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1 /*
2  * TI OMAP4 ISS V4L2 Driver - Generic video node
3  *
4  * Copyright (C) 2012 Texas Instruments, Inc.
5  *
6  * Author: Sergio Aguirre <sergio.a.aguirre@gmail.com>
7  *
8  * This program is free software; you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License as published by
10  * the Free Software Foundation; either version 2 of the License, or
11  * (at your option) any later version.
12  */
13 
14 #include <asm/cacheflush.h>
15 #include <linux/clk.h>
16 #include <linux/mm.h>
17 #include <linux/pagemap.h>
18 #include <linux/sched.h>
19 #include <linux/slab.h>
20 #include <linux/vmalloc.h>
21 #include <linux/module.h>
22 #include <media/v4l2-dev.h>
23 #include <media/v4l2-ioctl.h>
24 
25 #include "iss_video.h"
26 #include "iss.h"
27 
28 static unsigned debug;
29 module_param(debug, uint, 0644);
30 MODULE_PARM_DESC(debug, "activates debug info");
31 
32 /* -----------------------------------------------------------------------------
33  * Helper functions
34  */
35 
36 static struct iss_format_info formats[] = {
37 	{ V4L2_MBUS_FMT_Y8_1X8, V4L2_MBUS_FMT_Y8_1X8,
38 	  V4L2_MBUS_FMT_Y8_1X8, V4L2_MBUS_FMT_Y8_1X8,
39 	  V4L2_PIX_FMT_GREY, 8, "Greyscale 8 bpp", },
40 	{ V4L2_MBUS_FMT_Y10_1X10, V4L2_MBUS_FMT_Y10_1X10,
41 	  V4L2_MBUS_FMT_Y10_1X10, V4L2_MBUS_FMT_Y8_1X8,
42 	  V4L2_PIX_FMT_Y10, 10, "Greyscale 10 bpp", },
43 	{ V4L2_MBUS_FMT_Y12_1X12, V4L2_MBUS_FMT_Y10_1X10,
44 	  V4L2_MBUS_FMT_Y12_1X12, V4L2_MBUS_FMT_Y8_1X8,
45 	  V4L2_PIX_FMT_Y12, 12, "Greyscale 12 bpp", },
46 	{ V4L2_MBUS_FMT_SBGGR8_1X8, V4L2_MBUS_FMT_SBGGR8_1X8,
47 	  V4L2_MBUS_FMT_SBGGR8_1X8, V4L2_MBUS_FMT_SBGGR8_1X8,
48 	  V4L2_PIX_FMT_SBGGR8, 8, "BGGR Bayer 8 bpp", },
49 	{ V4L2_MBUS_FMT_SGBRG8_1X8, V4L2_MBUS_FMT_SGBRG8_1X8,
50 	  V4L2_MBUS_FMT_SGBRG8_1X8, V4L2_MBUS_FMT_SGBRG8_1X8,
51 	  V4L2_PIX_FMT_SGBRG8, 8, "GBRG Bayer 8 bpp", },
52 	{ V4L2_MBUS_FMT_SGRBG8_1X8, V4L2_MBUS_FMT_SGRBG8_1X8,
53 	  V4L2_MBUS_FMT_SGRBG8_1X8, V4L2_MBUS_FMT_SGRBG8_1X8,
54 	  V4L2_PIX_FMT_SGRBG8, 8, "GRBG Bayer 8 bpp", },
55 	{ V4L2_MBUS_FMT_SRGGB8_1X8, V4L2_MBUS_FMT_SRGGB8_1X8,
56 	  V4L2_MBUS_FMT_SRGGB8_1X8, V4L2_MBUS_FMT_SRGGB8_1X8,
57 	  V4L2_PIX_FMT_SRGGB8, 8, "RGGB Bayer 8 bpp", },
58 	{ V4L2_MBUS_FMT_SGRBG10_DPCM8_1X8, V4L2_MBUS_FMT_SGRBG10_DPCM8_1X8,
59 	  V4L2_MBUS_FMT_SGRBG10_1X10, 0,
60 	  V4L2_PIX_FMT_SGRBG10DPCM8, 8, "GRBG Bayer 10 bpp DPCM8",  },
61 	{ V4L2_MBUS_FMT_SBGGR10_1X10, V4L2_MBUS_FMT_SBGGR10_1X10,
62 	  V4L2_MBUS_FMT_SBGGR10_1X10, V4L2_MBUS_FMT_SBGGR8_1X8,
63 	  V4L2_PIX_FMT_SBGGR10, 10, "BGGR Bayer 10 bpp", },
64 	{ V4L2_MBUS_FMT_SGBRG10_1X10, V4L2_MBUS_FMT_SGBRG10_1X10,
65 	  V4L2_MBUS_FMT_SGBRG10_1X10, V4L2_MBUS_FMT_SGBRG8_1X8,
66 	  V4L2_PIX_FMT_SGBRG10, 10, "GBRG Bayer 10 bpp", },
67 	{ V4L2_MBUS_FMT_SGRBG10_1X10, V4L2_MBUS_FMT_SGRBG10_1X10,
68 	  V4L2_MBUS_FMT_SGRBG10_1X10, V4L2_MBUS_FMT_SGRBG8_1X8,
69 	  V4L2_PIX_FMT_SGRBG10, 10, "GRBG Bayer 10 bpp", },
70 	{ V4L2_MBUS_FMT_SRGGB10_1X10, V4L2_MBUS_FMT_SRGGB10_1X10,
71 	  V4L2_MBUS_FMT_SRGGB10_1X10, V4L2_MBUS_FMT_SRGGB8_1X8,
72 	  V4L2_PIX_FMT_SRGGB10, 10, "RGGB Bayer 10 bpp", },
73 	{ V4L2_MBUS_FMT_SBGGR12_1X12, V4L2_MBUS_FMT_SBGGR10_1X10,
74 	  V4L2_MBUS_FMT_SBGGR12_1X12, V4L2_MBUS_FMT_SBGGR8_1X8,
75 	  V4L2_PIX_FMT_SBGGR12, 12, "BGGR Bayer 12 bpp", },
76 	{ V4L2_MBUS_FMT_SGBRG12_1X12, V4L2_MBUS_FMT_SGBRG10_1X10,
77 	  V4L2_MBUS_FMT_SGBRG12_1X12, V4L2_MBUS_FMT_SGBRG8_1X8,
78 	  V4L2_PIX_FMT_SGBRG12, 12, "GBRG Bayer 12 bpp", },
79 	{ V4L2_MBUS_FMT_SGRBG12_1X12, V4L2_MBUS_FMT_SGRBG10_1X10,
80 	  V4L2_MBUS_FMT_SGRBG12_1X12, V4L2_MBUS_FMT_SGRBG8_1X8,
81 	  V4L2_PIX_FMT_SGRBG12, 12, "GRBG Bayer 12 bpp", },
82 	{ V4L2_MBUS_FMT_SRGGB12_1X12, V4L2_MBUS_FMT_SRGGB10_1X10,
83 	  V4L2_MBUS_FMT_SRGGB12_1X12, V4L2_MBUS_FMT_SRGGB8_1X8,
84 	  V4L2_PIX_FMT_SRGGB12, 12, "RGGB Bayer 12 bpp", },
85 	{ V4L2_MBUS_FMT_UYVY8_1X16, V4L2_MBUS_FMT_UYVY8_1X16,
86 	  V4L2_MBUS_FMT_UYVY8_1X16, 0,
87 	  V4L2_PIX_FMT_UYVY, 16, "YUV 4:2:2 (UYVY)", },
88 	{ V4L2_MBUS_FMT_YUYV8_1X16, V4L2_MBUS_FMT_YUYV8_1X16,
89 	  V4L2_MBUS_FMT_YUYV8_1X16, 0,
90 	  V4L2_PIX_FMT_YUYV, 16, "YUV 4:2:2 (YUYV)", },
91 	{ V4L2_MBUS_FMT_YUYV8_1_5X8, V4L2_MBUS_FMT_YUYV8_1_5X8,
92 	  V4L2_MBUS_FMT_YUYV8_1_5X8, 0,
93 	  V4L2_PIX_FMT_NV12, 8, "YUV 4:2:0 (NV12)", },
94 };
95 
96 const struct iss_format_info *
omap4iss_video_format_info(enum v4l2_mbus_pixelcode code)97 omap4iss_video_format_info(enum v4l2_mbus_pixelcode code)
98 {
99 	unsigned int i;
100 
101 	for (i = 0; i < ARRAY_SIZE(formats); ++i) {
102 		if (formats[i].code == code)
103 			return &formats[i];
104 	}
105 
106 	return NULL;
107 }
108 
109 /*
110  * iss_video_mbus_to_pix - Convert v4l2_mbus_framefmt to v4l2_pix_format
111  * @video: ISS video instance
112  * @mbus: v4l2_mbus_framefmt format (input)
113  * @pix: v4l2_pix_format format (output)
114  *
115  * Fill the output pix structure with information from the input mbus format.
