef CONFIG_ACPI
2621extern void intel_register_dsm_handler(void);
2622extern void intel_unregister_dsm_handler(void);
2623#else
2624static inline void intel_register_dsm_handler(void) { return; }
2625static inline void intel_unregister_dsm_handler(void) { return; }
2626#endif /* CONFIG_ACPI */
2627
79e53945 2628/* modesetting */
f817586c 2629extern void intel_modeset_init_hw(struct drm_device *dev);
7d708ee4 2630extern void intel_modeset_suspend_hw(struct drm_device *dev);
79e53945 2631extern void intel_modeset_init(struct drm_device *dev);
2c7111db 2632extern void intel_modeset_gem_init(struct drm_device *dev);
79e53945 2633extern void intel_modeset_cleanup(struct drm_device *dev);
4932e2c3 2634extern void intel_connector_unregister(struct intel_connector *);
28d52043 2635extern int intel_modeset_vga_set_state(struct drm_device *dev, bool state);
45e2b5f6
DV
2636extern void intel_modeset_setup_hw_state(struct drm_device *dev,
2637 bool force_restore);
44cec740 2638extern void i915_redisable_vga(struct drm_device *dev);
04098753 2639extern void i915_redisable_vga_power_on(struct drm_device *dev);
ee5382ae 2640extern bool intel_fbc_enabled(struct drm_device *dev);
43a9539f 2641extern void intel_disable_fbc(struct drm_device *dev);
7648fa99 2642extern bool ironlake_set_drps(struct drm_device *dev, u8 val);
dde86e2d 2643extern void intel_init_pch_refclk(struct drm_device *dev);
3b8d8d91 2644extern void gen6_set_rps(struct drm_device *dev, u8 val);
0a073b84
JB
2645extern void valleyview_set_rps(struct drm_device *dev, u8 val);
2646extern int valleyview_rps_max_freq(struct drm_i915_private *dev_priv);
2647extern int valleyview_rps_min_freq(struct drm_i915_private *dev_priv);
0206e353
AJ
2648extern void intel_detect_pch(struct drm_device *dev);
2649extern int intel_trans_dp_port_sel(struct drm_crtc *crtc);
0136db58 2650extern int intel_enable_rc6(const struct drm_device *dev);
3bad0781 2651
2911a35b 2652extern bool i915_semaphore_is_enabled(struct drm_device *dev);
c0c7babc
BW
2653int i915_reg_read_ioctl(struct drm_device *dev, void *data,
2654 struct drm_file *file);
b6359918
MK
2655int i915_get_reset_stats_ioctl(struct drm_device *dev, void *data,
2656 struct drm_file *file);
575155a9 2657
6ef3d427
CW
2658/* overlay */
2659extern struct intel_overlay_error_state *intel_overlay_capture_error_state(struct drm_device *dev);
edc3d884
MK
2660extern void intel_overlay_print_error_state(struct drm_i915_error_state_buf *e,
2661 struct intel_overlay_error_state *error);
c4a1d9e4
CW
2662
2663extern struct intel_display_error_state *intel_display_capture_error_state(struct drm_device *dev);
edc3d884 2664extern void intel_display_print_error_state(struct drm_i915_error_state_buf *e,
c4a1d9e4
CW
2665 struct drm_device *dev,
2666 struct intel_display_error_state *error);
6ef3d427 2667
b7287d80
BW
2668/* On SNB platform, before reading ring registers forcewake bit
2669 * must be set to prevent GT core from power down and stale values being
2670 * returned.
