drm: Simplify return value of drm_get_last_vbltimestamp
[linux-2.6-block.git] / drivers / gpu / drm / i915 / i915_irq.c
CommitLineData
0d6aa60b 1/* i915_irq.c -- IRQ support for the I915 -*- linux-c -*-
1da177e4 2 */
0d6aa60b 3/*
1da177e4
LT
4 * Copyright 2003 Tungsten Graphics, Inc., Cedar Park, Texas.
5 * All Rights Reserved.
bc54fd1a
DA
6 *
7 * Permission is hereby granted, free of charge, to any person obtaining a
8 * copy of this software and associated documentation files (the
9 * "Software"), to deal in the Software without restriction, including
10 * without limitation the rights to use, copy, modify, merge, publish,
11 * distribute, sub license, and/or sell copies of the Software, and to
12 * permit persons to whom the Software is furnished to do so, subject to
13 * the following conditions:
14 *
15 * The above copyright notice and this permission notice (including the
16 * next paragraph) shall be included in all copies or substantial portions
17 * of the Software.
18 *
19 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
20 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
21 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
22 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
23 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
24 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
25 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
26 *
0d6aa60b 27 */
1da177e4 28
a70491cc
JP
29#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
30
63eeaf38 31#include <linux/sysrq.h>
5a0e3ad6 32#include <linux/slab.h>
b2c88f5b 33#include <linux/circ_buf.h>
760285e7
DH
34#include <drm/drmP.h>
35#include <drm/i915_drm.h>
1da177e4 36#include "i915_drv.h"
1c5d22f7 37#include "i915_trace.h"
79e53945 38#include "intel_drv.h"
1da177e4 39
e5868a31
EE
40static const u32 hpd_ibx[] = {
41 [HPD_CRT] = SDE_CRT_HOTPLUG,
42 [HPD_SDVO_B] = SDE_SDVOB_HOTPLUG,
43 [HPD_PORT_B] = SDE_PORTB_HOTPLUG,
44 [HPD_PORT_C] = SDE_PORTC_HOTPLUG,
45 [HPD_PORT_D] = SDE_PORTD_HOTPLUG
46};
47
48static const u32 hpd_cpt[] = {
49 [HPD_CRT] = SDE_CRT_HOTPLUG_CPT,
73c352a2 50 [HPD_SDVO_B] = SDE_SDVOB_HOTPLUG_CPT,
e5868a31
EE
51 [HPD_PORT_B] = SDE_PORTB_HOTPLUG_CPT,
52 [HPD_PORT_C] = SDE_PORTC_HOTPLUG_CPT,
53 [HPD_PORT_D] = SDE_PORTD_HOTPLUG_CPT
54};
55
56static const u32 hpd_mask_i915[] = {
57 [HPD_CRT] = CRT_HOTPLUG_INT_EN,
58 [HPD_SDVO_B] = SDVOB_HOTPLUG_INT_EN,
59 [HPD_SDVO_C] = SDVOC_HOTPLUG_INT_EN,
60 [HPD_PORT_B] = PORTB_HOTPLUG_INT_EN,
61 [HPD_PORT_C] = PORTC_HOTPLUG_INT_EN,
62 [HPD_PORT_D] = PORTD_HOTPLUG_INT_EN
63};
64
704cfb87 65static const u32 hpd_status_g4x[] = {
e5868a31
EE
66 [HPD_CRT] = CRT_HOTPLUG_INT_STATUS,
67 [HPD_SDVO_B] = SDVOB_HOTPLUG_INT_STATUS_G4X,
68 [HPD_SDVO_C] = SDVOC_HOTPLUG_INT_STATUS_G4X,
69 [HPD_PORT_B] = PORTB_HOTPLUG_INT_STATUS,
70 [HPD_PORT_C] = PORTC_HOTPLUG_INT_STATUS,
71 [HPD_PORT_D] = PORTD_HOTPLUG_INT_STATUS
72};
73
e5868a31
EE
74static const u32 hpd_status_i915[] = { /* i915 and valleyview are the same */
75 [HPD_CRT] = CRT_HOTPLUG_INT_STATUS,
76 [HPD_SDVO_B] = SDVOB_HOTPLUG_INT_STATUS_I915,
77 [HPD_SDVO_C] = SDVOC_HOTPLUG_INT_STATUS_I915,
78 [HPD_PORT_B] = PORTB_HOTPLUG_INT_STATUS,
79 [HPD_PORT_C] = PORTC_HOTPLUG_INT_STATUS,
80 [HPD_PORT_D] = PORTD_HOTPLUG_INT_STATUS
81};
82
5c502442 83/* IIR can theoretically queue up two events. Be paranoid. */
f86f3fb0 84#define GEN8_IRQ_RESET_NDX(type, which) do { \
5c502442
PZ
85 I915_WRITE(GEN8_##type##_IMR(which), 0xffffffff); \
86 POSTING_READ(GEN8_##type##_IMR(which)); \
87 I915_WRITE(GEN8_##type##_IER(which), 0); \
88 I915_WRITE(GEN8_##type##_IIR(which), 0xffffffff); \
89 POSTING_READ(GEN8_##type##_IIR(which)); \
90 I915_WRITE(GEN8_##type##_IIR(which), 0xffffffff); \
91 POSTING_READ(GEN8_##type##_IIR(which)); \
92} while (0)
93
f86f3fb0 94#define GEN5_IRQ_RESET(type) do { \
a9d356a6 95 I915_WRITE(type##IMR, 0xffffffff); \
5c502442 96 POSTING_READ(type##IMR); \
a9d356a6 97 I915_WRITE(type##IER, 0); \
5c502442
PZ
98 I915_WRITE(type##IIR, 0xffffffff); \
99 POSTING_READ(type##IIR); \
100 I915_WRITE(type##IIR, 0xffffffff); \
101 POSTING_READ(type##IIR); \
a9d356a6
PZ
102} while (0)
103
337ba017
PZ
104/*
105 * We should clear IMR at preinstall/uninstall, and just check at postinstall.
106 */
107#define GEN5_ASSERT_IIR_IS_ZERO(reg) do { \
108 u32 val = I915_READ(reg); \
109 if (val) { \
110 WARN(1, "Interrupt register 0x%x is not zero: 0x%08x\n", \
111 (reg), val); \
112 I915_WRITE((reg), 0xffffffff); \
113 POSTING_READ(reg); \
114 I915_WRITE((reg), 0xffffffff); \
115 POSTING_READ(reg); \
116 } \
117} while (0)
118
35079899 119#define GEN8_IRQ_INIT_NDX(type, which, imr_val, ier_val) do { \
337ba017 120 GEN5_ASSERT_IIR_IS_ZERO(GEN8_##type##_IIR(which)); \
35079899
PZ
121 I915_WRITE(GEN8_##type##_IMR(which), (imr_val)); \
122 I915_WRITE(GEN8_##type##_IER(which), (ier_val)); \
123 POSTING_READ(GEN8_##type##_IER(which)); \
124} while (0)
125
126#define GEN5_IRQ_INIT(type, imr_val, ier_val) do { \
337ba017 127 GEN5_ASSERT_IIR_IS_ZERO(type##IIR); \
35079899
PZ
128 I915_WRITE(type##IMR, (imr_val)); \
129 I915_WRITE(type##IER, (ier_val)); \
130 POSTING_READ(type##IER); \
131} while (0)
132
036a4a7d 133/* For display hotplug interrupt */
995b6762 134static void
2d1013dd 135ironlake_enable_display_irq(struct drm_i915_private *dev_priv, u32 mask)
036a4a7d 136{
4bc9d430
DV
137 assert_spin_locked(&dev_priv->irq_lock);
138
9df7575f 139 if (WARN_ON(!intel_irqs_enabled(dev_priv)))
c67a470b 140 return;
c67a470b 141
1ec14ad3
CW
142 if ((dev_priv->irq_mask & mask) != 0) {
143 dev_priv->irq_mask &= ~mask;
144 I915_WRITE(DEIMR, dev_priv->irq_mask);
3143a2bf 145 POSTING_READ(DEIMR);
036a4a7d
ZW
146 }
147}
148
0ff9800a 149static void
2d1013dd 150ironlake_disable_display_irq(struct drm_i915_private *dev_priv, u32 mask)
036a4a7d 151{
4bc9d430
DV
152 assert_spin_locked(&dev_priv->irq_lock);
153
9df7575f 154 if (!intel_irqs_enabled(dev_priv))
c67a470b 155 return;
c67a470b 156
1ec14ad3
CW
157 if ((dev_priv->irq_mask & mask) != mask) {
158 dev_priv->irq_mask |= mask;
159 I915_WRITE(DEIMR, dev_priv->irq_mask);
3143a2bf 160 POSTING_READ(DEIMR);
036a4a7d
ZW
161 }
162}
163
43eaea13
PZ
164/**
165 * ilk_update_gt_irq - update GTIMR
166 * @dev_priv: driver private
167 * @interrupt_mask: mask of interrupt bits to update
168 * @enabled_irq_mask: mask of interrupt bits to enable
169 */
170static void ilk_update_gt_irq(struct drm_i915_private *dev_priv,
171 uint32_t interrupt_mask,
172 uint32_t enabled_irq_mask)
173{
174 assert_spin_locked(&dev_priv->irq_lock);
175
9df7575f 176 if (WARN_ON(!intel_irqs_enabled(dev_priv)))
c67a470b 177 return;
c67a470b 178
43eaea13
PZ
179 dev_priv->gt_irq_mask &= ~interrupt_mask;
180 dev_priv->gt_irq_mask |= (~enabled_irq_mask & interrupt_mask);
181 I915_WRITE(GTIMR, dev_priv->gt_irq_mask);
182 POSTING_READ(GTIMR);
183}
184
480c8033 185void gen5_enable_gt_irq(struct drm_i915_private *dev_priv, uint32_t mask)
43eaea13
PZ
186{
187 ilk_update_gt_irq(dev_priv, mask, mask);
188}
189
480c8033 190void gen5_disable_gt_irq(struct drm_i915_private *dev_priv, uint32_t mask)
43eaea13
PZ
191{
192 ilk_update_gt_irq(dev_priv, mask, 0);
193}
194
edbfdb45
PZ
195/**
196 * snb_update_pm_irq - update GEN6_PMIMR
197 * @dev_priv: driver private
198 * @interrupt_mask: mask of interrupt bits to update
199 * @enabled_irq_mask: mask of interrupt bits to enable
200 */
201static void snb_update_pm_irq(struct drm_i915_private *dev_priv,
202 uint32_t interrupt_mask,
203 uint32_t enabled_irq_mask)
204{
605cd25b 205 uint32_t new_val;
edbfdb45
PZ
206
207 assert_spin_locked(&dev_priv->irq_lock);
208
9df7575f 209 if (WARN_ON(!intel_irqs_enabled(dev_priv)))
c67a470b 210 return;
c67a470b 211
605cd25b 212 new_val = dev_priv->pm_irq_mask;
f52ecbcf
PZ
213 new_val &= ~interrupt_mask;
214 new_val |= (~enabled_irq_mask & interrupt_mask);
215
605cd25b
PZ
216 if (new_val != dev_priv->pm_irq_mask) {
217 dev_priv->pm_irq_mask = new_val;
218 I915_WRITE(GEN6_PMIMR, dev_priv->pm_irq_mask);
f52ecbcf
PZ
219 POSTING_READ(GEN6_PMIMR);
220 }
edbfdb45
PZ
221}
222
480c8033 223void gen6_enable_pm_irq(struct drm_i915_private *dev_priv, uint32_t mask)
edbfdb45
PZ
224{
225 snb_update_pm_irq(dev_priv, mask, mask);
226}
227
480c8033 228void gen6_disable_pm_irq(struct drm_i915_private *dev_priv, uint32_t mask)
edbfdb45
PZ
229{
230 snb_update_pm_irq(dev_priv, mask, 0);
231}
232
8664281b
PZ
233static bool ivb_can_enable_err_int(struct drm_device *dev)
234{
235 struct drm_i915_private *dev_priv = dev->dev_private;
236 struct intel_crtc *crtc;
237 enum pipe pipe;
238
4bc9d430
DV
239 assert_spin_locked(&dev_priv->irq_lock);
240
8664281b
PZ
241 for_each_pipe(pipe) {
242 crtc = to_intel_crtc(dev_priv->pipe_to_crtc_mapping[pipe]);
243
244 if (crtc->cpu_fifo_underrun_disabled)
245 return false;
246 }
247
248 return true;
249}
250
0961021a
BW
251/**
252 * bdw_update_pm_irq - update GT interrupt 2
253 * @dev_priv: driver private
254 * @interrupt_mask: mask of interrupt bits to update
255 * @enabled_irq_mask: mask of interrupt bits to enable
256 *
257 * Copied from the snb function, updated with relevant register offsets
258 */
259static void bdw_update_pm_irq(struct drm_i915_private *dev_priv,
260 uint32_t interrupt_mask,
261 uint32_t enabled_irq_mask)
262{
263 uint32_t new_val;
264
265 assert_spin_locked(&dev_priv->irq_lock);
266
9df7575f 267 if (WARN_ON(!intel_irqs_enabled(dev_priv)))
0961021a
BW
268 return;
269
270 new_val = dev_priv->pm_irq_mask;
271 new_val &= ~interrupt_mask;
272 new_val |= (~enabled_irq_mask & interrupt_mask);
273
274 if (new_val != dev_priv->pm_irq_mask) {
275 dev_priv->pm_irq_mask = new_val;
276 I915_WRITE(GEN8_GT_IMR(2), dev_priv->pm_irq_mask);
277 POSTING_READ(GEN8_GT_IMR(2));
278 }
279}
280
480c8033 281void gen8_enable_pm_irq(struct drm_i915_private *dev_priv, uint32_t mask)
0961021a
BW
282{
283 bdw_update_pm_irq(dev_priv, mask, mask);
284}
285
480c8033 286void gen8_disable_pm_irq(struct drm_i915_private *dev_priv, uint32_t mask)
0961021a
BW
287{
288 bdw_update_pm_irq(dev_priv, mask, 0);
289}
290
8664281b
PZ
291static bool cpt_can_enable_serr_int(struct drm_device *dev)
292{
293 struct drm_i915_private *dev_priv = dev->dev_private;
294 enum pipe pipe;
295 struct intel_crtc *crtc;
296
fee884ed
DV
297 assert_spin_locked(&dev_priv->irq_lock);
298
8664281b
PZ
299 for_each_pipe(pipe) {
300 crtc = to_intel_crtc(dev_priv->pipe_to_crtc_mapping[pipe]);
301
302 if (crtc->pch_fifo_underrun_disabled)
303 return false;
304 }
305
306 return true;
307}
308
56b80e1f
VS
309void i9xx_check_fifo_underruns(struct drm_device *dev)
310{
311 struct drm_i915_private *dev_priv = dev->dev_private;
312 struct intel_crtc *crtc;
313 unsigned long flags;
314
315 spin_lock_irqsave(&dev_priv->irq_lock, flags);
316
317 for_each_intel_crtc(dev, crtc) {
318 u32 reg = PIPESTAT(crtc->pipe);
319 u32 pipestat;
320
321 if (crtc->cpu_fifo_underrun_disabled)
322 continue;
323
324 pipestat = I915_READ(reg) & 0xffff0000;
325 if ((pipestat & PIPE_FIFO_UNDERRUN_STATUS) == 0)
326 continue;
327
328 I915_WRITE(reg, pipestat | PIPE_FIFO_UNDERRUN_STATUS);
329 POSTING_READ(reg);
330
331 DRM_ERROR("pipe %c underrun\n", pipe_name(crtc->pipe));
332 }
333
334 spin_unlock_irqrestore(&dev_priv->irq_lock, flags);
335}
336
e69abff0 337static void i9xx_set_fifo_underrun_reporting(struct drm_device *dev,
2ae2a50c
DV
338 enum pipe pipe,
339 bool enable, bool old)
2d9d2b0b
VS
340{
341 struct drm_i915_private *dev_priv = dev->dev_private;
342 u32 reg = PIPESTAT(pipe);
e69abff0 343 u32 pipestat = I915_READ(reg) & 0xffff0000;
2d9d2b0b
VS
344
345 assert_spin_locked(&dev_priv->irq_lock);
346
e69abff0
VS
347 if (enable) {
348 I915_WRITE(reg, pipestat | PIPE_FIFO_UNDERRUN_STATUS);
349 POSTING_READ(reg);
350 } else {
2ae2a50c 351 if (old && pipestat & PIPE_FIFO_UNDERRUN_STATUS)
e69abff0
VS
352 DRM_ERROR("pipe %c underrun\n", pipe_name(pipe));
353 }
2d9d2b0b
VS
354}
355
8664281b
PZ
356static void ironlake_set_fifo_underrun_reporting(struct drm_device *dev,
357 enum pipe pipe, bool enable)
358{
359 struct drm_i915_private *dev_priv = dev->dev_private;
360 uint32_t bit = (pipe == PIPE_A) ? DE_PIPEA_FIFO_UNDERRUN :
361 DE_PIPEB_FIFO_UNDERRUN;
362
363 if (enable)
364 ironlake_enable_display_irq(dev_priv, bit);
365 else
366 ironlake_disable_display_irq(dev_priv, bit);
367}
368
369static void ivybridge_set_fifo_underrun_reporting(struct drm_device *dev,
2ae2a50c
DV
370 enum pipe pipe,
371 bool enable, bool old)
8664281b
PZ
372{
373 struct drm_i915_private *dev_priv = dev->dev_private;
8664281b 374 if (enable) {
7336df65
DV
375 I915_WRITE(GEN7_ERR_INT, ERR_INT_FIFO_UNDERRUN(pipe));
376
8664281b
PZ
377 if (!ivb_can_enable_err_int(dev))
378 return;
379
8664281b
PZ
380 ironlake_enable_display_irq(dev_priv, DE_ERR_INT_IVB);
381 } else {
382 ironlake_disable_display_irq(dev_priv, DE_ERR_INT_IVB);
7336df65 383
2ae2a50c
DV
384 if (old &&
385 I915_READ(GEN7_ERR_INT) & ERR_INT_FIFO_UNDERRUN(pipe)) {
823c6909
VS
386 DRM_ERROR("uncleared fifo underrun on pipe %c\n",
387 pipe_name(pipe));
7336df65 388 }
8664281b
PZ
389 }
390}
391
38d83c96
DV
392static void broadwell_set_fifo_underrun_reporting(struct drm_device *dev,
393 enum pipe pipe, bool enable)
394{
395 struct drm_i915_private *dev_priv = dev->dev_private;
396
397 assert_spin_locked(&dev_priv->irq_lock);
398
399 if (enable)
400 dev_priv->de_irq_mask[pipe] &= ~GEN8_PIPE_FIFO_UNDERRUN;
401 else
402 dev_priv->de_irq_mask[pipe] |= GEN8_PIPE_FIFO_UNDERRUN;
403 I915_WRITE(GEN8_DE_PIPE_IMR(pipe), dev_priv->de_irq_mask[pipe]);
404 POSTING_READ(GEN8_DE_PIPE_IMR(pipe));
405}
406
fee884ed
DV
407/**
408 * ibx_display_interrupt_update - update SDEIMR
409 * @dev_priv: driver private
410 * @interrupt_mask: mask of interrupt bits to update
411 * @enabled_irq_mask: mask of interrupt bits to enable
412 */
413static void ibx_display_interrupt_update(struct drm_i915_private *dev_priv,
414 uint32_t interrupt_mask,
415 uint32_t enabled_irq_mask)
416{
417 uint32_t sdeimr = I915_READ(SDEIMR);
418 sdeimr &= ~interrupt_mask;
419 sdeimr |= (~enabled_irq_mask & interrupt_mask);
420
421 assert_spin_locked(&dev_priv->irq_lock);
422
9df7575f 423 if (WARN_ON(!intel_irqs_enabled(dev_priv)))
c67a470b 424 return;
c67a470b 425
fee884ed
DV
426 I915_WRITE(SDEIMR, sdeimr);
427 POSTING_READ(SDEIMR);
428}
429#define ibx_enable_display_interrupt(dev_priv, bits) \
430 ibx_display_interrupt_update((dev_priv), (bits), (bits))
431#define ibx_disable_display_interrupt(dev_priv, bits) \
432 ibx_display_interrupt_update((dev_priv), (bits), 0)
433
de28075d
DV
434static void ibx_set_fifo_underrun_reporting(struct drm_device *dev,
435 enum transcoder pch_transcoder,
8664281b
PZ
436 bool enable)
437{
8664281b 438 struct drm_i915_private *dev_priv = dev->dev_private;
de28075d
DV
439 uint32_t bit = (pch_transcoder == TRANSCODER_A) ?
440 SDE_TRANSA_FIFO_UNDER : SDE_TRANSB_FIFO_UNDER;
8664281b
PZ
441
442 if (enable)
fee884ed 443 ibx_enable_display_interrupt(dev_priv, bit);
8664281b 444 else
fee884ed 445 ibx_disable_display_interrupt(dev_priv, bit);
8664281b
PZ
446}
447
448static void cpt_set_fifo_underrun_reporting(struct drm_device *dev,
449 enum transcoder pch_transcoder,
2ae2a50c 450 bool enable, bool old)
8664281b
PZ
451{
452 struct drm_i915_private *dev_priv = dev->dev_private;
453
454 if (enable) {
1dd246fb
DV
455 I915_WRITE(SERR_INT,
456 SERR_INT_TRANS_FIFO_UNDERRUN(pch_transcoder));
457
8664281b
PZ
458 if (!cpt_can_enable_serr_int(dev))
459 return;
460
fee884ed 461 ibx_enable_display_interrupt(dev_priv, SDE_ERROR_CPT);
8664281b 462 } else {
fee884ed 463 ibx_disable_display_interrupt(dev_priv, SDE_ERROR_CPT);
1dd246fb 464
2ae2a50c
DV
465 if (old && I915_READ(SERR_INT) &
466 SERR_INT_TRANS_FIFO_UNDERRUN(pch_transcoder)) {
823c6909
VS
467 DRM_ERROR("uncleared pch fifo underrun on pch transcoder %c\n",
468 transcoder_name(pch_transcoder));
1dd246fb 469 }
8664281b 470 }
8664281b
PZ
471}
472
473/**
474 * intel_set_cpu_fifo_underrun_reporting - enable/disable FIFO underrun messages
475 * @dev: drm device
476 * @pipe: pipe
477 * @enable: true if we want to report FIFO underrun errors, false otherwise
478 *
479 * This function makes us disable or enable CPU fifo underruns for a specific
480 * pipe. Notice that on some Gens (e.g. IVB, HSW), disabling FIFO underrun
481 * reporting for one pipe may also disable all the other CPU error interruts for
482 * the other pipes, due to the fact that there's just one interrupt mask/enable
483 * bit for all the pipes.
484 *
485 * Returns the previous state of underrun reporting.
486 */
c5ab3bc0
DV
487static bool __intel_set_cpu_fifo_underrun_reporting(struct drm_device *dev,
488 enum pipe pipe, bool enable)
8664281b
PZ
489{
490 struct drm_i915_private *dev_priv = dev->dev_private;
491 struct drm_crtc *crtc = dev_priv->pipe_to_crtc_mapping[pipe];
492 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
2ae2a50c 493 bool old;
8664281b 494
77961eb9
ID
495 assert_spin_locked(&dev_priv->irq_lock);
496
2ae2a50c 497 old = !intel_crtc->cpu_fifo_underrun_disabled;
8664281b
PZ
498 intel_crtc->cpu_fifo_underrun_disabled = !enable;
499
e69abff0 500 if (INTEL_INFO(dev)->gen < 5 || IS_VALLEYVIEW(dev))
2ae2a50c 501 i9xx_set_fifo_underrun_reporting(dev, pipe, enable, old);
2d9d2b0b 502 else if (IS_GEN5(dev) || IS_GEN6(dev))
8664281b
PZ
503 ironlake_set_fifo_underrun_reporting(dev, pipe, enable);
504 else if (IS_GEN7(dev))
2ae2a50c 505 ivybridge_set_fifo_underrun_reporting(dev, pipe, enable, old);
38d83c96
DV
506 else if (IS_GEN8(dev))
507 broadwell_set_fifo_underrun_reporting(dev, pipe, enable);
8664281b 508
2ae2a50c 509 return old;
f88d42f1
ID
510}
511
512bool intel_set_cpu_fifo_underrun_reporting(struct drm_device *dev,
513 enum pipe pipe, bool enable)
514{
515 struct drm_i915_private *dev_priv = dev->dev_private;
516 unsigned long flags;
517 bool ret;
518
519 spin_lock_irqsave(&dev_priv->irq_lock, flags);
520 ret = __intel_set_cpu_fifo_underrun_reporting(dev, pipe, enable);
8664281b 521 spin_unlock_irqrestore(&dev_priv->irq_lock, flags);
f88d42f1 522
8664281b
PZ
523 return ret;
524}
525
91d181dd
ID
526static bool __cpu_fifo_underrun_reporting_enabled(struct drm_device *dev,
527 enum pipe pipe)
528{
529 struct drm_i915_private *dev_priv = dev->dev_private;
530 struct drm_crtc *crtc = dev_priv->pipe_to_crtc_mapping[pipe];
531 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
532
533 return !intel_crtc->cpu_fifo_underrun_disabled;
534}
535
8664281b
PZ
536/**
537 * intel_set_pch_fifo_underrun_reporting - enable/disable FIFO underrun messages
538 * @dev: drm device
539 * @pch_transcoder: the PCH transcoder (same as pipe on IVB and older)
540 * @enable: true if we want to report FIFO underrun errors, false otherwise
541 *
542 * This function makes us disable or enable PCH fifo underruns for a specific
543 * PCH transcoder. Notice that on some PCHs (e.g. CPT/PPT), disabling FIFO
544 * underrun reporting for one transcoder may also disable all the other PCH
545 * error interruts for the other transcoders, due to the fact that there's just
546 * one interrupt mask/enable bit for all the transcoders.
547 *
548 * Returns the previous state of underrun reporting.
549 */
550bool intel_set_pch_fifo_underrun_reporting(struct drm_device *dev,
551 enum transcoder pch_transcoder,
552 bool enable)
553{
554 struct drm_i915_private *dev_priv = dev->dev_private;
de28075d
DV
555 struct drm_crtc *crtc = dev_priv->pipe_to_crtc_mapping[pch_transcoder];
556 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
8664281b 557 unsigned long flags;
2ae2a50c 558 bool old;
8664281b 559
de28075d
DV
560 /*
561 * NOTE: Pre-LPT has a fixed cpu pipe -> pch transcoder mapping, but LPT
562 * has only one pch transcoder A that all pipes can use. To avoid racy
563 * pch transcoder -> pipe lookups from interrupt code simply store the
564 * underrun statistics in crtc A. Since we never expose this anywhere
565 * nor use it outside of the fifo underrun code here using the "wrong"
566 * crtc on LPT won't cause issues.
567 */
8664281b
PZ
568
569 spin_lock_irqsave(&dev_priv->irq_lock, flags);
570
2ae2a50c 571 old = !intel_crtc->pch_fifo_underrun_disabled;
8664281b
PZ
572 intel_crtc->pch_fifo_underrun_disabled = !enable;
573
574 if (HAS_PCH_IBX(dev))
de28075d 575 ibx_set_fifo_underrun_reporting(dev, pch_transcoder, enable);
8664281b 576 else
2ae2a50c 577 cpt_set_fifo_underrun_reporting(dev, pch_transcoder, enable, old);
8664281b 578
8664281b 579 spin_unlock_irqrestore(&dev_priv->irq_lock, flags);
2ae2a50c 580 return old;
8664281b
PZ
581}
582
583
b5ea642a 584static void
755e9019
ID
585__i915_enable_pipestat(struct drm_i915_private *dev_priv, enum pipe pipe,
586 u32 enable_mask, u32 status_mask)
7c463586 587{
46c06a30 588 u32 reg = PIPESTAT(pipe);
755e9019 589 u32 pipestat = I915_READ(reg) & PIPESTAT_INT_ENABLE_MASK;
7c463586 590
b79480ba
DV
591 assert_spin_locked(&dev_priv->irq_lock);
592
04feced9
VS
593 if (WARN_ONCE(enable_mask & ~PIPESTAT_INT_ENABLE_MASK ||
594 status_mask & ~PIPESTAT_INT_STATUS_MASK,
595 "pipe %c: enable_mask=0x%x, status_mask=0x%x\n",
596 pipe_name(pipe), enable_mask, status_mask))
755e9019
ID
597 return;
598
599 if ((pipestat & enable_mask) == enable_mask)
46c06a30
VS
600 return;
601
91d181dd
ID
602 dev_priv->pipestat_irq_mask[pipe] |= status_mask;
603
46c06a30 604 /* Enable the interrupt, clear any pending status */
755e9019 605 pipestat |= enable_mask | status_mask;
46c06a30
VS
606 I915_WRITE(reg, pipestat);
607 POSTING_READ(reg);
7c463586
KP
608}
609
b5ea642a 610static void
755e9019
ID
611__i915_disable_pipestat(struct drm_i915_private *dev_priv, enum pipe pipe,
612 u32 enable_mask, u32 status_mask)
7c463586 613{
46c06a30 614 u32 reg = PIPESTAT(pipe);
755e9019 615 u32 pipestat = I915_READ(reg) & PIPESTAT_INT_ENABLE_MASK;
7c463586 616
b79480ba
DV
617 assert_spin_locked(&dev_priv->irq_lock);
618
04feced9
VS
619 if (WARN_ONCE(enable_mask & ~PIPESTAT_INT_ENABLE_MASK ||
620 status_mask & ~PIPESTAT_INT_STATUS_MASK,
621 "pipe %c: enable_mask=0x%x, status_mask=0x%x\n",
622 pipe_name(pipe), enable_mask, status_mask))
46c06a30
VS
623 return;
624
755e9019
ID
625 if ((pipestat & enable_mask) == 0)
626 return;
627
91d181dd
ID
628 dev_priv->pipestat_irq_mask[pipe] &= ~status_mask;
629
755e9019 630 pipestat &= ~enable_mask;
46c06a30
VS
631 I915_WRITE(reg, pipestat);
632 POSTING_READ(reg);
7c463586
KP
633}
634
10c59c51
ID
635static u32 vlv_get_pipestat_enable_mask(struct drm_device *dev, u32 status_mask)
636{
637 u32 enable_mask = status_mask << 16;
638
639 /*
724a6905
VS
640 * On pipe A we don't support the PSR interrupt yet,
641 * on pipe B and C the same bit MBZ.