116  * The bytesperline and sizeimage fields are computed from the requested bytes
117  * per line value in the pix format and information from the video instance.
118  *
119  * Return the number of padding bytes at end of line.
120  */
iss_video_mbus_to_pix(const struct iss_video * video,const struct v4l2_mbus_framefmt * mbus,struct v4l2_pix_format * pix)121 static unsigned int iss_video_mbus_to_pix(const struct iss_video *video,
122 					  const struct v4l2_mbus_framefmt *mbus,
123 					  struct v4l2_pix_format *pix)
124 {
125 	unsigned int bpl = pix->bytesperline;
126 	unsigned int min_bpl;
127 	unsigned int i;
128 
129 	memset(pix, 0, sizeof(*pix));
130 	pix->width = mbus->width;
131 	pix->height = mbus->height;
132 
133 	/* Skip the last format in the loop so that it will be selected if no
134 	 * match is found.
135 	 */
136 	for (i = 0; i < ARRAY_SIZE(formats) - 1; ++i) {
137 		if (formats[i].code == mbus->code)
138 			break;
139 	}
140 
141 	min_bpl = pix->width * ALIGN(formats[i].bpp, 8) / 8;
142 
143 	/* Clamp the requested bytes per line value. If the maximum bytes per
144 	 * line value is zero, the module doesn't support user configurable line
145 	 * sizes. Override the requested value with the minimum in that case.
146 	 */
147 	if (video->bpl_max)
148 		bpl = clamp(bpl, min_bpl, video->bpl_max);
149 	else
150 		bpl = min_bpl;
151 
152 	if (!video->bpl_zero_padding || bpl != min_bpl)
153 		bpl = ALIGN(bpl, video->bpl_alignment);
154 
155 	pix->pixelformat = formats[i].pixelformat;
156 	pix->bytesperline = bpl;
157 	pix->sizeimage = pix->bytesperline * pix->height;
158 	pix->colorspace = mbus->colorspace;
159 	pix->field = mbus->field;
160 
161 	/* FIXME: Special case for NV12! We should make this nicer... */
162 	if (pix->pixelformat == V4L2_PIX_FMT_NV12)
163 		pix->sizeimage += (pix->bytesperline * pix->height) / 2;
164 
165 	return bpl - min_bpl;
166 }
167 
iss_video_pix_to_mbus(const struct v4l2_pix_format * pix,struct v4l2_mbus_framefmt * mbus)168 static void iss_video_pix_to_mbus(const struct v4l2_pix_format *pix,
169 				  struct v4l2_mbus_framefmt *mbus)
170 {
171 	unsigned int i;
172 
173 	memset(mbus, 0, sizeof(*mbus));
174 	mbus->width = pix->width;
175 	mbus->height = pix->height;
176 
177 	for (i = 0; i < ARRAY_SIZE(formats); ++i) {
178 		if (formats[i].pixelformat == pix->pixelformat)
179 			break;
180 	}
181 
182 	if (WARN_ON(i == ARRAY_SIZE(formats)))
183 		return;
184 
185 	mbus->code = formats[i].code;
186 	mbus->colorspace = pix->colorspace;
187 	mbus->field = pix->field;
188 }
189 
190 static struct v4l2_subdev *
iss_video_remote_subdev(struct iss_video * video,u32 * pad)191 iss_video_remote_subdev(struct iss_video *video, u32 *pad)
192 {
193 	struct media_pad *remote;
194 
195 	remote = media_entity_remote_pad(&video->pad);
196 
197 	if (remote == NULL ||
198 	    media_entity_type(remote->entity) != MEDIA_ENT_T_V4L2_SUBDEV)
199 		return NULL;
200 
201 	if (pad)
202 		*pad = remote->index;
203 
204 	return media_entity_to_v4l2_subdev(remote->entity);
205 }
206 
207 /* Return a pointer to the ISS video instance at the far end of the pipeline. */
208 static struct iss_video *
iss_video_far_end(struct iss_video * video)209 iss_video_far_end(struct iss_video *video)
210 {
211 	struct media_entity_graph graph;
212 	struct media_entity *entity = &video->video.entity;
213 	struct media_device *mdev = entity->parent;
214 	struct iss_video *far_end = NULL;
215 
216 	mutex_lock(&mdev->graph_mutex);
217 	media_entity_graph_walk_start(&graph, entity);
218 
219 	while ((entity = media_entity_graph_walk_next(&graph))) {
220 		if (entity == &video->video.entity)
221 			continue;
222 
223 		if (media_entity_type(entity) != MEDIA_ENT_T_DEVNODE)
224 			continue;
225 
226 		far_end = to_iss_video(media_entity_to_video_device(entity));
227 		if (far_end->type != video->type)
228 			break;
229 
230 		far_end = NULL;
231 	}
232 
233 	mutex_unlock(&mdev->graph_mutex);
234 	return far_end;
235 }
236 
237 static int
__iss_video_get_format(struct iss_video * video,struct v4l2_mbus_framefmt * format)238 __iss_video_get_format(struct iss_video *video,
239 		       struct v4l2_mbus_framefmt *format)
240 {
241 	struct v4l2_subdev_format fmt;
242 	struct v4l2_subdev *subdev;
243 	u32 pad;
244 	int ret;
245 
246 	subdev = iss_video_remote_subdev(video, &pad);
247 	if (subdev == NULL)
248 		return -EINVAL;
249 
250 	memset(&fmt, 0, sizeof(fmt));
251 	fmt.pad = pad;
252 	fmt.which = V4L2_SUBDEV_FORMAT_ACTIVE;
253 
254 	mutex_lock(&video->mutex);
255 	ret = v4l2_subdev_call(subdev, pad, get_fmt, NULL, &fmt);
256 	mutex_unlock(&video->mutex);
257 
258 	if (ret)
259 		return ret;
260 
261 	*format = fmt.format;
262 	return 0;
263 }
264 
265 static int
iss_video_check_format(struct iss_video * video,struct iss_video_fh * vfh)266 iss_video_check_format(struct iss_video *video, struct iss_video_fh *vfh)
