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1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright (C) 2014 Red Hat
4  * Author: Rob Clark <robdclark@gmail.com>
5  */
6 
7 #include <drm/drm_atomic_uapi.h>
8 #include <drm/drm_vblank.h>
9 
10 #include "msm_atomic_trace.h"
11 #include "msm_drv.h"
12 #include "msm_gem.h"
13 #include "msm_kms.h"
14 
15 /*
16  * Helpers to control vblanks while we flush.. basically just to ensure
17  * that vblank accounting is switched on, so we get valid seqn/timestamp
18  * on pageflip events (if requested)
19  */
20 
vblank_get(struct msm_kms * kms,unsigned crtc_mask)21 static void vblank_get(struct msm_kms *kms, unsigned crtc_mask)
22 {
23 	struct drm_crtc *crtc;
24 
25 	for_each_crtc_mask(kms->dev, crtc, crtc_mask) {
26 		if (!crtc->state->active)
27 			continue;
28 		drm_crtc_vblank_get(crtc);
29 	}
30 }
31 
vblank_put(struct msm_kms * kms,unsigned crtc_mask)32 static void vblank_put(struct msm_kms *kms, unsigned crtc_mask)
33 {
34 	struct drm_crtc *crtc;
35 
36 	for_each_crtc_mask(kms->dev, crtc, crtc_mask) {
37 		if (!crtc->state->active)
38 			continue;
39 		drm_crtc_vblank_put(crtc);
40 	}
41 }
42 
lock_crtcs(struct msm_kms * kms,unsigned int crtc_mask)43 static void lock_crtcs(struct msm_kms *kms, unsigned int crtc_mask)
44 {
45 	int crtc_index;
46 	struct drm_crtc *crtc;
47 
48 	for_each_crtc_mask(kms->dev, crtc, crtc_mask) {
49 		crtc_index = drm_crtc_index(crtc);
50 		mutex_lock_nested(&kms->commit_lock[crtc_index], crtc_index);
51 	}
52 }
53 
unlock_crtcs(struct msm_kms * kms,unsigned int crtc_mask)54 static void unlock_crtcs(struct msm_kms *kms, unsigned int crtc_mask)
55 {
56 	struct drm_crtc *crtc;
57 
58 	for_each_crtc_mask_reverse(kms->dev, crtc, crtc_mask)
59 		mutex_unlock(&kms->commit_lock[drm_crtc_index(crtc)]);
60 }
61 
msm_atomic_async_commit(struct msm_kms * kms,int crtc_idx)62 static void msm_atomic_async_commit(struct msm_kms *kms, int crtc_idx)
63 {
64 	unsigned crtc_mask = BIT(crtc_idx);
65 
66 	trace_msm_atomic_async_commit_start(crtc_mask);
67 
68 	lock_crtcs(kms, crtc_mask);
69 
70 	if (!(kms->pending_crtc_mask & crtc_mask)) {
71 		unlock_crtcs(kms, crtc_mask);
72 		goto out;
73 	}
74 
75 	kms->pending_crtc_mask &= ~crtc_mask;
76 
77 	kms->funcs->enable_commit(kms);
78 
79 	vblank_get(kms, crtc_mask);
80 
81 	/*
82 	 * Flush hardware updates:
83 	 */
84 	trace_msm_atomic_flush_commit(crtc_mask);
85 	kms->funcs->flush_commit(kms, crtc_mask);
86 
87 	/*
88 	 * Wait for flush to complete:
89 	 */
90 	trace_msm_atomic_wait_flush_start(crtc_mask);
91 	kms->funcs->wait_flush(kms, crtc_mask);
92 	trace_msm_atomic_wait_flush_finish(crtc_mask);
93 
94 	vblank_put(kms, crtc_mask);
95 
96 	kms->funcs->complete_commit(kms, crtc_mask);
97 	unlock_crtcs(kms, crtc_mask);
