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CommitLineData
2017263e
BG
1/*
2 * Copyright © 2008 Intel Corporation
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
21 * IN THE SOFTWARE.
22 *
23 * Authors:
24 * Eric Anholt <eric@anholt.net>
25 * Keith Packard <keithp@keithp.com>
26 *
27 */
28
29#include <linux/seq_file.h>
b2c88f5b 30#include <linux/circ_buf.h>
926321d5 31#include <linux/ctype.h>
f3cd474b 32#include <linux/debugfs.h>
5a0e3ad6 33#include <linux/slab.h>
2d1a8a48 34#include <linux/export.h>
6d2b8885 35#include <linux/list_sort.h>
ec013e7f 36#include <asm/msr-index.h>
760285e7 37#include <drm/drmP.h>
4e5359cd 38#include "intel_drv.h"
e5c65260 39#include "intel_ringbuffer.h"
760285e7 40#include <drm/i915_drm.h>
2017263e
BG
41#include "i915_drv.h"
42
f13d3f73 43enum {
69dc4987 44 ACTIVE_LIST,
f13d3f73 45 INACTIVE_LIST,
d21d5975 46 PINNED_LIST,
f13d3f73 47};
2017263e 48
70d39fe4
CW
49static const char *yesno(int v)
50{
51 return v ? "yes" : "no";
52}
53
497666d8
DL
54/* As the drm_debugfs_init() routines are called before dev->dev_private is
55 * allocated we need to hook into the minor for release. */
56static int
57drm_add_fake_info_node(struct drm_minor *minor,
58 struct dentry *ent,
59 const void *key)
60{
61 struct drm_info_node *node;
62
63 node = kmalloc(sizeof(*node), GFP_KERNEL);
64 if (node == NULL) {
65 debugfs_remove(ent);
66 return -ENOMEM;
67 }
68
69 node->minor = minor;
70 node->dent = ent;
71 node->info_ent = (void *) key;
72
73 mutex_lock(&minor->debugfs_lock);
74 list_add(&node->list, &minor->debugfs_list);
75 mutex_unlock(&minor->debugfs_lock);
76
77 return 0;
78}
79
70d39fe4
CW
80static int i915_capabilities(struct seq_file *m, void *data)
81{
82 struct drm_info_node *node = (struct drm_info_node *) m->private;
83 struct drm_device *dev = node->minor->dev;
84 const struct intel_device_info *info = INTEL_INFO(dev);
85
86 seq_printf(m, "gen: %d\n", info->gen);
03d00ac5 87 seq_printf(m, "pch: %d\n", INTEL_PCH_TYPE(dev));
79fc46df
DL
88#define PRINT_FLAG(x) seq_printf(m, #x ": %s\n", yesno(info->x))
89#define SEP_SEMICOLON ;
90 DEV_INFO_FOR_EACH_FLAG(PRINT_FLAG, SEP_SEMICOLON);
91#undef PRINT_FLAG
92#undef SEP_SEMICOLON
70d39fe4
CW
93
94 return 0;
95}
2017263e 96
05394f39 97static const char *get_pin_flag(struct drm_i915_gem_object *obj)
a6172a80 98{
05394f39 99 if (obj->user_pin_count > 0)
a6172a80 100 return "P";
d7f46fc4 101 else if (i915_gem_obj_is_pinned(obj))
a6172a80
CW
102 return "p";
103 else
104 return " ";
105}
106
05394f39 107static const char *get_tiling_flag(struct drm_i915_gem_object *obj)
a6172a80 108{
0206e353
AJ
109 switch (obj->tiling_mode) {
110 default:
111 case I915_TILING_NONE: return " ";
112 case I915_TILING_X: return "X";
113 case I915_TILING_Y: return "Y";
114 }
a6172a80
CW
115}
116
1d693bcc
BW
117static inline const char *get_global_flag(struct drm_i915_gem_object *obj)
118{
119 return obj->has_global_gtt_mapping ? "g" : " ";
120}
121
37811fcc
CW
122static void
123describe_obj(struct seq_file *m, struct drm_i915_gem_object *obj)
124{
1d693bcc 125 struct i915_vma *vma;
d7f46fc4
BW
126 int pin_count = 0;
127
fb1ae911 128 seq_printf(m, "%pK: %s%s%s %8zdKiB %02x %02x %u %u %u%s%s%s",
37811fcc
CW
129 &obj->base,
130 get_pin_flag(obj),
131 get_tiling_flag(obj),
1d693bcc 132 get_global_flag(obj),
a05a5862 133 obj->base.size / 1024,
37811fcc
CW
134 obj->base.read_domains,
135 obj->base.write_domain,
0201f1ec
CW
136 obj->last_read_seqno,
137 obj->last_write_seqno,
caea7476 138 obj->last_fenced_seqno,
84734a04 139 i915_cache_level_str(obj->cache_level),
37811fcc
CW
140 obj->dirty ? " dirty" : "",
141 obj->madv == I915_MADV_DONTNEED ? " purgeable" : "");
142 if (obj->base.name)
143 seq_printf(m, " (name: %d)", obj->base.name);
d7f46fc4
BW
144 list_for_each_entry(vma, &obj->vma_list, vma_link)
145 if (vma->pin_count > 0)
146 pin_count++;
147 seq_printf(m, " (pinned x %d)", pin_count);
cc98b413
CW
148 if (obj->pin_display)
149 seq_printf(m, " (display)");
37811fcc
CW
150 if (obj->fence_reg != I915_FENCE_REG_NONE)
151 seq_printf(m, " (fence: %d)", obj->fence_reg);
1d693bcc
BW
152 list_for_each_entry(vma, &obj->vma_list, vma_link) {
153 if (!i915_is_ggtt(vma->vm))
154 seq_puts(m, " (pp");
155 else
156 seq_puts(m, " (g");
157 seq_printf(m, "gtt offset: %08lx, size: %08lx)",
158 vma->node.start, vma->node.size);
159 }
c1ad11fc
CW
160 if (obj->stolen)
161 seq_printf(m, " (stolen: %08lx)", obj->stolen->start);
6299f992
CW
162 if (obj->pin_mappable || obj->fault_mappable) {
163 char s[3], *t = s;
164 if (obj->pin_mappable)
165 *t++ = 'p';
166 if (obj->fault_mappable)
167 *t++ = 'f';
168 *t = '\0';
169 seq_printf(m, " (%s mappable)", s);
170 }
69dc4987
CW
171 if (obj->ring != NULL)
172 seq_printf(m, " (%s)", obj->ring->name);
37811fcc
CW
173}
174
3ccfd19d
BW
175static void describe_ctx(struct seq_file *m, struct i915_hw_context *ctx)
176{
177 seq_putc(m, ctx->is_initialized ? 'I' : 'i');
178 seq_putc(m, ctx->remap_slice ? 'R' : 'r');
179 seq_putc(m, ' ');
180}
181
433e12f7 182static int i915_gem_object_list_info(struct seq_file *m, void *data)
2017263e
BG
183{
184 struct drm_info_node *node = (struct drm_info_node *) m->private;
433e12f7
BG
185 uintptr_t list = (uintptr_t) node->info_ent->data;
186 struct list_head *head;
2017263e 187 struct drm_device *dev = node->minor->dev;
5cef07e1
BW
188 struct drm_i915_private *dev_priv = dev->dev_private;
189 struct i915_address_space *vm = &dev_priv->gtt.base;
ca191b13 190 struct i915_vma *vma;
8f2480fb
CW
191 size_t total_obj_size, total_gtt_size;
192 int count, ret;
de227ef0
CW
193
194 ret = mutex_lock_interruptible(&dev->struct_mutex);
195 if (ret)
196 return ret;
2017263e 197
ca191b13 198 /* FIXME: the user of this interface might want more than just GGTT */
433e12f7
BG
199 switch (list) {
200 case ACTIVE_LIST:
267f0c90 201 seq_puts(m, "Active:\n");
5cef07e1 202 head = &vm->active_list;
433e12f7
BG
203 break;
204 case INACTIVE_LIST:
267f0c90 205 seq_puts(m, "Inactive:\n");
5cef07e1 206 head = &vm->inactive_list;
433e12f7 207 break;
433e12f7 208 default:
de227ef0
CW
209 mutex_unlock(&dev->struct_mutex);
210 return -EINVAL;
2017263e 211 }
2017263e 212
8f2480fb 213 total_obj_size = total_gtt_size = count = 0;
ca191b13
BW
214 list_for_each_entry(vma, head, mm_list) {
215 seq_printf(m, " ");
216 describe_obj(m, vma->obj);
217 seq_printf(m, "\n");
218 total_obj_size += vma->obj->base.size;
219 total_gtt_size += vma->node.size;
8f2480fb 220 count++;
2017263e 221 }
de227ef0 222 mutex_unlock(&dev->struct_mutex);
5e118f41 223
8f2480fb
CW
224 seq_printf(m, "Total %d objects, %zu bytes, %zu GTT size\n",
225 count, total_obj_size, total_gtt_size);
2017263e
BG
226 return 0;
227}
228
6d2b8885
CW
229static int obj_rank_by_stolen(void *priv,
230 struct list_head *A, struct list_head *B)
231{
232 struct drm_i915_gem_object *a =
b25cb2f8 233 container_of(A, struct drm_i915_gem_object, obj_exec_link);
6d2b8885 234 struct drm_i915_gem_object *b =
b25cb2f8 235 container_of(B, struct drm_i915_gem_object, obj_exec_link);
6d2b8885
CW
236
237 return a->stolen->start - b->stolen->start;
238}
239
240static int i915_gem_stolen_list_info(struct seq_file *m, void *data)
241{
242 struct drm_info_node *node = (struct drm_info_node *) m->private;
243 struct drm_device *dev = node->minor->dev;
244 struct drm_i915_private *dev_priv = dev->dev_private;
245 struct drm_i915_gem_object *obj;
246 size_t total_obj_size, total_gtt_size;
247 LIST_HEAD(stolen);
248 int count, ret;
249
250 ret = mutex_lock_interruptible(&dev->struct_mutex);
251 if (ret)
252 return ret;
253
254 total_obj_size = total_gtt_size = count = 0;
255 list_for_each_entry(obj, &dev_priv->mm.bound_list, global_list) {
256 if (obj->stolen == NULL)
257 continue;
258
b25cb2f8 259 list_add(&obj->obj_exec_link, &stolen);
6d2b8885
CW
260
261 total_obj_size += obj->base.size;
262 total_gtt_size += i915_gem_obj_ggtt_size(obj);
263 count++;
264 }
265 list_for_each_entry(obj, &dev_priv->mm.unbound_list, global_list) {
266 if (obj->stolen == NULL)
267 continue;
268
b25cb2f8 269 list_add(&obj->obj_exec_link, &stolen);
6d2b8885
CW
270
271 total_obj_size += obj->base.size;
272 count++;
273 }
274 list_sort(NULL, &stolen, obj_rank_by_stolen);
275 seq_puts(m, "Stolen:\n");
276 while (!list_empty(&stolen)) {
b25cb2f8 277 obj = list_first_entry(&stolen, typeof(*obj), obj_exec_link);
6d2b8885
CW
278 seq_puts(m, " ");
279 describe_obj(m, obj);
280 seq_putc(m, '\n');
b25cb2f8 281 list_del_init(&obj->obj_exec_link);
6d2b8885
CW
282 }
283 mutex_unlock(&dev->struct_mutex);
284
285 seq_printf(m, "Total %d objects, %zu bytes, %zu GTT size\n",
286 count, total_obj_size, total_gtt_size);
287 return 0;
288}
289
6299f992
CW
290#define count_objects(list, member) do { \
291 list_for_each_entry(obj, list, member) { \
f343c5f6 292 size += i915_gem_obj_ggtt_size(obj); \
6299f992
CW
293 ++count; \
294 if (obj->map_and_fenceable) { \
f343c5f6 295 mappable_size += i915_gem_obj_ggtt_size(obj); \
6299f992
CW
296 ++mappable_count; \
297 } \
298 } \
0206e353 299} while (0)
6299f992 300
2db8e9d6 301struct file_stats {
6313c204 302 struct drm_i915_file_private *file_priv;
2db8e9d6 303 int count;
c67a17e9
CW
304 size_t total, unbound;
305 size_t global, shared;
306 size_t active, inactive;
2db8e9d6
CW
307};
308
309static int per_file_stats(int id, void *ptr, void *data)
310{
311 struct drm_i915_gem_object *obj = ptr;
312 struct file_stats *stats = data;
6313c204 313 struct i915_vma *vma;
2db8e9d6
CW
314
315 stats->count++;
316 stats->total += obj->base.size;
317
c67a17e9
CW
318 if (obj->base.name || obj->base.dma_buf)
319 stats->shared += obj->base.size;
320
6313c204
CW
321 if (USES_FULL_PPGTT(obj->base.dev)) {
322 list_for_each_entry(vma, &obj->vma_list, vma_link) {
323 struct i915_hw_ppgtt *ppgtt;
324
325 if (!drm_mm_node_allocated(&vma->node))
326 continue;
327
328 if (i915_is_ggtt(vma->vm)) {
329 stats->global += obj->base.size;
330 continue;
331 }
332
333 ppgtt = container_of(vma->vm, struct i915_hw_ppgtt, base);
334 if (ppgtt->ctx && ppgtt->ctx->file_priv != stats->file_priv)
335 continue;
336
337 if (obj->ring) /* XXX per-vma statistic */
338 stats->active += obj->base.size;
339 else
340 stats->inactive += obj->base.size;
341
342 return 0;
343 }
2db8e9d6 344 } else {
6313c204
CW
345 if (i915_gem_obj_ggtt_bound(obj)) {
346 stats->global += obj->base.size;
347 if (obj->ring)
348 stats->active += obj->base.size;
349 else
350 stats->inactive += obj->base.size;
351 return 0;
352 }
2db8e9d6
CW
353 }
354
6313c204
CW
355 if (!list_empty(&obj->global_list))
356 stats->unbound += obj->base.size;
357
2db8e9d6
CW
358 return 0;
359}
360
ca191b13
BW
361#define count_vmas(list, member) do { \
362 list_for_each_entry(vma, list, member) { \
363 size += i915_gem_obj_ggtt_size(vma->obj); \
364 ++count; \
365 if (vma->obj->map_and_fenceable) { \
366 mappable_size += i915_gem_obj_ggtt_size(vma->obj); \
367 ++mappable_count; \
368 } \
369 } \
370} while (0)
371
372static int i915_gem_object_info(struct seq_file *m, void* data)
73aa808f
CW
373{
374 struct drm_info_node *node = (struct drm_info_node *) m->private;
375 struct drm_device *dev = node->minor->dev;
376 struct drm_i915_private *dev_priv = dev->dev_private;
b7abb714
CW
377 u32 count, mappable_count, purgeable_count;
378 size_t size, mappable_size, purgeable_size;
6299f992 379 struct drm_i915_gem_object *obj;
5cef07e1 380 struct i915_address_space *vm = &dev_priv->gtt.base;
2db8e9d6 381 struct drm_file *file;
ca191b13 382 struct i915_vma *vma;
73aa808f
CW
383 int ret;
384
385 ret = mutex_lock_interruptible(&dev->struct_mutex);
386 if (ret)
387 return ret;
388
6299f992
CW
389 seq_printf(m, "%u objects, %zu bytes\n",
390 dev_priv->mm.object_count,
391 dev_priv->mm.object_memory);
392
393 size = count = mappable_size = mappable_count = 0;
35c20a60 394 count_objects(&dev_priv->mm.bound_list, global_list);
6299f992
CW
395 seq_printf(m, "%u [%u] objects, %zu [%zu] bytes in gtt\n",
396 count, mappable_count, size, mappable_size);
397
398 size = count = mappable_size = mappable_count = 0;
ca191b13 399 count_vmas(&vm->active_list, mm_list);
6299f992
CW
400 seq_printf(m, " %u [%u] active objects, %zu [%zu] bytes\n",
401 count, mappable_count, size, mappable_size);
402
6299f992 403 size = count = mappable_size = mappable_count = 0;
ca191b13 404 count_vmas(&vm->inactive_list, mm_list);
6299f992
CW
405 seq_printf(m, " %u [%u] inactive objects, %zu [%zu] bytes\n",
406 count, mappable_count, size, mappable_size);
407
b7abb714 408 size = count = purgeable_size = purgeable_count = 0;
35c20a60 409 list_for_each_entry(obj, &dev_priv->mm.unbound_list, global_list) {
6c085a72 410 size += obj->base.size, ++count;
b7abb714
CW
411 if (obj->madv == I915_MADV_DONTNEED)
412 purgeable_size += obj->base.size, ++purgeable_count;
413 }
6c085a72
CW
414 seq_printf(m, "%u unbound objects, %zu bytes\n", count, size);
415
6299f992 416 size = count = mappable_size = mappable_count = 0;
35c20a60 417 list_for_each_entry(obj, &dev_priv->mm.bound_list, global_list) {
6299f992 418 if (obj->fault_mappable) {
f343c5f6 419 size += i915_gem_obj_ggtt_size(obj);
6299f992
CW
420 ++count;
421 }
422 if (obj->pin_mappable) {
f343c5f6 423 mappable_size += i915_gem_obj_ggtt_size(obj);
6299f992
CW
424 ++mappable_count;
425 }
b7abb714
CW
426 if (obj->madv == I915_MADV_DONTNEED) {
427 purgeable_size += obj->base.size;
428 ++purgeable_count;
429 }
6299f992 430 }
b7abb714
CW
431 seq_printf(m, "%u purgeable objects, %zu bytes\n",
432 purgeable_count, purgeable_size);
6299f992
CW
433 seq_printf(m, "%u pinned mappable objects, %zu bytes\n",
434 mappable_count, mappable_size);
435 seq_printf(m, "%u fault mappable objects, %zu bytes\n",
436 count, size);
437
93d18799 438 seq_printf(m, "%zu [%lu] gtt total\n",
853ba5d2
BW
439 dev_priv->gtt.base.total,
440 dev_priv->gtt.mappable_end - dev_priv->gtt.base.start);
73aa808f 441
267f0c90 442 seq_putc(m, '\n');
2db8e9d6
CW
443 list_for_each_entry_reverse(file, &dev->filelist, lhead) {
444 struct file_stats stats;
3ec2f427 445 struct task_struct *task;
2db8e9d6
CW
446
447 memset(&stats, 0, sizeof(stats));
6313c204 448 stats.file_priv = file->driver_priv;
2db8e9d6 449 idr_for_each(&file->object_idr, per_file_stats, &stats);
3ec2f427
TH
450 /*
451 * Although we have a valid reference on file->pid, that does
452 * not guarantee that the task_struct who called get_pid() is
453 * still alive (e.g. get_pid(current) => fork() => exit()).
454 * Therefore, we need to protect this ->comm access using RCU.