267 {
268 	struct v4l2_mbus_framefmt format;
269 	struct v4l2_pix_format pixfmt;
270 	int ret;
271 
272 	ret = __iss_video_get_format(video, &format);
273 	if (ret < 0)
274 		return ret;
275 
276 	pixfmt.bytesperline = 0;
277 	ret = iss_video_mbus_to_pix(video, &format, &pixfmt);
278 
279 	if (vfh->format.fmt.pix.pixelformat != pixfmt.pixelformat ||
280 	    vfh->format.fmt.pix.height != pixfmt.height ||
281 	    vfh->format.fmt.pix.width != pixfmt.width ||
282 	    vfh->format.fmt.pix.bytesperline != pixfmt.bytesperline ||
283 	    vfh->format.fmt.pix.sizeimage != pixfmt.sizeimage)
284 		return -EINVAL;
285 
286 	return ret;
287 }
288 
289 /* -----------------------------------------------------------------------------
290  * Video queue operations
291  */
292 
iss_video_queue_setup(struct vb2_queue * vq,const struct v4l2_format * fmt,unsigned int * count,unsigned int * num_planes,unsigned int sizes[],void * alloc_ctxs[])293 static int iss_video_queue_setup(struct vb2_queue *vq,
294 				 const struct v4l2_format *fmt,
295 				 unsigned int *count, unsigned int *num_planes,
296 				 unsigned int sizes[], void *alloc_ctxs[])
297 {
298 	struct iss_video_fh *vfh = vb2_get_drv_priv(vq);
299 	struct iss_video *video = vfh->video;
300 
301 	/* Revisit multi-planar support for NV12 */
302 	*num_planes = 1;
303 
304 	sizes[0] = vfh->format.fmt.pix.sizeimage;
305 	if (sizes[0] == 0)
306 		return -EINVAL;
307 
308 	alloc_ctxs[0] = video->alloc_ctx;
309 
310 	*count = min(*count, video->capture_mem / PAGE_ALIGN(sizes[0]));
311 
312 	return 0;
313 }
314 
iss_video_buf_cleanup(struct vb2_buffer * vb)315 static void iss_video_buf_cleanup(struct vb2_buffer *vb)
316 {
317 	struct iss_buffer *buffer = container_of(vb, struct iss_buffer, vb);
318 
319 	if (buffer->iss_addr)
320 		buffer->iss_addr = 0;
321 }
322 
iss_video_buf_prepare(struct vb2_buffer * vb)323 static int iss_video_buf_prepare(struct vb2_buffer *vb)
324 {
325 	struct iss_video_fh *vfh = vb2_get_drv_priv(vb->vb2_queue);
326 	struct iss_buffer *buffer = container_of(vb, struct iss_buffer, vb);
327 	struct iss_video *video = vfh->video;
328 	unsigned long size = vfh->format.fmt.pix.sizeimage;
329 	dma_addr_t addr;
330 
331 	if (vb2_plane_size(vb, 0) < size)
332 		return -ENOBUFS;
333 
334 	addr = vb2_dma_contig_plane_dma_addr(vb, 0);
335 	if (!IS_ALIGNED(addr, 32)) {
336 		dev_dbg(video->iss->dev,
337 			"Buffer address must be aligned to 32 bytes boundary.\n");
338 		return -EINVAL;
339 	}
340 
341 	vb2_set_plane_payload(vb, 0, size);
342 	buffer->iss_addr = addr;
343 	return 0;
344 }
345 
iss_video_buf_queue(struct vb2_buffer * vb)346 static void iss_video_buf_queue(struct vb2_buffer *vb)
347 {
348 	struct iss_video_fh *vfh = vb2_get_drv_priv(vb->vb2_queue);
349 	struct iss_video *video = vfh->video;
350 	struct iss_buffer *buffer = container_of(vb, struct iss_buffer, vb);
351 	struct iss_pipeline *pipe = to_iss_pipeline(&video->video.entity);
352 	unsigned long flags;
353 	bool empty;
354 
355 	spin_lock_irqsave(&video->qlock, flags);
356 
357 	/* Mark the buffer is faulty and give it back to the queue immediately
358 	 * if the video node has registered an error. vb2 will perform the same
359 	 * check when preparing the buffer, but that is inherently racy, so we
360 	 * need to handle the race condition with an authoritative check here.
361 	 */
362 	if (unlikely(video->error)) {
363 		vb2_buffer_done(vb, VB2_BUF_STATE_ERROR);
364 		spin_unlock_irqrestore(&video->qlock, flags);
365 		return;
366 	}
367 
368 	empty = list_empty(&video->dmaqueue);
369 	list_add_tail(&buffer->list, &video->dmaqueue);
370 
371 	spin_unlock_irqrestore(&video->qlock, flags);
372 
373 	if (empty) {
374 		enum iss_pipeline_state state;
375 		unsigned int start;
376 
377 		if (video->type == V4L2_BUF_TYPE_VIDEO_CAPTURE)
378 			state = ISS_PIPELINE_QUEUE_OUTPUT;
379 		else
380 			state = ISS_PIPELINE_QUEUE_INPUT;
381 
382 		spin_lock_irqsave(&pipe->lock, flags);
383 		pipe->state |= state;
384 		video->ops->queue(video, buffer);
385 		video->dmaqueue_flags |= ISS_VIDEO_DMAQUEUE_QUEUED;
386 
387 		start = iss_pipeline_ready(pipe);
388 		if (start)
389 			pipe->state |= ISS_PIPELINE_STREAM;
390 		spin_unlock_irqrestore(&pipe->lock, flags);
391 
392 		if (start)
393 			omap4iss_pipeline_set_stream(pipe,
394 						ISS_PIPELINE_STREAM_SINGLESHOT);
395 	}
396 }
397 
398 static const struct vb2_ops iss_video_vb2ops = {
399 	.queue_setup	= iss_video_queue_setup,
400 	.buf_prepare	= iss_video_buf_prepare,
401 	.buf_queue	= iss_video_buf_queue,
402 	.buf_cleanup	= iss_video_buf_cleanup,
403 };
404 
405 /*
406  * omap4iss_video_buffer_next - Complete the current buffer and return the next
407  * @video: ISS video object
408  *
409  * Remove the current video buffer from the DMA queue and fill its timestamp,
410  * field count and state fields before waking up its completion handler.
