drm_irq.c revision 1.5.4.2 1 1.5.4.2 tls /**
2 1.5.4.2 tls * \file drm_irq.c
3 1.5.4.2 tls * IRQ support
4 1.5.4.2 tls *
5 1.5.4.2 tls * \author Rickard E. (Rik) Faith <faith (at) valinux.com>
6 1.5.4.2 tls * \author Gareth Hughes <gareth (at) valinux.com>
7 1.5.4.2 tls */
8 1.5.4.2 tls
9 1.5.4.2 tls /*
10 1.5.4.2 tls * Created: Fri Mar 19 14:30:16 1999 by faith (at) valinux.com
11 1.5.4.2 tls *
12 1.5.4.2 tls * Copyright 1999, 2000 Precision Insight, Inc., Cedar Park, Texas.
13 1.5.4.2 tls * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
14 1.5.4.2 tls * All Rights Reserved.
15 1.5.4.2 tls *
16 1.5.4.2 tls * Permission is hereby granted, free of charge, to any person obtaining a
17 1.5.4.2 tls * copy of this software and associated documentation files (the "Software"),
18 1.5.4.2 tls * to deal in the Software without restriction, including without limitation
19 1.5.4.2 tls * the rights to use, copy, modify, merge, publish, distribute, sublicense,
20 1.5.4.2 tls * and/or sell copies of the Software, and to permit persons to whom the
21 1.5.4.2 tls * Software is furnished to do so, subject to the following conditions:
22 1.5.4.2 tls *
23 1.5.4.2 tls * The above copyright notice and this permission notice (including the next
24 1.5.4.2 tls * paragraph) shall be included in all copies or substantial portions of the
25 1.5.4.2 tls * Software.
26 1.5.4.2 tls *
27 1.5.4.2 tls * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
28 1.5.4.2 tls * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
29 1.5.4.2 tls * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
30 1.5.4.2 tls * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
31 1.5.4.2 tls * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
32 1.5.4.2 tls * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
33 1.5.4.2 tls * OTHER DEALINGS IN THE SOFTWARE.
34 1.5.4.2 tls */
35 1.5.4.2 tls
36 1.5.4.2 tls #include <drm/drmP.h>
37 1.5.4.2 tls #include "drm_trace.h"
38 1.5.4.2 tls
39 1.5.4.2 tls #include <linux/interrupt.h> /* For task queue support */
40 1.5.4.2 tls #include <linux/slab.h>
41 1.5.4.2 tls
42 1.5.4.2 tls #include <linux/vgaarb.h>
43 1.5.4.2 tls #include <linux/export.h>
44 1.5.4.2 tls
45 1.5.4.2 tls #include <linux/atomic.h>
46 1.5.4.2 tls #include <linux/ktime.h>
47 1.5.4.2 tls #include <linux/math64.h>
48 1.5.4.2 tls #include <linux/preempt.h>
49 1.5.4.2 tls #include <linux/sched.h>
50 1.5.4.2 tls
51 1.5.4.2 tls #include <asm/bug.h>
52 1.5.4.2 tls #include <asm/param.h>
53 1.5.4.2 tls
54 1.5.4.2 tls #ifdef __NetBSD__ /* XXX hurk -- selnotify &c. */
55 1.5.4.2 tls #include <sys/poll.h>
56 1.5.4.2 tls #include <sys/select.h>
57 1.5.4.2 tls #endif
58 1.5.4.2 tls
59 1.5.4.2 tls /* Access macro for slots in vblank timestamp ringbuffer. */
60 1.5.4.2 tls #define vblanktimestamp(dev, crtc, count) \
61 1.5.4.2 tls ((dev)->vblank[crtc].time[(count) % DRM_VBLANKTIME_RBSIZE])
62 1.5.4.2 tls
63 1.5.4.2 tls /* Retry timestamp calculation up to 3 times to satisfy
64 1.5.4.2 tls * drm_timestamp_precision before giving up.
65 1.5.4.2 tls */
66 1.5.4.2 tls #define DRM_TIMESTAMP_MAXRETRIES 3
67 1.5.4.2 tls
68 1.5.4.2 tls /* Threshold in nanoseconds for detection of redundant
69 1.5.4.2 tls * vblank irq in drm_handle_vblank(). 1 msec should be ok.
70 1.5.4.2 tls */
71 1.5.4.2 tls #define DRM_REDUNDANT_VBLIRQ_THRESH_NS 1000000
72 1.5.4.2 tls
73 1.5.4.2 tls /**
74 1.5.4.2 tls * Get interrupt from bus id.
75 1.5.4.2 tls *
76 1.5.4.2 tls * \param inode device inode.
77 1.5.4.2 tls * \param file_priv DRM file private.
78 1.5.4.2 tls * \param cmd command.
79 1.5.4.2 tls * \param arg user argument, pointing to a drm_irq_busid structure.
80 1.5.4.2 tls * \return zero on success or a negative number on failure.
81 1.5.4.2 tls *
82 1.5.4.2 tls * Finds the PCI device with the specified bus id and gets its IRQ number.
83 1.5.4.2 tls * This IOCTL is deprecated, and will now return EINVAL for any busid not equal
84 1.5.4.2 tls * to that of the device that this DRM instance attached to.
85 1.5.4.2 tls */
86 1.5.4.2 tls int drm_irq_by_busid(struct drm_device *dev, void *data,
87 1.5.4.2 tls struct drm_file *file_priv)
88 1.5.4.2 tls {
89 1.5.4.2 tls struct drm_irq_busid *p = data;
90 1.5.4.2 tls
91 1.5.4.2 tls if (!dev->driver->bus->irq_by_busid)
92 1.5.4.2 tls return -EINVAL;
93 1.5.4.2 tls
94 1.5.4.2 tls if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
95 1.5.4.2 tls return -EINVAL;
96 1.5.4.2 tls
97 1.5.4.2 tls return dev->driver->bus->irq_by_busid(dev, p);
98 1.5.4.2 tls }
99 1.5.4.2 tls
100 1.5.4.2 tls /*
101 1.5.4.2 tls * Clear vblank timestamp buffer for a crtc.
102 1.5.4.2 tls */
103 1.5.4.2 tls static void clear_vblank_timestamps(struct drm_device *dev, int crtc)
104 1.5.4.2 tls {
105 1.5.4.2 tls memset(dev->vblank[crtc].time, 0, sizeof(dev->vblank[crtc].time));
106 1.5.4.2 tls }
107 1.5.4.2 tls
108 1.5.4.2 tls /*
109 1.5.4.2 tls * Disable vblank irq's on crtc, make sure that last vblank count
110 1.5.4.2 tls * of hardware and corresponding consistent software vblank counter
111 1.5.4.2 tls * are preserved, even if there are any spurious vblank irq's after
112 1.5.4.2 tls * disable.
113 1.5.4.2 tls */
114 1.5.4.2 tls static void vblank_disable_and_save(struct drm_device *dev, int crtc)
115 1.5.4.2 tls {
116 1.5.4.2 tls unsigned long irqflags;
117 1.5.4.2 tls u32 vblcount;
118 1.5.4.2 tls s64 diff_ns;
119 1.5.4.2 tls int vblrc;
120 1.5.4.2 tls struct timeval tvblank;
121 1.5.4.2 tls int count = DRM_TIMESTAMP_MAXRETRIES;
122 1.5.4.2 tls
123 1.5.4.2 tls /* Prevent vblank irq processing while disabling vblank irqs,
124 1.5.4.2 tls * so no updates of timestamps or count can happen after we've
125 1.5.4.2 tls * disabled. Needed to prevent races in case of delayed irq's.
126 1.5.4.2 tls */
127 1.5.4.2 tls spin_lock_irqsave(&dev->vblank_time_lock, irqflags);
128 1.5.4.2 tls
129 1.5.4.2 tls dev->driver->disable_vblank(dev, crtc);
130 1.5.4.2 tls dev->vblank[crtc].enabled = false;
131 1.5.4.2 tls
132 1.5.4.2 tls /* No further vblank irq's will be processed after
133 1.5.4.2 tls * this point. Get current hardware vblank count and
134 1.5.4.2 tls * vblank timestamp, repeat until they are consistent.
135 1.5.4.2 tls *
136 1.5.4.2 tls * FIXME: There is still a race condition here and in
137 1.5.4.2 tls * drm_update_vblank_count() which can cause off-by-one
138 1.5.4.2 tls * reinitialization of software vblank counter. If gpu
139 1.5.4.2 tls * vblank counter doesn't increment exactly at the leading
140 1.5.4.2 tls * edge of a vblank interval, then we can lose 1 count if
141 1.5.4.2 tls * we happen to execute between start of vblank and the
142 1.5.4.2 tls * delayed gpu counter increment.
143 1.5.4.2 tls */
144 1.5.4.2 tls do {
145 1.5.4.2 tls dev->vblank[crtc].last = dev->driver->get_vblank_counter(dev, crtc);
146 1.5.4.2 tls vblrc = drm_get_last_vbltimestamp(dev, crtc, &tvblank, 0);
147 1.5.4.2 tls } while (dev->vblank[crtc].last != dev->driver->get_vblank_counter(dev, crtc) && (--count) && vblrc);
148 1.5.4.2 tls
149 1.5.4.2 tls if (!count)
150 1.5.4.2 tls vblrc = 0;
151 1.5.4.2 tls
152 1.5.4.2 tls /* Compute time difference to stored timestamp of last vblank
153 1.5.4.2 tls * as updated by last invocation of drm_handle_vblank() in vblank irq.
154 1.5.4.2 tls */
155 1.5.4.2 tls vblcount = atomic_read(&dev->vblank[crtc].count);
156 1.5.4.2 tls diff_ns = timeval_to_ns(&tvblank) -
157 1.5.4.2 tls timeval_to_ns(&vblanktimestamp(dev, crtc, vblcount));
158 1.5.4.2 tls
159 1.5.4.2 tls /* If there is at least 1 msec difference between the last stored
160 1.5.4.2 tls * timestamp and tvblank, then we are currently executing our
161 1.5.4.2 tls * disable inside a new vblank interval, the tvblank timestamp
162 1.5.4.2 tls * corresponds to this new vblank interval and the irq handler
163 1.5.4.2 tls * for this vblank didn't run yet and won't run due to our disable.
164 1.5.4.2 tls * Therefore we need to do the job of drm_handle_vblank() and
165 1.5.4.2 tls * increment the vblank counter by one to account for this vblank.
166 1.5.4.2 tls *
167 1.5.4.2 tls * Skip this step if there isn't any high precision timestamp
168 1.5.4.2 tls * available. In that case we can't account for this and just
169 1.5.4.2 tls * hope for the best.