2671 */
c8d9a590
D
2672void gen6_gt_force_wake_get(struct drm_i915_private *dev_priv, int fw_engine);
2673void gen6_gt_force_wake_put(struct drm_i915_private *dev_priv, int fw_engine);
e998c40f 2674void assert_force_wake_inactive(struct drm_i915_private *dev_priv);
b7287d80 2675
42c0526c
BW
2676int sandybridge_pcode_read(struct drm_i915_private *dev_priv, u8 mbox, u32 *val);
2677int sandybridge_pcode_write(struct drm_i915_private *dev_priv, u8 mbox, u32 val);
59de0813
JN
2678
2679/* intel_sideband.c */
64936258
JN
2680u32 vlv_punit_read(struct drm_i915_private *dev_priv, u8 addr);
2681void vlv_punit_write(struct drm_i915_private *dev_priv, u8 addr, u32 val);
2682u32 vlv_nc_read(struct drm_i915_private *dev_priv, u8 addr);
e9f882a3
JN
2683u32 vlv_gpio_nc_read(struct drm_i915_private *dev_priv, u32 reg);
2684void vlv_gpio_nc_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
2685u32 vlv_cck_read(struct drm_i915_private *dev_priv, u32 reg);
2686void vlv_cck_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
2687u32 vlv_ccu_read(struct drm_i915_private *dev_priv, u32 reg);
2688void vlv_ccu_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
f3419158
JB
2689u32 vlv_bunit_read(struct drm_i915_private *dev_priv, u32 reg);
2690void vlv_bunit_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
e9f882a3
JN
2691u32 vlv_gps_core_read(struct drm_i915_private *dev_priv, u32 reg);
2692void vlv_gps_core_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
5e69f97f
CML
2693u32 vlv_dpio_read(struct drm_i915_private *dev_priv, enum pipe pipe, int reg);
2694void vlv_dpio_write(struct drm_i915_private *dev_priv, enum pipe pipe, int reg, u32 val);
59de0813
JN
2695u32 intel_sbi_read(struct drm_i915_private *dev_priv, u16 reg,
2696 enum intel_sbi_destination destination);
2697void intel_sbi_write(struct drm_i915_private *dev_priv, u16 reg, u32 value,
2698 enum intel_sbi_destination destination);
e9fe51c6
SK
2699u32 vlv_flisdsi_read(struct drm_i915_private *dev_priv, u32 reg);
2700void vlv_flisdsi_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
0a073b84 2701
2ec3815f
VS
2702int vlv_gpu_freq(struct drm_i915_private *dev_priv, int val);
2703int vlv_freq_opcode(struct drm_i915_private *dev_priv, int val);
42c0526c 2704
940aece4
D
2705void vlv_force_wake_get(struct drm_i915_private *dev_priv, int fw_engine);
2706void vlv_force_wake_put(struct drm_i915_private *dev_priv, int fw_engine);
2707
2708#define FORCEWAKE_VLV_RENDER_RANGE_OFFSET(reg) \
2709 (((reg) >= 0x2000 && (reg) < 0x4000) ||\
2710 ((reg) >= 0x5000 && (reg) < 0x8000) ||\
2711 ((reg) >= 0xB000 && (reg) < 0x12000) ||\
2712 ((reg) >= 0x2E000 && (reg) < 0x30000))
2713
2714#define FORCEWAKE_VLV_MEDIA_RANGE_OFFSET(reg)\
2715 (((reg) >= 0x12000 && (reg) < 0x14000) ||\
2716 ((reg) >= 0x22000 && (reg) < 0x24000) ||\
2717 ((reg) >= 0x30000 && (reg) < 0x40000))
2718
c8d9a590
D
2719#define FORCEWAKE_RENDER (1 << 0)
2720#define FORCEWAKE_MEDIA (1 << 1)
2721#define FORCEWAKE_ALL (FORCEWAKE_RENDER | FORCEWAKE_MEDIA)
2722
2723
0b274481
BW
2724#define I915_READ8(reg) dev_priv->uncore.funcs.mmio_readb(dev_priv, (reg), true)
2725#define I915_WRITE8(reg, val) dev_priv->uncore.funcs.mmio_writeb(dev_priv, (reg), (val), true)
2726
2727#define I915_READ16(reg) dev_priv->uncore.funcs.mmio_readw(dev_priv, (reg), true)
2728#define I915_WRITE16(reg, val) dev_priv->uncore.funcs.mmio_writew(dev_priv, (reg), (val), true)
2729#define I915_READ16_NOTRACE(reg) dev_priv->uncore.funcs.mmio_readw(dev_priv, (reg), false)
2730#define I915_WRITE16_NOTRACE(reg, val) dev_priv->uncore.funcs.mmio_writew(dev_priv, (reg), (val), false)
2731
2732#define I915_READ(reg) dev_priv->uncore.funcs.mmio_readl(dev_priv, (reg), true)
2733#define I915_WRITE(reg, val) dev_priv->uncore.funcs.mmio_writel(dev_priv, (reg), (val), true)
2734#define I915_READ_NOTRACE(reg) dev_priv->uncore.funcs.mmio_readl(dev_priv, (reg), false)
2735#define I915_WRITE_NOTRACE(reg, val) dev_priv->uncore.funcs.mmio_writel(dev_priv, (reg), (val), false)
2736
698b3135
CW
2737/* Be very careful with read/write 64-bit values. On 32-bit machines, they
2738 * will be implemented using 2 32-bit writes in an arbitrary order with
2739 * an arbitrary delay between them. This can cause the hardware to
2740 * act upon the intermediate value, possibly leading to corruption and
2741 * machine death. You have been warned.