411  *
412  * For capture video nodes, the buffer state is set to VB2_BUF_STATE_DONE if no
413  * error has been flagged in the pipeline, or to VB2_BUF_STATE_ERROR otherwise.
414  *
415  * The DMA queue is expected to contain at least one buffer.
416  *
417  * Return a pointer to the next buffer in the DMA queue, or NULL if the queue is
418  * empty.
419  */
omap4iss_video_buffer_next(struct iss_video * video)420 struct iss_buffer *omap4iss_video_buffer_next(struct iss_video *video)
421 {
422 	struct iss_pipeline *pipe = to_iss_pipeline(&video->video.entity);
423 	enum iss_pipeline_state state;
424 	struct iss_buffer *buf;
425 	unsigned long flags;
426 	struct timespec ts;
427 
428 	spin_lock_irqsave(&video->qlock, flags);
429 	if (WARN_ON(list_empty(&video->dmaqueue))) {
430 		spin_unlock_irqrestore(&video->qlock, flags);
431 		return NULL;
432 	}
433 
434 	buf = list_first_entry(&video->dmaqueue, struct iss_buffer,
435 			       list);
436 	list_del(&buf->list);
437 	spin_unlock_irqrestore(&video->qlock, flags);
438 
439 	ktime_get_ts(&ts);
440 	buf->vb.v4l2_buf.timestamp.tv_sec = ts.tv_sec;
441 	buf->vb.v4l2_buf.timestamp.tv_usec = ts.tv_nsec / NSEC_PER_USEC;
442 
443 	/* Do frame number propagation only if this is the output video node.
444 	 * Frame number either comes from the CSI receivers or it gets
445 	 * incremented here if H3A is not active.
446 	 * Note: There is no guarantee that the output buffer will finish
447 	 * first, so the input number might lag behind by 1 in some cases.
448 	 */
449 	if (video == pipe->output && !pipe->do_propagation)
450 		buf->vb.v4l2_buf.sequence =
451 			atomic_inc_return(&pipe->frame_number);
452 	else
453 		buf->vb.v4l2_buf.sequence = atomic_read(&pipe->frame_number);
454 
455 	vb2_buffer_done(&buf->vb, pipe->error ?
456 			VB2_BUF_STATE_ERROR : VB2_BUF_STATE_DONE);
457 	pipe->error = false;
458 
459 	spin_lock_irqsave(&video->qlock, flags);
460 	if (list_empty(&video->dmaqueue)) {
461 		spin_unlock_irqrestore(&video->qlock, flags);
462 		if (video->type == V4L2_BUF_TYPE_VIDEO_CAPTURE)
463 			state = ISS_PIPELINE_QUEUE_OUTPUT
464 			      | ISS_PIPELINE_STREAM;
465 		else
466 			state = ISS_PIPELINE_QUEUE_INPUT
467 			      | ISS_PIPELINE_STREAM;
468 
469 		spin_lock_irqsave(&pipe->lock, flags);
470 		pipe->state &= ~state;
471 		if (video->pipe.stream_state == ISS_PIPELINE_STREAM_CONTINUOUS)
472 			video->dmaqueue_flags |= ISS_VIDEO_DMAQUEUE_UNDERRUN;
473 		spin_unlock_irqrestore(&pipe->lock, flags);
474 		return NULL;
475 	}
476 
477 	if (video->type == V4L2_BUF_TYPE_VIDEO_CAPTURE && pipe->input != NULL) {
478 		spin_lock(&pipe->lock);
479 		pipe->state &= ~ISS_PIPELINE_STREAM;
480 		spin_unlock(&pipe->lock);
481 	}
482 
483 	buf = list_first_entry(&video->dmaqueue, struct iss_buffer,
484 			       list);
485 	spin_unlock_irqrestore(&video->qlock, flags);
486 	buf->vb.state = VB2_BUF_STATE_ACTIVE;
487 	return buf;
488 }
489 
490 /*
491  * omap4iss_video_cancel_stream - Cancel stream on a video node
492  * @video: ISS video object
493  *
494  * Cancelling a stream mark all buffers on the video node as erroneous and makes
495  * sure no new buffer can be queued.
496  */
omap4iss_video_cancel_stream(struct iss_video * video)497 void omap4iss_video_cancel_stream(struct iss_video *video)
498 {
499 	unsigned long flags;
500 
501 	spin_lock_irqsave(&video->qlock, flags);
502 
503 	while (!list_empty(&video->dmaqueue)) {
504 		struct iss_buffer *buf;
505 
506 		buf = list_first_entry(&video->dmaqueue, struct iss_buffer,
507 				       list);
508 		list_del(&buf->list);
509 		vb2_buffer_done(&buf->vb, VB2_BUF_STATE_ERROR);
510 	}
511 
512 	vb2_queue_error(video->queue);
513 	video->error = true;
514 
515 	spin_unlock_irqrestore(&video->qlock, flags);
516 }
517 
518 /* -----------------------------------------------------------------------------
519  * V4L2 ioctls
520  */
521 
522 static int
iss_video_querycap(struct file * file,void * fh,struct v4l2_capability * cap)523 iss_video_querycap(struct file *file, void *fh, struct v4l2_capability *cap)
524 {
525 	struct iss_video *video = video_drvdata(file);
526 
527 	strlcpy(cap->driver, ISS_VIDEO_DRIVER_NAME, sizeof(cap->driver));
528 	strlcpy(cap->card, video->video.name, sizeof(cap->card));
529 	strlcpy(cap->bus_info, "media", sizeof(cap->bus_info));
530 
531 	if (video->type == V4L2_BUF_TYPE_VIDEO_CAPTURE)
532 		cap->device_caps = V4L2_CAP_VIDEO_CAPTURE | V4L2_CAP_STREAMING;
533 	else
534 		cap->device_caps = V4L2_CAP_VIDEO_OUTPUT | V4L2_CAP_STREAMING;
535 
536 	cap->capabilities = V4L2_CAP_DEVICE_CAPS | V4L2_CAP_STREAMING
537 			  | V4L2_CAP_VIDEO_CAPTURE | V4L2_CAP_VIDEO_OUTPUT;
538 
539 	return 0;
540 }
541 
542 static int
iss_video_enum_format(struct file * file,void * fh,struct v4l2_fmtdesc * f)543 iss_video_enum_format(struct file *file, void *fh, struct v4l2_fmtdesc *f)
544 {
545 	struct iss_video *video = video_drvdata(file);
546 	struct v4l2_mbus_framefmt format;
547 	unsigned int index = f->index;
548 	unsigned int i;
549 	int ret;
550 
551 	if (f->type != video->type)
552 		return -EINVAL;
553 
554 	ret = __iss_video_get_format(video, &format);
555 	if (ret < 0)
556 		return ret;
557 
558 	for (i = 0; i < ARRAY_SIZE(formats); ++i) {
559 		const struct iss_format_info *info = &formats[i];
560 
561 		if (format.code != info->code)
562 			continue;
563 
564 		if (index == 0) {
565 			f->pixelformat = info->pixelformat;
566 			strlcpy(f->description, info->description,
567 				sizeof(f->description));
568 			return 0;
569 		}
570 
571 		index--;
572 	}
573 
574 	return -EINVAL;
575 }
576 
577 static int
iss_video_get_format(struct file * file,void * fh,struct v4l2_format * format)578 iss_video_get_format(struct file *file, void *fh, struct v4l2_format *format)
579 {
580 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
581 	struct iss_video *video = video_drvdata(file);
582 
583 	if (format->type != video->type)
584 		return -EINVAL;
585 
586 	mutex_lock(&video->mutex);
587 	*format = vfh->format;
588 	mutex_unlock(&video->mutex);
589 
590 	return 0;
591 }
592 
593 static int
iss_video_set_format(struct file * file,void * fh,struct v4l2_format * format)594 iss_video_set_format(struct file *file, void *fh, struct v4l2_format *format)
595 {
596 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
597 	struct iss_video *video = video_drvdata(file);
598 	struct v4l2_mbus_framefmt fmt;
599 
600 	if (format->type != video->type)
601 		return -EINVAL;
602 
603 	mutex_lock(&video->mutex);
604 
605 	/* Fill the bytesperline and sizeimage fields by converting to media bus
606 	 * format and back to pixel format.
