xref: /linux/drivers/gpu/drm/i915/intel_runtime_pm.c (revision db5d28c0bfe566908719bec8e25443aabecbb802)
1 /*
2  * Copyright © 2012-2014 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  *    Eugeni Dodonov <eugeni.dodonov@intel.com>
25  *    Daniel Vetter <daniel.vetter@ffwll.ch>
26  *
27  */
28 
29 #include <linux/pm_runtime.h>
30 
31 #include <drm/drm_print.h>
32 
33 #include "i915_drv.h"
34 #include "i915_trace.h"
35 
36 /**
37  * DOC: runtime pm
38  *
39  * The i915 driver supports dynamic enabling and disabling of entire hardware
40  * blocks at runtime. This is especially important on the display side where
41  * software is supposed to control many power gates manually on recent hardware,
42  * since on the GT side a lot of the power management is done by the hardware.
43  * But even there some manual control at the device level is required.
44  *
45  * Since i915 supports a diverse set of platforms with a unified codebase and
46  * hardware engineers just love to shuffle functionality around between power
47  * domains there's a sizeable amount of indirection required. This file provides
48  * generic functions to the driver for grabbing and releasing references for
49  * abstract power domains. It then maps those to the actual power wells
50  * present for a given platform.
51  */
52 
rpm_to_i915(struct intel_runtime_pm * rpm)53 static struct drm_i915_private *rpm_to_i915(struct intel_runtime_pm *rpm)
54 {
55 	return container_of(rpm, struct drm_i915_private, runtime_pm);
56 }
57 
58 #if IS_ENABLED(CONFIG_DRM_I915_DEBUG_RUNTIME_PM)
59 
init_intel_runtime_pm_wakeref(struct intel_runtime_pm * rpm)60 static void init_intel_runtime_pm_wakeref(struct intel_runtime_pm *rpm)
61 {
62 	ref_tracker_dir_init(&rpm->debug, INTEL_REFTRACK_DEAD_COUNT, dev_name(rpm->kdev));
63 }
64 
65 static intel_wakeref_t
track_intel_runtime_pm_wakeref(struct intel_runtime_pm * rpm)66 track_intel_runtime_pm_wakeref(struct intel_runtime_pm *rpm)
67 {
68 	if (!rpm->available || rpm->no_wakeref_tracking)
69 		return -1;
70 
71 	return intel_ref_tracker_alloc(&rpm->debug);
72 }
73 
untrack_intel_runtime_pm_wakeref(struct intel_runtime_pm * rpm,intel_wakeref_t wakeref)74 static void untrack_intel_runtime_pm_wakeref(struct intel_runtime_pm *rpm,
75 					     intel_wakeref_t wakeref)
76 {
77 	if (!rpm->available || rpm->no_wakeref_tracking)
78 		return;
79 
80 	intel_ref_tracker_free(&rpm->debug, wakeref);
81 }
82 
untrack_all_intel_runtime_pm_wakerefs(struct intel_runtime_pm * rpm)83 static void untrack_all_intel_runtime_pm_wakerefs(struct intel_runtime_pm *rpm)
84 {
85 	ref_tracker_dir_exit(&rpm->debug);
86 }
87 
88 static noinline void
__intel_wakeref_dec_and_check_tracking(struct intel_runtime_pm * rpm)89 __intel_wakeref_dec_and_check_tracking(struct intel_runtime_pm *rpm)
90 {
91 	unsigned long flags;
92 
93 	if (!atomic_dec_and_lock_irqsave(&rpm->wakeref_count,
94 					 &rpm->debug.lock,
95 					 flags))
96 		return;
97 
98 	ref_tracker_dir_print_locked(&rpm->debug, INTEL_REFTRACK_PRINT_LIMIT);
99 	spin_unlock_irqrestore(&rpm->debug.lock, flags);
100 }
101 
print_intel_runtime_pm_wakeref(struct intel_runtime_pm * rpm,struct drm_printer * p)102 void print_intel_runtime_pm_wakeref(struct intel_runtime_pm *rpm,
103 				    struct drm_printer *p)
104 {
105 	intel_ref_tracker_show(&rpm->debug, p);
106 }
107 
108 #else
109 
init_intel_runtime_pm_wakeref(struct intel_runtime_pm * rpm)110 static void init_intel_runtime_pm_wakeref(struct intel_runtime_pm *rpm)