10c59c51
ID
642 */
643 if (WARN_ON_ONCE(status_mask & PIPE_A_PSR_STATUS_VLV))
644 return 0;
724a6905
VS
645 /*
646 * On pipe B and C we don't support the PSR interrupt yet, on pipe
647 * A the same bit is for perf counters which we don't use either.
648 */
649 if (WARN_ON_ONCE(status_mask & PIPE_B_PSR_STATUS_VLV))
650 return 0;
10c59c51
ID
651
652 enable_mask &= ~(PIPE_FIFO_UNDERRUN_STATUS |
653 SPRITE0_FLIP_DONE_INT_EN_VLV |
654 SPRITE1_FLIP_DONE_INT_EN_VLV);
655 if (status_mask & SPRITE0_FLIP_DONE_INT_STATUS_VLV)
656 enable_mask |= SPRITE0_FLIP_DONE_INT_EN_VLV;
657 if (status_mask & SPRITE1_FLIP_DONE_INT_STATUS_VLV)
658 enable_mask |= SPRITE1_FLIP_DONE_INT_EN_VLV;
659
660 return enable_mask;
661}
662
755e9019
ID
663void
664i915_enable_pipestat(struct drm_i915_private *dev_priv, enum pipe pipe,
665 u32 status_mask)
666{
667 u32 enable_mask;
668
10c59c51
ID
669 if (IS_VALLEYVIEW(dev_priv->dev))
670 enable_mask = vlv_get_pipestat_enable_mask(dev_priv->dev,
671 status_mask);
672 else
673 enable_mask = status_mask << 16;
755e9019
ID
674 __i915_enable_pipestat(dev_priv, pipe, enable_mask, status_mask);
675}
676
677void
678i915_disable_pipestat(struct drm_i915_private *dev_priv, enum pipe pipe,
679 u32 status_mask)
680{
681 u32 enable_mask;
682
10c59c51
ID
683 if (IS_VALLEYVIEW(dev_priv->dev))
684 enable_mask = vlv_get_pipestat_enable_mask(dev_priv->dev,
685 status_mask);
686 else
687 enable_mask = status_mask << 16;
755e9019
ID
688 __i915_disable_pipestat(dev_priv, pipe, enable_mask, status_mask);
689}
690
01c66889 691/**
f49e38dd 692 * i915_enable_asle_pipestat - enable ASLE pipestat for OpRegion
01c66889 693 */
f49e38dd 694static void i915_enable_asle_pipestat(struct drm_device *dev)
01c66889 695{
2d1013dd 696 struct drm_i915_private *dev_priv = dev->dev_private;
1ec14ad3
CW
697 unsigned long irqflags;
698
f49e38dd
JN
699 if (!dev_priv->opregion.asle || !IS_MOBILE(dev))
700 return;
701
1ec14ad3 702 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
01c66889 703
755e9019 704 i915_enable_pipestat(dev_priv, PIPE_B, PIPE_LEGACY_BLC_EVENT_STATUS);
f898780b 705 if (INTEL_INFO(dev)->gen >= 4)
3b6c42e8 706 i915_enable_pipestat(dev_priv, PIPE_A,
755e9019 707 PIPE_LEGACY_BLC_EVENT_STATUS);
1ec14ad3
CW
708
709 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
01c66889
ZY
710}
711
0a3e67a4
JB
712/**
713 * i915_pipe_enabled - check if a pipe is enabled
714 * @dev: DRM device
715 * @pipe: pipe to check
716 *
717 * Reading certain registers when the pipe is disabled can hang the chip.
718 * Use this routine to make sure the PLL is running and the pipe is active
719 * before reading such registers if unsure.
720 */
721static int
722i915_pipe_enabled(struct drm_device *dev, int pipe)
723{
2d1013dd 724 struct drm_i915_private *dev_priv = dev->dev_private;
702e7a56 725
a01025af
DV
726 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
727 /* Locking is horribly broken here, but whatever. */
728 struct drm_crtc *crtc = dev_priv->pipe_to_crtc_mapping[pipe];
729 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
71f8ba6b 730
a01025af
DV
731 return intel_crtc->active;
732 } else {
733 return I915_READ(PIPECONF(pipe)) & PIPECONF_ENABLE;
734 }
0a3e67a4
JB
735}
736
f75f3746
VS
737/*
738 * This timing diagram depicts the video signal in and
739 * around the vertical blanking period.
740 *
741 * Assumptions about the fictitious mode used in this example:
742 * vblank_start >= 3
743 * vsync_start = vblank_start + 1
744 * vsync_end = vblank_start + 2
745 * vtotal = vblank_start + 3
746 *
747 * start of vblank:
748 * latch double buffered registers
749 * increment frame counter (ctg+)
750 * generate start of vblank interrupt (gen4+)
751 * |
752 * | frame start:
753 * | generate frame start interrupt (aka. vblank interrupt) (gmch)
754 * | may be shifted forward 1-3 extra lines via PIPECONF
755 * | |
756 * | | start of vsync:
757 * | | generate vsync interrupt
758 * | | |
759 * ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx___ ___xxxx
760 * . \hs/ . \hs/ \hs/ \hs/ . \hs/
761 * ----va---> <-----------------vb--------------------> <--------va-------------
762 * | | <----vs-----> |
763 * -vbs-----> <---vbs+1---> <---vbs+2---> <-----0-----> <-----1-----> <-----2--- (scanline counter gen2)
764 * -vbs-2---> <---vbs-1---> <---vbs-----> <---vbs+1---> <---vbs+2---> <-----0--- (scanline counter gen3+)
765 * -vbs-2---> <---vbs-2---> <---vbs-1---> <---vbs-----> <---vbs+1---> <---vbs+2- (scanline counter hsw+ hdmi)
766 * | | |
767 * last visible pixel first visible pixel
768 * | increment frame counter (gen3/4)
769 * pixel counter = vblank_start * htotal pixel counter = 0 (gen3/4)
770 *
771 * x = horizontal active
772 * _ = horizontal blanking
773 * hs = horizontal sync
774 * va = vertical active
775 * vb = vertical blanking
776 * vs = vertical sync
777 * vbs = vblank_start (number)
778 *
779 * Summary:
780 * - most events happen at the start of horizontal sync
781 * - frame start happens at the start of horizontal blank, 1-4 lines
782 * (depending on PIPECONF settings) after the start of vblank
783 * - gen3/4 pixel and frame counter are synchronized with the start
784 * of horizontal active on the first line of vertical active
785 */
786
4cdb83ec
VS
787static u32 i8xx_get_vblank_counter(struct drm_device *dev, int pipe)
788{
789 /* Gen2 doesn't have a hardware frame counter */
790 return 0;
791}
792
42f52ef8
KP
793/* Called from drm generic code, passed a 'crtc', which
794 * we use as a pipe index
795 */
f71d4af4 796static u32 i915_get_vblank_counter(struct drm_device *dev, int pipe)
0a3e67a4 797{
2d1013dd 798 struct drm_i915_private *dev_priv = dev->dev_private;
0a3e67a4
JB
799 unsigned long high_frame;
800 unsigned long low_frame;
0b2a8e09 801 u32 high1, high2, low, pixel, vbl_start, hsync_start, htotal;
0a3e67a4
JB
802
803 if (!i915_pipe_enabled(dev, pipe)) {
44d98a61 804 DRM_DEBUG_DRIVER("trying to get vblank count for disabled "
9db4a9c7 805 "pipe %c\n", pipe_name(pipe));
0a3e67a4
JB
806 return 0;
807 }
808
391f75e2
VS
809 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
810 struct intel_crtc *intel_crtc =
811 to_intel_crtc(dev_priv->pipe_to_crtc_mapping[pipe]);
812 const struct drm_display_mode *mode =
813 &intel_crtc->config.adjusted_mode;
814
0b2a8e09
VS
815 htotal = mode->crtc_htotal;
816 hsync_start = mode->crtc_hsync_start;
817 vbl_start = mode->crtc_vblank_start;
818 if (mode->flags & DRM_MODE_FLAG_INTERLACE)
819 vbl_start = DIV_ROUND_UP(vbl_start, 2);
391f75e2 820 } else {
a2d213dd 821 enum transcoder cpu_transcoder = (enum transcoder) pipe;
391f75e2
VS
822
823 htotal = ((I915_READ(HTOTAL(cpu_transcoder)) >> 16) & 0x1fff) + 1;
0b2a8e09 824 hsync_start = (I915_READ(HSYNC(cpu_transcoder)) & 0x1fff) + 1;
391f75e2 825 vbl_start = (I915_READ(VBLANK(cpu_transcoder)) & 0x1fff) + 1;
0b2a8e09
VS
826 if ((I915_READ(PIPECONF(cpu_transcoder)) &
827 PIPECONF_INTERLACE_MASK) != PIPECONF_PROGRESSIVE)
828 vbl_start = DIV_ROUND_UP(vbl_start, 2);
391f75e2
VS
829 }
830
0b2a8e09
VS
831 /* Convert to pixel count */
832 vbl_start *= htotal;
833
834 /* Start of vblank event occurs at start of hsync */
835 vbl_start -= htotal - hsync_start;
836
9db4a9c7
JB
837 high_frame = PIPEFRAME(pipe);
838 low_frame = PIPEFRAMEPIXEL(pipe);
5eddb70b 839
0a3e67a4
JB
840 /*
841 * High & low register fields aren't synchronized, so make sure
842 * we get a low value that's stable across two reads of the high
843 * register.
844 */
845 do {
5eddb70b 846 high1 = I915_READ(high_frame) & PIPE_FRAME_HIGH_MASK;
391f75e2 847 low = I915_READ(low_frame);
5eddb70b 848 high2 = I915_READ(high_frame) & PIPE_FRAME_HIGH_MASK;
0a3e67a4
JB
849 } while (high1 != high2);
850
5eddb70b 851 high1 >>= PIPE_FRAME_HIGH_SHIFT;
391f75e2 852 pixel = low & PIPE_PIXEL_MASK;
5eddb70b 853 low >>= PIPE_FRAME_LOW_SHIFT;
391f75e2
VS
854
855 /*
856 * The frame counter increments at beginning of active.
857 * Cook up a vblank counter by also checking the pixel
858 * counter against vblank start.
859 */
edc08d0a 860 return (((high1 << 8) | low) + (pixel >= vbl_start)) & 0xffffff;
0a3e67a4
JB
861}
862
f71d4af4 863static u32 gm45_get_vblank_counter(struct drm_device *dev, int pipe)
9880b7a5 864{
2d1013dd 865 struct drm_i915_private *dev_priv = dev->dev_private;
9db4a9c7 866 int reg = PIPE_FRMCOUNT_GM45(pipe);
9880b7a5
JB
867
868 if (!i915_pipe_enabled(dev, pipe)) {
44d98a61 869 DRM_DEBUG_DRIVER("trying to get vblank count for disabled "
9db4a9c7 870 "pipe %c\n", pipe_name(pipe));
9880b7a5
JB
871 return 0;
872 }
873
874 return I915_READ(reg);
875}
876
ad3543ed
MK
877/* raw reads, only for fast reads of display block, no need for forcewake etc. */
878#define __raw_i915_read32(dev_priv__, reg__) readl((dev_priv__)->regs + (reg__))
ad3543ed 879
a225f079
VS
880static int __intel_get_crtc_scanline(struct intel_crtc *crtc)
881{
882 struct drm_device *dev = crtc->base.dev;
883 struct drm_i915_private *dev_priv = dev->dev_private;
884 const struct drm_display_mode *mode = &crtc->config.adjusted_mode;
885 enum pipe pipe = crtc->pipe;
80715b2f 886 int position, vtotal;
a225f079 887
80715b2f 888 vtotal = mode->crtc_vtotal;
a225f079
VS
889 if (mode->flags & DRM_MODE_FLAG_INTERLACE)
890 vtotal /= 2;
891
892 if (IS_GEN2(dev))
893 position = __raw_i915_read32(dev_priv, PIPEDSL(pipe)) & DSL_LINEMASK_GEN2;
894 else
895 position = __raw_i915_read32(dev_priv, PIPEDSL(pipe)) & DSL_LINEMASK_GEN3;
896
897 /*
80715b2f
VS
898 * See update_scanline_offset() for the details on the
899 * scanline_offset adjustment.
a225f079 900 */
80715b2f 901 return (position + crtc->scanline_offset) % vtotal;
a225f079
VS
902}
903
f71d4af4 904static int i915_get_crtc_scanoutpos(struct drm_device *dev, int pipe,
abca9e45
VS
905 unsigned int flags, int *vpos, int *hpos,
906 ktime_t *stime, ktime_t *etime)
0af7e4df 907{
c2baf4b7
VS
908 struct drm_i915_private *dev_priv = dev->dev_private;
909 struct drm_crtc *crtc = dev_priv->pipe_to_crtc_mapping[pipe];
910 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
911 const struct drm_display_mode *mode = &intel_crtc->config.adjusted_mode;
3aa18df8 912 int position;
78e8fc6b 913 int vbl_start, vbl_end, hsync_start, htotal, vtotal;
0af7e4df
MK
914 bool in_vbl = true;
915 int ret = 0;
ad3543ed 916 unsigned long irqflags;
0af7e4df 917
c2baf4b7 918 if (!intel_crtc->active) {
0af7e4df 919 DRM_DEBUG_DRIVER("trying to get scanoutpos for disabled "
9db4a9c7 920 "pipe %c\n", pipe_name(pipe));
0af7e4df
MK
921 return 0;
922 }
923
c2baf4b7 924 htotal = mode->crtc_htotal;
78e8fc6b 925 hsync_start = mode->crtc_hsync_start;
c2baf4b7
VS
926 vtotal = mode->crtc_vtotal;
927 vbl_start = mode->crtc_vblank_start;
928 vbl_end = mode->crtc_vblank_end;
0af7e4df 929
d31faf65
VS
930 if (mode->flags & DRM_MODE_FLAG_INTERLACE) {
931 vbl_start = DIV_ROUND_UP(vbl_start, 2);
932 vbl_end /= 2;
933 vtotal /= 2;
934 }
935
c2baf4b7
VS
936 ret |= DRM_SCANOUTPOS_VALID | DRM_SCANOUTPOS_ACCURATE;
937
ad3543ed
MK
938 /*
939 * Lock uncore.lock, as we will do multiple timing critical raw
940 * register reads, potentially with preemption disabled, so the
941 * following code must not block on uncore.lock.
942 */
943 spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
78e8fc6b 944
ad3543ed
MK
945 /* preempt_disable_rt() should go right here in PREEMPT_RT patchset. */
946
947 /* Get optional system timestamp before query. */
948 if (stime)
949 *stime = ktime_get();
950
7c06b08a 951 if (IS_GEN2(dev) || IS_G4X(dev) || INTEL_INFO(dev)->gen >= 5) {
0af7e4df
MK
952 /* No obvious pixelcount register. Only query vertical
953 * scanout position from Display scan line register.
954 */
a225f079 955 position = __intel_get_crtc_scanline(intel_crtc);
0af7e4df
MK
956 } else {
957 /* Have access to pixelcount since start of frame.
958 * We can split this into vertical and horizontal
959 * scanout position.
960 */
ad3543ed 961 position = (__raw_i915_read32(dev_priv, PIPEFRAMEPIXEL(pipe)) & PIPE_PIXEL_MASK) >> PIPE_PIXEL_SHIFT;
0af7e4df 962
3aa18df8
VS
963 /* convert to pixel counts */
964 vbl_start *= htotal;
965 vbl_end *= htotal;
966 vtotal *= htotal;
78e8fc6b 967
7e78f1cb
VS
968 /*
969 * In interlaced modes, the pixel counter counts all pixels,
970 * so one field will have htotal more pixels. In order to avoid
971 * the reported position from jumping backwards when the pixel
972 * counter is beyond the length of the shorter field, just
973 * clamp the position the length of the shorter field. This
974 * matches how the scanline counter based position works since
975 * the scanline counter doesn't count the two half lines.
976 */
977 if (position >= vtotal)
978 position = vtotal - 1;
979
78e8fc6b
VS
980 /*
981 * Start of vblank interrupt is triggered at start of hsync,
982 * just prior to the first active line of vblank. However we
983 * consider lines to start at the leading edge of horizontal
984 * active. So, should we get here before we've crossed into
985 * the horizontal active of the first line in vblank, we would
986 * not set the DRM_SCANOUTPOS_INVBL flag. In order to fix that,
987 * always add htotal-hsync_start to the current pixel position.
988 */
989 position = (position + htotal - hsync_start) % vtotal;
0af7e4df
MK
990 }
991
ad3543ed
MK
992 /* Get optional system timestamp after query. */
993 if (etime)
994 *etime = ktime_get();
995
996 /* preempt_enable_rt() should go right here in PREEMPT_RT patchset. */
997
998 spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
999
3aa18df8
VS
1000 in_vbl = position >= vbl_start && position < vbl_end;
1001
1002 /*
1003 * While in vblank, position will be negative
1004 * counting up towards 0 at vbl_end. And outside
1005 * vblank, position will be positive counting
1006 * up since vbl_end.
1007 */
1008 if (position >= vbl_start)
1009 position -= vbl_end;
1010 else
1011 position += vtotal - vbl_end;
0af7e4df 1012
7c06b08a 1013 if (IS_GEN2(dev) || IS_G4X(dev) || INTEL_INFO(dev)->gen >= 5) {
3aa18df8
VS
1014 *vpos = position;
1015 *hpos = 0;
1016 } else {
1017 *vpos = position / htotal;
1018 *hpos = position - (*vpos * htotal);
1019 }
0af7e4df 1020
0af7e4df
MK
1021 /* In vblank? */
1022 if (in_vbl)
1023 ret |= DRM_SCANOUTPOS_INVBL;
1024
1025 return ret;
1026}
1027
a225f079
VS
1028int intel_get_crtc_scanline(struct intel_crtc *crtc)
1029{
1030 struct drm_i915_private *dev_priv = crtc->base.dev->dev_private;
1031 unsigned long irqflags;
1032 int position;
1033
1034 spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
1035 position = __intel_get_crtc_scanline(crtc);
1036 spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
1037
1038 return position;
1039}
1040
f71d4af4 1041static int i915_get_vblank_timestamp(struct drm_device *dev, int pipe,
0af7e4df
MK
1042 int *max_error,
1043 struct timeval *vblank_time,
1044 unsigned flags)
1045{
4041b853 1046 struct drm_crtc *crtc;
0af7e4df 1047
7eb552ae 1048 if (pipe < 0 || pipe >= INTEL_INFO(dev)->num_pipes) {
4041b853 1049 DRM_ERROR("Invalid crtc %d\n", pipe);
0af7e4df
MK
1050 return -EINVAL;
1051 }
1052
1053 /* Get drm_crtc to timestamp: */
4041b853
CW
1054 crtc = intel_get_crtc_for_pipe(dev, pipe);
1055 if (crtc == NULL) {
1056 DRM_ERROR("Invalid crtc %d\n", pipe);
1057 return -EINVAL;
1058 }
1059
1060 if (!crtc->enabled) {
1061 DRM_DEBUG_KMS("crtc %d is disabled\n", pipe);
1062 return -EBUSY;
1063 }
0af7e4df
MK
1064
1065 /* Helper routine in DRM core does all the work: */
4041b853
CW
1066 return drm_calc_vbltimestamp_from_scanoutpos(dev, pipe, max_error,
1067 vblank_time, flags,
7da903ef
VS
1068 crtc,
1069 &to_intel_crtc(crtc)->config.adjusted_mode);
0af7e4df
MK
1070}
1071
67c347ff
JN
1072static bool intel_hpd_irq_event(struct drm_device *dev,
1073 struct drm_connector *connector)
321a1b30
EE
1074{
1075 enum drm_connector_status old_status;
1076
1077 WARN_ON(!mutex_is_locked(&dev->mode_config.mutex));
1078 old_status = connector->status;
1079
1080 connector->status = connector->funcs->detect(connector, false);
67c347ff
JN
1081 if (old_status == connector->status)
1082 return false;
1083
1084 DRM_DEBUG_KMS("[CONNECTOR:%d:%s] status updated from %s to %s\n",
321a1b30 1085 connector->base.id,
c23cc417 1086 connector->name,
67c347ff
JN
1087 drm_get_connector_status_name(old_status),
1088 drm_get_connector_status_name(connector->status));
1089
1090 return true;
321a1b30
EE
1091}
1092
13cf5504
DA
1093static void i915_digport_work_func(struct work_struct *work)
1094{
1095 struct drm_i915_private *dev_priv =
1096 container_of(work, struct drm_i915_private, dig_port_work);
1097 unsigned long irqflags;
1098 u32 long_port_mask, short_port_mask;
1099 struct intel_digital_port *intel_dig_port;
1100 int i, ret;
1101 u32 old_bits = 0;
1102
1103 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
1104 long_port_mask = dev_priv->long_hpd_port_mask;
1105 dev_priv->long_hpd_port_mask = 0;
1106 short_port_mask = dev_priv->short_hpd_port_mask;
1107 dev_priv->short_hpd_port_mask = 0;
1108 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
1109
1110 for (i = 0; i < I915_MAX_PORTS; i++) {
1111 bool valid = false;
1112 bool long_hpd = false;
1113 intel_dig_port = dev_priv->hpd_irq_port[i];
1114 if (!intel_dig_port || !intel_dig_port->hpd_pulse)
1115 continue;
1116
1117 if (long_port_mask & (1 << i)) {
1118 valid = true;
1119 long_hpd = true;
1120 } else if (short_port_mask & (1 << i))
1121 valid = true;
1122
1123 if (valid) {
1124 ret = intel_dig_port->hpd_pulse(intel_dig_port, long_hpd);
1125 if (ret == true) {
1126 /* if we get true fallback to old school hpd */
1127 old_bits |= (1 << intel_dig_port->base.hpd_pin);
1128 }
1129 }
1130 }
1131
1132 if (old_bits) {
1133 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
1134 dev_priv->hpd_event_bits |= old_bits;
1135 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
1136 schedule_work(&dev_priv->hotplug_work);
1137 }
1138}
1139
5ca58282
JB
1140/*
1141 * Handle hotplug events outside the interrupt handler proper.
1142 */
ac4c16c5
EE
1143#define I915_REENABLE_HOTPLUG_DELAY (2*60*1000)
1144
5ca58282
JB
1145static void i915_hotplug_work_func(struct work_struct *work)
1146{
2d1013dd
JN
1147 struct drm_i915_private *dev_priv =
1148 container_of(work, struct drm_i915_private, hotplug_work);
5ca58282 1149 struct drm_device *dev = dev_priv->dev;
c31c4ba3 1150 struct drm_mode_config *mode_config = &dev->mode_config;
cd569aed
EE
1151 struct intel_connector *intel_connector;
1152 struct intel_encoder *intel_encoder;
1153 struct drm_connector *connector;
1154 unsigned long irqflags;
1155 bool hpd_disabled = false;
321a1b30 1156 bool changed = false;
142e2398 1157 u32 hpd_event_bits;
4ef69c7a 1158
a65e34c7 1159 mutex_lock(&mode_config->mutex);
e67189ab
JB
1160 DRM_DEBUG_KMS("running encoder hotplug functions\n");
1161
cd569aed 1162 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
142e2398
EE
1163
1164 hpd_event_bits = dev_priv->hpd_event_bits;
1165 dev_priv->hpd_event_bits = 0;
cd569aed
EE
1166 list_for_each_entry(connector, &mode_config->connector_list, head) {
1167 intel_connector = to_intel_connector(connector);
36cd7444
DA
1168 if (!intel_connector->encoder)
1169 continue;
cd569aed
EE
1170 intel_encoder = intel_connector->encoder;
1171 if (intel_encoder->hpd_pin > HPD_NONE &&
1172 dev_priv->hpd_stats[intel_encoder->hpd_pin].hpd_mark == HPD_MARK_DISABLED &&
1173 connector->polled == DRM_CONNECTOR_POLL_HPD) {
1174 DRM_INFO("HPD interrupt storm detected on connector %s: "
1175 "switching from hotplug detection to polling\n",
c23cc417 1176 connector->name);
cd569aed
EE
1177 dev_priv->hpd_stats[intel_encoder->hpd_pin].hpd_mark = HPD_DISABLED;
1178 connector->polled = DRM_CONNECTOR_POLL_CONNECT
1179 | DRM_CONNECTOR_POLL_DISCONNECT;
1180 hpd_disabled = true;
1181 }
142e2398
EE
1182 if (hpd_event_bits & (1 << intel_encoder->hpd_pin)) {
1183 DRM_DEBUG_KMS("Connector %s (pin %i) received hotplug event.\n",
c23cc417 1184 connector->name, intel_encoder->hpd_pin);
142e2398 1185 }
cd569aed
EE
1186 }
1187 /* if there were no outputs to poll, poll was disabled,
1188 * therefore make sure it's enabled when disabling HPD on
1189 * some connectors */
ac4c16c5 1190 if (hpd_disabled) {
cd569aed 1191 drm_kms_helper_poll_enable(dev);
ac4c16c5
EE
1192 mod_timer(&dev_priv->hotplug_reenable_timer,
1193 jiffies + msecs_to_jiffies(I915_REENABLE_HOTPLUG_DELAY));
1194 }
cd569aed
EE
1195
1196 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
1197
321a1b30
EE
1198 list_for_each_entry(connector, &mode_config->connector_list, head) {
1199 intel_connector = to_intel_connector(connector);
36cd7444
DA
1200 if (!intel_connector->encoder)
1201 continue;
321a1b30
EE
1202 intel_encoder = intel_connector->encoder;
1203 if (hpd_event_bits & (1 << intel_encoder->hpd_pin)) {
1204 if (intel_encoder->hot_plug)
1205 intel_encoder->hot_plug(intel_encoder);
1206 if (intel_hpd_irq_event(dev, connector))
1207 changed = true;
1208 }
1209 }
40ee3381
KP
1210 mutex_unlock(&mode_config->mutex);
1211
321a1b30
EE
1212 if (changed)
1213 drm_kms_helper_hotplug_event(dev);
5ca58282
JB
1214}
1215
3ca1cced
VS
1216static void intel_hpd_irq_uninstall(struct drm_i915_private *dev_priv)
1217{
1218 del_timer_sync(&dev_priv->hotplug_reenable_timer);
1219}
1220
d0ecd7e2 1221static void ironlake_rps_change_irq_handler(struct drm_device *dev)
f97108d1 1222{
2d1013dd 1223 struct drm_i915_private *dev_priv = dev->dev_private;
b5b72e89 1224 u32 busy_up, busy_down, max_avg, min_avg;
9270388e 1225 u8 new_delay;
9270388e 1226
d0ecd7e2 1227 spin_lock(&mchdev_lock);
f97108d1 1228
73edd18f
DV
1229 I915_WRITE16(MEMINTRSTS, I915_READ(MEMINTRSTS));
1230
20e4d407 1231 new_delay = dev_priv->ips.cur_delay;
9270388e 1232
7648fa99 1233 I915_WRITE16(MEMINTRSTS, MEMINT_EVAL_CHG);
b5b72e89
MG
1234 busy_up = I915_READ(RCPREVBSYTUPAVG);
1235 busy_down = I915_READ(RCPREVBSYTDNAVG);
f97108d1
JB
1236 max_avg = I915_READ(RCBMAXAVG);
1237 min_avg = I915_READ(RCBMINAVG);
1238
1239 /* Handle RCS change request from hw */
b5b72e89 1240 if (busy_up > max_avg) {
20e4d407
DV
1241 if (dev_priv->ips.cur_delay != dev_priv->ips.max_delay)
1242 new_delay = dev_priv->ips.cur_delay - 1;
1243 if (new_delay < dev_priv->ips.max_delay)
1244 new_delay = dev_priv->ips.max_delay;
b5b72e89 1245 } else if (busy_down < min_avg) {
20e4d407
DV
1246 if (dev_priv->ips.cur_delay != dev_priv->ips.min_delay)
1247 new_delay = dev_priv->ips.cur_delay + 1;
1248 if (new_delay > dev_priv->ips.min_delay)
1249 new_delay = dev_priv->ips.min_delay;
f97108d1
JB
1250 }
1251
7648fa99 1252 if (ironlake_set_drps(dev, new_delay))
20e4d407 1253 dev_priv->ips.cur_delay = new_delay;
f97108d1 1254
d0ecd7e2 1255 spin_unlock(&mchdev_lock);
9270388e 1256
f97108d1
JB
1257 return;
1258}
1259
549f7365 1260static void notify_ring(struct drm_device *dev,
a4872ba6 1261 struct intel_engine_cs *ring)
549f7365 1262{
93b0a4e0 1263 if (!intel_ring_initialized(ring))
475553de
CW
1264 return;
1265
814e9b57 1266 trace_i915_gem_request_complete(ring);
9862e600 1267
84c33a64
SG
1268 if (drm_core_check_feature(dev, DRIVER_MODESET))
1269 intel_notify_mmio_flip(ring);
1270
549f7365 1271 wake_up_all(&ring->irq_queue);
10cd45b6 1272 i915_queue_hangcheck(dev);
549f7365
CW
1273}
1274
31685c25 1275static u32 vlv_c0_residency(struct drm_i915_private *dev_priv,
bf225f20 1276 struct intel_rps_ei *rps_ei)
31685c25
D
1277{
1278 u32 cz_ts, cz_freq_khz;
1279 u32 render_count, media_count;
1280 u32 elapsed_render, elapsed_media, elapsed_time;
1281 u32 residency = 0;
1282
1283 cz_ts = vlv_punit_read(dev_priv, PUNIT_REG_CZ_TIMESTAMP);
1284 cz_freq_khz = DIV_ROUND_CLOSEST(dev_priv->mem_freq * 1000, 4);
1285
1286 render_count = I915_READ(VLV_RENDER_C0_COUNT_REG);
1287 media_count = I915_READ(VLV_MEDIA_C0_COUNT_REG);
1288
bf225f20
CW
1289 if (rps_ei->cz_clock == 0) {
1290 rps_ei->cz_clock = cz_ts;
1291 rps_ei->render_c0 = render_count;
1292 rps_ei->media_c0 = media_count;
31685c25
D
1293
1294 return dev_priv->rps.cur_freq;
1295 }
1296
bf225f20
CW
1297 elapsed_time = cz_ts - rps_ei->cz_clock;
1298 rps_ei->cz_clock = cz_ts;
31685c25 1299
bf225f20
CW
1300 elapsed_render = render_count - rps_ei->render_c0;
1301 rps_ei->render_c0 = render_count;
31685c25 1302
bf225f20
CW
1303 elapsed_media = media_count - rps_ei->media_c0;
1304 rps_ei->media_c0 = media_count;
31685c25
D
1305
1306 /* Convert all the counters into common unit of milli sec */
1307 elapsed_time /= VLV_CZ_CLOCK_TO_MILLI_SEC;
1308 elapsed_render /= cz_freq_khz;
1309 elapsed_media /= cz_freq_khz;
1310
1311 /*
1312 * Calculate overall C0 residency percentage
1313 * only if elapsed time is non zero
1314 */
1315 if (elapsed_time) {
1316 residency =
1317 ((max(elapsed_render, elapsed_media) * 100)
1318 / elapsed_time);
1319 }
1320
1321 return residency;
1322}
1323
1324/**
1325 * vlv_calc_delay_from_C0_counters - Increase/Decrease freq based on GPU
1326 * busy-ness calculated from C0 counters of render & media power wells
1327 * @dev_priv: DRM device private
1328 *
1329 */
1330static u32 vlv_calc_delay_from_C0_counters(struct drm_i915_private *dev_priv)
1331{
1332 u32 residency_C0_up = 0, residency_C0_down = 0;
1333 u8 new_delay, adj;
1334
1335 dev_priv->rps.ei_interrupt_count++;
1336
1337 WARN_ON(!mutex_is_locked(&dev_priv->rps.hw_lock));
1338
1339
bf225f20
CW
1340 if (dev_priv->rps.up_ei.cz_clock == 0) {
1341 vlv_c0_residency(dev_priv, &dev_priv->rps.up_ei);
1342 vlv_c0_residency(dev_priv, &dev_priv->rps.down_ei);
31685c25
D
1343 return dev_priv->rps.cur_freq;
1344 }
1345
1346
1347 /*
1348 * To down throttle, C0 residency should be less than down threshold
1349 * for continous EI intervals. So calculate down EI counters
1350 * once in VLV_INT_COUNT_FOR_DOWN_EI
1351 */
1352 if (dev_priv->rps.ei_interrupt_count == VLV_INT_COUNT_FOR_DOWN_EI) {
1353
1354 dev_priv->rps.ei_interrupt_count = 0;
1355
1356 residency_C0_down = vlv_c0_residency(dev_priv,
bf225f20 1357 &dev_priv->rps.down_ei);
31685c25
D
1358 } else {
1359 residency_C0_up = vlv_c0_residency(dev_priv,
bf225f20 1360 &dev_priv->rps.up_ei);
31685c25
D
1361 }
1362
1363 new_delay = dev_priv->rps.cur_freq;
1364
1365 adj = dev_priv->rps.last_adj;
1366 /* C0 residency is greater than UP threshold. Increase Frequency */
1367 if (residency_C0_up >= VLV_RP_UP_EI_THRESHOLD) {
1368 if (adj > 0)
1369 adj *= 2;
1370 else
1371 adj = 1;
1372
1373 if (dev_priv->rps.cur_freq < dev_priv->rps.max_freq_softlimit)
1374 new_delay = dev_priv->rps.cur_freq + adj;
1375
1376 /*
1377 * For better performance, jump directly
1378 * to RPe if we're below it.
