xref: /linux/drivers/media/platform/chips-media/coda/coda-common.c (revision bf4afc53b77aeaa48b5409da5c8da6bb4eff7f43)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * Coda multi-standard codec IP
4  *
5  * Copyright (C) 2012 Vista Silicon S.L.
6  *    Javier Martin, <javier.martin@vista-silicon.com>
7  *    Xavier Duret
8  */
9 
10 #include <linux/clk.h>
11 #include <linux/debugfs.h>
12 #include <linux/delay.h>
13 #include <linux/firmware.h>
14 #include <linux/gcd.h>
15 #include <linux/genalloc.h>
16 #include <linux/idr.h>
17 #include <linux/interrupt.h>
18 #include <linux/io.h>
19 #include <linux/irq.h>
20 #include <linux/kfifo.h>
21 #include <linux/module.h>
22 #include <linux/of.h>
23 #include <linux/of_platform.h>
24 #include <linux/platform_device.h>
25 #include <linux/pm_runtime.h>
26 #include <linux/slab.h>
27 #include <linux/videodev2.h>
28 #include <linux/ratelimit.h>
29 #include <linux/reset.h>
30 
31 #include <media/v4l2-ctrls.h>
32 #include <media/v4l2-device.h>
33 #include <media/v4l2-event.h>
34 #include <media/v4l2-ioctl.h>
35 #include <media/v4l2-mem2mem.h>
36 #include <media/videobuf2-v4l2.h>
37 #include <media/videobuf2-dma-contig.h>
38 #include <media/videobuf2-vmalloc.h>
39 
40 #include "coda.h"
41 #include "imx-vdoa.h"
42 
43 #define CODA_NAME		"coda"
44 
45 #define CODADX6_MAX_INSTANCES	4
46 #define CODA_MAX_FORMATS	5
47 
48 #define CODA_ISRAM_SIZE	(2048 * 2)
49 
50 #define MIN_W 48
51 #define MIN_H 16
52 
53 #define S_ALIGN		1 /* multiple of 2 */
54 #define W_ALIGN		1 /* multiple of 2 */
55 #define H_ALIGN		1 /* multiple of 2 */
56 
57 #define fh_to_ctx(__fh)	container_of(__fh, struct coda_ctx, fh)
58 
file_to_ctx(struct file * filp)59 static inline struct coda_ctx *file_to_ctx(struct file *filp)
60 {
61 	return fh_to_ctx(file_to_v4l2_fh(filp));
62 }
63 
64 int coda_debug;
65 module_param(coda_debug, int, 0644);
66 MODULE_PARM_DESC(coda_debug, "Debug level (0-2)");
67 
68 static int disable_tiling;
69 module_param(disable_tiling, int, 0644);
70 MODULE_PARM_DESC(disable_tiling, "Disable tiled frame buffers");
71 
72 static int disable_vdoa;
73 module_param(disable_vdoa, int, 0644);
74 MODULE_PARM_DESC(disable_vdoa, "Disable Video Data Order Adapter tiled to raster-scan conversion");
75 
76 static int enable_bwb = 0;
77 module_param(enable_bwb, int, 0644);
78 MODULE_PARM_DESC(enable_bwb, "Enable BWB unit for decoding, may crash on certain streams");
79 
coda_write(struct coda_dev * dev,u32 data,u32 reg)80 void coda_write(struct coda_dev *dev, u32 data, u32 reg)
81 {
82 	v4l2_dbg(3, coda_debug, &dev->v4l2_dev,
83 		 "%s: data=0x%x, reg=0x%x\n", __func__, data, reg);
84 	writel(data, dev->regs_base + reg);
85 }
86 
coda_read(struct coda_dev * dev,u32 reg)87 unsigned int coda_read(struct coda_dev *dev, u32 reg)
88 {
89 	u32 data;
90 
91 	data = readl(dev->regs_base + reg);
92 	v4l2_dbg(3, coda_debug, &dev->v4l2_dev,
93 		 "%s: data=0x%x, reg=0x%x\n", __func__, data, reg);
94 	return data;
95 }
96 
coda_write_base(struct coda_ctx * ctx,struct coda_q_data * q_data,struct vb2_v4l2_buffer * buf,unsigned int reg_y)97 void coda_write_base(struct coda_ctx *ctx, struct coda_q_data *q_data,
98 		     struct vb2_v4l2_buffer *buf, unsigned int reg_y)
99 {
100 	u32 base_y = vb2_dma_contig_plane_dma_addr(&buf->vb2_buf, 0);
101 	u32 base_cb, base_cr;
102 
103 	switch (q_data->fourcc) {
104 	case V4L2_PIX_FMT_YUYV:
105 		/* Fallthrough: IN -H264-> CODA -NV12 MB-> VDOA -YUYV-> OUT */
106 	case V4L2_PIX_FMT_NV12:
107 	case V4L2_PIX_FMT_YUV420:
108 	default:
109 		base_cb = base_y + q_data->bytesperline * q_data->height;
110 		base_cr = base_cb + q_data->bytesperline * q_data->height / 4;
111 		break;
112 	case V4L2_PIX_FMT_YVU420:
113 		/* Switch Cb and Cr for YVU420 format */
114 		base_cr = base_y + q_data->bytesperline * q_data->height;
115 		base_cb = base_cr + q_data->bytesperline * q_data->height / 4;
116 		break;
117 	case V4L2_PIX_FMT_YUV422P:
118 		base_cb = base_y + q_data->bytesperline * q_data->height;
119 		base_cr = base_cb + q_data->bytesperline * q_data->height / 2;
120 	}
121 
122 	coda_write(ctx->dev, base_y, reg_y);
123 	coda_write(ctx->dev, base_cb, reg_y + 4);
124 	coda_write(ctx->dev, base_cr, reg_y + 8);
125 }
126 
127 #define CODA_CODEC(mode, src_fourcc, dst_fourcc, max_w, max_h) \
128 	{ mode, src_fourcc, dst_fourcc, max_w, max_h }
129 
130 /*
131  * Arrays of codecs supported by each given version of Coda:
132  *  i.MX27 -> codadx6
133  *  i.MX51 -> codahx4
134  *  i.MX53 -> coda7
135  *  i.MX6  -> coda960
136  * Use V4L2_PIX_FMT_YUV420 as placeholder for all supported YUV 4:2:0 variants
137  */
138 static const struct coda_codec codadx6_codecs[] = {
139 	CODA_CODEC(CODADX6_MODE_ENCODE_H264, V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_H264,  720, 576),
140 	CODA_CODEC(CODADX6_MODE_ENCODE_MP4,  V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_MPEG4, 720, 576),
141 };
142 
143 static const struct coda_codec codahx4_codecs[] = {
144 	CODA_CODEC(CODA7_MODE_ENCODE_H264, V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_H264,   720, 576),
145 	CODA_CODEC(CODA7_MODE_DECODE_H264, V4L2_PIX_FMT_H264,   V4L2_PIX_FMT_YUV420, 1920, 1088),
146 	CODA_CODEC(CODA7_MODE_DECODE_MP2,  V4L2_PIX_FMT_MPEG2,  V4L2_PIX_FMT_YUV420, 1920, 1088),
147 	CODA_CODEC(CODA7_MODE_DECODE_MP4,  V4L2_PIX_FMT_MPEG4,  V4L2_PIX_FMT_YUV420, 1280, 720),
148 };
149 
150 static const struct coda_codec coda7_codecs[] = {
151 	CODA_CODEC(CODA7_MODE_ENCODE_H264, V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_H264,   1280, 720),
152 	CODA_CODEC(CODA7_MODE_ENCODE_MP4,  V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_MPEG4,  1280, 720),
153 	CODA_CODEC(CODA7_MODE_ENCODE_MJPG, V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_JPEG,   8192, 8192),
154 	CODA_CODEC(CODA7_MODE_DECODE_H264, V4L2_PIX_FMT_H264,   V4L2_PIX_FMT_YUV420, 1920, 1088),
155 	CODA_CODEC(CODA7_MODE_DECODE_MP2,  V4L2_PIX_FMT_MPEG2,  V4L2_PIX_FMT_YUV420, 1920, 1088),
156 	CODA_CODEC(CODA7_MODE_DECODE_MP4,  V4L2_PIX_FMT_MPEG4,  V4L2_PIX_FMT_YUV420, 1920, 1088),
157 	CODA_CODEC(CODA7_MODE_DECODE_MJPG, V4L2_PIX_FMT_JPEG,   V4L2_PIX_FMT_YUV420, 8192, 8192),
158 };
159 
160 static const struct coda_codec coda9_codecs[] = {
161 	CODA_CODEC(CODA9_MODE_ENCODE_H264, V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_H264,   1920, 1088),
162 	CODA_CODEC(CODA9_MODE_ENCODE_MP4,  V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_MPEG4,  1920, 1088),
163 	CODA_CODEC(CODA9_MODE_ENCODE_MJPG, V4L2_PIX_FMT_YUV420, V4L2_PIX_FMT_JPEG,   8192, 8192),
164 	CODA_CODEC(CODA9_MODE_DECODE_H264, V4L2_PIX_FMT_H264,   V4L2_PIX_FMT_YUV420, 1920, 1088),
165 	CODA_CODEC(CODA9_MODE_DECODE_MP2,  V4L2_PIX_FMT_MPEG2,  V4L2_PIX_FMT_YUV420, 1920, 1088),
166 	CODA_CODEC(CODA9_MODE_DECODE_MP4,  V4L2_PIX_FMT_MPEG4,  V4L2_PIX_FMT_YUV420, 1920, 1088),
167 	CODA_CODEC(CODA9_MODE_DECODE_MJPG, V4L2_PIX_FMT_JPEG,	V4L2_PIX_FMT_YUV420, 8192, 8192),
168 };
169 
170 struct coda_video_device {
171 	const char *name;
172 	enum coda_inst_type type;
173 	const struct coda_context_ops *ops;
174 	bool direct;
175 	u32 src_formats[CODA_MAX_FORMATS];
176 	u32 dst_formats[CODA_MAX_FORMATS];
177 };
178 
179 static const struct coda_video_device coda_bit_encoder = {
180 	.name = "coda-video-encoder",
181 	.type = CODA_INST_ENCODER,
182 	.ops = &coda_bit_encode_ops,
183 	.src_formats = {
184 		V4L2_PIX_FMT_NV12,
185 		V4L2_PIX_FMT_YUV420,
186 		V4L2_PIX_FMT_YVU420,
187 	},
188 	.dst_formats = {
189 		V4L2_PIX_FMT_H264,
190 		V4L2_PIX_FMT_MPEG4,
191 	},
192 };
193 
194 static const struct coda_video_device coda_bit_jpeg_encoder = {
195 	.name = "coda-jpeg-encoder",
196 	.type = CODA_INST_ENCODER,
197 	.ops = &coda_bit_encode_ops,
198 	.src_formats = {
199 		V4L2_PIX_FMT_NV12,
200 		V4L2_PIX_FMT_YUV420,
201 		V4L2_PIX_FMT_YVU420,
202 		V4L2_PIX_FMT_YUV422P,
203 	},
204 	.dst_formats = {
205 		V4L2_PIX_FMT_JPEG,
206 	},
207 };
208 
209 static const struct coda_video_device coda_bit_decoder = {
210 	.name = "coda-video-decoder",
211 	.type = CODA_INST_DECODER,
212 	.ops = &coda_bit_decode_ops,
213 	.src_formats = {
214 		V4L2_PIX_FMT_H264,
215 		V4L2_PIX_FMT_MPEG2,
216 		V4L2_PIX_FMT_MPEG4,
217 	},
218 	.dst_formats = {
219 		V4L2_PIX_FMT_NV12,
220 		V4L2_PIX_FMT_YUV420,
221 		V4L2_PIX_FMT_YVU420,
222 		/*
223 		 * If V4L2_PIX_FMT_YUYV should be default,
224 		 * set_default_params() must be adjusted.
225 		 */
226 		V4L2_PIX_FMT_YUYV,
227 	},
228 };
229 
230 static const struct coda_video_device coda_bit_jpeg_decoder = {
231 	.name = "coda-jpeg-decoder",
232 	.type = CODA_INST_DECODER,
233 	.ops = &coda_bit_decode_ops,
234 	.src_formats = {
235 		V4L2_PIX_FMT_JPEG,
236 	},
237 	.dst_formats = {
238 		V4L2_PIX_FMT_NV12,
239 		V4L2_PIX_FMT_YUV420,
240 		V4L2_PIX_FMT_YVU420,
241 		V4L2_PIX_FMT_YUV422P,
242 	},
243 };
244 
245 static const struct coda_video_device coda9_jpeg_encoder = {
246 	.name = "coda-jpeg-encoder",
247 	.type = CODA_INST_ENCODER,
248 	.ops = &coda9_jpeg_encode_ops,
249 	.direct = true,
250 	.src_formats = {
251 		V4L2_PIX_FMT_NV12,
252 		V4L2_PIX_FMT_YUV420,
253 		V4L2_PIX_FMT_YVU420,
254 		V4L2_PIX_FMT_YUV422P,
255 		V4L2_PIX_FMT_GREY,
256 	},
257 	.dst_formats = {
258 		V4L2_PIX_FMT_JPEG,
259 	},
260 };
261 
262 static const struct coda_video_device coda9_jpeg_decoder = {
263 	.name = "coda-jpeg-decoder",
264 	.type = CODA_INST_DECODER,
265 	.ops = &coda9_jpeg_decode_ops,
266 	.direct = true,
267 	.src_formats = {
268 		V4L2_PIX_FMT_JPEG,
269 	},
270 	.dst_formats = {
271 		V4L2_PIX_FMT_NV12,
272 		V4L2_PIX_FMT_YUV420,
273 		V4L2_PIX_FMT_YVU420,
274 		V4L2_PIX_FMT_YUV422P,
275 	},
276 };
277 
278 static const struct coda_video_device *codadx6_video_devices[] = {
279 	&coda_bit_encoder,
280 };
281 
282 static const struct coda_video_device *codahx4_video_devices[] = {
283 	&coda_bit_encoder,
284 	&coda_bit_decoder,
285 };
286 
287 static const struct coda_video_device *coda7_video_devices[] = {
288 	&coda_bit_jpeg_encoder,
289 	&coda_bit_jpeg_decoder,
290 	&coda_bit_encoder,
291 	&coda_bit_decoder,
292 };
293 
294 static const struct coda_video_device *coda9_video_devices[] = {
295 	&coda9_jpeg_encoder,
296 	&coda9_jpeg_decoder,
297 	&coda_bit_encoder,
298 	&coda_bit_decoder,
299 };
300 
301 /*
302  * Normalize all supported YUV 4:2:0 formats to the value used in the codec
303  * tables.
304  */
coda_format_normalize_yuv(u32 fourcc)305 static u32 coda_format_normalize_yuv(u32 fourcc)
306 {
307 	switch (fourcc) {
308 	case V4L2_PIX_FMT_NV12:
309 	case V4L2_PIX_FMT_YUV420:
310 	case V4L2_PIX_FMT_YVU420:
311 	case V4L2_PIX_FMT_YUV422P:
312 	case V4L2_PIX_FMT_YUYV:
313 		return V4L2_PIX_FMT_YUV420;
314 	default:
315 		return fourcc;
316 	}
317 }
318 
coda_find_codec(struct coda_dev * dev,int src_fourcc,int dst_fourcc)319 static const struct coda_codec *coda_find_codec(struct coda_dev *dev,
320 						int src_fourcc, int dst_fourcc)
321 {
322 	const struct coda_codec *codecs = dev->devtype->codecs;
323 	int num_codecs = dev->devtype->num_codecs;
324 	int k;
325 
326 	src_fourcc = coda_format_normalize_yuv(src_fourcc);
327 	dst_fourcc = coda_format_normalize_yuv(dst_fourcc);
328 	if (src_fourcc == dst_fourcc)
329 		return NULL;
330 
331 	for (k = 0; k < num_codecs; k++) {
332 		if (codecs[k].src_fourcc == src_fourcc &&
333 		    codecs[k].dst_fourcc == dst_fourcc)
334 			break;
335 	}
336 
337 	if (k == num_codecs)
338 		return NULL;
339 
340 	return &codecs[k];
341 }
342 
coda_get_max_dimensions(struct coda_dev * dev,const struct coda_codec * codec,int * max_w,int * max_h)343 static void coda_get_max_dimensions(struct coda_dev *dev,
344 				    const struct coda_codec *codec,
345 				    int *max_w, int *max_h)
346 {
347 	const struct coda_codec *codecs = dev->devtype->codecs;
348 	int num_codecs = dev->devtype->num_codecs;
349 	unsigned int w, h;
350 	int k;
351 
352 	if (codec) {
353 		w = codec->max_w;
354 		h = codec->max_h;
355 	} else {
356 		for (k = 0, w = 0, h = 0; k < num_codecs; k++) {
357 			w = max(w, codecs[k].max_w);
358 			h = max(h, codecs[k].max_h);
359 		}
360 	}
361 
362 	if (max_w)
363 		*max_w = w;
364 	if (max_h)
365 		*max_h = h;
366 }
367 
to_coda_video_device(struct video_device * vdev)368 static const struct coda_video_device *to_coda_video_device(struct video_device
369 							    *vdev)
370 {
371 	struct coda_dev *dev = video_get_drvdata(vdev);
372 	unsigned int i = vdev - dev->vfd;
373 
374 	if (i >= dev->devtype->num_vdevs)
375 		return NULL;
376 
377 	return dev->devtype->vdevs[i];
378 }
379 
coda_product_name(int product)380 const char *coda_product_name(int product)
381 {
382 	static char buf[9];
383 
384 	switch (product) {
385 	case CODA_DX6:
386 		return "CodaDx6";
387 	case CODA_HX4:
388 		return "CodaHx4";
389 	case CODA_7541:
390 		return "CODA7541";
391 	case CODA_960:
392 		return "CODA960";
393 	default:
394 		snprintf(buf, sizeof(buf), "(0x%04x)", product);
395 		return buf;
396 	}
397 }
398 
coda_get_vdoa_data(void)399 static struct vdoa_data *coda_get_vdoa_data(void)
400 {
401 	struct device_node *vdoa_node;
402 	struct platform_device *vdoa_pdev;
403 	struct vdoa_data *vdoa_data = NULL;
404 
405 	vdoa_node = of_find_compatible_node(NULL, NULL, "fsl,imx6q-vdoa");
406 	if (!vdoa_node)
407 		return NULL;
408 
409 	vdoa_pdev = of_find_device_by_node(vdoa_node);
410 	if (!vdoa_pdev)
411 		goto out;
412 
413 	vdoa_data = platform_get_drvdata(vdoa_pdev);
414 	if (!vdoa_data)
415 		vdoa_data = ERR_PTR(-EPROBE_DEFER);
416 
417 	put_device(&vdoa_pdev->dev);
418 out:
419 	of_node_put(vdoa_node);
420 
421 	return vdoa_data;
422 }
423 
424 /*
425  * V4L2 ioctl() operations.