170 1.5.4.2 tls */
171 1.5.4.2 tls if ((vblrc > 0) && (abs64(diff_ns) > 1000000)) {
172 1.5.4.2 tls atomic_inc(&dev->vblank[crtc].count);
173 1.5.4.2 tls smp_mb__after_atomic_inc();
174 1.5.4.2 tls }
175 1.5.4.2 tls
176 1.5.4.2 tls /* Invalidate all timestamps while vblank irq's are off. */
177 1.5.4.2 tls clear_vblank_timestamps(dev, crtc);
178 1.5.4.2 tls
179 1.5.4.2 tls spin_unlock_irqrestore(&dev->vblank_time_lock, irqflags);
180 1.5.4.2 tls }
181 1.5.4.2 tls
182 1.5.4.2 tls static void vblank_disable_fn(unsigned long arg)
183 1.5.4.2 tls {
184 1.5.4.2 tls struct drm_device *dev = (struct drm_device *)arg;
185 1.5.4.2 tls unsigned long irqflags;
186 1.5.4.2 tls int i;
187 1.5.4.2 tls
188 1.5.4.2 tls if (!dev->vblank_disable_allowed)
189 1.5.4.2 tls return;
190 1.5.4.2 tls
191 1.5.4.2 tls for (i = 0; i < dev->num_crtcs; i++) {
192 1.5.4.2 tls spin_lock_irqsave(&dev->vbl_lock, irqflags);
193 1.5.4.2 tls if (atomic_read(&dev->vblank[i].refcount) == 0 &&
194 1.5.4.2 tls dev->vblank[i].enabled) {
195 1.5.4.2 tls DRM_DEBUG("disabling vblank on crtc %d\n", i);
196 1.5.4.2 tls vblank_disable_and_save(dev, i);
197 1.5.4.2 tls }
198 1.5.4.2 tls spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
199 1.5.4.2 tls }
200 1.5.4.2 tls }
201 1.5.4.2 tls
202 1.5.4.2 tls void drm_vblank_cleanup(struct drm_device *dev)
203 1.5.4.2 tls {
204 1.5.4.2 tls /* Bail if the driver didn't call drm_vblank_init() */
205 1.5.4.2 tls if (dev->num_crtcs == 0)
206 1.5.4.2 tls return;
207 1.5.4.2 tls
208 1.5.4.2 tls del_timer_sync(&dev->vblank_disable_timer);
209 1.5.4.2 tls #ifdef __NetBSD__
210 1.5.4.2 tls teardown_timer(&dev->vblank_disable_timer);
211 1.5.4.2 tls #endif
212 1.5.4.2 tls
213 1.5.4.2 tls vblank_disable_fn((unsigned long)dev);
214 1.5.4.2 tls
215 1.5.4.2 tls #ifdef __NetBSD__
216 1.5.4.2 tls {
217 1.5.4.2 tls unsigned int i;
218 1.5.4.2 tls for (i = 0; i < dev->num_crtcs; i++)
219 1.5.4.2 tls DRM_DESTROY_WAITQUEUE(&dev->vblank[i].queue);
220 1.5.4.2 tls }
221 1.5.4.2 tls #endif
222 1.5.4.2 tls
223 1.5.4.2 tls kfree(dev->vblank);
224 1.5.4.2 tls
225 1.5.4.2 tls dev->num_crtcs = 0;
226 1.5.4.2 tls
227 1.5.4.2 tls #ifdef __NetBSD__
228 1.5.4.2 tls spin_lock_destroy(&dev->vblank_time_lock);
229 1.5.4.2 tls spin_lock_destroy(&dev->vbl_lock);
230 1.5.4.2 tls #endif
231 1.5.4.2 tls }
232 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_cleanup);
233 1.5.4.2 tls
234 1.5.4.2 tls int drm_vblank_init(struct drm_device *dev, int num_crtcs)
235 1.5.4.2 tls {
236 1.5.4.2 tls int i, ret = -ENOMEM;
237 1.5.4.2 tls
238 1.5.4.2 tls setup_timer(&dev->vblank_disable_timer, vblank_disable_fn,
239 1.5.4.2 tls (unsigned long)dev);
240 1.5.4.2 tls spin_lock_init(&dev->vbl_lock);
241 1.5.4.2 tls spin_lock_init(&dev->vblank_time_lock);
242 1.5.4.2 tls
243 1.5.4.2 tls dev->num_crtcs = num_crtcs;
244 1.5.4.2 tls
245 1.5.4.2 tls dev->vblank = kcalloc(num_crtcs, sizeof(*dev->vblank), GFP_KERNEL);
246 1.5.4.2 tls if (!dev->vblank)
247 1.5.4.2 tls goto err;
248 1.5.4.2 tls
249 1.5.4.2 tls for (i = 0; i < num_crtcs; i++)
250 1.5.4.2 tls #ifdef __NetBSD__
251 1.5.4.2 tls DRM_INIT_WAITQUEUE(&dev->vblank[i].queue, "drmvblnq");
252 1.5.4.2 tls #else
253 1.5.4.2 tls init_waitqueue_head(&dev->vblank[i].queue);
254 1.5.4.2 tls #endif
255 1.5.4.2 tls
256 1.5.4.2 tls DRM_INFO("Supports vblank timestamp caching Rev 2 (21.10.2013).\n");
257 1.5.4.2 tls
258 1.5.4.2 tls /* Driver specific high-precision vblank timestamping supported? */
259 1.5.4.2 tls if (dev->driver->get_vblank_timestamp)
260 1.5.4.2 tls DRM_INFO("Driver supports precise vblank timestamp query.\n");
261 1.5.4.2 tls else
262 1.5.4.2 tls DRM_INFO("No driver support for vblank timestamp query.\n");
263 1.5.4.2 tls
264 1.5.4.2 tls dev->vblank_disable_allowed = false;
265 1.5.4.2 tls
266 1.5.4.2 tls return 0;
267 1.5.4.2 tls
268 1.5.4.2 tls err:
269 1.5.4.2 tls drm_vblank_cleanup(dev);
270 1.5.4.2 tls return ret;
271 1.5.4.2 tls }
272 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_init);
273 1.5.4.2 tls
274 1.5.4.2 tls static void drm_irq_vgaarb_nokms(void *cookie, bool state)
275 1.5.4.2 tls {
276 1.5.4.2 tls struct drm_device *dev = cookie;
277 1.5.4.2 tls
278 1.5.4.2 tls if (dev->driver->vgaarb_irq) {
279 1.5.4.2 tls dev->driver->vgaarb_irq(dev, state);
280 1.5.4.2 tls return;
281 1.5.4.2 tls }
282 1.5.4.2 tls
283 1.5.4.2 tls if (!dev->irq_enabled)
284 1.5.4.2 tls return;
285 1.5.4.2 tls
286 1.5.4.2 tls if (state) {
287 1.5.4.2 tls if (dev->driver->irq_uninstall)
288 1.5.4.2 tls dev->driver->irq_uninstall(dev);
289 1.5.4.2 tls } else {
290 1.5.4.2 tls if (dev->driver->irq_preinstall)
291 1.5.4.2 tls dev->driver->irq_preinstall(dev);
292 1.5.4.2 tls if (dev->driver->irq_postinstall)
293 1.5.4.2 tls dev->driver->irq_postinstall(dev);
294 1.5.4.2 tls }
295 1.5.4.2 tls }
296 1.5.4.2 tls
297 1.5.4.2 tls /**
298 1.5.4.2 tls * Install IRQ handler.
299 1.5.4.2 tls *
300 1.5.4.2 tls * \param dev DRM device.
301 1.5.4.2 tls *
302 1.5.4.2 tls * Initializes the IRQ related data. Installs the handler, calling the driver
303 1.5.4.2 tls * \c irq_preinstall() and \c irq_postinstall() functions
304 1.5.4.2 tls * before and after the installation.
305 1.5.4.2 tls */
306 1.5.4.2 tls int drm_irq_install(struct drm_device *dev)
307 1.5.4.2 tls {
308 1.5.4.2 tls int ret;
309 1.5.4.2 tls unsigned long sh_flags = 0;
310 1.5.4.2 tls const char *irqname;
311 1.5.4.2 tls
312 1.5.4.2 tls if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
313 1.5.4.2 tls return -EINVAL;
314 1.5.4.2 tls
315 1.5.4.2 tls if (drm_dev_to_irq(dev) == 0)
316 1.5.4.2 tls return -EINVAL;
317 1.5.4.2 tls
318 1.5.4.2 tls mutex_lock(&dev->struct_mutex);
319 1.5.4.2 tls
320 1.5.4.2 tls /* Driver must have been initialized */
321 1.5.4.2 tls if (!dev->dev_private) {
322 1.5.4.2 tls mutex_unlock(&dev->struct_mutex);
323 1.5.4.2 tls return -EINVAL;
324 1.5.4.2 tls }
325 1.5.4.2 tls
326 1.5.4.2 tls if (dev->irq_enabled) {
327 1.5.4.2 tls mutex_unlock(&dev->struct_mutex);
328 1.5.4.2 tls return -EBUSY;
329 1.5.4.2 tls }
330 1.5.4.2 tls dev->irq_enabled = true;
331 1.5.4.2 tls mutex_unlock(&dev->struct_mutex);
332 1.5.4.2 tls
333 1.5.4.2 tls DRM_DEBUG("irq=%d\n", drm_dev_to_irq(dev));
334 1.5.4.2 tls
335 1.5.4.2 tls /* Before installing handler */
336 1.5.4.2 tls if (dev->driver->irq_preinstall)
337 1.5.4.2 tls dev->driver->irq_preinstall(dev);
338 1.5.4.2 tls
339 1.5.4.2 tls /* Install handler */
340 1.5.4.2 tls if (drm_core_check_feature(dev, DRIVER_IRQ_SHARED))
341 1.5.4.2 tls sh_flags = IRQF_SHARED;
342 1.5.4.2 tls
343 1.5.4.2 tls if (dev->devname)
344 1.5.4.2 tls irqname = dev->devname;
345 1.5.4.2 tls else
346 1.5.4.2 tls irqname = dev->driver->name;
347 1.5.4.2 tls
348 1.5.4.2 tls #ifdef __NetBSD__
349 1.5.4.2 tls ret = (*dev->driver->bus->irq_install)(dev, dev->driver->irq_handler,
350 1.5.4.2 tls sh_flags, irqname, dev, &dev->irq_cookie);
351 1.5.4.2 tls #else
352 1.5.4.2 tls ret = request_irq(drm_dev_to_irq(dev), dev->driver->irq_handler,
353 1.5.4.2 tls sh_flags, irqname, dev);
354 1.5.4.2 tls #endif
355 1.5.4.2 tls
356 1.5.4.2 tls if (ret < 0) {
357 1.5.4.2 tls mutex_lock(&dev->struct_mutex);
358 1.5.4.2 tls dev->irq_enabled = false;
359 1.5.4.2 tls mutex_unlock(&dev->struct_mutex);
360 1.5.4.2 tls return ret;
361 1.5.4.2 tls }
362 1.5.4.2 tls
363 1.5.4.2 tls if (!drm_core_check_feature(dev, DRIVER_MODESET))
364 1.5.4.2 tls vga_client_register(dev->pdev, (void *)dev, drm_irq_vgaarb_nokms, NULL);
365 1.5.4.2 tls
366 1.5.4.2 tls /* After installing handler */
367 1.5.4.2 tls if (dev->driver->irq_postinstall)
368 1.5.4.2 tls ret = dev->driver->irq_postinstall(dev);
369 1.5.4.2 tls
370 1.5.4.2 tls if (ret < 0) {
371 1.5.4.2 tls mutex_lock(&dev->struct_mutex);
372 1.5.4.2 tls dev->irq_enabled = false;
373 1.5.4.2 tls mutex_unlock(&dev->struct_mutex);
374 1.5.4.2 tls if (!drm_core_check_feature(dev, DRIVER_MODESET))
375 1.5.4.2 tls vga_client_register(dev->pdev, NULL, NULL, NULL);
376 1.5.4.2 tls #ifdef __NetBSD__
377 1.5.4.2 tls (*dev->driver->bus->irq_uninstall)(dev, dev->irq_cookie);
378 1.5.4.2 tls #else
379 1.5.4.2 tls free_irq(drm_dev_to_irq(dev), dev);
380 1.5.4.2 tls #endif
381 1.5.4.2 tls }
382 1.5.4.2 tls
383 1.5.4.2 tls return ret;
384 1.5.4.2 tls }
385 1.5.4.2 tls EXPORT_SYMBOL(drm_irq_install);
386 1.5.4.2 tls
387 1.5.4.2 tls /**
388 1.5.4.2 tls * Uninstall the IRQ handler.