607 	 */
608 	iss_video_pix_to_mbus(&format->fmt.pix, &fmt);
609 	iss_video_mbus_to_pix(video, &fmt, &format->fmt.pix);
610 
611 	vfh->format = *format;
612 
613 	mutex_unlock(&video->mutex);
614 	return 0;
615 }
616 
617 static int
iss_video_try_format(struct file * file,void * fh,struct v4l2_format * format)618 iss_video_try_format(struct file *file, void *fh, struct v4l2_format *format)
619 {
620 	struct iss_video *video = video_drvdata(file);
621 	struct v4l2_subdev_format fmt;
622 	struct v4l2_subdev *subdev;
623 	u32 pad;
624 	int ret;
625 
626 	if (format->type != video->type)
627 		return -EINVAL;
628 
629 	subdev = iss_video_remote_subdev(video, &pad);
630 	if (subdev == NULL)
631 		return -EINVAL;
632 
633 	iss_video_pix_to_mbus(&format->fmt.pix, &fmt.format);
634 
635 	fmt.pad = pad;
636 	fmt.which = V4L2_SUBDEV_FORMAT_ACTIVE;
637 	ret = v4l2_subdev_call(subdev, pad, get_fmt, NULL, &fmt);
638 	if (ret)
639 		return ret;
640 
641 	iss_video_mbus_to_pix(video, &fmt.format, &format->fmt.pix);
642 	return 0;
643 }
644 
645 static int
iss_video_cropcap(struct file * file,void * fh,struct v4l2_cropcap * cropcap)646 iss_video_cropcap(struct file *file, void *fh, struct v4l2_cropcap *cropcap)
647 {
648 	struct iss_video *video = video_drvdata(file);
649 	struct v4l2_subdev *subdev;
650 	int ret;
651 
652 	subdev = iss_video_remote_subdev(video, NULL);
653 	if (subdev == NULL)
654 		return -EINVAL;
655 
656 	mutex_lock(&video->mutex);
657 	ret = v4l2_subdev_call(subdev, video, cropcap, cropcap);
658 	mutex_unlock(&video->mutex);
659 
660 	return ret == -ENOIOCTLCMD ? -ENOTTY : ret;
661 }
662 
663 static int
iss_video_get_crop(struct file * file,void * fh,struct v4l2_crop * crop)664 iss_video_get_crop(struct file *file, void *fh, struct v4l2_crop *crop)
665 {
666 	struct iss_video *video = video_drvdata(file);
667 	struct v4l2_subdev_format format;
668 	struct v4l2_subdev *subdev;
669 	u32 pad;
670 	int ret;
671 
672 	subdev = iss_video_remote_subdev(video, &pad);
673 	if (subdev == NULL)
674 		return -EINVAL;
675 
676 	/* Try the get crop operation first and fallback to get format if not
677 	 * implemented.
678 	 */
679 	ret = v4l2_subdev_call(subdev, video, g_crop, crop);
680 	if (ret != -ENOIOCTLCMD)
681 		return ret;
682 
683 	format.pad = pad;
684 	format.which = V4L2_SUBDEV_FORMAT_ACTIVE;
685 	ret = v4l2_subdev_call(subdev, pad, get_fmt, NULL, &format);
686 	if (ret < 0)
687 		return ret == -ENOIOCTLCMD ? -ENOTTY : ret;
688 
689 	crop->c.left = 0;
690 	crop->c.top = 0;
691 	crop->c.width = format.format.width;
692 	crop->c.height = format.format.height;
693 
694 	return 0;
695 }
696 
697 static int
iss_video_set_crop(struct file * file,void * fh,const struct v4l2_crop * crop)698 iss_video_set_crop(struct file *file, void *fh, const struct v4l2_crop *crop)
699 {
700 	struct iss_video *video = video_drvdata(file);
701 	struct v4l2_subdev *subdev;
702 	int ret;
703 
704 	subdev = iss_video_remote_subdev(video, NULL);
705 	if (subdev == NULL)
706 		return -EINVAL;
707 
708 	mutex_lock(&video->mutex);
709 	ret = v4l2_subdev_call(subdev, video, s_crop, crop);
710 	mutex_unlock(&video->mutex);
711 
712 	return ret == -ENOIOCTLCMD ? -ENOTTY : ret;
713 }
714 
715 static int
iss_video_get_param(struct file * file,void * fh,struct v4l2_streamparm * a)716 iss_video_get_param(struct file *file, void *fh, struct v4l2_streamparm *a)
717 {
718 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
719 	struct iss_video *video = video_drvdata(file);
720 
721 	if (video->type != V4L2_BUF_TYPE_VIDEO_OUTPUT ||
722 	    video->type != a->type)
723 		return -EINVAL;
724 
725 	memset(a, 0, sizeof(*a));
726 	a->type = V4L2_BUF_TYPE_VIDEO_OUTPUT;
727 	a->parm.output.capability = V4L2_CAP_TIMEPERFRAME;
728 	a->parm.output.timeperframe = vfh->timeperframe;
729 
730 	return 0;
731 }
732 
733 static int
iss_video_set_param(struct file * file,void * fh,struct v4l2_streamparm * a)734 iss_video_set_param(struct file *file, void *fh, struct v4l2_streamparm *a)
735 {
736 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
737 	struct iss_video *video = video_drvdata(file);
738 
739 	if (video->type != V4L2_BUF_TYPE_VIDEO_OUTPUT ||
740 	    video->type != a->type)
741 		return -EINVAL;
742 
743 	if (a->parm.output.timeperframe.denominator == 0)
744 		a->parm.output.timeperframe.denominator = 1;
745 
746 	vfh->timeperframe = a->parm.output.timeperframe;
747 
748 	return 0;
749 }
750 
751 static int
iss_video_reqbufs(struct file * file,void * fh,struct v4l2_requestbuffers * rb)752 iss_video_reqbufs(struct file *file, void *fh, struct v4l2_requestbuffers *rb)
753 {
754 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
755 
756 	return vb2_reqbufs(&vfh->queue, rb);
757 }
758 
759 static int
iss_video_querybuf(struct file * file,void * fh,struct v4l2_buffer * b)760 iss_video_querybuf(struct file *file, void *fh, struct v4l2_buffer *b)
761 {
762 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
763 
764 	return vb2_querybuf(&vfh->queue, b);
765 }
766 
767 static int