426  */
coda_querycap(struct file * file,void * priv,struct v4l2_capability * cap)427 static int coda_querycap(struct file *file, void *priv,
428 			 struct v4l2_capability *cap)
429 {
430 	struct coda_ctx *ctx = file_to_ctx(file);
431 
432 	strscpy(cap->driver, CODA_NAME, sizeof(cap->driver));
433 	strscpy(cap->card, coda_product_name(ctx->dev->devtype->product),
434 		sizeof(cap->card));
435 	strscpy(cap->bus_info, "platform:" CODA_NAME, sizeof(cap->bus_info));
436 	return 0;
437 }
438 
439 static const u32 coda_formats_420[CODA_MAX_FORMATS] = {
440 		V4L2_PIX_FMT_NV12,
441 		V4L2_PIX_FMT_YUV420,
442 		V4L2_PIX_FMT_YVU420,
443 };
444 
coda_enum_fmt(struct file * file,void * priv,struct v4l2_fmtdesc * f)445 static int coda_enum_fmt(struct file *file, void *priv,
446 			 struct v4l2_fmtdesc *f)
447 {
448 	struct video_device *vdev = video_devdata(file);
449 	const struct coda_video_device *cvd = to_coda_video_device(vdev);
450 	struct coda_ctx *ctx = file_to_ctx(file);
451 	const u32 *formats;
452 
453 	if (f->type == V4L2_BUF_TYPE_VIDEO_OUTPUT)
454 		formats = cvd->src_formats;
455 	else if (f->type == V4L2_BUF_TYPE_VIDEO_CAPTURE) {
456 		struct coda_q_data *q_data_src;
457 		struct vb2_queue *src_vq;
458 
459 		formats = cvd->dst_formats;
460 
461 		/*
462 		 * If the source format is already fixed, only allow the same
463 		 * chroma subsampling.
464 		 */
465 		q_data_src = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_OUTPUT);
466 		src_vq = v4l2_m2m_get_vq(ctx->fh.m2m_ctx,
467 					 V4L2_BUF_TYPE_VIDEO_OUTPUT);
468 		if (q_data_src->fourcc == V4L2_PIX_FMT_JPEG &&
469 		    vb2_is_streaming(src_vq)) {
470 			if (ctx->params.jpeg_chroma_subsampling ==
471 			    V4L2_JPEG_CHROMA_SUBSAMPLING_420) {
472 				formats = coda_formats_420;
473 			} else if (ctx->params.jpeg_chroma_subsampling ==
474 				   V4L2_JPEG_CHROMA_SUBSAMPLING_422) {
475 				f->pixelformat = V4L2_PIX_FMT_YUV422P;
476 				return f->index ? -EINVAL : 0;
477 			}
478 		}
479 	} else {
480 		return -EINVAL;
481 	}
482 
483 	if (f->index >= CODA_MAX_FORMATS || formats[f->index] == 0)
484 		return -EINVAL;
485 
486 	/* Skip YUYV if the vdoa is not available */
487 	if (!ctx->vdoa && f->type == V4L2_BUF_TYPE_VIDEO_CAPTURE &&
488 	    formats[f->index] == V4L2_PIX_FMT_YUYV)
489 		return -EINVAL;
490 
491 	f->pixelformat = formats[f->index];
492 
493 	return 0;
494 }
495 
coda_g_fmt(struct file * file,void * priv,struct v4l2_format * f)496 static int coda_g_fmt(struct file *file, void *priv,
497 		      struct v4l2_format *f)
498 {
499 	struct coda_q_data *q_data;
500 	struct coda_ctx *ctx = file_to_ctx(file);
501 
502 	q_data = get_q_data(ctx, f->type);
503 	if (!q_data)
504 		return -EINVAL;
505 
506 	f->fmt.pix.field	= V4L2_FIELD_NONE;
507 	f->fmt.pix.pixelformat	= q_data->fourcc;
508 	f->fmt.pix.width	= q_data->width;
509 	f->fmt.pix.height	= q_data->height;
510 	f->fmt.pix.bytesperline = q_data->bytesperline;
511 
512 	f->fmt.pix.sizeimage	= q_data->sizeimage;
513 	f->fmt.pix.colorspace	= ctx->colorspace;
514 	f->fmt.pix.xfer_func	= ctx->xfer_func;
515 	f->fmt.pix.ycbcr_enc	= ctx->ycbcr_enc;
516 	f->fmt.pix.quantization	= ctx->quantization;
517 
518 	return 0;
519 }
520 
coda_try_pixelformat(struct coda_ctx * ctx,struct v4l2_format * f)521 static int coda_try_pixelformat(struct coda_ctx *ctx, struct v4l2_format *f)
522 {
523 	struct coda_q_data *q_data;
524 	const u32 *formats;
525 	int i;
526 
527 	if (f->type == V4L2_BUF_TYPE_VIDEO_OUTPUT)
528 		formats = ctx->cvd->src_formats;
529 	else if (f->type == V4L2_BUF_TYPE_VIDEO_CAPTURE)
530 		formats = ctx->cvd->dst_formats;
531 	else
532 		return -EINVAL;
533 
534 	for (i = 0; i < CODA_MAX_FORMATS; i++) {
535 		/* Skip YUYV if the vdoa is not available */
536 		if (!ctx->vdoa && f->type == V4L2_BUF_TYPE_VIDEO_CAPTURE &&
537 		    formats[i] == V4L2_PIX_FMT_YUYV)
538 			continue;
539 
540 		if (formats[i] == f->fmt.pix.pixelformat) {
541 			f->fmt.pix.pixelformat = formats[i];
542 			return 0;
543 		}
544 	}
545 
546 	/* Fall back to currently set pixelformat */
547 	q_data = get_q_data(ctx, f->type);
548 	f->fmt.pix.pixelformat = q_data->fourcc;
549 
550 	return 0;
551 }
552 
coda_try_fmt_vdoa(struct coda_ctx * ctx,struct v4l2_format * f,bool * use_vdoa)553 static int coda_try_fmt_vdoa(struct coda_ctx *ctx, struct v4l2_format *f,
554 			     bool *use_vdoa)
555 {
556 	int err;
557 
558 	if (f->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
559 		return -EINVAL;
560 
561 	if (!use_vdoa)
562 		return -EINVAL;
563 
564 	if (!ctx->vdoa) {
565 		*use_vdoa = false;
566 		return 0;
567 	}
568 
569 	err = vdoa_context_configure(NULL, round_up(f->fmt.pix.width, 16),
570 				     f->fmt.pix.height, f->fmt.pix.pixelformat);
571 	if (err) {
572 		*use_vdoa = false;
573 		return 0;
574 	}
575 
576 	*use_vdoa = true;
577 	return 0;
578 }
579 
coda_estimate_sizeimage(struct coda_ctx * ctx,u32 sizeimage,u32 width,u32 height)580 static unsigned int coda_estimate_sizeimage(struct coda_ctx *ctx, u32 sizeimage,
581 					    u32 width, u32 height)
582 {
583 	/*
584 	 * This is a rough estimate for sensible compressed buffer
585 	 * sizes (between 1 and 16 bits per pixel). This could be
586 	 * improved by better format specific worst case estimates.
587 	 */
588 	return round_up(clamp(sizeimage, width * height / 8,
589 					 width * height * 2), PAGE_SIZE);
590 }
591 
coda_try_fmt(struct coda_ctx * ctx,const struct coda_codec * codec,struct v4l2_format * f)592 static int coda_try_fmt(struct coda_ctx *ctx, const struct coda_codec *codec,
593 			struct v4l2_format *f)
594 {
595 	struct coda_dev *dev = ctx->dev;
596 	unsigned int max_w, max_h;
597 	enum v4l2_field field;
598 
599 	field = f->fmt.pix.field;
600 	if (field == V4L2_FIELD_ANY)
601 		field = V4L2_FIELD_NONE;
602 	else if (V4L2_FIELD_NONE != field)
603 		return -EINVAL;
604 
605 	/* V4L2 specification suggests the driver corrects the format struct
606 	 * if any of the dimensions is unsupported */
607 	f->fmt.pix.field = field;
608 
609 	coda_get_max_dimensions(dev, codec, &max_w, &max_h);
610 	v4l_bound_align_image(&f->fmt.pix.width, MIN_W, max_w, W_ALIGN,
611 			      &f->fmt.pix.height, MIN_H, max_h, H_ALIGN,
612 			      S_ALIGN);
613 
614 	switch (f->fmt.pix.pixelformat) {
615 	case V4L2_PIX_FMT_NV12:
616 	case V4L2_PIX_FMT_YUV420:
617 	case V4L2_PIX_FMT_YVU420:
618 		/*
619 		 * Frame stride must be at least multiple of 8,
620 		 * but multiple of 16 for h.264 or JPEG 4:2:x
621 		 */
622 		f->fmt.pix.bytesperline = round_up(f->fmt.pix.width, 16);
623 		f->fmt.pix.sizeimage = f->fmt.pix.bytesperline *
624 					f->fmt.pix.height * 3 / 2;
625 		break;
626 	case V4L2_PIX_FMT_YUYV:
627 		f->fmt.pix.bytesperline = round_up(f->fmt.pix.width, 16) * 2;
628 		f->fmt.pix.sizeimage = f->fmt.pix.bytesperline *
629 					f->fmt.pix.height;
630 		break;
631 	case V4L2_PIX_FMT_YUV422P:
632 		f->fmt.pix.bytesperline = round_up(f->fmt.pix.width, 16);
633 		f->fmt.pix.sizeimage = f->fmt.pix.bytesperline *
634 					f->fmt.pix.height * 2;
635 		break;
636 	case V4L2_PIX_FMT_GREY:
637 		/* keep 16 pixel alignment of 8-bit pixel data */
638 		f->fmt.pix.bytesperline = round_up(f->fmt.pix.width, 16);
639 		f->fmt.pix.sizeimage = f->fmt.pix.bytesperline * f->fmt.pix.height;
640 		break;
641 	case V4L2_PIX_FMT_JPEG:
642 	case V4L2_PIX_FMT_H264:
643 	case V4L2_PIX_FMT_MPEG4:
644 	case V4L2_PIX_FMT_MPEG2:
645 		f->fmt.pix.bytesperline = 0;
646 		f->fmt.pix.sizeimage = coda_estimate_sizeimage(ctx,
647 							f->fmt.pix.sizeimage,
648 							f->fmt.pix.width,
649 							f->fmt.pix.height);
650 		break;
651 	default:
652 		BUG();
653 	}
654 
655 	return 0;
656 }
657 
coda_try_fmt_vid_cap(struct file * file,void * priv,struct v4l2_format * f)658 static int coda_try_fmt_vid_cap(struct file *file, void *priv,
659 				struct v4l2_format *f)
660 {
661 	struct coda_ctx *ctx = file_to_ctx(file);
662 	const struct coda_q_data *q_data_src;
663 	const struct coda_codec *codec;
664 	struct vb2_queue *src_vq;
665 	int hscale = 0;
666 	int vscale = 0;
667 	int ret;
668 	bool use_vdoa;
669 
670 	ret = coda_try_pixelformat(ctx, f);
671 	if (ret < 0)
672 		return ret;
673 
674 	q_data_src = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_OUTPUT);
675 
676 	/*
677 	 * If the source format is already fixed, only allow the same output
678 	 * resolution. When decoding JPEG images, we also have to make sure to
679 	 * use the same chroma subsampling.
680 	 */
681 	src_vq = v4l2_m2m_get_vq(ctx->fh.m2m_ctx, V4L2_BUF_TYPE_VIDEO_OUTPUT);
682 	if (vb2_is_streaming(src_vq)) {
683 		if (q_data_src->fourcc == V4L2_PIX_FMT_JPEG &&
684 		    ctx->dev->devtype->product == CODA_960) {
685 			hscale = coda_jpeg_scale(q_data_src->width, f->fmt.pix.width);
686 			vscale = coda_jpeg_scale(q_data_src->height, f->fmt.pix.height);
687 		}
688 		f->fmt.pix.width = q_data_src->width >> hscale;
689 		f->fmt.pix.height = q_data_src->height >> vscale;
690 
691 		if (q_data_src->fourcc == V4L2_PIX_FMT_JPEG) {
692 			if (ctx->params.jpeg_chroma_subsampling ==
693 			    V4L2_JPEG_CHROMA_SUBSAMPLING_420 &&
694 			    f->fmt.pix.pixelformat == V4L2_PIX_FMT_YUV422P)
695 				f->fmt.pix.pixelformat = V4L2_PIX_FMT_NV12;
696 			else if (ctx->params.jpeg_chroma_subsampling ==
697 				 V4L2_JPEG_CHROMA_SUBSAMPLING_422)
698 				f->fmt.pix.pixelformat = V4L2_PIX_FMT_YUV422P;
699 		}
700 	}
701 
702 	f->fmt.pix.colorspace = ctx->colorspace;
703 	f->fmt.pix.xfer_func = ctx->xfer_func;
704 	f->fmt.pix.ycbcr_enc = ctx->ycbcr_enc;
705 	f->fmt.pix.quantization = ctx->quantization;
706 
707 	q_data_src = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_OUTPUT);
708 	codec = coda_find_codec(ctx->dev, q_data_src->fourcc,
709 				f->fmt.pix.pixelformat);
710 	if (!codec)
711 		return -EINVAL;
712 
713 	ret = coda_try_fmt(ctx, codec, f);
714 	if (ret < 0)
715 		return ret;
716 
717 	/* The decoders always write complete macroblocks or MCUs */
718 	if (ctx->inst_type == CODA_INST_DECODER) {
719 		f->fmt.pix.bytesperline = round_up(f->fmt.pix.width, 16 >> hscale);
720 		f->fmt.pix.height = round_up(f->fmt.pix.height, 16 >> vscale);
721 		if (codec->src_fourcc == V4L2_PIX_FMT_JPEG &&
722 		    f->fmt.pix.pixelformat == V4L2_PIX_FMT_YUV422P) {
723 			f->fmt.pix.sizeimage = f->fmt.pix.bytesperline *
724 					       f->fmt.pix.height * 2;
725 		} else {
726 			f->fmt.pix.sizeimage = f->fmt.pix.bytesperline *
727 					       f->fmt.pix.height * 3 / 2;
728 		}
729 
730 		ret = coda_try_fmt_vdoa(ctx, f, &use_vdoa);
731 		if (ret < 0)
732 			return ret;
733 
734 		if (f->fmt.pix.pixelformat == V4L2_PIX_FMT_YUYV) {
735 			if (!use_vdoa)
736 				return -EINVAL;
737 
738 			f->fmt.pix.bytesperline = round_up(f->fmt.pix.width, 16) * 2;
739 			f->fmt.pix.sizeimage = f->fmt.pix.bytesperline *
740 				f->fmt.pix.height;
741 		}
742 	}
743 
744 	return 0;
745 }
746 
coda_set_default_colorspace(struct v4l2_pix_format * fmt)747 static void coda_set_default_colorspace(struct v4l2_pix_format *fmt)
748 {
749 	enum v4l2_colorspace colorspace;
750 
751 	if (fmt->pixelformat == V4L2_PIX_FMT_JPEG)
752 		colorspace = V4L2_COLORSPACE_JPEG;
753 	else if (fmt->width <= 720 && fmt->height <= 576)
754 		colorspace = V4L2_COLORSPACE_SMPTE170M;
755 	else
756 		colorspace = V4L2_COLORSPACE_REC709;
757 
758 	fmt->colorspace = colorspace;
759 	fmt->xfer_func = V4L2_XFER_FUNC_DEFAULT;
760 	fmt->ycbcr_enc = V4L2_YCBCR_ENC_DEFAULT;
761 	fmt->quantization = V4L2_QUANTIZATION_DEFAULT;
762 }
763 
coda_try_fmt_vid_out(struct file * file,void * priv,struct v4l2_format * f)764 static int coda_try_fmt_vid_out(struct file *file, void *priv,
765 				struct v4l2_format *f)
766 {
767 	struct coda_ctx *ctx = file_to_ctx(file);
768 	struct coda_dev *dev = ctx->dev;
769 	const struct coda_q_data *q_data_dst;
770 	const struct coda_codec *codec;
771 	int ret;
772 
773 	ret = coda_try_pixelformat(ctx, f);
774 	if (ret < 0)
775 		return ret;
776 
777 	if (f->fmt.pix.colorspace == V4L2_COLORSPACE_DEFAULT)