389 1.5.4.2 tls *
390 1.5.4.2 tls * \param dev DRM device.
391 1.5.4.2 tls *
392 1.5.4.2 tls * Calls the driver's \c irq_uninstall() function, and stops the irq.
393 1.5.4.2 tls */
394 1.5.4.2 tls int drm_irq_uninstall(struct drm_device *dev)
395 1.5.4.2 tls {
396 1.5.4.2 tls unsigned long irqflags;
397 1.5.4.2 tls bool irq_enabled;
398 1.5.4.2 tls int i;
399 1.5.4.2 tls
400 1.5.4.2 tls if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
401 1.5.4.2 tls return -EINVAL;
402 1.5.4.2 tls
403 1.5.4.2 tls mutex_lock(&dev->struct_mutex);
404 1.5.4.2 tls irq_enabled = dev->irq_enabled;
405 1.5.4.2 tls dev->irq_enabled = false;
406 1.5.4.2 tls mutex_unlock(&dev->struct_mutex);
407 1.5.4.2 tls
408 1.5.4.2 tls /*
409 1.5.4.2 tls * Wake up any waiters so they don't hang.
410 1.5.4.2 tls */
411 1.5.4.2 tls if (dev->num_crtcs) {
412 1.5.4.2 tls spin_lock_irqsave(&dev->vbl_lock, irqflags);
413 1.5.4.2 tls for (i = 0; i < dev->num_crtcs; i++) {
414 1.5.4.2 tls #ifdef __NetBSD__
415 1.5.4.2 tls DRM_SPIN_WAKEUP_ONE(&dev->vblank[i].queue,
416 1.5.4.2 tls &dev->vbl_lock);
417 1.5.4.2 tls #else
418 1.5.4.2 tls wake_up(&dev->vblank[i].queue);
419 1.5.4.2 tls #endif
420 1.5.4.2 tls dev->vblank[i].enabled = false;
421 1.5.4.2 tls dev->vblank[i].last =
422 1.5.4.2 tls dev->driver->get_vblank_counter(dev, i);
423 1.5.4.2 tls }
424 1.5.4.2 tls spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
425 1.5.4.2 tls }
426 1.5.4.2 tls
427 1.5.4.2 tls if (!irq_enabled)
428 1.5.4.2 tls return -EINVAL;
429 1.5.4.2 tls
430 1.5.4.2 tls DRM_DEBUG("irq=%d\n", drm_dev_to_irq(dev));
431 1.5.4.2 tls
432 1.5.4.2 tls if (!drm_core_check_feature(dev, DRIVER_MODESET))
433 1.5.4.2 tls vga_client_register(dev->pdev, NULL, NULL, NULL);
434 1.5.4.2 tls
435 1.5.4.2 tls if (dev->driver->irq_uninstall)
436 1.5.4.2 tls dev->driver->irq_uninstall(dev);
437 1.5.4.2 tls
438 1.5.4.2 tls #ifdef __NetBSD__
439 1.5.4.2 tls (*dev->driver->bus->irq_uninstall)(dev, dev->irq_cookie);
440 1.5.4.2 tls #else
441 1.5.4.2 tls free_irq(drm_dev_to_irq(dev), dev);
442 1.5.4.2 tls #endif
443 1.5.4.2 tls
444 1.5.4.2 tls return 0;
445 1.5.4.2 tls }
446 1.5.4.2 tls EXPORT_SYMBOL(drm_irq_uninstall);
447 1.5.4.2 tls
448 1.5.4.2 tls /**
449 1.5.4.2 tls * IRQ control ioctl.
450 1.5.4.2 tls *
451 1.5.4.2 tls * \param inode device inode.
452 1.5.4.2 tls * \param file_priv DRM file private.
453 1.5.4.2 tls * \param cmd command.
454 1.5.4.2 tls * \param arg user argument, pointing to a drm_control structure.
455 1.5.4.2 tls * \return zero on success or a negative number on failure.
456 1.5.4.2 tls *
457 1.5.4.2 tls * Calls irq_install() or irq_uninstall() according to \p arg.
458 1.5.4.2 tls */
459 1.5.4.2 tls int drm_control(struct drm_device *dev, void *data,
460 1.5.4.2 tls struct drm_file *file_priv)
461 1.5.4.2 tls {
462 1.5.4.2 tls struct drm_control *ctl = data;
463 1.5.4.2 tls
464 1.5.4.2 tls /* if we haven't irq we fallback for compatibility reasons -
465 1.5.4.2 tls * this used to be a separate function in drm_dma.h
466 1.5.4.2 tls */
467 1.5.4.2 tls
468 1.5.4.2 tls
469 1.5.4.2 tls switch (ctl->func) {
470 1.5.4.2 tls case DRM_INST_HANDLER:
471 1.5.4.2 tls if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
472 1.5.4.2 tls return 0;
473 1.5.4.2 tls if (drm_core_check_feature(dev, DRIVER_MODESET))
474 1.5.4.2 tls return 0;
475 1.5.4.2 tls if (dev->if_version < DRM_IF_VERSION(1, 2) &&
476 1.5.4.2 tls ctl->irq != drm_dev_to_irq(dev))
477 1.5.4.2 tls return -EINVAL;
478 1.5.4.2 tls return drm_irq_install(dev);
479 1.5.4.2 tls case DRM_UNINST_HANDLER:
480 1.5.4.2 tls if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
481 1.5.4.2 tls return 0;
482 1.5.4.2 tls if (drm_core_check_feature(dev, DRIVER_MODESET))
483 1.5.4.2 tls return 0;
484 1.5.4.2 tls return drm_irq_uninstall(dev);
485 1.5.4.2 tls default:
486 1.5.4.2 tls return -EINVAL;
487 1.5.4.2 tls }
488 1.5.4.2 tls }
489 1.5.4.2 tls
490 1.5.4.2 tls /**
491 1.5.4.2 tls * drm_calc_timestamping_constants - Calculate vblank timestamp constants
492 1.5.4.2 tls *
493 1.5.4.2 tls * @crtc drm_crtc whose timestamp constants should be updated.
494 1.5.4.2 tls * @mode display mode containing the scanout timings
495 1.5.4.2 tls *
496 1.5.4.2 tls * Calculate and store various constants which are later
497 1.5.4.2 tls * needed by vblank and swap-completion timestamping, e.g,
498 1.5.4.2 tls * by drm_calc_vbltimestamp_from_scanoutpos(). They are
499 1.5.4.2 tls * derived from crtc's true scanout timing, so they take
500 1.5.4.2 tls * things like panel scaling or other adjustments into account.
501 1.5.4.2 tls */
502 1.5.4.2 tls void drm_calc_timestamping_constants(struct drm_crtc *crtc,
503 1.5.4.2 tls const struct drm_display_mode *mode)
504 1.5.4.2 tls {
505 1.5.4.2 tls int linedur_ns = 0, pixeldur_ns = 0, framedur_ns = 0;
506 1.5.4.2 tls int dotclock = mode->crtc_clock;
507 1.5.4.2 tls
508 1.5.4.2 tls /* Valid dotclock? */
509 1.5.4.2 tls if (dotclock > 0) {
510 1.5.4.2 tls int frame_size = mode->crtc_htotal * mode->crtc_vtotal;
511 1.5.4.2 tls
512 1.5.4.2 tls /*
513 1.5.4.2 tls * Convert scanline length in pixels and video
514 1.5.4.2 tls * dot clock to line duration, frame duration
515 1.5.4.2 tls * and pixel duration in nanoseconds:
516 1.5.4.2 tls */
517 1.5.4.2 tls pixeldur_ns = 1000000 / dotclock;
518 1.5.4.2 tls linedur_ns = div_u64((u64) mode->crtc_htotal * 1000000, dotclock);
519 1.5.4.2 tls framedur_ns = div_u64((u64) frame_size * 1000000, dotclock);
520 1.5.4.2 tls
521 1.5.4.2 tls /*
522 1.5.4.2 tls * Fields of interlaced scanout modes are only half a frame duration.
523 1.5.4.2 tls */
524 1.5.4.2 tls if (mode->flags & DRM_MODE_FLAG_INTERLACE)
525 1.5.4.2 tls framedur_ns /= 2;
526 1.5.4.2 tls } else
527 1.5.4.2 tls DRM_ERROR("crtc %d: Can't calculate constants, dotclock = 0!\n",
528 1.5.4.2 tls crtc->base.id);
529 1.5.4.2 tls
530 1.5.4.2 tls crtc->pixeldur_ns = pixeldur_ns;
531 1.5.4.2 tls crtc->linedur_ns = linedur_ns;
532 1.5.4.2 tls crtc->framedur_ns = framedur_ns;
533 1.5.4.2 tls
534 1.5.4.2 tls DRM_DEBUG("crtc %d: hwmode: htotal %d, vtotal %d, vdisplay %d\n",
535 1.5.4.2 tls crtc->base.id, mode->crtc_htotal,
536 1.5.4.2 tls mode->crtc_vtotal, mode->crtc_vdisplay);
537 1.5.4.2 tls DRM_DEBUG("crtc %d: clock %d kHz framedur %d linedur %d, pixeldur %d\n",
538 1.5.4.2 tls crtc->base.id, dotclock, framedur_ns,
539 1.5.4.2 tls linedur_ns, pixeldur_ns);
540 1.5.4.2 tls }
541 1.5.4.2 tls EXPORT_SYMBOL(drm_calc_timestamping_constants);
542 1.5.4.2 tls
543 1.5.4.2 tls /**
544 1.5.4.2 tls * drm_calc_vbltimestamp_from_scanoutpos - helper routine for kms
545 1.5.4.2 tls * drivers. Implements calculation of exact vblank timestamps from
546 1.5.4.2 tls * given drm_display_mode timings and current video scanout position
547 1.5.4.2 tls * of a crtc. This can be called from within get_vblank_timestamp()
548 1.5.4.2 tls * implementation of a kms driver to implement the actual timestamping.
549 1.5.4.2 tls *
550 1.5.4.2 tls * Should return timestamps conforming to the OML_sync_control OpenML
551 1.5.4.2 tls * extension specification. The timestamp corresponds to the end of
552 1.5.4.2 tls * the vblank interval, aka start of scanout of topmost-leftmost display
553 1.5.4.2 tls * pixel in the following video frame.
554 1.5.4.2 tls *
555 1.5.4.2 tls * Requires support for optional dev->driver->get_scanout_position()
556 1.5.4.2 tls * in kms driver, plus a bit of setup code to provide a drm_display_mode
557 1.5.4.2 tls * that corresponds to the true scanout timing.
558 1.5.4.2 tls *
559 1.5.4.2 tls * The current implementation only handles standard video modes. It
560 1.5.4.2 tls * returns as no operation if a doublescan or interlaced video mode is
561 1.5.4.2 tls * active. Higher level code is expected to handle this.
562 1.5.4.2 tls *
563 1.5.4.2 tls * @dev: DRM device.
564 1.5.4.2 tls * @crtc: Which crtc's vblank timestamp to retrieve.
565 1.5.4.2 tls * @max_error: Desired maximum allowable error in timestamps (nanosecs).
566 1.5.4.2 tls * On return contains true maximum error of timestamp.
567 1.5.4.2 tls * @vblank_time: Pointer to struct timeval which should receive the timestamp.