iss_video_qbuf(struct file * file,void * fh,struct v4l2_buffer * b)768 iss_video_qbuf(struct file *file, void *fh, struct v4l2_buffer *b)
769 {
770 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
771 
772 	return vb2_qbuf(&vfh->queue, b);
773 }
774 
775 static int
iss_video_dqbuf(struct file * file,void * fh,struct v4l2_buffer * b)776 iss_video_dqbuf(struct file *file, void *fh, struct v4l2_buffer *b)
777 {
778 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
779 
780 	return vb2_dqbuf(&vfh->queue, b, file->f_flags & O_NONBLOCK);
781 }
782 
783 /*
784  * Stream management
785  *
786  * Every ISS pipeline has a single input and a single output. The input can be
787  * either a sensor or a video node. The output is always a video node.
788  *
789  * As every pipeline has an output video node, the ISS video objects at the
790  * pipeline output stores the pipeline state. It tracks the streaming state of
791  * both the input and output, as well as the availability of buffers.
792  *
793  * In sensor-to-memory mode, frames are always available at the pipeline input.
794  * Starting the sensor usually requires I2C transfers and must be done in
795  * interruptible context. The pipeline is started and stopped synchronously
796  * to the stream on/off commands. All modules in the pipeline will get their
797  * subdev set stream handler called. The module at the end of the pipeline must
798  * delay starting the hardware until buffers are available at its output.
799  *
800  * In memory-to-memory mode, starting/stopping the stream requires
801  * synchronization between the input and output. ISS modules can't be stopped
802  * in the middle of a frame, and at least some of the modules seem to become
803  * busy as soon as they're started, even if they don't receive a frame start
804  * event. For that reason frames need to be processed in single-shot mode. The
805  * driver needs to wait until a frame is completely processed and written to
806  * memory before restarting the pipeline for the next frame. Pipelined
807  * processing might be possible but requires more testing.
808  *
809  * Stream start must be delayed until buffers are available at both the input
810  * and output. The pipeline must be started in the videobuf queue callback with
811  * the buffers queue spinlock held. The modules subdev set stream operation must
812  * not sleep.
813  */
814 static int
iss_video_streamon(struct file * file,void * fh,enum v4l2_buf_type type)815 iss_video_streamon(struct file *file, void *fh, enum v4l2_buf_type type)
816 {
817 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
818 	struct iss_video *video = video_drvdata(file);
819 	struct media_entity_graph graph;
820 	struct media_entity *entity;
821 	enum iss_pipeline_state state;
822 	struct iss_pipeline *pipe;
823 	struct iss_video *far_end;
824 	unsigned long flags;
825 	int ret;
826 
827 	if (type != video->type)
828 		return -EINVAL;
829 
830 	mutex_lock(&video->stream_lock);
831 
832 	/* Start streaming on the pipeline. No link touching an entity in the
833 	 * pipeline can be activated or deactivated once streaming is started.
834 	 */
835 	pipe = video->video.entity.pipe
836 	     ? to_iss_pipeline(&video->video.entity) : &video->pipe;
837 	pipe->external = NULL;
838 	pipe->external_rate = 0;
839 	pipe->external_bpp = 0;
840 	pipe->entities = 0;
841 
842 	if (video->iss->pdata->set_constraints)
843 		video->iss->pdata->set_constraints(video->iss, true);
844 
845 	ret = media_entity_pipeline_start(&video->video.entity, &pipe->pipe);
846 	if (ret < 0)
847 		goto err_media_entity_pipeline_start;
848 
849 	entity = &video->video.entity;
850 	media_entity_graph_walk_start(&graph, entity);
851 	while ((entity = media_entity_graph_walk_next(&graph)))
852 		pipe->entities |= 1 << entity->id;
853 
854 	/* Verify that the currently configured format matches the output of
855 	 * the connected subdev.
856 	 */
857 	ret = iss_video_check_format(video, vfh);
858 	if (ret < 0)
859 		goto err_iss_video_check_format;
860 
861 	video->bpl_padding = ret;
862 	video->bpl_value = vfh->format.fmt.pix.bytesperline;
863 
864 	/* Find the ISS video node connected at the far end of the pipeline and
865 	 * update the pipeline.
866 	 */
867 	far_end = iss_video_far_end(video);
868 
869 	if (video->type == V4L2_BUF_TYPE_VIDEO_CAPTURE) {
870 		state = ISS_PIPELINE_STREAM_OUTPUT | ISS_PIPELINE_IDLE_OUTPUT;
871 		pipe->input = far_end;
872 		pipe->output = video;
873 	} else {
874 		if (far_end == NULL) {
875 			ret = -EPIPE;
876 			goto err_iss_video_check_format;
877 		}
878 
879 		state = ISS_PIPELINE_STREAM_INPUT | ISS_PIPELINE_IDLE_INPUT;
880 		pipe->input = video;
881 		pipe->output = far_end;
882 	}
883 
884 	spin_lock_irqsave(&pipe->lock, flags);
885 	pipe->state &= ~ISS_PIPELINE_STREAM;
886 	pipe->state |= state;
887 	spin_unlock_irqrestore(&pipe->lock, flags);
888 
889 	/* Set the maximum time per frame as the value requested by userspace.
890 	 * This is a soft limit that can be overridden if the hardware doesn't
891 	 * support the request limit.