778 		coda_set_default_colorspace(&f->fmt.pix);
779 
780 	q_data_dst = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_CAPTURE);
781 	codec = coda_find_codec(dev, f->fmt.pix.pixelformat, q_data_dst->fourcc);
782 
783 	return coda_try_fmt(ctx, codec, f);
784 }
785 
coda_s_fmt(struct coda_ctx * ctx,struct v4l2_format * f,struct v4l2_rect * r)786 static int coda_s_fmt(struct coda_ctx *ctx, struct v4l2_format *f,
787 		      struct v4l2_rect *r)
788 {
789 	struct coda_q_data *q_data;
790 	struct vb2_queue *vq;
791 
792 	vq = v4l2_m2m_get_vq(ctx->fh.m2m_ctx, f->type);
793 
794 	q_data = get_q_data(ctx, f->type);
795 	if (!q_data)
796 		return -EINVAL;
797 
798 	if (vb2_is_busy(vq)) {
799 		v4l2_err(&ctx->dev->v4l2_dev, "%s: %s queue busy: %d\n",
800 			 __func__, v4l2_type_names[f->type], vb2_get_num_buffers(vq));
801 		return -EBUSY;
802 	}
803 
804 	q_data->fourcc = f->fmt.pix.pixelformat;
805 	q_data->width = f->fmt.pix.width;
806 	q_data->height = f->fmt.pix.height;
807 	q_data->bytesperline = f->fmt.pix.bytesperline;
808 	q_data->sizeimage = f->fmt.pix.sizeimage;
809 	if (r) {
810 		q_data->rect = *r;
811 	} else {
812 		q_data->rect.left = 0;
813 		q_data->rect.top = 0;
814 		q_data->rect.width = f->fmt.pix.width;
815 		q_data->rect.height = f->fmt.pix.height;
816 	}
817 
818 	switch (f->fmt.pix.pixelformat) {
819 	case V4L2_PIX_FMT_YUYV:
820 		ctx->tiled_map_type = GDI_TILED_FRAME_MB_RASTER_MAP;
821 		break;
822 	case V4L2_PIX_FMT_NV12:
823 		if (!disable_tiling && ctx->use_bit &&
824 		    ctx->dev->devtype->product == CODA_960) {
825 			ctx->tiled_map_type = GDI_TILED_FRAME_MB_RASTER_MAP;
826 			break;
827 		}
828 		fallthrough;
829 	case V4L2_PIX_FMT_YUV420:
830 	case V4L2_PIX_FMT_YVU420:
831 	case V4L2_PIX_FMT_YUV422P:
832 		ctx->tiled_map_type = GDI_LINEAR_FRAME_MAP;
833 		break;
834 	default:
835 		break;
836 	}
837 
838 	if (ctx->tiled_map_type == GDI_TILED_FRAME_MB_RASTER_MAP &&
839 	    !coda_try_fmt_vdoa(ctx, f, &ctx->use_vdoa) &&
840 	    ctx->use_vdoa)
841 		vdoa_context_configure(ctx->vdoa,
842 				       round_up(f->fmt.pix.width, 16),
843 				       f->fmt.pix.height,
844 				       f->fmt.pix.pixelformat);
845 	else
846 		ctx->use_vdoa = false;
847 
848 	coda_dbg(1, ctx, "Setting %s format, wxh: %dx%d, fmt: %4.4s %c\n",
849 		 v4l2_type_names[f->type], q_data->width, q_data->height,
850 		 (char *)&q_data->fourcc,
851 		 (ctx->tiled_map_type == GDI_LINEAR_FRAME_MAP) ? 'L' : 'T');
852 
853 	return 0;
854 }
855 
coda_s_fmt_vid_cap(struct file * file,void * priv,struct v4l2_format * f)856 static int coda_s_fmt_vid_cap(struct file *file, void *priv,
857 			      struct v4l2_format *f)
858 {
859 	struct coda_ctx *ctx = file_to_ctx(file);
860 	struct coda_q_data *q_data_src;
861 	const struct coda_codec *codec;
862 	struct v4l2_rect r;
863 	int hscale = 0;
864 	int vscale = 0;
865 	int ret;
866 
867 	q_data_src = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_OUTPUT);
868 
869 	if (q_data_src->fourcc == V4L2_PIX_FMT_JPEG &&
870 	    ctx->dev->devtype->product == CODA_960) {
871 		hscale = coda_jpeg_scale(q_data_src->width, f->fmt.pix.width);
872 		vscale = coda_jpeg_scale(q_data_src->height, f->fmt.pix.height);
873 	}
874 
875 	ret = coda_try_fmt_vid_cap(file, priv, f);
876 	if (ret)
877 		return ret;
878 
879 	r.left = 0;
880 	r.top = 0;
881 	r.width = q_data_src->width >> hscale;
882 	r.height = q_data_src->height >> vscale;
883 
884 	ret = coda_s_fmt(ctx, f, &r);
885 	if (ret)
886 		return ret;
887 
888 	if (ctx->inst_type != CODA_INST_ENCODER)
889 		return 0;
890 
891 	/* Setting the coded format determines the selected codec */
892 	codec = coda_find_codec(ctx->dev, q_data_src->fourcc,
893 				f->fmt.pix.pixelformat);
894 	if (!codec) {
895 		v4l2_err(&ctx->dev->v4l2_dev, "failed to determine codec\n");
896 		return -EINVAL;
897 	}
898 	ctx->codec = codec;
899 
900 	ctx->colorspace = f->fmt.pix.colorspace;
901 	ctx->xfer_func = f->fmt.pix.xfer_func;
902 	ctx->ycbcr_enc = f->fmt.pix.ycbcr_enc;
903 	ctx->quantization = f->fmt.pix.quantization;
904 
905 	return 0;
906 }
907 
coda_s_fmt_vid_out(struct file * file,void * priv,struct v4l2_format * f)908 static int coda_s_fmt_vid_out(struct file *file, void *priv,
909 			      struct v4l2_format *f)
910 {
911 	struct coda_ctx *ctx = file_to_ctx(file);
912 	const struct coda_codec *codec;
913 	struct v4l2_format f_cap;
914 	struct vb2_queue *dst_vq;
915 	int ret;
916 
917 	ret = coda_try_fmt_vid_out(file, priv, f);
918 	if (ret)
919 		return ret;
920 
921 	ret = coda_s_fmt(ctx, f, NULL);
922 	if (ret)
923 		return ret;
924 
925 	ctx->colorspace = f->fmt.pix.colorspace;
926 	ctx->xfer_func = f->fmt.pix.xfer_func;
927 	ctx->ycbcr_enc = f->fmt.pix.ycbcr_enc;
928 	ctx->quantization = f->fmt.pix.quantization;
929 
930 	if (ctx->inst_type != CODA_INST_DECODER)
931 		return 0;
932 
933 	/* Setting the coded format determines the selected codec */
934 	codec = coda_find_codec(ctx->dev, f->fmt.pix.pixelformat,
935 				V4L2_PIX_FMT_YUV420);
936 	if (!codec) {
937 		v4l2_err(&ctx->dev->v4l2_dev, "failed to determine codec\n");
938 		return -EINVAL;
939 	}
940 	ctx->codec = codec;
941 
942 	dst_vq = v4l2_m2m_get_vq(ctx->fh.m2m_ctx, V4L2_BUF_TYPE_VIDEO_CAPTURE);
943 
944 	/*
945 	 * Setting the capture queue format is not possible while the capture
946 	 * queue is still busy. This is not an error, but the user will have to
947 	 * make sure themselves that the capture format is set correctly before
948 	 * starting the output queue again.
949 	 */
950 	if (vb2_is_busy(dst_vq))
951 		return 0;
952 
953 	memset(&f_cap, 0, sizeof(f_cap));
954 	f_cap.type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
955 	coda_g_fmt(file, priv, &f_cap);
956 	f_cap.fmt.pix.width = f->fmt.pix.width;
957 	f_cap.fmt.pix.height = f->fmt.pix.height;
958 
959 	return coda_s_fmt_vid_cap(file, priv, &f_cap);
960 }
961 
coda_reqbufs(struct file * file,void * priv,struct v4l2_requestbuffers * rb)962 static int coda_reqbufs(struct file *file, void *priv,
963 			struct v4l2_requestbuffers *rb)
964 {
965 	struct coda_ctx *ctx = file_to_ctx(file);
966 	int ret;
967 
968 	ret = v4l2_m2m_reqbufs(file, ctx->fh.m2m_ctx, rb);
969 	if (ret)
970 		return ret;
971 
972 	/*
973 	 * Allow to allocate instance specific per-context buffers, such as
974 	 * bitstream ringbuffer, slice buffer, work buffer, etc. if needed.
975 	 */
976 	if (rb->type == V4L2_BUF_TYPE_VIDEO_OUTPUT && ctx->ops->reqbufs)
977 		return ctx->ops->reqbufs(ctx, rb);
978 
979 	return 0;
980 }
981 
coda_qbuf(struct file * file,void * priv,struct v4l2_buffer * buf)982 static int coda_qbuf(struct file *file, void *priv,
983 		     struct v4l2_buffer *buf)
984 {
985 	struct coda_ctx *ctx = file_to_ctx(file);
986 
987 	if (ctx->inst_type == CODA_INST_DECODER &&
988 	    buf->type == V4L2_BUF_TYPE_VIDEO_OUTPUT)
989 		buf->flags &= ~V4L2_BUF_FLAG_LAST;
990 
991 	return v4l2_m2m_qbuf(file, ctx->fh.m2m_ctx, buf);
992 }
993 
coda_dqbuf(struct file * file,void * priv,struct v4l2_buffer * buf)994 static int coda_dqbuf(struct file *file, void *priv, struct v4l2_buffer *buf)
995 {
996 	struct coda_ctx *ctx = file_to_ctx(file);
997 	int ret;
998 
999 	ret = v4l2_m2m_dqbuf(file, ctx->fh.m2m_ctx, buf);
1000 
1001 	if (ctx->inst_type == CODA_INST_DECODER &&
1002 	    buf->type == V4L2_BUF_TYPE_VIDEO_OUTPUT)
1003 		buf->flags &= ~V4L2_BUF_FLAG_LAST;
1004 
1005 	return ret;
1006 }
1007 
coda_m2m_buf_done(struct coda_ctx * ctx,struct vb2_v4l2_buffer * buf,enum vb2_buffer_state state)1008 void coda_m2m_buf_done(struct coda_ctx *ctx, struct vb2_v4l2_buffer *buf,
1009 		       enum vb2_buffer_state state)
1010 {
1011 	const struct v4l2_event eos_event = {
1012 		.type = V4L2_EVENT_EOS
1013 	};
1014 
1015 	if (buf->flags & V4L2_BUF_FLAG_LAST)
1016 		v4l2_event_queue_fh(&ctx->fh, &eos_event);
1017 
1018 	v4l2_m2m_buf_done(buf, state);
1019 }
1020 
coda_g_selection(struct file * file,void * fh,struct v4l2_selection * s)1021 static int coda_g_selection(struct file *file, void *fh,
1022 			    struct v4l2_selection *s)
1023 {
1024 	struct coda_ctx *ctx = file_to_ctx(file);
1025 	struct coda_q_data *q_data;
1026 	struct v4l2_rect r, *rsel;
1027 
1028 	q_data = get_q_data(ctx, s->type);
1029 	if (!q_data)
1030 		return -EINVAL;
1031 
1032 	r.left = 0;
1033 	r.top = 0;
1034 	r.width = q_data->width;
1035 	r.height = q_data->height;
1036 	rsel = &q_data->rect;
1037 
1038 	switch (s->target) {
1039 	case V4L2_SEL_TGT_CROP_DEFAULT:
1040 	case V4L2_SEL_TGT_CROP_BOUNDS:
1041 		rsel = &r;
1042 		fallthrough;
1043 	case V4L2_SEL_TGT_CROP:
1044 		if (s->type != V4L2_BUF_TYPE_VIDEO_OUTPUT ||
1045 		    ctx->inst_type == CODA_INST_DECODER)
1046 			return -EINVAL;
1047 		break;
1048 	case V4L2_SEL_TGT_COMPOSE_BOUNDS:
1049 	case V4L2_SEL_TGT_COMPOSE_PADDED:
1050 		rsel = &r;
1051 		fallthrough;
1052 	case V4L2_SEL_TGT_COMPOSE:
1053 	case V4L2_SEL_TGT_COMPOSE_DEFAULT:
1054 		if (s->type != V4L2_BUF_TYPE_VIDEO_CAPTURE ||
1055 		    ctx->inst_type == CODA_INST_ENCODER)
1056 			return -EINVAL;
1057 		break;
1058 	default:
1059 		return -EINVAL;
1060 	}
1061 
1062 	s->r = *rsel;
1063 
1064 	return 0;
1065 }
1066 
coda_s_selection(struct file * file,void * fh,struct v4l2_selection * s)1067 static int coda_s_selection(struct file *file, void *fh,
1068 			    struct v4l2_selection *s)
1069 {
1070 	struct coda_ctx *ctx = file_to_ctx(file);
1071 	struct coda_q_data *q_data;
1072 
1073 	switch (s->target) {
1074 	case V4L2_SEL_TGT_CROP:
1075 		if (ctx->inst_type == CODA_INST_ENCODER &&
1076 		    s->type == V4L2_BUF_TYPE_VIDEO_OUTPUT) {
1077 			q_data = get_q_data(ctx, s->type);
1078 			if (!q_data)
1079 				return -EINVAL;
1080 
1081 			s->r.left = 0;
1082 			s->r.top = 0;
1083 			s->r.width = clamp(s->r.width, 2U, q_data->width);
1084 			s->r.height = clamp(s->r.height, 2U, q_data->height);
1085 
1086 			if (s->flags & V4L2_SEL_FLAG_LE) {
1087 				s->r.width = round_up(s->r.width, 2);
1088 				s->r.height = round_up(s->r.height, 2);
1089 			} else {
1090 				s->r.width = round_down(s->r.width, 2);
1091 				s->r.height = round_down(s->r.height, 2);
1092 			}
1093 
1094 			q_data->rect = s->r;
1095 
1096 			coda_dbg(1, ctx, "Setting crop rectangle: %dx%d\n",
1097 				 s->r.width, s->r.height);
1098 
1099 			return 0;
1100 		}
1101 		fallthrough;
1102 	case V4L2_SEL_TGT_NATIVE_SIZE:
1103 	case V4L2_SEL_TGT_COMPOSE:
1104 		return coda_g_selection(file, fh, s);
1105 	default:
1106 		/* v4l2-compliance expects this to fail for read-only targets */
1107 		return -EINVAL;
1108 	}
1109 }
1110 
coda_wake_up_capture_queue(struct coda_ctx * ctx)1111 static void coda_wake_up_capture_queue(struct coda_ctx *ctx)
1112 {
1113 	struct vb2_queue *dst_vq;
1114 
1115 	coda_dbg(1, ctx, "waking up capture queue\n");
1116 
1117 	dst_vq = v4l2_m2m_get_vq(ctx->fh.m2m_ctx, V4L2_BUF_TYPE_VIDEO_CAPTURE);
1118 	dst_vq->last_buffer_dequeued = true;
1119 	wake_up(&dst_vq->done_wq);
1120 }
1121 
coda_encoder_cmd(struct file * file,void * fh,struct v4l2_encoder_cmd * ec)1122 static int coda_encoder_cmd(struct file *file, void *fh,
1123 			    struct v4l2_encoder_cmd *ec)
1124 {
1125 	struct coda_ctx *ctx = file_to_ctx(file);
1126 	struct vb2_v4l2_buffer *buf;
1127 	int ret;
1128 
1129 	ret = v4l2_m2m_ioctl_try_encoder_cmd(file, fh, ec);
1130 	if (ret < 0)
1131 		return ret;
1132 
1133 	mutex_lock(&ctx->wakeup_mutex);
1134 	buf = v4l2_m2m_last_src_buf(ctx->fh.m2m_ctx);
1135 	if (buf) {
1136 		/*
1137 		 * If the last output buffer is still on the queue, make sure
1138 		 * that decoder finish_run will see the last flag and report it
1139 		 * to userspace.
1140 		 */
1141 		buf->flags |= V4L2_BUF_FLAG_LAST;
1142 	} else {
1143 		/* Set the stream-end flag on this context */
1144 		ctx->bit_stream_param |= CODA_BIT_STREAM_END_FLAG;
1145 
1146 		/*
1147 		 * If the last output buffer has already been taken from the
1148 		 * queue, wake up the capture queue and signal end of stream
1149 		 * via the -EPIPE mechanism.