568 1.5.4.2 tls * @flags: Flags to pass to driver:
569 1.5.4.2 tls * 0 = Default.
570 1.5.4.2 tls * DRM_CALLED_FROM_VBLIRQ = If function is called from vbl irq handler.
571 1.5.4.2 tls * @refcrtc: drm_crtc* of crtc which defines scanout timing.
572 1.5.4.2 tls * @mode: mode which defines the scanout timings
573 1.5.4.2 tls *
574 1.5.4.2 tls * Returns negative value on error, failure or if not supported in current
575 1.5.4.2 tls * video mode:
576 1.5.4.2 tls *
577 1.5.4.2 tls * -EINVAL - Invalid crtc.
578 1.5.4.2 tls * -EAGAIN - Temporary unavailable, e.g., called before initial modeset.
579 1.5.4.2 tls * -ENOTSUPP - Function not supported in current display mode.
580 1.5.4.2 tls * -EIO - Failed, e.g., due to failed scanout position query.
581 1.5.4.2 tls *
582 1.5.4.2 tls * Returns or'ed positive status flags on success:
583 1.5.4.2 tls *
584 1.5.4.2 tls * DRM_VBLANKTIME_SCANOUTPOS_METHOD - Signal this method used for timestamping.
585 1.5.4.2 tls * DRM_VBLANKTIME_INVBL - Timestamp taken while scanout was in vblank interval.
586 1.5.4.2 tls *
587 1.5.4.2 tls */
588 1.5.4.2 tls int drm_calc_vbltimestamp_from_scanoutpos(struct drm_device *dev, int crtc,
589 1.5.4.2 tls int *max_error,
590 1.5.4.2 tls struct timeval *vblank_time,
591 1.5.4.2 tls unsigned flags,
592 1.5.4.2 tls const struct drm_crtc *refcrtc,
593 1.5.4.2 tls const struct drm_display_mode *mode)
594 1.5.4.2 tls {
595 1.5.4.2 tls ktime_t stime, etime, mono_time_offset;
596 1.5.4.2 tls struct timeval tv_etime;
597 1.5.4.2 tls int vbl_status;
598 1.5.4.2 tls int vpos, hpos, i;
599 1.5.4.2 tls int framedur_ns, linedur_ns, pixeldur_ns, delta_ns, duration_ns;
600 1.5.4.2 tls bool invbl;
601 1.5.4.2 tls
602 1.5.4.2 tls if (crtc < 0 || crtc >= dev->num_crtcs) {
603 1.5.4.2 tls DRM_ERROR("Invalid crtc %d\n", crtc);
604 1.5.4.2 tls return -EINVAL;
605 1.5.4.2 tls }
606 1.5.4.2 tls
607 1.5.4.2 tls /* Scanout position query not supported? Should not happen. */
608 1.5.4.2 tls if (!dev->driver->get_scanout_position) {
609 1.5.4.2 tls DRM_ERROR("Called from driver w/o get_scanout_position()!?\n");
610 1.5.4.2 tls return -EIO;
611 1.5.4.2 tls }
612 1.5.4.2 tls
613 1.5.4.2 tls /* Durations of frames, lines, pixels in nanoseconds. */
614 1.5.4.2 tls framedur_ns = refcrtc->framedur_ns;
615 1.5.4.2 tls linedur_ns = refcrtc->linedur_ns;
616 1.5.4.2 tls pixeldur_ns = refcrtc->pixeldur_ns;
617 1.5.4.2 tls
618 1.5.4.2 tls /* If mode timing undefined, just return as no-op:
619 1.5.4.2 tls * Happens during initial modesetting of a crtc.
620 1.5.4.2 tls */
621 1.5.4.2 tls if (framedur_ns == 0) {
622 1.5.4.2 tls DRM_DEBUG("crtc %d: Noop due to uninitialized mode.\n", crtc);
623 1.5.4.2 tls return -EAGAIN;
624 1.5.4.2 tls }
625 1.5.4.2 tls
626 1.5.4.2 tls /* Get current scanout position with system timestamp.
627 1.5.4.2 tls * Repeat query up to DRM_TIMESTAMP_MAXRETRIES times
628 1.5.4.2 tls * if single query takes longer than max_error nanoseconds.
629 1.5.4.2 tls *
630 1.5.4.2 tls * This guarantees a tight bound on maximum error if
631 1.5.4.2 tls * code gets preempted or delayed for some reason.
632 1.5.4.2 tls */
633 1.5.4.2 tls for (i = 0; i < DRM_TIMESTAMP_MAXRETRIES; i++) {
634 1.5.4.2 tls /*
635 1.5.4.2 tls * Get vertical and horizontal scanout position vpos, hpos,
636 1.5.4.2 tls * and bounding timestamps stime, etime, pre/post query.
637 1.5.4.2 tls */
638 1.5.4.2 tls vbl_status = dev->driver->get_scanout_position(dev, crtc, flags, &vpos,
639 1.5.4.2 tls &hpos, &stime, &etime);
640 1.5.4.2 tls
641 1.5.4.2 tls /*
642 1.5.4.2 tls * Get correction for CLOCK_MONOTONIC -> CLOCK_REALTIME if
643 1.5.4.2 tls * CLOCK_REALTIME is requested.
644 1.5.4.2 tls */
645 1.5.4.2 tls if (!drm_timestamp_monotonic)
646 1.5.4.2 tls mono_time_offset = ktime_get_monotonic_offset();
647 1.5.4.2 tls
648 1.5.4.2 tls /* Return as no-op if scanout query unsupported or failed. */
649 1.5.4.2 tls if (!(vbl_status & DRM_SCANOUTPOS_VALID)) {
650 1.5.4.2 tls DRM_DEBUG("crtc %d : scanoutpos query failed [%d].\n",
651 1.5.4.2 tls crtc, vbl_status);
652 1.5.4.2 tls return -EIO;
653 1.5.4.2 tls }
654 1.5.4.2 tls
655 1.5.4.2 tls /* Compute uncertainty in timestamp of scanout position query. */
656 1.5.4.2 tls duration_ns = ktime_to_ns(etime) - ktime_to_ns(stime);
657 1.5.4.2 tls
658 1.5.4.2 tls /* Accept result with < max_error nsecs timing uncertainty. */
659 1.5.4.2 tls if (duration_ns <= *max_error)
660 1.5.4.2 tls break;
661 1.5.4.2 tls }
662 1.5.4.2 tls
663 1.5.4.2 tls /* Noisy system timing? */
664 1.5.4.2 tls if (i == DRM_TIMESTAMP_MAXRETRIES) {
665 1.5.4.2 tls DRM_DEBUG("crtc %d: Noisy timestamp %d us > %d us [%d reps].\n",
666 1.5.4.2 tls crtc, duration_ns/1000, *max_error/1000, i);
667 1.5.4.2 tls }
668 1.5.4.2 tls
669 1.5.4.2 tls /* Return upper bound of timestamp precision error. */
670 1.5.4.2 tls *max_error = duration_ns;
671 1.5.4.2 tls
672 1.5.4.2 tls /* Check if in vblank area:
673 1.5.4.2 tls * vpos is >=0 in video scanout area, but negative
674 1.5.4.2 tls * within vblank area, counting down the number of lines until
675 1.5.4.2 tls * start of scanout.
676 1.5.4.2 tls */
677 1.5.4.2 tls invbl = vbl_status & DRM_SCANOUTPOS_INVBL;
678 1.5.4.2 tls
679 1.5.4.2 tls /* Convert scanout position into elapsed time at raw_time query
680 1.5.4.2 tls * since start of scanout at first display scanline. delta_ns
681 1.5.4.2 tls * can be negative if start of scanout hasn't happened yet.
682 1.5.4.2 tls */
683 1.5.4.2 tls delta_ns = vpos * linedur_ns + hpos * pixeldur_ns;
684 1.5.4.2 tls
685 1.5.4.2 tls if (!drm_timestamp_monotonic)
686 1.5.4.2 tls etime = ktime_sub(etime, mono_time_offset);
687 1.5.4.2 tls
688 1.5.4.2 tls /* save this only for debugging purposes */
689 1.5.4.2 tls tv_etime = ktime_to_timeval(etime);
690 1.5.4.2 tls /* Subtract time delta from raw timestamp to get final
691 1.5.4.2 tls * vblank_time timestamp for end of vblank.
692 1.5.4.2 tls */
693 1.5.4.2 tls if (delta_ns < 0)
694 1.5.4.2 tls etime = ktime_add_ns(etime, -delta_ns);
695 1.5.4.2 tls else
696 1.5.4.2 tls etime = ktime_sub_ns(etime, delta_ns);
697 1.5.4.2 tls *vblank_time = ktime_to_timeval(etime);
698 1.5.4.2 tls
699 1.5.4.2 tls DRM_DEBUG("crtc %d : v %d p(%d,%d)@ %ld.%ld -> %ld.%ld [e %d us, %d rep]\n",
700 1.5.4.2 tls crtc, (int)vbl_status, hpos, vpos,
701 1.5.4.2 tls (long)tv_etime.tv_sec, (long)tv_etime.tv_usec,
702 1.5.4.2 tls (long)vblank_time->tv_sec, (long)vblank_time->tv_usec,
703 1.5.4.2 tls duration_ns/1000, i);
704 1.5.4.2 tls
705 1.5.4.2 tls vbl_status = DRM_VBLANKTIME_SCANOUTPOS_METHOD;
706 1.5.4.2 tls if (invbl)
707 1.5.4.2 tls vbl_status |= DRM_VBLANKTIME_INVBL;
708 1.5.4.2 tls
709 1.5.4.2 tls return vbl_status;
710 1.5.4.2 tls }
711 1.5.4.2 tls EXPORT_SYMBOL(drm_calc_vbltimestamp_from_scanoutpos);
712 1.5.4.2 tls
713 1.5.4.2 tls static struct timeval get_drm_timestamp(void)
714 1.5.4.2 tls {
715 1.5.4.2 tls ktime_t now;
716 1.5.4.2 tls
717 1.5.4.2 tls now = ktime_get();
718 1.5.4.2 tls if (!drm_timestamp_monotonic)
719 1.5.4.2 tls now = ktime_sub(now, ktime_get_monotonic_offset());
720 1.5.4.2 tls
721 1.5.4.2 tls return ktime_to_timeval(now);
722 1.5.4.2 tls }
723 1.5.4.2 tls
724 1.5.4.2 tls /**
725 1.5.4.2 tls * drm_get_last_vbltimestamp - retrieve raw timestamp for the most recent
726 1.5.4.2 tls * vblank interval.
727 1.5.4.2 tls *
728 1.5.4.2 tls * @dev: DRM device
729 1.5.4.2 tls * @crtc: which crtc's vblank timestamp to retrieve
730 1.5.4.2 tls * @tvblank: Pointer to target struct timeval which should receive the timestamp
731 1.5.4.2 tls * @flags: Flags to pass to driver:
732 1.5.4.2 tls * 0 = Default.
733 1.5.4.2 tls * DRM_CALLED_FROM_VBLIRQ = If function is called from vbl irq handler.
734 1.5.4.2 tls *
735 1.5.4.2 tls * Fetches the system timestamp corresponding to the time of the most recent
736 1.5.4.2 tls * vblank interval on specified crtc. May call into kms-driver to
737 1.5.4.2 tls * compute the timestamp with a high-precision GPU specific method.
738 1.5.4.2 tls *
739 1.5.4.2 tls * Returns zero if timestamp originates from uncorrected do_gettimeofday()
740 1.5.4.2 tls * call, i.e., it isn't very precisely locked to the true vblank.