455 */
456 rcu_read_lock();
457 task = pid_task(file->pid, PIDTYPE_PID);
c67a17e9 458 seq_printf(m, "%s: %u objects, %zu bytes (%zu active, %zu inactive, %zu global, %zu shared, %zu unbound)\n",
3ec2f427 459 task ? task->comm : "<unknown>",
2db8e9d6
CW
460 stats.count,
461 stats.total,
462 stats.active,
463 stats.inactive,
6313c204 464 stats.global,
c67a17e9 465 stats.shared,
2db8e9d6 466 stats.unbound);
3ec2f427 467 rcu_read_unlock();
2db8e9d6
CW
468 }
469
73aa808f
CW
470 mutex_unlock(&dev->struct_mutex);
471
472 return 0;
473}
474
aee56cff 475static int i915_gem_gtt_info(struct seq_file *m, void *data)
08c18323
CW
476{
477 struct drm_info_node *node = (struct drm_info_node *) m->private;
478 struct drm_device *dev = node->minor->dev;
1b50247a 479 uintptr_t list = (uintptr_t) node->info_ent->data;
08c18323
CW
480 struct drm_i915_private *dev_priv = dev->dev_private;
481 struct drm_i915_gem_object *obj;
482 size_t total_obj_size, total_gtt_size;
483 int count, ret;
484
485 ret = mutex_lock_interruptible(&dev->struct_mutex);
486 if (ret)
487 return ret;
488
489 total_obj_size = total_gtt_size = count = 0;
35c20a60 490 list_for_each_entry(obj, &dev_priv->mm.bound_list, global_list) {
d7f46fc4 491 if (list == PINNED_LIST && !i915_gem_obj_is_pinned(obj))
1b50247a
CW
492 continue;
493
267f0c90 494 seq_puts(m, " ");
08c18323 495 describe_obj(m, obj);
267f0c90 496 seq_putc(m, '\n');
08c18323 497 total_obj_size += obj->base.size;
f343c5f6 498 total_gtt_size += i915_gem_obj_ggtt_size(obj);
08c18323
CW
499 count++;
500 }
501
502 mutex_unlock(&dev->struct_mutex);
503
504 seq_printf(m, "Total %d objects, %zu bytes, %zu GTT size\n",
505 count, total_obj_size, total_gtt_size);
506
507 return 0;
508}
509
4e5359cd
SF
510static int i915_gem_pageflip_info(struct seq_file *m, void *data)
511{
512 struct drm_info_node *node = (struct drm_info_node *) m->private;
513 struct drm_device *dev = node->minor->dev;
514 unsigned long flags;
515 struct intel_crtc *crtc;
516
517 list_for_each_entry(crtc, &dev->mode_config.crtc_list, base.head) {
9db4a9c7
JB
518 const char pipe = pipe_name(crtc->pipe);
519 const char plane = plane_name(crtc->plane);
4e5359cd
SF
520 struct intel_unpin_work *work;
521
522 spin_lock_irqsave(&dev->event_lock, flags);
523 work = crtc->unpin_work;
524 if (work == NULL) {
9db4a9c7 525 seq_printf(m, "No flip due on pipe %c (plane %c)\n",
4e5359cd
SF
526 pipe, plane);
527 } else {
e7d841ca 528 if (atomic_read(&work->pending) < INTEL_FLIP_COMPLETE) {
9db4a9c7 529 seq_printf(m, "Flip queued on pipe %c (plane %c)\n",
4e5359cd
SF
530 pipe, plane);
531 } else {
9db4a9c7 532 seq_printf(m, "Flip pending (waiting for vsync) on pipe %c (plane %c)\n",
4e5359cd
SF
533 pipe, plane);
534 }
535 if (work->enable_stall_check)
267f0c90 536 seq_puts(m, "Stall check enabled, ");
4e5359cd 537 else
267f0c90 538 seq_puts(m, "Stall check waiting for page flip ioctl, ");
e7d841ca 539 seq_printf(m, "%d prepares\n", atomic_read(&work->pending));
4e5359cd
SF
540
541 if (work->old_fb_obj) {
05394f39
CW
542 struct drm_i915_gem_object *obj = work->old_fb_obj;
543 if (obj)
f343c5f6
BW
544 seq_printf(m, "Old framebuffer gtt_offset 0x%08lx\n",
545 i915_gem_obj_ggtt_offset(obj));
4e5359cd
SF
546 }
547 if (work->pending_flip_obj) {
05394f39
CW
548 struct drm_i915_gem_object *obj = work->pending_flip_obj;
549 if (obj)
f343c5f6
BW
550 seq_printf(m, "New framebuffer gtt_offset 0x%08lx\n",
551 i915_gem_obj_ggtt_offset(obj));
4e5359cd
SF
552 }
553 }
554 spin_unlock_irqrestore(&dev->event_lock, flags);
555 }
556
557 return 0;
558}
559
2017263e
BG
560static int i915_gem_request_info(struct seq_file *m, void *data)
561{
562 struct drm_info_node *node = (struct drm_info_node *) m->private;
563 struct drm_device *dev = node->minor->dev;
e277a1f8 564 struct drm_i915_private *dev_priv = dev->dev_private;
a2c7f6fd 565 struct intel_ring_buffer *ring;
2017263e 566 struct drm_i915_gem_request *gem_request;
a2c7f6fd 567 int ret, count, i;
de227ef0
CW
568
569 ret = mutex_lock_interruptible(&dev->struct_mutex);
570 if (ret)
571 return ret;
2017263e 572
c2c347a9 573 count = 0;
a2c7f6fd
CW
574 for_each_ring(ring, dev_priv, i) {
575 if (list_empty(&ring->request_list))
576 continue;
577
578 seq_printf(m, "%s requests:\n", ring->name);
c2c347a9 579 list_for_each_entry(gem_request,
a2c7f6fd 580 &ring->request_list,
c2c347a9
CW
581 list) {
582 seq_printf(m, " %d @ %d\n",
583 gem_request->seqno,
584 (int) (jiffies - gem_request->emitted_jiffies));
585 }
586 count++;
2017263e 587 }
de227ef0
CW
588 mutex_unlock(&dev->struct_mutex);
589
c2c347a9 590 if (count == 0)
267f0c90 591 seq_puts(m, "No requests\n");
c2c347a9 592
2017263e
BG
593 return 0;
594}
595
b2223497
CW
596static void i915_ring_seqno_info(struct seq_file *m,
597 struct intel_ring_buffer *ring)
598{
599 if (ring->get_seqno) {
43a7b924 600 seq_printf(m, "Current sequence (%s): %u\n",
b2eadbc8 601 ring->name, ring->get_seqno(ring, false));
b2223497
CW
602 }
603}
604
2017263e
BG
605static int i915_gem_seqno_info(struct seq_file *m, void *data)
606{
607 struct drm_info_node *node = (struct drm_info_node *) m->private;
608 struct drm_device *dev = node->minor->dev;
e277a1f8 609 struct drm_i915_private *dev_priv = dev->dev_private;
a2c7f6fd 610 struct intel_ring_buffer *ring;
1ec14ad3 611 int ret, i;
de227ef0
CW
612
613 ret = mutex_lock_interruptible(&dev->struct_mutex);
614 if (ret)
615 return ret;
c8c8fb33 616 intel_runtime_pm_get(dev_priv);
2017263e 617
a2c7f6fd
CW
618 for_each_ring(ring, dev_priv, i)
619 i915_ring_seqno_info(m, ring);
de227ef0 620
c8c8fb33 621 intel_runtime_pm_put(dev_priv);
de227ef0
CW
622 mutex_unlock(&dev->struct_mutex);
623
2017263e
BG
624 return 0;
625}
626
627
628static int i915_interrupt_info(struct seq_file *m, void *data)
629{
630 struct drm_info_node *node = (struct drm_info_node *) m->private;
631 struct drm_device *dev = node->minor->dev;
e277a1f8 632 struct drm_i915_private *dev_priv = dev->dev_private;
a2c7f6fd 633 struct intel_ring_buffer *ring;
9db4a9c7 634 int ret, i, pipe;
de227ef0
CW
635
636 ret = mutex_lock_interruptible(&dev->struct_mutex);
637 if (ret)
638 return ret;
c8c8fb33 639 intel_runtime_pm_get(dev_priv);
2017263e 640
a123f157 641 if (INTEL_INFO(dev)->gen >= 8) {
a123f157
BW
642 seq_printf(m, "Master Interrupt Control:\t%08x\n",
643 I915_READ(GEN8_MASTER_IRQ));
644
645 for (i = 0; i < 4; i++) {
646 seq_printf(m, "GT Interrupt IMR %d:\t%08x\n",
647 i, I915_READ(GEN8_GT_IMR(i)));
648 seq_printf(m, "GT Interrupt IIR %d:\t%08x\n",
649 i, I915_READ(GEN8_GT_IIR(i)));
650 seq_printf(m, "GT Interrupt IER %d:\t%08x\n",
651 i, I915_READ(GEN8_GT_IER(i)));
652 }
653
07d27e20 654 for_each_pipe(pipe) {
a123f157 655 seq_printf(m, "Pipe %c IMR:\t%08x\n",
07d27e20
DL
656 pipe_name(pipe),
657 I915_READ(GEN8_DE_PIPE_IMR(pipe)));
a123f157 658 seq_printf(m, "Pipe %c IIR:\t%08x\n",
07d27e20
DL
659 pipe_name(pipe),
660 I915_READ(GEN8_DE_PIPE_IIR(pipe)));
a123f157 661 seq_printf(m, "Pipe %c IER:\t%08x\n",
07d27e20
DL
662 pipe_name(pipe),
663 I915_READ(GEN8_DE_PIPE_IER(pipe)));
a123f157
BW
664 }
665
666 seq_printf(m, "Display Engine port interrupt mask:\t%08x\n",
667 I915_READ(GEN8_DE_PORT_IMR));
668 seq_printf(m, "Display Engine port interrupt identity:\t%08x\n",
669 I915_READ(GEN8_DE_PORT_IIR));
670 seq_printf(m, "Display Engine port interrupt enable:\t%08x\n",
671 I915_READ(GEN8_DE_PORT_IER));
672
673 seq_printf(m, "Display Engine misc interrupt mask:\t%08x\n",
674 I915_READ(GEN8_DE_MISC_IMR));
675 seq_printf(m, "Display Engine misc interrupt identity:\t%08x\n",
676 I915_READ(GEN8_DE_MISC_IIR));
677 seq_printf(m, "Display Engine misc interrupt enable:\t%08x\n",
678 I915_READ(GEN8_DE_MISC_IER));
679
680 seq_printf(m, "PCU interrupt mask:\t%08x\n",
681 I915_READ(GEN8_PCU_IMR));
682 seq_printf(m, "PCU interrupt identity:\t%08x\n",
683 I915_READ(GEN8_PCU_IIR));
684 seq_printf(m, "PCU interrupt enable:\t%08x\n",
685 I915_READ(GEN8_PCU_IER));
686 } else if (IS_VALLEYVIEW(dev)) {
7e231dbe
JB
687 seq_printf(m, "Display IER:\t%08x\n",
688 I915_READ(VLV_IER));
689 seq_printf(m, "Display IIR:\t%08x\n",
690 I915_READ(VLV_IIR));
691 seq_printf(m, "Display IIR_RW:\t%08x\n",
692 I915_READ(VLV_IIR_RW));
693 seq_printf(m, "Display IMR:\t%08x\n",
694 I915_READ(VLV_IMR));
695 for_each_pipe(pipe)
696 seq_printf(m, "Pipe %c stat:\t%08x\n",
697 pipe_name(pipe),
698 I915_READ(PIPESTAT(pipe)));
699
700 seq_printf(m, "Master IER:\t%08x\n",
701 I915_READ(VLV_MASTER_IER));
702
703 seq_printf(m, "Render IER:\t%08x\n",
704 I915_READ(GTIER));
705 seq_printf(m, "Render IIR:\t%08x\n",
706 I915_READ(GTIIR));
707 seq_printf(m, "Render IMR:\t%08x\n",
708 I915_READ(GTIMR));
709
710 seq_printf(m, "PM IER:\t\t%08x\n",
711 I915_READ(GEN6_PMIER));
712 seq_printf(m, "PM IIR:\t\t%08x\n",
713 I915_READ(GEN6_PMIIR));
714 seq_printf(m, "PM IMR:\t\t%08x\n",
715 I915_READ(GEN6_PMIMR));
716
717 seq_printf(m, "Port hotplug:\t%08x\n",
718 I915_READ(PORT_HOTPLUG_EN));
719 seq_printf(m, "DPFLIPSTAT:\t%08x\n",
720 I915_READ(VLV_DPFLIPSTAT));
721 seq_printf(m, "DPINVGTT:\t%08x\n",
722 I915_READ(DPINVGTT));
723
724 } else if (!HAS_PCH_SPLIT(dev)) {
5f6a1695
ZW
725 seq_printf(m, "Interrupt enable: %08x\n",
726 I915_READ(IER));
727 seq_printf(m, "Interrupt identity: %08x\n",
728 I915_READ(IIR));
729 seq_printf(m, "Interrupt mask: %08x\n",
730 I915_READ(IMR));
9db4a9c7
JB
731 for_each_pipe(pipe)
732 seq_printf(m, "Pipe %c stat: %08x\n",
733 pipe_name(pipe),
734 I915_READ(PIPESTAT(pipe)));
5f6a1695
ZW
735 } else {
736 seq_printf(m, "North Display Interrupt enable: %08x\n",
737 I915_READ(DEIER));
738 seq_printf(m, "North Display Interrupt identity: %08x\n",
739 I915_READ(DEIIR));
740 seq_printf(m, "North Display Interrupt mask: %08x\n",
741 I915_READ(DEIMR));
742 seq_printf(m, "South Display Interrupt enable: %08x\n",
743 I915_READ(SDEIER));
744 seq_printf(m, "South Display Interrupt identity: %08x\n",
745 I915_READ(SDEIIR));
746 seq_printf(m, "South Display Interrupt mask: %08x\n",
747 I915_READ(SDEIMR));
748 seq_printf(m, "Graphics Interrupt enable: %08x\n",
749 I915_READ(GTIER));
750 seq_printf(m, "Graphics Interrupt identity: %08x\n",
751 I915_READ(GTIIR));
752 seq_printf(m, "Graphics Interrupt mask: %08x\n",
753 I915_READ(GTIMR));
754 }
a2c7f6fd 755 for_each_ring(ring, dev_priv, i) {
a123f157 756 if (INTEL_INFO(dev)->gen >= 6) {
a2c7f6fd
CW
757 seq_printf(m,
758 "Graphics Interrupt mask (%s): %08x\n",
759 ring->name, I915_READ_IMR(ring));
9862e600 760 }
a2c7f6fd 761 i915_ring_seqno_info(m, ring);
9862e600 762 }
c8c8fb33 763 intel_runtime_pm_put(dev_priv);
de227ef0
CW
764 mutex_unlock(&dev->struct_mutex);
765
2017263e
BG
766 return 0;
767}
768
a6172a80
CW
769static int i915_gem_fence_regs_info(struct seq_file *m, void *data)
770{
771 struct drm_info_node *node = (struct drm_info_node *) m->private;
772 struct drm_device *dev = node->minor->dev;
e277a1f8 773 struct drm_i915_private *dev_priv = dev->dev_private;
de227ef0
CW
774 int i, ret;
775
776 ret = mutex_lock_interruptible(&dev->struct_mutex);
777 if (ret)
778 return ret;
a6172a80
CW
779
780 seq_printf(m, "Reserved fences = %d\n", dev_priv->fence_reg_start);
781 seq_printf(m, "Total fences = %d\n", dev_priv->num_fence_regs);
782 for (i = 0; i < dev_priv->num_fence_regs; i++) {
05394f39 783 struct drm_i915_gem_object *obj = dev_priv->fence_regs[i].obj;
a6172a80 784
6c085a72
CW
785 seq_printf(m, "Fence %d, pin count = %d, object = ",
786 i, dev_priv->fence_regs[i].pin_count);
c2c347a9 787 if (obj == NULL)
267f0c90 788 seq_puts(m, "unused");
c2c347a9 789 else
05394f39 790 describe_obj(m, obj);
267f0c90 791 seq_putc(m, '\n');
a6172a80
CW
792 }
793
05394f39 794 mutex_unlock(&dev->struct_mutex);
a6172a80
CW
795 return 0;
796}
797
2017263e
BG
798static int i915_hws_info(struct seq_file *m, void *data)
799{
800 struct drm_info_node *node = (struct drm_info_node *) m->private;
801 struct drm_device *dev = node->minor->dev;
e277a1f8 802 struct drm_i915_private *dev_priv = dev->dev_private;
4066c0ae 803 struct intel_ring_buffer *ring;
1a240d4d 804 const u32 *hws;
4066c0ae
CW
805 int i;
806
1ec14ad3 807 ring = &dev_priv->ring[(uintptr_t)node->info_ent->data];
1a240d4d 808 hws = ring->status_page.page_addr;
2017263e
BG
809 if (hws == NULL)
810 return 0;
811
812 for (i = 0; i < 4096 / sizeof(u32) / 4; i += 4) {
813 seq_printf(m, "0x%08x: 0x%08x 0x%08x 0x%08x 0x%08x\n",
814 i * 4,
815 hws[i], hws[i + 1], hws[i + 2], hws[i + 3]);
816 }
817 return 0;
818}
819
d5442303
DV
820static ssize_t
821i915_error_state_write(struct file *filp,
822 const char __user *ubuf,
823 size_t cnt,
824 loff_t *ppos)
825{
edc3d884 826 struct i915_error_state_file_priv *error_priv = filp->private_data;
d5442303 827 struct drm_device *dev = error_priv->dev;
22bcfc6a 828 int ret;
d5442303
DV
829
830 DRM_DEBUG_DRIVER("Resetting error state\n");
831
22bcfc6a
DV
832 ret = mutex_lock_interruptible(&dev->struct_mutex);
833 if (ret)
834 return ret;
835
d5442303
DV
836 i915_destroy_error_state(dev);
837 mutex_unlock(&dev->struct_mutex);
838
839 return cnt;
840}
841
842static int i915_error_state_open(struct inode *inode, struct file *file)
843{
844 struct drm_device *dev = inode->i_private;
d5442303 845 struct i915_error_state_file_priv *error_priv;
d5442303
DV
846
847 error_priv = kzalloc(sizeof(*error_priv), GFP_KERNEL);
848 if (!error_priv)
849 return -ENOMEM;
850
851 error_priv->dev = dev;
852
95d5bfb3 853 i915_error_state_get(dev, error_priv);
d5442303 854
edc3d884
MK
855 file->private_data = error_priv;
856
857 return 0;
d5442303
DV
858}
859
860static int i915_error_state_release(struct inode *inode, struct file *file)
861{
edc3d884 862 struct i915_error_state_file_priv *error_priv = file->private_data;
d5442303 863
95d5bfb3 864 i915_error_state_put(error_priv);
d5442303
DV
865 kfree(error_priv);
866
edc3d884
MK
867 return 0;
868}
869
4dc955f7
MK
870static ssize_t i915_error_state_read(struct file *file, char __user *userbuf,
871 size_t count, loff_t *pos)
872{
873 struct i915_error_state_file_priv *error_priv = file->private_data;
874 struct drm_i915_error_state_buf error_str;
875 loff_t tmp_pos = 0;
876 ssize_t ret_count = 0;
877 int ret;
878
879 ret = i915_error_state_buf_init(&error_str, count, *pos);
880 if (ret)
881 return ret;
edc3d884 882
fc16b48b 883 ret = i915_error_state_to_str(&error_str, error_priv);
edc3d884
MK
884 if (ret)
885 goto out;
886
edc3d884
MK
887 ret_count = simple_read_from_buffer(userbuf, count, &tmp_pos,
888 error_str.buf,
889 error_str.bytes);
890
891 if (ret_count < 0)
892 ret = ret_count;
893 else
894 *pos = error_str.start + ret_count;
895out:
4dc955f7 896 i915_error_state_buf_release(&error_str);
edc3d884 897 return ret ?: ret_count;
d5442303
DV
898}
899
900static const struct file_operations i915_error_state_fops = {
901 .owner = THIS_MODULE,
902 .open = i915_error_state_open,
edc3d884 903 .read = i915_error_state_read,
d5442303
DV
904 .write = i915_error_state_write,
905 .llseek = default_llseek,
906 .release = i915_error_state_release,
907};
908
647416f9
KC
909static int
910i915_next_seqno_get(void *data, u64 *val)
40633219 911{
647416f9 912 struct drm_device *dev = data;
e277a1f8 913 struct drm_i915_private *dev_priv = dev->dev_private;
40633219
MK
914 int ret;
915
916 ret = mutex_lock_interruptible(&dev->struct_mutex);
917 if (ret)
918 return ret;
919
647416f9 920 *val = dev_priv->next_seqno;
40633219
MK
921 mutex_unlock(&dev->struct_mutex);
922
647416f9 923 return 0;
40633219
MK
924}
925
647416f9
KC
926static int
927i915_next_seqno_set(void *data, u64 val)
928{
929 struct drm_device *dev = data;
40633219
MK
930 int ret;
931
40633219
MK
932 ret = mutex_lock_interruptible(&dev->struct_mutex);
933 if (ret)
934 return ret;
935
e94fbaa8 936 ret = i915_gem_set_seqno(dev, val);
40633219
MK
937 mutex_unlock(&dev->struct_mutex);
938
647416f9 939 return ret;
40633219
MK
940}
941
647416f9
KC
942DEFINE_SIMPLE_ATTRIBUTE(i915_next_seqno_fops,
943 i915_next_seqno_get, i915_next_seqno_set,
3a3b4f98 944 "0x%llx\n");
40633219 945
f97108d1
JB
946static int i915_rstdby_delays(struct seq_file *m, void *unused)
947{
948 struct drm_info_node *node = (struct drm_info_node *) m->private;
949 struct drm_device *dev = node->minor->dev;
e277a1f8 950 struct drm_i915_private *dev_priv = dev->dev_private;
616fdb5a
BW
951 u16 crstanddelay;
952 int ret;
953
954 ret = mutex_lock_interruptible(&dev->struct_mutex);
955 if (ret)
956 return ret;
c8c8fb33 957 intel_runtime_pm_get(dev_priv);
616fdb5a
BW
958
959 crstanddelay = I915_READ16(CRSTANDVID);
960
c8c8fb33 961 intel_runtime_pm_put(dev_priv);
616fdb5a 962 mutex_unlock(&dev->struct_mutex);
f97108d1
JB
963
964 seq_printf(m, "w/ctx: %d, w/o ctx: %d\n", (crstanddelay >> 8) & 0x3f, (crstanddelay & 0x3f));
965
966 return 0;
967}
968
adb4bd12 969static int i915_frequency_info(struct seq_file *m, void *unused)
f97108d1
JB
970{
971 struct drm_info_node *node = (struct drm_info_node *) m->private;
972 struct drm_device *dev = node->minor->dev;
e277a1f8 973 struct drm_i915_private *dev_priv = dev->dev_private;
c8c8fb33
PZ
974 int ret = 0;
975
976 intel_runtime_pm_get(dev_priv);
3b8d8d91 977
5c9669ce
TR
978 flush_delayed_work(&dev_priv->rps.delayed_resume_work);
979
3b8d8d91
JB
980 if (IS_GEN5(dev)) {
981 u16 rgvswctl = I915_READ16(MEMSWCTL);
982 u16 rgvstat = I915_READ16(MEMSTAT_ILK);