1150 		 */
1151 		coda_wake_up_capture_queue(ctx);
1152 	}
1153 	mutex_unlock(&ctx->wakeup_mutex);
1154 
1155 	return 0;
1156 }
1157 
coda_mark_last_meta(struct coda_ctx * ctx)1158 static bool coda_mark_last_meta(struct coda_ctx *ctx)
1159 {
1160 	struct coda_buffer_meta *meta;
1161 
1162 	coda_dbg(1, ctx, "marking last meta\n");
1163 
1164 	spin_lock(&ctx->buffer_meta_lock);
1165 	if (list_empty(&ctx->buffer_meta_list)) {
1166 		spin_unlock(&ctx->buffer_meta_lock);
1167 		return false;
1168 	}
1169 
1170 	meta = list_last_entry(&ctx->buffer_meta_list, struct coda_buffer_meta,
1171 			       list);
1172 	meta->last = true;
1173 
1174 	spin_unlock(&ctx->buffer_meta_lock);
1175 	return true;
1176 }
1177 
coda_mark_last_dst_buf(struct coda_ctx * ctx)1178 static bool coda_mark_last_dst_buf(struct coda_ctx *ctx)
1179 {
1180 	struct vb2_v4l2_buffer *buf;
1181 	struct vb2_buffer *dst_vb;
1182 	struct vb2_queue *dst_vq;
1183 	unsigned long flags;
1184 
1185 	coda_dbg(1, ctx, "marking last capture buffer\n");
1186 
1187 	dst_vq = v4l2_m2m_get_vq(ctx->fh.m2m_ctx, V4L2_BUF_TYPE_VIDEO_CAPTURE);
1188 	spin_lock_irqsave(&dst_vq->done_lock, flags);
1189 	if (list_empty(&dst_vq->done_list)) {
1190 		spin_unlock_irqrestore(&dst_vq->done_lock, flags);
1191 		return false;
1192 	}
1193 
1194 	dst_vb = list_last_entry(&dst_vq->done_list, struct vb2_buffer,
1195 				 done_entry);
1196 	buf = to_vb2_v4l2_buffer(dst_vb);
1197 	buf->flags |= V4L2_BUF_FLAG_LAST;
1198 
1199 	spin_unlock_irqrestore(&dst_vq->done_lock, flags);
1200 	return true;
1201 }
1202 
coda_decoder_cmd(struct file * file,void * fh,struct v4l2_decoder_cmd * dc)1203 static int coda_decoder_cmd(struct file *file, void *fh,
1204 			    struct v4l2_decoder_cmd *dc)
1205 {
1206 	struct coda_ctx *ctx = file_to_ctx(file);
1207 	struct coda_dev *dev = ctx->dev;
1208 	struct vb2_v4l2_buffer *buf;
1209 	struct vb2_queue *dst_vq;
1210 	bool stream_end;
1211 	bool wakeup;
1212 	int ret;
1213 
1214 	ret = v4l2_m2m_ioctl_try_decoder_cmd(file, fh, dc);
1215 	if (ret < 0)
1216 		return ret;
1217 
1218 	switch (dc->cmd) {
1219 	case V4L2_DEC_CMD_START:
1220 		mutex_lock(&dev->coda_mutex);
1221 		mutex_lock(&ctx->bitstream_mutex);
1222 		coda_bitstream_flush(ctx);
1223 		dst_vq = v4l2_m2m_get_vq(ctx->fh.m2m_ctx,
1224 					 V4L2_BUF_TYPE_VIDEO_CAPTURE);
1225 		vb2_clear_last_buffer_dequeued(dst_vq);
1226 		ctx->bit_stream_param &= ~CODA_BIT_STREAM_END_FLAG;
1227 		coda_fill_bitstream(ctx, NULL);
1228 		mutex_unlock(&ctx->bitstream_mutex);
1229 		mutex_unlock(&dev->coda_mutex);
1230 		break;
1231 	case V4L2_DEC_CMD_STOP:
1232 		stream_end = false;
1233 		wakeup = false;
1234 
1235 		mutex_lock(&ctx->wakeup_mutex);
1236 
1237 		buf = v4l2_m2m_last_src_buf(ctx->fh.m2m_ctx);
1238 		if (buf) {
1239 			coda_dbg(1, ctx, "marking last pending buffer\n");
1240 
1241 			/* Mark last buffer */
1242 			buf->flags |= V4L2_BUF_FLAG_LAST;
1243 
1244 			if (v4l2_m2m_num_src_bufs_ready(ctx->fh.m2m_ctx) == 0) {
1245 				coda_dbg(1, ctx, "all remaining buffers queued\n");
1246 				stream_end = true;
1247 			}
1248 		} else {
1249 			if (ctx->use_bit)
1250 				if (coda_mark_last_meta(ctx))
1251 					stream_end = true;
1252 				else
1253 					wakeup = true;
1254 			else
1255 				if (!coda_mark_last_dst_buf(ctx))
1256 					wakeup = true;
1257 		}
1258 
1259 		if (stream_end) {
1260 			coda_dbg(1, ctx, "all remaining buffers queued\n");
1261 
1262 			/* Set the stream-end flag on this context */
1263 			coda_bit_stream_end_flag(ctx);
1264 			ctx->hold = false;
1265 			v4l2_m2m_try_schedule(ctx->fh.m2m_ctx);
1266 		}
1267 
1268 		if (wakeup) {
1269 			/* If there is no buffer in flight, wake up */
1270 			coda_wake_up_capture_queue(ctx);
1271 		}
1272 
1273 		mutex_unlock(&ctx->wakeup_mutex);
1274 		break;
1275 	default:
1276 		return -EINVAL;
1277 	}
1278 
1279 	return 0;
1280 }
1281 
coda_enum_framesizes(struct file * file,void * fh,struct v4l2_frmsizeenum * fsize)1282 static int coda_enum_framesizes(struct file *file, void *fh,
1283 				struct v4l2_frmsizeenum *fsize)
1284 {
1285 	struct coda_ctx *ctx = file_to_ctx(file);
1286 	struct coda_q_data *q_data_dst;
1287 	const struct coda_codec *codec;
1288 
1289 	if (fsize->index)
1290 		return -EINVAL;
1291 
1292 	if (coda_format_normalize_yuv(fsize->pixel_format) ==
1293 	    V4L2_PIX_FMT_YUV420) {
1294 		q_data_dst = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_CAPTURE);
1295 		codec = coda_find_codec(ctx->dev, fsize->pixel_format,
1296 					q_data_dst->fourcc);
1297 	} else {
1298 		codec = coda_find_codec(ctx->dev, V4L2_PIX_FMT_YUV420,
1299 					fsize->pixel_format);
1300 	}
1301 	if (!codec)
1302 		return -EINVAL;
1303 
1304 	fsize->type = V4L2_FRMSIZE_TYPE_CONTINUOUS;
1305 	fsize->stepwise.min_width = MIN_W;
1306 	fsize->stepwise.max_width = codec->max_w;
1307 	fsize->stepwise.step_width = 1;
1308 	fsize->stepwise.min_height = MIN_H;
1309 	fsize->stepwise.max_height = codec->max_h;
1310 	fsize->stepwise.step_height = 1;
1311 
1312 	return 0;
1313 }
1314 
coda_enum_frameintervals(struct file * file,void * fh,struct v4l2_frmivalenum * f)1315 static int coda_enum_frameintervals(struct file *file, void *fh,
1316 				    struct v4l2_frmivalenum *f)
1317 {
1318 	struct coda_ctx *ctx = file_to_ctx(file);
1319 	struct coda_q_data *q_data;
1320 	const struct coda_codec *codec;
1321 
1322 	if (f->index)
1323 		return -EINVAL;
1324 
1325 	/* Disallow YUYV if the vdoa is not available */
1326 	if (!ctx->vdoa && f->pixel_format == V4L2_PIX_FMT_YUYV)
1327 		return -EINVAL;
1328 
1329 	if (coda_format_normalize_yuv(f->pixel_format) == V4L2_PIX_FMT_YUV420) {
1330 		q_data = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_CAPTURE);
1331 		codec = coda_find_codec(ctx->dev, f->pixel_format,
1332 					q_data->fourcc);
1333 	} else {
1334 		codec = coda_find_codec(ctx->dev, V4L2_PIX_FMT_YUV420,
1335 					f->pixel_format);
1336 	}
1337 	if (!codec)
1338 		return -EINVAL;
1339 
1340 	if (f->width < MIN_W || f->width > codec->max_w ||
1341 	    f->height < MIN_H || f->height > codec->max_h)
1342 		return -EINVAL;
1343 
1344 	f->type = V4L2_FRMIVAL_TYPE_CONTINUOUS;
1345 	f->stepwise.min.numerator = 1;
1346 	f->stepwise.min.denominator = 65535;
1347 	f->stepwise.max.numerator = 65536;
1348 	f->stepwise.max.denominator = 1;
1349 	f->stepwise.step.numerator = 1;
1350 	f->stepwise.step.denominator = 1;
1351 
1352 	return 0;
1353 }
1354 
coda_g_parm(struct file * file,void * fh,struct v4l2_streamparm * a)1355 static int coda_g_parm(struct file *file, void *fh, struct v4l2_streamparm *a)
1356 {
1357 	struct coda_ctx *ctx = file_to_ctx(file);
1358 	struct v4l2_fract *tpf;
1359 
1360 	if (a->type != V4L2_BUF_TYPE_VIDEO_OUTPUT)
1361 		return -EINVAL;
1362 
1363 	a->parm.output.capability = V4L2_CAP_TIMEPERFRAME;
1364 	tpf = &a->parm.output.timeperframe;
1365 	tpf->denominator = ctx->params.framerate & CODA_FRATE_RES_MASK;
1366 	tpf->numerator = 1 + (ctx->params.framerate >>
1367 			      CODA_FRATE_DIV_OFFSET);
1368 
1369 	return 0;
1370 }
1371 
1372 /*
1373  * Approximate timeperframe v4l2_fract with values that can be written
1374  * into the 16-bit CODA_FRATE_DIV and CODA_FRATE_RES fields.
1375  */
coda_approximate_timeperframe(struct v4l2_fract * timeperframe)1376 static void coda_approximate_timeperframe(struct v4l2_fract *timeperframe)
1377 {
1378 	struct v4l2_fract s = *timeperframe;
1379 	struct v4l2_fract f0;
1380 	struct v4l2_fract f1 = { 1, 0 };
1381 	struct v4l2_fract f2 = { 0, 1 };
1382 	unsigned int i, div, s_denominator;
1383 
1384 	/* Lower bound is 1/65535 */
1385 	if (s.numerator == 0 || s.denominator / s.numerator > 65535) {
1386 		timeperframe->numerator = 1;
1387 		timeperframe->denominator = 65535;
1388 		return;
1389 	}
1390 
1391 	/* Upper bound is 65536/1 */
1392 	if (s.denominator == 0 || s.numerator / s.denominator > 65536) {
1393 		timeperframe->numerator = 65536;
1394 		timeperframe->denominator = 1;
1395 		return;
1396 	}
1397 
1398 	/* Reduce fraction to lowest terms */
1399 	div = gcd(s.numerator, s.denominator);
1400 	if (div > 1) {
1401 		s.numerator /= div;
1402 		s.denominator /= div;
1403 	}
1404 
1405 	if (s.numerator <= 65536 && s.denominator < 65536) {
1406 		*timeperframe = s;
1407 		return;
1408 	}
1409 
1410 	/* Find successive convergents from continued fraction expansion */
1411 	while (f2.numerator <= 65536 && f2.denominator < 65536) {
1412 		f0 = f1;
1413 		f1 = f2;
1414 
1415 		/* Stop when f2 exactly equals timeperframe */
1416 		if (s.numerator == 0)
1417 			break;
1418 
1419 		i = s.denominator / s.numerator;
1420 
1421 		f2.numerator = f0.numerator + i * f1.numerator;
1422 		f2.denominator = f0.denominator + i * f2.denominator;
1423 
1424 		s_denominator = s.numerator;
1425 		s.numerator = s.denominator % s.numerator;
1426 		s.denominator = s_denominator;
1427 	}
1428 
1429 	*timeperframe = f1;
1430 }
1431 
coda_timeperframe_to_frate(struct v4l2_fract * timeperframe)1432 static uint32_t coda_timeperframe_to_frate(struct v4l2_fract *timeperframe)
1433 {
1434 	return ((timeperframe->numerator - 1) << CODA_FRATE_DIV_OFFSET) |
1435 		timeperframe->denominator;
1436 }
1437 
coda_s_parm(struct file * file,void * fh,struct v4l2_streamparm * a)1438 static int coda_s_parm(struct file *file, void *fh, struct v4l2_streamparm *a)
1439 {
1440 	struct coda_ctx *ctx = file_to_ctx(file);
1441 	struct v4l2_fract *tpf;
1442 
1443 	if (a->type != V4L2_BUF_TYPE_VIDEO_OUTPUT)
1444 		return -EINVAL;
1445 
1446 	a->parm.output.capability = V4L2_CAP_TIMEPERFRAME;
1447 	tpf = &a->parm.output.timeperframe;
1448 	coda_approximate_timeperframe(tpf);
1449 	ctx->params.framerate = coda_timeperframe_to_frate(tpf);
1450 	ctx->params.framerate_changed = true;
1451 
1452 	return 0;
1453 }
1454 
coda_subscribe_event(struct v4l2_fh * fh,const struct v4l2_event_subscription * sub)1455 static int coda_subscribe_event(struct v4l2_fh *fh,
1456 				const struct v4l2_event_subscription *sub)
1457 {
1458 	struct coda_ctx *ctx = fh_to_ctx(fh);
1459 
1460 	switch (sub->type) {
1461 	case V4L2_EVENT_EOS:
1462 		return v4l2_event_subscribe(fh, sub, 0, NULL);
1463 	case V4L2_EVENT_SOURCE_CHANGE:
1464 		if (ctx->inst_type == CODA_INST_DECODER)
1465 			return v4l2_event_subscribe(fh, sub, 0, NULL);
1466 		else
1467 			return -EINVAL;
1468 	default:
1469 		return v4l2_ctrl_subscribe_event(fh, sub);
1470 	}
1471 }
1472 
1473 static const struct v4l2_ioctl_ops coda_ioctl_ops = {
1474 	.vidioc_querycap	= coda_querycap,
1475 
1476 	.vidioc_enum_fmt_vid_cap = coda_enum_fmt,
1477 	.vidioc_g_fmt_vid_cap	= coda_g_fmt,
1478 	.vidioc_try_fmt_vid_cap	= coda_try_fmt_vid_cap,
1479 	.vidioc_s_fmt_vid_cap	= coda_s_fmt_vid_cap,
1480 
1481 	.vidioc_enum_fmt_vid_out = coda_enum_fmt,
1482 	.vidioc_g_fmt_vid_out	= coda_g_fmt,
1483 	.vidioc_try_fmt_vid_out	= coda_try_fmt_vid_out,
1484 	.vidioc_s_fmt_vid_out	= coda_s_fmt_vid_out,
1485 
1486 	.vidioc_reqbufs		= coda_reqbufs,
1487 	.vidioc_querybuf	= v4l2_m2m_ioctl_querybuf,
1488 
1489 	.vidioc_qbuf		= coda_qbuf,
1490 	.vidioc_expbuf		= v4l2_m2m_ioctl_expbuf,
1491 	.vidioc_dqbuf		= coda_dqbuf,
1492 	.vidioc_create_bufs	= v4l2_m2m_ioctl_create_bufs,
1493 	.vidioc_prepare_buf	= v4l2_m2m_ioctl_prepare_buf,
1494 
1495 	.vidioc_streamon	= v4l2_m2m_ioctl_streamon,
1496 	.vidioc_streamoff	= v4l2_m2m_ioctl_streamoff,
1497 
1498 	.vidioc_g_selection	= coda_g_selection,
1499 	.vidioc_s_selection	= coda_s_selection,
1500 
1501 	.vidioc_try_encoder_cmd	= v4l2_m2m_ioctl_try_encoder_cmd,
1502 	.vidioc_encoder_cmd	= coda_encoder_cmd,
1503 	.vidioc_try_decoder_cmd	= v4l2_m2m_ioctl_try_decoder_cmd,
1504 	.vidioc_decoder_cmd	= coda_decoder_cmd,
1505 
1506 	.vidioc_g_parm		= coda_g_parm,
1507 	.vidioc_s_parm		= coda_s_parm,
1508 
1509 	.vidioc_enum_framesizes	= coda_enum_framesizes,
1510 	.vidioc_enum_frameintervals = coda_enum_frameintervals,
1511 
1512 	.vidioc_subscribe_event = coda_subscribe_event,
1513 	.vidioc_unsubscribe_event = v4l2_event_unsubscribe,
1514 };
1515 
1516 /*
1517  * Mem-to-mem operations.
1518  */
1519 
coda_device_run(void * m2m_priv)1520 static void coda_device_run(void *m2m_priv)
1521 {
1522 	struct coda_ctx *ctx = m2m_priv;
1523 	struct coda_dev *dev = ctx->dev;
1524 
1525 	queue_work(dev->workqueue, &ctx->pic_run_work);
1526 }
1527 
coda_pic_run_work(struct work_struct * work)1528 static void coda_pic_run_work(struct work_struct *work)
1529 {
1530 	struct coda_ctx *ctx = container_of(work, struct coda_ctx, pic_run_work);
1531 	struct coda_dev *dev = ctx->dev;
1532 	int ret;
1533 
1534 	mutex_lock(&ctx->buffer_mutex);
1535 	mutex_lock(&dev->coda_mutex);
1536 
1537 	ret = ctx->ops->prepare_run(ctx);
1538 	if (ret < 0 && ctx->inst_type == CODA_INST_DECODER)
1539 		goto out;
1540 
1541 	if (!wait_for_completion_timeout(&ctx->completion,
1542 					 msecs_to_jiffies(1000))) {
1543 		if (ctx->use_bit) {
1544 			dev_err(dev->dev, "CODA PIC_RUN timeout\n");
1545 
1546 			ctx->hold = true;
1547 
1548 			coda_hw_reset(ctx);
1549 		}
1550 
1551 		if (ctx->ops->run_timeout)
1552 			ctx->ops->run_timeout(ctx);
1553 	} else {
1554 		ctx->ops->finish_run(ctx);
1555 	}
1556 
1557 	if ((ctx->aborting || (!ctx->streamon_cap && !ctx->streamon_out)) &&
1558 	    ctx->ops->seq_end_work)
1559 		queue_work(dev->workqueue, &ctx->seq_end_work);
1560 
1561 out:
1562 	mutex_unlock(&dev->coda_mutex);
1563 	mutex_unlock(&ctx->buffer_mutex);
1564 
1565 	v4l2_m2m_job_finish(ctx->dev->m2m_dev, ctx->fh.m2m_ctx);
1566 }
1567 
coda_job_ready(void * m2m_priv)1568 static int coda_job_ready(void *m2m_priv)
1569 {
1570 	struct coda_ctx *ctx = m2m_priv;
1571 	int src_bufs = v4l2_m2m_num_src_bufs_ready(ctx->fh.m2m_ctx);
1572 
1573 	/*
1574 	 * For both 'P' and 'key' frame cases 1 picture
1575 	 * and 1 frame are needed. In the decoder case,
1576 	 * the compressed frame can be in the bitstream.