741 1.5.4.2 tls *
742 1.5.4.2 tls * Returns non-zero if timestamp is considered to be very precise.
743 1.5.4.2 tls */
744 1.5.4.2 tls u32 drm_get_last_vbltimestamp(struct drm_device *dev, int crtc,
745 1.5.4.2 tls struct timeval *tvblank, unsigned flags)
746 1.5.4.2 tls {
747 1.5.4.2 tls int ret;
748 1.5.4.2 tls
749 1.5.4.2 tls /* Define requested maximum error on timestamps (nanoseconds). */
750 1.5.4.2 tls int max_error = (int) drm_timestamp_precision * 1000;
751 1.5.4.2 tls
752 1.5.4.2 tls /* Query driver if possible and precision timestamping enabled. */
753 1.5.4.2 tls if (dev->driver->get_vblank_timestamp && (max_error > 0)) {
754 1.5.4.2 tls ret = dev->driver->get_vblank_timestamp(dev, crtc, &max_error,
755 1.5.4.2 tls tvblank, flags);
756 1.5.4.2 tls if (ret > 0)
757 1.5.4.2 tls return (u32) ret;
758 1.5.4.2 tls }
759 1.5.4.2 tls
760 1.5.4.2 tls /* GPU high precision timestamp query unsupported or failed.
761 1.5.4.2 tls * Return current monotonic/gettimeofday timestamp as best estimate.
762 1.5.4.2 tls */
763 1.5.4.2 tls *tvblank = get_drm_timestamp();
764 1.5.4.2 tls
765 1.5.4.2 tls return 0;
766 1.5.4.2 tls }
767 1.5.4.2 tls EXPORT_SYMBOL(drm_get_last_vbltimestamp);
768 1.5.4.2 tls
769 1.5.4.2 tls /**
770 1.5.4.2 tls * drm_vblank_count - retrieve "cooked" vblank counter value
771 1.5.4.2 tls * @dev: DRM device
772 1.5.4.2 tls * @crtc: which counter to retrieve
773 1.5.4.2 tls *
774 1.5.4.2 tls * Fetches the "cooked" vblank count value that represents the number of
775 1.5.4.2 tls * vblank events since the system was booted, including lost events due to
776 1.5.4.2 tls * modesetting activity.
777 1.5.4.2 tls */
778 1.5.4.2 tls u32 drm_vblank_count(struct drm_device *dev, int crtc)
779 1.5.4.2 tls {
780 1.5.4.2 tls return atomic_read(&dev->vblank[crtc].count);
781 1.5.4.2 tls }
782 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_count);
783 1.5.4.2 tls
784 1.5.4.2 tls /**
785 1.5.4.2 tls * drm_vblank_count_and_time - retrieve "cooked" vblank counter value
786 1.5.4.2 tls * and the system timestamp corresponding to that vblank counter value.
787 1.5.4.2 tls *
788 1.5.4.2 tls * @dev: DRM device
789 1.5.4.2 tls * @crtc: which counter to retrieve
790 1.5.4.2 tls * @vblanktime: Pointer to struct timeval to receive the vblank timestamp.
791 1.5.4.2 tls *
792 1.5.4.2 tls * Fetches the "cooked" vblank count value that represents the number of
793 1.5.4.2 tls * vblank events since the system was booted, including lost events due to
794 1.5.4.2 tls * modesetting activity. Returns corresponding system timestamp of the time
795 1.5.4.2 tls * of the vblank interval that corresponds to the current value vblank counter
796 1.5.4.2 tls * value.
797 1.5.4.2 tls */
798 1.5.4.2 tls u32 drm_vblank_count_and_time(struct drm_device *dev, int crtc,
799 1.5.4.2 tls struct timeval *vblanktime)
800 1.5.4.2 tls {
801 1.5.4.2 tls u32 cur_vblank;
802 1.5.4.2 tls
803 1.5.4.2 tls /* Read timestamp from slot of _vblank_time ringbuffer
804 1.5.4.2 tls * that corresponds to current vblank count. Retry if
805 1.5.4.2 tls * count has incremented during readout. This works like
806 1.5.4.2 tls * a seqlock.
807 1.5.4.2 tls */
808 1.5.4.2 tls do {
809 1.5.4.2 tls cur_vblank = atomic_read(&dev->vblank[crtc].count);
810 1.5.4.2 tls *vblanktime = vblanktimestamp(dev, crtc, cur_vblank);
811 1.5.4.2 tls smp_rmb();
812 1.5.4.2 tls } while (cur_vblank != atomic_read(&dev->vblank[crtc].count));
813 1.5.4.2 tls
814 1.5.4.2 tls return cur_vblank;
815 1.5.4.2 tls }
816 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_count_and_time);
817 1.5.4.2 tls
818 1.5.4.2 tls static void send_vblank_event(struct drm_device *dev,
819 1.5.4.2 tls struct drm_pending_vblank_event *e,
820 1.5.4.2 tls unsigned long seq, struct timeval *now)
821 1.5.4.2 tls {
822 1.5.4.2 tls WARN_ON_SMP(!spin_is_locked(&dev->event_lock));
823 1.5.4.2 tls e->event.sequence = seq;
824 1.5.4.2 tls e->event.tv_sec = now->tv_sec;
825 1.5.4.2 tls e->event.tv_usec = now->tv_usec;
826 1.5.4.2 tls
827 1.5.4.2 tls list_add_tail(&e->base.link,
828 1.5.4.2 tls &e->base.file_priv->event_list);
829 1.5.4.2 tls #ifdef __NetBSD__
830 1.5.4.2 tls DRM_SPIN_WAKEUP_ONE(&e->base.file_priv->event_wait, &dev->event_lock);
831 1.5.4.2 tls selnotify(&e->base.file_priv->event_selq, (POLLIN | POLLRDNORM),
832 1.5.4.2 tls NOTE_SUBMIT);
833 1.5.4.2 tls #else
834 1.5.4.2 tls wake_up_interruptible(&e->base.file_priv->event_wait);
835 1.5.4.2 tls #endif
836 1.5.4.2 tls trace_drm_vblank_event_delivered(e->base.pid, e->pipe,
837 1.5.4.2 tls e->event.sequence);
838 1.5.4.2 tls }
839 1.5.4.2 tls
840 1.5.4.2 tls /**
841 1.5.4.2 tls * drm_send_vblank_event - helper to send vblank event after pageflip
842 1.5.4.2 tls * @dev: DRM device
843 1.5.4.2 tls * @crtc: CRTC in question
844 1.5.4.2 tls * @e: the event to send
845 1.5.4.2 tls *
846 1.5.4.2 tls * Updates sequence # and timestamp on event, and sends it to userspace.
847 1.5.4.2 tls * Caller must hold event lock.
848 1.5.4.2 tls */
849 1.5.4.2 tls void drm_send_vblank_event(struct drm_device *dev, int crtc,
850 1.5.4.2 tls struct drm_pending_vblank_event *e)
851 1.5.4.2 tls {
852 1.5.4.2 tls struct timeval now;
853 1.5.4.2 tls unsigned int seq;
854 1.5.4.2 tls if (crtc >= 0) {
855 1.5.4.2 tls seq = drm_vblank_count_and_time(dev, crtc, &now);
856 1.5.4.2 tls } else {
857 1.5.4.2 tls seq = 0;
858 1.5.4.2 tls
859 1.5.4.2 tls now = get_drm_timestamp();
860 1.5.4.2 tls }
861 1.5.4.2 tls e->pipe = crtc;
862 1.5.4.2 tls send_vblank_event(dev, e, seq, &now);
863 1.5.4.2 tls }
864 1.5.4.2 tls EXPORT_SYMBOL(drm_send_vblank_event);
865 1.5.4.2 tls
866 1.5.4.2 tls /**
867 1.5.4.2 tls * drm_update_vblank_count - update the master vblank counter
868 1.5.4.2 tls * @dev: DRM device
869 1.5.4.2 tls * @crtc: counter to update
870 1.5.4.2 tls *
871 1.5.4.2 tls * Call back into the driver to update the appropriate vblank counter
872 1.5.4.2 tls * (specified by @crtc). Deal with wraparound, if it occurred, and
873 1.5.4.2 tls * update the last read value so we can deal with wraparound on the next
874 1.5.4.2 tls * call if necessary.
875 1.5.4.2 tls *
876 1.5.4.2 tls * Only necessary when going from off->on, to account for frames we
877 1.5.4.2 tls * didn't get an interrupt for.
878 1.5.4.2 tls *
879 1.5.4.2 tls * Note: caller must hold dev->vbl_lock since this reads & writes
880 1.5.4.2 tls * device vblank fields.
881 1.5.4.2 tls */
882 1.5.4.2 tls static void drm_update_vblank_count(struct drm_device *dev, int crtc)
883 1.5.4.2 tls {
884 1.5.4.2 tls u32 cur_vblank, diff, tslot, rc;
885 1.5.4.2 tls struct timeval t_vblank;
886 1.5.4.2 tls
887 1.5.4.2 tls /*
888 1.5.4.2 tls * Interrupts were disabled prior to this call, so deal with counter
889 1.5.4.2 tls * wrap if needed.
890 1.5.4.2 tls * NOTE! It's possible we lost a full dev->max_vblank_count events
891 1.5.4.2 tls * here if the register is small or we had vblank interrupts off for
892 1.5.4.2 tls * a long time.
893 1.5.4.2 tls *
894 1.5.4.2 tls * We repeat the hardware vblank counter & timestamp query until
895 1.5.4.2 tls * we get consistent results. This to prevent races between gpu
896 1.5.4.2 tls * updating its hardware counter while we are retrieving the
897 1.5.4.2 tls * corresponding vblank timestamp.
898 1.5.4.2 tls */
899 1.5.4.2 tls do {
900 1.5.4.2 tls cur_vblank = dev->driver->get_vblank_counter(dev, crtc);
901 1.5.4.2 tls rc = drm_get_last_vbltimestamp(dev, crtc, &t_vblank, 0);
902 1.5.4.2 tls } while (cur_vblank != dev->driver->get_vblank_counter(dev, crtc));
903 1.5.4.2 tls
904 1.5.4.2 tls /* Deal with counter wrap */
905 1.5.4.2 tls diff = cur_vblank - dev->vblank[crtc].last;
906 1.5.4.2 tls if (cur_vblank < dev->vblank[crtc].last) {
907 1.5.4.2 tls diff += dev->max_vblank_count;
908 1.5.4.2 tls
909 1.5.4.2 tls DRM_DEBUG("last_vblank[%d]=0x%x, cur_vblank=0x%x => diff=0x%x\n",
910 1.5.4.2 tls crtc, dev->vblank[crtc].last, cur_vblank, diff);
911 1.5.4.2 tls }
912 1.5.4.2 tls
913 1.5.4.2 tls DRM_DEBUG("enabling vblank interrupts on crtc %d, missed %d\n",
914 1.5.4.2 tls crtc, diff);
915 1.5.4.2 tls
916 1.5.4.2 tls /* Reinitialize corresponding vblank timestamp if high-precision query
917 1.5.4.2 tls * available. Skip this step if query unsupported or failed. Will
918 1.5.4.2 tls * reinitialize delayed at next vblank interrupt in that case.