2742 */
0b274481
BW
2743#define I915_WRITE64(reg, val) dev_priv->uncore.funcs.mmio_writeq(dev_priv, (reg), (val), true)
2744#define I915_READ64(reg) dev_priv->uncore.funcs.mmio_readq(dev_priv, (reg), true)
cae5852d 2745
50877445
CW
2746#define I915_READ64_2x32(lower_reg, upper_reg) ({ \
2747 u32 upper = I915_READ(upper_reg); \
2748 u32 lower = I915_READ(lower_reg); \
2749 u32 tmp = I915_READ(upper_reg); \
2750 if (upper != tmp) { \
2751 upper = tmp; \
2752 lower = I915_READ(lower_reg); \
2753 WARN_ON(I915_READ(upper_reg) != upper); \
2754 } \
2755 (u64)upper << 32 | lower; })
2756
cae5852d
ZN
2757#define POSTING_READ(reg) (void)I915_READ_NOTRACE(reg)
2758#define POSTING_READ16(reg) (void)I915_READ16_NOTRACE(reg)
2759
55bc60db
VS
2760/* "Broadcast RGB" property */
2761#define INTEL_BROADCAST_RGB_AUTO 0
2762#define INTEL_BROADCAST_RGB_FULL 1
2763#define INTEL_BROADCAST_RGB_LIMITED 2
ba4f01a3 2764
766aa1c4
VS
2765static inline uint32_t i915_vgacntrl_reg(struct drm_device *dev)
2766{
2767 if (HAS_PCH_SPLIT(dev))
2768 return CPU_VGACNTRL;
2769 else if (IS_VALLEYVIEW(dev))
2770 return VLV_VGACNTRL;
2771 else
2772 return VGACNTRL;
2773}
2774
2bb4629a
VS
2775static inline void __user *to_user_ptr(u64 address)
2776{
2777 return (void __user *)(uintptr_t)address;
2778}
2779
df97729f
ID
2780static inline unsigned long msecs_to_jiffies_timeout(const unsigned int m)
2781{
2782 unsigned long j = msecs_to_jiffies(m);
2783
2784 return min_t(unsigned long, MAX_JIFFY_OFFSET, j + 1);
2785}
2786
2787static inline unsigned long
2788timespec_to_jiffies_timeout(const struct timespec *value)
2789{
2790 unsigned long j = timespec_to_jiffies(value);
2791
2792 return min_t(unsigned long, MAX_JIFFY_OFFSET, j + 1);
2793}
2794
dce56b3c
PZ
2795/*
2796 * If you need to wait X milliseconds between events A and B, but event B
2797 * doesn't happen exactly after event A, you record the timestamp (jiffies) of
2798 * when event A happened, then just before event B you call this function and
2799 * pass the timestamp as the first argument, and X as the second argument.
2800 */
2801static inline void
2802wait_remaining_ms_from_jiffies(unsigned long timestamp_jiffies, int to_wait_ms)
2803{
ec5e0cfb 2804 unsigned long target_jiffies, tmp_jiffies, remaining_jiffies;
dce56b3c
PZ
2805
2806 /*
2807 * Don't re-read the value of "jiffies" every time since it may change
2808 * behind our back and break the math.
2809 */
2810 tmp_jiffies = jiffies;
2811 target_jiffies = timestamp_jiffies +
2812 msecs_to_jiffies_timeout(to_wait_ms);
2813
2814 if (time_after(target_jiffies, tmp_jiffies)) {
ec5e0cfb
ID
2815 remaining_jiffies = target_jiffies - tmp_jiffies;
2816 while (remaining_jiffies)
2817 remaining_jiffies =
2818 schedule_timeout_uninterruptible(remaining_jiffies);
dce56b3c
PZ
2819 }
2820}
2821
1da177e4 2822#endif
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