111 {
112 }
113 
114 static intel_wakeref_t
track_intel_runtime_pm_wakeref(struct intel_runtime_pm * rpm)115 track_intel_runtime_pm_wakeref(struct intel_runtime_pm *rpm)
116 {
117 	return -1;
118 }
119 
untrack_intel_runtime_pm_wakeref(struct intel_runtime_pm * rpm,intel_wakeref_t wakeref)120 static void untrack_intel_runtime_pm_wakeref(struct intel_runtime_pm *rpm,
121 					     intel_wakeref_t wakeref)
122 {
123 }
124 
125 static void
__intel_wakeref_dec_and_check_tracking(struct intel_runtime_pm * rpm)126 __intel_wakeref_dec_and_check_tracking(struct intel_runtime_pm *rpm)
127 {
128 	atomic_dec(&rpm->wakeref_count);
129 }
130 
131 static void
untrack_all_intel_runtime_pm_wakerefs(struct intel_runtime_pm * rpm)132 untrack_all_intel_runtime_pm_wakerefs(struct intel_runtime_pm *rpm)
133 {
134 }
135 
136 #endif
137 
138 static void
intel_runtime_pm_acquire(struct intel_runtime_pm * rpm,bool wakelock)139 intel_runtime_pm_acquire(struct intel_runtime_pm *rpm, bool wakelock)
140 {
141 	if (wakelock) {
142 		atomic_add(1 + INTEL_RPM_WAKELOCK_BIAS, &rpm->wakeref_count);
143 		assert_rpm_wakelock_held(rpm);
144 	} else {
145 		atomic_inc(&rpm->wakeref_count);
146 		assert_rpm_raw_wakeref_held(rpm);
147 	}
148 }
149 
150 static void
intel_runtime_pm_release(struct intel_runtime_pm * rpm,int wakelock)151 intel_runtime_pm_release(struct intel_runtime_pm *rpm, int wakelock)
152 {
153 	if (wakelock) {
154 		assert_rpm_wakelock_held(rpm);
155 		atomic_sub(INTEL_RPM_WAKELOCK_BIAS, &rpm->wakeref_count);
156 	} else {
157 		assert_rpm_raw_wakeref_held(rpm);
158 	}
159 
160 	__intel_wakeref_dec_and_check_tracking(rpm);
161 }
162 
__intel_runtime_pm_get(struct intel_runtime_pm * rpm,bool wakelock)163 static intel_wakeref_t __intel_runtime_pm_get(struct intel_runtime_pm *rpm,
164 					      bool wakelock)
165 {
166 	struct drm_i915_private *i915 = rpm_to_i915(rpm);
167 	int ret;
168 
169 	ret = pm_runtime_get_sync(rpm->kdev);
170 	drm_WARN_ONCE(&i915->drm, ret < 0,
171 		      "pm_runtime_get_sync() failed: %d\n", ret);
172 
173 	intel_runtime_pm_acquire(rpm, wakelock);
174 
175 	return track_intel_runtime_pm_wakeref(rpm);
176 }
177 
178 /**
179  * intel_runtime_pm_get_raw - grab a raw runtime pm reference
180  * @rpm: the intel_runtime_pm structure
181  *
182  * This is the unlocked version of intel_display_power_is_enabled() and should
183  * only be used from error capture and recovery code where deadlocks are
184  * possible.
185  * This function grabs a device-level runtime pm reference (mostly used for
186  * asynchronous PM management from display code) and ensures that it is powered
187  * up. Raw references are not considered during wakelock assert checks.
188  *
189  * Any runtime pm reference obtained by this function must have a symmetric
190  * call to intel_runtime_pm_put_raw() to release the reference again.
191  *
192  * Returns: the wakeref cookie to pass to intel_runtime_pm_put_raw(), evaluates
193  * as True if the wakeref was acquired, or False otherwise.
194  */
intel_runtime_pm_get_raw(struct intel_runtime_pm * rpm)195 intel_wakeref_t intel_runtime_pm_get_raw(struct intel_runtime_pm *rpm)
196 {
197 	return __intel_runtime_pm_get(rpm, false);
198 }
199 
200 /**
201  * intel_runtime_pm_get - grab a runtime pm reference
202  * @rpm: the intel_runtime_pm structure
203  *
204  * This function grabs a device-level runtime pm reference (mostly used for GEM
205  * code to ensure the GTT or GT is on) and ensures that it is powered up.