919 1.5.4.2 tls */
920 1.5.4.2 tls if (rc) {
921 1.5.4.2 tls tslot = atomic_read(&dev->vblank[crtc].count) + diff;
922 1.5.4.2 tls vblanktimestamp(dev, crtc, tslot) = t_vblank;
923 1.5.4.2 tls }
924 1.5.4.2 tls
925 1.5.4.2 tls smp_mb__before_atomic_inc();
926 1.5.4.2 tls atomic_add(diff, &dev->vblank[crtc].count);
927 1.5.4.2 tls smp_mb__after_atomic_inc();
928 1.5.4.2 tls }
929 1.5.4.2 tls
930 1.5.4.2 tls /**
931 1.5.4.2 tls * drm_vblank_get - get a reference count on vblank events
932 1.5.4.2 tls * @dev: DRM device
933 1.5.4.2 tls * @crtc: which CRTC to own
934 1.5.4.2 tls *
935 1.5.4.2 tls * Acquire a reference count on vblank events to avoid having them disabled
936 1.5.4.2 tls * while in use.
937 1.5.4.2 tls *
938 1.5.4.2 tls * RETURNS
939 1.5.4.2 tls * Zero on success, nonzero on failure.
940 1.5.4.2 tls */
941 1.5.4.2 tls int drm_vblank_get(struct drm_device *dev, int crtc)
942 1.5.4.2 tls {
943 1.5.4.2 tls unsigned long irqflags, irqflags2;
944 1.5.4.2 tls int ret = 0;
945 1.5.4.2 tls
946 1.5.4.2 tls spin_lock_irqsave(&dev->vbl_lock, irqflags);
947 1.5.4.2 tls /* Going from 0->1 means we have to enable interrupts again */
948 1.5.4.2 tls if (atomic_add_return(1, &dev->vblank[crtc].refcount) == 1) {
949 1.5.4.2 tls spin_lock_irqsave(&dev->vblank_time_lock, irqflags2);
950 1.5.4.2 tls if (!dev->vblank[crtc].enabled) {
951 1.5.4.2 tls /* Enable vblank irqs under vblank_time_lock protection.
952 1.5.4.2 tls * All vblank count & timestamp updates are held off
953 1.5.4.2 tls * until we are done reinitializing master counter and
954 1.5.4.2 tls * timestamps. Filtercode in drm_handle_vblank() will
955 1.5.4.2 tls * prevent double-accounting of same vblank interval.
956 1.5.4.2 tls */
957 1.5.4.2 tls ret = dev->driver->enable_vblank(dev, crtc);
958 1.5.4.2 tls DRM_DEBUG("enabling vblank on crtc %d, ret: %d\n",
959 1.5.4.2 tls crtc, ret);
960 1.5.4.2 tls if (ret)
961 1.5.4.2 tls atomic_dec(&dev->vblank[crtc].refcount);
962 1.5.4.2 tls else {
963 1.5.4.2 tls dev->vblank[crtc].enabled = true;
964 1.5.4.2 tls drm_update_vblank_count(dev, crtc);
965 1.5.4.2 tls }
966 1.5.4.2 tls }
967 1.5.4.2 tls spin_unlock_irqrestore(&dev->vblank_time_lock, irqflags2);
968 1.5.4.2 tls } else {
969 1.5.4.2 tls if (!dev->vblank[crtc].enabled) {
970 1.5.4.2 tls atomic_dec(&dev->vblank[crtc].refcount);
971 1.5.4.2 tls ret = -EINVAL;
972 1.5.4.2 tls }
973 1.5.4.2 tls }
974 1.5.4.2 tls spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
975 1.5.4.2 tls
976 1.5.4.2 tls return ret;
977 1.5.4.2 tls }
978 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_get);
979 1.5.4.2 tls
980 1.5.4.2 tls /**
981 1.5.4.2 tls * drm_vblank_put - give up ownership of vblank events
982 1.5.4.2 tls * @dev: DRM device
983 1.5.4.2 tls * @crtc: which counter to give up
984 1.5.4.2 tls *
985 1.5.4.2 tls * Release ownership of a given vblank counter, turning off interrupts
986 1.5.4.2 tls * if possible. Disable interrupts after drm_vblank_offdelay milliseconds.
987 1.5.4.2 tls */
988 1.5.4.2 tls void drm_vblank_put(struct drm_device *dev, int crtc)
989 1.5.4.2 tls {
990 1.5.4.2 tls BUG_ON(atomic_read(&dev->vblank[crtc].refcount) == 0);
991 1.5.4.2 tls
992 1.5.4.2 tls /* Last user schedules interrupt disable */
993 1.5.4.2 tls if (atomic_dec_and_test(&dev->vblank[crtc].refcount) &&
994 1.5.4.2 tls (drm_vblank_offdelay > 0))
995 1.5.4.2 tls mod_timer(&dev->vblank_disable_timer,
996 1.5.4.2 tls jiffies + ((drm_vblank_offdelay * HZ)/1000));
997 1.5.4.2 tls }
998 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_put);
999 1.5.4.2 tls
1000 1.5.4.2 tls /**
1001 1.5.4.2 tls * drm_vblank_off - disable vblank events on a CRTC
1002 1.5.4.2 tls * @dev: DRM device
1003 1.5.4.2 tls * @crtc: CRTC in question
1004 1.5.4.2 tls *
1005 1.5.4.2 tls * Caller must hold event lock.
1006 1.5.4.2 tls */
1007 1.5.4.2 tls void drm_vblank_off(struct drm_device *dev, int crtc)
1008 1.5.4.2 tls {
1009 1.5.4.2 tls struct drm_pending_vblank_event *e, *t;
1010 1.5.4.2 tls struct timeval now;
1011 1.5.4.2 tls unsigned long irqflags;
1012 1.5.4.2 tls unsigned int seq;
1013 1.5.4.2 tls
1014 1.5.4.2 tls spin_lock_irqsave(&dev->vbl_lock, irqflags);
1015 1.5.4.2 tls vblank_disable_and_save(dev, crtc);
1016 1.5.4.2 tls #ifdef __NetBSD__
1017 1.5.4.2 tls DRM_SPIN_WAKEUP_ONE(&dev->vblank[crtc].queue, &dev->vbl_lock);
1018 1.5.4.2 tls #else
1019 1.5.4.2 tls wake_up(&dev->vblank[crtc].queue);
1020 1.5.4.2 tls #endif
1021 1.5.4.2 tls
1022 1.5.4.2 tls /* Send any queued vblank events, lest the natives grow disquiet */
1023 1.5.4.2 tls seq = drm_vblank_count_and_time(dev, crtc, &now);
1024 1.5.4.2 tls
1025 1.5.4.2 tls spin_lock(&dev->event_lock);
1026 1.5.4.2 tls list_for_each_entry_safe(e, t, &dev->vblank_event_list, base.link) {
1027 1.5.4.2 tls if (e->pipe != crtc)
1028 1.5.4.2 tls continue;
1029 1.5.4.2 tls DRM_DEBUG("Sending premature vblank event on disable: \
1030 1.5.4.2 tls wanted %d, current %d\n",
1031 1.5.4.2 tls e->event.sequence, seq);
1032 1.5.4.2 tls list_del(&e->base.link);
1033 1.5.4.2 tls drm_vblank_put(dev, e->pipe);
1034 1.5.4.2 tls send_vblank_event(dev, e, seq, &now);
1035 1.5.4.2 tls }
1036 1.5.4.2 tls spin_unlock(&dev->event_lock);
1037 1.5.4.2 tls
1038 1.5.4.2 tls spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
1039 1.5.4.2 tls }
1040 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_off);
1041 1.5.4.2 tls
1042 1.5.4.2 tls /**
1043 1.5.4.2 tls * drm_vblank_pre_modeset - account for vblanks across mode sets
1044 1.5.4.2 tls * @dev: DRM device
1045 1.5.4.2 tls * @crtc: CRTC in question
1046 1.5.4.2 tls *
1047 1.5.4.2 tls * Account for vblank events across mode setting events, which will likely
1048 1.5.4.2 tls * reset the hardware frame counter.
1049 1.5.4.2 tls */
1050 1.5.4.2 tls void drm_vblank_pre_modeset(struct drm_device *dev, int crtc)
1051 1.5.4.2 tls {
1052 1.5.4.2 tls /* vblank is not initialized (IRQ not installed ?), or has been freed */
1053 1.5.4.2 tls if (!dev->num_crtcs)
1054 1.5.4.2 tls return;
1055 1.5.4.2 tls /*
1056 1.5.4.2 tls * To avoid all the problems that might happen if interrupts
1057 1.5.4.2 tls * were enabled/disabled around or between these calls, we just
1058 1.5.4.2 tls * have the kernel take a reference on the CRTC (just once though
1059 1.5.4.2 tls * to avoid corrupting the count if multiple, mismatch calls occur),
1060 1.5.4.2 tls * so that interrupts remain enabled in the interim.
1061 1.5.4.2 tls */
1062 1.5.4.2 tls if (!dev->vblank[crtc].inmodeset) {
1063 1.5.4.2 tls dev->vblank[crtc].inmodeset = 0x1;
1064 1.5.4.2 tls if (drm_vblank_get(dev, crtc) == 0)
1065 1.5.4.2 tls dev->vblank[crtc].inmodeset |= 0x2;
1066 1.5.4.2 tls }
1067 1.5.4.2 tls }
1068 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_pre_modeset);
1069 1.5.4.2 tls
1070 1.5.4.2 tls void drm_vblank_post_modeset(struct drm_device *dev, int crtc)
1071 1.5.4.2 tls {
1072 1.5.4.2 tls unsigned long irqflags;
1073 1.5.4.2 tls
1074 1.5.4.2 tls /* vblank is not initialized (IRQ not installed ?), or has been freed */
1075 1.5.4.2 tls if (!dev->num_crtcs)
1076 1.5.4.2 tls return;
1077 1.5.4.2 tls
1078 1.5.4.2 tls if (dev->vblank[crtc].inmodeset) {
1079 1.5.4.2 tls spin_lock_irqsave(&dev->vbl_lock, irqflags);
1080 1.5.4.2 tls dev->vblank_disable_allowed = true;
1081 1.5.4.2 tls spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
1082 1.5.4.2 tls
1083 1.5.4.2 tls if (dev->vblank[crtc].inmodeset & 0x2)
1084 1.5.4.2 tls drm_vblank_put(dev, crtc);
1085 1.5.4.2 tls
1086 1.5.4.2 tls dev->vblank[crtc].inmodeset = 0;
1087 1.5.4.2 tls }
1088 1.5.4.2 tls }
1089 1.5.4.2 tls EXPORT_SYMBOL(drm_vblank_post_modeset);
1090 1.5.4.2 tls
1091 1.5.4.2 tls /**
1092 1.5.4.2 tls * drm_modeset_ctl - handle vblank event counter changes across mode switch
1093 1.5.4.2 tls * @DRM_IOCTL_ARGS: standard ioctl arguments
1094 1.5.4.2 tls *
1095 1.5.4.2 tls * Applications should call the %_DRM_PRE_MODESET and %_DRM_POST_MODESET
1096 1.5.4.2 tls * ioctls around modesetting so that any lost vblank events are accounted for.
1097 1.5.4.2 tls *
1098 1.5.4.2 tls * Generally the counter will reset across mode sets. If interrupts are
1099 1.5.4.2 tls * enabled around this call, we don't have to do anything since the counter
1100 1.5.4.2 tls * will have already been incremented.