1577 	 */
1578 	if (!src_bufs && ctx->inst_type != CODA_INST_DECODER) {
1579 		coda_dbg(1, ctx, "not ready: not enough vid-out buffers.\n");
1580 		return 0;
1581 	}
1582 
1583 	if (!v4l2_m2m_num_dst_bufs_ready(ctx->fh.m2m_ctx)) {
1584 		coda_dbg(1, ctx, "not ready: not enough vid-cap buffers.\n");
1585 		return 0;
1586 	}
1587 
1588 	if (ctx->inst_type == CODA_INST_DECODER && ctx->use_bit) {
1589 		bool stream_end = ctx->bit_stream_param &
1590 				  CODA_BIT_STREAM_END_FLAG;
1591 		int num_metas = ctx->num_metas;
1592 		struct coda_buffer_meta *meta;
1593 		unsigned int count;
1594 
1595 		count = hweight32(ctx->frm_dis_flg);
1596 		if (ctx->use_vdoa && count >= (ctx->num_internal_frames - 1)) {
1597 			coda_dbg(1, ctx,
1598 				 "not ready: all internal buffers in use: %d/%d (0x%x)",
1599 				 count, ctx->num_internal_frames,
1600 				 ctx->frm_dis_flg);
1601 			return 0;
1602 		}
1603 
1604 		if (ctx->hold && !src_bufs) {
1605 			coda_dbg(1, ctx,
1606 				 "not ready: on hold for more buffers.\n");
1607 			return 0;
1608 		}
1609 
1610 		if (!stream_end && (num_metas + src_bufs) < 2) {
1611 			coda_dbg(1, ctx,
1612 				 "not ready: need 2 buffers available (queue:%d + bitstream:%d)\n",
1613 				 num_metas, src_bufs);
1614 			return 0;
1615 		}
1616 
1617 		meta = list_first_entry(&ctx->buffer_meta_list,
1618 					struct coda_buffer_meta, list);
1619 		if (!coda_bitstream_can_fetch_past(ctx, meta->end) &&
1620 		    !stream_end) {
1621 			coda_dbg(1, ctx,
1622 				 "not ready: not enough bitstream data to read past %u (%u)\n",
1623 				 meta->end, ctx->bitstream_fifo.kfifo.in);
1624 			return 0;
1625 		}
1626 	}
1627 
1628 	if (ctx->aborting) {
1629 		coda_dbg(1, ctx, "not ready: aborting\n");
1630 		return 0;
1631 	}
1632 
1633 	coda_dbg(2, ctx, "job ready\n");
1634 
1635 	return 1;
1636 }
1637 
coda_job_abort(void * priv)1638 static void coda_job_abort(void *priv)
1639 {
1640 	struct coda_ctx *ctx = priv;
1641 
1642 	ctx->aborting = 1;
1643 
1644 	coda_dbg(1, ctx, "job abort\n");
1645 }
1646 
1647 static const struct v4l2_m2m_ops coda_m2m_ops = {
1648 	.device_run	= coda_device_run,
1649 	.job_ready	= coda_job_ready,
1650 	.job_abort	= coda_job_abort,
1651 };
1652 
set_default_params(struct coda_ctx * ctx)1653 static void set_default_params(struct coda_ctx *ctx)
1654 {
1655 	unsigned int max_w, max_h, usize, csize;
1656 
1657 	ctx->codec = coda_find_codec(ctx->dev, ctx->cvd->src_formats[0],
1658 				     ctx->cvd->dst_formats[0]);
1659 	max_w = min(ctx->codec->max_w, 1920U);
1660 	max_h = min(ctx->codec->max_h, 1088U);
1661 	usize = max_w * max_h * 3 / 2;
1662 	csize = coda_estimate_sizeimage(ctx, usize, max_w, max_h);
1663 
1664 	ctx->params.codec_mode = ctx->codec->mode;
1665 	if (ctx->cvd->src_formats[0] == V4L2_PIX_FMT_JPEG ||
1666 	    ctx->cvd->dst_formats[0] == V4L2_PIX_FMT_JPEG) {
1667 		ctx->colorspace = V4L2_COLORSPACE_SRGB;
1668 		ctx->xfer_func = V4L2_XFER_FUNC_SRGB;
1669 		ctx->ycbcr_enc = V4L2_YCBCR_ENC_601;
1670 		ctx->quantization = V4L2_QUANTIZATION_FULL_RANGE;
1671 	} else {
1672 		ctx->colorspace = V4L2_COLORSPACE_REC709;
1673 		ctx->xfer_func = V4L2_XFER_FUNC_DEFAULT;
1674 		ctx->ycbcr_enc = V4L2_YCBCR_ENC_DEFAULT;
1675 		ctx->quantization = V4L2_QUANTIZATION_DEFAULT;
1676 	}
1677 	ctx->params.framerate = 30;
1678 
1679 	/* Default formats for output and input queues */
1680 	ctx->q_data[V4L2_M2M_SRC].fourcc = ctx->cvd->src_formats[0];
1681 	ctx->q_data[V4L2_M2M_DST].fourcc = ctx->cvd->dst_formats[0];
1682 	ctx->q_data[V4L2_M2M_SRC].width = max_w;
1683 	ctx->q_data[V4L2_M2M_SRC].height = max_h;
1684 	ctx->q_data[V4L2_M2M_DST].width = max_w;
1685 	ctx->q_data[V4L2_M2M_DST].height = max_h;
1686 	if (ctx->codec->src_fourcc == V4L2_PIX_FMT_YUV420) {
1687 		ctx->q_data[V4L2_M2M_SRC].bytesperline = max_w;
1688 		ctx->q_data[V4L2_M2M_SRC].sizeimage = usize;
1689 		ctx->q_data[V4L2_M2M_DST].bytesperline = 0;
1690 		ctx->q_data[V4L2_M2M_DST].sizeimage = csize;
1691 	} else {
1692 		ctx->q_data[V4L2_M2M_SRC].bytesperline = 0;
1693 		ctx->q_data[V4L2_M2M_SRC].sizeimage = csize;
1694 		ctx->q_data[V4L2_M2M_DST].bytesperline = max_w;
1695 		ctx->q_data[V4L2_M2M_DST].sizeimage = usize;
1696 	}
1697 	ctx->q_data[V4L2_M2M_SRC].rect.width = max_w;
1698 	ctx->q_data[V4L2_M2M_SRC].rect.height = max_h;
1699 	ctx->q_data[V4L2_M2M_DST].rect.width = max_w;
1700 	ctx->q_data[V4L2_M2M_DST].rect.height = max_h;
1701 
1702 	/*
1703 	 * Since the RBC2AXI logic only supports a single chroma plane,
1704 	 * macroblock tiling only works for to NV12 pixel format.
1705 	 */
1706 	ctx->tiled_map_type = GDI_LINEAR_FRAME_MAP;
1707 }
1708 
1709 /*
1710  * Queue operations
1711  */
coda_queue_setup(struct vb2_queue * vq,unsigned int * nbuffers,unsigned int * nplanes,unsigned int sizes[],struct device * alloc_devs[])1712 static int coda_queue_setup(struct vb2_queue *vq,
1713 				unsigned int *nbuffers, unsigned int *nplanes,
1714 				unsigned int sizes[], struct device *alloc_devs[])
1715 {
1716 	struct coda_ctx *ctx = vb2_get_drv_priv(vq);
1717 	struct coda_q_data *q_data;
1718 	unsigned int size;
1719 
1720 	q_data = get_q_data(ctx, vq->type);
1721 	size = q_data->sizeimage;
1722 
1723 	if (*nplanes)
1724 		return sizes[0] < size ? -EINVAL : 0;
1725 
1726 	*nplanes = 1;
1727 	sizes[0] = size;
1728 
1729 	coda_dbg(1, ctx, "get %d buffer(s) of size %d each.\n", *nbuffers,
1730 		 size);
1731 
1732 	return 0;
1733 }
1734 
coda_buf_prepare(struct vb2_buffer * vb)1735 static int coda_buf_prepare(struct vb2_buffer *vb)
1736 {
1737 	struct vb2_v4l2_buffer *vbuf = to_vb2_v4l2_buffer(vb);
1738 	struct coda_ctx *ctx = vb2_get_drv_priv(vb->vb2_queue);
1739 	struct coda_q_data *q_data;
1740 
1741 	q_data = get_q_data(ctx, vb->vb2_queue->type);
1742 	if (V4L2_TYPE_IS_OUTPUT(vb->vb2_queue->type)) {
1743 		if (vbuf->field == V4L2_FIELD_ANY)
1744 			vbuf->field = V4L2_FIELD_NONE;
1745 		if (vbuf->field != V4L2_FIELD_NONE) {
1746 			v4l2_warn(&ctx->dev->v4l2_dev,
1747 				  "%s field isn't supported\n", __func__);
1748 			return -EINVAL;
1749 		}
1750 	}
1751 
1752 	if (vb2_plane_size(vb, 0) < q_data->sizeimage) {
1753 		v4l2_warn(&ctx->dev->v4l2_dev,
1754 			  "%s data will not fit into plane (%lu < %lu)\n",
1755 			  __func__, vb2_plane_size(vb, 0),
1756 			  (long)q_data->sizeimage);
1757 		return -EINVAL;
1758 	}
1759 
1760 	return 0;
1761 }
1762 
coda_update_menu_ctrl(struct v4l2_ctrl * ctrl,int value)1763 static void coda_update_menu_ctrl(struct v4l2_ctrl *ctrl, int value)
1764 {
1765 	if (!ctrl)
1766 		return;
1767 
1768 	v4l2_ctrl_lock(ctrl);
1769 
1770 	/*
1771 	 * Extend the control range if the parsed stream contains a known but
1772 	 * unsupported value or level.
1773 	 */
1774 	if (value > ctrl->maximum) {
1775 		__v4l2_ctrl_modify_range(ctrl, ctrl->minimum, value,
1776 			ctrl->menu_skip_mask & ~(1 << value),
1777 			ctrl->default_value);
1778 	} else if (value < ctrl->minimum) {
1779 		__v4l2_ctrl_modify_range(ctrl, value, ctrl->maximum,
1780 			ctrl->menu_skip_mask & ~(1 << value),
1781 			ctrl->default_value);
1782 	}
1783 
1784 	__v4l2_ctrl_s_ctrl(ctrl, value);
1785 
1786 	v4l2_ctrl_unlock(ctrl);
1787 }
1788 
coda_update_profile_level_ctrls(struct coda_ctx * ctx,u8 profile_idc,u8 level_idc)1789 void coda_update_profile_level_ctrls(struct coda_ctx *ctx, u8 profile_idc,
1790 				     u8 level_idc)
1791 {
1792 	const char * const *profile_names;
1793 	const char * const *level_names;
1794 	struct v4l2_ctrl *profile_ctrl;
1795 	struct v4l2_ctrl *level_ctrl;
1796 	const char *codec_name;
1797 	u32 profile_cid;
1798 	u32 level_cid;
1799 	int profile;
1800 	int level;
1801 
1802 	switch (ctx->codec->src_fourcc) {
1803 	case V4L2_PIX_FMT_H264:
1804 		codec_name = "H264";
1805 		profile_cid = V4L2_CID_MPEG_VIDEO_H264_PROFILE;
1806 		level_cid = V4L2_CID_MPEG_VIDEO_H264_LEVEL;
1807 		profile_ctrl = ctx->h264_profile_ctrl;
1808 		level_ctrl = ctx->h264_level_ctrl;
1809 		profile = coda_h264_profile(profile_idc);
1810 		level = coda_h264_level(level_idc);
1811 		break;
1812 	case V4L2_PIX_FMT_MPEG2:
1813 		codec_name = "MPEG-2";
1814 		profile_cid = V4L2_CID_MPEG_VIDEO_MPEG2_PROFILE;
1815 		level_cid = V4L2_CID_MPEG_VIDEO_MPEG2_LEVEL;
1816 		profile_ctrl = ctx->mpeg2_profile_ctrl;
1817 		level_ctrl = ctx->mpeg2_level_ctrl;
1818 		profile = coda_mpeg2_profile(profile_idc);
1819 		level = coda_mpeg2_level(level_idc);
1820 		break;
1821 	case V4L2_PIX_FMT_MPEG4:
1822 		codec_name = "MPEG-4";
1823 		profile_cid = V4L2_CID_MPEG_VIDEO_MPEG4_PROFILE;
1824 		level_cid = V4L2_CID_MPEG_VIDEO_MPEG4_LEVEL;
1825 		profile_ctrl = ctx->mpeg4_profile_ctrl;
1826 		level_ctrl = ctx->mpeg4_level_ctrl;
1827 		profile = coda_mpeg4_profile(profile_idc);
1828 		level = coda_mpeg4_level(level_idc);
1829 		break;
1830 	default:
1831 		return;
1832 	}
1833 
1834 	profile_names = v4l2_ctrl_get_menu(profile_cid);
1835 	level_names = v4l2_ctrl_get_menu(level_cid);
1836 
1837 	if (profile < 0) {
1838 		v4l2_warn(&ctx->dev->v4l2_dev, "Invalid %s profile: %u\n",
1839 			  codec_name, profile_idc);
1840 	} else {
1841 		coda_dbg(1, ctx, "Parsed %s profile: %s\n", codec_name,
1842 			 profile_names[profile]);
1843 		coda_update_menu_ctrl(profile_ctrl, profile);
1844 	}
1845 
1846 	if (level < 0) {
1847 		v4l2_warn(&ctx->dev->v4l2_dev, "Invalid %s level: %u\n",
1848 			  codec_name, level_idc);
1849 	} else {
1850 		coda_dbg(1, ctx, "Parsed %s level: %s\n", codec_name,
1851 			 level_names[level]);
1852 		coda_update_menu_ctrl(level_ctrl, level);
1853 	}
1854 }
1855 
coda_queue_source_change_event(struct coda_ctx * ctx)1856 static void coda_queue_source_change_event(struct coda_ctx *ctx)
1857 {
1858 	static const struct v4l2_event source_change_event = {
1859 		.type = V4L2_EVENT_SOURCE_CHANGE,
1860 		.u.src_change.changes = V4L2_EVENT_SRC_CH_RESOLUTION,
1861 	};
1862 
1863 	v4l2_event_queue_fh(&ctx->fh, &source_change_event);
1864 }
1865 
coda_buf_queue(struct vb2_buffer * vb)1866 static void coda_buf_queue(struct vb2_buffer *vb)
1867 {
1868 	struct vb2_v4l2_buffer *vbuf = to_vb2_v4l2_buffer(vb);
1869 	struct coda_ctx *ctx = vb2_get_drv_priv(vb->vb2_queue);
1870 	struct vb2_queue *vq = vb->vb2_queue;
1871 	struct coda_q_data *q_data;
1872 
1873 	q_data = get_q_data(ctx, vb->vb2_queue->type);
1874 
1875 	/*
1876 	 * In the decoder case, immediately try to copy the buffer into the
1877 	 * bitstream ringbuffer and mark it as ready to be dequeued.
1878 	 */
1879 	if (ctx->bitstream.size && vq->type == V4L2_BUF_TYPE_VIDEO_OUTPUT) {
1880 		/*
1881 		 * For backwards compatibility, queuing an empty buffer marks
1882 		 * the stream end
1883 		 */
1884 		if (vb2_get_plane_payload(vb, 0) == 0)
1885 			coda_bit_stream_end_flag(ctx);
1886 
1887 		if (q_data->fourcc == V4L2_PIX_FMT_H264) {
1888 			/*
1889 			 * Unless already done, try to obtain profile_idc and
1890 			 * level_idc from the SPS header. This allows to decide
1891 			 * whether to enable reordering during sequence
1892 			 * initialization.
1893 			 */
1894 			if (!ctx->params.h264_profile_idc) {
1895 				coda_sps_parse_profile(ctx, vb);
1896 				coda_update_profile_level_ctrls(ctx,
1897 						ctx->params.h264_profile_idc,
1898 						ctx->params.h264_level_idc);
1899 			}
1900 		}
1901 
1902 		mutex_lock(&ctx->bitstream_mutex);
1903 		v4l2_m2m_buf_queue(ctx->fh.m2m_ctx, vbuf);
1904 		if (vb2_is_streaming(vb->vb2_queue))
1905 			/* This set buf->sequence = ctx->qsequence++ */
1906 			coda_fill_bitstream(ctx, NULL);
1907 		mutex_unlock(&ctx->bitstream_mutex);
1908 
1909 		if (!ctx->initialized) {
1910 			/*
1911 			 * Run sequence initialization in case the queued
1912 			 * buffer contained headers.