1379 */
1380 if (new_delay < dev_priv->rps.efficient_freq)
1381 new_delay = dev_priv->rps.efficient_freq;
1382
1383 } else if (!dev_priv->rps.ei_interrupt_count &&
1384 (residency_C0_down < VLV_RP_DOWN_EI_THRESHOLD)) {
1385 if (adj < 0)
1386 adj *= 2;
1387 else
1388 adj = -1;
1389 /*
1390 * This means, C0 residency is less than down threshold over
1391 * a period of VLV_INT_COUNT_FOR_DOWN_EI. So, reduce the freq
1392 */
1393 if (dev_priv->rps.cur_freq > dev_priv->rps.min_freq_softlimit)
1394 new_delay = dev_priv->rps.cur_freq + adj;
1395 }
1396
1397 return new_delay;
1398}
1399
4912d041 1400static void gen6_pm_rps_work(struct work_struct *work)
3b8d8d91 1401{
2d1013dd
JN
1402 struct drm_i915_private *dev_priv =
1403 container_of(work, struct drm_i915_private, rps.work);
edbfdb45 1404 u32 pm_iir;
dd75fdc8 1405 int new_delay, adj;
4912d041 1406
59cdb63d 1407 spin_lock_irq(&dev_priv->irq_lock);
c6a828d3
DV
1408 pm_iir = dev_priv->rps.pm_iir;
1409 dev_priv->rps.pm_iir = 0;
6af257cd 1410 if (INTEL_INFO(dev_priv->dev)->gen >= 8)
480c8033 1411 gen8_enable_pm_irq(dev_priv, dev_priv->pm_rps_events);
0961021a
BW
1412 else {
1413 /* Make sure not to corrupt PMIMR state used by ringbuffer */
480c8033 1414 gen6_enable_pm_irq(dev_priv, dev_priv->pm_rps_events);
0961021a 1415 }
59cdb63d 1416 spin_unlock_irq(&dev_priv->irq_lock);
3b8d8d91 1417
60611c13 1418 /* Make sure we didn't queue anything we're not going to process. */
a6706b45 1419 WARN_ON(pm_iir & ~dev_priv->pm_rps_events);
60611c13 1420
a6706b45 1421 if ((pm_iir & dev_priv->pm_rps_events) == 0)
3b8d8d91
JB
1422 return;
1423
4fc688ce 1424 mutex_lock(&dev_priv->rps.hw_lock);
7b9e0ae6 1425
dd75fdc8 1426 adj = dev_priv->rps.last_adj;
7425034a 1427 if (pm_iir & GEN6_PM_RP_UP_THRESHOLD) {
dd75fdc8
CW
1428 if (adj > 0)
1429 adj *= 2;
13a5660c
D
1430 else {
1431 /* CHV needs even encode values */
1432 adj = IS_CHERRYVIEW(dev_priv->dev) ? 2 : 1;
1433 }
b39fb297 1434 new_delay = dev_priv->rps.cur_freq + adj;
7425034a
VS
1435
1436 /*
1437 * For better performance, jump directly
1438 * to RPe if we're below it.
1439 */
b39fb297
BW
1440 if (new_delay < dev_priv->rps.efficient_freq)
1441 new_delay = dev_priv->rps.efficient_freq;
dd75fdc8 1442 } else if (pm_iir & GEN6_PM_RP_DOWN_TIMEOUT) {
b39fb297
BW
1443 if (dev_priv->rps.cur_freq > dev_priv->rps.efficient_freq)
1444 new_delay = dev_priv->rps.efficient_freq;
dd75fdc8 1445 else
b39fb297 1446 new_delay = dev_priv->rps.min_freq_softlimit;
dd75fdc8 1447 adj = 0;
31685c25
D
1448 } else if (pm_iir & GEN6_PM_RP_UP_EI_EXPIRED) {
1449 new_delay = vlv_calc_delay_from_C0_counters(dev_priv);
dd75fdc8
CW
1450 } else if (pm_iir & GEN6_PM_RP_DOWN_THRESHOLD) {
1451 if (adj < 0)
1452 adj *= 2;
13a5660c
D
1453 else {
1454 /* CHV needs even encode values */
1455 adj = IS_CHERRYVIEW(dev_priv->dev) ? -2 : -1;
1456 }
b39fb297 1457 new_delay = dev_priv->rps.cur_freq + adj;
dd75fdc8 1458 } else { /* unknown event */
b39fb297 1459 new_delay = dev_priv->rps.cur_freq;
dd75fdc8 1460 }
3b8d8d91 1461
79249636
BW
1462 /* sysfs frequency interfaces may have snuck in while servicing the
1463 * interrupt
1464 */
1272e7b8 1465 new_delay = clamp_t(int, new_delay,
b39fb297
BW
1466 dev_priv->rps.min_freq_softlimit,
1467 dev_priv->rps.max_freq_softlimit);
27544369 1468
b39fb297 1469 dev_priv->rps.last_adj = new_delay - dev_priv->rps.cur_freq;
dd75fdc8
CW
1470
1471 if (IS_VALLEYVIEW(dev_priv->dev))
1472 valleyview_set_rps(dev_priv->dev, new_delay);
1473 else
1474 gen6_set_rps(dev_priv->dev, new_delay);
3b8d8d91 1475
4fc688ce 1476 mutex_unlock(&dev_priv->rps.hw_lock);
3b8d8d91
JB
1477}
1478
e3689190
BW
1479
1480/**
1481 * ivybridge_parity_work - Workqueue called when a parity error interrupt
1482 * occurred.
1483 * @work: workqueue struct
1484 *
1485 * Doesn't actually do anything except notify userspace. As a consequence of
1486 * this event, userspace should try to remap the bad rows since statistically
1487 * it is likely the same row is more likely to go bad again.
1488 */
1489static void ivybridge_parity_work(struct work_struct *work)
1490{
2d1013dd
JN
1491 struct drm_i915_private *dev_priv =
1492 container_of(work, struct drm_i915_private, l3_parity.error_work);
e3689190 1493 u32 error_status, row, bank, subbank;
35a85ac6 1494 char *parity_event[6];
e3689190
BW
1495 uint32_t misccpctl;
1496 unsigned long flags;
35a85ac6 1497 uint8_t slice = 0;
e3689190
BW
1498
1499 /* We must turn off DOP level clock gating to access the L3 registers.
1500 * In order to prevent a get/put style interface, acquire struct mutex
1501 * any time we access those registers.
1502 */
1503 mutex_lock(&dev_priv->dev->struct_mutex);
1504
35a85ac6
BW
1505 /* If we've screwed up tracking, just let the interrupt fire again */
1506 if (WARN_ON(!dev_priv->l3_parity.which_slice))
1507 goto out;
1508
e3689190
BW
1509 misccpctl = I915_READ(GEN7_MISCCPCTL);
1510 I915_WRITE(GEN7_MISCCPCTL, misccpctl & ~GEN7_DOP_CLOCK_GATE_ENABLE);
1511 POSTING_READ(GEN7_MISCCPCTL);
1512
35a85ac6
BW
1513 while ((slice = ffs(dev_priv->l3_parity.which_slice)) != 0) {
1514 u32 reg;
e3689190 1515
35a85ac6
BW
1516 slice--;
1517 if (WARN_ON_ONCE(slice >= NUM_L3_SLICES(dev_priv->dev)))
1518 break;
e3689190 1519
35a85ac6 1520 dev_priv->l3_parity.which_slice &= ~(1<<slice);
e3689190 1521
35a85ac6 1522 reg = GEN7_L3CDERRST1 + (slice * 0x200);
e3689190 1523
35a85ac6
BW
1524 error_status = I915_READ(reg);
1525 row = GEN7_PARITY_ERROR_ROW(error_status);
1526 bank = GEN7_PARITY_ERROR_BANK(error_status);
1527 subbank = GEN7_PARITY_ERROR_SUBBANK(error_status);
1528
1529 I915_WRITE(reg, GEN7_PARITY_ERROR_VALID | GEN7_L3CDERRST1_ENABLE);
1530 POSTING_READ(reg);
1531
1532 parity_event[0] = I915_L3_PARITY_UEVENT "=1";
1533 parity_event[1] = kasprintf(GFP_KERNEL, "ROW=%d", row);
1534 parity_event[2] = kasprintf(GFP_KERNEL, "BANK=%d", bank);
1535 parity_event[3] = kasprintf(GFP_KERNEL, "SUBBANK=%d", subbank);
1536 parity_event[4] = kasprintf(GFP_KERNEL, "SLICE=%d", slice);
1537 parity_event[5] = NULL;
1538
5bdebb18 1539 kobject_uevent_env(&dev_priv->dev->primary->kdev->kobj,
35a85ac6 1540 KOBJ_CHANGE, parity_event);
e3689190 1541
35a85ac6
BW
1542 DRM_DEBUG("Parity error: Slice = %d, Row = %d, Bank = %d, Sub bank = %d.\n",
1543 slice, row, bank, subbank);
e3689190 1544
35a85ac6
BW
1545 kfree(parity_event[4]);
1546 kfree(parity_event[3]);
1547 kfree(parity_event[2]);
1548 kfree(parity_event[1]);
1549 }
e3689190 1550
35a85ac6 1551 I915_WRITE(GEN7_MISCCPCTL, misccpctl);
e3689190 1552
35a85ac6
BW
1553out:
1554 WARN_ON(dev_priv->l3_parity.which_slice);
1555 spin_lock_irqsave(&dev_priv->irq_lock, flags);
480c8033 1556 gen5_enable_gt_irq(dev_priv, GT_PARITY_ERROR(dev_priv->dev));
35a85ac6
BW
1557 spin_unlock_irqrestore(&dev_priv->irq_lock, flags);
1558
1559 mutex_unlock(&dev_priv->dev->struct_mutex);
e3689190
BW
1560}
1561
35a85ac6 1562static void ivybridge_parity_error_irq_handler(struct drm_device *dev, u32 iir)
e3689190 1563{
2d1013dd 1564 struct drm_i915_private *dev_priv = dev->dev_private;
e3689190 1565
040d2baa 1566 if (!HAS_L3_DPF(dev))
e3689190
BW
1567 return;
1568
d0ecd7e2 1569 spin_lock(&dev_priv->irq_lock);
480c8033 1570 gen5_disable_gt_irq(dev_priv, GT_PARITY_ERROR(dev));
d0ecd7e2 1571 spin_unlock(&dev_priv->irq_lock);
e3689190 1572
35a85ac6
BW
1573 iir &= GT_PARITY_ERROR(dev);
1574 if (iir & GT_RENDER_L3_PARITY_ERROR_INTERRUPT_S1)
1575 dev_priv->l3_parity.which_slice |= 1 << 1;
1576
1577 if (iir & GT_RENDER_L3_PARITY_ERROR_INTERRUPT)
1578 dev_priv->l3_parity.which_slice |= 1 << 0;
1579
a4da4fa4 1580 queue_work(dev_priv->wq, &dev_priv->l3_parity.error_work);
e3689190
BW
1581}
1582
f1af8fc1
PZ
1583static void ilk_gt_irq_handler(struct drm_device *dev,
1584 struct drm_i915_private *dev_priv,
1585 u32 gt_iir)
1586{
1587 if (gt_iir &
1588 (GT_RENDER_USER_INTERRUPT | GT_RENDER_PIPECTL_NOTIFY_INTERRUPT))
1589 notify_ring(dev, &dev_priv->ring[RCS]);
1590 if (gt_iir & ILK_BSD_USER_INTERRUPT)
1591 notify_ring(dev, &dev_priv->ring[VCS]);
1592}
1593
e7b4c6b1
DV
1594static void snb_gt_irq_handler(struct drm_device *dev,
1595 struct drm_i915_private *dev_priv,
1596 u32 gt_iir)
1597{
1598
cc609d5d
BW
1599 if (gt_iir &
1600 (GT_RENDER_USER_INTERRUPT | GT_RENDER_PIPECTL_NOTIFY_INTERRUPT))
e7b4c6b1 1601 notify_ring(dev, &dev_priv->ring[RCS]);
cc609d5d 1602 if (gt_iir & GT_BSD_USER_INTERRUPT)
e7b4c6b1 1603 notify_ring(dev, &dev_priv->ring[VCS]);
cc609d5d 1604 if (gt_iir & GT_BLT_USER_INTERRUPT)
e7b4c6b1
DV
1605 notify_ring(dev, &dev_priv->ring[BCS]);
1606
cc609d5d
BW
1607 if (gt_iir & (GT_BLT_CS_ERROR_INTERRUPT |
1608 GT_BSD_CS_ERROR_INTERRUPT |
1609 GT_RENDER_CS_MASTER_ERROR_INTERRUPT)) {
58174462
MK
1610 i915_handle_error(dev, false, "GT error interrupt 0x%08x",
1611 gt_iir);
e7b4c6b1 1612 }
e3689190 1613
35a85ac6
BW
1614 if (gt_iir & GT_PARITY_ERROR(dev))
1615 ivybridge_parity_error_irq_handler(dev, gt_iir);
e7b4c6b1
DV
1616}
1617
0961021a
BW
1618static void gen8_rps_irq_handler(struct drm_i915_private *dev_priv, u32 pm_iir)
1619{
1620 if ((pm_iir & dev_priv->pm_rps_events) == 0)
1621 return;
1622
1623 spin_lock(&dev_priv->irq_lock);
1624 dev_priv->rps.pm_iir |= pm_iir & dev_priv->pm_rps_events;
480c8033 1625 gen8_disable_pm_irq(dev_priv, pm_iir & dev_priv->pm_rps_events);
0961021a
BW
1626 spin_unlock(&dev_priv->irq_lock);
1627
1628 queue_work(dev_priv->wq, &dev_priv->rps.work);
1629}
1630
abd58f01
BW
1631static irqreturn_t gen8_gt_irq_handler(struct drm_device *dev,
1632 struct drm_i915_private *dev_priv,
1633 u32 master_ctl)
1634{
1635 u32 rcs, bcs, vcs;
1636 uint32_t tmp = 0;
1637 irqreturn_t ret = IRQ_NONE;
1638
1639 if (master_ctl & (GEN8_GT_RCS_IRQ | GEN8_GT_BCS_IRQ)) {
1640 tmp = I915_READ(GEN8_GT_IIR(0));
1641 if (tmp) {
38cc46d7 1642 I915_WRITE(GEN8_GT_IIR(0), tmp);
abd58f01
BW
1643 ret = IRQ_HANDLED;
1644 rcs = tmp >> GEN8_RCS_IRQ_SHIFT;
1645 bcs = tmp >> GEN8_BCS_IRQ_SHIFT;
1646 if (rcs & GT_RENDER_USER_INTERRUPT)
1647 notify_ring(dev, &dev_priv->ring[RCS]);
1648 if (bcs & GT_RENDER_USER_INTERRUPT)
1649 notify_ring(dev, &dev_priv->ring[BCS]);
abd58f01
BW
1650 } else
1651 DRM_ERROR("The master control interrupt lied (GT0)!\n");
1652 }
1653
85f9b5f9 1654 if (master_ctl & (GEN8_GT_VCS1_IRQ | GEN8_GT_VCS2_IRQ)) {
abd58f01
BW
1655 tmp = I915_READ(GEN8_GT_IIR(1));
1656 if (tmp) {
38cc46d7 1657 I915_WRITE(GEN8_GT_IIR(1), tmp);
abd58f01
BW
1658 ret = IRQ_HANDLED;
1659 vcs = tmp >> GEN8_VCS1_IRQ_SHIFT;
1660 if (vcs & GT_RENDER_USER_INTERRUPT)
1661 notify_ring(dev, &dev_priv->ring[VCS]);
85f9b5f9
ZY
1662 vcs = tmp >> GEN8_VCS2_IRQ_SHIFT;
1663 if (vcs & GT_RENDER_USER_INTERRUPT)
1664 notify_ring(dev, &dev_priv->ring[VCS2]);
abd58f01
BW
1665 } else
1666 DRM_ERROR("The master control interrupt lied (GT1)!\n");
1667 }
1668
0961021a
BW
1669 if (master_ctl & GEN8_GT_PM_IRQ) {
1670 tmp = I915_READ(GEN8_GT_IIR(2));
1671 if (tmp & dev_priv->pm_rps_events) {
0961021a
BW
1672 I915_WRITE(GEN8_GT_IIR(2),
1673 tmp & dev_priv->pm_rps_events);
38cc46d7
OM
1674 ret = IRQ_HANDLED;
1675 gen8_rps_irq_handler(dev_priv, tmp);
0961021a
BW
1676 } else
1677 DRM_ERROR("The master control interrupt lied (PM)!\n");
1678 }
1679
abd58f01
BW
1680 if (master_ctl & GEN8_GT_VECS_IRQ) {
1681 tmp = I915_READ(GEN8_GT_IIR(3));
1682 if (tmp) {
38cc46d7 1683 I915_WRITE(GEN8_GT_IIR(3), tmp);
abd58f01
BW
1684 ret = IRQ_HANDLED;
1685 vcs = tmp >> GEN8_VECS_IRQ_SHIFT;
1686 if (vcs & GT_RENDER_USER_INTERRUPT)
1687 notify_ring(dev, &dev_priv->ring[VECS]);
abd58f01
BW
1688 } else
1689 DRM_ERROR("The master control interrupt lied (GT3)!\n");
1690 }
1691
1692 return ret;
1693}
1694
b543fb04
EE
1695#define HPD_STORM_DETECT_PERIOD 1000
1696#define HPD_STORM_THRESHOLD 5
1697
13cf5504
DA
1698static int ilk_port_to_hotplug_shift(enum port port)
1699{
1700 switch (port) {
1701 case PORT_A:
1702 case PORT_E:
1703 default:
1704 return -1;
1705 case PORT_B:
1706 return 0;
1707 case PORT_C:
1708 return 8;
1709 case PORT_D:
1710 return 16;
1711 }
1712}
1713
1714static int g4x_port_to_hotplug_shift(enum port port)
1715{
1716 switch (port) {
1717 case PORT_A:
1718 case PORT_E:
1719 default:
1720 return -1;
1721 case PORT_B:
1722 return 17;
1723 case PORT_C:
1724 return 19;
1725 case PORT_D:
1726 return 21;
1727 }
1728}
1729
1730static inline enum port get_port_from_pin(enum hpd_pin pin)
1731{
1732 switch (pin) {
1733 case HPD_PORT_B:
1734 return PORT_B;
1735 case HPD_PORT_C:
1736 return PORT_C;
1737 case HPD_PORT_D:
1738 return PORT_D;
1739 default:
1740 return PORT_A; /* no hpd */
1741 }
1742}
1743
10a504de 1744static inline void intel_hpd_irq_handler(struct drm_device *dev,
22062dba 1745 u32 hotplug_trigger,
13cf5504 1746 u32 dig_hotplug_reg,
22062dba 1747 const u32 *hpd)
b543fb04 1748{
2d1013dd 1749 struct drm_i915_private *dev_priv = dev->dev_private;
b543fb04 1750 int i;
13cf5504 1751 enum port port;
10a504de 1752 bool storm_detected = false;
13cf5504
DA
1753 bool queue_dig = false, queue_hp = false;
1754 u32 dig_shift;
1755 u32 dig_port_mask = 0;
b543fb04 1756
91d131d2
DV
1757 if (!hotplug_trigger)
1758 return;
1759
13cf5504
DA
1760 DRM_DEBUG_DRIVER("hotplug event received, stat 0x%08x, dig 0x%08x\n",
1761 hotplug_trigger, dig_hotplug_reg);
cc9bd499 1762
b5ea2d56 1763 spin_lock(&dev_priv->irq_lock);
b543fb04 1764 for (i = 1; i < HPD_NUM_PINS; i++) {
13cf5504
DA
1765 if (!(hpd[i] & hotplug_trigger))
1766 continue;
1767
1768 port = get_port_from_pin(i);
1769 if (port && dev_priv->hpd_irq_port[port]) {
1770 bool long_hpd;
1771
1772 if (IS_G4X(dev)) {
1773 dig_shift = g4x_port_to_hotplug_shift(port);
1774 long_hpd = (hotplug_trigger >> dig_shift) & PORTB_HOTPLUG_LONG_DETECT;
1775 } else {
1776 dig_shift = ilk_port_to_hotplug_shift(port);
1777 long_hpd = (dig_hotplug_reg >> dig_shift) & PORTB_HOTPLUG_LONG_DETECT;
1778 }
1779
1780 DRM_DEBUG_DRIVER("digital hpd port %d %d\n", port, long_hpd);
1781 /* for long HPD pulses we want to have the digital queue happen,
1782 but we still want HPD storm detection to function. */
1783 if (long_hpd) {
1784 dev_priv->long_hpd_port_mask |= (1 << port);
1785 dig_port_mask |= hpd[i];
1786 } else {
1787 /* for short HPD just trigger the digital queue */
1788 dev_priv->short_hpd_port_mask |= (1 << port);
1789 hotplug_trigger &= ~hpd[i];
1790 }
1791 queue_dig = true;
1792 }
1793 }
821450c6 1794
13cf5504 1795 for (i = 1; i < HPD_NUM_PINS; i++) {
3ff04a16
DV
1796 if (hpd[i] & hotplug_trigger &&
1797 dev_priv->hpd_stats[i].hpd_mark == HPD_DISABLED) {
1798 /*
1799 * On GMCH platforms the interrupt mask bits only
1800 * prevent irq generation, not the setting of the
1801 * hotplug bits itself. So only WARN about unexpected
1802 * interrupts on saner platforms.
1803 */
1804 WARN_ONCE(INTEL_INFO(dev)->gen >= 5 && !IS_VALLEYVIEW(dev),
1805 "Received HPD interrupt (0x%08x) on pin %d (0x%08x) although disabled\n",
1806 hotplug_trigger, i, hpd[i]);
1807
1808 continue;
1809 }
b8f102e8 1810
b543fb04
EE
1811 if (!(hpd[i] & hotplug_trigger) ||
1812 dev_priv->hpd_stats[i].hpd_mark != HPD_ENABLED)
1813 continue;
1814
13cf5504
DA
1815 if (!(dig_port_mask & hpd[i])) {
1816 dev_priv->hpd_event_bits |= (1 << i);
1817 queue_hp = true;
1818 }
1819
b543fb04
EE
1820 if (!time_in_range(jiffies, dev_priv->hpd_stats[i].hpd_last_jiffies,
1821 dev_priv->hpd_stats[i].hpd_last_jiffies
1822 + msecs_to_jiffies(HPD_STORM_DETECT_PERIOD))) {
1823 dev_priv->hpd_stats[i].hpd_last_jiffies = jiffies;
1824 dev_priv->hpd_stats[i].hpd_cnt = 0;
b8f102e8 1825 DRM_DEBUG_KMS("Received HPD interrupt on PIN %d - cnt: 0\n", i);
b543fb04
EE
1826 } else if (dev_priv->hpd_stats[i].hpd_cnt > HPD_STORM_THRESHOLD) {
1827 dev_priv->hpd_stats[i].hpd_mark = HPD_MARK_DISABLED;
142e2398 1828 dev_priv->hpd_event_bits &= ~(1 << i);
b543fb04 1829 DRM_DEBUG_KMS("HPD interrupt storm detected on PIN %d\n", i);
10a504de 1830 storm_detected = true;
b543fb04
EE
1831 } else {
1832 dev_priv->hpd_stats[i].hpd_cnt++;
b8f102e8
EE
1833 DRM_DEBUG_KMS("Received HPD interrupt on PIN %d - cnt: %d\n", i,
1834 dev_priv->hpd_stats[i].hpd_cnt);
b543fb04
EE
1835 }
1836 }
1837
10a504de
DV
1838 if (storm_detected)
1839 dev_priv->display.hpd_irq_setup(dev);
b5ea2d56 1840 spin_unlock(&dev_priv->irq_lock);
5876fa0d 1841
645416f5
DV
1842 /*
1843 * Our hotplug handler can grab modeset locks (by calling down into the
1844 * fb helpers). Hence it must not be run on our own dev-priv->wq work
1845 * queue for otherwise the flush_work in the pageflip code will
1846 * deadlock.