1101 1.5.4.2 tls */
1102 1.5.4.2 tls int drm_modeset_ctl(struct drm_device *dev, void *data,
1103 1.5.4.2 tls struct drm_file *file_priv)
1104 1.5.4.2 tls {
1105 1.5.4.2 tls struct drm_modeset_ctl *modeset = data;
1106 1.5.4.2 tls unsigned int crtc;
1107 1.5.4.2 tls
1108 1.5.4.2 tls /* If drm_vblank_init() hasn't been called yet, just no-op */
1109 1.5.4.2 tls if (!dev->num_crtcs)
1110 1.5.4.2 tls return 0;
1111 1.5.4.2 tls
1112 1.5.4.2 tls /* KMS drivers handle this internally */
1113 1.5.4.2 tls if (drm_core_check_feature(dev, DRIVER_MODESET))
1114 1.5.4.2 tls return 0;
1115 1.5.4.2 tls
1116 1.5.4.2 tls crtc = modeset->crtc;
1117 1.5.4.2 tls if (crtc >= dev->num_crtcs)
1118 1.5.4.2 tls return -EINVAL;
1119 1.5.4.2 tls
1120 1.5.4.2 tls switch (modeset->cmd) {
1121 1.5.4.2 tls case _DRM_PRE_MODESET:
1122 1.5.4.2 tls drm_vblank_pre_modeset(dev, crtc);
1123 1.5.4.2 tls break;
1124 1.5.4.2 tls case _DRM_POST_MODESET:
1125 1.5.4.2 tls drm_vblank_post_modeset(dev, crtc);
1126 1.5.4.2 tls break;
1127 1.5.4.2 tls default:
1128 1.5.4.2 tls return -EINVAL;
1129 1.5.4.2 tls }
1130 1.5.4.2 tls
1131 1.5.4.2 tls return 0;
1132 1.5.4.2 tls }
1133 1.5.4.2 tls
1134 1.5.4.2 tls static int drm_queue_vblank_event(struct drm_device *dev, int pipe,
1135 1.5.4.2 tls union drm_wait_vblank *vblwait,
1136 1.5.4.2 tls struct drm_file *file_priv)
1137 1.5.4.2 tls {
1138 1.5.4.2 tls struct drm_pending_vblank_event *e;
1139 1.5.4.2 tls struct timeval now;
1140 1.5.4.2 tls unsigned long flags;
1141 1.5.4.2 tls unsigned int seq;
1142 1.5.4.2 tls int ret;
1143 1.5.4.2 tls
1144 1.5.4.2 tls e = kzalloc(sizeof *e, GFP_KERNEL);
1145 1.5.4.2 tls if (e == NULL) {
1146 1.5.4.2 tls ret = -ENOMEM;
1147 1.5.4.2 tls goto err_put;
1148 1.5.4.2 tls }
1149 1.5.4.2 tls
1150 1.5.4.2 tls e->pipe = pipe;
1151 1.5.4.2 tls #ifdef __NetBSD__
1152 1.5.4.2 tls e->base.pid = curproc->p_pid;
1153 1.5.4.2 tls #else
1154 1.5.4.2 tls e->base.pid = current->pid;
1155 1.5.4.2 tls #endif
1156 1.5.4.2 tls e->event.base.type = DRM_EVENT_VBLANK;
1157 1.5.4.2 tls e->event.base.length = sizeof e->event;
1158 1.5.4.2 tls e->event.user_data = vblwait->request.signal;
1159 1.5.4.2 tls e->base.event = &e->event.base;
1160 1.5.4.2 tls e->base.file_priv = file_priv;
1161 1.5.4.2 tls e->base.destroy = (void (*) (struct drm_pending_event *)) kfree;
1162 1.5.4.2 tls
1163 1.5.4.2 tls spin_lock_irqsave(&dev->event_lock, flags);
1164 1.5.4.2 tls
1165 1.5.4.2 tls if (file_priv->event_space < sizeof e->event) {
1166 1.5.4.2 tls ret = -EBUSY;
1167 1.5.4.2 tls goto err_unlock;
1168 1.5.4.2 tls }
1169 1.5.4.2 tls
1170 1.5.4.2 tls file_priv->event_space -= sizeof e->event;
1171 1.5.4.2 tls seq = drm_vblank_count_and_time(dev, pipe, &now);
1172 1.5.4.2 tls
1173 1.5.4.2 tls if ((vblwait->request.type & _DRM_VBLANK_NEXTONMISS) &&
1174 1.5.4.2 tls (seq - vblwait->request.sequence) <= (1 << 23)) {
1175 1.5.4.2 tls vblwait->request.sequence = seq + 1;
1176 1.5.4.2 tls vblwait->reply.sequence = vblwait->request.sequence;
1177 1.5.4.2 tls }
1178 1.5.4.2 tls
1179 1.5.4.2 tls DRM_DEBUG("event on vblank count %d, current %d, crtc %d\n",
1180 1.5.4.2 tls vblwait->request.sequence, seq, pipe);
1181 1.5.4.2 tls
1182 1.5.4.2 tls #ifdef __NetBSD__
1183 1.5.4.2 tls trace_drm_vblank_event_queued(curproc->p_pid, pipe,
1184 1.5.4.2 tls vblwait->request.sequence);
1185 1.5.4.2 tls #else
1186 1.5.4.2 tls trace_drm_vblank_event_queued(current->pid, pipe,
1187 1.5.4.2 tls vblwait->request.sequence);
1188 1.5.4.2 tls #endif
1189 1.5.4.2 tls
1190 1.5.4.2 tls e->event.sequence = vblwait->request.sequence;
1191 1.5.4.2 tls if ((seq - vblwait->request.sequence) <= (1 << 23)) {
1192 1.5.4.2 tls drm_vblank_put(dev, pipe);
1193 1.5.4.2 tls send_vblank_event(dev, e, seq, &now);
1194 1.5.4.2 tls vblwait->reply.sequence = seq;
1195 1.5.4.2 tls } else {
1196 1.5.4.2 tls /* drm_handle_vblank_events will call drm_vblank_put */
1197 1.5.4.2 tls list_add_tail(&e->base.link, &dev->vblank_event_list);
1198 1.5.4.2 tls vblwait->reply.sequence = vblwait->request.sequence;
1199 1.5.4.2 tls }
1200 1.5.4.2 tls
1201 1.5.4.2 tls spin_unlock_irqrestore(&dev->event_lock, flags);
1202 1.5.4.2 tls
1203 1.5.4.2 tls return 0;
1204 1.5.4.2 tls
1205 1.5.4.2 tls err_unlock:
1206 1.5.4.2 tls spin_unlock_irqrestore(&dev->event_lock, flags);
1207 1.5.4.2 tls kfree(e);
1208 1.5.4.2 tls err_put:
1209 1.5.4.2 tls drm_vblank_put(dev, pipe);
1210 1.5.4.2 tls return ret;
1211 1.5.4.2 tls }
1212 1.5.4.2 tls
1213 1.5.4.2 tls /**
1214 1.5.4.2 tls * Wait for VBLANK.
1215 1.5.4.2 tls *
1216 1.5.4.2 tls * \param inode device inode.
1217 1.5.4.2 tls * \param file_priv DRM file private.
1218 1.5.4.2 tls * \param cmd command.
1219 1.5.4.2 tls * \param data user argument, pointing to a drm_wait_vblank structure.
1220 1.5.4.2 tls * \return zero on success or a negative number on failure.
1221 1.5.4.2 tls *
1222 1.5.4.2 tls * This function enables the vblank interrupt on the pipe requested, then
1223 1.5.4.2 tls * sleeps waiting for the requested sequence number to occur, and drops
1224 1.5.4.2 tls * the vblank interrupt refcount afterwards. (vblank irq disable follows that
1225 1.5.4.2 tls * after a timeout with no further vblank waits scheduled).
1226 1.5.4.2 tls */
1227 1.5.4.2 tls int drm_wait_vblank(struct drm_device *dev, void *data,
1228 1.5.4.2 tls struct drm_file *file_priv)
1229 1.5.4.2 tls {
1230 1.5.4.2 tls union drm_wait_vblank *vblwait = data;
1231 1.5.4.2 tls int ret;
1232 1.5.4.2 tls unsigned int flags, seq, crtc, high_crtc;
1233 1.5.4.2 tls
1234 1.5.4.2 tls if (drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
1235 1.5.4.2 tls if ((!drm_dev_to_irq(dev)) || (!dev->irq_enabled))
1236 1.5.4.2 tls return -EINVAL;
1237 1.5.4.2 tls
1238 1.5.4.2 tls if (vblwait->request.type & _DRM_VBLANK_SIGNAL)
1239 1.5.4.2 tls return -EINVAL;
1240 1.5.4.2 tls
1241 1.5.4.2 tls if (vblwait->request.type &
1242 1.5.4.2 tls ~(_DRM_VBLANK_TYPES_MASK | _DRM_VBLANK_FLAGS_MASK |
1243 1.5.4.2 tls _DRM_VBLANK_HIGH_CRTC_MASK)) {
1244 1.5.4.2 tls DRM_ERROR("Unsupported type value 0x%x, supported mask 0x%x\n",
1245 1.5.4.2 tls vblwait->request.type,
1246 1.5.4.2 tls (_DRM_VBLANK_TYPES_MASK | _DRM_VBLANK_FLAGS_MASK |
1247 1.5.4.2 tls _DRM_VBLANK_HIGH_CRTC_MASK));
1248 1.5.4.2 tls return -EINVAL;
1249 1.5.4.2 tls }
1250 1.5.4.2 tls
1251 1.5.4.2 tls flags = vblwait->request.type & _DRM_VBLANK_FLAGS_MASK;
1252 1.5.4.2 tls high_crtc = (vblwait->request.type & _DRM_VBLANK_HIGH_CRTC_MASK);
1253 1.5.4.2 tls if (high_crtc)
1254 1.5.4.2 tls crtc = high_crtc >> _DRM_VBLANK_HIGH_CRTC_SHIFT;
1255 1.5.4.2 tls else
1256 1.5.4.2 tls crtc = flags & _DRM_VBLANK_SECONDARY ? 1 : 0;
1257 1.5.4.2 tls if (crtc >= dev->num_crtcs)
1258 1.5.4.2 tls return -EINVAL;
1259 1.5.4.2 tls
1260 1.5.4.2 tls ret = drm_vblank_get(dev, crtc);
1261 1.5.4.2 tls if (ret) {
1262 1.5.4.2 tls DRM_DEBUG("failed to acquire vblank counter, %d\n", ret);
1263 1.5.4.2 tls return ret;
1264 1.5.4.2 tls }
1265 1.5.4.2 tls seq = drm_vblank_count(dev, crtc);
1266 1.5.4.2 tls
1267 1.5.4.2 tls switch (vblwait->request.type & _DRM_VBLANK_TYPES_MASK) {
1268 1.5.4.2 tls case _DRM_VBLANK_RELATIVE:
1269 1.5.4.2 tls vblwait->request.sequence += seq;
1270 1.5.4.2 tls vblwait->request.type &= ~_DRM_VBLANK_RELATIVE;
1271 1.5.4.2 tls case _DRM_VBLANK_ABSOLUTE:
1272 1.5.4.2 tls break;
1273 1.5.4.2 tls default:
1274 1.5.4.2 tls ret = -EINVAL;
1275 1.5.4.2 tls goto done;
1276 1.5.4.2 tls }
1277 1.5.4.2 tls
1278 1.5.4.2 tls if (flags & _DRM_VBLANK_EVENT) {
1279 1.5.4.2 tls /* must hold on to the vblank ref until the event fires
1280 1.5.4.2 tls * drm_vblank_put will be called asynchronously
1281 1.5.4.2 tls */
1282 1.5.4.2 tls return drm_queue_vblank_event(dev, crtc, vblwait, file_priv);
1283 1.5.4.2 tls }
1284 1.5.4.2 tls
1285 1.5.4.2 tls if ((flags & _DRM_VBLANK_NEXTONMISS) &&
1286 1.5.4.2 tls (seq - vblwait->request.sequence) <= (1<<23)) {
1287 1.5.4.2 tls vblwait->request.sequence = seq + 1;
1288 1.5.4.2 tls }
1289 1.5.4.2 tls
1290 1.5.4.2 tls DRM_DEBUG("waiting on vblank count %d, crtc %d\n",
1291 1.5.4.2 tls vblwait->request.sequence, crtc);
1292 1.5.4.2 tls dev->vblank[crtc].last_wait = vblwait->request.sequence;
1293 1.5.4.2 tls #ifdef __NetBSD__
1294 1.5.4.2 tls {
1295 1.5.4.2 tls unsigned long irqflags;
1296 1.5.4.2 tls spin_lock_irqsave(&dev->vbl_lock, irqflags);
1297 1.5.4.2 tls DRM_SPIN_TIMED_WAIT_UNTIL(ret, &dev->vblank[crtc].queue,
1298 1.5.4.2 tls &dev->vbl_lock,
1299 1.5.4.2 tls (3 * HZ),
1300 1.5.4.2 tls (((drm_vblank_count(dev, crtc) -
1301 1.5.4.2 tls vblwait->request.sequence) <= (1 << 23)) ||
1302 1.5.4.2 tls !dev->irq_enabled));
1303 1.5.4.2 tls spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
1304 1.5.4.2 tls if (0 < ret)
1305 1.5.4.2 tls /*
1306 1.5.4.2 tls * ret is ticks remaining on success in this case, but
1307 1.5.4.2 tls * caller just wants 0 for success.