983
984 seq_printf(m, "Requested P-state: %d\n", (rgvswctl >> 8) & 0xf);
985 seq_printf(m, "Requested VID: %d\n", rgvswctl & 0x3f);
986 seq_printf(m, "Current VID: %d\n", (rgvstat & MEMSTAT_VID_MASK) >>
987 MEMSTAT_VID_SHIFT);
988 seq_printf(m, "Current P-state: %d\n",
989 (rgvstat & MEMSTAT_PSTATE_MASK) >> MEMSTAT_PSTATE_SHIFT);
0a073b84 990 } else if ((IS_GEN6(dev) || IS_GEN7(dev)) && !IS_VALLEYVIEW(dev)) {
3b8d8d91
JB
991 u32 gt_perf_status = I915_READ(GEN6_GT_PERF_STATUS);
992 u32 rp_state_limits = I915_READ(GEN6_RP_STATE_LIMITS);
993 u32 rp_state_cap = I915_READ(GEN6_RP_STATE_CAP);
0d8f9491 994 u32 rpmodectl, rpinclimit, rpdeclimit;
8e8c06cd 995 u32 rpstat, cagf, reqf;
ccab5c82
JB
996 u32 rpupei, rpcurup, rpprevup;
997 u32 rpdownei, rpcurdown, rpprevdown;
3b8d8d91
JB
998 int max_freq;
999
1000 /* RPSTAT1 is in the GT power well */
d1ebd816
BW
1001 ret = mutex_lock_interruptible(&dev->struct_mutex);
1002 if (ret)
c8c8fb33 1003 goto out;
d1ebd816 1004
c8d9a590 1005 gen6_gt_force_wake_get(dev_priv, FORCEWAKE_ALL);
3b8d8d91 1006
8e8c06cd
CW
1007 reqf = I915_READ(GEN6_RPNSWREQ);
1008 reqf &= ~GEN6_TURBO_DISABLE;
1009 if (IS_HASWELL(dev))
1010 reqf >>= 24;
1011 else
1012 reqf >>= 25;
1013 reqf *= GT_FREQUENCY_MULTIPLIER;
1014
0d8f9491
CW
1015 rpmodectl = I915_READ(GEN6_RP_CONTROL);
1016 rpinclimit = I915_READ(GEN6_RP_UP_THRESHOLD);
1017 rpdeclimit = I915_READ(GEN6_RP_DOWN_THRESHOLD);
1018
ccab5c82
JB
1019 rpstat = I915_READ(GEN6_RPSTAT1);
1020 rpupei = I915_READ(GEN6_RP_CUR_UP_EI);
1021 rpcurup = I915_READ(GEN6_RP_CUR_UP);
1022 rpprevup = I915_READ(GEN6_RP_PREV_UP);
1023 rpdownei = I915_READ(GEN6_RP_CUR_DOWN_EI);
1024 rpcurdown = I915_READ(GEN6_RP_CUR_DOWN);
1025 rpprevdown = I915_READ(GEN6_RP_PREV_DOWN);
f82855d3
BW
1026 if (IS_HASWELL(dev))
1027 cagf = (rpstat & HSW_CAGF_MASK) >> HSW_CAGF_SHIFT;
1028 else
1029 cagf = (rpstat & GEN6_CAGF_MASK) >> GEN6_CAGF_SHIFT;
1030 cagf *= GT_FREQUENCY_MULTIPLIER;
ccab5c82 1031
c8d9a590 1032 gen6_gt_force_wake_put(dev_priv, FORCEWAKE_ALL);
d1ebd816
BW
1033 mutex_unlock(&dev->struct_mutex);
1034
0d8f9491
CW
1035 seq_printf(m, "PM IER=0x%08x IMR=0x%08x ISR=0x%08x IIR=0x%08x, MASK=0x%08x\n",
1036 I915_READ(GEN6_PMIER),
1037 I915_READ(GEN6_PMIMR),
1038 I915_READ(GEN6_PMISR),
1039 I915_READ(GEN6_PMIIR),
1040 I915_READ(GEN6_PMINTRMSK));
3b8d8d91 1041 seq_printf(m, "GT_PERF_STATUS: 0x%08x\n", gt_perf_status);
3b8d8d91
JB
1042 seq_printf(m, "Render p-state ratio: %d\n",
1043 (gt_perf_status & 0xff00) >> 8);
1044 seq_printf(m, "Render p-state VID: %d\n",
1045 gt_perf_status & 0xff);
1046 seq_printf(m, "Render p-state limit: %d\n",
1047 rp_state_limits & 0xff);
0d8f9491
CW
1048 seq_printf(m, "RPSTAT1: 0x%08x\n", rpstat);
1049 seq_printf(m, "RPMODECTL: 0x%08x\n", rpmodectl);
1050 seq_printf(m, "RPINCLIMIT: 0x%08x\n", rpinclimit);
1051 seq_printf(m, "RPDECLIMIT: 0x%08x\n", rpdeclimit);
8e8c06cd 1052 seq_printf(m, "RPNSWREQ: %dMHz\n", reqf);
f82855d3 1053 seq_printf(m, "CAGF: %dMHz\n", cagf);
ccab5c82
JB
1054 seq_printf(m, "RP CUR UP EI: %dus\n", rpupei &
1055 GEN6_CURICONT_MASK);
1056 seq_printf(m, "RP CUR UP: %dus\n", rpcurup &
1057 GEN6_CURBSYTAVG_MASK);
1058 seq_printf(m, "RP PREV UP: %dus\n", rpprevup &
1059 GEN6_CURBSYTAVG_MASK);
1060 seq_printf(m, "RP CUR DOWN EI: %dus\n", rpdownei &
1061 GEN6_CURIAVG_MASK);
1062 seq_printf(m, "RP CUR DOWN: %dus\n", rpcurdown &
1063 GEN6_CURBSYTAVG_MASK);
1064 seq_printf(m, "RP PREV DOWN: %dus\n", rpprevdown &
1065 GEN6_CURBSYTAVG_MASK);
3b8d8d91
JB
1066
1067 max_freq = (rp_state_cap & 0xff0000) >> 16;
1068 seq_printf(m, "Lowest (RPN) frequency: %dMHz\n",
c8735b0c 1069 max_freq * GT_FREQUENCY_MULTIPLIER);
3b8d8d91
JB
1070
1071 max_freq = (rp_state_cap & 0xff00) >> 8;
1072 seq_printf(m, "Nominal (RP1) frequency: %dMHz\n",
c8735b0c 1073 max_freq * GT_FREQUENCY_MULTIPLIER);
3b8d8d91
JB
1074
1075 max_freq = rp_state_cap & 0xff;
1076 seq_printf(m, "Max non-overclocked (RP0) frequency: %dMHz\n",
c8735b0c 1077 max_freq * GT_FREQUENCY_MULTIPLIER);
31c77388
BW
1078
1079 seq_printf(m, "Max overclocked frequency: %dMHz\n",
b39fb297 1080 dev_priv->rps.max_freq * GT_FREQUENCY_MULTIPLIER);
0a073b84
JB
1081 } else if (IS_VALLEYVIEW(dev)) {
1082 u32 freq_sts, val;
1083
259bd5d4 1084 mutex_lock(&dev_priv->rps.hw_lock);
64936258 1085 freq_sts = vlv_punit_read(dev_priv, PUNIT_REG_GPU_FREQ_STS);
0a073b84
JB
1086 seq_printf(m, "PUNIT_REG_GPU_FREQ_STS: 0x%08x\n", freq_sts);
1087 seq_printf(m, "DDR freq: %d MHz\n", dev_priv->mem_freq);
1088
c5bd2bf6 1089 val = valleyview_rps_max_freq(dev_priv);
0a073b84 1090 seq_printf(m, "max GPU freq: %d MHz\n",
2ec3815f 1091 vlv_gpu_freq(dev_priv, val));
0a073b84 1092
c5bd2bf6 1093 val = valleyview_rps_min_freq(dev_priv);
0a073b84 1094 seq_printf(m, "min GPU freq: %d MHz\n",
2ec3815f 1095 vlv_gpu_freq(dev_priv, val));
0a073b84
JB
1096
1097 seq_printf(m, "current GPU freq: %d MHz\n",
2ec3815f 1098 vlv_gpu_freq(dev_priv, (freq_sts >> 8) & 0xff));
259bd5d4 1099 mutex_unlock(&dev_priv->rps.hw_lock);
3b8d8d91 1100 } else {
267f0c90 1101 seq_puts(m, "no P-state info available\n");
3b8d8d91 1102 }
f97108d1 1103
c8c8fb33
PZ
1104out:
1105 intel_runtime_pm_put(dev_priv);
1106 return ret;
f97108d1
JB
1107}
1108
1109static int i915_delayfreq_table(struct seq_file *m, void *unused)
1110{
1111 struct drm_info_node *node = (struct drm_info_node *) m->private;
1112 struct drm_device *dev = node->minor->dev;
e277a1f8 1113 struct drm_i915_private *dev_priv = dev->dev_private;
f97108d1 1114 u32 delayfreq;
616fdb5a
BW
1115 int ret, i;
1116
1117 ret = mutex_lock_interruptible(&dev->struct_mutex);
1118 if (ret)
1119 return ret;
c8c8fb33 1120 intel_runtime_pm_get(dev_priv);
f97108d1
JB
1121
1122 for (i = 0; i < 16; i++) {
1123 delayfreq = I915_READ(PXVFREQ_BASE + i * 4);
7648fa99
JB
1124 seq_printf(m, "P%02dVIDFREQ: 0x%08x (VID: %d)\n", i, delayfreq,
1125 (delayfreq & PXVFREQ_PX_MASK) >> PXVFREQ_PX_SHIFT);
f97108d1
JB
1126 }
1127
c8c8fb33
PZ
1128 intel_runtime_pm_put(dev_priv);
1129
616fdb5a
BW
1130 mutex_unlock(&dev->struct_mutex);
1131
f97108d1
JB
1132 return 0;
1133}
1134
1135static inline int MAP_TO_MV(int map)
1136{
1137 return 1250 - (map * 25);
1138}
1139
1140static int i915_inttoext_table(struct seq_file *m, void *unused)
1141{
1142 struct drm_info_node *node = (struct drm_info_node *) m->private;
1143 struct drm_device *dev = node->minor->dev;
e277a1f8 1144 struct drm_i915_private *dev_priv = dev->dev_private;
f97108d1 1145 u32 inttoext;
616fdb5a
BW
1146 int ret, i;
1147
1148 ret = mutex_lock_interruptible(&dev->struct_mutex);
1149 if (ret)
1150 return ret;
c8c8fb33 1151 intel_runtime_pm_get(dev_priv);
f97108d1
JB
1152
1153 for (i = 1; i <= 32; i++) {
1154 inttoext = I915_READ(INTTOEXT_BASE_ILK + i * 4);
1155 seq_printf(m, "INTTOEXT%02d: 0x%08x\n", i, inttoext);
1156 }
1157
c8c8fb33 1158 intel_runtime_pm_put(dev_priv);
616fdb5a
BW
1159 mutex_unlock(&dev->struct_mutex);
1160
f97108d1
JB
1161 return 0;
1162}
1163
4d85529d 1164static int ironlake_drpc_info(struct seq_file *m)
f97108d1
JB
1165{
1166 struct drm_info_node *node = (struct drm_info_node *) m->private;
1167 struct drm_device *dev = node->minor->dev;
e277a1f8 1168 struct drm_i915_private *dev_priv = dev->dev_private;
616fdb5a
BW
1169 u32 rgvmodectl, rstdbyctl;
1170 u16 crstandvid;
1171 int ret;
1172
1173 ret = mutex_lock_interruptible(&dev->struct_mutex);
1174 if (ret)
1175 return ret;
c8c8fb33 1176 intel_runtime_pm_get(dev_priv);
616fdb5a
BW
1177
1178 rgvmodectl = I915_READ(MEMMODECTL);
1179 rstdbyctl = I915_READ(RSTDBYCTL);
1180 crstandvid = I915_READ16(CRSTANDVID);
1181
c8c8fb33 1182 intel_runtime_pm_put(dev_priv);
616fdb5a 1183 mutex_unlock(&dev->struct_mutex);
f97108d1
JB
1184
1185 seq_printf(m, "HD boost: %s\n", (rgvmodectl & MEMMODE_BOOST_EN) ?
1186 "yes" : "no");
1187 seq_printf(m, "Boost freq: %d\n",
1188 (rgvmodectl & MEMMODE_BOOST_FREQ_MASK) >>
1189 MEMMODE_BOOST_FREQ_SHIFT);
1190 seq_printf(m, "HW control enabled: %s\n",
1191 rgvmodectl & MEMMODE_HWIDLE_EN ? "yes" : "no");
1192 seq_printf(m, "SW control enabled: %s\n",
1193 rgvmodectl & MEMMODE_SWMODE_EN ? "yes" : "no");
1194 seq_printf(m, "Gated voltage change: %s\n",
1195 rgvmodectl & MEMMODE_RCLK_GATE ? "yes" : "no");
1196 seq_printf(m, "Starting frequency: P%d\n",
1197 (rgvmodectl & MEMMODE_FSTART_MASK) >> MEMMODE_FSTART_SHIFT);
7648fa99 1198 seq_printf(m, "Max P-state: P%d\n",
f97108d1 1199 (rgvmodectl & MEMMODE_FMAX_MASK) >> MEMMODE_FMAX_SHIFT);
7648fa99
JB
1200 seq_printf(m, "Min P-state: P%d\n", (rgvmodectl & MEMMODE_FMIN_MASK));
1201 seq_printf(m, "RS1 VID: %d\n", (crstandvid & 0x3f));
1202 seq_printf(m, "RS2 VID: %d\n", ((crstandvid >> 8) & 0x3f));
1203 seq_printf(m, "Render standby enabled: %s\n",
1204 (rstdbyctl & RCX_SW_EXIT) ? "no" : "yes");
267f0c90 1205 seq_puts(m, "Current RS state: ");
88271da3
JB
1206 switch (rstdbyctl & RSX_STATUS_MASK) {
1207 case RSX_STATUS_ON:
267f0c90 1208 seq_puts(m, "on\n");
88271da3
JB
1209 break;
1210 case RSX_STATUS_RC1:
267f0c90 1211 seq_puts(m, "RC1\n");
88271da3
JB
1212 break;
1213 case RSX_STATUS_RC1E:
267f0c90 1214 seq_puts(m, "RC1E\n");
88271da3
JB
1215 break;
1216 case RSX_STATUS_RS1:
267f0c90 1217 seq_puts(m, "RS1\n");
88271da3
JB
1218 break;
1219 case RSX_STATUS_RS2:
267f0c90 1220 seq_puts(m, "RS2 (RC6)\n");
88271da3
JB
1221 break;
1222 case RSX_STATUS_RS3:
267f0c90 1223 seq_puts(m, "RC3 (RC6+)\n");
88271da3
JB
1224 break;
1225 default:
267f0c90 1226 seq_puts(m, "unknown\n");
88271da3
JB
1227 break;
1228 }
f97108d1
JB
1229
1230 return 0;
1231}
1232
669ab5aa
D
1233static int vlv_drpc_info(struct seq_file *m)
1234{
1235
1236 struct drm_info_node *node = (struct drm_info_node *) m->private;
1237 struct drm_device *dev = node->minor->dev;
1238 struct drm_i915_private *dev_priv = dev->dev_private;
1239 u32 rpmodectl1, rcctl1;
1240 unsigned fw_rendercount = 0, fw_mediacount = 0;
1241
1242 rpmodectl1 = I915_READ(GEN6_RP_CONTROL);
1243 rcctl1 = I915_READ(GEN6_RC_CONTROL);
1244
1245 seq_printf(m, "Video Turbo Mode: %s\n",
1246 yesno(rpmodectl1 & GEN6_RP_MEDIA_TURBO));
1247 seq_printf(m, "Turbo enabled: %s\n",
1248 yesno(rpmodectl1 & GEN6_RP_ENABLE));
1249 seq_printf(m, "HW control enabled: %s\n",
1250 yesno(rpmodectl1 & GEN6_RP_ENABLE));
1251 seq_printf(m, "SW control enabled: %s\n",
1252 yesno((rpmodectl1 & GEN6_RP_MEDIA_MODE_MASK) ==
1253 GEN6_RP_MEDIA_SW_MODE));
1254 seq_printf(m, "RC6 Enabled: %s\n",
1255 yesno(rcctl1 & (GEN7_RC_CTL_TO_MODE |
1256 GEN6_RC_CTL_EI_MODE(1))));
1257 seq_printf(m, "Render Power Well: %s\n",
1258 (I915_READ(VLV_GTLC_PW_STATUS) &
1259 VLV_GTLC_PW_RENDER_STATUS_MASK) ? "Up" : "Down");
1260 seq_printf(m, "Media Power Well: %s\n",
1261 (I915_READ(VLV_GTLC_PW_STATUS) &
1262 VLV_GTLC_PW_MEDIA_STATUS_MASK) ? "Up" : "Down");
1263
1264 spin_lock_irq(&dev_priv->uncore.lock);
1265 fw_rendercount = dev_priv->uncore.fw_rendercount;
1266 fw_mediacount = dev_priv->uncore.fw_mediacount;
1267 spin_unlock_irq(&dev_priv->uncore.lock);
1268
1269 seq_printf(m, "Forcewake Render Count = %u\n", fw_rendercount);
1270 seq_printf(m, "Forcewake Media Count = %u\n", fw_mediacount);
1271
1272
1273 return 0;
1274}
1275
1276
4d85529d
BW
1277static int gen6_drpc_info(struct seq_file *m)
1278{
1279
1280 struct drm_info_node *node = (struct drm_info_node *) m->private;
1281 struct drm_device *dev = node->minor->dev;
1282 struct drm_i915_private *dev_priv = dev->dev_private;
ecd8faea 1283 u32 rpmodectl1, gt_core_status, rcctl1, rc6vids = 0;
93b525dc 1284 unsigned forcewake_count;
aee56cff 1285 int count = 0, ret;
4d85529d
BW
1286
1287 ret = mutex_lock_interruptible(&dev->struct_mutex);
1288 if (ret)
1289 return ret;
c8c8fb33 1290 intel_runtime_pm_get(dev_priv);
4d85529d 1291
907b28c5
CW
1292 spin_lock_irq(&dev_priv->uncore.lock);
1293 forcewake_count = dev_priv->uncore.forcewake_count;
1294 spin_unlock_irq(&dev_priv->uncore.lock);
93b525dc
DV
1295
1296 if (forcewake_count) {
267f0c90
DL
1297 seq_puts(m, "RC information inaccurate because somebody "
1298 "holds a forcewake reference \n");
4d85529d
BW
1299 } else {
1300 /* NB: we cannot use forcewake, else we read the wrong values */
1301 while (count++ < 50 && (I915_READ_NOTRACE(FORCEWAKE_ACK) & 1))
1302 udelay(10);
1303 seq_printf(m, "RC information accurate: %s\n", yesno(count < 51));
1304 }
1305
1306 gt_core_status = readl(dev_priv->regs + GEN6_GT_CORE_STATUS);
ed71f1b4 1307 trace_i915_reg_rw(false, GEN6_GT_CORE_STATUS, gt_core_status, 4, true);
4d85529d
BW
1308
1309 rpmodectl1 = I915_READ(GEN6_RP_CONTROL);
1310 rcctl1 = I915_READ(GEN6_RC_CONTROL);
1311 mutex_unlock(&dev->struct_mutex);
44cbd338
BW
1312 mutex_lock(&dev_priv->rps.hw_lock);
1313 sandybridge_pcode_read(dev_priv, GEN6_PCODE_READ_RC6VIDS, &rc6vids);
1314 mutex_unlock(&dev_priv->rps.hw_lock);
4d85529d 1315
c8c8fb33
PZ
1316 intel_runtime_pm_put(dev_priv);
1317
4d85529d
BW
1318 seq_printf(m, "Video Turbo Mode: %s\n",
1319 yesno(rpmodectl1 & GEN6_RP_MEDIA_TURBO));
1320 seq_printf(m, "HW control enabled: %s\n",
1321 yesno(rpmodectl1 & GEN6_RP_ENABLE));
1322 seq_printf(m, "SW control enabled: %s\n",
1323 yesno((rpmodectl1 & GEN6_RP_MEDIA_MODE_MASK) ==
1324 GEN6_RP_MEDIA_SW_MODE));
fff24e21 1325 seq_printf(m, "RC1e Enabled: %s\n",
4d85529d
BW
1326 yesno(rcctl1 & GEN6_RC_CTL_RC1e_ENABLE));
1327 seq_printf(m, "RC6 Enabled: %s\n",
1328 yesno(rcctl1 & GEN6_RC_CTL_RC6_ENABLE));
1329 seq_printf(m, "Deep RC6 Enabled: %s\n",
1330 yesno(rcctl1 & GEN6_RC_CTL_RC6p_ENABLE));
1331 seq_printf(m, "Deepest RC6 Enabled: %s\n",
1332 yesno(rcctl1 & GEN6_RC_CTL_RC6pp_ENABLE));
267f0c90 1333 seq_puts(m, "Current RC state: ");
4d85529d
BW
1334 switch (gt_core_status & GEN6_RCn_MASK) {
1335 case GEN6_RC0:
1336 if (gt_core_status & GEN6_CORE_CPD_STATE_MASK)
267f0c90 1337 seq_puts(m, "Core Power Down\n");
4d85529d 1338 else
267f0c90 1339 seq_puts(m, "on\n");
4d85529d
BW
1340 break;
1341 case GEN6_RC3:
267f0c90 1342 seq_puts(m, "RC3\n");
4d85529d
BW
1343 break;
1344 case GEN6_RC6:
267f0c90 1345 seq_puts(m, "RC6\n");
4d85529d
BW
1346 break;
1347 case GEN6_RC7:
267f0c90 1348 seq_puts(m, "RC7\n");
4d85529d
BW
1349 break;
1350 default:
267f0c90 1351 seq_puts(m, "Unknown\n");
4d85529d
BW
1352 break;
1353 }
1354
1355 seq_printf(m, "Core Power Down: %s\n",
1356 yesno(gt_core_status & GEN6_CORE_CPD_STATE_MASK));
cce66a28
BW
1357
1358 /* Not exactly sure what this is */
1359 seq_printf(m, "RC6 \"Locked to RPn\" residency since boot: %u\n",
1360 I915_READ(GEN6_GT_GFX_RC6_LOCKED));
1361 seq_printf(m, "RC6 residency since boot: %u\n",
1362 I915_READ(GEN6_GT_GFX_RC6));
1363 seq_printf(m, "RC6+ residency since boot: %u\n",
1364 I915_READ(GEN6_GT_GFX_RC6p));
1365 seq_printf(m, "RC6++ residency since boot: %u\n",
1366 I915_READ(GEN6_GT_GFX_RC6pp));
1367
ecd8faea
BW
1368 seq_printf(m, "RC6 voltage: %dmV\n",
1369 GEN6_DECODE_RC6_VID(((rc6vids >> 0) & 0xff)));
1370 seq_printf(m, "RC6+ voltage: %dmV\n",
1371 GEN6_DECODE_RC6_VID(((rc6vids >> 8) & 0xff)));
1372 seq_printf(m, "RC6++ voltage: %dmV\n",
1373 GEN6_DECODE_RC6_VID(((rc6vids >> 16) & 0xff)));
4d85529d
BW
1374 return 0;
1375}
1376
1377static int i915_drpc_info(struct seq_file *m, void *unused)
1378{
1379 struct drm_info_node *node = (struct drm_info_node *) m->private;
1380 struct drm_device *dev = node->minor->dev;
1381
669ab5aa
D
1382 if (IS_VALLEYVIEW(dev))
1383 return vlv_drpc_info(m);
1384 else if (IS_GEN6(dev) || IS_GEN7(dev))
4d85529d
BW
1385 return gen6_drpc_info(m);
1386 else
1387 return ironlake_drpc_info(m);
1388}
1389
b5e50c3f
JB
1390static int i915_fbc_status(struct seq_file *m, void *unused)
1391{
1392 struct drm_info_node *node = (struct drm_info_node *) m->private;
1393 struct drm_device *dev = node->minor->dev;
e277a1f8 1394 struct drm_i915_private *dev_priv = dev->dev_private;
b5e50c3f 1395
3a77c4c4 1396 if (!HAS_FBC(dev)) {
267f0c90 1397 seq_puts(m, "FBC unsupported on this chipset\n");
b5e50c3f
JB
1398 return 0;
1399 }
1400
36623ef8
PZ
1401 intel_runtime_pm_get(dev_priv);
1402
ee5382ae 1403 if (intel_fbc_enabled(dev)) {
267f0c90 1404 seq_puts(m, "FBC enabled\n");
b5e50c3f 1405 } else {
267f0c90 1406 seq_puts(m, "FBC disabled: ");
5c3fe8b0 1407 switch (dev_priv->fbc.no_fbc_reason) {
29ebf90f
CW
1408 case FBC_OK:
1409 seq_puts(m, "FBC actived, but currently disabled in hardware");
1410 break;
1411 case FBC_UNSUPPORTED:
1412 seq_puts(m, "unsupported by this chipset");
1413 break;
bed4a673 1414 case FBC_NO_OUTPUT:
267f0c90 1415 seq_puts(m, "no outputs");
bed4a673 1416 break;
b5e50c3f 1417 case FBC_STOLEN_TOO_SMALL:
267f0c90 1418 seq_puts(m, "not enough stolen memory");
b5e50c3f
JB
1419 break;
1420 case FBC_UNSUPPORTED_MODE:
267f0c90 1421 seq_puts(m, "mode not supported");
b5e50c3f
JB
1422 break;
1423 case FBC_MODE_TOO_LARGE:
267f0c90 1424 seq_puts(m, "mode too large");
b5e50c3f
JB
1425 break;
1426 case FBC_BAD_PLANE:
267f0c90 1427 seq_puts(m, "FBC unsupported on plane");
b5e50c3f
JB
1428 break;
1429 case FBC_NOT_TILED:
267f0c90 1430 seq_puts(m, "scanout buffer not tiled");
b5e50c3f 1431 break;
9c928d16 1432 case FBC_MULTIPLE_PIPES:
267f0c90 1433 seq_puts(m, "multiple pipes are enabled");
9c928d16 1434 break;
c1a9f047 1435 case FBC_MODULE_PARAM:
267f0c90 1436 seq_puts(m, "disabled per module param (default off)");
c1a9f047 1437 break;
8a5729a3 1438 case FBC_CHIP_DEFAULT:
267f0c90 1439 seq_puts(m, "disabled per chip default");