1847 */
13cf5504 1848 if (queue_dig)
0e32b39c 1849 queue_work(dev_priv->dp_wq, &dev_priv->dig_port_work);
13cf5504
DA
1850 if (queue_hp)
1851 schedule_work(&dev_priv->hotplug_work);
b543fb04
EE
1852}
1853
515ac2bb
DV
1854static void gmbus_irq_handler(struct drm_device *dev)
1855{
2d1013dd 1856 struct drm_i915_private *dev_priv = dev->dev_private;
28c70f16 1857
28c70f16 1858 wake_up_all(&dev_priv->gmbus_wait_queue);
515ac2bb
DV
1859}
1860
ce99c256
DV
1861static void dp_aux_irq_handler(struct drm_device *dev)
1862{
2d1013dd 1863 struct drm_i915_private *dev_priv = dev->dev_private;
9ee32fea 1864
9ee32fea 1865 wake_up_all(&dev_priv->gmbus_wait_queue);
ce99c256
DV
1866}
1867
8bf1e9f1 1868#if defined(CONFIG_DEBUG_FS)
277de95e
DV
1869static void display_pipe_crc_irq_handler(struct drm_device *dev, enum pipe pipe,
1870 uint32_t crc0, uint32_t crc1,
1871 uint32_t crc2, uint32_t crc3,
1872 uint32_t crc4)
8bf1e9f1
SH
1873{
1874 struct drm_i915_private *dev_priv = dev->dev_private;
1875 struct intel_pipe_crc *pipe_crc = &dev_priv->pipe_crc[pipe];
1876 struct intel_pipe_crc_entry *entry;
ac2300d4 1877 int head, tail;
b2c88f5b 1878
d538bbdf
DL
1879 spin_lock(&pipe_crc->lock);
1880
0c912c79 1881 if (!pipe_crc->entries) {
d538bbdf 1882 spin_unlock(&pipe_crc->lock);
0c912c79
DL
1883 DRM_ERROR("spurious interrupt\n");
1884 return;
1885 }
1886
d538bbdf
DL
1887 head = pipe_crc->head;
1888 tail = pipe_crc->tail;
b2c88f5b
DL
1889
1890 if (CIRC_SPACE(head, tail, INTEL_PIPE_CRC_ENTRIES_NR) < 1) {
d538bbdf 1891 spin_unlock(&pipe_crc->lock);
b2c88f5b
DL
1892 DRM_ERROR("CRC buffer overflowing\n");
1893 return;
1894 }
1895
1896 entry = &pipe_crc->entries[head];
8bf1e9f1 1897
8bc5e955 1898 entry->frame = dev->driver->get_vblank_counter(dev, pipe);
eba94eb9
DV
1899 entry->crc[0] = crc0;
1900 entry->crc[1] = crc1;
1901 entry->crc[2] = crc2;
1902 entry->crc[3] = crc3;
1903 entry->crc[4] = crc4;
b2c88f5b
DL
1904
1905 head = (head + 1) & (INTEL_PIPE_CRC_ENTRIES_NR - 1);
d538bbdf
DL
1906 pipe_crc->head = head;
1907
1908 spin_unlock(&pipe_crc->lock);
07144428
DL
1909
1910 wake_up_interruptible(&pipe_crc->wq);
8bf1e9f1 1911}
277de95e
DV
1912#else
1913static inline void
1914display_pipe_crc_irq_handler(struct drm_device *dev, enum pipe pipe,
1915 uint32_t crc0, uint32_t crc1,
1916 uint32_t crc2, uint32_t crc3,
1917 uint32_t crc4) {}
1918#endif
1919
eba94eb9 1920
277de95e 1921static void hsw_pipe_crc_irq_handler(struct drm_device *dev, enum pipe pipe)
5a69b89f
DV
1922{
1923 struct drm_i915_private *dev_priv = dev->dev_private;
1924
277de95e
DV
1925 display_pipe_crc_irq_handler(dev, pipe,
1926 I915_READ(PIPE_CRC_RES_1_IVB(pipe)),
1927 0, 0, 0, 0);
5a69b89f
DV
1928}
1929
277de95e 1930static void ivb_pipe_crc_irq_handler(struct drm_device *dev, enum pipe pipe)
eba94eb9
DV
1931{
1932 struct drm_i915_private *dev_priv = dev->dev_private;
1933
277de95e
DV
1934 display_pipe_crc_irq_handler(dev, pipe,
1935 I915_READ(PIPE_CRC_RES_1_IVB(pipe)),
1936 I915_READ(PIPE_CRC_RES_2_IVB(pipe)),
1937 I915_READ(PIPE_CRC_RES_3_IVB(pipe)),
1938 I915_READ(PIPE_CRC_RES_4_IVB(pipe)),
1939 I915_READ(PIPE_CRC_RES_5_IVB(pipe)));
eba94eb9 1940}
5b3a856b 1941
277de95e 1942static void i9xx_pipe_crc_irq_handler(struct drm_device *dev, enum pipe pipe)
5b3a856b
DV
1943{
1944 struct drm_i915_private *dev_priv = dev->dev_private;
0b5c5ed0
DV
1945 uint32_t res1, res2;
1946
1947 if (INTEL_INFO(dev)->gen >= 3)
1948 res1 = I915_READ(PIPE_CRC_RES_RES1_I915(pipe));
1949 else
1950 res1 = 0;
1951
1952 if (INTEL_INFO(dev)->gen >= 5 || IS_G4X(dev))
1953 res2 = I915_READ(PIPE_CRC_RES_RES2_G4X(pipe));
1954 else
1955 res2 = 0;
5b3a856b 1956
277de95e
DV
1957 display_pipe_crc_irq_handler(dev, pipe,
1958 I915_READ(PIPE_CRC_RES_RED(pipe)),
1959 I915_READ(PIPE_CRC_RES_GREEN(pipe)),
1960 I915_READ(PIPE_CRC_RES_BLUE(pipe)),
1961 res1, res2);
5b3a856b 1962}
8bf1e9f1 1963
1403c0d4
PZ
1964/* The RPS events need forcewake, so we add them to a work queue and mask their
1965 * IMR bits until the work is done. Other interrupts can be processed without
1966 * the work queue. */
1967static void gen6_rps_irq_handler(struct drm_i915_private *dev_priv, u32 pm_iir)
baf02a1f 1968{
a6706b45 1969 if (pm_iir & dev_priv->pm_rps_events) {
59cdb63d 1970 spin_lock(&dev_priv->irq_lock);
a6706b45 1971 dev_priv->rps.pm_iir |= pm_iir & dev_priv->pm_rps_events;
480c8033 1972 gen6_disable_pm_irq(dev_priv, pm_iir & dev_priv->pm_rps_events);
59cdb63d 1973 spin_unlock(&dev_priv->irq_lock);
2adbee62
DV
1974
1975 queue_work(dev_priv->wq, &dev_priv->rps.work);
baf02a1f 1976 }
baf02a1f 1977
1403c0d4
PZ
1978 if (HAS_VEBOX(dev_priv->dev)) {
1979 if (pm_iir & PM_VEBOX_USER_INTERRUPT)
1980 notify_ring(dev_priv->dev, &dev_priv->ring[VECS]);
12638c57 1981
1403c0d4 1982 if (pm_iir & PM_VEBOX_CS_ERROR_INTERRUPT) {
58174462
MK
1983 i915_handle_error(dev_priv->dev, false,
1984 "VEBOX CS error interrupt 0x%08x",
1985 pm_iir);
1403c0d4 1986 }
12638c57 1987 }
baf02a1f
BW
1988}
1989
8d7849db
VS
1990static bool intel_pipe_handle_vblank(struct drm_device *dev, enum pipe pipe)
1991{
1992 struct intel_crtc *crtc;
1993
1994 if (!drm_handle_vblank(dev, pipe))
1995 return false;
1996
1997 crtc = to_intel_crtc(intel_get_crtc_for_pipe(dev, pipe));
1998 wake_up(&crtc->vbl_wait);
1999
2000 return true;
2001}
2002
c1874ed7
ID
2003static void valleyview_pipestat_irq_handler(struct drm_device *dev, u32 iir)
2004{
2005 struct drm_i915_private *dev_priv = dev->dev_private;
91d181dd 2006 u32 pipe_stats[I915_MAX_PIPES] = { };
c1874ed7
ID
2007 int pipe;
2008
58ead0d7 2009 spin_lock(&dev_priv->irq_lock);
c1874ed7 2010 for_each_pipe(pipe) {
91d181dd 2011 int reg;
bbb5eebf 2012 u32 mask, iir_bit = 0;
91d181dd 2013
bbb5eebf
DV
2014 /*
2015 * PIPESTAT bits get signalled even when the interrupt is
2016 * disabled with the mask bits, and some of the status bits do
2017 * not generate interrupts at all (like the underrun bit). Hence
2018 * we need to be careful that we only handle what we want to
2019 * handle.
2020 */
2021 mask = 0;
2022 if (__cpu_fifo_underrun_reporting_enabled(dev, pipe))
2023 mask |= PIPE_FIFO_UNDERRUN_STATUS;
2024
2025 switch (pipe) {
2026 case PIPE_A:
2027 iir_bit = I915_DISPLAY_PIPE_A_EVENT_INTERRUPT;
2028 break;
2029 case PIPE_B:
2030 iir_bit = I915_DISPLAY_PIPE_B_EVENT_INTERRUPT;
2031 break;
3278f67f
VS
2032 case PIPE_C:
2033 iir_bit = I915_DISPLAY_PIPE_C_EVENT_INTERRUPT;
2034 break;
bbb5eebf
DV
2035 }
2036 if (iir & iir_bit)
2037 mask |= dev_priv->pipestat_irq_mask[pipe];
2038
2039 if (!mask)
91d181dd
ID
2040 continue;
2041
2042 reg = PIPESTAT(pipe);
bbb5eebf
DV
2043 mask |= PIPESTAT_INT_ENABLE_MASK;
2044 pipe_stats[pipe] = I915_READ(reg) & mask;
c1874ed7
ID
2045
2046 /*
2047 * Clear the PIPE*STAT regs before the IIR
2048 */
91d181dd
ID
2049 if (pipe_stats[pipe] & (PIPE_FIFO_UNDERRUN_STATUS |
2050 PIPESTAT_INT_STATUS_MASK))
c1874ed7
ID
2051 I915_WRITE(reg, pipe_stats[pipe]);
2052 }
58ead0d7 2053 spin_unlock(&dev_priv->irq_lock);
c1874ed7
ID
2054
2055 for_each_pipe(pipe) {
2056 if (pipe_stats[pipe] & PIPE_START_VBLANK_INTERRUPT_STATUS)
8d7849db 2057 intel_pipe_handle_vblank(dev, pipe);
c1874ed7 2058
579a9b0e 2059 if (pipe_stats[pipe] & PLANE_FLIP_DONE_INT_STATUS_VLV) {
c1874ed7
ID
2060 intel_prepare_page_flip(dev, pipe);
2061 intel_finish_page_flip(dev, pipe);
2062 }
2063
2064 if (pipe_stats[pipe] & PIPE_CRC_DONE_INTERRUPT_STATUS)
2065 i9xx_pipe_crc_irq_handler(dev, pipe);
2066
2067 if (pipe_stats[pipe] & PIPE_FIFO_UNDERRUN_STATUS &&
2068 intel_set_cpu_fifo_underrun_reporting(dev, pipe, false))
2069 DRM_ERROR("pipe %c underrun\n", pipe_name(pipe));
2070 }
2071
2072 if (pipe_stats[0] & PIPE_GMBUS_INTERRUPT_STATUS)
2073 gmbus_irq_handler(dev);
2074}
2075
16c6c56b
VS
2076static void i9xx_hpd_irq_handler(struct drm_device *dev)
2077{
2078 struct drm_i915_private *dev_priv = dev->dev_private;
2079 u32 hotplug_status = I915_READ(PORT_HOTPLUG_STAT);
2080
3ff60f89
OM
2081 if (hotplug_status) {
2082 I915_WRITE(PORT_HOTPLUG_STAT, hotplug_status);
2083 /*
2084 * Make sure hotplug status is cleared before we clear IIR, or else we
2085 * may miss hotplug events.
2086 */
2087 POSTING_READ(PORT_HOTPLUG_STAT);
16c6c56b 2088
3ff60f89
OM
2089 if (IS_G4X(dev)) {
2090 u32 hotplug_trigger = hotplug_status & HOTPLUG_INT_STATUS_G4X;
16c6c56b 2091
13cf5504 2092 intel_hpd_irq_handler(dev, hotplug_trigger, 0, hpd_status_g4x);
3ff60f89
OM
2093 } else {
2094 u32 hotplug_trigger = hotplug_status & HOTPLUG_INT_STATUS_I915;
16c6c56b 2095
13cf5504 2096 intel_hpd_irq_handler(dev, hotplug_trigger, 0, hpd_status_i915);
3ff60f89 2097 }
16c6c56b 2098
3ff60f89
OM
2099 if ((IS_G4X(dev) || IS_VALLEYVIEW(dev)) &&
2100 hotplug_status & DP_AUX_CHANNEL_MASK_INT_STATUS_G4X)
2101 dp_aux_irq_handler(dev);
2102 }
16c6c56b
VS
2103}
2104
ff1f525e 2105static irqreturn_t valleyview_irq_handler(int irq, void *arg)
7e231dbe 2106{
45a83f84 2107 struct drm_device *dev = arg;
2d1013dd 2108 struct drm_i915_private *dev_priv = dev->dev_private;
7e231dbe
JB
2109 u32 iir, gt_iir, pm_iir;
2110 irqreturn_t ret = IRQ_NONE;
7e231dbe 2111
7e231dbe 2112 while (true) {
3ff60f89
OM
2113 /* Find, clear, then process each source of interrupt */
2114
7e231dbe 2115 gt_iir = I915_READ(GTIIR);
3ff60f89
OM
2116 if (gt_iir)
2117 I915_WRITE(GTIIR, gt_iir);
2118
7e231dbe 2119 pm_iir = I915_READ(GEN6_PMIIR);
3ff60f89
OM
2120 if (pm_iir)
2121 I915_WRITE(GEN6_PMIIR, pm_iir);
2122
2123 iir = I915_READ(VLV_IIR);
2124 if (iir) {
2125 /* Consume port before clearing IIR or we'll miss events */
2126 if (iir & I915_DISPLAY_PORT_INTERRUPT)
2127 i9xx_hpd_irq_handler(dev);
2128 I915_WRITE(VLV_IIR, iir);
2129 }
7e231dbe
JB
2130
2131 if (gt_iir == 0 && pm_iir == 0 && iir == 0)
2132 goto out;
2133
2134 ret = IRQ_HANDLED;
2135
3ff60f89
OM
2136 if (gt_iir)
2137 snb_gt_irq_handler(dev, dev_priv, gt_iir);
60611c13 2138 if (pm_iir)
d0ecd7e2 2139 gen6_rps_irq_handler(dev_priv, pm_iir);
3ff60f89
OM
2140 /* Call regardless, as some status bits might not be
2141 * signalled in iir */
2142 valleyview_pipestat_irq_handler(dev, iir);
7e231dbe
JB
2143 }
2144
2145out:
2146 return ret;
2147}
2148
43f328d7
VS
2149static irqreturn_t cherryview_irq_handler(int irq, void *arg)
2150{
45a83f84 2151 struct drm_device *dev = arg;
43f328d7
VS
2152 struct drm_i915_private *dev_priv = dev->dev_private;
2153 u32 master_ctl, iir;
2154 irqreturn_t ret = IRQ_NONE;
43f328d7 2155
8e5fd599
VS
2156 for (;;) {
2157 master_ctl = I915_READ(GEN8_MASTER_IRQ) & ~GEN8_MASTER_IRQ_CONTROL;
2158 iir = I915_READ(VLV_IIR);
43f328d7 2159
8e5fd599
VS
2160 if (master_ctl == 0 && iir == 0)
2161 break;
43f328d7 2162
27b6c122
OM
2163 ret = IRQ_HANDLED;
2164
8e5fd599 2165 I915_WRITE(GEN8_MASTER_IRQ, 0);
43f328d7 2166
27b6c122 2167 /* Find, clear, then process each source of interrupt */
43f328d7 2168
27b6c122
OM
2169 if (iir) {
2170 /* Consume port before clearing IIR or we'll miss events */
2171 if (iir & I915_DISPLAY_PORT_INTERRUPT)
2172 i9xx_hpd_irq_handler(dev);
2173 I915_WRITE(VLV_IIR, iir);
2174 }
43f328d7 2175
27b6c122 2176 gen8_gt_irq_handler(dev, dev_priv, master_ctl);
43f328d7 2177
27b6c122
OM
2178 /* Call regardless, as some status bits might not be
2179 * signalled in iir */
2180 valleyview_pipestat_irq_handler(dev, iir);
43f328d7 2181
8e5fd599
VS
2182 I915_WRITE(GEN8_MASTER_IRQ, DE_MASTER_IRQ_CONTROL);
2183 POSTING_READ(GEN8_MASTER_IRQ);
8e5fd599 2184 }
3278f67f 2185
43f328d7
VS
2186 return ret;
2187}
2188
23e81d69 2189static void ibx_irq_handler(struct drm_device *dev, u32 pch_iir)
776ad806 2190{
2d1013dd 2191 struct drm_i915_private *dev_priv = dev->dev_private;
9db4a9c7 2192 int pipe;
b543fb04 2193 u32 hotplug_trigger = pch_iir & SDE_HOTPLUG_MASK;
13cf5504
DA
2194 u32 dig_hotplug_reg;
2195
2196 dig_hotplug_reg = I915_READ(PCH_PORT_HOTPLUG);
2197 I915_WRITE(PCH_PORT_HOTPLUG, dig_hotplug_reg);
776ad806 2198
13cf5504 2199 intel_hpd_irq_handler(dev, hotplug_trigger, dig_hotplug_reg, hpd_ibx);
91d131d2 2200
cfc33bf7
VS
2201 if (pch_iir & SDE_AUDIO_POWER_MASK) {
2202 int port = ffs((pch_iir & SDE_AUDIO_POWER_MASK) >>
2203 SDE_AUDIO_POWER_SHIFT);
776ad806 2204 DRM_DEBUG_DRIVER("PCH audio power change on port %d\n",
cfc33bf7
VS
2205 port_name(port));
2206 }
776ad806 2207
ce99c256
DV
2208 if (pch_iir & SDE_AUX_MASK)
2209 dp_aux_irq_handler(dev);
2210
776ad806 2211 if (pch_iir & SDE_GMBUS)
515ac2bb 2212 gmbus_irq_handler(dev);
776ad806
JB
2213
2214 if (pch_iir & SDE_AUDIO_HDCP_MASK)
2215 DRM_DEBUG_DRIVER("PCH HDCP audio interrupt\n");
2216
2217 if (pch_iir & SDE_AUDIO_TRANS_MASK)
2218 DRM_DEBUG_DRIVER("PCH transcoder audio interrupt\n");
2219
2220 if (pch_iir & SDE_POISON)
2221 DRM_ERROR("PCH poison interrupt\n");
2222
9db4a9c7
JB
2223 if (pch_iir & SDE_FDI_MASK)
2224 for_each_pipe(pipe)
2225 DRM_DEBUG_DRIVER(" pipe %c FDI IIR: 0x%08x\n",
2226 pipe_name(pipe),
2227 I915_READ(FDI_RX_IIR(pipe)));
776ad806
JB
2228
2229 if (pch_iir & (SDE_TRANSB_CRC_DONE | SDE_TRANSA_CRC_DONE))
2230 DRM_DEBUG_DRIVER("PCH transcoder CRC done interrupt\n");
2231
2232 if (pch_iir & (SDE_TRANSB_CRC_ERR | SDE_TRANSA_CRC_ERR))
2233 DRM_DEBUG_DRIVER("PCH transcoder CRC error interrupt\n");
2234
776ad806 2235 if (pch_iir & SDE_TRANSA_FIFO_UNDER)
8664281b
PZ
2236 if (intel_set_pch_fifo_underrun_reporting(dev, TRANSCODER_A,
2237 false))
fc2c807b 2238 DRM_ERROR("PCH transcoder A FIFO underrun\n");
8664281b
PZ
2239
2240 if (pch_iir & SDE_TRANSB_FIFO_UNDER)
2241 if (intel_set_pch_fifo_underrun_reporting(dev, TRANSCODER_B,
2242 false))
fc2c807b 2243 DRM_ERROR("PCH transcoder B FIFO underrun\n");
8664281b
PZ
2244}
2245
2246static void ivb_err_int_handler(struct drm_device *dev)
2247{
2248 struct drm_i915_private *dev_priv = dev->dev_private;
2249 u32 err_int = I915_READ(GEN7_ERR_INT);
5a69b89f 2250 enum pipe pipe;
8664281b 2251
de032bf4
PZ
2252 if (err_int & ERR_INT_POISON)
2253 DRM_ERROR("Poison interrupt\n");
2254
5a69b89f
DV
2255 for_each_pipe(pipe) {
2256 if (err_int & ERR_INT_FIFO_UNDERRUN(pipe)) {
2257 if (intel_set_cpu_fifo_underrun_reporting(dev, pipe,
2258 false))
fc2c807b
VS
2259 DRM_ERROR("Pipe %c FIFO underrun\n",
2260 pipe_name(pipe));
5a69b89f 2261 }
8bf1e9f1 2262
5a69b89f
DV
2263 if (err_int & ERR_INT_PIPE_CRC_DONE(pipe)) {
2264 if (IS_IVYBRIDGE(dev))
277de95e 2265 ivb_pipe_crc_irq_handler(dev, pipe);
5a69b89f 2266 else
277de95e 2267 hsw_pipe_crc_irq_handler(dev, pipe);
5a69b89f
DV
2268 }
2269 }
8bf1e9f1 2270
8664281b
PZ
2271 I915_WRITE(GEN7_ERR_INT, err_int);
2272}
2273
2274static void cpt_serr_int_handler(struct drm_device *dev)
2275{
2276 struct drm_i915_private *dev_priv = dev->dev_private;
2277 u32 serr_int = I915_READ(SERR_INT);
2278
de032bf4
PZ
2279 if (serr_int & SERR_INT_POISON)
2280 DRM_ERROR("PCH poison interrupt\n");
2281
8664281b
PZ
2282 if (serr_int & SERR_INT_TRANS_A_FIFO_UNDERRUN)
2283 if (intel_set_pch_fifo_underrun_reporting(dev, TRANSCODER_A,
2284 false))
fc2c807b 2285 DRM_ERROR("PCH transcoder A FIFO underrun\n");
8664281b
PZ
2286
2287 if (serr_int & SERR_INT_TRANS_B_FIFO_UNDERRUN)
2288 if (intel_set_pch_fifo_underrun_reporting(dev, TRANSCODER_B,
2289 false))
fc2c807b 2290 DRM_ERROR("PCH transcoder B FIFO underrun\n");
8664281b
PZ
2291
2292 if (serr_int & SERR_INT_TRANS_C_FIFO_UNDERRUN)
2293 if (intel_set_pch_fifo_underrun_reporting(dev, TRANSCODER_C,
2294 false))
fc2c807b 2295 DRM_ERROR("PCH transcoder C FIFO underrun\n");
8664281b
PZ
2296
2297 I915_WRITE(SERR_INT, serr_int);
776ad806
JB
2298}
2299
23e81d69
AJ
2300static void cpt_irq_handler(struct drm_device *dev, u32 pch_iir)
2301{
2d1013dd 2302 struct drm_i915_private *dev_priv = dev->dev_private;
23e81d69 2303 int pipe;
b543fb04 2304 u32 hotplug_trigger = pch_iir & SDE_HOTPLUG_MASK_CPT;
13cf5504
DA
2305 u32 dig_hotplug_reg;
2306
2307 dig_hotplug_reg = I915_READ(PCH_PORT_HOTPLUG);
2308 I915_WRITE(PCH_PORT_HOTPLUG, dig_hotplug_reg);
23e81d69 2309
13cf5504 2310 intel_hpd_irq_handler(dev, hotplug_trigger, dig_hotplug_reg, hpd_cpt);
91d131d2 2311
cfc33bf7
VS
2312 if (pch_iir & SDE_AUDIO_POWER_MASK_CPT) {
2313 int port = ffs((pch_iir & SDE_AUDIO_POWER_MASK_CPT) >>
2314 SDE_AUDIO_POWER_SHIFT_CPT);
2315 DRM_DEBUG_DRIVER("PCH audio power change on port %c\n",
2316 port_name(port));
2317 }
23e81d69
AJ
2318
2319 if (pch_iir & SDE_AUX_MASK_CPT)
ce99c256 2320 dp_aux_irq_handler(dev);
23e81d69
AJ
2321
2322 if (pch_iir & SDE_GMBUS_CPT)
515ac2bb 2323 gmbus_irq_handler(dev);
23e81d69
AJ
2324
2325 if (pch_iir & SDE_AUDIO_CP_REQ_CPT)
2326 DRM_DEBUG_DRIVER("Audio CP request interrupt\n");
2327
2328 if (pch_iir & SDE_AUDIO_CP_CHG_CPT)
2329 DRM_DEBUG_DRIVER("Audio CP change interrupt\n");
2330
2331 if (pch_iir & SDE_FDI_MASK_CPT)
2332 for_each_pipe(pipe)
2333 DRM_DEBUG_DRIVER(" pipe %c FDI IIR: 0x%08x\n",
2334 pipe_name(pipe),
2335 I915_READ(FDI_RX_IIR(pipe)));
8664281b
PZ
2336
2337 if (pch_iir & SDE_ERROR_CPT)
2338 cpt_serr_int_handler(dev);
23e81d69
AJ
2339}
2340
c008bc6e
PZ
2341static void ilk_display_irq_handler(struct drm_device *dev, u32 de_iir)
2342{
2343 struct drm_i915_private *dev_priv = dev->dev_private;
40da17c2 2344 enum pipe pipe;
c008bc6e
PZ
2345
2346 if (de_iir & DE_AUX_CHANNEL_A)
2347 dp_aux_irq_handler(dev);
2348
2349 if (de_iir & DE_GSE)
2350 intel_opregion_asle_intr(dev);
2351
c008bc6e
PZ
2352 if (de_iir & DE_POISON)
2353 DRM_ERROR("Poison interrupt\n");
2354
40da17c2
DV
2355 for_each_pipe(pipe) {
2356 if (de_iir & DE_PIPE_VBLANK(pipe))
8d7849db 2357 intel_pipe_handle_vblank(dev, pipe);
5b3a856b 2358
40da17c2
DV
2359 if (de_iir & DE_PIPE_FIFO_UNDERRUN(pipe))
2360 if (intel_set_cpu_fifo_underrun_reporting(dev, pipe, false))
fc2c807b
VS
2361 DRM_ERROR("Pipe %c FIFO underrun\n",
2362 pipe_name(pipe));
5b3a856b 2363
40da17c2
DV
2364 if (de_iir & DE_PIPE_CRC_DONE(pipe))
2365 i9xx_pipe_crc_irq_handler(dev, pipe);
c008bc6e 2366
40da17c2
DV
2367 /* plane/pipes map 1:1 on ilk+ */
2368 if (de_iir & DE_PLANE_FLIP_DONE(pipe)) {
2369 intel_prepare_page_flip(dev, pipe);
2370 intel_finish_page_flip_plane(dev, pipe);
2371 }
c008bc6e
PZ
2372 }
2373
2374 /* check event from PCH */
2375 if (de_iir & DE_PCH_EVENT) {
2376 u32 pch_iir = I915_READ(SDEIIR);
2377
2378 if (HAS_PCH_CPT(dev))
2379 cpt_irq_handler(dev, pch_iir);
2380 else
2381 ibx_irq_handler(dev, pch_iir);
2382
2383 /* should clear PCH hotplug event before clear CPU irq */
2384 I915_WRITE(SDEIIR, pch_iir);
2385 }
2386
2387 if (IS_GEN5(dev) && de_iir & DE_PCU_EVENT)
2388 ironlake_rps_change_irq_handler(dev);
2389}
2390
9719fb98
PZ
2391static void ivb_display_irq_handler(struct drm_device *dev, u32 de_iir)
2392{
2393 struct drm_i915_private *dev_priv = dev->dev_private;
07d27e20 2394 enum pipe pipe;
9719fb98
PZ
2395
2396 if (de_iir & DE_ERR_INT_IVB)
2397 ivb_err_int_handler(dev);
2398
2399 if (de_iir & DE_AUX_CHANNEL_A_IVB)
2400 dp_aux_irq_handler(dev);
2401
2402 if (de_iir & DE_GSE_IVB)
2403 intel_opregion_asle_intr(dev);
2404
07d27e20
DL
2405 for_each_pipe(pipe) {
2406 if (de_iir & (DE_PIPE_VBLANK_IVB(pipe)))
8d7849db 2407 intel_pipe_handle_vblank(dev, pipe);
40da17c2
DV
2408
2409 /* plane/pipes map 1:1 on ilk+ */
07d27e20
DL
2410 if (de_iir & DE_PLANE_FLIP_DONE_IVB(pipe)) {
2411 intel_prepare_page_flip(dev, pipe);
2412 intel_finish_page_flip_plane(dev, pipe);
9719fb98
PZ
2413 }
2414 }
2415
2416 /* check event from PCH */
2417 if (!HAS_PCH_NOP(dev) && (de_iir & DE_PCH_EVENT_IVB)) {
2418 u32 pch_iir = I915_READ(SDEIIR);
2419
2420 cpt_irq_handler(dev, pch_iir);
2421
2422 /* clear PCH hotplug event before clear CPU irq */
2423 I915_WRITE(SDEIIR, pch_iir);
2424 }
2425}
2426
72c90f62
OM
2427/*
2428 * To handle irqs with the minimum potential races with fresh interrupts, we:
2429 * 1 - Disable Master Interrupt Control.
2430 * 2 - Find the source(s) of the interrupt.
2431 * 3 - Clear the Interrupt Identity bits (IIR).
2432 * 4 - Process the interrupt(s) that had bits set in the IIRs.
2433 * 5 - Re-enable Master Interrupt Control.
