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1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  *	uvc_video.c  --  USB Video Class Gadget driver
4  *
5  *	Copyright (C) 2009-2010
6  *	    Laurent Pinchart (laurent.pinchart@ideasonboard.com)
7  */
8 
9 #include <linux/kernel.h>
10 #include <linux/device.h>
11 #include <linux/errno.h>
12 #include <linux/usb/ch9.h>
13 #include <linux/usb/gadget.h>
14 #include <linux/usb/video.h>
15 
16 #include <media/v4l2-dev.h>
17 
18 #include "uvc.h"
19 #include "uvc_queue.h"
20 #include "uvc_video.h"
21 
22 /* --------------------------------------------------------------------------
23  * Video codecs
24  */
25 
26 static int
uvc_video_encode_header(struct uvc_video * video,struct uvc_buffer * buf,u8 * data,int len)27 uvc_video_encode_header(struct uvc_video *video, struct uvc_buffer *buf,
28 		u8 *data, int len)
29 {
30 	data[0] = 2;
31 	data[1] = UVC_STREAM_EOH | video->fid;
32 
33 	if (buf->bytesused - video->queue.buf_used <= len - 2)
34 		data[1] |= UVC_STREAM_EOF;
35 
36 	return 2;
37 }
38 
39 static int
uvc_video_encode_data(struct uvc_video * video,struct uvc_buffer * buf,u8 * data,int len)40 uvc_video_encode_data(struct uvc_video *video, struct uvc_buffer *buf,
41 		u8 *data, int len)
42 {
43 	struct uvc_video_queue *queue = &video->queue;
44 	unsigned int nbytes;
45 	void *mem;
46 
47 	/* Copy video data to the USB buffer. */
48 	mem = buf->mem + queue->buf_used;
49 	nbytes = min((unsigned int)len, buf->bytesused - queue->buf_used);
50 
51 	memcpy(data, mem, nbytes);
52 	queue->buf_used += nbytes;
53 
54 	return nbytes;
55 }
56 
57 static void
uvc_video_encode_bulk(struct usb_request * req,struct uvc_video * video,struct uvc_buffer * buf)58 uvc_video_encode_bulk(struct usb_request *req, struct uvc_video *video,
59 		struct uvc_buffer *buf)
60 {
61 	void *mem = req->buf;
62 	int len = video->req_size;
63 	int ret;
64 
65 	/* Add a header at the beginning of the payload. */
66 	if (video->payload_size == 0) {
67 		ret = uvc_video_encode_header(video, buf, mem, len);
68 		video->payload_size += ret;
69 		mem += ret;
70 		len -= ret;
71 	}
72 
73 	/* Process video data. */
74 	len = min((int)(video->max_payload_size - video->payload_size), len);
75 	ret = uvc_video_encode_data(video, buf, mem, len);
76 
77 	video->payload_size += ret;
78 	len -= ret;
79 
80 	req->length = video->req_size - len;
81 	req->zero = video->payload_size == video->max_payload_size;
82 
83 	if (buf->bytesused == video->queue.buf_used) {
84 		video->queue.buf_used = 0;
85 		buf->state = UVC_BUF_STATE_DONE;
86 		uvcg_queue_next_buffer(&video->queue, buf);
87 		video->fid ^= UVC_STREAM_FID;
88 
89 		video->payload_size = 0;
90 	}
91 
92 	if (video->payload_size == video->max_payload_size ||
93 	    buf->bytesused == video->queue.buf_used)
94 		video->payload_size = 0;
95 }
96 
97 static void
uvc_video_encode_isoc(struct usb_request * req,struct uvc_video * video,struct uvc_buffer * buf)98 uvc_video_encode_isoc(struct usb_request *req, struct uvc_video *video,
99 		struct uvc_buffer *buf)
100 {
101 	void *mem = req->buf;
102 	int len = video->req_size;
103 	int ret;
104 
105 	/* Add the header. */
106 	ret = uvc_video_encode_header(video, buf, mem, len);
107 	mem += ret;
108 	len -= ret;
109 
110 	/* Process video data. */
111 	ret = uvc_video_encode_data(video, buf, mem, len);
112 	len -= ret;
113 
114 	req->length = video->req_size - len;
115 
116 	if (buf->bytesused == video->queue.buf_used) {
117 		video->queue.buf_used = 0;
118 		buf->state = UVC_BUF_STATE_DONE;
119 		uvcg_queue_next_buffer(&video->queue, buf);
120 		video->fid ^= UVC_STREAM_FID;
121 	}
122 }
123 
124 /* --------------------------------------------------------------------------
125  * Request handling
126  */
127 
uvcg_video_ep_queue(struct uvc_video * video,struct usb_request * req)128 static int uvcg_video_ep_queue(struct uvc_video *video, struct usb_request *req)
129 {
130 	int ret;
131 
132 	ret = usb_ep_queue(video->ep, req, GFP_ATOMIC);
133 	if (ret < 0) {
134 		printk(KERN_INFO "Failed to queue request (%d).\n", ret);
135 		/* Isochronous endpoints can't be halted. */
136 		if (usb_endpoint_xfer_bulk(video->ep->desc))
137 			usb_ep_set_halt(video->ep);
138 	}
139 
140 	return ret;
141 }
142 
143 /*
144  * I somehow feel that synchronisation won't be easy to achieve here. We have
145  * three events that control USB requests submission:
146  *
147  * - USB request completion: the completion handler will resubmit the request
148  *   if a video buffer is available.