8a5729a3 1440 break;
b5e50c3f 1441 default:
267f0c90 1442 seq_puts(m, "unknown reason");
b5e50c3f 1443 }
267f0c90 1444 seq_putc(m, '\n');
b5e50c3f 1445 }
36623ef8
PZ
1446
1447 intel_runtime_pm_put(dev_priv);
1448
b5e50c3f
JB
1449 return 0;
1450}
1451
92d44621
PZ
1452static int i915_ips_status(struct seq_file *m, void *unused)
1453{
1454 struct drm_info_node *node = (struct drm_info_node *) m->private;
1455 struct drm_device *dev = node->minor->dev;
1456 struct drm_i915_private *dev_priv = dev->dev_private;
1457
f5adf94e 1458 if (!HAS_IPS(dev)) {
92d44621
PZ
1459 seq_puts(m, "not supported\n");
1460 return 0;
1461 }
1462
36623ef8
PZ
1463 intel_runtime_pm_get(dev_priv);
1464
e59150dc 1465 if (IS_BROADWELL(dev) || I915_READ(IPS_CTL) & IPS_ENABLE)
92d44621
PZ
1466 seq_puts(m, "enabled\n");
1467 else
1468 seq_puts(m, "disabled\n");
1469
36623ef8
PZ
1470 intel_runtime_pm_put(dev_priv);
1471
92d44621
PZ
1472 return 0;
1473}
1474
4a9bef37
JB
1475static int i915_sr_status(struct seq_file *m, void *unused)
1476{
1477 struct drm_info_node *node = (struct drm_info_node *) m->private;
1478 struct drm_device *dev = node->minor->dev;
e277a1f8 1479 struct drm_i915_private *dev_priv = dev->dev_private;
4a9bef37
JB
1480 bool sr_enabled = false;
1481
36623ef8
PZ
1482 intel_runtime_pm_get(dev_priv);
1483
1398261a 1484 if (HAS_PCH_SPLIT(dev))
5ba2aaaa 1485 sr_enabled = I915_READ(WM1_LP_ILK) & WM1_LP_SR_EN;
a6c45cf0 1486 else if (IS_CRESTLINE(dev) || IS_I945G(dev) || IS_I945GM(dev))
4a9bef37
JB
1487 sr_enabled = I915_READ(FW_BLC_SELF) & FW_BLC_SELF_EN;
1488 else if (IS_I915GM(dev))
1489 sr_enabled = I915_READ(INSTPM) & INSTPM_SELF_EN;
1490 else if (IS_PINEVIEW(dev))
1491 sr_enabled = I915_READ(DSPFW3) & PINEVIEW_SELF_REFRESH_EN;
1492
36623ef8
PZ
1493 intel_runtime_pm_put(dev_priv);
1494
5ba2aaaa
CW
1495 seq_printf(m, "self-refresh: %s\n",
1496 sr_enabled ? "enabled" : "disabled");
4a9bef37
JB
1497
1498 return 0;
1499}
1500
7648fa99
JB
1501static int i915_emon_status(struct seq_file *m, void *unused)
1502{
1503 struct drm_info_node *node = (struct drm_info_node *) m->private;
1504 struct drm_device *dev = node->minor->dev;
e277a1f8 1505 struct drm_i915_private *dev_priv = dev->dev_private;
7648fa99 1506 unsigned long temp, chipset, gfx;
de227ef0
CW
1507 int ret;
1508
582be6b4
CW
1509 if (!IS_GEN5(dev))
1510 return -ENODEV;
1511
de227ef0
CW
1512 ret = mutex_lock_interruptible(&dev->struct_mutex);
1513 if (ret)
1514 return ret;
7648fa99
JB
1515
1516 temp = i915_mch_val(dev_priv);
1517 chipset = i915_chipset_val(dev_priv);
1518 gfx = i915_gfx_val(dev_priv);
de227ef0 1519 mutex_unlock(&dev->struct_mutex);
7648fa99
JB
1520
1521 seq_printf(m, "GMCH temp: %ld\n", temp);
1522 seq_printf(m, "Chipset power: %ld\n", chipset);
1523 seq_printf(m, "GFX power: %ld\n", gfx);
1524 seq_printf(m, "Total power: %ld\n", chipset + gfx);
1525
1526 return 0;
1527}
1528
23b2f8bb
JB
1529static int i915_ring_freq_table(struct seq_file *m, void *unused)
1530{
1531 struct drm_info_node *node = (struct drm_info_node *) m->private;
1532 struct drm_device *dev = node->minor->dev;
e277a1f8 1533 struct drm_i915_private *dev_priv = dev->dev_private;
5bfa0199 1534 int ret = 0;
23b2f8bb
JB
1535 int gpu_freq, ia_freq;
1536
1c70c0ce 1537 if (!(IS_GEN6(dev) || IS_GEN7(dev))) {
267f0c90 1538 seq_puts(m, "unsupported on this chipset\n");
23b2f8bb
JB
1539 return 0;
1540 }
1541
5bfa0199
PZ
1542 intel_runtime_pm_get(dev_priv);
1543
5c9669ce
TR
1544 flush_delayed_work(&dev_priv->rps.delayed_resume_work);
1545
4fc688ce 1546 ret = mutex_lock_interruptible(&dev_priv->rps.hw_lock);
23b2f8bb 1547 if (ret)
5bfa0199 1548 goto out;
23b2f8bb 1549
267f0c90 1550 seq_puts(m, "GPU freq (MHz)\tEffective CPU freq (MHz)\tEffective Ring freq (MHz)\n");
23b2f8bb 1551
b39fb297
BW
1552 for (gpu_freq = dev_priv->rps.min_freq_softlimit;
1553 gpu_freq <= dev_priv->rps.max_freq_softlimit;
23b2f8bb 1554 gpu_freq++) {
42c0526c
BW
1555 ia_freq = gpu_freq;
1556 sandybridge_pcode_read(dev_priv,
1557 GEN6_PCODE_READ_MIN_FREQ_TABLE,
1558 &ia_freq);
3ebecd07
CW
1559 seq_printf(m, "%d\t\t%d\t\t\t\t%d\n",
1560 gpu_freq * GT_FREQUENCY_MULTIPLIER,
1561 ((ia_freq >> 0) & 0xff) * 100,
1562 ((ia_freq >> 8) & 0xff) * 100);
23b2f8bb
JB
1563 }
1564
4fc688ce 1565 mutex_unlock(&dev_priv->rps.hw_lock);
23b2f8bb 1566
5bfa0199
PZ
1567out:
1568 intel_runtime_pm_put(dev_priv);
1569 return ret;
23b2f8bb
JB
1570}
1571
7648fa99
JB
1572static int i915_gfxec(struct seq_file *m, void *unused)
1573{
1574 struct drm_info_node *node = (struct drm_info_node *) m->private;
1575 struct drm_device *dev = node->minor->dev;
e277a1f8 1576 struct drm_i915_private *dev_priv = dev->dev_private;
616fdb5a
BW
1577 int ret;
1578
1579 ret = mutex_lock_interruptible(&dev->struct_mutex);
1580 if (ret)
1581 return ret;
c8c8fb33 1582 intel_runtime_pm_get(dev_priv);
7648fa99
JB
1583
1584 seq_printf(m, "GFXEC: %ld\n", (unsigned long)I915_READ(0x112f4));
c8c8fb33 1585 intel_runtime_pm_put(dev_priv);
7648fa99 1586
616fdb5a
BW
1587 mutex_unlock(&dev->struct_mutex);
1588
7648fa99
JB
1589 return 0;
1590}
1591
44834a67
CW
1592static int i915_opregion(struct seq_file *m, void *unused)
1593{
1594 struct drm_info_node *node = (struct drm_info_node *) m->private;
1595 struct drm_device *dev = node->minor->dev;
e277a1f8 1596 struct drm_i915_private *dev_priv = dev->dev_private;
44834a67 1597 struct intel_opregion *opregion = &dev_priv->opregion;
0d38f009 1598 void *data = kmalloc(OPREGION_SIZE, GFP_KERNEL);
44834a67
CW
1599 int ret;
1600
0d38f009
DV
1601 if (data == NULL)
1602 return -ENOMEM;
1603
44834a67
CW
1604 ret = mutex_lock_interruptible(&dev->struct_mutex);
1605 if (ret)
0d38f009 1606 goto out;
44834a67 1607
0d38f009
DV
1608 if (opregion->header) {
1609 memcpy_fromio(data, opregion->header, OPREGION_SIZE);
1610 seq_write(m, data, OPREGION_SIZE);
1611 }
44834a67
CW
1612
1613 mutex_unlock(&dev->struct_mutex);
1614
0d38f009
DV
1615out:
1616 kfree(data);
44834a67
CW
1617 return 0;
1618}
1619
37811fcc
CW
1620static int i915_gem_framebuffer_info(struct seq_file *m, void *data)
1621{
1622 struct drm_info_node *node = (struct drm_info_node *) m->private;
1623 struct drm_device *dev = node->minor->dev;
4520f53a 1624 struct intel_fbdev *ifbdev = NULL;
37811fcc 1625 struct intel_framebuffer *fb;
37811fcc 1626
4520f53a
DV
1627#ifdef CONFIG_DRM_I915_FBDEV
1628 struct drm_i915_private *dev_priv = dev->dev_private;
1629 int ret = mutex_lock_interruptible(&dev->mode_config.mutex);
37811fcc
CW
1630 if (ret)
1631 return ret;
1632
1633 ifbdev = dev_priv->fbdev;
1634 fb = to_intel_framebuffer(ifbdev->helper.fb);
1635
623f9783 1636 seq_printf(m, "fbcon size: %d x %d, depth %d, %d bpp, refcount %d, obj ",
37811fcc
CW
1637 fb->base.width,
1638 fb->base.height,
1639 fb->base.depth,
623f9783
DV
1640 fb->base.bits_per_pixel,
1641 atomic_read(&fb->base.refcount.refcount));
05394f39 1642 describe_obj(m, fb->obj);
267f0c90 1643 seq_putc(m, '\n');
4b096ac1 1644 mutex_unlock(&dev->mode_config.mutex);
4520f53a 1645#endif
37811fcc 1646
4b096ac1 1647 mutex_lock(&dev->mode_config.fb_lock);
37811fcc 1648 list_for_each_entry(fb, &dev->mode_config.fb_list, base.head) {
131a56dc 1649 if (ifbdev && &fb->base == ifbdev->helper.fb)
37811fcc
CW
1650 continue;
1651
623f9783 1652 seq_printf(m, "user size: %d x %d, depth %d, %d bpp, refcount %d, obj ",
37811fcc
CW
1653 fb->base.width,
1654 fb->base.height,
1655 fb->base.depth,
623f9783
DV
1656 fb->base.bits_per_pixel,
1657 atomic_read(&fb->base.refcount.refcount));
05394f39 1658 describe_obj(m, fb->obj);
267f0c90 1659 seq_putc(m, '\n');
37811fcc 1660 }
4b096ac1 1661 mutex_unlock(&dev->mode_config.fb_lock);
37811fcc
CW
1662
1663 return 0;
1664}
1665
e76d3630
BW
1666static int i915_context_status(struct seq_file *m, void *unused)
1667{
1668 struct drm_info_node *node = (struct drm_info_node *) m->private;
1669 struct drm_device *dev = node->minor->dev;
e277a1f8 1670 struct drm_i915_private *dev_priv = dev->dev_private;
a168c293 1671 struct intel_ring_buffer *ring;
a33afea5 1672 struct i915_hw_context *ctx;
a168c293 1673 int ret, i;
e76d3630
BW
1674
1675 ret = mutex_lock_interruptible(&dev->mode_config.mutex);
1676 if (ret)
1677 return ret;
1678
3e373948 1679 if (dev_priv->ips.pwrctx) {
267f0c90 1680 seq_puts(m, "power context ");
3e373948 1681 describe_obj(m, dev_priv->ips.pwrctx);
267f0c90 1682 seq_putc(m, '\n');
dc501fbc 1683 }
e76d3630 1684
3e373948 1685 if (dev_priv->ips.renderctx) {
267f0c90 1686 seq_puts(m, "render context ");
3e373948 1687 describe_obj(m, dev_priv->ips.renderctx);
267f0c90 1688 seq_putc(m, '\n');
dc501fbc 1689 }
e76d3630 1690
a33afea5
BW
1691 list_for_each_entry(ctx, &dev_priv->context_list, link) {
1692 seq_puts(m, "HW context ");
3ccfd19d 1693 describe_ctx(m, ctx);
a33afea5
BW
1694 for_each_ring(ring, dev_priv, i)
1695 if (ring->default_context == ctx)
1696 seq_printf(m, "(default context %s) ", ring->name);
1697
1698 describe_obj(m, ctx->obj);
1699 seq_putc(m, '\n');
a168c293
BW
1700 }
1701
e76d3630
BW
1702 mutex_unlock(&dev->mode_config.mutex);
1703
1704 return 0;
1705}
1706
6d794d42
BW
1707static int i915_gen6_forcewake_count_info(struct seq_file *m, void *data)
1708{
1709 struct drm_info_node *node = (struct drm_info_node *) m->private;
1710 struct drm_device *dev = node->minor->dev;
1711 struct drm_i915_private *dev_priv = dev->dev_private;
43709ba0 1712 unsigned forcewake_count = 0, fw_rendercount = 0, fw_mediacount = 0;
6d794d42 1713
907b28c5 1714 spin_lock_irq(&dev_priv->uncore.lock);
43709ba0
D
1715 if (IS_VALLEYVIEW(dev)) {
1716 fw_rendercount = dev_priv->uncore.fw_rendercount;
1717 fw_mediacount = dev_priv->uncore.fw_mediacount;
1718 } else
1719 forcewake_count = dev_priv->uncore.forcewake_count;
907b28c5 1720 spin_unlock_irq(&dev_priv->uncore.lock);
6d794d42 1721
43709ba0
D
1722 if (IS_VALLEYVIEW(dev)) {
1723 seq_printf(m, "fw_rendercount = %u\n", fw_rendercount);
1724 seq_printf(m, "fw_mediacount = %u\n", fw_mediacount);
1725 } else
1726 seq_printf(m, "forcewake count = %u\n", forcewake_count);
6d794d42
BW
1727
1728 return 0;
1729}
1730
ea16a3cd
DV
1731static const char *swizzle_string(unsigned swizzle)
1732{
aee56cff 1733 switch (swizzle) {
ea16a3cd
DV
1734 case I915_BIT_6_SWIZZLE_NONE:
1735 return "none";
1736 case I915_BIT_6_SWIZZLE_9:
1737 return "bit9";
1738 case I915_BIT_6_SWIZZLE_9_10:
1739 return "bit9/bit10";
1740 case I915_BIT_6_SWIZZLE_9_11:
1741 return "bit9/bit11";
1742 case I915_BIT_6_SWIZZLE_9_10_11:
1743 return "bit9/bit10/bit11";
1744 case I915_BIT_6_SWIZZLE_9_17:
1745 return "bit9/bit17";
1746 case I915_BIT_6_SWIZZLE_9_10_17:
1747 return "bit9/bit10/bit17";
1748 case I915_BIT_6_SWIZZLE_UNKNOWN:
8a168ca7 1749 return "unknown";
ea16a3cd
DV
1750 }
1751
1752 return "bug";
1753}
1754
1755static int i915_swizzle_info(struct seq_file *m, void *data)
1756{
1757 struct drm_info_node *node = (struct drm_info_node *) m->private;
1758 struct drm_device *dev = node->minor->dev;
1759 struct drm_i915_private *dev_priv = dev->dev_private;
22bcfc6a
DV
1760 int ret;
1761
1762 ret = mutex_lock_interruptible(&dev->struct_mutex);
1763 if (ret)
1764 return ret;
c8c8fb33 1765 intel_runtime_pm_get(dev_priv);
ea16a3cd 1766
ea16a3cd
DV
1767 seq_printf(m, "bit6 swizzle for X-tiling = %s\n",
1768 swizzle_string(dev_priv->mm.bit_6_swizzle_x));
1769 seq_printf(m, "bit6 swizzle for Y-tiling = %s\n",
1770 swizzle_string(dev_priv->mm.bit_6_swizzle_y));
1771
1772 if (IS_GEN3(dev) || IS_GEN4(dev)) {
1773 seq_printf(m, "DDC = 0x%08x\n",
1774 I915_READ(DCC));
1775 seq_printf(m, "C0DRB3 = 0x%04x\n",
1776 I915_READ16(C0DRB3));
1777 seq_printf(m, "C1DRB3 = 0x%04x\n",
1778 I915_READ16(C1DRB3));
9d3203e1 1779 } else if (INTEL_INFO(dev)->gen >= 6) {
3fa7d235
DV
1780 seq_printf(m, "MAD_DIMM_C0 = 0x%08x\n",
1781 I915_READ(MAD_DIMM_C0));
1782 seq_printf(m, "MAD_DIMM_C1 = 0x%08x\n",
1783 I915_READ(MAD_DIMM_C1));
1784 seq_printf(m, "MAD_DIMM_C2 = 0x%08x\n",
1785 I915_READ(MAD_DIMM_C2));
1786 seq_printf(m, "TILECTL = 0x%08x\n",
1787 I915_READ(TILECTL));
9d3203e1
BW
1788 if (IS_GEN8(dev))
1789 seq_printf(m, "GAMTARBMODE = 0x%08x\n",
1790 I915_READ(GAMTARBMODE));
1791 else
1792 seq_printf(m, "ARB_MODE = 0x%08x\n",
1793 I915_READ(ARB_MODE));
3fa7d235
DV
1794 seq_printf(m, "DISP_ARB_CTL = 0x%08x\n",
1795 I915_READ(DISP_ARB_CTL));
ea16a3cd 1796 }
c8c8fb33 1797 intel_runtime_pm_put(dev_priv);
ea16a3cd
DV
1798 mutex_unlock(&dev->struct_mutex);
1799
1800 return 0;
1801}
1802
1c60fef5
BW
1803static int per_file_ctx(int id, void *ptr, void *data)
1804{
1805 struct i915_hw_context *ctx = ptr;
1806 struct seq_file *m = data;
1807 struct i915_hw_ppgtt *ppgtt = ctx_to_ppgtt(ctx);
1808
1809 ppgtt->debug_dump(ppgtt, m);
1810
1811 return 0;
1812}
1813
77df6772 1814static void gen8_ppgtt_info(struct seq_file *m, struct drm_device *dev)
3cf17fc5 1815{
3cf17fc5
DV
1816 struct drm_i915_private *dev_priv = dev->dev_private;
1817 struct intel_ring_buffer *ring;
77df6772
BW
1818 struct i915_hw_ppgtt *ppgtt = dev_priv->mm.aliasing_ppgtt;
1819 int unused, i;
3cf17fc5 1820
77df6772
BW
1821 if (!ppgtt)
1822 return;
1823
1824 seq_printf(m, "Page directories: %d\n", ppgtt->num_pd_pages);
5abbcca3 1825 seq_printf(m, "Page tables: %d\n", ppgtt->num_pd_entries);
77df6772
BW
1826 for_each_ring(ring, dev_priv, unused) {
1827 seq_printf(m, "%s\n", ring->name);
1828 for (i = 0; i < 4; i++) {
1829 u32 offset = 0x270 + i * 8;
1830 u64 pdp = I915_READ(ring->mmio_base + offset + 4);
1831 pdp <<= 32;
1832 pdp |= I915_READ(ring->mmio_base + offset);
a2a5b15c 1833 seq_printf(m, "\tPDP%d 0x%016llx\n", i, pdp);
77df6772
BW
1834 }
1835 }
1836}
1837
1838static void gen6_ppgtt_info(struct seq_file *m, struct drm_device *dev)
1839{
1840 struct drm_i915_private *dev_priv = dev->dev_private;
1841 struct intel_ring_buffer *ring;
1c60fef5 1842 struct drm_file *file;
77df6772 1843 int i;
3cf17fc5 1844
3cf17fc5
DV
1845 if (INTEL_INFO(dev)->gen == 6)
1846 seq_printf(m, "GFX_MODE: 0x%08x\n", I915_READ(GFX_MODE));
1847
a2c7f6fd 1848 for_each_ring(ring, dev_priv, i) {
3cf17fc5
DV
1849 seq_printf(m, "%s\n", ring->name);
1850 if (INTEL_INFO(dev)->gen == 7)
1851 seq_printf(m, "GFX_MODE: 0x%08x\n", I915_READ(RING_MODE_GEN7(ring)));
1852 seq_printf(m, "PP_DIR_BASE: 0x%08x\n", I915_READ(RING_PP_DIR_BASE(ring)));
1853 seq_printf(m, "PP_DIR_BASE_READ: 0x%08x\n", I915_READ(RING_PP_DIR_BASE_READ(ring)));
1854 seq_printf(m, "PP_DIR_DCLV: 0x%08x\n", I915_READ(RING_PP_DIR_DCLV(ring)));
1855 }
1856 if (dev_priv->mm.aliasing_ppgtt) {
1857 struct i915_hw_ppgtt *ppgtt = dev_priv->mm.aliasing_ppgtt;
1858
267f0c90 1859 seq_puts(m, "aliasing PPGTT:\n");
3cf17fc5 1860 seq_printf(m, "pd gtt offset: 0x%08x\n", ppgtt->pd_offset);
1c60fef5 1861
87d60b63 1862 ppgtt->debug_dump(ppgtt, m);
1c60fef5
BW
1863 } else
1864 return;
1865
1866 list_for_each_entry_reverse(file, &dev->filelist, lhead) {
1867 struct drm_i915_file_private *file_priv = file->driver_priv;
1868 struct i915_hw_ppgtt *pvt_ppgtt;
1869
1870 pvt_ppgtt = ctx_to_ppgtt(file_priv->private_default_ctx);
1871 seq_printf(m, "proc: %s\n",
1872 get_pid_task(file->pid, PIDTYPE_PID)->comm);
1873 seq_puts(m, " default context:\n");
1874 idr_for_each(&file_priv->context_idr, per_file_ctx, m);
3cf17fc5
DV
1875 }
1876 seq_printf(m, "ECOCHK: 0x%08x\n", I915_READ(GAM_ECOCHK));
77df6772
BW
1877}
1878
1879static int i915_ppgtt_info(struct seq_file *m, void *data)
1880{
1881 struct drm_info_node *node = (struct drm_info_node *) m->private;
1882 struct drm_device *dev = node->minor->dev;
c8c8fb33 1883 struct drm_i915_private *dev_priv = dev->dev_private;
77df6772
BW
1884
1885 int ret = mutex_lock_interruptible(&dev->struct_mutex);
1886 if (ret)
1887 return ret;
c8c8fb33 1888 intel_runtime_pm_get(dev_priv);
77df6772
BW
1889
1890 if (INTEL_INFO(dev)->gen >= 8)
1891 gen8_ppgtt_info(m, dev);
1892 else if (INTEL_INFO(dev)->gen >= 6)
1893 gen6_ppgtt_info(m, dev);
1894
c8c8fb33 1895 intel_runtime_pm_put(dev_priv);
3cf17fc5
DV
1896 mutex_unlock(&dev->struct_mutex);
1897
1898 return 0;
1899}
1900
57f350b6
JB
1901static int i915_dpio_info(struct seq_file *m, void *data)
1902{
1903 struct drm_info_node *node = (struct drm_info_node *) m->private;
1904 struct drm_device *dev = node->minor->dev;
1905 struct drm_i915_private *dev_priv = dev->dev_private;
1906 int ret;
1907
1908
1909 if (!IS_VALLEYVIEW(dev)) {
267f0c90 1910 seq_puts(m, "unsupported\n");
57f350b6
JB
1911 return 0;
1912 }
1913
09153000 1914 ret = mutex_lock_interruptible(&dev_priv->dpio_lock);
57f350b6
JB
1915 if (ret)
1916 return ret;
1917
1918 seq_printf(m, "DPIO_CTL: 0x%08x\n", I915_READ(DPIO_CTL));
1919
ab3c759a
CML
1920 seq_printf(m, "DPIO PLL DW3 CH0 : 0x%08x\n",
1921 vlv_dpio_read(dev_priv, PIPE_A, VLV_PLL_DW3(0)));
1922 seq_printf(m, "DPIO PLL DW3 CH1: 0x%08x\n",
1923 vlv_dpio_read(dev_priv, PIPE_A, VLV_PLL_DW3(1)));
1924
1925 seq_printf(m, "DPIO PLL DW5 CH0: 0x%08x\n",
1926 vlv_dpio_read(dev_priv, PIPE_A, VLV_PLL_DW5(0)));
1927 seq_printf(m, "DPIO PLL DW5 CH1: 0x%08x\n",
1928 vlv_dpio_read(dev_priv, PIPE_A, VLV_PLL_DW5(1)));
1929
1930 seq_printf(m, "DPIO PLL DW7 CH0: 0x%08x\n",
1931 vlv_dpio_read(dev_priv, PIPE_A, VLV_PLL_DW7(0)));
1932 seq_printf(m, "DPIO PLL DW7 CH1: 0x%08x\n",
1933 vlv_dpio_read(dev_priv, PIPE_A, VLV_PLL_DW7(1)));
1934
1935 seq_printf(m, "DPIO PLL DW10 CH0: 0x%08x\n",