2434 */
f1af8fc1 2435static irqreturn_t ironlake_irq_handler(int irq, void *arg)
b1f14ad0 2436{
45a83f84 2437 struct drm_device *dev = arg;
2d1013dd 2438 struct drm_i915_private *dev_priv = dev->dev_private;
f1af8fc1 2439 u32 de_iir, gt_iir, de_ier, sde_ier = 0;
0e43406b 2440 irqreturn_t ret = IRQ_NONE;
b1f14ad0 2441
8664281b
PZ
2442 /* We get interrupts on unclaimed registers, so check for this before we
2443 * do any I915_{READ,WRITE}. */
907b28c5 2444 intel_uncore_check_errors(dev);
8664281b 2445
b1f14ad0
JB
2446 /* disable master interrupt before clearing iir */
2447 de_ier = I915_READ(DEIER);
2448 I915_WRITE(DEIER, de_ier & ~DE_MASTER_IRQ_CONTROL);
23a78516 2449 POSTING_READ(DEIER);
b1f14ad0 2450
44498aea
PZ
2451 /* Disable south interrupts. We'll only write to SDEIIR once, so further
2452 * interrupts will will be stored on its back queue, and then we'll be
2453 * able to process them after we restore SDEIER (as soon as we restore
2454 * it, we'll get an interrupt if SDEIIR still has something to process
2455 * due to its back queue). */
ab5c608b
BW
2456 if (!HAS_PCH_NOP(dev)) {
2457 sde_ier = I915_READ(SDEIER);
2458 I915_WRITE(SDEIER, 0);
2459 POSTING_READ(SDEIER);
2460 }
44498aea 2461
72c90f62
OM
2462 /* Find, clear, then process each source of interrupt */
2463
b1f14ad0 2464 gt_iir = I915_READ(GTIIR);
0e43406b 2465 if (gt_iir) {
72c90f62
OM
2466 I915_WRITE(GTIIR, gt_iir);
2467 ret = IRQ_HANDLED;
d8fc8a47 2468 if (INTEL_INFO(dev)->gen >= 6)
f1af8fc1 2469 snb_gt_irq_handler(dev, dev_priv, gt_iir);
d8fc8a47
PZ
2470 else
2471 ilk_gt_irq_handler(dev, dev_priv, gt_iir);
b1f14ad0
JB
2472 }
2473
0e43406b
CW
2474 de_iir = I915_READ(DEIIR);
2475 if (de_iir) {
72c90f62
OM
2476 I915_WRITE(DEIIR, de_iir);
2477 ret = IRQ_HANDLED;
f1af8fc1
PZ
2478 if (INTEL_INFO(dev)->gen >= 7)
2479 ivb_display_irq_handler(dev, de_iir);
2480 else
2481 ilk_display_irq_handler(dev, de_iir);
b1f14ad0
JB
2482 }
2483
f1af8fc1
PZ
2484 if (INTEL_INFO(dev)->gen >= 6) {
2485 u32 pm_iir = I915_READ(GEN6_PMIIR);
2486 if (pm_iir) {
f1af8fc1
PZ
2487 I915_WRITE(GEN6_PMIIR, pm_iir);
2488 ret = IRQ_HANDLED;
72c90f62 2489 gen6_rps_irq_handler(dev_priv, pm_iir);
f1af8fc1 2490 }
0e43406b 2491 }
b1f14ad0 2492
b1f14ad0
JB
2493 I915_WRITE(DEIER, de_ier);
2494 POSTING_READ(DEIER);
ab5c608b
BW
2495 if (!HAS_PCH_NOP(dev)) {
2496 I915_WRITE(SDEIER, sde_ier);
2497 POSTING_READ(SDEIER);
2498 }
b1f14ad0
JB
2499
2500 return ret;
2501}
2502
abd58f01
BW
2503static irqreturn_t gen8_irq_handler(int irq, void *arg)
2504{
2505 struct drm_device *dev = arg;
2506 struct drm_i915_private *dev_priv = dev->dev_private;
2507 u32 master_ctl;
2508 irqreturn_t ret = IRQ_NONE;
2509 uint32_t tmp = 0;
c42664cc 2510 enum pipe pipe;
abd58f01 2511
abd58f01
BW
2512 master_ctl = I915_READ(GEN8_MASTER_IRQ);
2513 master_ctl &= ~GEN8_MASTER_IRQ_CONTROL;
2514 if (!master_ctl)
2515 return IRQ_NONE;
2516
2517 I915_WRITE(GEN8_MASTER_IRQ, 0);
2518 POSTING_READ(GEN8_MASTER_IRQ);
2519
38cc46d7
OM
2520 /* Find, clear, then process each source of interrupt */
2521
abd58f01
BW
2522 ret = gen8_gt_irq_handler(dev, dev_priv, master_ctl);
2523
2524 if (master_ctl & GEN8_DE_MISC_IRQ) {
2525 tmp = I915_READ(GEN8_DE_MISC_IIR);
abd58f01
BW
2526 if (tmp) {
2527 I915_WRITE(GEN8_DE_MISC_IIR, tmp);
2528 ret = IRQ_HANDLED;
38cc46d7
OM
2529 if (tmp & GEN8_DE_MISC_GSE)
2530 intel_opregion_asle_intr(dev);
2531 else
2532 DRM_ERROR("Unexpected DE Misc interrupt\n");
abd58f01 2533 }
38cc46d7
OM
2534 else
2535 DRM_ERROR("The master control interrupt lied (DE MISC)!\n");
abd58f01
BW
2536 }
2537
6d766f02
DV
2538 if (master_ctl & GEN8_DE_PORT_IRQ) {
2539 tmp = I915_READ(GEN8_DE_PORT_IIR);
6d766f02
DV
2540 if (tmp) {
2541 I915_WRITE(GEN8_DE_PORT_IIR, tmp);
2542 ret = IRQ_HANDLED;
38cc46d7
OM
2543 if (tmp & GEN8_AUX_CHANNEL_A)
2544 dp_aux_irq_handler(dev);
2545 else
2546 DRM_ERROR("Unexpected DE Port interrupt\n");
6d766f02 2547 }
38cc46d7
OM
2548 else
2549 DRM_ERROR("The master control interrupt lied (DE PORT)!\n");
6d766f02
DV
2550 }
2551
c42664cc
DV
2552 for_each_pipe(pipe) {
2553 uint32_t pipe_iir;
abd58f01 2554
c42664cc
DV
2555 if (!(master_ctl & GEN8_DE_PIPE_IRQ(pipe)))
2556 continue;
abd58f01 2557
c42664cc 2558 pipe_iir = I915_READ(GEN8_DE_PIPE_IIR(pipe));
c42664cc
DV
2559 if (pipe_iir) {
2560 ret = IRQ_HANDLED;
2561 I915_WRITE(GEN8_DE_PIPE_IIR(pipe), pipe_iir);
38cc46d7
OM
2562 if (pipe_iir & GEN8_PIPE_VBLANK)
2563 intel_pipe_handle_vblank(dev, pipe);
2564
2565 if (pipe_iir & GEN8_PIPE_PRIMARY_FLIP_DONE) {
2566 intel_prepare_page_flip(dev, pipe);
2567 intel_finish_page_flip_plane(dev, pipe);
2568 }
2569
2570 if (pipe_iir & GEN8_PIPE_CDCLK_CRC_DONE)
2571 hsw_pipe_crc_irq_handler(dev, pipe);
2572
2573 if (pipe_iir & GEN8_PIPE_FIFO_UNDERRUN) {
2574 if (intel_set_cpu_fifo_underrun_reporting(dev, pipe,
2575 false))
2576 DRM_ERROR("Pipe %c FIFO underrun\n",
2577 pipe_name(pipe));
2578 }
2579
2580 if (pipe_iir & GEN8_DE_PIPE_IRQ_FAULT_ERRORS) {
2581 DRM_ERROR("Fault errors on pipe %c\n: 0x%08x",
2582 pipe_name(pipe),
2583 pipe_iir & GEN8_DE_PIPE_IRQ_FAULT_ERRORS);
2584 }
c42664cc 2585 } else
abd58f01
BW
2586 DRM_ERROR("The master control interrupt lied (DE PIPE)!\n");
2587 }
2588
92d03a80
DV
2589 if (!HAS_PCH_NOP(dev) && master_ctl & GEN8_DE_PCH_IRQ) {
2590 /*
2591 * FIXME(BDW): Assume for now that the new interrupt handling
2592 * scheme also closed the SDE interrupt handling race we've seen
2593 * on older pch-split platforms. But this needs testing.
2594 */
2595 u32 pch_iir = I915_READ(SDEIIR);
92d03a80
DV
2596 if (pch_iir) {
2597 I915_WRITE(SDEIIR, pch_iir);
2598 ret = IRQ_HANDLED;
38cc46d7
OM
2599 cpt_irq_handler(dev, pch_iir);
2600 } else
2601 DRM_ERROR("The master control interrupt lied (SDE)!\n");
2602
92d03a80
DV
2603 }
2604
abd58f01
BW
2605 I915_WRITE(GEN8_MASTER_IRQ, GEN8_MASTER_IRQ_CONTROL);
2606 POSTING_READ(GEN8_MASTER_IRQ);
2607
2608 return ret;
2609}
2610
17e1df07
DV
2611static void i915_error_wake_up(struct drm_i915_private *dev_priv,
2612 bool reset_completed)
2613{
a4872ba6 2614 struct intel_engine_cs *ring;
17e1df07
DV
2615 int i;
2616
2617 /*
2618 * Notify all waiters for GPU completion events that reset state has
2619 * been changed, and that they need to restart their wait after
2620 * checking for potential errors (and bail out to drop locks if there is
2621 * a gpu reset pending so that i915_error_work_func can acquire them).
2622 */
2623
2624 /* Wake up __wait_seqno, potentially holding dev->struct_mutex. */
2625 for_each_ring(ring, dev_priv, i)
2626 wake_up_all(&ring->irq_queue);
2627
2628 /* Wake up intel_crtc_wait_for_pending_flips, holding crtc->mutex. */
2629 wake_up_all(&dev_priv->pending_flip_queue);
2630
2631 /*
2632 * Signal tasks blocked in i915_gem_wait_for_error that the pending
2633 * reset state is cleared.
2634 */
2635 if (reset_completed)
2636 wake_up_all(&dev_priv->gpu_error.reset_queue);
2637}
2638
8a905236
JB
2639/**
2640 * i915_error_work_func - do process context error handling work
2641 * @work: work struct
2642 *
2643 * Fire an error uevent so userspace can see that a hang or error
2644 * was detected.
2645 */
2646static void i915_error_work_func(struct work_struct *work)
2647{
1f83fee0
DV
2648 struct i915_gpu_error *error = container_of(work, struct i915_gpu_error,
2649 work);
2d1013dd
JN
2650 struct drm_i915_private *dev_priv =
2651 container_of(error, struct drm_i915_private, gpu_error);
8a905236 2652 struct drm_device *dev = dev_priv->dev;
cce723ed
BW
2653 char *error_event[] = { I915_ERROR_UEVENT "=1", NULL };
2654 char *reset_event[] = { I915_RESET_UEVENT "=1", NULL };
2655 char *reset_done_event[] = { I915_ERROR_UEVENT "=0", NULL };
17e1df07 2656 int ret;
8a905236 2657
5bdebb18 2658 kobject_uevent_env(&dev->primary->kdev->kobj, KOBJ_CHANGE, error_event);
f316a42c 2659
7db0ba24
DV
2660 /*
2661 * Note that there's only one work item which does gpu resets, so we
2662 * need not worry about concurrent gpu resets potentially incrementing
2663 * error->reset_counter twice. We only need to take care of another
2664 * racing irq/hangcheck declaring the gpu dead for a second time. A
2665 * quick check for that is good enough: schedule_work ensures the
2666 * correct ordering between hang detection and this work item, and since
2667 * the reset in-progress bit is only ever set by code outside of this
2668 * work we don't need to worry about any other races.
2669 */
2670 if (i915_reset_in_progress(error) && !i915_terminally_wedged(error)) {
f803aa55 2671 DRM_DEBUG_DRIVER("resetting chip\n");
5bdebb18 2672 kobject_uevent_env(&dev->primary->kdev->kobj, KOBJ_CHANGE,
7db0ba24 2673 reset_event);
1f83fee0 2674
f454c694
ID
2675 /*
2676 * In most cases it's guaranteed that we get here with an RPM
2677 * reference held, for example because there is a pending GPU
2678 * request that won't finish until the reset is done. This
2679 * isn't the case at least when we get here by doing a
2680 * simulated reset via debugs, so get an RPM reference.
2681 */
2682 intel_runtime_pm_get(dev_priv);
17e1df07
DV
2683 /*
2684 * All state reset _must_ be completed before we update the
2685 * reset counter, for otherwise waiters might miss the reset
2686 * pending state and not properly drop locks, resulting in
2687 * deadlocks with the reset work.
2688 */
f69061be
DV
2689 ret = i915_reset(dev);
2690
17e1df07
DV
2691 intel_display_handle_reset(dev);
2692
f454c694
ID
2693 intel_runtime_pm_put(dev_priv);
2694
f69061be
DV
2695 if (ret == 0) {
2696 /*
2697 * After all the gem state is reset, increment the reset
2698 * counter and wake up everyone waiting for the reset to
2699 * complete.
2700 *
2701 * Since unlock operations are a one-sided barrier only,
2702 * we need to insert a barrier here to order any seqno
2703 * updates before
2704 * the counter increment.
2705 */
4e857c58 2706 smp_mb__before_atomic();
f69061be
DV
2707 atomic_inc(&dev_priv->gpu_error.reset_counter);
2708
5bdebb18 2709 kobject_uevent_env(&dev->primary->kdev->kobj,
f69061be 2710 KOBJ_CHANGE, reset_done_event);
1f83fee0 2711 } else {
2ac0f450 2712 atomic_set_mask(I915_WEDGED, &error->reset_counter);
f316a42c 2713 }
1f83fee0 2714
17e1df07
DV
2715 /*
2716 * Note: The wake_up also serves as a memory barrier so that
2717 * waiters see the update value of the reset counter atomic_t.
2718 */
2719 i915_error_wake_up(dev_priv, true);
f316a42c 2720 }
8a905236
JB
2721}
2722
35aed2e6 2723static void i915_report_and_clear_eir(struct drm_device *dev)
8a905236
JB
2724{
2725 struct drm_i915_private *dev_priv = dev->dev_private;
bd9854f9 2726 uint32_t instdone[I915_NUM_INSTDONE_REG];
8a905236 2727 u32 eir = I915_READ(EIR);
050ee91f 2728 int pipe, i;
8a905236 2729
35aed2e6
CW
2730 if (!eir)
2731 return;
8a905236 2732
a70491cc 2733 pr_err("render error detected, EIR: 0x%08x\n", eir);
8a905236 2734
bd9854f9
BW
2735 i915_get_extra_instdone(dev, instdone);
2736
8a905236
JB
2737 if (IS_G4X(dev)) {
2738 if (eir & (GM45_ERROR_MEM_PRIV | GM45_ERROR_CP_PRIV)) {
2739 u32 ipeir = I915_READ(IPEIR_I965);
2740
a70491cc
JP
2741 pr_err(" IPEIR: 0x%08x\n", I915_READ(IPEIR_I965));
2742 pr_err(" IPEHR: 0x%08x\n", I915_READ(IPEHR_I965));
050ee91f
BW
2743 for (i = 0; i < ARRAY_SIZE(instdone); i++)
2744 pr_err(" INSTDONE_%d: 0x%08x\n", i, instdone[i]);
a70491cc 2745 pr_err(" INSTPS: 0x%08x\n", I915_READ(INSTPS));
a70491cc 2746 pr_err(" ACTHD: 0x%08x\n", I915_READ(ACTHD_I965));
8a905236 2747 I915_WRITE(IPEIR_I965, ipeir);
3143a2bf 2748 POSTING_READ(IPEIR_I965);
8a905236
JB
2749 }
2750 if (eir & GM45_ERROR_PAGE_TABLE) {
2751 u32 pgtbl_err = I915_READ(PGTBL_ER);
a70491cc
JP
2752 pr_err("page table error\n");
2753 pr_err(" PGTBL_ER: 0x%08x\n", pgtbl_err);
8a905236 2754 I915_WRITE(PGTBL_ER, pgtbl_err);
3143a2bf 2755 POSTING_READ(PGTBL_ER);
8a905236
JB
2756 }
2757 }
2758
a6c45cf0 2759 if (!IS_GEN2(dev)) {
8a905236
JB
2760 if (eir & I915_ERROR_PAGE_TABLE) {
2761 u32 pgtbl_err = I915_READ(PGTBL_ER);
a70491cc
JP
2762 pr_err("page table error\n");
2763 pr_err(" PGTBL_ER: 0x%08x\n", pgtbl_err);
8a905236 2764 I915_WRITE(PGTBL_ER, pgtbl_err);
3143a2bf 2765 POSTING_READ(PGTBL_ER);
8a905236
JB
2766 }
2767 }
2768
2769 if (eir & I915_ERROR_MEMORY_REFRESH) {
a70491cc 2770 pr_err("memory refresh error:\n");
9db4a9c7 2771 for_each_pipe(pipe)
a70491cc 2772 pr_err("pipe %c stat: 0x%08x\n",
9db4a9c7 2773 pipe_name(pipe), I915_READ(PIPESTAT(pipe)));
8a905236
JB
2774 /* pipestat has already been acked */
2775 }
2776 if (eir & I915_ERROR_INSTRUCTION) {
a70491cc
JP
2777 pr_err("instruction error\n");
2778 pr_err(" INSTPM: 0x%08x\n", I915_READ(INSTPM));
050ee91f
BW
2779 for (i = 0; i < ARRAY_SIZE(instdone); i++)
2780 pr_err(" INSTDONE_%d: 0x%08x\n", i, instdone[i]);
a6c45cf0 2781 if (INTEL_INFO(dev)->gen < 4) {
8a905236
JB
2782 u32 ipeir = I915_READ(IPEIR);
2783
a70491cc
JP
2784 pr_err(" IPEIR: 0x%08x\n", I915_READ(IPEIR));
2785 pr_err(" IPEHR: 0x%08x\n", I915_READ(IPEHR));
a70491cc 2786 pr_err(" ACTHD: 0x%08x\n", I915_READ(ACTHD));
8a905236 2787 I915_WRITE(IPEIR, ipeir);
3143a2bf 2788 POSTING_READ(IPEIR);
8a905236
JB
2789 } else {
2790 u32 ipeir = I915_READ(IPEIR_I965);
2791
a70491cc
JP
2792 pr_err(" IPEIR: 0x%08x\n", I915_READ(IPEIR_I965));
2793 pr_err(" IPEHR: 0x%08x\n", I915_READ(IPEHR_I965));
a70491cc 2794 pr_err(" INSTPS: 0x%08x\n", I915_READ(INSTPS));
a70491cc 2795 pr_err(" ACTHD: 0x%08x\n", I915_READ(ACTHD_I965));
8a905236 2796 I915_WRITE(IPEIR_I965, ipeir);
3143a2bf 2797 POSTING_READ(IPEIR_I965);
8a905236
JB
2798 }
2799 }
2800
2801 I915_WRITE(EIR, eir);
3143a2bf 2802 POSTING_READ(EIR);
8a905236
JB
2803 eir = I915_READ(EIR);
2804 if (eir) {
2805 /*
2806 * some errors might have become stuck,
2807 * mask them.
2808 */
2809 DRM_ERROR("EIR stuck: 0x%08x, masking\n", eir);
2810 I915_WRITE(EMR, I915_READ(EMR) | eir);
2811 I915_WRITE(IIR, I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT);
2812 }
35aed2e6
CW
2813}
2814
2815/**
2816 * i915_handle_error - handle an error interrupt
2817 * @dev: drm device
2818 *
2819 * Do some basic checking of regsiter state at error interrupt time and
2820 * dump it to the syslog. Also call i915_capture_error_state() to make
2821 * sure we get a record and make it available in debugfs. Fire a uevent
2822 * so userspace knows something bad happened (should trigger collection
2823 * of a ring dump etc.).
2824 */
58174462
MK
2825void i915_handle_error(struct drm_device *dev, bool wedged,
2826 const char *fmt, ...)
35aed2e6
CW
2827{
2828 struct drm_i915_private *dev_priv = dev->dev_private;
58174462
MK
2829 va_list args;
2830 char error_msg[80];
35aed2e6 2831
58174462
MK
2832 va_start(args, fmt);
2833 vscnprintf(error_msg, sizeof(error_msg), fmt, args);
2834 va_end(args);
2835
2836 i915_capture_error_state(dev, wedged, error_msg);
35aed2e6 2837 i915_report_and_clear_eir(dev);
8a905236 2838
ba1234d1 2839 if (wedged) {
f69061be
DV
2840 atomic_set_mask(I915_RESET_IN_PROGRESS_FLAG,
2841 &dev_priv->gpu_error.reset_counter);
ba1234d1 2842
11ed50ec 2843 /*
17e1df07
DV
2844 * Wakeup waiting processes so that the reset work function
2845 * i915_error_work_func doesn't deadlock trying to grab various
2846 * locks. By bumping the reset counter first, the woken
2847 * processes will see a reset in progress and back off,
2848 * releasing their locks and then wait for the reset completion.
2849 * We must do this for _all_ gpu waiters that might hold locks
2850 * that the reset work needs to acquire.
2851 *
2852 * Note: The wake_up serves as the required memory barrier to
2853 * ensure that the waiters see the updated value of the reset
2854 * counter atomic_t.
11ed50ec 2855 */
17e1df07 2856 i915_error_wake_up(dev_priv, false);
11ed50ec
BG
2857 }
2858
122f46ba
DV
2859 /*
2860 * Our reset work can grab modeset locks (since it needs to reset the
2861 * state of outstanding pagelips). Hence it must not be run on our own
2862 * dev-priv->wq work queue for otherwise the flush_work in the pageflip
2863 * code will deadlock.
2864 */
2865 schedule_work(&dev_priv->gpu_error.work);
8a905236
JB
2866}
2867
21ad8330 2868static void __always_unused i915_pageflip_stall_check(struct drm_device *dev, int pipe)
4e5359cd 2869{
2d1013dd 2870 struct drm_i915_private *dev_priv = dev->dev_private;
4e5359cd
SF
2871 struct drm_crtc *crtc = dev_priv->pipe_to_crtc_mapping[pipe];
2872 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
05394f39 2873 struct drm_i915_gem_object *obj;
4e5359cd
SF
2874 struct intel_unpin_work *work;
2875 unsigned long flags;
2876 bool stall_detected;
2877
2878 /* Ignore early vblank irqs */
2879 if (intel_crtc == NULL)
2880 return;
2881
2882 spin_lock_irqsave(&dev->event_lock, flags);
2883 work = intel_crtc->unpin_work;
2884
e7d841ca
CW
2885 if (work == NULL ||
2886 atomic_read(&work->pending) >= INTEL_FLIP_COMPLETE ||
2887 !work->enable_stall_check) {
4e5359cd
SF
2888 /* Either the pending flip IRQ arrived, or we're too early. Don't check */
2889 spin_unlock_irqrestore(&dev->event_lock, flags);
2890 return;
2891 }
2892
2893 /* Potential stall - if we see that the flip has happened, assume a missed interrupt */
05394f39 2894 obj = work->pending_flip_obj;
a6c45cf0 2895 if (INTEL_INFO(dev)->gen >= 4) {
9db4a9c7 2896 int dspsurf = DSPSURF(intel_crtc->plane);
446f2545 2897 stall_detected = I915_HI_DISPBASE(I915_READ(dspsurf)) ==
f343c5f6 2898 i915_gem_obj_ggtt_offset(obj);
4e5359cd 2899 } else {
9db4a9c7 2900 int dspaddr = DSPADDR(intel_crtc->plane);
f343c5f6 2901 stall_detected = I915_READ(dspaddr) == (i915_gem_obj_ggtt_offset(obj) +
f4510a27
MR
2902 crtc->y * crtc->primary->fb->pitches[0] +
2903 crtc->x * crtc->primary->fb->bits_per_pixel/8);
4e5359cd
SF
2904 }
2905
2906 spin_unlock_irqrestore(&dev->event_lock, flags);
2907
2908 if (stall_detected) {
2909 DRM_DEBUG_DRIVER("Pageflip stall detected\n");
2910 intel_prepare_page_flip(dev, intel_crtc->plane);
2911 }
2912}
2913
42f52ef8
KP
2914/* Called from drm generic code, passed 'crtc' which
2915 * we use as a pipe index
2916 */
f71d4af4 2917static int i915_enable_vblank(struct drm_device *dev, int pipe)
0a3e67a4 2918{
2d1013dd 2919 struct drm_i915_private *dev_priv = dev->dev_private;
e9d21d7f 2920 unsigned long irqflags;
71e0ffa5 2921
5eddb70b 2922 if (!i915_pipe_enabled(dev, pipe))
71e0ffa5 2923 return -EINVAL;
0a3e67a4 2924
1ec14ad3 2925 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
f796cf8f 2926 if (INTEL_INFO(dev)->gen >= 4)
7c463586 2927 i915_enable_pipestat(dev_priv, pipe,
755e9019 2928 PIPE_START_VBLANK_INTERRUPT_STATUS);
e9d21d7f 2929 else
7c463586 2930 i915_enable_pipestat(dev_priv, pipe,
755e9019 2931 PIPE_VBLANK_INTERRUPT_STATUS);
1ec14ad3 2932 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
8692d00e 2933
0a3e67a4
JB
2934 return 0;
2935}
2936
f71d4af4 2937static int ironlake_enable_vblank(struct drm_device *dev, int pipe)
f796cf8f 2938{
2d1013dd 2939 struct drm_i915_private *dev_priv = dev->dev_private;
f796cf8f 2940 unsigned long irqflags;
b518421f 2941 uint32_t bit = (INTEL_INFO(dev)->gen >= 7) ? DE_PIPE_VBLANK_IVB(pipe) :
40da17c2 2942 DE_PIPE_VBLANK(pipe);
f796cf8f
JB
2943
2944 if (!i915_pipe_enabled(dev, pipe))
2945 return -EINVAL;
2946
2947 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
b518421f 2948 ironlake_enable_display_irq(dev_priv, bit);
b1f14ad0
JB
2949 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
2950
2951 return 0;
2952}
2953
7e231dbe
JB
2954static int valleyview_enable_vblank(struct drm_device *dev, int pipe)
2955{
2d1013dd 2956 struct drm_i915_private *dev_priv = dev->dev_private;
7e231dbe 2957 unsigned long irqflags;
7e231dbe
JB
2958
2959 if (!i915_pipe_enabled(dev, pipe))
2960 return -EINVAL;
2961
2962 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
31acc7f5 2963 i915_enable_pipestat(dev_priv, pipe,
755e9019 2964 PIPE_START_VBLANK_INTERRUPT_STATUS);
7e231dbe
JB
2965 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
2966
2967 return 0;
2968}
2969
abd58f01
BW
2970static int gen8_enable_vblank(struct drm_device *dev, int pipe)
2971{
2972 struct drm_i915_private *dev_priv = dev->dev_private;
2973 unsigned long irqflags;
abd58f01
BW
2974
2975 if (!i915_pipe_enabled(dev, pipe))
2976 return -EINVAL;
2977
2978 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
7167d7c6
DV
2979 dev_priv->de_irq_mask[pipe] &= ~GEN8_PIPE_VBLANK;
2980 I915_WRITE(GEN8_DE_PIPE_IMR(pipe), dev_priv->de_irq_mask[pipe]);
2981 POSTING_READ(GEN8_DE_PIPE_IMR(pipe));
abd58f01
BW
2982 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
2983 return 0;
2984}
2985
42f52ef8
KP
2986/* Called from drm generic code, passed 'crtc' which
2987 * we use as a pipe index
2988 */
f71d4af4 2989static void i915_disable_vblank(struct drm_device *dev, int pipe)
0a3e67a4 2990{
2d1013dd 2991 struct drm_i915_private *dev_priv = dev->dev_private;
e9d21d7f 2992 unsigned long irqflags;
0a3e67a4 2993
1ec14ad3 2994 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
f796cf8f 2995 i915_disable_pipestat(dev_priv, pipe,
755e9019
ID
2996 PIPE_VBLANK_INTERRUPT_STATUS |
2997 PIPE_START_VBLANK_INTERRUPT_STATUS);
f796cf8f
JB
2998 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
2999}
3000
f71d4af4 3001static void ironlake_disable_vblank(struct drm_device *dev, int pipe)
f796cf8f 3002{
2d1013dd 3003 struct drm_i915_private *dev_priv = dev->dev_private;
f796cf8f 3004 unsigned long irqflags;
b518421f 3005 uint32_t bit = (INTEL_INFO(dev)->gen >= 7) ? DE_PIPE_VBLANK_IVB(pipe) :
40da17c2 3006 DE_PIPE_VBLANK(pipe);
f796cf8f
JB
3007
3008 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
b518421f 3009 ironlake_disable_display_irq(dev_priv, bit);
b1f14ad0
JB
3010 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
3011}
3012
7e231dbe
JB
3013static void valleyview_disable_vblank(struct drm_device *dev, int pipe)
3014{
2d1013dd 3015 struct drm_i915_private *dev_priv = dev->dev_private;
7e231dbe 3016 unsigned long irqflags;
7e231dbe
JB
3017
3018 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
31acc7f5 3019 i915_disable_pipestat(dev_priv, pipe,
755e9019 3020 PIPE_START_VBLANK_INTERRUPT_STATUS);
7e231dbe
JB
3021 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
3022}
3023
abd58f01
BW
3024static void gen8_disable_vblank(struct drm_device *dev, int pipe)
3025{
3026 struct drm_i915_private *dev_priv = dev->dev_private;
3027 unsigned long irqflags;
abd58f01
BW
3028
3029 if (!i915_pipe_enabled(dev, pipe))
3030 return;
3031
3032 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
7167d7c6
DV
3033 dev_priv->de_irq_mask[pipe] |= GEN8_PIPE_VBLANK;
3034 I915_WRITE(GEN8_DE_PIPE_IMR(pipe), dev_priv->de_irq_mask[pipe]);
3035 POSTING_READ(GEN8_DE_PIPE_IMR(pipe));
abd58f01
BW
3036 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
3037}
3038
893eead0 3039static u32
a4872ba6 3040ring_last_seqno(struct intel_engine_cs *ring)
852835f3 3041{
893eead0
CW
3042 return list_entry(ring->request_list.prev,
3043 struct drm_i915_gem_request, list)->seqno;
3044}
3045
9107e9d2 3046static bool
a4872ba6 3047ring_idle(struct intel_engine_cs *ring, u32 seqno)
9107e9d2
CW
3048{
3049 return (list_empty(&ring->request_list) ||
3050 i915_seqno_passed(seqno, ring_last_seqno(ring)));
f65d9421
BG
3051}
3052
a028c4b0
DV
3053static bool
3054ipehr_is_semaphore_wait(struct drm_device *dev, u32 ipehr)
3055{
3056 if (INTEL_INFO(dev)->gen >= 8) {
a6cdb93a 3057 return (ipehr >> 23) == 0x1c;
a028c4b0
DV
3058 } else {
3059 ipehr &= ~MI_SEMAPHORE_SYNC_MASK;
3060 return ipehr == (MI_SEMAPHORE_MBOX | MI_SEMAPHORE_COMPARE |
3061 MI_SEMAPHORE_REGISTER);
3062 }
3063}
3064
a4872ba6 3065static struct intel_engine_cs *
a6cdb93a 3066semaphore_wait_to_signaller_ring(struct intel_engine_cs *ring, u32 ipehr, u64 offset)
921d42ea
DV
3067{
3068 struct drm_i915_private *dev_priv = ring->dev->dev_private;
a4872ba6 3069 struct intel_engine_cs *signaller;
921d42ea
DV
3070 int i;
3071
3072 if (INTEL_INFO(dev_priv->dev)->gen >= 8) {
a6cdb93a
RV
3073 for_each_ring(signaller, dev_priv, i) {
3074 if (ring == signaller)
3075 continue;
3076
3077 if (offset == signaller->semaphore.signal_ggtt[ring->id])
3078 return signaller;
3079 }
921d42ea
DV
3080 } else {
3081 u32 sync_bits = ipehr & MI_SEMAPHORE_SYNC_MASK;
3082
3083 for_each_ring(signaller, dev_priv, i) {
3084 if(ring == signaller)
3085 continue;
3086
ebc348b2 3087 if (sync_bits == signaller->semaphore.mbox.wait[ring->id])
921d42ea
DV
3088 return signaller;
3089 }
3090 }
3091
a6cdb93a
RV
3092 DRM_ERROR("No signaller ring found for ring %i, ipehr 0x%08x, offset 0x%016llx\n",
3093 ring->id, ipehr, offset);
921d42ea
DV
3094
3095 return NULL;
3096}
3097
a4872ba6
OM
3098static struct intel_engine_cs *
3099semaphore_waits_for(struct intel_engine_cs *ring, u32 *seqno)
a24a11e6
CW
3100{
3101 struct drm_i915_private *dev_priv = ring->dev->dev_private;
88fe429d 3102 u32 cmd, ipehr, head;
a6cdb93a
RV
3103 u64 offset = 0;
3104 int i, backwards;
a24a11e6
CW
3105
3106 ipehr = I915_READ(RING_IPEHR(ring->mmio_base));
a028c4b0 3107 if (!ipehr_is_semaphore_wait(ring->dev, ipehr))
6274f212 3108 return NULL;
a24a11e6 3109
88fe429d
DV
3110 /*
3111 * HEAD is likely pointing to the dword after the actual command,
3112 * so scan backwards until we find the MBOX. But limit it to just 3
a6cdb93a
RV
3113 * or 4 dwords depending on the semaphore wait command size.