1913 			 */
1914 			if (vb2_is_streaming(vb->vb2_queue) &&
1915 			    ctx->ops->seq_init_work) {
1916 				queue_work(ctx->dev->workqueue,
1917 					   &ctx->seq_init_work);
1918 				flush_work(&ctx->seq_init_work);
1919 			}
1920 
1921 			if (ctx->initialized)
1922 				coda_queue_source_change_event(ctx);
1923 		}
1924 	} else {
1925 		if ((ctx->inst_type == CODA_INST_ENCODER || !ctx->use_bit) &&
1926 		    vq->type == V4L2_BUF_TYPE_VIDEO_OUTPUT)
1927 			vbuf->sequence = ctx->qsequence++;
1928 		v4l2_m2m_buf_queue(ctx->fh.m2m_ctx, vbuf);
1929 	}
1930 }
1931 
coda_alloc_aux_buf(struct coda_dev * dev,struct coda_aux_buf * buf,size_t size,const char * name,struct dentry * parent)1932 int coda_alloc_aux_buf(struct coda_dev *dev, struct coda_aux_buf *buf,
1933 		       size_t size, const char *name, struct dentry *parent)
1934 {
1935 	buf->vaddr = dma_alloc_coherent(dev->dev, size, &buf->paddr,
1936 					GFP_KERNEL);
1937 	if (!buf->vaddr) {
1938 		v4l2_err(&dev->v4l2_dev,
1939 			 "Failed to allocate %s buffer of size %zu\n",
1940 			 name, size);
1941 		return -ENOMEM;
1942 	}
1943 
1944 	buf->size = size;
1945 
1946 	if (name && parent) {
1947 		buf->blob.data = buf->vaddr;
1948 		buf->blob.size = size;
1949 		buf->dentry = debugfs_create_blob(name, 0444, parent,
1950 						  &buf->blob);
1951 	}
1952 
1953 	return 0;
1954 }
1955 
coda_free_aux_buf(struct coda_dev * dev,struct coda_aux_buf * buf)1956 void coda_free_aux_buf(struct coda_dev *dev,
1957 		       struct coda_aux_buf *buf)
1958 {
1959 	if (buf->vaddr) {
1960 		dma_free_coherent(dev->dev, buf->size, buf->vaddr, buf->paddr);
1961 		buf->vaddr = NULL;
1962 		buf->size = 0;
1963 		debugfs_remove(buf->dentry);
1964 		buf->dentry = NULL;
1965 	}
1966 }
1967 
coda_start_streaming(struct vb2_queue * q,unsigned int count)1968 static int coda_start_streaming(struct vb2_queue *q, unsigned int count)
1969 {
1970 	struct coda_ctx *ctx = vb2_get_drv_priv(q);
1971 	struct v4l2_device *v4l2_dev = &ctx->dev->v4l2_dev;
1972 	struct coda_q_data *q_data_src, *q_data_dst;
1973 	struct v4l2_m2m_buffer *m2m_buf, *tmp;
1974 	struct vb2_v4l2_buffer *buf;
1975 	struct list_head list;
1976 	int ret = 0;
1977 
1978 	if (count < 1)
1979 		return -EINVAL;
1980 
1981 	coda_dbg(1, ctx, "start streaming %s\n", v4l2_type_names[q->type]);
1982 
1983 	INIT_LIST_HEAD(&list);
1984 
1985 	q_data_src = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_OUTPUT);
1986 	if (q->type == V4L2_BUF_TYPE_VIDEO_OUTPUT) {
1987 		if (ctx->inst_type == CODA_INST_DECODER && ctx->use_bit) {
1988 			/* copy the buffers that were queued before streamon */
1989 			mutex_lock(&ctx->bitstream_mutex);
1990 			coda_fill_bitstream(ctx, &list);
1991 			mutex_unlock(&ctx->bitstream_mutex);
1992 
1993 			if (ctx->dev->devtype->product != CODA_960 &&
1994 			    coda_get_bitstream_payload(ctx) < 512) {
1995 				v4l2_err(v4l2_dev, "start payload < 512\n");
1996 				ret = -EINVAL;
1997 				goto err;
1998 			}
1999 
2000 			if (!ctx->initialized) {
2001 				/* Run sequence initialization */
2002 				if (ctx->ops->seq_init_work) {
2003 					queue_work(ctx->dev->workqueue,
2004 						   &ctx->seq_init_work);
2005 					flush_work(&ctx->seq_init_work);
2006 				}
2007 			}
2008 		}
2009 
2010 		/*
2011 		 * Check the first input JPEG buffer to determine chroma
2012 		 * subsampling.
2013 		 */
2014 		if (q_data_src->fourcc == V4L2_PIX_FMT_JPEG) {
2015 			buf = v4l2_m2m_next_src_buf(ctx->fh.m2m_ctx);
2016 			coda_jpeg_decode_header(ctx, &buf->vb2_buf);
2017 			/*
2018 			 * We have to start streaming even if the first buffer
2019 			 * does not contain a valid JPEG image. The error will
2020 			 * be caught during device run and will be signalled
2021 			 * via the capture buffer error flag.
2022 			 */
2023 
2024 			q_data_dst = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_CAPTURE);
2025 			q_data_dst->width = round_up(q_data_src->width, 16);
2026 			q_data_dst->height = round_up(q_data_src->height, 16);
2027 			q_data_dst->bytesperline = q_data_dst->width;
2028 			if (ctx->params.jpeg_chroma_subsampling ==
2029 			    V4L2_JPEG_CHROMA_SUBSAMPLING_420) {
2030 				q_data_dst->sizeimage =
2031 						q_data_dst->bytesperline *
2032 						q_data_dst->height * 3 / 2;
2033 				if (q_data_dst->fourcc != V4L2_PIX_FMT_YUV420)
2034 					q_data_dst->fourcc = V4L2_PIX_FMT_NV12;
2035 			} else {
2036 				q_data_dst->sizeimage =
2037 						q_data_dst->bytesperline *
2038 						q_data_dst->height * 2;
2039 				q_data_dst->fourcc = V4L2_PIX_FMT_YUV422P;
2040 			}
2041 			q_data_dst->rect.left = 0;
2042 			q_data_dst->rect.top = 0;
2043 			q_data_dst->rect.width = q_data_src->width;
2044 			q_data_dst->rect.height = q_data_src->height;
2045 		}
2046 		ctx->streamon_out = 1;
2047 	} else {
2048 		ctx->streamon_cap = 1;
2049 	}
2050 
2051 	/* Don't start the coda unless both queues are on */
2052 	if (!(ctx->streamon_out && ctx->streamon_cap))
2053 		goto out;
2054 
2055 	q_data_dst = get_q_data(ctx, V4L2_BUF_TYPE_VIDEO_CAPTURE);
2056 	if ((q_data_src->rect.width != q_data_dst->width &&
2057 	     round_up(q_data_src->rect.width, 16) != q_data_dst->width) ||
2058 	    (q_data_src->rect.height != q_data_dst->height &&
2059 	     round_up(q_data_src->rect.height, 16) != q_data_dst->height)) {
2060 		v4l2_err(v4l2_dev, "can't convert %dx%d to %dx%d\n",
2061 			 q_data_src->rect.width, q_data_src->rect.height,
2062 			 q_data_dst->width, q_data_dst->height);
2063 		ret = -EINVAL;
2064 		goto err;
2065 	}
2066 
2067 	/* Allow BIT decoder device_run with no new buffers queued */
2068 	if (ctx->inst_type == CODA_INST_DECODER && ctx->use_bit)
2069 		v4l2_m2m_set_src_buffered(ctx->fh.m2m_ctx, true);
2070 
2071 	ctx->gopcounter = ctx->params.gop_size - 1;
2072 
2073 	if (q_data_dst->fourcc == V4L2_PIX_FMT_JPEG)
2074 		ctx->params.gop_size = 1;
2075 	ctx->gopcounter = ctx->params.gop_size - 1;
2076 	/* Only decoders have this control */
2077 	if (ctx->mb_err_cnt_ctrl)
2078 		v4l2_ctrl_s_ctrl(ctx->mb_err_cnt_ctrl, 0);
2079 
2080 	ret = ctx->ops->start_streaming(ctx);
2081 	if (ctx->inst_type == CODA_INST_DECODER) {
2082 		if (ret == -EAGAIN)
2083 			goto out;
2084 	}
2085 	if (ret < 0)
2086 		goto err;
2087 
2088 out:
2089 	if (q->type == V4L2_BUF_TYPE_VIDEO_OUTPUT) {
2090 		list_for_each_entry_safe(m2m_buf, tmp, &list, list) {
2091 			list_del(&m2m_buf->list);
2092 			v4l2_m2m_buf_done(&m2m_buf->vb, VB2_BUF_STATE_DONE);
2093 		}
2094 	}
2095 	return 0;
2096 
2097 err:
2098 	if (q->type == V4L2_BUF_TYPE_VIDEO_OUTPUT) {
2099 		list_for_each_entry_safe(m2m_buf, tmp, &list, list) {
2100 			list_del(&m2m_buf->list);
2101 			v4l2_m2m_buf_done(&m2m_buf->vb, VB2_BUF_STATE_QUEUED);
2102 		}
2103 		while ((buf = v4l2_m2m_src_buf_remove(ctx->fh.m2m_ctx)))
2104 			v4l2_m2m_buf_done(buf, VB2_BUF_STATE_QUEUED);
2105 	} else {
2106 		while ((buf = v4l2_m2m_dst_buf_remove(ctx->fh.m2m_ctx)))
2107 			v4l2_m2m_buf_done(buf, VB2_BUF_STATE_QUEUED);
2108 	}
2109 	return ret;
2110 }
2111 
coda_stop_streaming(struct vb2_queue * q)2112 static void coda_stop_streaming(struct vb2_queue *q)
2113 {
2114 	struct coda_ctx *ctx = vb2_get_drv_priv(q);
2115 	struct coda_dev *dev = ctx->dev;
2116 	struct vb2_v4l2_buffer *buf;
2117 	bool stop;
2118 
2119 	stop = ctx->streamon_out && ctx->streamon_cap;
2120 
2121 	coda_dbg(1, ctx, "stop streaming %s\n", v4l2_type_names[q->type]);
2122 
2123 	if (q->type == V4L2_BUF_TYPE_VIDEO_OUTPUT) {
2124 		ctx->streamon_out = 0;
2125 
2126 		coda_bit_stream_end_flag(ctx);
2127 
2128 		ctx->qsequence = 0;
2129 
2130 		while ((buf = v4l2_m2m_src_buf_remove(ctx->fh.m2m_ctx)))
2131 			v4l2_m2m_buf_done(buf, VB2_BUF_STATE_ERROR);
2132 	} else {
2133 		ctx->streamon_cap = 0;
2134 
2135 		ctx->osequence = 0;
2136 		ctx->sequence_offset = 0;
2137 
2138 		while ((buf = v4l2_m2m_dst_buf_remove(ctx->fh.m2m_ctx)))
2139 			v4l2_m2m_buf_done(buf, VB2_BUF_STATE_ERROR);
2140 	}
2141 
2142 	if (stop) {
2143 		struct coda_buffer_meta *meta;
2144 
2145 		if (ctx->ops->seq_end_work) {
2146 			queue_work(dev->workqueue, &ctx->seq_end_work);
2147 			flush_work(&ctx->seq_end_work);
2148 		}
2149 		spin_lock(&ctx->buffer_meta_lock);
2150 		while (!list_empty(&ctx->buffer_meta_list)) {
2151 			meta = list_first_entry(&ctx->buffer_meta_list,
2152 						struct coda_buffer_meta, list);
2153 			list_del(&meta->list);
2154 			kfree(meta);
2155 		}
2156 		ctx->num_metas = 0;
2157 		spin_unlock(&ctx->buffer_meta_lock);
2158 		kfifo_init(&ctx->bitstream_fifo,
2159 			ctx->bitstream.vaddr, ctx->bitstream.size);
2160 		ctx->runcounter = 0;
2161 		ctx->aborting = 0;
2162 		ctx->hold = false;
2163 	}
2164 
2165 	if (!ctx->streamon_out && !ctx->streamon_cap)
2166 		ctx->bit_stream_param &= ~CODA_BIT_STREAM_END_FLAG;
2167 }
2168 
2169 static const struct vb2_ops coda_qops = {
2170 	.queue_setup		= coda_queue_setup,
2171 	.buf_prepare		= coda_buf_prepare,
2172 	.buf_queue		= coda_buf_queue,
2173 	.start_streaming	= coda_start_streaming,
2174 	.stop_streaming		= coda_stop_streaming,
2175 };
2176 
coda_s_ctrl(struct v4l2_ctrl * ctrl)2177 static int coda_s_ctrl(struct v4l2_ctrl *ctrl)
2178 {
2179 	const char * const *val_names = v4l2_ctrl_get_menu(ctrl->id);
2180 	struct coda_ctx *ctx =
2181 			container_of(ctrl->handler, struct coda_ctx, ctrls);
2182 
2183 	if (val_names)
2184 		coda_dbg(2, ctx, "s_ctrl: id = 0x%x, name = \"%s\", val = %d (\"%s\")\n",
2185 			 ctrl->id, ctrl->name, ctrl->val, val_names[ctrl->val]);
2186 	else
2187 		coda_dbg(2, ctx, "s_ctrl: id = 0x%x, name = \"%s\", val = %d\n",
2188 			 ctrl->id, ctrl->name, ctrl->val);
2189 
2190 	switch (ctrl->id) {
2191 	case V4L2_CID_HFLIP:
2192 		if (ctrl->val)
2193 			ctx->params.rot_mode |= CODA_MIR_HOR;
2194 		else
2195 			ctx->params.rot_mode &= ~CODA_MIR_HOR;
2196 		break;
2197 	case V4L2_CID_VFLIP:
2198 		if (ctrl->val)
2199 			ctx->params.rot_mode |= CODA_MIR_VER;
2200 		else
2201 			ctx->params.rot_mode &= ~CODA_MIR_VER;
2202 		break;
2203 	case V4L2_CID_MPEG_VIDEO_BITRATE:
2204 		ctx->params.bitrate = ctrl->val / 1000;
2205 		ctx->params.bitrate_changed = true;
2206 		break;
2207 	case V4L2_CID_MPEG_VIDEO_GOP_SIZE:
2208 		ctx->params.gop_size = ctrl->val;
2209 		break;
2210 	case V4L2_CID_MPEG_VIDEO_H264_I_FRAME_QP:
2211 		ctx->params.h264_intra_qp = ctrl->val;
2212 		ctx->params.h264_intra_qp_changed = true;
2213 		break;
2214 	case V4L2_CID_MPEG_VIDEO_H264_P_FRAME_QP:
2215 		ctx->params.h264_inter_qp = ctrl->val;
2216 		break;
2217 	case V4L2_CID_MPEG_VIDEO_H264_MIN_QP:
2218 		ctx->params.h264_min_qp = ctrl->val;
2219 		break;
2220 	case V4L2_CID_MPEG_VIDEO_H264_MAX_QP:
2221 		ctx->params.h264_max_qp = ctrl->val;
2222 		break;
2223 	case V4L2_CID_MPEG_VIDEO_H264_LOOP_FILTER_ALPHA:
2224 		ctx->params.h264_slice_alpha_c0_offset_div2 = ctrl->val;
2225 		break;
2226 	case V4L2_CID_MPEG_VIDEO_H264_LOOP_FILTER_BETA:
2227 		ctx->params.h264_slice_beta_offset_div2 = ctrl->val;
2228 		break;
2229 	case V4L2_CID_MPEG_VIDEO_H264_LOOP_FILTER_MODE:
2230 		ctx->params.h264_disable_deblocking_filter_idc = ctrl->val;
2231 		break;
2232 	case V4L2_CID_MPEG_VIDEO_H264_CONSTRAINED_INTRA_PREDICTION:
2233 		ctx->params.h264_constrained_intra_pred_flag = ctrl->val;
2234 		break;
2235 	case V4L2_CID_MPEG_VIDEO_FRAME_RC_ENABLE:
2236 		ctx->params.frame_rc_enable = ctrl->val;
2237 		break;
2238 	case V4L2_CID_MPEG_VIDEO_MB_RC_ENABLE:
2239 		ctx->params.mb_rc_enable = ctrl->val;
2240 		break;
2241 	case V4L2_CID_MPEG_VIDEO_H264_CHROMA_QP_INDEX_OFFSET:
2242 		ctx->params.h264_chroma_qp_index_offset = ctrl->val;
2243 		break;
2244 	case V4L2_CID_MPEG_VIDEO_H264_PROFILE:
2245 		/* TODO: switch between baseline and constrained baseline */
2246 		if (ctx->inst_type == CODA_INST_ENCODER)
2247 			ctx->params.h264_profile_idc = 66;
2248 		break;
2249 	case V4L2_CID_MPEG_VIDEO_H264_LEVEL:
2250 		/* nothing to do, this is set by the encoder */
2251 		break;
2252 	case V4L2_CID_MPEG_VIDEO_MPEG4_I_FRAME_QP:
2253 		ctx->params.mpeg4_intra_qp = ctrl->val;
2254 		break;
2255 	case V4L2_CID_MPEG_VIDEO_MPEG4_P_FRAME_QP:
2256 		ctx->params.mpeg4_inter_qp = ctrl->val;
2257 		break;
2258 	case V4L2_CID_MPEG_VIDEO_MPEG2_PROFILE:
2259 	case V4L2_CID_MPEG_VIDEO_MPEG2_LEVEL:
2260 	case V4L2_CID_MPEG_VIDEO_MPEG4_PROFILE:
2261 	case V4L2_CID_MPEG_VIDEO_MPEG4_LEVEL:
2262 		/* nothing to do, these are fixed */
2263 		break;