206  *
207  * Any runtime pm reference obtained by this function must have a symmetric
208  * call to intel_runtime_pm_put() to release the reference again.
209  *
210  * Returns: the wakeref cookie to pass to intel_runtime_pm_put()
211  */
intel_runtime_pm_get(struct intel_runtime_pm * rpm)212 intel_wakeref_t intel_runtime_pm_get(struct intel_runtime_pm *rpm)
213 {
214 	return __intel_runtime_pm_get(rpm, true);
215 }
216 
217 /**
218  * __intel_runtime_pm_get_if_active - grab a runtime pm reference if device is active
219  * @rpm: the intel_runtime_pm structure
220  * @ignore_usecount: get a ref even if dev->power.usage_count is 0
221  *
222  * This function grabs a device-level runtime pm reference if the device is
223  * already active and ensures that it is powered up. It is illegal to try
224  * and access the HW should intel_runtime_pm_get_if_active() report failure.
225  *
226  * If @ignore_usecount is true, a reference will be acquired even if there is no
227  * user requiring the device to be powered up (dev->power.usage_count == 0).
228  * If the function returns false in this case then it's guaranteed that the
229  * device's runtime suspend hook has been called already or that it will be
230  * called (and hence it's also guaranteed that the device's runtime resume
231  * hook will be called eventually).
232  *
233  * Any runtime pm reference obtained by this function must have a symmetric
234  * call to intel_runtime_pm_put() to release the reference again.
235  *
236  * Returns: the wakeref cookie to pass to intel_runtime_pm_put(), evaluates
237  * as True if the wakeref was acquired, or False otherwise.
238  */
__intel_runtime_pm_get_if_active(struct intel_runtime_pm * rpm,bool ignore_usecount)239 static intel_wakeref_t __intel_runtime_pm_get_if_active(struct intel_runtime_pm *rpm,
240 							bool ignore_usecount)
241 {
242 	if (IS_ENABLED(CONFIG_PM)) {
243 		/*
244 		 * In cases runtime PM is disabled by the RPM core and we get
245 		 * an -EINVAL return value we are not supposed to call this
246 		 * function, since the power state is undefined. This applies
247 		 * atm to the late/early system suspend/resume handlers.
248 		 */
249 		if ((ignore_usecount &&
250 		     pm_runtime_get_if_active(rpm->kdev) <= 0) ||
251 		    (!ignore_usecount &&
252 		     pm_runtime_get_if_in_use(rpm->kdev) <= 0))
253 			return 0;
254 	}
255 
256 	intel_runtime_pm_acquire(rpm, true);
257 
258 	return track_intel_runtime_pm_wakeref(rpm);
259 }
260 
intel_runtime_pm_get_if_in_use(struct intel_runtime_pm * rpm)261 intel_wakeref_t intel_runtime_pm_get_if_in_use(struct intel_runtime_pm *rpm)
262 {
263 	return __intel_runtime_pm_get_if_active(rpm, false);
264 }
265 
intel_runtime_pm_get_if_active(struct intel_runtime_pm * rpm)266 intel_wakeref_t intel_runtime_pm_get_if_active(struct intel_runtime_pm *rpm)
267 {
268 	return __intel_runtime_pm_get_if_active(rpm, true);
269 }
270 
271 /**
272  * intel_runtime_pm_get_noresume - grab a runtime pm reference
273  * @rpm: the intel_runtime_pm structure
274  *
275  * This function grabs a device-level runtime pm reference.
276  *
277  * It will _not_ resume the device but instead only get an extra wakeref.
278  * Therefore it is only valid to call this functions from contexts where
279  * the device is known to be active and with another wakeref previously hold.
280  *
281  * Any runtime pm reference obtained by this function must have a symmetric
282  * call to intel_runtime_pm_put() to release the reference again.