3114 * Note that we don't care about ACTHD here since that might
88fe429d
DV
3115 * point at at batch, and semaphores are always emitted into the
3116 * ringbuffer itself.
a24a11e6 3117 */
88fe429d 3118 head = I915_READ_HEAD(ring) & HEAD_ADDR;
a6cdb93a 3119 backwards = (INTEL_INFO(ring->dev)->gen >= 8) ? 5 : 4;
88fe429d 3120
a6cdb93a 3121 for (i = backwards; i; --i) {
88fe429d
DV
3122 /*
3123 * Be paranoid and presume the hw has gone off into the wild -
3124 * our ring is smaller than what the hardware (and hence
3125 * HEAD_ADDR) allows. Also handles wrap-around.
3126 */
ee1b1e5e 3127 head &= ring->buffer->size - 1;
88fe429d
DV
3128
3129 /* This here seems to blow up */
ee1b1e5e 3130 cmd = ioread32(ring->buffer->virtual_start + head);
a24a11e6
CW
3131 if (cmd == ipehr)
3132 break;
3133
88fe429d
DV
3134 head -= 4;
3135 }
a24a11e6 3136
88fe429d
DV
3137 if (!i)
3138 return NULL;
a24a11e6 3139
ee1b1e5e 3140 *seqno = ioread32(ring->buffer->virtual_start + head + 4) + 1;
a6cdb93a
RV
3141 if (INTEL_INFO(ring->dev)->gen >= 8) {
3142 offset = ioread32(ring->buffer->virtual_start + head + 12);
3143 offset <<= 32;
3144 offset = ioread32(ring->buffer->virtual_start + head + 8);
3145 }
3146 return semaphore_wait_to_signaller_ring(ring, ipehr, offset);
a24a11e6
CW
3147}
3148
a4872ba6 3149static int semaphore_passed(struct intel_engine_cs *ring)
6274f212
CW
3150{
3151 struct drm_i915_private *dev_priv = ring->dev->dev_private;
a4872ba6 3152 struct intel_engine_cs *signaller;
a0d036b0 3153 u32 seqno;
6274f212 3154
4be17381 3155 ring->hangcheck.deadlock++;
6274f212
CW
3156
3157 signaller = semaphore_waits_for(ring, &seqno);
4be17381
CW
3158 if (signaller == NULL)
3159 return -1;
3160
3161 /* Prevent pathological recursion due to driver bugs */
3162 if (signaller->hangcheck.deadlock >= I915_NUM_RINGS)
6274f212
CW
3163 return -1;
3164
4be17381
CW
3165 if (i915_seqno_passed(signaller->get_seqno(signaller, false), seqno))
3166 return 1;
3167
a0d036b0
CW
3168 /* cursory check for an unkickable deadlock */
3169 if (I915_READ_CTL(signaller) & RING_WAIT_SEMAPHORE &&
3170 semaphore_passed(signaller) < 0)
4be17381
CW
3171 return -1;
3172
3173 return 0;
6274f212
CW
3174}
3175
3176static void semaphore_clear_deadlocks(struct drm_i915_private *dev_priv)
3177{
a4872ba6 3178 struct intel_engine_cs *ring;
6274f212
CW
3179 int i;
3180
3181 for_each_ring(ring, dev_priv, i)
4be17381 3182 ring->hangcheck.deadlock = 0;
6274f212
CW
3183}
3184
ad8beaea 3185static enum intel_ring_hangcheck_action
a4872ba6 3186ring_stuck(struct intel_engine_cs *ring, u64 acthd)
1ec14ad3
CW
3187{
3188 struct drm_device *dev = ring->dev;
3189 struct drm_i915_private *dev_priv = dev->dev_private;
9107e9d2
CW
3190 u32 tmp;
3191
6274f212 3192 if (ring->hangcheck.acthd != acthd)
f2f4d82f 3193 return HANGCHECK_ACTIVE;
6274f212 3194
9107e9d2 3195 if (IS_GEN2(dev))
f2f4d82f 3196 return HANGCHECK_HUNG;
9107e9d2
CW
3197
3198 /* Is the chip hanging on a WAIT_FOR_EVENT?
3199 * If so we can simply poke the RB_WAIT bit
3200 * and break the hang. This should work on
3201 * all but the second generation chipsets.
3202 */
3203 tmp = I915_READ_CTL(ring);
1ec14ad3 3204 if (tmp & RING_WAIT) {
58174462
MK
3205 i915_handle_error(dev, false,
3206 "Kicking stuck wait on %s",
3207 ring->name);
1ec14ad3 3208 I915_WRITE_CTL(ring, tmp);
f2f4d82f 3209 return HANGCHECK_KICK;
6274f212
CW
3210 }
3211
3212 if (INTEL_INFO(dev)->gen >= 6 && tmp & RING_WAIT_SEMAPHORE) {
3213 switch (semaphore_passed(ring)) {
3214 default:
f2f4d82f 3215 return HANGCHECK_HUNG;
6274f212 3216 case 1:
58174462
MK
3217 i915_handle_error(dev, false,
3218 "Kicking stuck semaphore on %s",
3219 ring->name);
6274f212 3220 I915_WRITE_CTL(ring, tmp);
f2f4d82f 3221 return HANGCHECK_KICK;
6274f212 3222 case 0:
f2f4d82f 3223 return HANGCHECK_WAIT;
6274f212 3224 }
9107e9d2 3225 }
ed5cbb03 3226
f2f4d82f 3227 return HANGCHECK_HUNG;
ed5cbb03
MK
3228}
3229
f65d9421
BG
3230/**
3231 * This is called when the chip hasn't reported back with completed
05407ff8
MK
3232 * batchbuffers in a long time. We keep track per ring seqno progress and
3233 * if there are no progress, hangcheck score for that ring is increased.
3234 * Further, acthd is inspected to see if the ring is stuck. On stuck case
3235 * we kick the ring. If we see no progress on three subsequent calls
3236 * we assume chip is wedged and try to fix it by resetting the chip.
f65d9421 3237 */
a658b5d2 3238static void i915_hangcheck_elapsed(unsigned long data)
f65d9421
BG
3239{
3240 struct drm_device *dev = (struct drm_device *)data;
2d1013dd 3241 struct drm_i915_private *dev_priv = dev->dev_private;
a4872ba6 3242 struct intel_engine_cs *ring;
b4519513 3243 int i;
05407ff8 3244 int busy_count = 0, rings_hung = 0;
9107e9d2
CW
3245 bool stuck[I915_NUM_RINGS] = { 0 };
3246#define BUSY 1
3247#define KICK 5
3248#define HUNG 20
893eead0 3249
d330a953 3250 if (!i915.enable_hangcheck)
3e0dc6b0
BW
3251 return;
3252
b4519513 3253 for_each_ring(ring, dev_priv, i) {
50877445
CW
3254 u64 acthd;
3255 u32 seqno;
9107e9d2 3256 bool busy = true;
05407ff8 3257
6274f212
CW
3258 semaphore_clear_deadlocks(dev_priv);
3259
05407ff8
MK
3260 seqno = ring->get_seqno(ring, false);
3261 acthd = intel_ring_get_active_head(ring);
b4519513 3262
9107e9d2
CW
3263 if (ring->hangcheck.seqno == seqno) {
3264 if (ring_idle(ring, seqno)) {
da661464
MK
3265 ring->hangcheck.action = HANGCHECK_IDLE;
3266
9107e9d2
CW
3267 if (waitqueue_active(&ring->irq_queue)) {
3268 /* Issue a wake-up to catch stuck h/w. */
094f9a54 3269 if (!test_and_set_bit(ring->id, &dev_priv->gpu_error.missed_irq_rings)) {
f4adcd24
DV
3270 if (!(dev_priv->gpu_error.test_irq_rings & intel_ring_flag(ring)))
3271 DRM_ERROR("Hangcheck timer elapsed... %s idle\n",
3272 ring->name);
3273 else
3274 DRM_INFO("Fake missed irq on %s\n",
3275 ring->name);
094f9a54
CW
3276 wake_up_all(&ring->irq_queue);
3277 }
3278 /* Safeguard against driver failure */
3279 ring->hangcheck.score += BUSY;
9107e9d2
CW
3280 } else
3281 busy = false;
05407ff8 3282 } else {
6274f212
CW
3283 /* We always increment the hangcheck score
3284 * if the ring is busy and still processing
3285 * the same request, so that no single request
3286 * can run indefinitely (such as a chain of
3287 * batches). The only time we do not increment
3288 * the hangcheck score on this ring, if this
3289 * ring is in a legitimate wait for another
3290 * ring. In that case the waiting ring is a
3291 * victim and we want to be sure we catch the
3292 * right culprit. Then every time we do kick
3293 * the ring, add a small increment to the
3294 * score so that we can catch a batch that is
3295 * being repeatedly kicked and so responsible
3296 * for stalling the machine.
3297 */
ad8beaea
MK
3298 ring->hangcheck.action = ring_stuck(ring,
3299 acthd);
3300
3301 switch (ring->hangcheck.action) {
da661464 3302 case HANGCHECK_IDLE:
f2f4d82f 3303 case HANGCHECK_WAIT:
6274f212 3304 break;
f2f4d82f 3305 case HANGCHECK_ACTIVE:
ea04cb31 3306 ring->hangcheck.score += BUSY;
6274f212 3307 break;
f2f4d82f 3308 case HANGCHECK_KICK:
ea04cb31 3309 ring->hangcheck.score += KICK;
6274f212 3310 break;
f2f4d82f 3311 case HANGCHECK_HUNG:
ea04cb31 3312 ring->hangcheck.score += HUNG;
6274f212
CW
3313 stuck[i] = true;
3314 break;
3315 }
05407ff8 3316 }
9107e9d2 3317 } else {
da661464
MK
3318 ring->hangcheck.action = HANGCHECK_ACTIVE;
3319
9107e9d2
CW
3320 /* Gradually reduce the count so that we catch DoS
3321 * attempts across multiple batches.
3322 */
3323 if (ring->hangcheck.score > 0)
3324 ring->hangcheck.score--;
d1e61e7f
CW
3325 }
3326
05407ff8
MK
3327 ring->hangcheck.seqno = seqno;
3328 ring->hangcheck.acthd = acthd;
9107e9d2 3329 busy_count += busy;
893eead0 3330 }
b9201c14 3331
92cab734 3332 for_each_ring(ring, dev_priv, i) {
b6b0fac0 3333 if (ring->hangcheck.score >= HANGCHECK_SCORE_RING_HUNG) {
b8d88d1d
DV
3334 DRM_INFO("%s on %s\n",
3335 stuck[i] ? "stuck" : "no progress",
3336 ring->name);
a43adf07 3337 rings_hung++;
92cab734
MK
3338 }
3339 }
3340
05407ff8 3341 if (rings_hung)
58174462 3342 return i915_handle_error(dev, true, "Ring hung");
f65d9421 3343
05407ff8
MK
3344 if (busy_count)
3345 /* Reset timer case chip hangs without another request
3346 * being added */
10cd45b6
MK
3347 i915_queue_hangcheck(dev);
3348}
3349
3350void i915_queue_hangcheck(struct drm_device *dev)
3351{
3352 struct drm_i915_private *dev_priv = dev->dev_private;
d330a953 3353 if (!i915.enable_hangcheck)
10cd45b6
MK
3354 return;
3355
3356 mod_timer(&dev_priv->gpu_error.hangcheck_timer,
3357 round_jiffies_up(jiffies + DRM_I915_HANGCHECK_JIFFIES));
f65d9421
BG
3358}
3359
1c69eb42 3360static void ibx_irq_reset(struct drm_device *dev)
91738a95
PZ
3361{
3362 struct drm_i915_private *dev_priv = dev->dev_private;
3363
3364 if (HAS_PCH_NOP(dev))
3365 return;
3366
f86f3fb0 3367 GEN5_IRQ_RESET(SDE);
105b122e
PZ
3368
3369 if (HAS_PCH_CPT(dev) || HAS_PCH_LPT(dev))
3370 I915_WRITE(SERR_INT, 0xffffffff);
622364b6 3371}
105b122e 3372
622364b6
PZ
3373/*
3374 * SDEIER is also touched by the interrupt handler to work around missed PCH
3375 * interrupts. Hence we can't update it after the interrupt handler is enabled -
3376 * instead we unconditionally enable all PCH interrupt sources here, but then
3377 * only unmask them as needed with SDEIMR.
3378 *
3379 * This function needs to be called before interrupts are enabled.
3380 */
3381static void ibx_irq_pre_postinstall(struct drm_device *dev)
3382{
3383 struct drm_i915_private *dev_priv = dev->dev_private;
3384
3385 if (HAS_PCH_NOP(dev))
3386 return;
3387
3388 WARN_ON(I915_READ(SDEIER) != 0);
91738a95
PZ
3389 I915_WRITE(SDEIER, 0xffffffff);
3390 POSTING_READ(SDEIER);
3391}
3392
7c4d664e 3393static void gen5_gt_irq_reset(struct drm_device *dev)
d18ea1b5
DV
3394{
3395 struct drm_i915_private *dev_priv = dev->dev_private;
3396
f86f3fb0 3397 GEN5_IRQ_RESET(GT);
a9d356a6 3398 if (INTEL_INFO(dev)->gen >= 6)
f86f3fb0 3399 GEN5_IRQ_RESET(GEN6_PM);
d18ea1b5
DV
3400}
3401
1da177e4
LT
3402/* drm_dma.h hooks
3403*/
be30b29f 3404static void ironlake_irq_reset(struct drm_device *dev)
036a4a7d 3405{
2d1013dd 3406 struct drm_i915_private *dev_priv = dev->dev_private;
036a4a7d 3407
0c841212 3408 I915_WRITE(HWSTAM, 0xffffffff);
bdfcdb63 3409
f86f3fb0 3410 GEN5_IRQ_RESET(DE);
c6d954c1
PZ
3411 if (IS_GEN7(dev))
3412 I915_WRITE(GEN7_ERR_INT, 0xffffffff);
036a4a7d 3413
7c4d664e 3414 gen5_gt_irq_reset(dev);
c650156a 3415
1c69eb42 3416 ibx_irq_reset(dev);
7d99163d 3417}
c650156a 3418
7e231dbe
JB
3419static void valleyview_irq_preinstall(struct drm_device *dev)
3420{
2d1013dd 3421 struct drm_i915_private *dev_priv = dev->dev_private;
7e231dbe
JB
3422 int pipe;
3423
7e231dbe
JB
3424 /* VLV magic */
3425 I915_WRITE(VLV_IMR, 0);
3426 I915_WRITE(RING_IMR(RENDER_RING_BASE), 0);
3427 I915_WRITE(RING_IMR(GEN6_BSD_RING_BASE), 0);
3428 I915_WRITE(RING_IMR(BLT_RING_BASE), 0);
3429
7e231dbe
JB
3430 /* and GT */
3431 I915_WRITE(GTIIR, I915_READ(GTIIR));
3432 I915_WRITE(GTIIR, I915_READ(GTIIR));
d18ea1b5 3433
7c4d664e 3434 gen5_gt_irq_reset(dev);
7e231dbe
JB
3435
3436 I915_WRITE(DPINVGTT, 0xff);
3437
3438 I915_WRITE(PORT_HOTPLUG_EN, 0);
3439 I915_WRITE(PORT_HOTPLUG_STAT, I915_READ(PORT_HOTPLUG_STAT));
3440 for_each_pipe(pipe)
3441 I915_WRITE(PIPESTAT(pipe), 0xffff);
3442 I915_WRITE(VLV_IIR, 0xffffffff);
3443 I915_WRITE(VLV_IMR, 0xffffffff);
3444 I915_WRITE(VLV_IER, 0x0);
3445 POSTING_READ(VLV_IER);
3446}
3447
d6e3cca3
DV
3448static void gen8_gt_irq_reset(struct drm_i915_private *dev_priv)
3449{
3450 GEN8_IRQ_RESET_NDX(GT, 0);
3451 GEN8_IRQ_RESET_NDX(GT, 1);
3452 GEN8_IRQ_RESET_NDX(GT, 2);
3453 GEN8_IRQ_RESET_NDX(GT, 3);
3454}
3455
823f6b38 3456static void gen8_irq_reset(struct drm_device *dev)
abd58f01
BW
3457{
3458 struct drm_i915_private *dev_priv = dev->dev_private;
3459 int pipe;
3460
abd58f01
BW
3461 I915_WRITE(GEN8_MASTER_IRQ, 0);
3462 POSTING_READ(GEN8_MASTER_IRQ);
3463
d6e3cca3 3464 gen8_gt_irq_reset(dev_priv);
abd58f01 3465
823f6b38 3466 for_each_pipe(pipe)
813bde43
PZ
3467 if (intel_display_power_enabled(dev_priv,
3468 POWER_DOMAIN_PIPE(pipe)))
3469 GEN8_IRQ_RESET_NDX(DE_PIPE, pipe);
abd58f01 3470
f86f3fb0
PZ
3471 GEN5_IRQ_RESET(GEN8_DE_PORT_);
3472 GEN5_IRQ_RESET(GEN8_DE_MISC_);
3473 GEN5_IRQ_RESET(GEN8_PCU_);
abd58f01 3474
1c69eb42 3475 ibx_irq_reset(dev);
abd58f01 3476}
09f2344d 3477
d49bdb0e
PZ
3478void gen8_irq_power_well_post_enable(struct drm_i915_private *dev_priv)
3479{
3480 unsigned long irqflags;
3481
3482 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
3483 GEN8_IRQ_INIT_NDX(DE_PIPE, PIPE_B, dev_priv->de_irq_mask[PIPE_B],
3484 ~dev_priv->de_irq_mask[PIPE_B]);
3485 GEN8_IRQ_INIT_NDX(DE_PIPE, PIPE_C, dev_priv->de_irq_mask[PIPE_C],
3486 ~dev_priv->de_irq_mask[PIPE_C]);
3487 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
3488}
3489
43f328d7
VS
3490static void cherryview_irq_preinstall(struct drm_device *dev)
3491{
3492 struct drm_i915_private *dev_priv = dev->dev_private;
3493 int pipe;
3494
3495 I915_WRITE(GEN8_MASTER_IRQ, 0);
3496 POSTING_READ(GEN8_MASTER_IRQ);
3497
d6e3cca3 3498 gen8_gt_irq_reset(dev_priv);
43f328d7
VS
3499
3500 GEN5_IRQ_RESET(GEN8_PCU_);
3501
3502 POSTING_READ(GEN8_PCU_IIR);
3503
3504 I915_WRITE(DPINVGTT, DPINVGTT_STATUS_MASK_CHV);
3505
3506 I915_WRITE(PORT_HOTPLUG_EN, 0);
3507 I915_WRITE(PORT_HOTPLUG_STAT, I915_READ(PORT_HOTPLUG_STAT));
3508
3509 for_each_pipe(pipe)
3510 I915_WRITE(PIPESTAT(pipe), 0xffff);
3511
3512 I915_WRITE(VLV_IMR, 0xffffffff);
3513 I915_WRITE(VLV_IER, 0x0);
3514 I915_WRITE(VLV_IIR, 0xffffffff);
3515 POSTING_READ(VLV_IIR);
3516}
3517
82a28bcf 3518static void ibx_hpd_irq_setup(struct drm_device *dev)
7fe0b973 3519{
2d1013dd 3520 struct drm_i915_private *dev_priv = dev->dev_private;
82a28bcf
DV
3521 struct drm_mode_config *mode_config = &dev->mode_config;
3522 struct intel_encoder *intel_encoder;
fee884ed 3523 u32 hotplug_irqs, hotplug, enabled_irqs = 0;
82a28bcf
DV
3524
3525 if (HAS_PCH_IBX(dev)) {
fee884ed 3526 hotplug_irqs = SDE_HOTPLUG_MASK;
82a28bcf 3527 list_for_each_entry(intel_encoder, &mode_config->encoder_list, base.head)
cd569aed 3528 if (dev_priv->hpd_stats[intel_encoder->hpd_pin].hpd_mark == HPD_ENABLED)
fee884ed 3529 enabled_irqs |= hpd_ibx[intel_encoder->hpd_pin];
82a28bcf 3530 } else {
fee884ed 3531 hotplug_irqs = SDE_HOTPLUG_MASK_CPT;
82a28bcf 3532 list_for_each_entry(intel_encoder, &mode_config->encoder_list, base.head)
cd569aed 3533 if (dev_priv->hpd_stats[intel_encoder->hpd_pin].hpd_mark == HPD_ENABLED)
fee884ed 3534 enabled_irqs |= hpd_cpt[intel_encoder->hpd_pin];
82a28bcf 3535 }
7fe0b973 3536
fee884ed 3537 ibx_display_interrupt_update(dev_priv, hotplug_irqs, enabled_irqs);
82a28bcf
DV
3538
3539 /*
3540 * Enable digital hotplug on the PCH, and configure the DP short pulse
3541 * duration to 2ms (which is the minimum in the Display Port spec)
3542 *
3543 * This register is the same on all known PCH chips.