1936 vlv_dpio_read(dev_priv, PIPE_A, VLV_PLL_DW10(0)));
1937 seq_printf(m, "DPIO PLL DW10 CH1: 0x%08x\n",
1938 vlv_dpio_read(dev_priv, PIPE_A, VLV_PLL_DW10(1)));
57f350b6
JB
1939
1940 seq_printf(m, "DPIO_FASTCLK_DISABLE: 0x%08x\n",
ab3c759a 1941 vlv_dpio_read(dev_priv, PIPE_A, VLV_CMN_DW0));
57f350b6 1942
09153000 1943 mutex_unlock(&dev_priv->dpio_lock);
57f350b6
JB
1944
1945 return 0;
1946}
1947
63573eb7
BW
1948static int i915_llc(struct seq_file *m, void *data)
1949{
1950 struct drm_info_node *node = (struct drm_info_node *) m->private;
1951 struct drm_device *dev = node->minor->dev;
1952 struct drm_i915_private *dev_priv = dev->dev_private;
1953
1954 /* Size calculation for LLC is a bit of a pain. Ignore for now. */
1955 seq_printf(m, "LLC: %s\n", yesno(HAS_LLC(dev)));
1956 seq_printf(m, "eLLC: %zuMB\n", dev_priv->ellc_size);
1957
1958 return 0;
1959}
1960
e91fd8c6
RV
1961static int i915_edp_psr_status(struct seq_file *m, void *data)
1962{
1963 struct drm_info_node *node = m->private;
1964 struct drm_device *dev = node->minor->dev;
1965 struct drm_i915_private *dev_priv = dev->dev_private;
a031d709
RV
1966 u32 psrperf = 0;
1967 bool enabled = false;
e91fd8c6 1968
c8c8fb33
PZ
1969 intel_runtime_pm_get(dev_priv);
1970
a031d709
RV
1971 seq_printf(m, "Sink_Support: %s\n", yesno(dev_priv->psr.sink_support));
1972 seq_printf(m, "Source_OK: %s\n", yesno(dev_priv->psr.source_ok));
e91fd8c6 1973
a031d709
RV
1974 enabled = HAS_PSR(dev) &&
1975 I915_READ(EDP_PSR_CTL(dev)) & EDP_PSR_ENABLE;
1976 seq_printf(m, "Enabled: %s\n", yesno(enabled));
e91fd8c6 1977
a031d709
RV
1978 if (HAS_PSR(dev))
1979 psrperf = I915_READ(EDP_PSR_PERF_CNT(dev)) &
1980 EDP_PSR_PERF_CNT_MASK;
1981 seq_printf(m, "Performance_Counter: %u\n", psrperf);
e91fd8c6 1982
c8c8fb33 1983 intel_runtime_pm_put(dev_priv);
e91fd8c6
RV
1984 return 0;
1985}
1986
d2e216d0
RV
1987static int i915_sink_crc(struct seq_file *m, void *data)
1988{
1989 struct drm_info_node *node = m->private;
1990 struct drm_device *dev = node->minor->dev;
1991 struct intel_encoder *encoder;
1992 struct intel_connector *connector;
1993 struct intel_dp *intel_dp = NULL;
1994 int ret;
1995 u8 crc[6];
1996
1997 drm_modeset_lock_all(dev);
1998 list_for_each_entry(connector, &dev->mode_config.connector_list,
1999 base.head) {
2000
2001 if (connector->base.dpms != DRM_MODE_DPMS_ON)
2002 continue;
2003
b6ae3c7c
PZ
2004 if (!connector->base.encoder)
2005 continue;
2006
d2e216d0
RV
2007 encoder = to_intel_encoder(connector->base.encoder);
2008 if (encoder->type != INTEL_OUTPUT_EDP)
2009 continue;
2010
2011 intel_dp = enc_to_intel_dp(&encoder->base);
2012
2013 ret = intel_dp_sink_crc(intel_dp, crc);
2014 if (ret)
2015 goto out;
2016
2017 seq_printf(m, "%02x%02x%02x%02x%02x%02x\n",
2018 crc[0], crc[1], crc[2],
2019 crc[3], crc[4], crc[5]);
2020 goto out;
2021 }
2022 ret = -ENODEV;
2023out:
2024 drm_modeset_unlock_all(dev);
2025 return ret;
2026}
2027
ec013e7f
JB
2028static int i915_energy_uJ(struct seq_file *m, void *data)
2029{
2030 struct drm_info_node *node = m->private;
2031 struct drm_device *dev = node->minor->dev;
2032 struct drm_i915_private *dev_priv = dev->dev_private;
2033 u64 power;
2034 u32 units;
2035
2036 if (INTEL_INFO(dev)->gen < 6)
2037 return -ENODEV;
2038
36623ef8
PZ
2039 intel_runtime_pm_get(dev_priv);
2040
ec013e7f
JB
2041 rdmsrl(MSR_RAPL_POWER_UNIT, power);
2042 power = (power & 0x1f00) >> 8;
2043 units = 1000000 / (1 << power); /* convert to uJ */
2044 power = I915_READ(MCH_SECP_NRG_STTS);
2045 power *= units;
2046
36623ef8
PZ
2047 intel_runtime_pm_put(dev_priv);
2048
ec013e7f 2049 seq_printf(m, "%llu", (long long unsigned)power);
371db66a
PZ
2050
2051 return 0;
2052}
2053
2054static int i915_pc8_status(struct seq_file *m, void *unused)
2055{
2056 struct drm_info_node *node = (struct drm_info_node *) m->private;
2057 struct drm_device *dev = node->minor->dev;
2058 struct drm_i915_private *dev_priv = dev->dev_private;
2059
85b8d5c2 2060 if (!IS_HASWELL(dev) && !IS_BROADWELL(dev)) {
371db66a
PZ
2061 seq_puts(m, "not supported\n");
2062 return 0;
2063 }
2064
86c4ec0d 2065 seq_printf(m, "GPU idle: %s\n", yesno(!dev_priv->mm.busy));
371db66a 2066 seq_printf(m, "IRQs disabled: %s\n",
5d584b2e 2067 yesno(dev_priv->pm.irqs_disabled));
371db66a 2068
ec013e7f
JB
2069 return 0;
2070}
2071
1da51581
ID
2072static const char *power_domain_str(enum intel_display_power_domain domain)
2073{
2074 switch (domain) {
2075 case POWER_DOMAIN_PIPE_A:
2076 return "PIPE_A";
2077 case POWER_DOMAIN_PIPE_B:
2078 return "PIPE_B";
2079 case POWER_DOMAIN_PIPE_C:
2080 return "PIPE_C";
2081 case POWER_DOMAIN_PIPE_A_PANEL_FITTER:
2082 return "PIPE_A_PANEL_FITTER";
2083 case POWER_DOMAIN_PIPE_B_PANEL_FITTER:
2084 return "PIPE_B_PANEL_FITTER";
2085 case POWER_DOMAIN_PIPE_C_PANEL_FITTER:
2086 return "PIPE_C_PANEL_FITTER";
2087 case POWER_DOMAIN_TRANSCODER_A:
2088 return "TRANSCODER_A";
2089 case POWER_DOMAIN_TRANSCODER_B:
2090 return "TRANSCODER_B";
2091 case POWER_DOMAIN_TRANSCODER_C:
2092 return "TRANSCODER_C";
2093 case POWER_DOMAIN_TRANSCODER_EDP:
2094 return "TRANSCODER_EDP";
319be8ae
ID
2095 case POWER_DOMAIN_PORT_DDI_A_2_LANES:
2096 return "PORT_DDI_A_2_LANES";
2097 case POWER_DOMAIN_PORT_DDI_A_4_LANES:
2098 return "PORT_DDI_A_4_LANES";
2099 case POWER_DOMAIN_PORT_DDI_B_2_LANES:
2100 return "PORT_DDI_B_2_LANES";
2101 case POWER_DOMAIN_PORT_DDI_B_4_LANES:
2102 return "PORT_DDI_B_4_LANES";
2103 case POWER_DOMAIN_PORT_DDI_C_2_LANES:
2104 return "PORT_DDI_C_2_LANES";
2105 case POWER_DOMAIN_PORT_DDI_C_4_LANES:
2106 return "PORT_DDI_C_4_LANES";
2107 case POWER_DOMAIN_PORT_DDI_D_2_LANES:
2108 return "PORT_DDI_D_2_LANES";
2109 case POWER_DOMAIN_PORT_DDI_D_4_LANES:
2110 return "PORT_DDI_D_4_LANES";
2111 case POWER_DOMAIN_PORT_DSI:
2112 return "PORT_DSI";
2113 case POWER_DOMAIN_PORT_CRT:
2114 return "PORT_CRT";
2115 case POWER_DOMAIN_PORT_OTHER:
2116 return "PORT_OTHER";
1da51581
ID
2117 case POWER_DOMAIN_VGA:
2118 return "VGA";
2119 case POWER_DOMAIN_AUDIO:
2120 return "AUDIO";
2121 case POWER_DOMAIN_INIT:
2122 return "INIT";
2123 default:
2124 WARN_ON(1);
2125 return "?";
2126 }
2127}
2128
2129static int i915_power_domain_info(struct seq_file *m, void *unused)
2130{
2131 struct drm_info_node *node = (struct drm_info_node *) m->private;
2132 struct drm_device *dev = node->minor->dev;
2133 struct drm_i915_private *dev_priv = dev->dev_private;
2134 struct i915_power_domains *power_domains = &dev_priv->power_domains;
2135 int i;
2136
2137 mutex_lock(&power_domains->lock);
2138
2139 seq_printf(m, "%-25s %s\n", "Power well/domain", "Use count");
2140 for (i = 0; i < power_domains->power_well_count; i++) {
2141 struct i915_power_well *power_well;
2142 enum intel_display_power_domain power_domain;
2143
2144 power_well = &power_domains->power_wells[i];
2145 seq_printf(m, "%-25s %d\n", power_well->name,
2146 power_well->count);
2147
2148 for (power_domain = 0; power_domain < POWER_DOMAIN_NUM;
2149 power_domain++) {
2150 if (!(BIT(power_domain) & power_well->domains))
2151 continue;
2152
2153 seq_printf(m, " %-23s %d\n",
2154 power_domain_str(power_domain),
2155 power_domains->domain_use_count[power_domain]);
2156 }
2157 }
2158
2159 mutex_unlock(&power_domains->lock);
2160
2161 return 0;
2162}
2163
53f5e3ca
JB
2164static void intel_seq_print_mode(struct seq_file *m, int tabs,
2165 struct drm_display_mode *mode)
2166{
2167 int i;
2168
2169 for (i = 0; i < tabs; i++)
2170 seq_putc(m, '\t');
2171
2172 seq_printf(m, "id %d:\"%s\" freq %d clock %d hdisp %d hss %d hse %d htot %d vdisp %d vss %d vse %d vtot %d type 0x%x flags 0x%x\n",
2173 mode->base.id, mode->name,
2174 mode->vrefresh, mode->clock,
2175 mode->hdisplay, mode->hsync_start,
2176 mode->hsync_end, mode->htotal,
2177 mode->vdisplay, mode->vsync_start,
2178 mode->vsync_end, mode->vtotal,
2179 mode->type, mode->flags);
2180}
2181
2182static void intel_encoder_info(struct seq_file *m,
2183 struct intel_crtc *intel_crtc,
2184 struct intel_encoder *intel_encoder)
2185{
2186 struct drm_info_node *node = (struct drm_info_node *) m->private;
2187 struct drm_device *dev = node->minor->dev;
2188 struct drm_crtc *crtc = &intel_crtc->base;
2189 struct intel_connector *intel_connector;
2190 struct drm_encoder *encoder;
2191
2192 encoder = &intel_encoder->base;
2193 seq_printf(m, "\tencoder %d: type: %s, connectors:\n",
2194 encoder->base.id, drm_get_encoder_name(encoder));
2195 for_each_connector_on_encoder(dev, encoder, intel_connector) {
2196 struct drm_connector *connector = &intel_connector->base;
2197 seq_printf(m, "\t\tconnector %d: type: %s, status: %s",
2198 connector->base.id,
2199 drm_get_connector_name(connector),
2200 drm_get_connector_status_name(connector->status));
2201 if (connector->status == connector_status_connected) {
2202 struct drm_display_mode *mode = &crtc->mode;
2203 seq_printf(m, ", mode:\n");
2204 intel_seq_print_mode(m, 2, mode);
2205 } else {
2206 seq_putc(m, '\n');
2207 }
2208 }
2209}
2210
2211static void intel_crtc_info(struct seq_file *m, struct intel_crtc *intel_crtc)
2212{
2213 struct drm_info_node *node = (struct drm_info_node *) m->private;
2214 struct drm_device *dev = node->minor->dev;
2215 struct drm_crtc *crtc = &intel_crtc->base;
2216 struct intel_encoder *intel_encoder;
2217
2218 seq_printf(m, "\tfb: %d, pos: %dx%d, size: %dx%d\n",
f4510a27
MR
2219 crtc->primary->fb->base.id, crtc->x, crtc->y,
2220 crtc->primary->fb->width, crtc->primary->fb->height);
53f5e3ca
JB
2221 for_each_encoder_on_crtc(dev, crtc, intel_encoder)
2222 intel_encoder_info(m, intel_crtc, intel_encoder);
2223}
2224
2225static void intel_panel_info(struct seq_file *m, struct intel_panel *panel)
2226{
2227 struct drm_display_mode *mode = panel->fixed_mode;
2228
2229 seq_printf(m, "\tfixed mode:\n");
2230 intel_seq_print_mode(m, 2, mode);
2231}
2232
2233static void intel_dp_info(struct seq_file *m,
2234 struct intel_connector *intel_connector)
2235{
2236 struct intel_encoder *intel_encoder = intel_connector->encoder;
2237 struct intel_dp *intel_dp = enc_to_intel_dp(&intel_encoder->base);
2238
2239 seq_printf(m, "\tDPCD rev: %x\n", intel_dp->dpcd[DP_DPCD_REV]);
2240 seq_printf(m, "\taudio support: %s\n", intel_dp->has_audio ? "yes" :
2241 "no");
2242 if (intel_encoder->type == INTEL_OUTPUT_EDP)
2243 intel_panel_info(m, &intel_connector->panel);
2244}
2245
2246static void intel_hdmi_info(struct seq_file *m,
2247 struct intel_connector *intel_connector)
2248{
2249 struct intel_encoder *intel_encoder = intel_connector->encoder;
2250 struct intel_hdmi *intel_hdmi = enc_to_intel_hdmi(&intel_encoder->base);
2251
2252 seq_printf(m, "\taudio support: %s\n", intel_hdmi->has_audio ? "yes" :
2253 "no");
2254}
2255
2256static void intel_lvds_info(struct seq_file *m,
2257 struct intel_connector *intel_connector)
2258{
2259 intel_panel_info(m, &intel_connector->panel);
2260}
2261
2262static void intel_connector_info(struct seq_file *m,
2263 struct drm_connector *connector)
2264{
2265 struct intel_connector *intel_connector = to_intel_connector(connector);
2266 struct intel_encoder *intel_encoder = intel_connector->encoder;
f103fc7d 2267 struct drm_display_mode *mode;
53f5e3ca
JB
2268
2269 seq_printf(m, "connector %d: type %s, status: %s\n",
2270 connector->base.id, drm_get_connector_name(connector),
2271 drm_get_connector_status_name(connector->status));
2272 if (connector->status == connector_status_connected) {
2273 seq_printf(m, "\tname: %s\n", connector->display_info.name);
2274 seq_printf(m, "\tphysical dimensions: %dx%dmm\n",
2275 connector->display_info.width_mm,
2276 connector->display_info.height_mm);
2277 seq_printf(m, "\tsubpixel order: %s\n",
2278 drm_get_subpixel_order_name(connector->display_info.subpixel_order));
2279 seq_printf(m, "\tCEA rev: %d\n",
2280 connector->display_info.cea_rev);
2281 }
2282 if (intel_encoder->type == INTEL_OUTPUT_DISPLAYPORT ||
2283 intel_encoder->type == INTEL_OUTPUT_EDP)
2284 intel_dp_info(m, intel_connector);
2285 else if (intel_encoder->type == INTEL_OUTPUT_HDMI)
2286 intel_hdmi_info(m, intel_connector);
2287 else if (intel_encoder->type == INTEL_OUTPUT_LVDS)
2288 intel_lvds_info(m, intel_connector);
2289
f103fc7d
JB
2290 seq_printf(m, "\tmodes:\n");
2291 list_for_each_entry(mode, &connector->modes, head)
2292 intel_seq_print_mode(m, 2, mode);
53f5e3ca
JB
2293}
2294
065f2ec2
CW
2295static bool cursor_active(struct drm_device *dev, int pipe)
2296{
2297 struct drm_i915_private *dev_priv = dev->dev_private;
2298 u32 state;
2299
2300 if (IS_845G(dev) || IS_I865G(dev))
2301 state = I915_READ(_CURACNTR) & CURSOR_ENABLE;
2302 else if (INTEL_INFO(dev)->gen <= 6 || IS_VALLEYVIEW(dev))
2303 state = I915_READ(CURCNTR(pipe)) & CURSOR_MODE;
2304 else
2305 state = I915_READ(CURCNTR_IVB(pipe)) & CURSOR_MODE;
2306
2307 return state;
2308}
2309
2310static bool cursor_position(struct drm_device *dev, int pipe, int *x, int *y)
2311{
2312 struct drm_i915_private *dev_priv = dev->dev_private;
2313 u32 pos;
2314
2315 if (IS_IVYBRIDGE(dev) || IS_HASWELL(dev) || IS_BROADWELL(dev))
2316 pos = I915_READ(CURPOS_IVB(pipe));
2317 else
2318 pos = I915_READ(CURPOS(pipe));
2319
2320 *x = (pos >> CURSOR_X_SHIFT) & CURSOR_POS_MASK;
2321 if (pos & (CURSOR_POS_SIGN << CURSOR_X_SHIFT))
2322 *x = -*x;
2323
2324 *y = (pos >> CURSOR_Y_SHIFT) & CURSOR_POS_MASK;
2325 if (pos & (CURSOR_POS_SIGN << CURSOR_Y_SHIFT))
2326 *y = -*y;
2327
2328 return cursor_active(dev, pipe);
2329}
2330
53f5e3ca
JB
2331static int i915_display_info(struct seq_file *m, void *unused)
2332{
2333 struct drm_info_node *node = (struct drm_info_node *) m->private;
2334 struct drm_device *dev = node->minor->dev;
b0e5ddf3 2335 struct drm_i915_private *dev_priv = dev->dev_private;
065f2ec2 2336 struct intel_crtc *crtc;
53f5e3ca
JB
2337 struct drm_connector *connector;
2338
b0e5ddf3 2339 intel_runtime_pm_get(dev_priv);
53f5e3ca
JB
2340 drm_modeset_lock_all(dev);
2341 seq_printf(m, "CRTC info\n");
2342 seq_printf(m, "---------\n");
065f2ec2
CW
2343 list_for_each_entry(crtc, &dev->mode_config.crtc_list, base.head) {
2344 bool active;
2345 int x, y;
53f5e3ca
JB
2346
2347 seq_printf(m, "CRTC %d: pipe: %c, active: %s\n",
065f2ec2
CW
2348 crtc->base.base.id, pipe_name(crtc->pipe),
2349 yesno(crtc->active));
a23dc658 2350 if (crtc->active) {
065f2ec2
CW
2351 intel_crtc_info(m, crtc);
2352
a23dc658
PZ
2353 active = cursor_position(dev, crtc->pipe, &x, &y);
2354 seq_printf(m, "\tcursor visible? %s, position (%d, %d), addr 0x%08x, active? %s\n",
2355 yesno(crtc->cursor_visible),
2356 x, y, crtc->cursor_addr,
2357 yesno(active));
2358 }
53f5e3ca
JB
2359 }
2360
2361 seq_printf(m, "\n");
2362 seq_printf(m, "Connector info\n");
2363 seq_printf(m, "--------------\n");
2364 list_for_each_entry(connector, &dev->mode_config.connector_list, head) {
2365 intel_connector_info(m, connector);
2366 }
2367 drm_modeset_unlock_all(dev);
b0e5ddf3 2368 intel_runtime_pm_put(dev_priv);
53f5e3ca
JB
2369
2370 return 0;
2371}
2372
07144428
DL
2373struct pipe_crc_info {
2374 const char *name;
2375 struct drm_device *dev;
2376 enum pipe pipe;
2377};
2378
2379static int i915_pipe_crc_open(struct inode *inode, struct file *filep)
2380{
be5c7a90
DL
2381 struct pipe_crc_info *info = inode->i_private;
2382 struct drm_i915_private *dev_priv = info->dev->dev_private;
2383 struct intel_pipe_crc *pipe_crc = &dev_priv->pipe_crc[info->pipe];
2384
7eb1c496
DV
2385 if (info->pipe >= INTEL_INFO(info->dev)->num_pipes)
2386 return -ENODEV;
2387
d538bbdf
DL
2388 spin_lock_irq(&pipe_crc->lock);
2389
2390 if (pipe_crc->opened) {
2391 spin_unlock_irq(&pipe_crc->lock);
be5c7a90
DL
2392 return -EBUSY; /* already open */
2393 }
2394
d538bbdf 2395 pipe_crc->opened = true;
07144428
DL
2396 filep->private_data = inode->i_private;
2397
d538bbdf
DL
2398 spin_unlock_irq(&pipe_crc->lock);
2399
07144428
DL
2400 return 0;
2401}
2402
2403static int i915_pipe_crc_release(struct inode *inode, struct file *filep)
2404{
be5c7a90
DL
2405 struct pipe_crc_info *info = inode->i_private;
2406 struct drm_i915_private *dev_priv = info->dev->dev_private;
2407 struct intel_pipe_crc *pipe_crc = &dev_priv->pipe_crc[info->pipe];
2408
d538bbdf
DL
2409 spin_lock_irq(&pipe_crc->lock);
2410 pipe_crc->opened = false;
2411 spin_unlock_irq(&pipe_crc->lock);
be5c7a90 2412
07144428
DL
2413 return 0;
2414}
2415
2416/* (6 fields, 8 chars each, space separated (5) + '\n') */
2417#define PIPE_CRC_LINE_LEN (6 * 8 + 5 + 1)
2418/* account for \'0' */
2419#define PIPE_CRC_BUFFER_LEN (PIPE_CRC_LINE_LEN + 1)
2420
2421static int pipe_crc_data_count(struct intel_pipe_crc *pipe_crc)
8bf1e9f1 2422{
d538bbdf
DL
2423 assert_spin_locked(&pipe_crc->lock);
2424 return CIRC_CNT(pipe_crc->head, pipe_crc->tail,
2425 INTEL_PIPE_CRC_ENTRIES_NR);
07144428
DL
2426}
2427
2428static ssize_t
2429i915_pipe_crc_read(struct file *filep, char __user *user_buf, size_t count,
2430 loff_t *pos)
2431{
2432 struct pipe_crc_info *info = filep->private_data;
2433 struct drm_device *dev = info->dev;
2434 struct drm_i915_private *dev_priv = dev->dev_private;
2435 struct intel_pipe_crc *pipe_crc = &dev_priv->pipe_crc[info->pipe];
2436 char buf[PIPE_CRC_BUFFER_LEN];
2437 int head, tail, n_entries, n;
2438 ssize_t bytes_read;
2439
2440 /*
2441 * Don't allow user space to provide buffers not big enough to hold
2442 * a line of data.