283  *
284  * Returns: the wakeref cookie to pass to intel_runtime_pm_put()
285  */
intel_runtime_pm_get_noresume(struct intel_runtime_pm * rpm)286 intel_wakeref_t intel_runtime_pm_get_noresume(struct intel_runtime_pm *rpm)
287 {
288 	assert_rpm_raw_wakeref_held(rpm);
289 	pm_runtime_get_noresume(rpm->kdev);
290 
291 	intel_runtime_pm_acquire(rpm, true);
292 
293 	return track_intel_runtime_pm_wakeref(rpm);
294 }
295 
__intel_runtime_pm_put(struct intel_runtime_pm * rpm,intel_wakeref_t wref,bool wakelock)296 static void __intel_runtime_pm_put(struct intel_runtime_pm *rpm,
297 				   intel_wakeref_t wref,
298 				   bool wakelock)
299 {
300 	struct device *kdev = rpm->kdev;
301 
302 	untrack_intel_runtime_pm_wakeref(rpm, wref);
303 
304 	intel_runtime_pm_release(rpm, wakelock);
305 
306 	pm_runtime_mark_last_busy(kdev);
307 	pm_runtime_put_autosuspend(kdev);
308 }
309 
310 /**
311  * intel_runtime_pm_put_raw - release a raw runtime pm reference
312  * @rpm: the intel_runtime_pm structure
313  * @wref: wakeref acquired for the reference that is being released
314  *
315  * This function drops the device-level runtime pm reference obtained by
316  * intel_runtime_pm_get_raw() and might power down the corresponding
317  * hardware block right away if this is the last reference.
318  */
319 void
intel_runtime_pm_put_raw(struct intel_runtime_pm * rpm,intel_wakeref_t wref)320 intel_runtime_pm_put_raw(struct intel_runtime_pm *rpm, intel_wakeref_t wref)
321 {
322 	__intel_runtime_pm_put(rpm, wref, false);
323 }
324 
325 /**
326  * intel_runtime_pm_put_unchecked - release an unchecked runtime pm reference
327  * @rpm: the intel_runtime_pm structure
328  *
329  * This function drops the device-level runtime pm reference obtained by
330  * intel_runtime_pm_get() and might power down the corresponding
331  * hardware block right away if this is the last reference.
332  *
333  * This function exists only for historical reasons and should be avoided in
334  * new code, as the correctness of its use cannot be checked. Always use
335  * intel_runtime_pm_put() instead.
336  */
intel_runtime_pm_put_unchecked(struct intel_runtime_pm * rpm)337 void intel_runtime_pm_put_unchecked(struct intel_runtime_pm *rpm)
338 {
339 	__intel_runtime_pm_put(rpm, -1, true);
340 }
341 
342 #if IS_ENABLED(CONFIG_DRM_I915_DEBUG_RUNTIME_PM)
343 /**
344  * intel_runtime_pm_put - release a runtime pm reference
345  * @rpm: the intel_runtime_pm structure
346  * @wref: wakeref acquired for the reference that is being released
347  *
348  * This function drops the device-level runtime pm reference obtained by
349  * intel_runtime_pm_get() and might power down the corresponding
350  * hardware block right away if this is the last reference.
351  */
intel_runtime_pm_put(struct intel_runtime_pm * rpm,intel_wakeref_t wref)352 void intel_runtime_pm_put(struct intel_runtime_pm *rpm, intel_wakeref_t wref)
353 {
354 	__intel_runtime_pm_put(rpm, wref, true);
355 }
356 #endif
357 
358 /**
359  * intel_runtime_pm_enable - enable runtime pm
360  * @rpm: the intel_runtime_pm structure
361  *
362  * This function enables runtime pm at the end of the driver load sequence.
363  *
364  * Note that this function does currently not enable runtime pm for the
365  * subordinate display power domains. That is done by
366  * intel_power_domains_enable().
367  */
intel_runtime_pm_enable(struct intel_runtime_pm * rpm)368 void intel_runtime_pm_enable(struct intel_runtime_pm *rpm)
369 {
370 	struct drm_i915_private *i915 = rpm_to_i915(rpm);
371 	struct device *kdev = rpm->kdev;
372 
373 	/*
374 	 * Disable the system suspend direct complete optimization, which can
375 	 * leave the device suspended skipping the driver's suspend handlers
376 	 * if the device was already runtime suspended. This is needed due to
377 	 * the difference in our runtime and system suspend sequence and
378 	 * becaue the HDA driver may require us to enable the audio power
379 	 * domain during system suspend.