3544 */
7fe0b973
KP
3545 hotplug = I915_READ(PCH_PORT_HOTPLUG);
3546 hotplug &= ~(PORTD_PULSE_DURATION_MASK|PORTC_PULSE_DURATION_MASK|PORTB_PULSE_DURATION_MASK);
3547 hotplug |= PORTD_HOTPLUG_ENABLE | PORTD_PULSE_DURATION_2ms;
3548 hotplug |= PORTC_HOTPLUG_ENABLE | PORTC_PULSE_DURATION_2ms;
3549 hotplug |= PORTB_HOTPLUG_ENABLE | PORTB_PULSE_DURATION_2ms;
3550 I915_WRITE(PCH_PORT_HOTPLUG, hotplug);
3551}
3552
d46da437
PZ
3553static void ibx_irq_postinstall(struct drm_device *dev)
3554{
2d1013dd 3555 struct drm_i915_private *dev_priv = dev->dev_private;
82a28bcf 3556 u32 mask;
e5868a31 3557
692a04cf
DV
3558 if (HAS_PCH_NOP(dev))
3559 return;
3560
105b122e 3561 if (HAS_PCH_IBX(dev))
5c673b60 3562 mask = SDE_GMBUS | SDE_AUX_MASK | SDE_POISON;
105b122e 3563 else
5c673b60 3564 mask = SDE_GMBUS_CPT | SDE_AUX_MASK_CPT;
8664281b 3565
337ba017 3566 GEN5_ASSERT_IIR_IS_ZERO(SDEIIR);
d46da437 3567 I915_WRITE(SDEIMR, ~mask);
d46da437
PZ
3568}
3569
0a9a8c91
DV
3570static void gen5_gt_irq_postinstall(struct drm_device *dev)
3571{
3572 struct drm_i915_private *dev_priv = dev->dev_private;
3573 u32 pm_irqs, gt_irqs;
3574
3575 pm_irqs = gt_irqs = 0;
3576
3577 dev_priv->gt_irq_mask = ~0;
040d2baa 3578 if (HAS_L3_DPF(dev)) {
0a9a8c91 3579 /* L3 parity interrupt is always unmasked. */
35a85ac6
BW
3580 dev_priv->gt_irq_mask = ~GT_PARITY_ERROR(dev);
3581 gt_irqs |= GT_PARITY_ERROR(dev);
0a9a8c91
DV
3582 }
3583
3584 gt_irqs |= GT_RENDER_USER_INTERRUPT;
3585 if (IS_GEN5(dev)) {
3586 gt_irqs |= GT_RENDER_PIPECTL_NOTIFY_INTERRUPT |
3587 ILK_BSD_USER_INTERRUPT;
3588 } else {
3589 gt_irqs |= GT_BLT_USER_INTERRUPT | GT_BSD_USER_INTERRUPT;
3590 }
3591
35079899 3592 GEN5_IRQ_INIT(GT, dev_priv->gt_irq_mask, gt_irqs);
0a9a8c91
DV
3593
3594 if (INTEL_INFO(dev)->gen >= 6) {
a6706b45 3595 pm_irqs |= dev_priv->pm_rps_events;
0a9a8c91
DV
3596
3597 if (HAS_VEBOX(dev))
3598 pm_irqs |= PM_VEBOX_USER_INTERRUPT;
3599
605cd25b 3600 dev_priv->pm_irq_mask = 0xffffffff;
35079899 3601 GEN5_IRQ_INIT(GEN6_PM, dev_priv->pm_irq_mask, pm_irqs);
0a9a8c91
DV
3602 }
3603}
3604
f71d4af4 3605static int ironlake_irq_postinstall(struct drm_device *dev)
036a4a7d 3606{
4bc9d430 3607 unsigned long irqflags;
2d1013dd 3608 struct drm_i915_private *dev_priv = dev->dev_private;
8e76f8dc
PZ
3609 u32 display_mask, extra_mask;
3610
3611 if (INTEL_INFO(dev)->gen >= 7) {
3612 display_mask = (DE_MASTER_IRQ_CONTROL | DE_GSE_IVB |
3613 DE_PCH_EVENT_IVB | DE_PLANEC_FLIP_DONE_IVB |
3614 DE_PLANEB_FLIP_DONE_IVB |
5c673b60 3615 DE_PLANEA_FLIP_DONE_IVB | DE_AUX_CHANNEL_A_IVB);
8e76f8dc 3616 extra_mask = (DE_PIPEC_VBLANK_IVB | DE_PIPEB_VBLANK_IVB |
5c673b60 3617 DE_PIPEA_VBLANK_IVB | DE_ERR_INT_IVB);
8e76f8dc
PZ
3618 } else {
3619 display_mask = (DE_MASTER_IRQ_CONTROL | DE_GSE | DE_PCH_EVENT |
3620 DE_PLANEA_FLIP_DONE | DE_PLANEB_FLIP_DONE |
5b3a856b 3621 DE_AUX_CHANNEL_A |
5b3a856b
DV
3622 DE_PIPEB_CRC_DONE | DE_PIPEA_CRC_DONE |
3623 DE_POISON);
5c673b60
DV
3624 extra_mask = DE_PIPEA_VBLANK | DE_PIPEB_VBLANK | DE_PCU_EVENT |
3625 DE_PIPEB_FIFO_UNDERRUN | DE_PIPEA_FIFO_UNDERRUN;
8e76f8dc 3626 }
036a4a7d 3627
1ec14ad3 3628 dev_priv->irq_mask = ~display_mask;
036a4a7d 3629
0c841212
PZ
3630 I915_WRITE(HWSTAM, 0xeffe);
3631
622364b6
PZ
3632 ibx_irq_pre_postinstall(dev);
3633
35079899 3634 GEN5_IRQ_INIT(DE, dev_priv->irq_mask, display_mask | extra_mask);
036a4a7d 3635
0a9a8c91 3636 gen5_gt_irq_postinstall(dev);
036a4a7d 3637
d46da437 3638 ibx_irq_postinstall(dev);
7fe0b973 3639
f97108d1 3640 if (IS_IRONLAKE_M(dev)) {
6005ce42
DV
3641 /* Enable PCU event interrupts
3642 *
3643 * spinlocking not required here for correctness since interrupt
4bc9d430
DV
3644 * setup is guaranteed to run in single-threaded context. But we
3645 * need it to make the assert_spin_locked happy. */
3646 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
f97108d1 3647 ironlake_enable_display_irq(dev_priv, DE_PCU_EVENT);
4bc9d430 3648 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
f97108d1
JB
3649 }
3650
036a4a7d
ZW
3651 return 0;
3652}
3653
f8b79e58
ID
3654static void valleyview_display_irqs_install(struct drm_i915_private *dev_priv)
3655{
3656 u32 pipestat_mask;
3657 u32 iir_mask;
3658
3659 pipestat_mask = PIPESTAT_INT_STATUS_MASK |
3660 PIPE_FIFO_UNDERRUN_STATUS;
3661
3662 I915_WRITE(PIPESTAT(PIPE_A), pipestat_mask);
3663 I915_WRITE(PIPESTAT(PIPE_B), pipestat_mask);
3664 POSTING_READ(PIPESTAT(PIPE_A));
3665
3666 pipestat_mask = PLANE_FLIP_DONE_INT_STATUS_VLV |
3667 PIPE_CRC_DONE_INTERRUPT_STATUS;
3668
3669 i915_enable_pipestat(dev_priv, PIPE_A, pipestat_mask |
3670 PIPE_GMBUS_INTERRUPT_STATUS);
3671 i915_enable_pipestat(dev_priv, PIPE_B, pipestat_mask);
3672
3673 iir_mask = I915_DISPLAY_PORT_INTERRUPT |
3674 I915_DISPLAY_PIPE_A_EVENT_INTERRUPT |
3675 I915_DISPLAY_PIPE_B_EVENT_INTERRUPT;
3676 dev_priv->irq_mask &= ~iir_mask;
3677
3678 I915_WRITE(VLV_IIR, iir_mask);
3679 I915_WRITE(VLV_IIR, iir_mask);
3680 I915_WRITE(VLV_IMR, dev_priv->irq_mask);
3681 I915_WRITE(VLV_IER, ~dev_priv->irq_mask);
3682 POSTING_READ(VLV_IER);
3683}
3684
3685static void valleyview_display_irqs_uninstall(struct drm_i915_private *dev_priv)
3686{
3687 u32 pipestat_mask;
3688 u32 iir_mask;
3689
3690 iir_mask = I915_DISPLAY_PORT_INTERRUPT |
3691 I915_DISPLAY_PIPE_A_EVENT_INTERRUPT |
6c7fba04 3692 I915_DISPLAY_PIPE_B_EVENT_INTERRUPT;
f8b79e58
ID
3693
3694 dev_priv->irq_mask |= iir_mask;
3695 I915_WRITE(VLV_IER, ~dev_priv->irq_mask);
3696 I915_WRITE(VLV_IMR, dev_priv->irq_mask);
3697 I915_WRITE(VLV_IIR, iir_mask);
3698 I915_WRITE(VLV_IIR, iir_mask);
3699 POSTING_READ(VLV_IIR);
3700
3701 pipestat_mask = PLANE_FLIP_DONE_INT_STATUS_VLV |
3702 PIPE_CRC_DONE_INTERRUPT_STATUS;
3703
3704 i915_disable_pipestat(dev_priv, PIPE_A, pipestat_mask |
3705 PIPE_GMBUS_INTERRUPT_STATUS);
3706 i915_disable_pipestat(dev_priv, PIPE_B, pipestat_mask);
3707
3708 pipestat_mask = PIPESTAT_INT_STATUS_MASK |
3709 PIPE_FIFO_UNDERRUN_STATUS;
3710 I915_WRITE(PIPESTAT(PIPE_A), pipestat_mask);
3711 I915_WRITE(PIPESTAT(PIPE_B), pipestat_mask);
3712 POSTING_READ(PIPESTAT(PIPE_A));
3713}
3714
3715void valleyview_enable_display_irqs(struct drm_i915_private *dev_priv)
3716{
3717 assert_spin_locked(&dev_priv->irq_lock);
3718
3719 if (dev_priv->display_irqs_enabled)
3720 return;
3721
3722 dev_priv->display_irqs_enabled = true;
3723
3724 if (dev_priv->dev->irq_enabled)
3725 valleyview_display_irqs_install(dev_priv);
3726}
3727
3728void valleyview_disable_display_irqs(struct drm_i915_private *dev_priv)
3729{
3730 assert_spin_locked(&dev_priv->irq_lock);
3731
3732 if (!dev_priv->display_irqs_enabled)
3733 return;
3734
3735 dev_priv->display_irqs_enabled = false;
3736
3737 if (dev_priv->dev->irq_enabled)
3738 valleyview_display_irqs_uninstall(dev_priv);
3739}
3740
7e231dbe
JB
3741static int valleyview_irq_postinstall(struct drm_device *dev)
3742{
2d1013dd 3743 struct drm_i915_private *dev_priv = dev->dev_private;
b79480ba 3744 unsigned long irqflags;
7e231dbe 3745
f8b79e58 3746 dev_priv->irq_mask = ~0;
7e231dbe 3747
20afbda2
DV
3748 I915_WRITE(PORT_HOTPLUG_EN, 0);
3749 POSTING_READ(PORT_HOTPLUG_EN);
3750
7e231dbe 3751 I915_WRITE(VLV_IMR, dev_priv->irq_mask);
f8b79e58 3752 I915_WRITE(VLV_IER, ~dev_priv->irq_mask);
7e231dbe 3753 I915_WRITE(VLV_IIR, 0xffffffff);
7e231dbe
JB
3754 POSTING_READ(VLV_IER);
3755
b79480ba
DV
3756 /* Interrupt setup is already guaranteed to be single-threaded, this is
3757 * just to make the assert_spin_locked check happy. */
3758 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
f8b79e58
ID
3759 if (dev_priv->display_irqs_enabled)
3760 valleyview_display_irqs_install(dev_priv);
b79480ba 3761 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
31acc7f5 3762
7e231dbe
JB
3763 I915_WRITE(VLV_IIR, 0xffffffff);
3764 I915_WRITE(VLV_IIR, 0xffffffff);
3765
0a9a8c91 3766 gen5_gt_irq_postinstall(dev);
7e231dbe
JB
3767
3768 /* ack & enable invalid PTE error interrupts */
3769#if 0 /* FIXME: add support to irq handler for checking these bits */
3770 I915_WRITE(DPINVGTT, DPINVGTT_STATUS_MASK);
3771 I915_WRITE(DPINVGTT, DPINVGTT_EN_MASK);
3772#endif
3773
3774 I915_WRITE(VLV_MASTER_IER, MASTER_INTERRUPT_ENABLE);
20afbda2
DV
3775
3776 return 0;
3777}
3778
abd58f01
BW
3779static void gen8_gt_irq_postinstall(struct drm_i915_private *dev_priv)
3780{
3781 int i;
3782
3783 /* These are interrupts we'll toggle with the ring mask register */
3784 uint32_t gt_interrupts[] = {
3785 GT_RENDER_USER_INTERRUPT << GEN8_RCS_IRQ_SHIFT |
3786 GT_RENDER_L3_PARITY_ERROR_INTERRUPT |
3787 GT_RENDER_USER_INTERRUPT << GEN8_BCS_IRQ_SHIFT,
3788 GT_RENDER_USER_INTERRUPT << GEN8_VCS1_IRQ_SHIFT |
3789 GT_RENDER_USER_INTERRUPT << GEN8_VCS2_IRQ_SHIFT,
3790 0,
3791 GT_RENDER_USER_INTERRUPT << GEN8_VECS_IRQ_SHIFT
3792 };
3793
337ba017 3794 for (i = 0; i < ARRAY_SIZE(gt_interrupts); i++)
35079899 3795 GEN8_IRQ_INIT_NDX(GT, i, ~gt_interrupts[i], gt_interrupts[i]);
0961021a
BW
3796
3797 dev_priv->pm_irq_mask = 0xffffffff;
abd58f01
BW
3798}
3799
3800static void gen8_de_irq_postinstall(struct drm_i915_private *dev_priv)
3801{
3802 struct drm_device *dev = dev_priv->dev;
d0e1f1cb 3803 uint32_t de_pipe_masked = GEN8_PIPE_PRIMARY_FLIP_DONE |
13b3a0a7 3804 GEN8_PIPE_CDCLK_CRC_DONE |
13b3a0a7 3805 GEN8_DE_PIPE_IRQ_FAULT_ERRORS;
5c673b60
DV
3806 uint32_t de_pipe_enables = de_pipe_masked | GEN8_PIPE_VBLANK |
3807 GEN8_PIPE_FIFO_UNDERRUN;
abd58f01 3808 int pipe;
13b3a0a7
DV
3809 dev_priv->de_irq_mask[PIPE_A] = ~de_pipe_masked;
3810 dev_priv->de_irq_mask[PIPE_B] = ~de_pipe_masked;
3811 dev_priv->de_irq_mask[PIPE_C] = ~de_pipe_masked;
abd58f01 3812
337ba017 3813 for_each_pipe(pipe)
813bde43
PZ
3814 if (intel_display_power_enabled(dev_priv,
3815 POWER_DOMAIN_PIPE(pipe)))
3816 GEN8_IRQ_INIT_NDX(DE_PIPE, pipe,
3817 dev_priv->de_irq_mask[pipe],
3818 de_pipe_enables);
abd58f01 3819
35079899 3820 GEN5_IRQ_INIT(GEN8_DE_PORT_, ~GEN8_AUX_CHANNEL_A, GEN8_AUX_CHANNEL_A);
abd58f01
BW
3821}
3822
3823static int gen8_irq_postinstall(struct drm_device *dev)
3824{
3825 struct drm_i915_private *dev_priv = dev->dev_private;
3826
622364b6
PZ
3827 ibx_irq_pre_postinstall(dev);
3828
abd58f01
BW
3829 gen8_gt_irq_postinstall(dev_priv);
3830 gen8_de_irq_postinstall(dev_priv);
3831
3832 ibx_irq_postinstall(dev);
3833
3834 I915_WRITE(GEN8_MASTER_IRQ, DE_MASTER_IRQ_CONTROL);
3835 POSTING_READ(GEN8_MASTER_IRQ);
3836
3837 return 0;
3838}
3839
43f328d7
VS
3840static int cherryview_irq_postinstall(struct drm_device *dev)
3841{
3842 struct drm_i915_private *dev_priv = dev->dev_private;
3843 u32 enable_mask = I915_DISPLAY_PORT_INTERRUPT |
3844 I915_DISPLAY_PIPE_A_EVENT_INTERRUPT |
43f328d7 3845 I915_DISPLAY_PIPE_B_EVENT_INTERRUPT |
3278f67f
VS
3846 I915_DISPLAY_PIPE_C_EVENT_INTERRUPT;
3847 u32 pipestat_enable = PLANE_FLIP_DONE_INT_STATUS_VLV |
3848 PIPE_CRC_DONE_INTERRUPT_STATUS;
43f328d7
VS
3849 unsigned long irqflags;
3850 int pipe;
3851
3852 /*
3853 * Leave vblank interrupts masked initially. enable/disable will
3854 * toggle them based on usage.
3855 */
3278f67f 3856 dev_priv->irq_mask = ~enable_mask;
43f328d7
VS
3857
3858 for_each_pipe(pipe)
3859 I915_WRITE(PIPESTAT(pipe), 0xffff);
3860
3861 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
3278f67f 3862 i915_enable_pipestat(dev_priv, PIPE_A, PIPE_GMBUS_INTERRUPT_STATUS);
43f328d7
VS
3863 for_each_pipe(pipe)
3864 i915_enable_pipestat(dev_priv, pipe, pipestat_enable);
3865 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
3866
3867 I915_WRITE(VLV_IIR, 0xffffffff);
3868 I915_WRITE(VLV_IMR, dev_priv->irq_mask);
3869 I915_WRITE(VLV_IER, enable_mask);
3870
3871 gen8_gt_irq_postinstall(dev_priv);
3872
3873 I915_WRITE(GEN8_MASTER_IRQ, MASTER_INTERRUPT_ENABLE);
3874 POSTING_READ(GEN8_MASTER_IRQ);
3875
3876 return 0;
3877}
3878
abd58f01
BW
3879static void gen8_irq_uninstall(struct drm_device *dev)
3880{
3881 struct drm_i915_private *dev_priv = dev->dev_private;
abd58f01
BW
3882
3883 if (!dev_priv)
3884 return;
3885
d4eb6b10 3886 intel_hpd_irq_uninstall(dev_priv);
abd58f01 3887
823f6b38 3888 gen8_irq_reset(dev);
abd58f01
BW
3889}
3890
7e231dbe
JB
3891static void valleyview_irq_uninstall(struct drm_device *dev)
3892{
2d1013dd 3893 struct drm_i915_private *dev_priv = dev->dev_private;
f8b79e58 3894 unsigned long irqflags;
7e231dbe
JB
3895 int pipe;
3896
3897 if (!dev_priv)
3898 return;
3899
843d0e7d
ID
3900 I915_WRITE(VLV_MASTER_IER, 0);
3901
3ca1cced 3902 intel_hpd_irq_uninstall(dev_priv);
ac4c16c5 3903
7e231dbe
JB
3904 for_each_pipe(pipe)
3905 I915_WRITE(PIPESTAT(pipe), 0xffff);
3906
3907 I915_WRITE(HWSTAM, 0xffffffff);
3908 I915_WRITE(PORT_HOTPLUG_EN, 0);
3909 I915_WRITE(PORT_HOTPLUG_STAT, I915_READ(PORT_HOTPLUG_STAT));
f8b79e58
ID
3910
3911 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
3912 if (dev_priv->display_irqs_enabled)
3913 valleyview_display_irqs_uninstall(dev_priv);
3914 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
3915
3916 dev_priv->irq_mask = 0;
3917
7e231dbe
JB
3918 I915_WRITE(VLV_IIR, 0xffffffff);
3919 I915_WRITE(VLV_IMR, 0xffffffff);
3920 I915_WRITE(VLV_IER, 0x0);
3921 POSTING_READ(VLV_IER);
3922}
3923
43f328d7
VS
3924static void cherryview_irq_uninstall(struct drm_device *dev)
3925{
3926 struct drm_i915_private *dev_priv = dev->dev_private;
3927 int pipe;
3928
3929 if (!dev_priv)
3930 return;
3931
3932 I915_WRITE(GEN8_MASTER_IRQ, 0);
3933 POSTING_READ(GEN8_MASTER_IRQ);
3934
3935#define GEN8_IRQ_FINI_NDX(type, which) \
3936do { \
3937 I915_WRITE(GEN8_##type##_IMR(which), 0xffffffff); \
3938 I915_WRITE(GEN8_##type##_IER(which), 0); \
3939 I915_WRITE(GEN8_##type##_IIR(which), 0xffffffff); \
3940 POSTING_READ(GEN8_##type##_IIR(which)); \
3941 I915_WRITE(GEN8_##type##_IIR(which), 0xffffffff); \
3942} while (0)
3943
3944#define GEN8_IRQ_FINI(type) \
3945do { \
3946 I915_WRITE(GEN8_##type##_IMR, 0xffffffff); \
3947 I915_WRITE(GEN8_##type##_IER, 0); \
3948 I915_WRITE(GEN8_##type##_IIR, 0xffffffff); \
3949 POSTING_READ(GEN8_##type##_IIR); \
3950 I915_WRITE(GEN8_##type##_IIR, 0xffffffff); \
3951} while (0)
3952
3953 GEN8_IRQ_FINI_NDX(GT, 0);
3954 GEN8_IRQ_FINI_NDX(GT, 1);
3955 GEN8_IRQ_FINI_NDX(GT, 2);
3956 GEN8_IRQ_FINI_NDX(GT, 3);
3957
3958 GEN8_IRQ_FINI(PCU);
3959
3960#undef GEN8_IRQ_FINI
3961#undef GEN8_IRQ_FINI_NDX
3962
3963 I915_WRITE(PORT_HOTPLUG_EN, 0);
3964 I915_WRITE(PORT_HOTPLUG_STAT, I915_READ(PORT_HOTPLUG_STAT));
3965
3966 for_each_pipe(pipe)
3967 I915_WRITE(PIPESTAT(pipe), 0xffff);
3968
3969 I915_WRITE(VLV_IMR, 0xffffffff);
3970 I915_WRITE(VLV_IER, 0x0);
3971 I915_WRITE(VLV_IIR, 0xffffffff);
3972 POSTING_READ(VLV_IIR);
3973}
3974
f71d4af4 3975static void ironlake_irq_uninstall(struct drm_device *dev)
036a4a7d 3976{
2d1013dd 3977 struct drm_i915_private *dev_priv = dev->dev_private;
4697995b
JB
3978
3979 if (!dev_priv)
3980 return;
3981
3ca1cced 3982 intel_hpd_irq_uninstall(dev_priv);
ac4c16c5 3983
be30b29f 3984 ironlake_irq_reset(dev);
036a4a7d
ZW
3985}
3986
a266c7d5 3987static void i8xx_irq_preinstall(struct drm_device * dev)
1da177e4 3988{
2d1013dd 3989 struct drm_i915_private *dev_priv = dev->dev_private;
9db4a9c7 3990 int pipe;
91e3738e 3991
9db4a9c7
JB
3992 for_each_pipe(pipe)
3993 I915_WRITE(PIPESTAT(pipe), 0);
a266c7d5
CW
3994 I915_WRITE16(IMR, 0xffff);
3995 I915_WRITE16(IER, 0x0);
3996 POSTING_READ16(IER);
c2798b19
CW
3997}
3998
3999static int i8xx_irq_postinstall(struct drm_device *dev)
4000{
2d1013dd 4001 struct drm_i915_private *dev_priv = dev->dev_private;
379ef82d 4002 unsigned long irqflags;
c2798b19 4003
c2798b19
CW
4004 I915_WRITE16(EMR,
4005 ~(I915_ERROR_PAGE_TABLE | I915_ERROR_MEMORY_REFRESH));
4006
4007 /* Unmask the interrupts that we always want on. */
4008 dev_priv->irq_mask =
4009 ~(I915_DISPLAY_PIPE_A_EVENT_INTERRUPT |
4010 I915_DISPLAY_PIPE_B_EVENT_INTERRUPT |
4011 I915_DISPLAY_PLANE_A_FLIP_PENDING_INTERRUPT |
4012 I915_DISPLAY_PLANE_B_FLIP_PENDING_INTERRUPT |
4013 I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT);
4014 I915_WRITE16(IMR, dev_priv->irq_mask);
4015
4016 I915_WRITE16(IER,
4017 I915_DISPLAY_PIPE_A_EVENT_INTERRUPT |
4018 I915_DISPLAY_PIPE_B_EVENT_INTERRUPT |
4019 I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT |
4020 I915_USER_INTERRUPT);
4021 POSTING_READ16(IER);
4022
379ef82d
DV
4023 /* Interrupt setup is already guaranteed to be single-threaded, this is
4024 * just to make the assert_spin_locked check happy. */
4025 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
755e9019
ID
4026 i915_enable_pipestat(dev_priv, PIPE_A, PIPE_CRC_DONE_INTERRUPT_STATUS);
4027 i915_enable_pipestat(dev_priv, PIPE_B, PIPE_CRC_DONE_INTERRUPT_STATUS);
379ef82d
DV
4028 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
4029
c2798b19
CW
4030 return 0;
4031}
4032
90a72f87
VS
4033/*
4034 * Returns true when a page flip has completed.
4035 */
4036static bool i8xx_handle_vblank(struct drm_device *dev,
1f1c2e24 4037 int plane, int pipe, u32 iir)
90a72f87 4038{
2d1013dd 4039 struct drm_i915_private *dev_priv = dev->dev_private;
1f1c2e24 4040 u16 flip_pending = DISPLAY_PLANE_FLIP_PENDING(plane);
90a72f87 4041
8d7849db 4042 if (!intel_pipe_handle_vblank(dev, pipe))
90a72f87
VS
4043 return false;
4044
4045 if ((iir & flip_pending) == 0)
4046 return false;
4047
1f1c2e24 4048 intel_prepare_page_flip(dev, plane);
90a72f87
VS
4049
4050 /* We detect FlipDone by looking for the change in PendingFlip from '1'
4051 * to '0' on the following vblank, i.e. IIR has the Pendingflip
4052 * asserted following the MI_DISPLAY_FLIP, but ISR is deasserted, hence
4053 * the flip is completed (no longer pending). Since this doesn't raise
4054 * an interrupt per se, we watch for the change at vblank.
4055 */
4056 if (I915_READ16(ISR) & flip_pending)
4057 return false;
4058
4059 intel_finish_page_flip(dev, pipe);
4060
4061 return true;
4062}
4063
ff1f525e 4064static irqreturn_t i8xx_irq_handler(int irq, void *arg)
c2798b19 4065{
45a83f84 4066 struct drm_device *dev = arg;
2d1013dd 4067 struct drm_i915_private *dev_priv = dev->dev_private;
c2798b19
CW
4068 u16 iir, new_iir;
4069 u32 pipe_stats[2];
4070 unsigned long irqflags;
c2798b19
CW
4071 int pipe;
4072 u16 flip_mask =
4073 I915_DISPLAY_PLANE_A_FLIP_PENDING_INTERRUPT |
4074 I915_DISPLAY_PLANE_B_FLIP_PENDING_INTERRUPT;
4075
c2798b19
CW
4076 iir = I915_READ16(IIR);
4077 if (iir == 0)
4078 return IRQ_NONE;
4079
4080 while (iir & ~flip_mask) {
4081 /* Can't rely on pipestat interrupt bit in iir as it might
4082 * have been cleared after the pipestat interrupt was received.
4083 * It doesn't set the bit in iir again, but it still produces
4084 * interrupts (for non-MSI).
4085 */
4086 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
4087 if (iir & I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT)
58174462
MK
4088 i915_handle_error(dev, false,
4089 "Command parser error, iir 0x%08x",
4090 iir);
c2798b19
CW
4091
4092 for_each_pipe(pipe) {
4093 int reg = PIPESTAT(pipe);
4094 pipe_stats[pipe] = I915_READ(reg);
4095
4096 /*
4097 * Clear the PIPE*STAT regs before the IIR
4098 */
2d9d2b0b 4099 if (pipe_stats[pipe] & 0x8000ffff)
c2798b19 4100 I915_WRITE(reg, pipe_stats[pipe]);
c2798b19
CW
4101 }
4102 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
4103
4104 I915_WRITE16(IIR, iir & ~flip_mask);
4105 new_iir = I915_READ16(IIR); /* Flush posted writes */
4106
d05c617e 4107 i915_update_dri1_breadcrumb(dev);
c2798b19
CW
4108
4109 if (iir & I915_USER_INTERRUPT)
4110 notify_ring(dev, &dev_priv->ring[RCS]);
4111
4356d586 4112 for_each_pipe(pipe) {
1f1c2e24 4113 int plane = pipe;
3a77c4c4 4114 if (HAS_FBC(dev))
1f1c2e24
VS
4115 plane = !plane;
4116
4356d586 4117 if (pipe_stats[pipe] & PIPE_VBLANK_INTERRUPT_STATUS &&
1f1c2e24
VS
4118 i8xx_handle_vblank(dev, plane, pipe, iir))
4119 flip_mask &= ~DISPLAY_PLANE_FLIP_PENDING(plane);
c2798b19 4120
4356d586 4121 if (pipe_stats[pipe] & PIPE_CRC_DONE_INTERRUPT_STATUS)
277de95e 4122 i9xx_pipe_crc_irq_handler(dev, pipe);
2d9d2b0b
VS
4123
4124 if (pipe_stats[pipe] & PIPE_FIFO_UNDERRUN_STATUS &&
4125 intel_set_cpu_fifo_underrun_reporting(dev, pipe, false))
fc2c807b 4126 DRM_ERROR("pipe %c underrun\n", pipe_name(pipe));
4356d586 4127 }
c2798b19
CW
4128
4129 iir = new_iir;
4130 }
4131
4132 return IRQ_HANDLED;
4133}
4134
4135static void i8xx_irq_uninstall(struct drm_device * dev)
4136{
2d1013dd 4137 struct drm_i915_private *dev_priv = dev->dev_private;
c2798b19
CW
4138 int pipe;
4139
c2798b19
CW
4140 for_each_pipe(pipe) {
4141 /* Clear enable bits; then clear status bits */
4142 I915_WRITE(PIPESTAT(pipe), 0);
4143 I915_WRITE(PIPESTAT(pipe), I915_READ(PIPESTAT(pipe)));
4144 }
4145 I915_WRITE16(IMR, 0xffff);
4146 I915_WRITE16(IER, 0x0);
4147 I915_WRITE16(IIR, I915_READ16(IIR));
4148}
4149
a266c7d5
CW
4150static void i915_irq_preinstall(struct drm_device * dev)
4151{
2d1013dd 4152 struct drm_i915_private *dev_priv = dev->dev_private;
a266c7d5
CW
4153 int pipe;
4154
a266c7d5
CW
4155 if (I915_HAS_HOTPLUG(dev)) {
4156 I915_WRITE(PORT_HOTPLUG_EN, 0);
4157 I915_WRITE(PORT_HOTPLUG_STAT, I915_READ(PORT_HOTPLUG_STAT));
4158 }
4159
00d98ebd 4160 I915_WRITE16(HWSTAM, 0xeffe);
a266c7d5
CW
4161 for_each_pipe(pipe)
4162 I915_WRITE(PIPESTAT(pipe), 0);
4163 I915_WRITE(IMR, 0xffffffff);
4164 I915_WRITE(IER, 0x0);
4165 POSTING_READ(IER);
4166}
4167
4168static int i915_irq_postinstall(struct drm_device *dev)
4169{
2d1013dd 4170 struct drm_i915_private *dev_priv = dev->dev_private;
38bde180 4171 u32 enable_mask;
379ef82d 4172 unsigned long irqflags;
a266c7d5 4173
38bde180
CW
4174 I915_WRITE(EMR, ~(I915_ERROR_PAGE_TABLE | I915_ERROR_MEMORY_REFRESH));
4175
4176 /* Unmask the interrupts that we always want on. */
4177 dev_priv->irq_mask =
4178 ~(I915_ASLE_INTERRUPT |
4179 I915_DISPLAY_PIPE_A_EVENT_INTERRUPT |
4180 I915_DISPLAY_PIPE_B_EVENT_INTERRUPT |
4181 I915_DISPLAY_PLANE_A_FLIP_PENDING_INTERRUPT |
4182 I915_DISPLAY_PLANE_B_FLIP_PENDING_INTERRUPT |
4183 I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT);
4184
4185 enable_mask =
4186 I915_ASLE_INTERRUPT |
4187 I915_DISPLAY_PIPE_A_EVENT_INTERRUPT |
4188 I915_DISPLAY_PIPE_B_EVENT_INTERRUPT |
4189 I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT |
4190 I915_USER_INTERRUPT;
4191
a266c7d5 4192 if (I915_HAS_HOTPLUG(dev)) {
20afbda2
DV
4193 I915_WRITE(PORT_HOTPLUG_EN, 0);
4194 POSTING_READ(PORT_HOTPLUG_EN);
4195
a266c7d5
CW
4196 /* Enable in IER... */
4197 enable_mask |= I915_DISPLAY_PORT_INTERRUPT;
4198 /* and unmask in IMR */
4199 dev_priv->irq_mask &= ~I915_DISPLAY_PORT_INTERRUPT;
4200 }
4201
a266c7d5
CW
4202 I915_WRITE(IMR, dev_priv->irq_mask);
4203 I915_WRITE(IER, enable_mask);
4204 POSTING_READ(IER);
4205
f49e38dd 4206 i915_enable_asle_pipestat(dev);
20afbda2 4207
379ef82d
DV
4208 /* Interrupt setup is already guaranteed to be single-threaded, this is
4209 * just to make the assert_spin_locked check happy. */
4210 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
755e9019
ID
4211 i915_enable_pipestat(dev_priv, PIPE_A, PIPE_CRC_DONE_INTERRUPT_STATUS);
4212 i915_enable_pipestat(dev_priv, PIPE_B, PIPE_CRC_DONE_INTERRUPT_STATUS);
379ef82d
DV
4213 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
4214
20afbda2
DV
4215 return 0;
4216}
4217
90a72f87
VS
4218/*
4219 * Returns true when a page flip has completed.
4220 */
4221static bool i915_handle_vblank(struct drm_device *dev,
4222 int plane, int pipe, u32 iir)
4223{
2d1013dd 4224 struct drm_i915_private *dev_priv = dev->dev_private;
90a72f87
VS
4225 u32 flip_pending = DISPLAY_PLANE_FLIP_PENDING(plane);
4226
8d7849db 4227 if (!intel_pipe_handle_vblank(dev, pipe))
90a72f87
VS
4228 return false;
4229
4230 if ((iir & flip_pending) == 0)
4231 return false;
4232
4233 intel_prepare_page_flip(dev, plane);
4234
4235 /* We detect FlipDone by looking for the change in PendingFlip from '1'
4236 * to '0' on the following vblank, i.e. IIR has the Pendingflip
4237 * asserted following the MI_DISPLAY_FLIP, but ISR is deasserted, hence
4238 * the flip is completed (no longer pending). Since this doesn't raise
4239 * an interrupt per se, we watch for the change at vblank.