2443 */
2444 if (count < PIPE_CRC_LINE_LEN)
2445 return -EINVAL;
2446
2447 if (pipe_crc->source == INTEL_PIPE_CRC_SOURCE_NONE)
8bf1e9f1 2448 return 0;
07144428
DL
2449
2450 /* nothing to read */
d538bbdf 2451 spin_lock_irq(&pipe_crc->lock);
07144428 2452 while (pipe_crc_data_count(pipe_crc) == 0) {
d538bbdf
DL
2453 int ret;
2454
2455 if (filep->f_flags & O_NONBLOCK) {
2456 spin_unlock_irq(&pipe_crc->lock);
07144428 2457 return -EAGAIN;
d538bbdf 2458 }
07144428 2459
d538bbdf
DL
2460 ret = wait_event_interruptible_lock_irq(pipe_crc->wq,
2461 pipe_crc_data_count(pipe_crc), pipe_crc->lock);
2462 if (ret) {
2463 spin_unlock_irq(&pipe_crc->lock);
2464 return ret;
2465 }
8bf1e9f1
SH
2466 }
2467
07144428 2468 /* We now have one or more entries to read */
d538bbdf
DL
2469 head = pipe_crc->head;
2470 tail = pipe_crc->tail;
07144428
DL
2471 n_entries = min((size_t)CIRC_CNT(head, tail, INTEL_PIPE_CRC_ENTRIES_NR),
2472 count / PIPE_CRC_LINE_LEN);
d538bbdf
DL
2473 spin_unlock_irq(&pipe_crc->lock);
2474
07144428
DL
2475 bytes_read = 0;
2476 n = 0;
2477 do {
b2c88f5b 2478 struct intel_pipe_crc_entry *entry = &pipe_crc->entries[tail];
07144428 2479 int ret;
8bf1e9f1 2480
07144428
DL
2481 bytes_read += snprintf(buf, PIPE_CRC_BUFFER_LEN,
2482 "%8u %8x %8x %8x %8x %8x\n",
2483 entry->frame, entry->crc[0],
2484 entry->crc[1], entry->crc[2],
2485 entry->crc[3], entry->crc[4]);
2486
2487 ret = copy_to_user(user_buf + n * PIPE_CRC_LINE_LEN,
2488 buf, PIPE_CRC_LINE_LEN);
2489 if (ret == PIPE_CRC_LINE_LEN)
2490 return -EFAULT;
b2c88f5b
DL
2491
2492 BUILD_BUG_ON_NOT_POWER_OF_2(INTEL_PIPE_CRC_ENTRIES_NR);
2493 tail = (tail + 1) & (INTEL_PIPE_CRC_ENTRIES_NR - 1);
07144428
DL
2494 n++;
2495 } while (--n_entries);
8bf1e9f1 2496
d538bbdf
DL
2497 spin_lock_irq(&pipe_crc->lock);
2498 pipe_crc->tail = tail;
2499 spin_unlock_irq(&pipe_crc->lock);
2500
07144428
DL
2501 return bytes_read;
2502}
2503
2504static const struct file_operations i915_pipe_crc_fops = {
2505 .owner = THIS_MODULE,
2506 .open = i915_pipe_crc_open,
2507 .read = i915_pipe_crc_read,
2508 .release = i915_pipe_crc_release,
2509};
2510
2511static struct pipe_crc_info i915_pipe_crc_data[I915_MAX_PIPES] = {
2512 {
2513 .name = "i915_pipe_A_crc",
2514 .pipe = PIPE_A,
2515 },
2516 {
2517 .name = "i915_pipe_B_crc",
2518 .pipe = PIPE_B,
2519 },
2520 {
2521 .name = "i915_pipe_C_crc",
2522 .pipe = PIPE_C,
2523 },
2524};
2525
2526static int i915_pipe_crc_create(struct dentry *root, struct drm_minor *minor,
2527 enum pipe pipe)
2528{
2529 struct drm_device *dev = minor->dev;
2530 struct dentry *ent;
2531 struct pipe_crc_info *info = &i915_pipe_crc_data[pipe];
2532
2533 info->dev = dev;
2534 ent = debugfs_create_file(info->name, S_IRUGO, root, info,
2535 &i915_pipe_crc_fops);
f3c5fe97
WY
2536 if (!ent)
2537 return -ENOMEM;
07144428
DL
2538
2539 return drm_add_fake_info_node(minor, ent, info);
8bf1e9f1
SH
2540}
2541
e8dfcf78 2542static const char * const pipe_crc_sources[] = {
926321d5
DV
2543 "none",
2544 "plane1",
2545 "plane2",
2546 "pf",
5b3a856b 2547 "pipe",
3d099a05
DV
2548 "TV",
2549 "DP-B",
2550 "DP-C",
2551 "DP-D",
46a19188 2552 "auto",
926321d5
DV
2553};
2554
2555static const char *pipe_crc_source_name(enum intel_pipe_crc_source source)
2556{
2557 BUILD_BUG_ON(ARRAY_SIZE(pipe_crc_sources) != INTEL_PIPE_CRC_SOURCE_MAX);
2558 return pipe_crc_sources[source];
2559}
2560
bd9db02f 2561static int display_crc_ctl_show(struct seq_file *m, void *data)
926321d5
DV
2562{
2563 struct drm_device *dev = m->private;
2564 struct drm_i915_private *dev_priv = dev->dev_private;
2565 int i;
2566
2567 for (i = 0; i < I915_MAX_PIPES; i++)
2568 seq_printf(m, "%c %s\n", pipe_name(i),
2569 pipe_crc_source_name(dev_priv->pipe_crc[i].source));
2570
2571 return 0;
2572}
2573
bd9db02f 2574static int display_crc_ctl_open(struct inode *inode, struct file *file)
926321d5
DV
2575{
2576 struct drm_device *dev = inode->i_private;
2577
bd9db02f 2578 return single_open(file, display_crc_ctl_show, dev);
926321d5
DV
2579}
2580
46a19188 2581static int i8xx_pipe_crc_ctl_reg(enum intel_pipe_crc_source *source,
52f843f6
DV
2582 uint32_t *val)
2583{
46a19188
DV
2584 if (*source == INTEL_PIPE_CRC_SOURCE_AUTO)
2585 *source = INTEL_PIPE_CRC_SOURCE_PIPE;
2586
2587 switch (*source) {
52f843f6
DV
2588 case INTEL_PIPE_CRC_SOURCE_PIPE:
2589 *val = PIPE_CRC_ENABLE | PIPE_CRC_INCLUDE_BORDER_I8XX;
2590 break;
2591 case INTEL_PIPE_CRC_SOURCE_NONE:
2592 *val = 0;
2593 break;
2594 default:
2595 return -EINVAL;
2596 }
2597
2598 return 0;
2599}
2600
46a19188
DV
2601static int i9xx_pipe_crc_auto_source(struct drm_device *dev, enum pipe pipe,
2602 enum intel_pipe_crc_source *source)
2603{
2604 struct intel_encoder *encoder;
2605 struct intel_crtc *crtc;
26756809 2606 struct intel_digital_port *dig_port;
46a19188
DV
2607 int ret = 0;
2608
2609 *source = INTEL_PIPE_CRC_SOURCE_PIPE;
2610
2611 mutex_lock(&dev->mode_config.mutex);
2612 list_for_each_entry(encoder, &dev->mode_config.encoder_list,
2613 base.head) {
2614 if (!encoder->base.crtc)
2615 continue;
2616
2617 crtc = to_intel_crtc(encoder->base.crtc);
2618
2619 if (crtc->pipe != pipe)
2620 continue;
2621
2622 switch (encoder->type) {
2623 case INTEL_OUTPUT_TVOUT:
2624 *source = INTEL_PIPE_CRC_SOURCE_TV;
2625 break;
2626 case INTEL_OUTPUT_DISPLAYPORT:
2627 case INTEL_OUTPUT_EDP:
26756809
DV
2628 dig_port = enc_to_dig_port(&encoder->base);
2629 switch (dig_port->port) {
2630 case PORT_B:
2631 *source = INTEL_PIPE_CRC_SOURCE_DP_B;
2632 break;
2633 case PORT_C:
2634 *source = INTEL_PIPE_CRC_SOURCE_DP_C;
2635 break;
2636 case PORT_D:
2637 *source = INTEL_PIPE_CRC_SOURCE_DP_D;
2638 break;
2639 default:
2640 WARN(1, "nonexisting DP port %c\n",
2641 port_name(dig_port->port));
2642 break;
2643 }
46a19188
DV
2644 break;
2645 }
2646 }
2647 mutex_unlock(&dev->mode_config.mutex);
2648
2649 return ret;
2650}
2651
2652static int vlv_pipe_crc_ctl_reg(struct drm_device *dev,
2653 enum pipe pipe,
2654 enum intel_pipe_crc_source *source,
7ac0129b
DV
2655 uint32_t *val)
2656{
8d2f24ca
DV
2657 struct drm_i915_private *dev_priv = dev->dev_private;
2658 bool need_stable_symbols = false;
2659
46a19188
DV
2660 if (*source == INTEL_PIPE_CRC_SOURCE_AUTO) {
2661 int ret = i9xx_pipe_crc_auto_source(dev, pipe, source);
2662 if (ret)
2663 return ret;
2664 }
2665
2666 switch (*source) {
7ac0129b
DV
2667 case INTEL_PIPE_CRC_SOURCE_PIPE:
2668 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_PIPE_VLV;
2669 break;
2670 case INTEL_PIPE_CRC_SOURCE_DP_B:
2671 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_DP_B_VLV;
8d2f24ca 2672 need_stable_symbols = true;
7ac0129b
DV
2673 break;
2674 case INTEL_PIPE_CRC_SOURCE_DP_C:
2675 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_DP_C_VLV;
8d2f24ca 2676 need_stable_symbols = true;
7ac0129b
DV
2677 break;
2678 case INTEL_PIPE_CRC_SOURCE_NONE:
2679 *val = 0;
2680 break;
2681 default:
2682 return -EINVAL;
2683 }
2684
8d2f24ca
DV
2685 /*
2686 * When the pipe CRC tap point is after the transcoders we need
2687 * to tweak symbol-level features to produce a deterministic series of
2688 * symbols for a given frame. We need to reset those features only once
2689 * a frame (instead of every nth symbol):
2690 * - DC-balance: used to ensure a better clock recovery from the data
2691 * link (SDVO)
2692 * - DisplayPort scrambling: used for EMI reduction
2693 */
2694 if (need_stable_symbols) {
2695 uint32_t tmp = I915_READ(PORT_DFT2_G4X);
2696
8d2f24ca
DV
2697 tmp |= DC_BALANCE_RESET_VLV;
2698 if (pipe == PIPE_A)
2699 tmp |= PIPE_A_SCRAMBLE_RESET;
2700 else
2701 tmp |= PIPE_B_SCRAMBLE_RESET;
2702
2703 I915_WRITE(PORT_DFT2_G4X, tmp);
2704 }
2705
7ac0129b
DV
2706 return 0;
2707}
2708
4b79ebf7 2709static int i9xx_pipe_crc_ctl_reg(struct drm_device *dev,
46a19188
DV
2710 enum pipe pipe,
2711 enum intel_pipe_crc_source *source,
4b79ebf7
DV
2712 uint32_t *val)
2713{
84093603
DV
2714 struct drm_i915_private *dev_priv = dev->dev_private;
2715 bool need_stable_symbols = false;
2716
46a19188
DV
2717 if (*source == INTEL_PIPE_CRC_SOURCE_AUTO) {
2718 int ret = i9xx_pipe_crc_auto_source(dev, pipe, source);
2719 if (ret)
2720 return ret;
2721 }
2722
2723 switch (*source) {
4b79ebf7
DV
2724 case INTEL_PIPE_CRC_SOURCE_PIPE:
2725 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_PIPE_I9XX;
2726 break;
2727 case INTEL_PIPE_CRC_SOURCE_TV:
2728 if (!SUPPORTS_TV(dev))
2729 return -EINVAL;
2730 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_TV_PRE;
2731 break;
2732 case INTEL_PIPE_CRC_SOURCE_DP_B:
2733 if (!IS_G4X(dev))
2734 return -EINVAL;
2735 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_DP_B_G4X;
84093603 2736 need_stable_symbols = true;
4b79ebf7
DV
2737 break;
2738 case INTEL_PIPE_CRC_SOURCE_DP_C:
2739 if (!IS_G4X(dev))
2740 return -EINVAL;
2741 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_DP_C_G4X;
84093603 2742 need_stable_symbols = true;
4b79ebf7
DV
2743 break;
2744 case INTEL_PIPE_CRC_SOURCE_DP_D:
2745 if (!IS_G4X(dev))
2746 return -EINVAL;
2747 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_DP_D_G4X;
84093603 2748 need_stable_symbols = true;
4b79ebf7
DV
2749 break;
2750 case INTEL_PIPE_CRC_SOURCE_NONE:
2751 *val = 0;
2752 break;
2753 default:
2754 return -EINVAL;
2755 }
2756
84093603
DV
2757 /*
2758 * When the pipe CRC tap point is after the transcoders we need
2759 * to tweak symbol-level features to produce a deterministic series of
2760 * symbols for a given frame. We need to reset those features only once
2761 * a frame (instead of every nth symbol):
2762 * - DC-balance: used to ensure a better clock recovery from the data
2763 * link (SDVO)
2764 * - DisplayPort scrambling: used for EMI reduction
2765 */
2766 if (need_stable_symbols) {
2767 uint32_t tmp = I915_READ(PORT_DFT2_G4X);
2768
2769 WARN_ON(!IS_G4X(dev));
2770
2771 I915_WRITE(PORT_DFT_I9XX,
2772 I915_READ(PORT_DFT_I9XX) | DC_BALANCE_RESET);
2773
2774 if (pipe == PIPE_A)
2775 tmp |= PIPE_A_SCRAMBLE_RESET;
2776 else
2777 tmp |= PIPE_B_SCRAMBLE_RESET;
2778
2779 I915_WRITE(PORT_DFT2_G4X, tmp);
2780 }
2781
4b79ebf7
DV
2782 return 0;
2783}
2784
8d2f24ca
DV
2785static void vlv_undo_pipe_scramble_reset(struct drm_device *dev,
2786 enum pipe pipe)
2787{
2788 struct drm_i915_private *dev_priv = dev->dev_private;
2789 uint32_t tmp = I915_READ(PORT_DFT2_G4X);
2790
2791 if (pipe == PIPE_A)
2792 tmp &= ~PIPE_A_SCRAMBLE_RESET;
2793 else
2794 tmp &= ~PIPE_B_SCRAMBLE_RESET;
2795 if (!(tmp & PIPE_SCRAMBLE_RESET_MASK))
2796 tmp &= ~DC_BALANCE_RESET_VLV;
2797 I915_WRITE(PORT_DFT2_G4X, tmp);
2798
2799}
2800
84093603
DV
2801static void g4x_undo_pipe_scramble_reset(struct drm_device *dev,
2802 enum pipe pipe)
2803{
2804 struct drm_i915_private *dev_priv = dev->dev_private;
2805 uint32_t tmp = I915_READ(PORT_DFT2_G4X);
2806
2807 if (pipe == PIPE_A)
2808 tmp &= ~PIPE_A_SCRAMBLE_RESET;
2809 else
2810 tmp &= ~PIPE_B_SCRAMBLE_RESET;
2811 I915_WRITE(PORT_DFT2_G4X, tmp);
2812
2813 if (!(tmp & PIPE_SCRAMBLE_RESET_MASK)) {
2814 I915_WRITE(PORT_DFT_I9XX,
2815 I915_READ(PORT_DFT_I9XX) & ~DC_BALANCE_RESET);
2816 }
2817}
2818
46a19188 2819static int ilk_pipe_crc_ctl_reg(enum intel_pipe_crc_source *source,
5b3a856b
DV
2820 uint32_t *val)
2821{
46a19188
DV
2822 if (*source == INTEL_PIPE_CRC_SOURCE_AUTO)
2823 *source = INTEL_PIPE_CRC_SOURCE_PIPE;
2824
2825 switch (*source) {
5b3a856b
DV
2826 case INTEL_PIPE_CRC_SOURCE_PLANE1:
2827 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_PRIMARY_ILK;
2828 break;
2829 case INTEL_PIPE_CRC_SOURCE_PLANE2:
2830 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_SPRITE_ILK;
2831 break;
5b3a856b
DV
2832 case INTEL_PIPE_CRC_SOURCE_PIPE:
2833 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_PIPE_ILK;
2834 break;
3d099a05 2835 case INTEL_PIPE_CRC_SOURCE_NONE:
5b3a856b
DV
2836 *val = 0;
2837 break;
3d099a05
DV
2838 default:
2839 return -EINVAL;
5b3a856b
DV
2840 }
2841
2842 return 0;
2843}
2844
46a19188 2845static int ivb_pipe_crc_ctl_reg(enum intel_pipe_crc_source *source,
5b3a856b
DV
2846 uint32_t *val)
2847{
46a19188
DV
2848 if (*source == INTEL_PIPE_CRC_SOURCE_AUTO)
2849 *source = INTEL_PIPE_CRC_SOURCE_PF;
2850
2851 switch (*source) {
5b3a856b
DV
2852 case INTEL_PIPE_CRC_SOURCE_PLANE1:
2853 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_PRIMARY_IVB;
2854 break;
2855 case INTEL_PIPE_CRC_SOURCE_PLANE2:
2856 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_SPRITE_IVB;
2857 break;
2858 case INTEL_PIPE_CRC_SOURCE_PF:
2859 *val = PIPE_CRC_ENABLE | PIPE_CRC_SOURCE_PF_IVB;
2860 break;
3d099a05 2861 case INTEL_PIPE_CRC_SOURCE_NONE:
5b3a856b
DV
2862 *val = 0;
2863 break;
3d099a05
DV
2864 default:
2865 return -EINVAL;
5b3a856b
DV
2866 }
2867
2868 return 0;
2869}
2870
926321d5
DV
2871static int pipe_crc_set_source(struct drm_device *dev, enum pipe pipe,
2872 enum intel_pipe_crc_source source)
2873{
2874 struct drm_i915_private *dev_priv = dev->dev_private;
cc3da175 2875 struct intel_pipe_crc *pipe_crc = &dev_priv->pipe_crc[pipe];
432f3342 2876 u32 val = 0; /* shut up gcc */
5b3a856b 2877 int ret;
926321d5 2878
cc3da175
DL
2879 if (pipe_crc->source == source)
2880 return 0;
2881
ae676fcd
DL
2882 /* forbid changing the source without going back to 'none' */
2883 if (pipe_crc->source && source)
2884 return -EINVAL;
2885
52f843f6 2886 if (IS_GEN2(dev))
46a19188 2887 ret = i8xx_pipe_crc_ctl_reg(&source, &val);
52f843f6 2888 else if (INTEL_INFO(dev)->gen < 5)
46a19188 2889 ret = i9xx_pipe_crc_ctl_reg(dev, pipe, &source, &val);
7ac0129b 2890 else if (IS_VALLEYVIEW(dev))
46a19188 2891 ret = vlv_pipe_crc_ctl_reg(dev,pipe, &source, &val);
4b79ebf7 2892 else if (IS_GEN5(dev) || IS_GEN6(dev))
46a19188 2893 ret = ilk_pipe_crc_ctl_reg(&source, &val);
5b3a856b 2894 else
46a19188 2895 ret = ivb_pipe_crc_ctl_reg(&source, &val);
5b3a856b
DV
2896
2897 if (ret != 0)
2898 return ret;
2899
4b584369
DL
2900 /* none -> real source transition */
2901 if (source) {
7cd6ccff
DL
2902 DRM_DEBUG_DRIVER("collecting CRCs for pipe %c, %s\n",
2903 pipe_name(pipe), pipe_crc_source_name(source));
2904
e5f75aca
DL
2905 pipe_crc->entries = kzalloc(sizeof(*pipe_crc->entries) *
2906 INTEL_PIPE_CRC_ENTRIES_NR,
2907 GFP_KERNEL);
2908 if (!pipe_crc->entries)
2909 return -ENOMEM;
2910
d538bbdf
DL
2911 spin_lock_irq(&pipe_crc->lock);
2912 pipe_crc->head = 0;
2913 pipe_crc->tail = 0;
2914 spin_unlock_irq(&pipe_crc->lock);
4b584369
DL
2915 }
2916
cc3da175 2917 pipe_crc->source = source;
926321d5 2918
926321d5
DV
2919 I915_WRITE(PIPE_CRC_CTL(pipe), val);
2920 POSTING_READ(PIPE_CRC_CTL(pipe));
2921
e5f75aca
DL
2922 /* real source -> none transition */
2923 if (source == INTEL_PIPE_CRC_SOURCE_NONE) {
d538bbdf
DL
2924 struct intel_pipe_crc_entry *entries;
2925
7cd6ccff
DL
2926 DRM_DEBUG_DRIVER("stopping CRCs for pipe %c\n",
2927 pipe_name(pipe));
2928
bcf17ab2
DV
2929 intel_wait_for_vblank(dev, pipe);
2930
d538bbdf
DL
2931 spin_lock_irq(&pipe_crc->lock);
2932 entries = pipe_crc->entries;
e5f75aca 2933 pipe_crc->entries = NULL;
d538bbdf
DL
2934 spin_unlock_irq(&pipe_crc->lock);
2935
2936 kfree(entries);
84093603
DV
2937
2938 if (IS_G4X(dev))
2939 g4x_undo_pipe_scramble_reset(dev, pipe);
8d2f24ca
DV
2940 else if (IS_VALLEYVIEW(dev))
2941 vlv_undo_pipe_scramble_reset(dev, pipe);
e5f75aca
DL
2942 }
2943
926321d5
DV
2944 return 0;
2945}
2946
2947/*
2948 * Parse pipe CRC command strings:
b94dec87
DL
2949 * command: wsp* object wsp+ name wsp+ source wsp*
2950 * object: 'pipe'
2951 * name: (A | B | C)
926321d5
DV
2952 * source: (none | plane1 | plane2 | pf)
2953 * wsp: (#0x20 | #0x9 | #0xA)+
2954 *
2955 * eg.:
b94dec87
DL
2956 * "pipe A plane1" -> Start CRC computations on plane1 of pipe A
2957 * "pipe A none" -> Stop CRC
926321d5 2958 */
bd9db02f 2959static int display_crc_ctl_tokenize(char *buf, char *words[], int max_words)
926321d5
DV
2960{
2961 int n_words = 0;
2962
2963 while (*buf) {
2964 char *end;
2965