149  *
150  * - USB interface setting selection: in response to a SET_INTERFACE request,
151  *   the handler will start streaming if a video buffer is available and if
152  *   video is not currently streaming.
153  *
154  * - V4L2 buffer queueing: the driver will start streaming if video is not
155  *   currently streaming.
156  *
157  * Race conditions between those 3 events might lead to deadlocks or other
158  * nasty side effects.
159  *
160  * The "video currently streaming" condition can't be detected by the irqqueue
161  * being empty, as a request can still be in flight. A separate "queue paused"
162  * flag is thus needed.
163  *
164  * The paused flag will be set when we try to retrieve the irqqueue head if the
165  * queue is empty, and cleared when we queue a buffer.
166  *
167  * The USB request completion handler will get the buffer at the irqqueue head
168  * under protection of the queue spinlock. If the queue is empty, the streaming
169  * paused flag will be set. Right after releasing the spinlock a userspace
170  * application can queue a buffer. The flag will then cleared, and the ioctl
171  * handler will restart the video stream.
172  */
173 static void
uvc_video_complete(struct usb_ep * ep,struct usb_request * req)174 uvc_video_complete(struct usb_ep *ep, struct usb_request *req)
175 {
176 	struct uvc_video *video = req->context;
177 	struct uvc_video_queue *queue = &video->queue;
178 	struct uvc_buffer *buf;
179 	unsigned long flags;
180 	int ret;
181 
182 	switch (req->status) {
183 	case 0:
184 		break;
185 
186 	case -ESHUTDOWN:	/* disconnect from host. */
187 		printk(KERN_DEBUG "VS request cancelled.\n");
188 		uvcg_queue_cancel(queue, 1);
189 		goto requeue;
190 
191 	default:
192 		printk(KERN_INFO "VS request completed with status %d.\n",
193 			req->status);
194 		uvcg_queue_cancel(queue, 0);
195 		goto requeue;
196 	}
197 
198 	spin_lock_irqsave(&video->queue.irqlock, flags);
199 	buf = uvcg_queue_head(&video->queue);
200 	if (buf == NULL) {
201 		spin_unlock_irqrestore(&video->queue.irqlock, flags);
202 		goto requeue;
203 	}
204 
205 	video->encode(req, video, buf);
206 
207 	ret = uvcg_video_ep_queue(video, req);
208 	spin_unlock_irqrestore(&video->queue.irqlock, flags);
209 
210 	if (ret < 0) {
211 		uvcg_queue_cancel(queue, 0);
212 		goto requeue;
213 	}
214 
215 	return;
216 
217 requeue:
218 	spin_lock_irqsave(&video->req_lock, flags);
219 	list_add_tail(&req->list, &video->req_free);
220 	spin_unlock_irqrestore(&video->req_lock, flags);
221 }
222 
223 static int
uvc_video_free_requests(struct uvc_video * video)224 uvc_video_free_requests(struct uvc_video *video)
225 {
226 	unsigned int i;
227 
228 	for (i = 0; i < UVC_NUM_REQUESTS; ++i) {
229 		if (video->req[i]) {
230 			usb_ep_free_request(video->ep, video->req[i]);
231 			video->req[i] = NULL;
232 		}
233 
234 		if (video->req_buffer[i]) {
235 			kfree(video->req_buffer[i]);
236 			video->req_buffer[i] = NULL;
237 		}
238 	}
239 
240 	INIT_LIST_HEAD(&video->req_free);
241 	video->req_size = 0;
242 	return 0;
243 }
244 
245 static int
uvc_video_alloc_requests(struct uvc_video * video)246 uvc_video_alloc_requests(struct uvc_video *video)
247 {
248 	unsigned int req_size;
249 	unsigned int i;
250 	int ret = -ENOMEM;
251 
252 	BUG_ON(video->req_size);
253 
254 	req_size = video->ep->maxpacket
255 		 * max_t(unsigned int, video->ep->maxburst, 1)
256 		 * (video->ep->mult);
257 
258 	for (i = 0; i < UVC_NUM_REQUESTS; ++i) {
259 		video->req_buffer[i] = kmalloc(req_size, GFP_KERNEL);
260 		if (video->req_buffer[i] == NULL)
261 			goto error;
262 
263 		video->req[i] = usb_ep_alloc_request(video->ep, GFP_KERNEL);
264 		if (video->req[i] == NULL)
265 			goto error;
266 
267 		video->req[i]->buf = video->req_buffer[i];
268 		video->req[i]->length = 0;
269 		video->req[i]->complete = uvc_video_complete;
270 		video->req[i]->context = video;
271 
272 		list_add_tail(&video->req[i]->list, &video->req_free);
273 	}
274 
275 	video->req_size = req_size;
276 
277 	return 0;
278 
279 error:
280 	uvc_video_free_requests(video);
281 	return ret;
282 }
283 
284 /* --------------------------------------------------------------------------
285  * Video streaming
286  */
287 
288 /*
289  * uvcg_video_pump - Pump video data into the USB requests
290  *
291  * This function fills the available USB requests (listed in req_free) with
292  * video data from the queued buffers.