1308 1.5.4.2 tls */
1309 1.5.4.2 tls ret = 0;
1310 1.5.4.2 tls }
1311 1.5.4.2 tls #else
1312 1.5.4.2 tls DRM_WAIT_ON(ret, dev->vblank[crtc].queue, 3 * HZ,
1313 1.5.4.2 tls (((drm_vblank_count(dev, crtc) -
1314 1.5.4.2 tls vblwait->request.sequence) <= (1 << 23)) ||
1315 1.5.4.2 tls !dev->irq_enabled));
1316 1.5.4.2 tls #endif
1317 1.5.4.2 tls
1318 1.5.4.2 tls if (ret != -EINTR) {
1319 1.5.4.2 tls struct timeval now;
1320 1.5.4.2 tls
1321 1.5.4.2 tls vblwait->reply.sequence = drm_vblank_count_and_time(dev, crtc, &now);
1322 1.5.4.2 tls vblwait->reply.tval_sec = now.tv_sec;
1323 1.5.4.2 tls vblwait->reply.tval_usec = now.tv_usec;
1324 1.5.4.2 tls
1325 1.5.4.2 tls DRM_DEBUG("returning %d to client\n",
1326 1.5.4.2 tls vblwait->reply.sequence);
1327 1.5.4.2 tls } else {
1328 1.5.4.2 tls DRM_DEBUG("vblank wait interrupted by signal\n");
1329 1.5.4.2 tls }
1330 1.5.4.2 tls
1331 1.5.4.2 tls done:
1332 1.5.4.2 tls drm_vblank_put(dev, crtc);
1333 1.5.4.2 tls return ret;
1334 1.5.4.2 tls }
1335 1.5.4.2 tls
1336 1.5.4.2 tls static void drm_handle_vblank_events(struct drm_device *dev, int crtc)
1337 1.5.4.2 tls {
1338 1.5.4.2 tls struct drm_pending_vblank_event *e, *t;
1339 1.5.4.2 tls struct timeval now;
1340 1.5.4.2 tls unsigned long flags;
1341 1.5.4.2 tls unsigned int seq;
1342 1.5.4.2 tls
1343 1.5.4.2 tls seq = drm_vblank_count_and_time(dev, crtc, &now);
1344 1.5.4.2 tls
1345 1.5.4.2 tls spin_lock_irqsave(&dev->event_lock, flags);
1346 1.5.4.2 tls
1347 1.5.4.2 tls list_for_each_entry_safe(e, t, &dev->vblank_event_list, base.link) {
1348 1.5.4.2 tls if (e->pipe != crtc)
1349 1.5.4.2 tls continue;
1350 1.5.4.2 tls if ((seq - e->event.sequence) > (1<<23))
1351 1.5.4.2 tls continue;
1352 1.5.4.2 tls
1353 1.5.4.2 tls DRM_DEBUG("vblank event on %d, current %d\n",
1354 1.5.4.2 tls e->event.sequence, seq);
1355 1.5.4.2 tls
1356 1.5.4.2 tls list_del(&e->base.link);
1357 1.5.4.2 tls drm_vblank_put(dev, e->pipe);
1358 1.5.4.2 tls send_vblank_event(dev, e, seq, &now);
1359 1.5.4.2 tls }
1360 1.5.4.2 tls
1361 1.5.4.2 tls spin_unlock_irqrestore(&dev->event_lock, flags);
1362 1.5.4.2 tls
1363 1.5.4.2 tls trace_drm_vblank_event(crtc, seq);
1364 1.5.4.2 tls }
1365 1.5.4.2 tls
1366 1.5.4.2 tls /**
1367 1.5.4.2 tls * drm_handle_vblank - handle a vblank event
1368 1.5.4.2 tls * @dev: DRM device
1369 1.5.4.2 tls * @crtc: where this event occurred
1370 1.5.4.2 tls *
1371 1.5.4.2 tls * Drivers should call this routine in their vblank interrupt handlers to
1372 1.5.4.2 tls * update the vblank counter and send any signals that may be pending.
1373 1.5.4.2 tls */
1374 1.5.4.2 tls bool drm_handle_vblank(struct drm_device *dev, int crtc)
1375 1.5.4.2 tls {
1376 1.5.4.2 tls u32 vblcount;
1377 1.5.4.2 tls s64 diff_ns;
1378 1.5.4.2 tls struct timeval tvblank;
1379 1.5.4.2 tls unsigned long irqflags;
1380 1.5.4.2 tls #ifdef __NetBSD__ /* XXX vblank locking */
1381 1.5.4.2 tls unsigned long irqflags_vbl_lock;
1382 1.5.4.2 tls #endif
1383 1.5.4.2 tls
1384 1.5.4.2 tls if (!dev->num_crtcs)
1385 1.5.4.2 tls return false;
1386 1.5.4.2 tls
1387 1.5.4.2 tls #ifdef __NetBSD__ /* XXX vblank locking */
1388 1.5.4.2 tls spin_lock_irqsave(&dev->vbl_lock, irqflags_vbl_lock);
1389 1.5.4.2 tls #endif
1390 1.5.4.2 tls
1391 1.5.4.2 tls /* Need timestamp lock to prevent concurrent execution with
1392 1.5.4.2 tls * vblank enable/disable, as this would cause inconsistent
1393 1.5.4.2 tls * or corrupted timestamps and vblank counts.
1394 1.5.4.2 tls */
1395 1.5.4.2 tls spin_lock_irqsave(&dev->vblank_time_lock, irqflags);
1396 1.5.4.2 tls
1397 1.5.4.2 tls /* Vblank irq handling disabled. Nothing to do. */
1398 1.5.4.2 tls if (!dev->vblank[crtc].enabled) {
1399 1.5.4.2 tls spin_unlock_irqrestore(&dev->vblank_time_lock, irqflags);
1400 1.5.4.2 tls #ifdef __NetBSD__ /* XXX vblank locking */
1401 1.5.4.2 tls spin_unlock_irqrestore(&dev->vbl_lock, irqflags_vbl_lock);
1402 1.5.4.2 tls #endif
1403 1.5.4.2 tls return false;
1404 1.5.4.2 tls }
1405 1.5.4.2 tls
1406 1.5.4.2 tls /* Fetch corresponding timestamp for this vblank interval from
1407 1.5.4.2 tls * driver and store it in proper slot of timestamp ringbuffer.
1408 1.5.4.2 tls */
1409 1.5.4.2 tls
1410 1.5.4.2 tls /* Get current timestamp and count. */
1411 1.5.4.2 tls vblcount = atomic_read(&dev->vblank[crtc].count);
1412 1.5.4.2 tls drm_get_last_vbltimestamp(dev, crtc, &tvblank, DRM_CALLED_FROM_VBLIRQ);
1413 1.5.4.2 tls
1414 1.5.4.2 tls /* Compute time difference to timestamp of last vblank */
1415 1.5.4.2 tls diff_ns = timeval_to_ns(&tvblank) -
1416 1.5.4.2 tls timeval_to_ns(&vblanktimestamp(dev, crtc, vblcount));
1417 1.5.4.2 tls
1418 1.5.4.2 tls /* Update vblank timestamp and count if at least
1419 1.5.4.2 tls * DRM_REDUNDANT_VBLIRQ_THRESH_NS nanoseconds
1420 1.5.4.2 tls * difference between last stored timestamp and current
1421 1.5.4.2 tls * timestamp. A smaller difference means basically
1422 1.5.4.2 tls * identical timestamps. Happens if this vblank has
1423 1.5.4.2 tls * been already processed and this is a redundant call,
1424 1.5.4.2 tls * e.g., due to spurious vblank interrupts. We need to
1425 1.5.4.2 tls * ignore those for accounting.
1426 1.5.4.2 tls */
1427 1.5.4.2 tls if (abs64(diff_ns) > DRM_REDUNDANT_VBLIRQ_THRESH_NS) {
1428 1.5.4.2 tls /* Store new timestamp in ringbuffer. */
1429 1.5.4.2 tls vblanktimestamp(dev, crtc, vblcount + 1) = tvblank;
1430 1.5.4.2 tls
1431 1.5.4.2 tls /* Increment cooked vblank count. This also atomically commits
1432 1.5.4.2 tls * the timestamp computed above.
1433 1.5.4.2 tls */
1434 1.5.4.2 tls smp_mb__before_atomic_inc();
1435 1.5.4.2 tls atomic_inc(&dev->vblank[crtc].count);
1436 1.5.4.2 tls smp_mb__after_atomic_inc();
1437 1.5.4.2 tls } else {
1438 1.5.4.2 tls DRM_DEBUG("crtc %d: Redundant vblirq ignored. diff_ns = %d\n",
1439 1.5.4.2 tls crtc, (int) diff_ns);
1440 1.5.4.2 tls }
1441 1.5.4.2 tls
1442 1.5.4.2 tls #ifdef __NetBSD__
1443 1.5.4.2 tls DRM_SPIN_WAKEUP_ONE(&dev->vblank[crtc].queue, &dev->vbl_lock);
1444 1.5.4.2 tls #else
1445 1.5.4.2 tls wake_up(&dev->vblank[crtc].queue);
1446 1.5.4.2 tls #endif
1447 1.5.4.2 tls drm_handle_vblank_events(dev, crtc);
1448 1.5.4.2 tls
1449 1.5.4.2 tls spin_unlock_irqrestore(&dev->vblank_time_lock, irqflags);
1450 1.5.4.2 tls #ifdef __NetBSD__ /* XXX vblank locking */
1451 1.5.4.2 tls spin_unlock_irqrestore(&dev->vbl_lock, irqflags_vbl_lock);
1452 1.5.4.2 tls #endif
1453 1.5.4.2 tls return true;
1454 1.5.4.2 tls }
1455 1.5.4.2 tls EXPORT_SYMBOL(drm_handle_vblank);
1456