4240 */
4241 if (I915_READ(ISR) & flip_pending)
4242 return false;
4243
4244 intel_finish_page_flip(dev, pipe);
4245
4246 return true;
4247}
4248
ff1f525e 4249static irqreturn_t i915_irq_handler(int irq, void *arg)
a266c7d5 4250{
45a83f84 4251 struct drm_device *dev = arg;
2d1013dd 4252 struct drm_i915_private *dev_priv = dev->dev_private;
8291ee90 4253 u32 iir, new_iir, pipe_stats[I915_MAX_PIPES];
a266c7d5 4254 unsigned long irqflags;
38bde180
CW
4255 u32 flip_mask =
4256 I915_DISPLAY_PLANE_A_FLIP_PENDING_INTERRUPT |
4257 I915_DISPLAY_PLANE_B_FLIP_PENDING_INTERRUPT;
38bde180 4258 int pipe, ret = IRQ_NONE;
a266c7d5 4259
a266c7d5 4260 iir = I915_READ(IIR);
38bde180
CW
4261 do {
4262 bool irq_received = (iir & ~flip_mask) != 0;
8291ee90 4263 bool blc_event = false;
a266c7d5
CW
4264
4265 /* Can't rely on pipestat interrupt bit in iir as it might
4266 * have been cleared after the pipestat interrupt was received.
4267 * It doesn't set the bit in iir again, but it still produces
4268 * interrupts (for non-MSI).
4269 */
4270 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
4271 if (iir & I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT)
58174462
MK
4272 i915_handle_error(dev, false,
4273 "Command parser error, iir 0x%08x",
4274 iir);
a266c7d5
CW
4275
4276 for_each_pipe(pipe) {
4277 int reg = PIPESTAT(pipe);
4278 pipe_stats[pipe] = I915_READ(reg);
4279
38bde180 4280 /* Clear the PIPE*STAT regs before the IIR */
a266c7d5 4281 if (pipe_stats[pipe] & 0x8000ffff) {
a266c7d5 4282 I915_WRITE(reg, pipe_stats[pipe]);
38bde180 4283 irq_received = true;
a266c7d5
CW
4284 }
4285 }
4286 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
4287
4288 if (!irq_received)
4289 break;
4290
a266c7d5 4291 /* Consume port. Then clear IIR or we'll miss events */
16c6c56b
VS
4292 if (I915_HAS_HOTPLUG(dev) &&
4293 iir & I915_DISPLAY_PORT_INTERRUPT)
4294 i9xx_hpd_irq_handler(dev);
a266c7d5 4295
38bde180 4296 I915_WRITE(IIR, iir & ~flip_mask);
a266c7d5
CW
4297 new_iir = I915_READ(IIR); /* Flush posted writes */
4298
a266c7d5
CW
4299 if (iir & I915_USER_INTERRUPT)
4300 notify_ring(dev, &dev_priv->ring[RCS]);
a266c7d5 4301
a266c7d5 4302 for_each_pipe(pipe) {
38bde180 4303 int plane = pipe;
3a77c4c4 4304 if (HAS_FBC(dev))
38bde180 4305 plane = !plane;
90a72f87 4306
8291ee90 4307 if (pipe_stats[pipe] & PIPE_VBLANK_INTERRUPT_STATUS &&
90a72f87
VS
4308 i915_handle_vblank(dev, plane, pipe, iir))
4309 flip_mask &= ~DISPLAY_PLANE_FLIP_PENDING(plane);
a266c7d5
CW
4310
4311 if (pipe_stats[pipe] & PIPE_LEGACY_BLC_EVENT_STATUS)
4312 blc_event = true;
4356d586
DV
4313
4314 if (pipe_stats[pipe] & PIPE_CRC_DONE_INTERRUPT_STATUS)
277de95e 4315 i9xx_pipe_crc_irq_handler(dev, pipe);
2d9d2b0b
VS
4316
4317 if (pipe_stats[pipe] & PIPE_FIFO_UNDERRUN_STATUS &&
4318 intel_set_cpu_fifo_underrun_reporting(dev, pipe, false))
fc2c807b 4319 DRM_ERROR("pipe %c underrun\n", pipe_name(pipe));
a266c7d5
CW
4320 }
4321
a266c7d5
CW
4322 if (blc_event || (iir & I915_ASLE_INTERRUPT))
4323 intel_opregion_asle_intr(dev);
4324
4325 /* With MSI, interrupts are only generated when iir
4326 * transitions from zero to nonzero. If another bit got
4327 * set while we were handling the existing iir bits, then
4328 * we would never get another interrupt.
4329 *
4330 * This is fine on non-MSI as well, as if we hit this path
4331 * we avoid exiting the interrupt handler only to generate
4332 * another one.
4333 *
4334 * Note that for MSI this could cause a stray interrupt report
4335 * if an interrupt landed in the time between writing IIR and
4336 * the posting read. This should be rare enough to never
4337 * trigger the 99% of 100,000 interrupts test for disabling
4338 * stray interrupts.
4339 */
38bde180 4340 ret = IRQ_HANDLED;
a266c7d5 4341 iir = new_iir;
38bde180 4342 } while (iir & ~flip_mask);
a266c7d5 4343
d05c617e 4344 i915_update_dri1_breadcrumb(dev);
8291ee90 4345
a266c7d5
CW
4346 return ret;
4347}
4348
4349static void i915_irq_uninstall(struct drm_device * dev)
4350{
2d1013dd 4351 struct drm_i915_private *dev_priv = dev->dev_private;
a266c7d5
CW
4352 int pipe;
4353
3ca1cced 4354 intel_hpd_irq_uninstall(dev_priv);
ac4c16c5 4355
a266c7d5
CW
4356 if (I915_HAS_HOTPLUG(dev)) {
4357 I915_WRITE(PORT_HOTPLUG_EN, 0);
4358 I915_WRITE(PORT_HOTPLUG_STAT, I915_READ(PORT_HOTPLUG_STAT));
4359 }
4360
00d98ebd 4361 I915_WRITE16(HWSTAM, 0xffff);
55b39755
CW
4362 for_each_pipe(pipe) {
4363 /* Clear enable bits; then clear status bits */
a266c7d5 4364 I915_WRITE(PIPESTAT(pipe), 0);
55b39755
CW
4365 I915_WRITE(PIPESTAT(pipe), I915_READ(PIPESTAT(pipe)));
4366 }
a266c7d5
CW
4367 I915_WRITE(IMR, 0xffffffff);
4368 I915_WRITE(IER, 0x0);
4369
a266c7d5
CW
4370 I915_WRITE(IIR, I915_READ(IIR));
4371}
4372
4373static void i965_irq_preinstall(struct drm_device * dev)
4374{
2d1013dd 4375 struct drm_i915_private *dev_priv = dev->dev_private;
a266c7d5
CW
4376 int pipe;
4377
adca4730
CW
4378 I915_WRITE(PORT_HOTPLUG_EN, 0);
4379 I915_WRITE(PORT_HOTPLUG_STAT, I915_READ(PORT_HOTPLUG_STAT));
a266c7d5
CW
4380
4381 I915_WRITE(HWSTAM, 0xeffe);
4382 for_each_pipe(pipe)
4383 I915_WRITE(PIPESTAT(pipe), 0);
4384 I915_WRITE(IMR, 0xffffffff);
4385 I915_WRITE(IER, 0x0);
4386 POSTING_READ(IER);
4387}
4388
4389static int i965_irq_postinstall(struct drm_device *dev)
4390{
2d1013dd 4391 struct drm_i915_private *dev_priv = dev->dev_private;
bbba0a97 4392 u32 enable_mask;
a266c7d5 4393 u32 error_mask;
b79480ba 4394 unsigned long irqflags;
a266c7d5 4395
a266c7d5 4396 /* Unmask the interrupts that we always want on. */
bbba0a97 4397 dev_priv->irq_mask = ~(I915_ASLE_INTERRUPT |
adca4730 4398 I915_DISPLAY_PORT_INTERRUPT |
bbba0a97
CW
4399 I915_DISPLAY_PIPE_A_EVENT_INTERRUPT |
4400 I915_DISPLAY_PIPE_B_EVENT_INTERRUPT |
4401 I915_DISPLAY_PLANE_A_FLIP_PENDING_INTERRUPT |
4402 I915_DISPLAY_PLANE_B_FLIP_PENDING_INTERRUPT |
4403 I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT);
4404
4405 enable_mask = ~dev_priv->irq_mask;
21ad8330
VS
4406 enable_mask &= ~(I915_DISPLAY_PLANE_A_FLIP_PENDING_INTERRUPT |
4407 I915_DISPLAY_PLANE_B_FLIP_PENDING_INTERRUPT);
bbba0a97
CW
4408 enable_mask |= I915_USER_INTERRUPT;
4409
4410 if (IS_G4X(dev))
4411 enable_mask |= I915_BSD_USER_INTERRUPT;
a266c7d5 4412
b79480ba
DV
4413 /* Interrupt setup is already guaranteed to be single-threaded, this is
4414 * just to make the assert_spin_locked check happy. */
4415 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
755e9019
ID
4416 i915_enable_pipestat(dev_priv, PIPE_A, PIPE_GMBUS_INTERRUPT_STATUS);
4417 i915_enable_pipestat(dev_priv, PIPE_A, PIPE_CRC_DONE_INTERRUPT_STATUS);
4418 i915_enable_pipestat(dev_priv, PIPE_B, PIPE_CRC_DONE_INTERRUPT_STATUS);
b79480ba 4419 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
a266c7d5 4420
a266c7d5
CW
4421 /*
4422 * Enable some error detection, note the instruction error mask
4423 * bit is reserved, so we leave it masked.
4424 */
4425 if (IS_G4X(dev)) {
4426 error_mask = ~(GM45_ERROR_PAGE_TABLE |
4427 GM45_ERROR_MEM_PRIV |
4428 GM45_ERROR_CP_PRIV |
4429 I915_ERROR_MEMORY_REFRESH);
4430 } else {
4431 error_mask = ~(I915_ERROR_PAGE_TABLE |
4432 I915_ERROR_MEMORY_REFRESH);
4433 }
4434 I915_WRITE(EMR, error_mask);
4435
4436 I915_WRITE(IMR, dev_priv->irq_mask);
4437 I915_WRITE(IER, enable_mask);
4438 POSTING_READ(IER);
4439
20afbda2
DV
4440 I915_WRITE(PORT_HOTPLUG_EN, 0);
4441 POSTING_READ(PORT_HOTPLUG_EN);
4442
f49e38dd 4443 i915_enable_asle_pipestat(dev);
20afbda2
DV
4444
4445 return 0;
4446}
4447
bac56d5b 4448static void i915_hpd_irq_setup(struct drm_device *dev)
20afbda2 4449{
2d1013dd 4450 struct drm_i915_private *dev_priv = dev->dev_private;
e5868a31 4451 struct drm_mode_config *mode_config = &dev->mode_config;
cd569aed 4452 struct intel_encoder *intel_encoder;
20afbda2
DV
4453 u32 hotplug_en;
4454
b5ea2d56
DV
4455 assert_spin_locked(&dev_priv->irq_lock);
4456
bac56d5b
EE
4457 if (I915_HAS_HOTPLUG(dev)) {
4458 hotplug_en = I915_READ(PORT_HOTPLUG_EN);
4459 hotplug_en &= ~HOTPLUG_INT_EN_MASK;
4460 /* Note HDMI and DP share hotplug bits */
e5868a31 4461 /* enable bits are the same for all generations */
cd569aed
EE
4462 list_for_each_entry(intel_encoder, &mode_config->encoder_list, base.head)
4463 if (dev_priv->hpd_stats[intel_encoder->hpd_pin].hpd_mark == HPD_ENABLED)
4464 hotplug_en |= hpd_mask_i915[intel_encoder->hpd_pin];
bac56d5b
EE
4465 /* Programming the CRT detection parameters tends
4466 to generate a spurious hotplug event about three
4467 seconds later. So just do it once.
4468 */
4469 if (IS_G4X(dev))
4470 hotplug_en |= CRT_HOTPLUG_ACTIVATION_PERIOD_64;
85fc95ba 4471 hotplug_en &= ~CRT_HOTPLUG_VOLTAGE_COMPARE_MASK;
bac56d5b 4472 hotplug_en |= CRT_HOTPLUG_VOLTAGE_COMPARE_50;
a266c7d5 4473
bac56d5b
EE
4474 /* Ignore TV since it's buggy */
4475 I915_WRITE(PORT_HOTPLUG_EN, hotplug_en);
4476 }
a266c7d5
CW
4477}
4478
ff1f525e 4479static irqreturn_t i965_irq_handler(int irq, void *arg)
a266c7d5 4480{
45a83f84 4481 struct drm_device *dev = arg;
2d1013dd 4482 struct drm_i915_private *dev_priv = dev->dev_private;
a266c7d5
CW
4483 u32 iir, new_iir;
4484 u32 pipe_stats[I915_MAX_PIPES];
a266c7d5 4485 unsigned long irqflags;
a266c7d5 4486 int ret = IRQ_NONE, pipe;
21ad8330
VS
4487 u32 flip_mask =
4488 I915_DISPLAY_PLANE_A_FLIP_PENDING_INTERRUPT |
4489 I915_DISPLAY_PLANE_B_FLIP_PENDING_INTERRUPT;
a266c7d5 4490
a266c7d5
CW
4491 iir = I915_READ(IIR);
4492
a266c7d5 4493 for (;;) {
501e01d7 4494 bool irq_received = (iir & ~flip_mask) != 0;
2c8ba29f
CW
4495 bool blc_event = false;
4496
a266c7d5
CW
4497 /* Can't rely on pipestat interrupt bit in iir as it might
4498 * have been cleared after the pipestat interrupt was received.
4499 * It doesn't set the bit in iir again, but it still produces
4500 * interrupts (for non-MSI).
4501 */
4502 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
4503 if (iir & I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT)
58174462
MK
4504 i915_handle_error(dev, false,
4505 "Command parser error, iir 0x%08x",
4506 iir);
a266c7d5
CW
4507
4508 for_each_pipe(pipe) {
4509 int reg = PIPESTAT(pipe);
4510 pipe_stats[pipe] = I915_READ(reg);
4511
4512 /*
4513 * Clear the PIPE*STAT regs before the IIR
4514 */
4515 if (pipe_stats[pipe] & 0x8000ffff) {
a266c7d5 4516 I915_WRITE(reg, pipe_stats[pipe]);
501e01d7 4517 irq_received = true;
a266c7d5
CW
4518 }
4519 }
4520 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
4521
4522 if (!irq_received)
4523 break;
4524
4525 ret = IRQ_HANDLED;
4526
4527 /* Consume port. Then clear IIR or we'll miss events */
16c6c56b
VS
4528 if (iir & I915_DISPLAY_PORT_INTERRUPT)
4529 i9xx_hpd_irq_handler(dev);
a266c7d5 4530
21ad8330 4531 I915_WRITE(IIR, iir & ~flip_mask);
a266c7d5
CW
4532 new_iir = I915_READ(IIR); /* Flush posted writes */
4533
a266c7d5
CW
4534 if (iir & I915_USER_INTERRUPT)
4535 notify_ring(dev, &dev_priv->ring[RCS]);
4536 if (iir & I915_BSD_USER_INTERRUPT)
4537 notify_ring(dev, &dev_priv->ring[VCS]);
4538
a266c7d5 4539 for_each_pipe(pipe) {
2c8ba29f 4540 if (pipe_stats[pipe] & PIPE_START_VBLANK_INTERRUPT_STATUS &&
90a72f87
VS
4541 i915_handle_vblank(dev, pipe, pipe, iir))
4542 flip_mask &= ~DISPLAY_PLANE_FLIP_PENDING(pipe);
a266c7d5
CW
4543
4544 if (pipe_stats[pipe] & PIPE_LEGACY_BLC_EVENT_STATUS)
4545 blc_event = true;
4356d586
DV
4546
4547 if (pipe_stats[pipe] & PIPE_CRC_DONE_INTERRUPT_STATUS)
277de95e 4548 i9xx_pipe_crc_irq_handler(dev, pipe);
a266c7d5 4549
2d9d2b0b
VS
4550 if (pipe_stats[pipe] & PIPE_FIFO_UNDERRUN_STATUS &&
4551 intel_set_cpu_fifo_underrun_reporting(dev, pipe, false))
fc2c807b 4552 DRM_ERROR("pipe %c underrun\n", pipe_name(pipe));
2d9d2b0b 4553 }
a266c7d5
CW
4554
4555 if (blc_event || (iir & I915_ASLE_INTERRUPT))
4556 intel_opregion_asle_intr(dev);
4557
515ac2bb
DV
4558 if (pipe_stats[0] & PIPE_GMBUS_INTERRUPT_STATUS)
4559 gmbus_irq_handler(dev);
4560
a266c7d5
CW
4561 /* With MSI, interrupts are only generated when iir
4562 * transitions from zero to nonzero. If another bit got
4563 * set while we were handling the existing iir bits, then
4564 * we would never get another interrupt.
4565 *
4566 * This is fine on non-MSI as well, as if we hit this path
4567 * we avoid exiting the interrupt handler only to generate
4568 * another one.
4569 *
4570 * Note that for MSI this could cause a stray interrupt report
4571 * if an interrupt landed in the time between writing IIR and
4572 * the posting read. This should be rare enough to never
4573 * trigger the 99% of 100,000 interrupts test for disabling
4574 * stray interrupts.
4575 */
4576 iir = new_iir;
4577 }
4578
d05c617e 4579 i915_update_dri1_breadcrumb(dev);
2c8ba29f 4580
a266c7d5
CW
4581 return ret;
4582}
4583
4584static void i965_irq_uninstall(struct drm_device * dev)
4585{
2d1013dd 4586 struct drm_i915_private *dev_priv = dev->dev_private;
a266c7d5
CW
4587 int pipe;
4588
4589 if (!dev_priv)
4590 return;
4591
3ca1cced 4592 intel_hpd_irq_uninstall(dev_priv);
ac4c16c5 4593
adca4730
CW
4594 I915_WRITE(PORT_HOTPLUG_EN, 0);
4595 I915_WRITE(PORT_HOTPLUG_STAT, I915_READ(PORT_HOTPLUG_STAT));
a266c7d5
CW
4596
4597 I915_WRITE(HWSTAM, 0xffffffff);
4598 for_each_pipe(pipe)
4599 I915_WRITE(PIPESTAT(pipe), 0);
4600 I915_WRITE(IMR, 0xffffffff);
4601 I915_WRITE(IER, 0x0);
4602
4603 for_each_pipe(pipe)
4604 I915_WRITE(PIPESTAT(pipe),
4605 I915_READ(PIPESTAT(pipe)) & 0x8000ffff);
4606 I915_WRITE(IIR, I915_READ(IIR));
4607}
4608
3ca1cced 4609static void intel_hpd_irq_reenable(unsigned long data)
ac4c16c5 4610{
2d1013dd 4611 struct drm_i915_private *dev_priv = (struct drm_i915_private *)data;
ac4c16c5
EE
4612 struct drm_device *dev = dev_priv->dev;
4613 struct drm_mode_config *mode_config = &dev->mode_config;
4614 unsigned long irqflags;
4615 int i;
4616
4617 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
4618 for (i = (HPD_NONE + 1); i < HPD_NUM_PINS; i++) {
4619 struct drm_connector *connector;
4620
4621 if (dev_priv->hpd_stats[i].hpd_mark != HPD_DISABLED)
4622 continue;
4623
4624 dev_priv->hpd_stats[i].hpd_mark = HPD_ENABLED;
4625
4626 list_for_each_entry(connector, &mode_config->connector_list, head) {
4627 struct intel_connector *intel_connector = to_intel_connector(connector);
4628
4629 if (intel_connector->encoder->hpd_pin == i) {
4630 if (connector->polled != intel_connector->polled)
4631 DRM_DEBUG_DRIVER("Reenabling HPD on connector %s\n",
c23cc417 4632 connector->name);
ac4c16c5
EE
4633 connector->polled = intel_connector->polled;
4634 if (!connector->polled)
4635 connector->polled = DRM_CONNECTOR_POLL_HPD;
4636 }
4637 }
4638 }
4639 if (dev_priv->display.hpd_irq_setup)
4640 dev_priv->display.hpd_irq_setup(dev);
4641 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
4642}
4643
f71d4af4
JB
4644void intel_irq_init(struct drm_device *dev)
4645{
8b2e326d
CW
4646 struct drm_i915_private *dev_priv = dev->dev_private;
4647
4648 INIT_WORK(&dev_priv->hotplug_work, i915_hotplug_work_func);
13cf5504 4649 INIT_WORK(&dev_priv->dig_port_work, i915_digport_work_func);
99584db3 4650 INIT_WORK(&dev_priv->gpu_error.work, i915_error_work_func);
c6a828d3 4651 INIT_WORK(&dev_priv->rps.work, gen6_pm_rps_work);
a4da4fa4 4652 INIT_WORK(&dev_priv->l3_parity.error_work, ivybridge_parity_work);
8b2e326d 4653
a6706b45 4654 /* Let's track the enabled rps events */
31685c25
D
4655 if (IS_VALLEYVIEW(dev))
4656 /* WaGsvRC0ResidenncyMethod:VLV */
4657 dev_priv->pm_rps_events = GEN6_PM_RP_UP_EI_EXPIRED;
4658 else
4659 dev_priv->pm_rps_events = GEN6_PM_RPS_EVENTS;
a6706b45 4660
99584db3
DV
4661 setup_timer(&dev_priv->gpu_error.hangcheck_timer,
4662 i915_hangcheck_elapsed,
61bac78e 4663 (unsigned long) dev);
3ca1cced 4664 setup_timer(&dev_priv->hotplug_reenable_timer, intel_hpd_irq_reenable,
ac4c16c5 4665 (unsigned long) dev_priv);
61bac78e 4666
97a19a24 4667 pm_qos_add_request(&dev_priv->pm_qos, PM_QOS_CPU_DMA_LATENCY, PM_QOS_DEFAULT_VALUE);
9ee32fea 4668
95f25bed
JB
4669 /* Haven't installed the IRQ handler yet */
4670 dev_priv->pm._irqs_disabled = true;
4671
4cdb83ec
VS
4672 if (IS_GEN2(dev)) {
4673 dev->max_vblank_count = 0;
4674 dev->driver->get_vblank_counter = i8xx_get_vblank_counter;
4675 } else if (IS_G4X(dev) || INTEL_INFO(dev)->gen >= 5) {
f71d4af4
JB
4676 dev->max_vblank_count = 0xffffffff; /* full 32 bit counter */
4677 dev->driver->get_vblank_counter = gm45_get_vblank_counter;
391f75e2
VS
4678 } else {
4679 dev->driver->get_vblank_counter = i915_get_vblank_counter;
4680 dev->max_vblank_count = 0xffffff; /* only 24 bits of frame count */
f71d4af4
JB
4681 }
4682
21da2700
VS
4683 /*
4684 * Opt out of the vblank disable timer on everything except gen2.
4685 * Gen2 doesn't have a hardware frame counter and so depends on
4686 * vblank interrupts to produce sane vblank seuquence numbers.
4687 */
4688 if (!IS_GEN2(dev))
4689 dev->vblank_disable_immediate = true;
4690
c2baf4b7 4691 if (drm_core_check_feature(dev, DRIVER_MODESET)) {
c3613de9 4692 dev->driver->get_vblank_timestamp = i915_get_vblank_timestamp;
c2baf4b7
VS
4693 dev->driver->get_scanout_position = i915_get_crtc_scanoutpos;
4694 }
f71d4af4 4695
43f328d7
VS
4696 if (IS_CHERRYVIEW(dev)) {
4697 dev->driver->irq_handler = cherryview_irq_handler;
4698 dev->driver->irq_preinstall = cherryview_irq_preinstall;
4699 dev->driver->irq_postinstall = cherryview_irq_postinstall;
4700 dev->driver->irq_uninstall = cherryview_irq_uninstall;
4701 dev->driver->enable_vblank = valleyview_enable_vblank;
4702 dev->driver->disable_vblank = valleyview_disable_vblank;
4703 dev_priv->display.hpd_irq_setup = i915_hpd_irq_setup;
4704 } else if (IS_VALLEYVIEW(dev)) {
7e231dbe
JB
4705 dev->driver->irq_handler = valleyview_irq_handler;
4706 dev->driver->irq_preinstall = valleyview_irq_preinstall;
4707 dev->driver->irq_postinstall = valleyview_irq_postinstall;
4708 dev->driver->irq_uninstall = valleyview_irq_uninstall;
4709 dev->driver->enable_vblank = valleyview_enable_vblank;
4710 dev->driver->disable_vblank = valleyview_disable_vblank;
fa00abe0 4711 dev_priv->display.hpd_irq_setup = i915_hpd_irq_setup;
abd58f01
BW
4712 } else if (IS_GEN8(dev)) {
4713 dev->driver->irq_handler = gen8_irq_handler;
723761b8 4714 dev->driver->irq_preinstall = gen8_irq_reset;
abd58f01
BW
4715 dev->driver->irq_postinstall = gen8_irq_postinstall;
4716 dev->driver->irq_uninstall = gen8_irq_uninstall;
4717 dev->driver->enable_vblank = gen8_enable_vblank;
4718 dev->driver->disable_vblank = gen8_disable_vblank;
4719 dev_priv->display.hpd_irq_setup = ibx_hpd_irq_setup;
f71d4af4
JB
4720 } else if (HAS_PCH_SPLIT(dev)) {
4721 dev->driver->irq_handler = ironlake_irq_handler;
723761b8 4722 dev->driver->irq_preinstall = ironlake_irq_reset;
f71d4af4
JB
4723 dev->driver->irq_postinstall = ironlake_irq_postinstall;
4724 dev->driver->irq_uninstall = ironlake_irq_uninstall;
4725 dev->driver->enable_vblank = ironlake_enable_vblank;
4726 dev->driver->disable_vblank = ironlake_disable_vblank;
82a28bcf 4727 dev_priv->display.hpd_irq_setup = ibx_hpd_irq_setup;
f71d4af4 4728 } else {
c2798b19
CW
4729 if (INTEL_INFO(dev)->gen == 2) {
4730 dev->driver->irq_preinstall = i8xx_irq_preinstall;
4731 dev->driver->irq_postinstall = i8xx_irq_postinstall;
4732 dev->driver->irq_handler = i8xx_irq_handler;
4733 dev->driver->irq_uninstall = i8xx_irq_uninstall;
a266c7d5
CW
4734 } else if (INTEL_INFO(dev)->gen == 3) {
4735 dev->driver->irq_preinstall = i915_irq_preinstall;
4736 dev->driver->irq_postinstall = i915_irq_postinstall;
4737 dev->driver->irq_uninstall = i915_irq_uninstall;
4738 dev->driver->irq_handler = i915_irq_handler;
20afbda2 4739 dev_priv->display.hpd_irq_setup = i915_hpd_irq_setup;
c2798b19 4740 } else {
a266c7d5
CW
4741 dev->driver->irq_preinstall = i965_irq_preinstall;
4742 dev->driver->irq_postinstall = i965_irq_postinstall;
4743 dev->driver->irq_uninstall = i965_irq_uninstall;
4744 dev->driver->irq_handler = i965_irq_handler;
bac56d5b 4745 dev_priv->display.hpd_irq_setup = i915_hpd_irq_setup;
c2798b19 4746 }
f71d4af4
JB
4747 dev->driver->enable_vblank = i915_enable_vblank;
4748 dev->driver->disable_vblank = i915_disable_vblank;
4749 }
4750}
20afbda2
DV
4751
4752void intel_hpd_init(struct drm_device *dev)
4753{
4754 struct drm_i915_private *dev_priv = dev->dev_private;
821450c6
EE
4755 struct drm_mode_config *mode_config = &dev->mode_config;
4756 struct drm_connector *connector;
b5ea2d56 4757 unsigned long irqflags;
821450c6 4758 int i;
20afbda2 4759
821450c6
EE
4760 for (i = 1; i < HPD_NUM_PINS; i++) {
4761 dev_priv->hpd_stats[i].hpd_cnt = 0;
4762 dev_priv->hpd_stats[i].hpd_mark = HPD_ENABLED;
4763 }
4764 list_for_each_entry(connector, &mode_config->connector_list, head) {
4765 struct intel_connector *intel_connector = to_intel_connector(connector);
4766 connector->polled = intel_connector->polled;
0e32b39c
DA
4767 if (connector->encoder && !connector->polled && I915_HAS_HOTPLUG(dev) && intel_connector->encoder->hpd_pin > HPD_NONE)
4768 connector->polled = DRM_CONNECTOR_POLL_HPD;
4769 if (intel_connector->mst_port)
821450c6
EE
4770 connector->polled = DRM_CONNECTOR_POLL_HPD;
4771 }
b5ea2d56
DV
4772
4773 /* Interrupt setup is already guaranteed to be single-threaded, this is
4774 * just to make the assert_spin_locked checks happy. */
4775 spin_lock_irqsave(&dev_priv->irq_lock, irqflags);
20afbda2
DV
4776 if (dev_priv->display.hpd_irq_setup)
4777 dev_priv->display.hpd_irq_setup(dev);
b5ea2d56 4778 spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags);
20afbda2 4779}
c67a470b 4780
5d584b2e 4781/* Disable interrupts so we can allow runtime PM. */
730488b2 4782void intel_runtime_pm_disable_interrupts(struct drm_device *dev)
c67a470b
PZ
4783{
4784 struct drm_i915_private *dev_priv = dev->dev_private;
c67a470b 4785
730488b2 4786 dev->driver->irq_uninstall(dev);
9df7575f 4787 dev_priv->pm._irqs_disabled = true;
c67a470b
PZ
4788}
4789
5d584b2e 4790/* Restore interrupts so we can recover from runtime PM. */
730488b2 4791void intel_runtime_pm_restore_interrupts(struct drm_device *dev)
c67a470b
PZ
4792{
4793 struct drm_i915_private *dev_priv = dev->dev_private;
c67a470b 4794
9df7575f 4795 dev_priv->pm._irqs_disabled = false;
730488b2
PZ
4796 dev->driver->irq_preinstall(dev);
4797 dev->driver->irq_postinstall(dev);
c67a470b 4798}