2966 /* skip leading white space */
2967 buf = skip_spaces(buf);
2968 if (!*buf)
2969 break; /* end of buffer */
2970
2971 /* find end of word */
2972 for (end = buf; *end && !isspace(*end); end++)
2973 ;
2974
2975 if (n_words == max_words) {
2976 DRM_DEBUG_DRIVER("too many words, allowed <= %d\n",
2977 max_words);
2978 return -EINVAL; /* ran out of words[] before bytes */
2979 }
2980
2981 if (*end)
2982 *end++ = '\0';
2983 words[n_words++] = buf;
2984 buf = end;
2985 }
2986
2987 return n_words;
2988}
2989
b94dec87
DL
2990enum intel_pipe_crc_object {
2991 PIPE_CRC_OBJECT_PIPE,
2992};
2993
e8dfcf78 2994static const char * const pipe_crc_objects[] = {
b94dec87
DL
2995 "pipe",
2996};
2997
2998static int
bd9db02f 2999display_crc_ctl_parse_object(const char *buf, enum intel_pipe_crc_object *o)
b94dec87
DL
3000{
3001 int i;
3002
3003 for (i = 0; i < ARRAY_SIZE(pipe_crc_objects); i++)
3004 if (!strcmp(buf, pipe_crc_objects[i])) {
bd9db02f 3005 *o = i;
b94dec87
DL
3006 return 0;
3007 }
3008
3009 return -EINVAL;
3010}
3011
bd9db02f 3012static int display_crc_ctl_parse_pipe(const char *buf, enum pipe *pipe)
926321d5
DV
3013{
3014 const char name = buf[0];
3015
3016 if (name < 'A' || name >= pipe_name(I915_MAX_PIPES))
3017 return -EINVAL;
3018
3019 *pipe = name - 'A';
3020
3021 return 0;
3022}
3023
3024static int
bd9db02f 3025display_crc_ctl_parse_source(const char *buf, enum intel_pipe_crc_source *s)
926321d5
DV
3026{
3027 int i;
3028
3029 for (i = 0; i < ARRAY_SIZE(pipe_crc_sources); i++)
3030 if (!strcmp(buf, pipe_crc_sources[i])) {
bd9db02f 3031 *s = i;
926321d5
DV
3032 return 0;
3033 }
3034
3035 return -EINVAL;
3036}
3037
bd9db02f 3038static int display_crc_ctl_parse(struct drm_device *dev, char *buf, size_t len)
926321d5 3039{
b94dec87 3040#define N_WORDS 3
926321d5 3041 int n_words;
b94dec87 3042 char *words[N_WORDS];
926321d5 3043 enum pipe pipe;
b94dec87 3044 enum intel_pipe_crc_object object;
926321d5
DV
3045 enum intel_pipe_crc_source source;
3046
bd9db02f 3047 n_words = display_crc_ctl_tokenize(buf, words, N_WORDS);
b94dec87
DL
3048 if (n_words != N_WORDS) {
3049 DRM_DEBUG_DRIVER("tokenize failed, a command is %d words\n",
3050 N_WORDS);
3051 return -EINVAL;
3052 }
3053
bd9db02f 3054 if (display_crc_ctl_parse_object(words[0], &object) < 0) {
b94dec87 3055 DRM_DEBUG_DRIVER("unknown object %s\n", words[0]);
926321d5
DV
3056 return -EINVAL;
3057 }
3058
bd9db02f 3059 if (display_crc_ctl_parse_pipe(words[1], &pipe) < 0) {
b94dec87 3060 DRM_DEBUG_DRIVER("unknown pipe %s\n", words[1]);
926321d5
DV
3061 return -EINVAL;
3062 }
3063
bd9db02f 3064 if (display_crc_ctl_parse_source(words[2], &source) < 0) {
b94dec87 3065 DRM_DEBUG_DRIVER("unknown source %s\n", words[2]);
926321d5
DV
3066 return -EINVAL;
3067 }
3068
3069 return pipe_crc_set_source(dev, pipe, source);
3070}
3071
bd9db02f
DL
3072static ssize_t display_crc_ctl_write(struct file *file, const char __user *ubuf,
3073 size_t len, loff_t *offp)
926321d5
DV
3074{
3075 struct seq_file *m = file->private_data;
3076 struct drm_device *dev = m->private;
3077 char *tmpbuf;
3078 int ret;
3079
3080 if (len == 0)
3081 return 0;
3082
3083 if (len > PAGE_SIZE - 1) {
3084 DRM_DEBUG_DRIVER("expected <%lu bytes into pipe crc control\n",
3085 PAGE_SIZE);
3086 return -E2BIG;
3087 }
3088
3089 tmpbuf = kmalloc(len + 1, GFP_KERNEL);
3090 if (!tmpbuf)
3091 return -ENOMEM;
3092
3093 if (copy_from_user(tmpbuf, ubuf, len)) {
3094 ret = -EFAULT;
3095 goto out;
3096 }
3097 tmpbuf[len] = '\0';
3098
bd9db02f 3099 ret = display_crc_ctl_parse(dev, tmpbuf, len);
926321d5
DV
3100
3101out:
3102 kfree(tmpbuf);
3103 if (ret < 0)
3104 return ret;
3105
3106 *offp += len;
3107 return len;
3108}
3109
bd9db02f 3110static const struct file_operations i915_display_crc_ctl_fops = {
926321d5 3111 .owner = THIS_MODULE,
bd9db02f 3112 .open = display_crc_ctl_open,
926321d5
DV
3113 .read = seq_read,
3114 .llseek = seq_lseek,
3115 .release = single_release,
bd9db02f 3116 .write = display_crc_ctl_write
926321d5
DV
3117};
3118
369a1342
VS
3119static void wm_latency_show(struct seq_file *m, const uint16_t wm[5])
3120{
3121 struct drm_device *dev = m->private;
3122 int num_levels = IS_HASWELL(dev) || IS_BROADWELL(dev) ? 5 : 4;
3123 int level;
3124
3125 drm_modeset_lock_all(dev);
3126
3127 for (level = 0; level < num_levels; level++) {
3128 unsigned int latency = wm[level];
3129
3130 /* WM1+ latency values in 0.5us units */
3131 if (level > 0)
3132 latency *= 5;
3133
3134 seq_printf(m, "WM%d %u (%u.%u usec)\n",
3135 level, wm[level],
3136 latency / 10, latency % 10);
3137 }
3138
3139 drm_modeset_unlock_all(dev);
3140}
3141
3142static int pri_wm_latency_show(struct seq_file *m, void *data)
3143{
3144 struct drm_device *dev = m->private;
3145
3146 wm_latency_show(m, to_i915(dev)->wm.pri_latency);
3147
3148 return 0;
3149}
3150
3151static int spr_wm_latency_show(struct seq_file *m, void *data)
3152{
3153 struct drm_device *dev = m->private;
3154
3155 wm_latency_show(m, to_i915(dev)->wm.spr_latency);
3156
3157 return 0;
3158}
3159
3160static int cur_wm_latency_show(struct seq_file *m, void *data)
3161{
3162 struct drm_device *dev = m->private;
3163
3164 wm_latency_show(m, to_i915(dev)->wm.cur_latency);
3165
3166 return 0;
3167}
3168
3169static int pri_wm_latency_open(struct inode *inode, struct file *file)
3170{
3171 struct drm_device *dev = inode->i_private;
3172
3173 if (!HAS_PCH_SPLIT(dev))
3174 return -ENODEV;
3175
3176 return single_open(file, pri_wm_latency_show, dev);
3177}
3178
3179static int spr_wm_latency_open(struct inode *inode, struct file *file)
3180{
3181 struct drm_device *dev = inode->i_private;
3182
3183 if (!HAS_PCH_SPLIT(dev))
3184 return -ENODEV;
3185
3186 return single_open(file, spr_wm_latency_show, dev);
3187}
3188
3189static int cur_wm_latency_open(struct inode *inode, struct file *file)
3190{
3191 struct drm_device *dev = inode->i_private;
3192
3193 if (!HAS_PCH_SPLIT(dev))
3194 return -ENODEV;
3195
3196 return single_open(file, cur_wm_latency_show, dev);
3197}
3198
3199static ssize_t wm_latency_write(struct file *file, const char __user *ubuf,
3200 size_t len, loff_t *offp, uint16_t wm[5])
3201{
3202 struct seq_file *m = file->private_data;
3203 struct drm_device *dev = m->private;
3204 uint16_t new[5] = { 0 };
3205 int num_levels = IS_HASWELL(dev) || IS_BROADWELL(dev) ? 5 : 4;
3206 int level;
3207 int ret;
3208 char tmp[32];
3209
3210 if (len >= sizeof(tmp))
3211 return -EINVAL;
3212
3213 if (copy_from_user(tmp, ubuf, len))
3214 return -EFAULT;
3215
3216 tmp[len] = '\0';
3217
3218 ret = sscanf(tmp, "%hu %hu %hu %hu %hu", &new[0], &new[1], &new[2], &new[3], &new[4]);
3219 if (ret != num_levels)
3220 return -EINVAL;
3221
3222 drm_modeset_lock_all(dev);
3223
3224 for (level = 0; level < num_levels; level++)
3225 wm[level] = new[level];
3226
3227 drm_modeset_unlock_all(dev);
3228
3229 return len;
3230}
3231
3232
3233static ssize_t pri_wm_latency_write(struct file *file, const char __user *ubuf,
3234 size_t len, loff_t *offp)
3235{
3236 struct seq_file *m = file->private_data;
3237 struct drm_device *dev = m->private;
3238
3239 return wm_latency_write(file, ubuf, len, offp, to_i915(dev)->wm.pri_latency);
3240}
3241
3242static ssize_t spr_wm_latency_write(struct file *file, const char __user *ubuf,
3243 size_t len, loff_t *offp)
3244{
3245 struct seq_file *m = file->private_data;
3246 struct drm_device *dev = m->private;
3247
3248 return wm_latency_write(file, ubuf, len, offp, to_i915(dev)->wm.spr_latency);
3249}
3250
3251static ssize_t cur_wm_latency_write(struct file *file, const char __user *ubuf,
3252 size_t len, loff_t *offp)
3253{
3254 struct seq_file *m = file->private_data;
3255 struct drm_device *dev = m->private;
3256
3257 return wm_latency_write(file, ubuf, len, offp, to_i915(dev)->wm.cur_latency);
3258}
3259
3260static const struct file_operations i915_pri_wm_latency_fops = {
3261 .owner = THIS_MODULE,
3262 .open = pri_wm_latency_open,
3263 .read = seq_read,
3264 .llseek = seq_lseek,
3265 .release = single_release,
3266 .write = pri_wm_latency_write
3267};
3268
3269static const struct file_operations i915_spr_wm_latency_fops = {
3270 .owner = THIS_MODULE,
3271 .open = spr_wm_latency_open,
3272 .read = seq_read,
3273 .llseek = seq_lseek,
3274 .release = single_release,
3275 .write = spr_wm_latency_write
3276};
3277
3278static const struct file_operations i915_cur_wm_latency_fops = {
3279 .owner = THIS_MODULE,
3280 .open = cur_wm_latency_open,
3281 .read = seq_read,
3282 .llseek = seq_lseek,
3283 .release = single_release,
3284 .write = cur_wm_latency_write
3285};
3286
647416f9
KC
3287static int
3288i915_wedged_get(void *data, u64 *val)
f3cd474b 3289{
647416f9 3290 struct drm_device *dev = data;
e277a1f8 3291 struct drm_i915_private *dev_priv = dev->dev_private;
f3cd474b 3292
647416f9 3293 *val = atomic_read(&dev_priv->gpu_error.reset_counter);
f3cd474b 3294
647416f9 3295 return 0;
f3cd474b
CW
3296}
3297
647416f9
KC
3298static int
3299i915_wedged_set(void *data, u64 val)
f3cd474b 3300{
647416f9 3301 struct drm_device *dev = data;
f3cd474b 3302
58174462
MK
3303 i915_handle_error(dev, val,
3304 "Manually setting wedged to %llu", val);
647416f9 3305 return 0;
f3cd474b
CW
3306}
3307
647416f9
KC
3308DEFINE_SIMPLE_ATTRIBUTE(i915_wedged_fops,
3309 i915_wedged_get, i915_wedged_set,
3a3b4f98 3310 "%llu\n");
f3cd474b 3311
647416f9
KC
3312static int
3313i915_ring_stop_get(void *data, u64 *val)
e5eb3d63 3314{
647416f9 3315 struct drm_device *dev = data;
e277a1f8 3316 struct drm_i915_private *dev_priv = dev->dev_private;
e5eb3d63 3317
647416f9 3318 *val = dev_priv->gpu_error.stop_rings;
e5eb3d63 3319
647416f9 3320 return 0;
e5eb3d63
DV
3321}
3322
647416f9
KC
3323static int
3324i915_ring_stop_set(void *data, u64 val)
e5eb3d63 3325{
647416f9 3326 struct drm_device *dev = data;
e5eb3d63 3327 struct drm_i915_private *dev_priv = dev->dev_private;
647416f9 3328 int ret;
e5eb3d63 3329
647416f9 3330 DRM_DEBUG_DRIVER("Stopping rings 0x%08llx\n", val);
e5eb3d63 3331
22bcfc6a
DV
3332 ret = mutex_lock_interruptible(&dev->struct_mutex);
3333 if (ret)
3334 return ret;
3335
99584db3 3336 dev_priv->gpu_error.stop_rings = val;
e5eb3d63
DV
3337 mutex_unlock(&dev->struct_mutex);
3338
647416f9 3339 return 0;
e5eb3d63
DV
3340}
3341
647416f9
KC
3342DEFINE_SIMPLE_ATTRIBUTE(i915_ring_stop_fops,
3343 i915_ring_stop_get, i915_ring_stop_set,
3344 "0x%08llx\n");
d5442303 3345
094f9a54
CW
3346static int
3347i915_ring_missed_irq_get(void *data, u64 *val)
3348{
3349 struct drm_device *dev = data;
3350 struct drm_i915_private *dev_priv = dev->dev_private;
3351
3352 *val = dev_priv->gpu_error.missed_irq_rings;
3353 return 0;
3354}
3355
3356static int
3357i915_ring_missed_irq_set(void *data, u64 val)
3358{
3359 struct drm_device *dev = data;
3360 struct drm_i915_private *dev_priv = dev->dev_private;
3361 int ret;
3362
3363 /* Lock against concurrent debugfs callers */
3364 ret = mutex_lock_interruptible(&dev->struct_mutex);
3365 if (ret)
3366 return ret;
3367 dev_priv->gpu_error.missed_irq_rings = val;
3368 mutex_unlock(&dev->struct_mutex);
3369
3370 return 0;
3371}
3372
3373DEFINE_SIMPLE_ATTRIBUTE(i915_ring_missed_irq_fops,
3374 i915_ring_missed_irq_get, i915_ring_missed_irq_set,
3375 "0x%08llx\n");
3376
3377static int
3378i915_ring_test_irq_get(void *data, u64 *val)
3379{
3380 struct drm_device *dev = data;
3381 struct drm_i915_private *dev_priv = dev->dev_private;
3382
3383 *val = dev_priv->gpu_error.test_irq_rings;
3384
3385 return 0;
3386}
3387
3388static int
3389i915_ring_test_irq_set(void *data, u64 val)
3390{
3391 struct drm_device *dev = data;
3392 struct drm_i915_private *dev_priv = dev->dev_private;
3393 int ret;
3394
3395 DRM_DEBUG_DRIVER("Masking interrupts on rings 0x%08llx\n", val);
3396
3397 /* Lock against concurrent debugfs callers */
3398 ret = mutex_lock_interruptible(&dev->struct_mutex);
3399 if (ret)
3400 return ret;
3401
3402 dev_priv->gpu_error.test_irq_rings = val;
3403 mutex_unlock(&dev->struct_mutex);
3404
3405 return 0;
3406}
3407
3408DEFINE_SIMPLE_ATTRIBUTE(i915_ring_test_irq_fops,
3409 i915_ring_test_irq_get, i915_ring_test_irq_set,
3410 "0x%08llx\n");
3411
dd624afd
CW
3412#define DROP_UNBOUND 0x1
3413#define DROP_BOUND 0x2
3414#define DROP_RETIRE 0x4
3415#define DROP_ACTIVE 0x8
3416#define DROP_ALL (DROP_UNBOUND | \
3417 DROP_BOUND | \
3418 DROP_RETIRE | \
3419 DROP_ACTIVE)
647416f9
KC
3420static int
3421i915_drop_caches_get(void *data, u64 *val)
dd624afd 3422{
647416f9 3423 *val = DROP_ALL;
dd624afd 3424
647416f9 3425 return 0;
dd624afd
CW
3426}
3427
647416f9
KC
3428static int
3429i915_drop_caches_set(void *data, u64 val)
dd624afd 3430{
647416f9 3431 struct drm_device *dev = data;
dd624afd
CW
3432 struct drm_i915_private *dev_priv = dev->dev_private;
3433 struct drm_i915_gem_object *obj, *next;
ca191b13
BW
3434 struct i915_address_space *vm;
3435 struct i915_vma *vma, *x;
647416f9 3436 int ret;
dd624afd 3437
2f9fe5ff 3438 DRM_DEBUG("Dropping caches: 0x%08llx\n", val);
dd624afd
CW
3439
3440 /* No need to check and wait for gpu resets, only libdrm auto-restarts
3441 * on ioctls on -EAGAIN. */
3442 ret = mutex_lock_interruptible(&dev->struct_mutex);
3443 if (ret)
3444 return ret;
3445
3446 if (val & DROP_ACTIVE) {
3447 ret = i915_gpu_idle(dev);
3448 if (ret)
3449 goto unlock;
3450 }
3451
3452 if (val & (DROP_RETIRE | DROP_ACTIVE))
3453 i915_gem_retire_requests(dev);
3454
3455 if (val & DROP_BOUND) {
ca191b13
BW
3456 list_for_each_entry(vm, &dev_priv->vm_list, global_link) {
3457 list_for_each_entry_safe(vma, x, &vm->inactive_list,
3458 mm_list) {
d7f46fc4 3459 if (vma->pin_count)
ca191b13
BW
3460 continue;
3461
3462 ret = i915_vma_unbind(vma);
3463 if (ret)
3464 goto unlock;
3465 }
31a46c9c 3466 }
dd624afd
CW
3467 }
3468
3469 if (val & DROP_UNBOUND) {
35c20a60
BW
3470 list_for_each_entry_safe(obj, next, &dev_priv->mm.unbound_list,
3471 global_list)
dd624afd
CW
3472 if (obj->pages_pin_count == 0) {
3473 ret = i915_gem_object_put_pages(obj);
3474 if (ret)
3475 goto unlock;
3476 }
3477 }
3478
3479unlock:
3480 mutex_unlock(&dev->struct_mutex);
3481
647416f9 3482 return ret;
dd624afd
CW
3483}
3484
647416f9
KC
3485DEFINE_SIMPLE_ATTRIBUTE(i915_drop_caches_fops,
3486 i915_drop_caches_get, i915_drop_caches_set,
3487 "0x%08llx\n");
dd624afd 3488
647416f9
KC
3489static int
3490i915_max_freq_get(void *data, u64 *val)
358733e9 3491{
647416f9 3492 struct drm_device *dev = data;
e277a1f8 3493 struct drm_i915_private *dev_priv = dev->dev_private;
647416f9 3494 int ret;
004777cb
DV
3495
3496 if (!(IS_GEN6(dev) || IS_GEN7(dev)))
3497 return -ENODEV;
3498
5c9669ce
TR
3499 flush_delayed_work(&dev_priv->rps.delayed_resume_work);
3500
4fc688ce 3501 ret = mutex_lock_interruptible(&dev_priv->rps.hw_lock);
004777cb
DV
3502 if (ret)
3503 return ret;
358733e9 3504
0a073b84 3505 if (IS_VALLEYVIEW(dev))
b39fb297 3506 *val = vlv_gpu_freq(dev_priv, dev_priv->rps.max_freq_softlimit);
0a073b84 3507 else
b39fb297 3508 *val = dev_priv->rps.max_freq_softlimit * GT_FREQUENCY_MULTIPLIER;
4fc688ce 3509 mutex_unlock(&dev_priv->rps.hw_lock);
358733e9 3510
647416f9 3511 return 0;
358733e9
JB
3512}
3513
647416f9
KC
3514static int
3515i915_max_freq_set(void *data, u64 val)
358733e9 3516{
647416f9 3517 struct drm_device *dev = data;
358733e9 3518 struct drm_i915_private *dev_priv = dev->dev_private;
dd0a1aa1 3519 u32 rp_state_cap, hw_max, hw_min;
647416f9 3520 int ret;
004777cb
DV
3521
3522 if (!(IS_GEN6(dev) || IS_GEN7(dev)))
3523 return -ENODEV;
358733e9 3524
5c9669ce
TR
3525 flush_delayed_work(&dev_priv->rps.delayed_resume_work);
3526
647416f9 3527 DRM_DEBUG_DRIVER("Manually setting max freq to %llu\n", val);
358733e9 3528
4fc688ce 3529 ret = mutex_lock_interruptible(&dev_priv->rps.hw_lock);
004777cb
DV
3530 if (ret)
3531 return ret;
3532
358733e9
JB
3533 /*
3534 * Turbo will still be enabled, but won't go above the set value.