2264 	case V4L2_CID_MPEG_VIDEO_MULTI_SLICE_MODE:
2265 		ctx->params.slice_mode = ctrl->val;
2266 		ctx->params.slice_mode_changed = true;
2267 		break;
2268 	case V4L2_CID_MPEG_VIDEO_MULTI_SLICE_MAX_MB:
2269 		ctx->params.slice_max_mb = ctrl->val;
2270 		ctx->params.slice_mode_changed = true;
2271 		break;
2272 	case V4L2_CID_MPEG_VIDEO_MULTI_SLICE_MAX_BYTES:
2273 		ctx->params.slice_max_bits = ctrl->val * 8;
2274 		ctx->params.slice_mode_changed = true;
2275 		break;
2276 	case V4L2_CID_MPEG_VIDEO_HEADER_MODE:
2277 		break;
2278 	case V4L2_CID_MPEG_VIDEO_CYCLIC_INTRA_REFRESH_MB:
2279 		ctx->params.intra_refresh = ctrl->val;
2280 		ctx->params.intra_refresh_changed = true;
2281 		break;
2282 	case V4L2_CID_MPEG_VIDEO_FORCE_KEY_FRAME:
2283 		ctx->params.force_ipicture = true;
2284 		break;
2285 	case V4L2_CID_JPEG_COMPRESSION_QUALITY:
2286 		coda_set_jpeg_compression_quality(ctx, ctrl->val);
2287 		break;
2288 	case V4L2_CID_JPEG_RESTART_INTERVAL:
2289 		ctx->params.jpeg_restart_interval = ctrl->val;
2290 		break;
2291 	case V4L2_CID_MPEG_VIDEO_VBV_DELAY:
2292 		ctx->params.vbv_delay = ctrl->val;
2293 		break;
2294 	case V4L2_CID_MPEG_VIDEO_VBV_SIZE:
2295 		ctx->params.vbv_size = min(ctrl->val * 8192, 0x7fffffff);
2296 		break;
2297 	default:
2298 		coda_dbg(1, ctx, "Invalid control, id=%d, val=%d\n",
2299 			 ctrl->id, ctrl->val);
2300 		return -EINVAL;
2301 	}
2302 
2303 	return 0;
2304 }
2305 
2306 static const struct v4l2_ctrl_ops coda_ctrl_ops = {
2307 	.s_ctrl = coda_s_ctrl,
2308 };
2309 
coda_encode_ctrls(struct coda_ctx * ctx)2310 static void coda_encode_ctrls(struct coda_ctx *ctx)
2311 {
2312 	int max_gop_size = (ctx->dev->devtype->product == CODA_DX6) ? 60 : 99;
2313 
2314 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2315 		V4L2_CID_MPEG_VIDEO_BITRATE, 0, 32767000, 1000, 0);
2316 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2317 		V4L2_CID_MPEG_VIDEO_GOP_SIZE, 0, max_gop_size, 1, 16);
2318 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2319 		V4L2_CID_MPEG_VIDEO_H264_I_FRAME_QP, 0, 51, 1, 25);
2320 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2321 		V4L2_CID_MPEG_VIDEO_H264_P_FRAME_QP, 0, 51, 1, 25);
2322 	if (ctx->dev->devtype->product != CODA_960) {
2323 		v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2324 			V4L2_CID_MPEG_VIDEO_H264_MIN_QP, 0, 51, 1, 12);
2325 	}
2326 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2327 		V4L2_CID_MPEG_VIDEO_H264_MAX_QP, 0, 51, 1, 51);
2328 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2329 		V4L2_CID_MPEG_VIDEO_H264_LOOP_FILTER_ALPHA, -6, 6, 1, 0);
2330 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2331 		V4L2_CID_MPEG_VIDEO_H264_LOOP_FILTER_BETA, -6, 6, 1, 0);
2332 	v4l2_ctrl_new_std_menu(&ctx->ctrls, &coda_ctrl_ops,
2333 		V4L2_CID_MPEG_VIDEO_H264_LOOP_FILTER_MODE,
2334 		V4L2_MPEG_VIDEO_H264_LOOP_FILTER_MODE_DISABLED_AT_SLICE_BOUNDARY,
2335 		0x0, V4L2_MPEG_VIDEO_H264_LOOP_FILTER_MODE_ENABLED);
2336 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2337 		V4L2_CID_MPEG_VIDEO_H264_CONSTRAINED_INTRA_PREDICTION, 0, 1, 1,
2338 		0);
2339 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2340 		V4L2_CID_MPEG_VIDEO_FRAME_RC_ENABLE, 0, 1, 1, 1);
2341 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2342 		V4L2_CID_MPEG_VIDEO_MB_RC_ENABLE, 0, 1, 1, 1);
2343 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2344 		V4L2_CID_MPEG_VIDEO_H264_CHROMA_QP_INDEX_OFFSET, -12, 12, 1, 0);
2345 	v4l2_ctrl_new_std_menu(&ctx->ctrls, &coda_ctrl_ops,
2346 		V4L2_CID_MPEG_VIDEO_H264_PROFILE,
2347 		V4L2_MPEG_VIDEO_H264_PROFILE_CONSTRAINED_BASELINE, 0x0,
2348 		V4L2_MPEG_VIDEO_H264_PROFILE_CONSTRAINED_BASELINE);
2349 	if (ctx->dev->devtype->product == CODA_HX4 ||
2350 	    ctx->dev->devtype->product == CODA_7541) {
2351 		v4l2_ctrl_new_std_menu(&ctx->ctrls, &coda_ctrl_ops,
2352 			V4L2_CID_MPEG_VIDEO_H264_LEVEL,
2353 			V4L2_MPEG_VIDEO_H264_LEVEL_3_1,
2354 			~((1 << V4L2_MPEG_VIDEO_H264_LEVEL_2_0) |
2355 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_3_0) |
2356 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_3_1)),
2357 			V4L2_MPEG_VIDEO_H264_LEVEL_3_1);
2358 	}
2359 	if (ctx->dev->devtype->product == CODA_960) {
2360 		v4l2_ctrl_new_std_menu(&ctx->ctrls, &coda_ctrl_ops,
2361 			V4L2_CID_MPEG_VIDEO_H264_LEVEL,
2362 			V4L2_MPEG_VIDEO_H264_LEVEL_4_2,
2363 			~((1 << V4L2_MPEG_VIDEO_H264_LEVEL_1_0) |
2364 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_2_0) |
2365 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_3_0) |
2366 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_3_1) |
2367 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_3_2) |
2368 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_4_0) |
2369 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_4_1) |
2370 			  (1 << V4L2_MPEG_VIDEO_H264_LEVEL_4_2)),
2371 			V4L2_MPEG_VIDEO_H264_LEVEL_4_0);
2372 	}
2373 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2374 		V4L2_CID_MPEG_VIDEO_MPEG4_I_FRAME_QP, 1, 31, 1, 2);
2375 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2376 		V4L2_CID_MPEG_VIDEO_MPEG4_P_FRAME_QP, 1, 31, 1, 2);
2377 	v4l2_ctrl_new_std_menu(&ctx->ctrls, &coda_ctrl_ops,
2378 		V4L2_CID_MPEG_VIDEO_MPEG4_PROFILE,
2379 		V4L2_MPEG_VIDEO_MPEG4_PROFILE_SIMPLE, 0x0,
2380 		V4L2_MPEG_VIDEO_MPEG4_PROFILE_SIMPLE);
2381 	if (ctx->dev->devtype->product == CODA_HX4 ||
2382 	    ctx->dev->devtype->product == CODA_7541 ||
2383 	    ctx->dev->devtype->product == CODA_960) {
2384 		v4l2_ctrl_new_std_menu(&ctx->ctrls, &coda_ctrl_ops,
2385 			V4L2_CID_MPEG_VIDEO_MPEG4_LEVEL,
2386 			V4L2_MPEG_VIDEO_MPEG4_LEVEL_5,
2387 			~(1 << V4L2_MPEG_VIDEO_MPEG4_LEVEL_5),
2388 			V4L2_MPEG_VIDEO_MPEG4_LEVEL_5);
2389 	}
2390 	v4l2_ctrl_new_std_menu(&ctx->ctrls, &coda_ctrl_ops,
2391 		V4L2_CID_MPEG_VIDEO_MULTI_SLICE_MODE,
2392 		V4L2_MPEG_VIDEO_MULTI_SLICE_MODE_MAX_BYTES, 0x0,
2393 		V4L2_MPEG_VIDEO_MULTI_SLICE_MODE_SINGLE);
2394 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2395 		V4L2_CID_MPEG_VIDEO_MULTI_SLICE_MAX_MB, 1, 0x3fffffff, 1, 1);
2396 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2397 		V4L2_CID_MPEG_VIDEO_MULTI_SLICE_MAX_BYTES, 1, 0x3fffffff, 1,
2398 		500);
2399 	v4l2_ctrl_new_std_menu(&ctx->ctrls, &coda_ctrl_ops,
2400 		V4L2_CID_MPEG_VIDEO_HEADER_MODE,
2401 		V4L2_MPEG_VIDEO_HEADER_MODE_JOINED_WITH_1ST_FRAME,
2402 		(1 << V4L2_MPEG_VIDEO_HEADER_MODE_SEPARATE),
2403 		V4L2_MPEG_VIDEO_HEADER_MODE_JOINED_WITH_1ST_FRAME);
2404 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2405 		V4L2_CID_MPEG_VIDEO_CYCLIC_INTRA_REFRESH_MB, 0,
2406 		1920 * 1088 / 256, 1, 0);
2407 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2408 		V4L2_CID_MPEG_VIDEO_VBV_DELAY, 0, 0x7fff, 1, 0);
2409 	/*
2410 	 * The maximum VBV size value is 0x7fffffff bits,
2411 	 * one bit less than 262144 KiB
2412 	 */
2413 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2414 		V4L2_CID_MPEG_VIDEO_VBV_SIZE, 0, 262144, 1, 0);
2415 }
2416 
coda_jpeg_encode_ctrls(struct coda_ctx * ctx)2417 static void coda_jpeg_encode_ctrls(struct coda_ctx *ctx)
2418 {
2419 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2420 		V4L2_CID_JPEG_COMPRESSION_QUALITY, 5, 100, 1, 50);
2421 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2422 		V4L2_CID_JPEG_RESTART_INTERVAL, 0, 100, 1, 0);
2423 }
2424 
coda_decode_ctrls(struct coda_ctx * ctx)2425 static void coda_decode_ctrls(struct coda_ctx *ctx)
2426 {
2427 	u8 max;
2428 
2429 	ctx->h264_profile_ctrl = v4l2_ctrl_new_std_menu(&ctx->ctrls,
2430 		&coda_ctrl_ops, V4L2_CID_MPEG_VIDEO_H264_PROFILE,
2431 		V4L2_MPEG_VIDEO_H264_PROFILE_HIGH,
2432 		~((1 << V4L2_MPEG_VIDEO_H264_PROFILE_CONSTRAINED_BASELINE) |
2433 		  (1 << V4L2_MPEG_VIDEO_H264_PROFILE_MAIN) |
2434 		  (1 << V4L2_MPEG_VIDEO_H264_PROFILE_HIGH)),
2435 		V4L2_MPEG_VIDEO_H264_PROFILE_HIGH);
2436 	if (ctx->h264_profile_ctrl)
2437 		ctx->h264_profile_ctrl->flags |= V4L2_CTRL_FLAG_READ_ONLY;
2438 
2439 	if (ctx->dev->devtype->product == CODA_HX4 ||
2440 	    ctx->dev->devtype->product == CODA_7541)
2441 		max = V4L2_MPEG_VIDEO_H264_LEVEL_4_0;
2442 	else if (ctx->dev->devtype->product == CODA_960)
2443 		max = V4L2_MPEG_VIDEO_H264_LEVEL_4_1;
2444 	else
2445 		return;
2446 	ctx->h264_level_ctrl = v4l2_ctrl_new_std_menu(&ctx->ctrls,
2447 		&coda_ctrl_ops, V4L2_CID_MPEG_VIDEO_H264_LEVEL, max, 0, max);
2448 	if (ctx->h264_level_ctrl)
2449 		ctx->h264_level_ctrl->flags |= V4L2_CTRL_FLAG_READ_ONLY;
2450 
2451 	ctx->mpeg2_profile_ctrl = v4l2_ctrl_new_std_menu(&ctx->ctrls,
2452 		&coda_ctrl_ops, V4L2_CID_MPEG_VIDEO_MPEG2_PROFILE,
2453 		V4L2_MPEG_VIDEO_MPEG2_PROFILE_HIGH, 0,
2454 		V4L2_MPEG_VIDEO_MPEG2_PROFILE_HIGH);
2455 	if (ctx->mpeg2_profile_ctrl)
2456 		ctx->mpeg2_profile_ctrl->flags |= V4L2_CTRL_FLAG_READ_ONLY;
2457 
2458 	ctx->mpeg2_level_ctrl = v4l2_ctrl_new_std_menu(&ctx->ctrls,
2459 		&coda_ctrl_ops, V4L2_CID_MPEG_VIDEO_MPEG2_LEVEL,
2460 		V4L2_MPEG_VIDEO_MPEG2_LEVEL_HIGH, 0,
2461 		V4L2_MPEG_VIDEO_MPEG2_LEVEL_HIGH);
2462 	if (ctx->mpeg2_level_ctrl)
2463 		ctx->mpeg2_level_ctrl->flags |= V4L2_CTRL_FLAG_READ_ONLY;
2464 
2465 	ctx->mpeg4_profile_ctrl = v4l2_ctrl_new_std_menu(&ctx->ctrls,
2466 		&coda_ctrl_ops, V4L2_CID_MPEG_VIDEO_MPEG4_PROFILE,
2467 		V4L2_MPEG_VIDEO_MPEG4_PROFILE_ADVANCED_CODING_EFFICIENCY, 0,
2468 		V4L2_MPEG_VIDEO_MPEG4_PROFILE_ADVANCED_CODING_EFFICIENCY);
2469 	if (ctx->mpeg4_profile_ctrl)
2470 		ctx->mpeg4_profile_ctrl->flags |= V4L2_CTRL_FLAG_READ_ONLY;
2471 
2472 	ctx->mpeg4_level_ctrl = v4l2_ctrl_new_std_menu(&ctx->ctrls,
2473 		&coda_ctrl_ops, V4L2_CID_MPEG_VIDEO_MPEG4_LEVEL,
2474 		V4L2_MPEG_VIDEO_MPEG4_LEVEL_5, 0,
2475 		V4L2_MPEG_VIDEO_MPEG4_LEVEL_5);
2476 	if (ctx->mpeg4_level_ctrl)
2477 		ctx->mpeg4_level_ctrl->flags |= V4L2_CTRL_FLAG_READ_ONLY;
2478 }
2479 
2480 static const struct v4l2_ctrl_config coda_mb_err_cnt_ctrl_config = {
2481 	.id	= V4L2_CID_CODA_MB_ERR_CNT,
2482 	.name	= "Macroblocks Error Count",
2483 	.type	= V4L2_CTRL_TYPE_INTEGER,
2484 	.min	= 0,
2485 	.max	= 0x7fffffff,
2486 	.step	= 1,
2487 };
2488 
coda_ctrls_setup(struct coda_ctx * ctx)2489 static int coda_ctrls_setup(struct coda_ctx *ctx)
2490 {
2491 	v4l2_ctrl_handler_init(&ctx->ctrls, 2);
2492 
2493 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2494 		V4L2_CID_HFLIP, 0, 1, 1, 0);
2495 	v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2496 		V4L2_CID_VFLIP, 0, 1, 1, 0);
2497 	if (ctx->inst_type == CODA_INST_ENCODER) {
2498 		v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2499 				  V4L2_CID_MIN_BUFFERS_FOR_OUTPUT,
2500 				  1, 1, 1, 1);
2501 		if (ctx->cvd->dst_formats[0] == V4L2_PIX_FMT_JPEG)
2502 			coda_jpeg_encode_ctrls(ctx);
2503 		else
2504 			coda_encode_ctrls(ctx);
2505 	} else {
2506 		v4l2_ctrl_new_std(&ctx->ctrls, &coda_ctrl_ops,
2507 				  V4L2_CID_MIN_BUFFERS_FOR_CAPTURE,
2508 				  1, 1, 1, 1);
2509 		if (ctx->cvd->src_formats[0] == V4L2_PIX_FMT_H264)
2510 			coda_decode_ctrls(ctx);
2511 
2512 		ctx->mb_err_cnt_ctrl = v4l2_ctrl_new_custom(&ctx->ctrls,
2513 						&coda_mb_err_cnt_ctrl_config,
2514 						NULL);
2515 		if (ctx->mb_err_cnt_ctrl)
2516 			ctx->mb_err_cnt_ctrl->flags |= V4L2_CTRL_FLAG_READ_ONLY;
2517 	}
2518 
2519 	if (ctx->ctrls.error) {
2520 		v4l2_err(&ctx->dev->v4l2_dev,
2521 			"control initialization error (%d)",
2522 			ctx->ctrls.error);
2523 		return -EINVAL;
2524 	}
2525 
2526 	return v4l2_ctrl_handler_setup(&ctx->ctrls);
2527 }
2528 
coda_queue_init(struct coda_ctx * ctx,struct vb2_queue * vq)2529 static int coda_queue_init(struct coda_ctx *ctx, struct vb2_queue *vq)
2530 {
2531 	vq->drv_priv = ctx;
2532 	vq->ops = &coda_qops;
2533 	vq->buf_struct_size = sizeof(struct v4l2_m2m_buffer);
2534 	vq->timestamp_flags = V4L2_BUF_FLAG_TIMESTAMP_COPY;
2535 	vq->lock = &ctx->dev->dev_mutex;
2536 	/* One way to indicate end-of-stream for coda is to set the
2537 	 * bytesused == 0. However by default videobuf2 handles bytesused
2538 	 * equal to 0 as a special case and changes its value to the size
2539 	 * of the buffer. Set the allow_zero_bytesused flag, so
2540 	 * that videobuf2 will keep the value of bytesused intact.
2541 	 */
2542 	vq->allow_zero_bytesused = 1;
2543 	/*
2544 	 * We might be fine with no buffers on some of the queues, but that
2545 	 * would need to be reflected in job_ready(). Currently we expect all
2546 	 * queues to have at least one buffer queued.