892 	 */
893 	if (video->type == V4L2_BUF_TYPE_VIDEO_OUTPUT)
894 		pipe->max_timeperframe = vfh->timeperframe;
895 
896 	video->queue = &vfh->queue;
897 	INIT_LIST_HEAD(&video->dmaqueue);
898 	video->error = false;
899 	atomic_set(&pipe->frame_number, -1);
900 
901 	ret = vb2_streamon(&vfh->queue, type);
902 	if (ret < 0)
903 		goto err_iss_video_check_format;
904 
905 	/* In sensor-to-memory mode, the stream can be started synchronously
906 	 * to the stream on command. In memory-to-memory mode, it will be
907 	 * started when buffers are queued on both the input and output.
908 	 */
909 	if (pipe->input == NULL) {
910 		unsigned long flags;
911 
912 		ret = omap4iss_pipeline_set_stream(pipe,
913 					      ISS_PIPELINE_STREAM_CONTINUOUS);
914 		if (ret < 0)
915 			goto err_omap4iss_set_stream;
916 		spin_lock_irqsave(&video->qlock, flags);
917 		if (list_empty(&video->dmaqueue))
918 			video->dmaqueue_flags |= ISS_VIDEO_DMAQUEUE_UNDERRUN;
919 		spin_unlock_irqrestore(&video->qlock, flags);
920 	}
921 
922 	mutex_unlock(&video->stream_lock);
923 	return 0;
924 
925 err_omap4iss_set_stream:
926 	vb2_streamoff(&vfh->queue, type);
927 err_iss_video_check_format:
928 	media_entity_pipeline_stop(&video->video.entity);
929 err_media_entity_pipeline_start:
930 	if (video->iss->pdata->set_constraints)
931 		video->iss->pdata->set_constraints(video->iss, false);
932 	video->queue = NULL;
933 
934 	mutex_unlock(&video->stream_lock);
935 	return ret;
936 }
937 
938 static int
iss_video_streamoff(struct file * file,void * fh,enum v4l2_buf_type type)939 iss_video_streamoff(struct file *file, void *fh, enum v4l2_buf_type type)
940 {
941 	struct iss_video_fh *vfh = to_iss_video_fh(fh);
942 	struct iss_video *video = video_drvdata(file);
943 	struct iss_pipeline *pipe = to_iss_pipeline(&video->video.entity);
944 	enum iss_pipeline_state state;
945 	unsigned long flags;
946 
947 	if (type != video->type)
948 		return -EINVAL;
949 
950 	mutex_lock(&video->stream_lock);
951 
952 	if (!vb2_is_streaming(&vfh->queue))
953 		goto done;
954 
955 	/* Update the pipeline state. */
956 	if (video->type == V4L2_BUF_TYPE_VIDEO_CAPTURE)
957 		state = ISS_PIPELINE_STREAM_OUTPUT
958 		      | ISS_PIPELINE_QUEUE_OUTPUT;
959 	else
960 		state = ISS_PIPELINE_STREAM_INPUT
961 		      | ISS_PIPELINE_QUEUE_INPUT;
962 
963 	spin_lock_irqsave(&pipe->lock, flags);
964 	pipe->state &= ~state;
965 	spin_unlock_irqrestore(&pipe->lock, flags);
966 
967 	/* Stop the stream. */
968 	omap4iss_pipeline_set_stream(pipe, ISS_PIPELINE_STREAM_STOPPED);
969 	vb2_streamoff(&vfh->queue, type);
970 	video->queue = NULL;
971 
972 	if (video->iss->pdata->set_constraints)
973 		video->iss->pdata->set_constraints(video->iss, false);
974 	media_entity_pipeline_stop(&video->video.entity);
975 
976 done:
977 	mutex_unlock(&video->stream_lock);
978 	return 0;
979 }
980 
981 static int
iss_video_enum_input(struct file * file,void * fh,struct v4l2_input * input)982 iss_video_enum_input(struct file *file, void *fh, struct v4l2_input *input)
983 {
984 	if (input->index > 0)
985 		return -EINVAL;
986 
987 	strlcpy(input->name, "camera", sizeof(input->name));
988 	input->type = V4L2_INPUT_TYPE_CAMERA;
989 
990 	return 0;
991 }
992 
993 static int
iss_video_g_input(struct file * file,void * fh,unsigned int * input)994 iss_video_g_input(struct file *file, void *fh, unsigned int *input)
995 {
996 	*input = 0;
997 
998 	return 0;
999 }
1000 
1001 static int
iss_video_s_input(struct file * file,void * fh,unsigned int input)1002 iss_video_s_input(struct file *file, void *fh, unsigned int input)
1003 {
1004 	return input == 0 ? 0 : -EINVAL;
1005 }
1006 
1007 static const struct v4l2_ioctl_ops iss_video_ioctl_ops = {
1008 	.vidioc_querycap		= iss_video_querycap,
1009 	.vidioc_enum_fmt_vid_cap        = iss_video_enum_format,
1010 	.vidioc_g_fmt_vid_cap		= iss_video_get_format,
1011 	.vidioc_s_fmt_vid_cap		= iss_video_set_format,
1012 	.vidioc_try_fmt_vid_cap		= iss_video_try_format,
1013 	.vidioc_g_fmt_vid_out		= iss_video_get_format,
1014 	.vidioc_s_fmt_vid_out		= iss_video_set_format,
1015 	.vidioc_try_fmt_vid_out		= iss_video_try_format,
1016 	.vidioc_cropcap			= iss_video_cropcap,
1017 	.vidioc_g_crop			= iss_video_get_crop,
1018 	.vidioc_s_crop			= iss_video_set_crop,
1019 	.vidioc_g_parm			= iss_video_get_param,
1020 	.vidioc_s_parm			= iss_video_set_param,
1021 	.vidioc_reqbufs			= iss_video_reqbufs,
1022 	.vidioc_querybuf		= iss_video_querybuf,
1023 	.vidioc_qbuf			= iss_video_qbuf,
1024 	.vidioc_dqbuf			= iss_video_dqbuf,
1025 	.vidioc_streamon		= iss_video_streamon,
1026 	.vidioc_streamoff		= iss_video_streamoff,
1027 	.vidioc_enum_input		= iss_video_enum_input,
1028 	.vidioc_g_input			= iss_video_g_input,
1029 	.vidioc_s_input			= iss_video_s_input,
1030 };
1031 
1032 /* -----------------------------------------------------------------------------
1033  * V4L2 file operations
1034  */
1035 
iss_video_open(struct file * file)1036 static int iss_video_open(struct file *file)
1037 {
1038 	struct iss_video *video = video_drvdata(file);
1039 	struct iss_video_fh *handle;
1040 	struct vb2_queue *q;
1041 	int ret = 0;
1042 
1043 	handle = kzalloc(sizeof(*handle), GFP_KERNEL);
1044 	if (handle == NULL)
1045 		return -ENOMEM;
1046 
1047 	video->video.debug = debug;
1048 
1049 	v4l2_fh_init(&handle->vfh, &video->video);
1050 	v4l2_fh_add(&handle->vfh);
1051 