293  */
uvcg_video_pump(struct uvc_video * video)294 int uvcg_video_pump(struct uvc_video *video)
295 {
296 	struct uvc_video_queue *queue = &video->queue;
297 	struct usb_request *req;
298 	struct uvc_buffer *buf;
299 	unsigned long flags;
300 	int ret;
301 
302 	/* FIXME TODO Race between uvcg_video_pump and requests completion
303 	 * handler ???
304 	 */
305 
306 	while (1) {
307 		/* Retrieve the first available USB request, protected by the
308 		 * request lock.
309 		 */
310 		spin_lock_irqsave(&video->req_lock, flags);
311 		if (list_empty(&video->req_free)) {
312 			spin_unlock_irqrestore(&video->req_lock, flags);
313 			return 0;
314 		}
315 		req = list_first_entry(&video->req_free, struct usb_request,
316 					list);
317 		list_del(&req->list);
318 		spin_unlock_irqrestore(&video->req_lock, flags);
319 
320 		/* Retrieve the first available video buffer and fill the
321 		 * request, protected by the video queue irqlock.
322 		 */
323 		spin_lock_irqsave(&queue->irqlock, flags);
324 		buf = uvcg_queue_head(queue);
325 		if (buf == NULL) {
326 			spin_unlock_irqrestore(&queue->irqlock, flags);
327 			break;
328 		}
329 
330 		video->encode(req, video, buf);
331 
332 		/* Queue the USB request */
333 		ret = uvcg_video_ep_queue(video, req);
334 		spin_unlock_irqrestore(&queue->irqlock, flags);
335 
336 		if (ret < 0) {
337 			uvcg_queue_cancel(queue, 0);
338 			break;
339 		}
340 	}
341 
342 	spin_lock_irqsave(&video->req_lock, flags);
343 	list_add_tail(&req->list, &video->req_free);
344 	spin_unlock_irqrestore(&video->req_lock, flags);
345 	return 0;
346 }
347 
348 /*
349  * Enable or disable the video stream.
350  */
uvcg_video_enable(struct uvc_video * video,int enable)351 int uvcg_video_enable(struct uvc_video *video, int enable)
352 {
353 	unsigned int i;
354 	int ret;
355 
356 	if (video->ep == NULL) {
357 		printk(KERN_INFO "Video enable failed, device is "
358 			"uninitialized.\n");
359 		return -ENODEV;
360 	}
361 
362 	if (!enable) {
363 		for (i = 0; i < UVC_NUM_REQUESTS; ++i)
364 			if (video->req[i])
365 				usb_ep_dequeue(video->ep, video->req[i]);
366 
367 		uvc_video_free_requests(video);
368 		uvcg_queue_enable(&video->queue, 0);
369 		return 0;
370 	}
371 
372 	if ((ret = uvcg_queue_enable(&video->queue, 1)) < 0)
373 		return ret;
374 
375 	if ((ret = uvc_video_alloc_requests(video)) < 0)
376 		return ret;
377 
378 	if (video->max_payload_size) {
379 		video->encode = uvc_video_encode_bulk;
380 		video->payload_size = 0;
381 	} else
382 		video->encode = uvc_video_encode_isoc;
383 
384 	return uvcg_video_pump(video);
385 }
386 
387 /*
388  * Initialize the UVC video stream.
389  */
uvcg_video_init(struct uvc_video * video)390 int uvcg_video_init(struct uvc_video *video)
391 {
392 	INIT_LIST_HEAD(&video->req_free);
393 	spin_lock_init(&video->req_lock);
394 
395 	video->fcc = V4L2_PIX_FMT_YUYV;
396 	video->bpp = 16;
397 	video->width = 320;
398 	video->height = 240;
399 	video->imagesize = 320 * 240 * 2;
400 
401 	/* Initialize the video buffers queue. */
402 	uvcg_queue_init(&video->queue, V4L2_BUF_TYPE_VIDEO_OUTPUT,
403 			&video->mutex);
404 	return 0;
405 }
406 
407