98 	kms->funcs->disable_commit(kms);
99 
100 out:
101 	trace_msm_atomic_async_commit_finish(crtc_mask);
102 }
103 
msm_atomic_pending_timer(struct hrtimer * t)104 static enum hrtimer_restart msm_atomic_pending_timer(struct hrtimer *t)
105 {
106 	struct msm_pending_timer *timer = container_of(t,
107 			struct msm_pending_timer, timer);
108 
109 	kthread_queue_work(timer->worker, &timer->work);
110 
111 	return HRTIMER_NORESTART;
112 }
113 
msm_atomic_pending_work(struct kthread_work * work)114 static void msm_atomic_pending_work(struct kthread_work *work)
115 {
116 	struct msm_pending_timer *timer = container_of(work,
117 			struct msm_pending_timer, work);
118 
119 	msm_atomic_async_commit(timer->kms, timer->crtc_idx);
120 }
121 
msm_atomic_init_pending_timer(struct msm_pending_timer * timer,struct msm_kms * kms,int crtc_idx)122 int msm_atomic_init_pending_timer(struct msm_pending_timer *timer,
123 		struct msm_kms *kms, int crtc_idx)
124 {
125 	timer->kms = kms;
126 	timer->crtc_idx = crtc_idx;
127 	hrtimer_init(&timer->timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
128 	timer->timer.function = msm_atomic_pending_timer;
129 
130 	timer->worker = kthread_create_worker(0, "atomic-worker-%d", crtc_idx);
131 	if (IS_ERR(timer->worker)) {
132 		int ret = PTR_ERR(timer->worker);
133 		timer->worker = NULL;
134 		return ret;
135 	}
136 	sched_set_fifo(timer->worker->task);
137 	kthread_init_work(&timer->work, msm_atomic_pending_work);
138 
139 	return 0;
140 }
141 
msm_atomic_destroy_pending_timer(struct msm_pending_timer * timer)142 void msm_atomic_destroy_pending_timer(struct msm_pending_timer *timer)
143 {
144 	if (timer->worker)
145 		kthread_destroy_worker(timer->worker);
146 }
147 
can_do_async(struct drm_atomic_state * state,struct drm_crtc ** async_crtc)148 static bool can_do_async(struct drm_atomic_state *state,
149 		struct drm_crtc **async_crtc)
150 {
151 	struct drm_connector_state *connector_state;
152 	struct drm_connector *connector;
153 	struct drm_crtc_state *crtc_state;
154 	struct drm_crtc *crtc;
155 	int i, num_crtcs = 0;
156 
157 	if (!(state->legacy_cursor_update || state->async_update))
158 		return false;
159 
160 	/* any connector change, means slow path: */
161 	for_each_new_connector_in_state(state, connector, connector_state, i)
162 		return false;
163 
164 	for_each_new_crtc_in_state(state, crtc, crtc_state, i) {
165 		if (drm_atomic_crtc_needs_modeset(crtc_state))
166 			return false;
167 		if (++num_crtcs > 1)
168 			return false;
169 		*async_crtc = crtc;
170 	}
171 
172 	return true;
173 }
174 
175 /* Get bitmask of crtcs that will need to be flushed.  The bitmask
176  * can be used with for_each_crtc_mask() iterator, to iterate
177  * effected crtcs without needing to preserve the atomic state.