1052 	/* If this is the first user, initialise the pipeline. */
1053 	if (omap4iss_get(video->iss) == NULL) {
1054 		ret = -EBUSY;
1055 		goto done;
1056 	}
1057 
1058 	ret = omap4iss_pipeline_pm_use(&video->video.entity, 1);
1059 	if (ret < 0) {
1060 		omap4iss_put(video->iss);
1061 		goto done;
1062 	}
1063 
1064 	video->alloc_ctx = vb2_dma_contig_init_ctx(video->iss->dev);
1065 	if (IS_ERR(video->alloc_ctx)) {
1066 		ret = PTR_ERR(video->alloc_ctx);
1067 		omap4iss_put(video->iss);
1068 		goto done;
1069 	}
1070 
1071 	q = &handle->queue;
1072 
1073 	q->type = video->type;
1074 	q->io_modes = VB2_MMAP;
1075 	q->drv_priv = handle;
1076 	q->ops = &iss_video_vb2ops;
1077 	q->mem_ops = &vb2_dma_contig_memops;
1078 	q->buf_struct_size = sizeof(struct iss_buffer);
1079 	q->timestamp_flags = V4L2_BUF_FLAG_TIMESTAMP_MONOTONIC;
1080 
1081 	ret = vb2_queue_init(q);
1082 	if (ret) {
1083 		omap4iss_put(video->iss);
1084 		goto done;
1085 	}
1086 
1087 	memset(&handle->format, 0, sizeof(handle->format));
1088 	handle->format.type = video->type;
1089 	handle->timeperframe.denominator = 1;
1090 
1091 	handle->video = video;
1092 	file->private_data = &handle->vfh;
1093 
1094 done:
1095 	if (ret < 0) {
1096 		v4l2_fh_del(&handle->vfh);
1097 		kfree(handle);
1098 	}
1099 
1100 	return ret;
1101 }
1102 
iss_video_release(struct file * file)1103 static int iss_video_release(struct file *file)
1104 {
1105 	struct iss_video *video = video_drvdata(file);
1106 	struct v4l2_fh *vfh = file->private_data;
1107 	struct iss_video_fh *handle = to_iss_video_fh(vfh);
1108 
1109 	/* Disable streaming and free the buffers queue resources. */
1110 	iss_video_streamoff(file, vfh, video->type);
1111 
1112 	omap4iss_pipeline_pm_use(&video->video.entity, 0);
1113 
1114 	/* Release the videobuf2 queue */
1115 	vb2_queue_release(&handle->queue);
1116 
1117 	/* Release the file handle. */
1118 	v4l2_fh_del(vfh);
1119 	kfree(handle);
1120 	file->private_data = NULL;
1121 
1122 	omap4iss_put(video->iss);
1123 
1124 	return 0;
1125 }
1126 
iss_video_poll(struct file * file,poll_table * wait)1127 static unsigned int iss_video_poll(struct file *file, poll_table *wait)
1128 {
1129 	struct iss_video_fh *vfh = to_iss_video_fh(file->private_data);
1130 
1131 	return vb2_poll(&vfh->queue, file, wait);
1132 }
1133 
iss_video_mmap(struct file * file,struct vm_area_struct * vma)1134 static int iss_video_mmap(struct file *file, struct vm_area_struct *vma)
1135 {
1136 	struct iss_video_fh *vfh = to_iss_video_fh(file->private_data);
1137 
1138 	return vb2_mmap(&vfh->queue, vma);
1139 }
1140 
1141 static struct v4l2_file_operations iss_video_fops = {
1142 	.owner = THIS_MODULE,
1143 	.unlocked_ioctl = video_ioctl2,
1144 	.open = iss_video_open,
1145 	.release = iss_video_release,
1146 	.poll = iss_video_poll,
1147 	.mmap = iss_video_mmap,
1148 };
1149 
1150 /* -----------------------------------------------------------------------------
1151  * ISS video core
1152  */
1153 
1154 static const struct iss_video_operations iss_video_dummy_ops = {
1155 };
1156 
omap4iss_video_init(struct iss_video * video,const char * name)1157 int omap4iss_video_init(struct iss_video *video, const char *name)
1158 {
1159 	const char *direction;
1160 	int ret;
1161 
1162 	switch (video->type) {
1163 	case V4L2_BUF_TYPE_VIDEO_CAPTURE:
1164 		direction = "output";
1165 		video->pad.flags = MEDIA_PAD_FL_SINK;
1166 		break;
1167 	case V4L2_BUF_TYPE_VIDEO_OUTPUT:
1168 		direction = "input";
1169 		video->pad.flags = MEDIA_PAD_FL_SOURCE;
1170 		break;
1171 
1172 	default:
1173 		return -EINVAL;
1174 	}
1175 
1176 	ret = media_entity_init(&video->video.entity, 1, &video->pad, 0);
1177 	if (ret < 0)
1178 		return ret;
1179 
1180 	spin_lock_init(&video->qlock);
1181 	mutex_init(&video->mutex);
1182 	atomic_set(&video->active, 0);
1183 
1184 	spin_lock_init(&video->pipe.lock);
1185 	mutex_init(&video->stream_lock);
1186 
1187 	/* Initialize the video device. */
1188 	if (video->ops == NULL)
1189 		video->ops = &iss_video_dummy_ops;
1190 
1191 	video->video.fops = &iss_video_fops;
1192 	snprintf(video->video.name, sizeof(video->video.name),
1193 		 "OMAP4 ISS %s %s", name, direction);
1194 	video->video.vfl_type = VFL_TYPE_GRABBER;
1195 	video->video.release = video_device_release_empty;
1196 	video->video.ioctl_ops = &iss_video_ioctl_ops;
1197 	video->pipe.stream_state = ISS_PIPELINE_STREAM_STOPPED;
1198 
1199 	video_set_drvdata(&video->video, video);
1200 
1201 	return 0;
1202 }
1203 
omap4iss_video_cleanup(struct iss_video * video)1204 void omap4iss_video_cleanup(struct iss_video *video)
1205 {
1206 	media_entity_cleanup(&video->video.entity);
1207 	mutex_destroy(&video->stream_lock);
1208 	mutex_destroy(&video->mutex);
1209 }
1210 
omap4iss_video_register(struct iss_video * video,struct v4l2_device * vdev)1211 int omap4iss_video_register(struct iss_video *video, struct v4l2_device *vdev)
1212 {
1213 	int ret;
1214 
1215 	video->video.v4l2_dev = vdev;
1216 
1217 	ret = video_register_device(&video->video, VFL_TYPE_GRABBER, -1);
1218 	if (ret < 0)
1219 		dev_err(video->iss->dev,
1220 			"%s: could not register video device (%d)\n",
1221 			__func__, ret);
1222 
1223 	return ret;
1224 }
1225 
omap4iss_video_unregister(struct iss_video * video)1226 void omap4iss_video_unregister(struct iss_video *video)
1227 {
1228 	video_unregister_device(&video->video);
1229 }
1230