3535 */
0a073b84 3536 if (IS_VALLEYVIEW(dev)) {
2ec3815f 3537 val = vlv_freq_opcode(dev_priv, val);
dd0a1aa1
JM
3538
3539 hw_max = valleyview_rps_max_freq(dev_priv);
3540 hw_min = valleyview_rps_min_freq(dev_priv);
0a073b84
JB
3541 } else {
3542 do_div(val, GT_FREQUENCY_MULTIPLIER);
dd0a1aa1
JM
3543
3544 rp_state_cap = I915_READ(GEN6_RP_STATE_CAP);
b39fb297 3545 hw_max = dev_priv->rps.max_freq;
dd0a1aa1
JM
3546 hw_min = (rp_state_cap >> 16) & 0xff;
3547 }
3548
b39fb297 3549 if (val < hw_min || val > hw_max || val < dev_priv->rps.min_freq_softlimit) {
dd0a1aa1
JM
3550 mutex_unlock(&dev_priv->rps.hw_lock);
3551 return -EINVAL;
0a073b84
JB
3552 }
3553
b39fb297 3554 dev_priv->rps.max_freq_softlimit = val;
dd0a1aa1
JM
3555
3556 if (IS_VALLEYVIEW(dev))
3557 valleyview_set_rps(dev, val);
3558 else
3559 gen6_set_rps(dev, val);
3560
4fc688ce 3561 mutex_unlock(&dev_priv->rps.hw_lock);
358733e9 3562
647416f9 3563 return 0;
358733e9
JB
3564}
3565
647416f9
KC
3566DEFINE_SIMPLE_ATTRIBUTE(i915_max_freq_fops,
3567 i915_max_freq_get, i915_max_freq_set,
3a3b4f98 3568 "%llu\n");
358733e9 3569
647416f9
KC
3570static int
3571i915_min_freq_get(void *data, u64 *val)
1523c310 3572{
647416f9 3573 struct drm_device *dev = data;
e277a1f8 3574 struct drm_i915_private *dev_priv = dev->dev_private;
647416f9 3575 int ret;
004777cb
DV
3576
3577 if (!(IS_GEN6(dev) || IS_GEN7(dev)))
3578 return -ENODEV;
3579
5c9669ce
TR
3580 flush_delayed_work(&dev_priv->rps.delayed_resume_work);
3581
4fc688ce 3582 ret = mutex_lock_interruptible(&dev_priv->rps.hw_lock);
004777cb
DV
3583 if (ret)
3584 return ret;
1523c310 3585
0a073b84 3586 if (IS_VALLEYVIEW(dev))
b39fb297 3587 *val = vlv_gpu_freq(dev_priv, dev_priv->rps.min_freq_softlimit);
0a073b84 3588 else
b39fb297 3589 *val = dev_priv->rps.min_freq_softlimit * GT_FREQUENCY_MULTIPLIER;
4fc688ce 3590 mutex_unlock(&dev_priv->rps.hw_lock);
1523c310 3591
647416f9 3592 return 0;
1523c310
JB
3593}
3594
647416f9
KC
3595static int
3596i915_min_freq_set(void *data, u64 val)
1523c310 3597{
647416f9 3598 struct drm_device *dev = data;
1523c310 3599 struct drm_i915_private *dev_priv = dev->dev_private;
dd0a1aa1 3600 u32 rp_state_cap, hw_max, hw_min;
647416f9 3601 int ret;
004777cb
DV
3602
3603 if (!(IS_GEN6(dev) || IS_GEN7(dev)))
3604 return -ENODEV;
1523c310 3605
5c9669ce
TR
3606 flush_delayed_work(&dev_priv->rps.delayed_resume_work);
3607
647416f9 3608 DRM_DEBUG_DRIVER("Manually setting min freq to %llu\n", val);
1523c310 3609
4fc688ce 3610 ret = mutex_lock_interruptible(&dev_priv->rps.hw_lock);
004777cb
DV
3611 if (ret)
3612 return ret;
3613
1523c310
JB
3614 /*
3615 * Turbo will still be enabled, but won't go below the set value.
3616 */
0a073b84 3617 if (IS_VALLEYVIEW(dev)) {
2ec3815f 3618 val = vlv_freq_opcode(dev_priv, val);
dd0a1aa1
JM
3619
3620 hw_max = valleyview_rps_max_freq(dev_priv);
3621 hw_min = valleyview_rps_min_freq(dev_priv);
0a073b84
JB
3622 } else {
3623 do_div(val, GT_FREQUENCY_MULTIPLIER);
dd0a1aa1
JM
3624
3625 rp_state_cap = I915_READ(GEN6_RP_STATE_CAP);
b39fb297 3626 hw_max = dev_priv->rps.max_freq;
dd0a1aa1
JM
3627 hw_min = (rp_state_cap >> 16) & 0xff;
3628 }
3629
b39fb297 3630 if (val < hw_min || val > hw_max || val > dev_priv->rps.max_freq_softlimit) {
dd0a1aa1
JM
3631 mutex_unlock(&dev_priv->rps.hw_lock);
3632 return -EINVAL;
0a073b84 3633 }
dd0a1aa1 3634
b39fb297 3635 dev_priv->rps.min_freq_softlimit = val;
dd0a1aa1
JM
3636
3637 if (IS_VALLEYVIEW(dev))
3638 valleyview_set_rps(dev, val);
3639 else
3640 gen6_set_rps(dev, val);
3641
4fc688ce 3642 mutex_unlock(&dev_priv->rps.hw_lock);
1523c310 3643
647416f9 3644 return 0;
1523c310
JB
3645}
3646
647416f9
KC
3647DEFINE_SIMPLE_ATTRIBUTE(i915_min_freq_fops,
3648 i915_min_freq_get, i915_min_freq_set,
3a3b4f98 3649 "%llu\n");
1523c310 3650
647416f9
KC
3651static int
3652i915_cache_sharing_get(void *data, u64 *val)
07b7ddd9 3653{
647416f9 3654 struct drm_device *dev = data;
e277a1f8 3655 struct drm_i915_private *dev_priv = dev->dev_private;
07b7ddd9 3656 u32 snpcr;
647416f9 3657 int ret;
07b7ddd9 3658
004777cb
DV
3659 if (!(IS_GEN6(dev) || IS_GEN7(dev)))
3660 return -ENODEV;
3661
22bcfc6a
DV
3662 ret = mutex_lock_interruptible(&dev->struct_mutex);
3663 if (ret)
3664 return ret;
c8c8fb33 3665 intel_runtime_pm_get(dev_priv);
22bcfc6a 3666
07b7ddd9 3667 snpcr = I915_READ(GEN6_MBCUNIT_SNPCR);
c8c8fb33
PZ
3668
3669 intel_runtime_pm_put(dev_priv);
07b7ddd9
JB
3670 mutex_unlock(&dev_priv->dev->struct_mutex);
3671
647416f9 3672 *val = (snpcr & GEN6_MBC_SNPCR_MASK) >> GEN6_MBC_SNPCR_SHIFT;
07b7ddd9 3673
647416f9 3674 return 0;
07b7ddd9
JB
3675}
3676
647416f9
KC
3677static int
3678i915_cache_sharing_set(void *data, u64 val)
07b7ddd9 3679{
647416f9 3680 struct drm_device *dev = data;
07b7ddd9 3681 struct drm_i915_private *dev_priv = dev->dev_private;
07b7ddd9 3682 u32 snpcr;
07b7ddd9 3683
004777cb
DV
3684 if (!(IS_GEN6(dev) || IS_GEN7(dev)))
3685 return -ENODEV;
3686
647416f9 3687 if (val > 3)
07b7ddd9
JB
3688 return -EINVAL;
3689
c8c8fb33 3690 intel_runtime_pm_get(dev_priv);
647416f9 3691 DRM_DEBUG_DRIVER("Manually setting uncore sharing to %llu\n", val);
07b7ddd9
JB
3692
3693 /* Update the cache sharing policy here as well */
3694 snpcr = I915_READ(GEN6_MBCUNIT_SNPCR);
3695 snpcr &= ~GEN6_MBC_SNPCR_MASK;
3696 snpcr |= (val << GEN6_MBC_SNPCR_SHIFT);
3697 I915_WRITE(GEN6_MBCUNIT_SNPCR, snpcr);
3698
c8c8fb33 3699 intel_runtime_pm_put(dev_priv);
647416f9 3700 return 0;
07b7ddd9
JB
3701}
3702
647416f9
KC
3703DEFINE_SIMPLE_ATTRIBUTE(i915_cache_sharing_fops,
3704 i915_cache_sharing_get, i915_cache_sharing_set,
3705 "%llu\n");
07b7ddd9 3706
6d794d42
BW
3707static int i915_forcewake_open(struct inode *inode, struct file *file)
3708{
3709 struct drm_device *dev = inode->i_private;
3710 struct drm_i915_private *dev_priv = dev->dev_private;
6d794d42 3711
075edca4 3712 if (INTEL_INFO(dev)->gen < 6)
6d794d42
BW
3713 return 0;
3714
c8d9a590 3715 gen6_gt_force_wake_get(dev_priv, FORCEWAKE_ALL);
6d794d42
BW
3716
3717 return 0;
3718}
3719
c43b5634 3720static int i915_forcewake_release(struct inode *inode, struct file *file)
6d794d42
BW
3721{
3722 struct drm_device *dev = inode->i_private;
3723 struct drm_i915_private *dev_priv = dev->dev_private;
3724
075edca4 3725 if (INTEL_INFO(dev)->gen < 6)
6d794d42
BW
3726 return 0;
3727
c8d9a590 3728 gen6_gt_force_wake_put(dev_priv, FORCEWAKE_ALL);
6d794d42
BW
3729
3730 return 0;
3731}
3732
3733static const struct file_operations i915_forcewake_fops = {
3734 .owner = THIS_MODULE,
3735 .open = i915_forcewake_open,
3736 .release = i915_forcewake_release,
3737};
3738
3739static int i915_forcewake_create(struct dentry *root, struct drm_minor *minor)
3740{
3741 struct drm_device *dev = minor->dev;
3742 struct dentry *ent;
3743
3744 ent = debugfs_create_file("i915_forcewake_user",
8eb57294 3745 S_IRUSR,
6d794d42
BW
3746 root, dev,
3747 &i915_forcewake_fops);
f3c5fe97
WY
3748 if (!ent)
3749 return -ENOMEM;
6d794d42 3750
8eb57294 3751 return drm_add_fake_info_node(minor, ent, &i915_forcewake_fops);
6d794d42
BW
3752}
3753
6a9c308d
DV
3754static int i915_debugfs_create(struct dentry *root,
3755 struct drm_minor *minor,
3756 const char *name,
3757 const struct file_operations *fops)
07b7ddd9
JB
3758{
3759 struct drm_device *dev = minor->dev;
3760 struct dentry *ent;
3761
6a9c308d 3762 ent = debugfs_create_file(name,
07b7ddd9
JB
3763 S_IRUGO | S_IWUSR,
3764 root, dev,
6a9c308d 3765 fops);
f3c5fe97
WY
3766 if (!ent)
3767 return -ENOMEM;
07b7ddd9 3768
6a9c308d 3769 return drm_add_fake_info_node(minor, ent, fops);
07b7ddd9
JB
3770}
3771
06c5bf8c 3772static const struct drm_info_list i915_debugfs_list[] = {
311bd68e 3773 {"i915_capabilities", i915_capabilities, 0},
73aa808f 3774 {"i915_gem_objects", i915_gem_object_info, 0},
08c18323 3775 {"i915_gem_gtt", i915_gem_gtt_info, 0},
1b50247a 3776 {"i915_gem_pinned", i915_gem_gtt_info, 0, (void *) PINNED_LIST},
433e12f7 3777 {"i915_gem_active", i915_gem_object_list_info, 0, (void *) ACTIVE_LIST},
433e12f7 3778 {"i915_gem_inactive", i915_gem_object_list_info, 0, (void *) INACTIVE_LIST},
6d2b8885 3779 {"i915_gem_stolen", i915_gem_stolen_list_info },
4e5359cd 3780 {"i915_gem_pageflip", i915_gem_pageflip_info, 0},
2017263e
BG
3781 {"i915_gem_request", i915_gem_request_info, 0},
3782 {"i915_gem_seqno", i915_gem_seqno_info, 0},
a6172a80 3783 {"i915_gem_fence_regs", i915_gem_fence_regs_info, 0},
2017263e 3784 {"i915_gem_interrupt", i915_interrupt_info, 0},
1ec14ad3
CW
3785 {"i915_gem_hws", i915_hws_info, 0, (void *)RCS},
3786 {"i915_gem_hws_blt", i915_hws_info, 0, (void *)BCS},
3787 {"i915_gem_hws_bsd", i915_hws_info, 0, (void *)VCS},
9010ebfd 3788 {"i915_gem_hws_vebox", i915_hws_info, 0, (void *)VECS},
f97108d1 3789 {"i915_rstdby_delays", i915_rstdby_delays, 0},
adb4bd12 3790 {"i915_frequency_info", i915_frequency_info, 0},
f97108d1
JB
3791 {"i915_delayfreq_table", i915_delayfreq_table, 0},
3792 {"i915_inttoext_table", i915_inttoext_table, 0},
3793 {"i915_drpc_info", i915_drpc_info, 0},
7648fa99 3794 {"i915_emon_status", i915_emon_status, 0},
23b2f8bb 3795 {"i915_ring_freq_table", i915_ring_freq_table, 0},
7648fa99 3796 {"i915_gfxec", i915_gfxec, 0},
b5e50c3f 3797 {"i915_fbc_status", i915_fbc_status, 0},
92d44621 3798 {"i915_ips_status", i915_ips_status, 0},
4a9bef37 3799 {"i915_sr_status", i915_sr_status, 0},
44834a67 3800 {"i915_opregion", i915_opregion, 0},
37811fcc 3801 {"i915_gem_framebuffer", i915_gem_framebuffer_info, 0},
e76d3630 3802 {"i915_context_status", i915_context_status, 0},
6d794d42 3803 {"i915_gen6_forcewake_count", i915_gen6_forcewake_count_info, 0},
ea16a3cd 3804 {"i915_swizzle_info", i915_swizzle_info, 0},
3cf17fc5 3805 {"i915_ppgtt_info", i915_ppgtt_info, 0},
57f350b6 3806 {"i915_dpio", i915_dpio_info, 0},
63573eb7 3807 {"i915_llc", i915_llc, 0},
e91fd8c6 3808 {"i915_edp_psr_status", i915_edp_psr_status, 0},
d2e216d0 3809 {"i915_sink_crc_eDP1", i915_sink_crc, 0},
ec013e7f 3810 {"i915_energy_uJ", i915_energy_uJ, 0},
371db66a 3811 {"i915_pc8_status", i915_pc8_status, 0},
1da51581 3812 {"i915_power_domain_info", i915_power_domain_info, 0},
53f5e3ca 3813 {"i915_display_info", i915_display_info, 0},
2017263e 3814};
27c202ad 3815#define I915_DEBUGFS_ENTRIES ARRAY_SIZE(i915_debugfs_list)
2017263e 3816
06c5bf8c 3817static const struct i915_debugfs_files {
34b9674c
DV
3818 const char *name;
3819 const struct file_operations *fops;
3820} i915_debugfs_files[] = {
3821 {"i915_wedged", &i915_wedged_fops},
3822 {"i915_max_freq", &i915_max_freq_fops},
3823 {"i915_min_freq", &i915_min_freq_fops},
3824 {"i915_cache_sharing", &i915_cache_sharing_fops},
3825 {"i915_ring_stop", &i915_ring_stop_fops},
094f9a54
CW
3826 {"i915_ring_missed_irq", &i915_ring_missed_irq_fops},
3827 {"i915_ring_test_irq", &i915_ring_test_irq_fops},
34b9674c
DV
3828 {"i915_gem_drop_caches", &i915_drop_caches_fops},
3829 {"i915_error_state", &i915_error_state_fops},
3830 {"i915_next_seqno", &i915_next_seqno_fops},
bd9db02f 3831 {"i915_display_crc_ctl", &i915_display_crc_ctl_fops},
369a1342
VS
3832 {"i915_pri_wm_latency", &i915_pri_wm_latency_fops},
3833 {"i915_spr_wm_latency", &i915_spr_wm_latency_fops},
3834 {"i915_cur_wm_latency", &i915_cur_wm_latency_fops},
34b9674c
DV
3835};
3836
07144428
DL
3837void intel_display_crc_init(struct drm_device *dev)
3838{
3839 struct drm_i915_private *dev_priv = dev->dev_private;
b378360e 3840 enum pipe pipe;
07144428 3841
b378360e
DV
3842 for_each_pipe(pipe) {
3843 struct intel_pipe_crc *pipe_crc = &dev_priv->pipe_crc[pipe];
07144428 3844
d538bbdf
DL
3845 pipe_crc->opened = false;
3846 spin_lock_init(&pipe_crc->lock);
07144428
DL
3847 init_waitqueue_head(&pipe_crc->wq);
3848 }
3849}
3850
27c202ad 3851int i915_debugfs_init(struct drm_minor *minor)
2017263e 3852{
34b9674c 3853 int ret, i;
f3cd474b 3854
6d794d42 3855 ret = i915_forcewake_create(minor->debugfs_root, minor);
358733e9
JB
3856 if (ret)
3857 return ret;
6a9c308d 3858
07144428
DL
3859 for (i = 0; i < ARRAY_SIZE(i915_pipe_crc_data); i++) {
3860 ret = i915_pipe_crc_create(minor->debugfs_root, minor, i);
3861 if (ret)
3862 return ret;
3863 }
3864
34b9674c
DV
3865 for (i = 0; i < ARRAY_SIZE(i915_debugfs_files); i++) {
3866 ret = i915_debugfs_create(minor->debugfs_root, minor,
3867 i915_debugfs_files[i].name,
3868 i915_debugfs_files[i].fops);
3869 if (ret)
3870 return ret;
3871 }
40633219 3872
27c202ad
BG
3873 return drm_debugfs_create_files(i915_debugfs_list,
3874 I915_DEBUGFS_ENTRIES,
2017263e
BG
3875 minor->debugfs_root, minor);
3876}
3877
27c202ad 3878void i915_debugfs_cleanup(struct drm_minor *minor)
2017263e 3879{
34b9674c
DV
3880 int i;
3881
27c202ad
BG
3882 drm_debugfs_remove_files(i915_debugfs_list,
3883 I915_DEBUGFS_ENTRIES, minor);
07144428 3884
6d794d42
BW
3885 drm_debugfs_remove_files((struct drm_info_list *) &i915_forcewake_fops,
3886 1, minor);
07144428 3887
e309a997 3888 for (i = 0; i < ARRAY_SIZE(i915_pipe_crc_data); i++) {
07144428
DL
3889 struct drm_info_list *info_list =
3890 (struct drm_info_list *)&i915_pipe_crc_data[i];
3891
3892 drm_debugfs_remove_files(info_list, 1, minor);
3893 }
3894
34b9674c
DV
3895 for (i = 0; i < ARRAY_SIZE(i915_debugfs_files); i++) {
3896 struct drm_info_list *info_list =
3897 (struct drm_info_list *) i915_debugfs_files[i].fops;
3898
3899 drm_debugfs_remove_files(info_list, 1, minor);
3900 }
2017263e 3901}