178  */
get_crtc_mask(struct drm_atomic_state * state)179 static unsigned get_crtc_mask(struct drm_atomic_state *state)
180 {
181 	struct drm_crtc_state *crtc_state;
182 	struct drm_crtc *crtc;
183 	unsigned i, mask = 0;
184 
185 	for_each_new_crtc_in_state(state, crtc, crtc_state, i)
186 		mask |= drm_crtc_mask(crtc);
187 
188 	return mask;
189 }
190 
msm_atomic_commit_tail(struct drm_atomic_state * state)191 void msm_atomic_commit_tail(struct drm_atomic_state *state)
192 {
193 	struct drm_device *dev = state->dev;
194 	struct msm_drm_private *priv = dev->dev_private;
195 	struct msm_kms *kms = priv->kms;
196 	struct drm_crtc *async_crtc = NULL;
197 	unsigned crtc_mask = get_crtc_mask(state);
198 	bool async = kms->funcs->vsync_time &&
199 			can_do_async(state, &async_crtc);
200 
201 	trace_msm_atomic_commit_tail_start(async, crtc_mask);
202 
203 	kms->funcs->enable_commit(kms);
204 
205 	/*
206 	 * Ensure any previous (potentially async) commit has
207 	 * completed:
208 	 */
209 	lock_crtcs(kms, crtc_mask);
210 	trace_msm_atomic_wait_flush_start(crtc_mask);
211 	kms->funcs->wait_flush(kms, crtc_mask);
212 	trace_msm_atomic_wait_flush_finish(crtc_mask);
213 
214 	/*
215 	 * Now that there is no in-progress flush, prepare the
216 	 * current update:
217 	 */
218 	kms->funcs->prepare_commit(kms, state);
219 
220 	/*
221 	 * Push atomic updates down to hardware:
222 	 */
223 	drm_atomic_helper_commit_modeset_disables(dev, state);
224 	drm_atomic_helper_commit_planes(dev, state, 0);
225 	drm_atomic_helper_commit_modeset_enables(dev, state);
226 
227 	if (async) {
228 		struct msm_pending_timer *timer =
229 			&kms->pending_timers[drm_crtc_index(async_crtc)];
230 
231 		/* async updates are limited to single-crtc updates: */
232 		WARN_ON(crtc_mask != drm_crtc_mask(async_crtc));
233 
234 		/*
235 		 * Start timer if we don't already have an update pending
236 		 * on this crtc:
237 		 */
238 		if (!(kms->pending_crtc_mask & crtc_mask)) {
239 			ktime_t vsync_time, wakeup_time;
240 
241 			kms->pending_crtc_mask |= crtc_mask;
242 
243 			vsync_time = kms->funcs->vsync_time(kms, async_crtc);
244 			wakeup_time = ktime_sub(vsync_time, ms_to_ktime(1));
245 
246 			hrtimer_start(&timer->timer, wakeup_time,
247 					HRTIMER_MODE_ABS);
248 		}
249 
250 		kms->funcs->disable_commit(kms);
251 		unlock_crtcs(kms, crtc_mask);
252 		/*
253 		 * At this point, from drm core's perspective, we
254 		 * are done with the atomic update, so we can just
255 		 * go ahead and signal that it is done:
256 		 */
257 		drm_atomic_helper_commit_hw_done(state);
258 		drm_atomic_helper_cleanup_planes(dev, state);
259 
260 		trace_msm_atomic_commit_tail_finish(async, crtc_mask);
261 
262 		return;
263 	}
264 
265 	/*
266 	 * If there is any async flush pending on updated crtcs, fold
267 	 * them into the current flush.
268 	 */
269 	kms->pending_crtc_mask &= ~crtc_mask;
270 
271 	vblank_get(kms, crtc_mask);
272 
273 	/*
274 	 * Flush hardware updates:
275 	 */
276 	trace_msm_atomic_flush_commit(crtc_mask);
277 	kms->funcs->flush_commit(kms, crtc_mask);
278 	unlock_crtcs(kms, crtc_mask);
279 	/*
280 	 * Wait for flush to complete:
281 	 */
282 	trace_msm_atomic_wait_flush_start(crtc_mask);
283 	kms->funcs->wait_flush(kms, crtc_mask);
284 	trace_msm_atomic_wait_flush_finish(crtc_mask);
285 
286 	vblank_put(kms, crtc_mask);
287 
288 	lock_crtcs(kms, crtc_mask);
289 	kms->funcs->complete_commit(kms, crtc_mask);
290 	unlock_crtcs(kms, crtc_mask);
291 	kms->funcs->disable_commit(kms);
292 
293 	drm_atomic_helper_commit_hw_done(state);
294 	drm_atomic_helper_cleanup_planes(dev, state);
295 
296 	trace_msm_atomic_commit_tail_finish(async, crtc_mask);
297 }
298