380 	 */
381 	dev_pm_set_driver_flags(kdev, DPM_FLAG_NO_DIRECT_COMPLETE);
382 
383 	pm_runtime_set_autosuspend_delay(kdev, 10000); /* 10s */
384 	pm_runtime_mark_last_busy(kdev);
385 
386 	/*
387 	 * Take a permanent reference to disable the RPM functionality and drop
388 	 * it only when unloading the driver. Use the low level get/put helpers,
389 	 * so the driver's own RPM reference tracking asserts also work on
390 	 * platforms without RPM support.
391 	 */
392 	if (!rpm->available) {
393 		int ret;
394 
395 		pm_runtime_dont_use_autosuspend(kdev);
396 		ret = pm_runtime_get_sync(kdev);
397 		drm_WARN(&i915->drm, ret < 0,
398 			 "pm_runtime_get_sync() failed: %d\n", ret);
399 	} else {
400 		pm_runtime_use_autosuspend(kdev);
401 	}
402 
403 	/*
404 	 *  FIXME: Temp hammer to keep autosupend disable on lmem supported platforms.
405 	 *  As per PCIe specs 5.3.1.4.1, all iomem read write request over a PCIe
406 	 *  function will be unsupported in case PCIe endpoint function is in D3.
407 	 *  Let's keep i915 autosuspend control 'on' till we fix all known issue
408 	 *  with lmem access in D3.
409 	 */
410 	if (!IS_DGFX(i915))
411 		pm_runtime_allow(kdev);
412 
413 	/*
414 	 * The core calls the driver load handler with an RPM reference held.
415 	 * We drop that here and will reacquire it during unloading in
416 	 * intel_power_domains_fini().
417 	 */
418 	pm_runtime_put_autosuspend(kdev);
419 }
420 
intel_runtime_pm_disable(struct intel_runtime_pm * rpm)421 void intel_runtime_pm_disable(struct intel_runtime_pm *rpm)
422 {
423 	struct drm_i915_private *i915 = rpm_to_i915(rpm);
424 	struct device *kdev = rpm->kdev;
425 
426 	/* Transfer rpm ownership back to core */
427 	drm_WARN(&i915->drm, pm_runtime_get_sync(kdev) < 0,
428 		 "Failed to pass rpm ownership back to core\n");
429 
430 	pm_runtime_dont_use_autosuspend(kdev);
431 
432 	if (!rpm->available)
433 		pm_runtime_put(kdev);
434 }
435 
intel_runtime_pm_driver_release(struct intel_runtime_pm * rpm)436 void intel_runtime_pm_driver_release(struct intel_runtime_pm *rpm)
437 {
438 	struct drm_i915_private *i915 = rpm_to_i915(rpm);
439 	int count = atomic_read(&rpm->wakeref_count);
440 
441 	intel_wakeref_auto_fini(&rpm->userfault_wakeref);
442 
443 	drm_WARN(&i915->drm, count,
444 		 "i915 raw-wakerefs=%d wakelocks=%d on cleanup\n",
445 		 intel_rpm_raw_wakeref_count(count),
446 		 intel_rpm_wakelock_count(count));
447 }
448 
intel_runtime_pm_driver_last_release(struct intel_runtime_pm * rpm)449 void intel_runtime_pm_driver_last_release(struct intel_runtime_pm *rpm)
450 {
451 	intel_runtime_pm_driver_release(rpm);
452 	untrack_all_intel_runtime_pm_wakerefs(rpm);
453 }
454 
intel_runtime_pm_init_early(struct intel_runtime_pm * rpm)455 void intel_runtime_pm_init_early(struct intel_runtime_pm *rpm)
456 {
457 	struct drm_i915_private *i915 = rpm_to_i915(rpm);
458 	struct pci_dev *pdev = to_pci_dev(i915->drm.dev);
459 	struct device *kdev = &pdev->dev;
460 
461 	rpm->kdev = kdev;
462 	rpm->available = HAS_RUNTIME_PM(i915);
463 	atomic_set(&rpm->wakeref_count, 0);
464 
465 	init_intel_runtime_pm_wakeref(rpm);
466 	INIT_LIST_HEAD(&rpm->lmem_userfault_list);
467 	spin_lock_init(&rpm->lmem_userfault_lock);
468 	intel_wakeref_auto_init(&rpm->userfault_wakeref, i915);
469 }
470