2547 	 */
2548 	vq->min_queued_buffers = 1;
2549 	vq->dev = ctx->dev->dev;
2550 
2551 	return vb2_queue_init(vq);
2552 }
2553 
coda_encoder_queue_init(void * priv,struct vb2_queue * src_vq,struct vb2_queue * dst_vq)2554 int coda_encoder_queue_init(void *priv, struct vb2_queue *src_vq,
2555 			    struct vb2_queue *dst_vq)
2556 {
2557 	int ret;
2558 
2559 	src_vq->type = V4L2_BUF_TYPE_VIDEO_OUTPUT;
2560 	src_vq->io_modes = VB2_DMABUF | VB2_MMAP;
2561 	src_vq->mem_ops = &vb2_dma_contig_memops;
2562 
2563 	ret = coda_queue_init(priv, src_vq);
2564 	if (ret)
2565 		return ret;
2566 
2567 	dst_vq->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
2568 	dst_vq->io_modes = VB2_DMABUF | VB2_MMAP;
2569 	dst_vq->mem_ops = &vb2_dma_contig_memops;
2570 
2571 	return coda_queue_init(priv, dst_vq);
2572 }
2573 
coda_decoder_queue_init(void * priv,struct vb2_queue * src_vq,struct vb2_queue * dst_vq)2574 int coda_decoder_queue_init(void *priv, struct vb2_queue *src_vq,
2575 			    struct vb2_queue *dst_vq)
2576 {
2577 	int ret;
2578 
2579 	src_vq->type = V4L2_BUF_TYPE_VIDEO_OUTPUT;
2580 	src_vq->io_modes = VB2_DMABUF | VB2_MMAP | VB2_USERPTR;
2581 	src_vq->mem_ops = &vb2_vmalloc_memops;
2582 
2583 	ret = coda_queue_init(priv, src_vq);
2584 	if (ret)
2585 		return ret;
2586 
2587 	dst_vq->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
2588 	dst_vq->io_modes = VB2_DMABUF | VB2_MMAP;
2589 	dst_vq->dma_attrs = DMA_ATTR_NO_KERNEL_MAPPING;
2590 	dst_vq->mem_ops = &vb2_dma_contig_memops;
2591 
2592 	return coda_queue_init(priv, dst_vq);
2593 }
2594 
2595 /*
2596  * File operations
2597  */
2598 
coda_open(struct file * file)2599 static int coda_open(struct file *file)
2600 {
2601 	struct video_device *vdev = video_devdata(file);
2602 	struct coda_dev *dev = video_get_drvdata(vdev);
2603 	struct coda_ctx *ctx;
2604 	unsigned int max = ~0;
2605 	char *name;
2606 	int ret;
2607 	int idx;
2608 
2609 	ctx = kzalloc_obj(*ctx);
2610 	if (!ctx)
2611 		return -ENOMEM;
2612 
2613 	if (dev->devtype->product == CODA_DX6)
2614 		max = CODADX6_MAX_INSTANCES - 1;
2615 	idx = ida_alloc_max(&dev->ida, max, GFP_KERNEL);
2616 	if (idx < 0) {
2617 		ret = idx;
2618 		goto err_coda_max;
2619 	}
2620 
2621 	name = kasprintf(GFP_KERNEL, "context%d", idx);
2622 	if (!name) {
2623 		ret = -ENOMEM;
2624 		goto err_coda_name_init;
2625 	}
2626 
2627 	ctx->debugfs_entry = debugfs_create_dir(name, dev->debugfs_root);
2628 	kfree(name);
2629 
2630 	ctx->cvd = to_coda_video_device(vdev);
2631 	ctx->inst_type = ctx->cvd->type;
2632 	ctx->ops = ctx->cvd->ops;
2633 	ctx->use_bit = !ctx->cvd->direct;
2634 	init_completion(&ctx->completion);
2635 	INIT_WORK(&ctx->pic_run_work, coda_pic_run_work);
2636 	if (ctx->ops->seq_init_work)
2637 		INIT_WORK(&ctx->seq_init_work, ctx->ops->seq_init_work);
2638 	if (ctx->ops->seq_end_work)
2639 		INIT_WORK(&ctx->seq_end_work, ctx->ops->seq_end_work);
2640 	v4l2_fh_init(&ctx->fh, video_devdata(file));
2641 	v4l2_fh_add(&ctx->fh, file);
2642 	ctx->dev = dev;
2643 	ctx->idx = idx;
2644 
2645 	coda_dbg(1, ctx, "open instance (%p)\n", ctx);
2646 
2647 	switch (dev->devtype->product) {
2648 	case CODA_960:
2649 		/*
2650 		 * Enabling the BWB when decoding can hang the firmware with
2651 		 * certain streams. The issue was tracked as ENGR00293425 by
2652 		 * Freescale. As a workaround, disable BWB for all decoders.
2653 		 * The enable_bwb module parameter allows to override this.
2654 		 */
2655 		if (enable_bwb || ctx->inst_type == CODA_INST_ENCODER)
2656 			ctx->frame_mem_ctrl = CODA9_FRAME_ENABLE_BWB;
2657 		fallthrough;
2658 	case CODA_HX4:
2659 	case CODA_7541:
2660 		ctx->reg_idx = 0;
2661 		break;
2662 	default:
2663 		ctx->reg_idx = idx;
2664 	}
2665 	if (ctx->dev->vdoa && !disable_vdoa) {
2666 		ctx->vdoa = vdoa_context_create(dev->vdoa);
2667 		if (!ctx->vdoa)
2668 			v4l2_warn(&dev->v4l2_dev,
2669 				  "Failed to create vdoa context: not using vdoa");
2670 	}
2671 	ctx->use_vdoa = false;
2672 
2673 	/* Power up and upload firmware if necessary */
2674 	ret = pm_runtime_resume_and_get(dev->dev);
2675 	if (ret < 0) {
2676 		v4l2_err(&dev->v4l2_dev, "failed to power up: %d\n", ret);
2677 		goto err_pm_get;
2678 	}
2679 
2680 	ret = clk_prepare_enable(dev->clk_per);
2681 	if (ret)
2682 		goto err_clk_enable;
2683 
2684 	ret = clk_prepare_enable(dev->clk_ahb);
2685 	if (ret)
2686 		goto err_clk_ahb;
2687 
2688 	set_default_params(ctx);
2689 	ctx->fh.m2m_ctx = v4l2_m2m_ctx_init(dev->m2m_dev, ctx,
2690 					    ctx->ops->queue_init);
2691 	if (IS_ERR(ctx->fh.m2m_ctx)) {
2692 		ret = PTR_ERR(ctx->fh.m2m_ctx);
2693 
2694 		v4l2_err(&dev->v4l2_dev, "%s return error (%d)\n",
2695 			 __func__, ret);
2696 		goto err_ctx_init;
2697 	}
2698 
2699 	ret = coda_ctrls_setup(ctx);
2700 	if (ret) {
2701 		v4l2_err(&dev->v4l2_dev, "failed to setup coda controls\n");
2702 		goto err_ctrls_setup;
2703 	}
2704 
2705 	ctx->fh.ctrl_handler = &ctx->ctrls;
2706 
2707 	mutex_init(&ctx->bitstream_mutex);
2708 	mutex_init(&ctx->buffer_mutex);
2709 	mutex_init(&ctx->wakeup_mutex);
2710 	INIT_LIST_HEAD(&ctx->buffer_meta_list);
2711 	spin_lock_init(&ctx->buffer_meta_lock);
2712 
2713 	return 0;
2714 
2715 err_ctrls_setup:
2716 	v4l2_m2m_ctx_release(ctx->fh.m2m_ctx);
2717 err_ctx_init:
2718 	clk_disable_unprepare(dev->clk_ahb);
2719 err_clk_ahb:
2720 	clk_disable_unprepare(dev->clk_per);
2721 err_clk_enable:
2722 	pm_runtime_put_sync(dev->dev);
2723 err_pm_get:
2724 	v4l2_fh_del(&ctx->fh, file);
2725 	v4l2_fh_exit(&ctx->fh);
2726 err_coda_name_init:
2727 	ida_free(&dev->ida, ctx->idx);
2728 err_coda_max:
2729 	kfree(ctx);
2730 	return ret;
2731 }
2732 
coda_release(struct file * file)2733 static int coda_release(struct file *file)
2734 {
2735 	struct coda_dev *dev = video_drvdata(file);
2736 	struct coda_ctx *ctx = file_to_ctx(file);
2737 
2738 	coda_dbg(1, ctx, "release instance (%p)\n", ctx);
2739 
2740 	if (ctx->inst_type == CODA_INST_DECODER && ctx->use_bit)
2741 		coda_bit_stream_end_flag(ctx);
2742 
2743 	/* If this instance is running, call .job_abort and wait for it to end */
2744 	v4l2_m2m_ctx_release(ctx->fh.m2m_ctx);
2745 
2746 	if (ctx->vdoa)
2747 		vdoa_context_destroy(ctx->vdoa);
2748 
2749 	/* In case the instance was not running, we still need to call SEQ_END */
2750 	if (ctx->ops->seq_end_work) {
2751 		queue_work(dev->workqueue, &ctx->seq_end_work);
2752 		flush_work(&ctx->seq_end_work);
2753 	}
2754 
2755 	if (ctx->dev->devtype->product == CODA_DX6)
2756 		coda_free_aux_buf(dev, &ctx->workbuf);
2757 
2758 	v4l2_ctrl_handler_free(&ctx->ctrls);
2759 	clk_disable_unprepare(dev->clk_ahb);
2760 	clk_disable_unprepare(dev->clk_per);
2761 	pm_runtime_put_sync(dev->dev);
2762 	v4l2_fh_del(&ctx->fh, file);
2763 	v4l2_fh_exit(&ctx->fh);
2764 	ida_free(&dev->ida, ctx->idx);
2765 	if (ctx->ops->release)
2766 		ctx->ops->release(ctx);
2767 	debugfs_remove_recursive(ctx->debugfs_entry);
2768 	kfree(ctx);
2769 
2770 	return 0;
2771 }
2772 
2773 static const struct v4l2_file_operations coda_fops = {
2774 	.owner		= THIS_MODULE,
2775 	.open		= coda_open,
2776 	.release	= coda_release,
2777 	.poll		= v4l2_m2m_fop_poll,
2778 	.unlocked_ioctl	= video_ioctl2,
2779 	.mmap		= v4l2_m2m_fop_mmap,
2780 };
2781 
coda_hw_init(struct coda_dev * dev)2782 static int coda_hw_init(struct coda_dev *dev)
2783 {
2784 	u32 data;
2785 	u16 *p;
2786 	int i, ret;
2787 
2788 	ret = clk_prepare_enable(dev->clk_per);
2789 	if (ret)
2790 		goto err_clk_per;
2791 
2792 	ret = clk_prepare_enable(dev->clk_ahb);
2793 	if (ret)
2794 		goto err_clk_ahb;
2795 
2796 	reset_control_reset(dev->rstc);
2797 
2798 	/*
2799 	 * Copy the first CODA_ISRAM_SIZE in the internal SRAM.
2800 	 * The 16-bit chars in the code buffer are in memory access
2801 	 * order, re-sort them to CODA order for register download.
2802 	 * Data in this SRAM survives a reboot.
2803 	 */
2804 	p = (u16 *)dev->codebuf.vaddr;
2805 	if (dev->devtype->product == CODA_DX6) {
2806 		for (i = 0; i < (CODA_ISRAM_SIZE / 2); i++)  {
2807 			data = CODA_DOWN_ADDRESS_SET(i) |
2808 				CODA_DOWN_DATA_SET(p[i ^ 1]);
2809 			coda_write(dev, data, CODA_REG_BIT_CODE_DOWN);
2810 		}
2811 	} else {
2812 		for (i = 0; i < (CODA_ISRAM_SIZE / 2); i++) {
2813 			data = CODA_DOWN_ADDRESS_SET(i) |
2814 				CODA_DOWN_DATA_SET(p[round_down(i, 4) +
2815 							3 - (i % 4)]);
2816 			coda_write(dev, data, CODA_REG_BIT_CODE_DOWN);
2817 		}
2818 	}
2819 
2820 	/* Clear registers */
2821 	for (i = 0; i < 64; i++)
2822 		coda_write(dev, 0, CODA_REG_BIT_CODE_BUF_ADDR + i * 4);
2823 
2824 	/* Tell the BIT where to find everything it needs */
2825 	if (dev->devtype->product == CODA_960 ||
2826 	    dev->devtype->product == CODA_7541 ||
2827 	    dev->devtype->product == CODA_HX4) {
2828 		coda_write(dev, dev->tempbuf.paddr,
2829 				CODA_REG_BIT_TEMP_BUF_ADDR);
2830 		coda_write(dev, 0, CODA_REG_BIT_BIT_STREAM_PARAM);
2831 	} else {
2832 		coda_write(dev, dev->workbuf.paddr,
2833 			      CODA_REG_BIT_WORK_BUF_ADDR);
2834 	}
2835 	coda_write(dev, dev->codebuf.paddr,
2836 		      CODA_REG_BIT_CODE_BUF_ADDR);
2837 	coda_write(dev, 0, CODA_REG_BIT_CODE_RUN);
2838 
2839 	/* Set default values */
2840 	switch (dev->devtype->product) {
2841 	case CODA_DX6:
2842 		coda_write(dev, CODADX6_STREAM_BUF_PIC_FLUSH,
2843 			   CODA_REG_BIT_STREAM_CTRL);
2844 		break;
2845 	default:
2846 		coda_write(dev, CODA7_STREAM_BUF_PIC_FLUSH,
2847 			   CODA_REG_BIT_STREAM_CTRL);
2848 	}
2849 	if (dev->devtype->product == CODA_960)
2850 		coda_write(dev, CODA9_FRAME_ENABLE_BWB,
2851 				CODA_REG_BIT_FRAME_MEM_CTRL);
2852 	else
2853 		coda_write(dev, 0, CODA_REG_BIT_FRAME_MEM_CTRL);
2854 
2855 	if (dev->devtype->product != CODA_DX6)
2856 		coda_write(dev, 0, CODA7_REG_BIT_AXI_SRAM_USE);
2857 
2858 	coda_write(dev, CODA_INT_INTERRUPT_ENABLE,
2859 		      CODA_REG_BIT_INT_ENABLE);
2860 
2861 	/* Reset VPU and start processor */
2862 	data = coda_read(dev, CODA_REG_BIT_CODE_RESET);
2863 	data |= CODA_REG_RESET_ENABLE;
2864 	coda_write(dev, data, CODA_REG_BIT_CODE_RESET);
2865 	udelay(10);
2866 	data &= ~CODA_REG_RESET_ENABLE;
2867 	coda_write(dev, data, CODA_REG_BIT_CODE_RESET);
2868 	coda_write(dev, CODA_REG_RUN_ENABLE, CODA_REG_BIT_CODE_RUN);
2869 
2870 	clk_disable_unprepare(dev->clk_ahb);
2871 	clk_disable_unprepare(dev->clk_per);
2872 
2873 	return 0;
2874 
2875 err_clk_ahb:
2876 	clk_disable_unprepare(dev->clk_per);
2877 err_clk_per:
2878 	return ret;
2879 }
2880 
coda_register_device(struct coda_dev * dev,int i)2881 static int coda_register_device(struct coda_dev *dev, int i)
2882 {
2883 	struct video_device *vfd = &dev->vfd[i];
2884 	const char *name;
2885 	int ret;
2886 
2887 	if (i >= dev->devtype->num_vdevs)
2888 		return -EINVAL;
2889 	name = dev->devtype->vdevs[i]->name;
2890 
2891 	strscpy(vfd->name, dev->devtype->vdevs[i]->name, sizeof(vfd->name));
2892 	vfd->fops	= &coda_fops;
2893 	vfd->ioctl_ops	= &coda_ioctl_ops;
2894 	vfd->release	= video_device_release_empty;
2895 	vfd->lock	= &dev->dev_mutex;
2896 	vfd->v4l2_dev	= &dev->v4l2_dev;
2897 	vfd->vfl_dir	= VFL_DIR_M2M;
2898 	vfd->device_caps = V4L2_CAP_VIDEO_M2M | V4L2_CAP_STREAMING;
2899 	video_set_drvdata(vfd, dev);
2900 
2901 	/* Not applicable, use the selection API instead */
2902 	v4l2_disable_ioctl(vfd, VIDIOC_CROPCAP);
2903 	v4l2_disable_ioctl(vfd, VIDIOC_G_CROP);
2904 	v4l2_disable_ioctl(vfd, VIDIOC_S_CROP);
2905 
2906 	if (dev->devtype->vdevs[i]->type == CODA_INST_ENCODER) {
2907 		v4l2_disable_ioctl(vfd, VIDIOC_DECODER_CMD);
2908 		v4l2_disable_ioctl(vfd, VIDIOC_TRY_DECODER_CMD);
2909 		if (dev->devtype->vdevs[i]->dst_formats[0] == V4L2_PIX_FMT_JPEG) {
2910 			v4l2_disable_ioctl(vfd, VIDIOC_ENUM_FRAMEINTERVALS);
2911 			v4l2_disable_ioctl(vfd, VIDIOC_G_PARM);
2912 			v4l2_disable_ioctl(vfd, VIDIOC_S_PARM);
2913 		}
2914 	} else {
2915 		v4l2_disable_ioctl(vfd, VIDIOC_ENCODER_CMD);
2916 		v4l2_disable_ioctl(vfd, VIDIOC_TRY_ENCODER_CMD);
2917 		v4l2_disable_ioctl(vfd, VIDIOC_ENUM_FRAMESIZES);
2918 		v4l2_disable_ioctl(vfd, VIDIOC_ENUM_FRAMEINTERVALS);
2919 		v4l2_disable_ioctl(vfd, VIDIOC_G_PARM);
2920 		v4l2_disable_ioctl(vfd, VIDIOC_S_PARM);
2921 	}
2922 
2923 	ret = video_register_device(vfd, VFL_TYPE_VIDEO, 0);
2924 	if (!ret)
2925 		v4l2_info(&dev->v4l2_dev, "%s registered as %s\n",
2926 			  name, video_device_node_name(vfd));
2927 	return ret;
2928 }
2929 
coda_copy_firmware(struct coda_dev * dev,const u8 * const buf,size_t size)2930 static void coda_copy_firmware(struct coda_dev *dev, const u8 * const buf,
2931 			       size_t size)
2932 {
2933 	u32 *src = (u32 *)buf;
2934 
2935 	/* Check if the firmware has a 16-byte Freescale header, skip it */
2936 	if (buf[0] == 'M' && buf[1] == 'X')
2937 		src += 4;
2938 	/*
2939 	 * Check whether the firmware is in native order or pre-reordered for
2940 	 * memory access. The first instruction opcode always is 0xe40e.
2941 	 */
2942 	if (__le16_to_cpup((__le16 *)src) == 0xe40e) {
2943 		u32 *dst = dev->codebuf.vaddr;
2944 		int i;
2945 
2946 		/* Firmware in native order, reorder while copying */
2947 		if (dev->devtype->product == CODA_DX6) {
2948 			for (i = 0; i < (size - 16) / 4; i++)
2949 				dst[i] = (src[i] << 16) | (src[i] >> 16);
2950 		} else {
2951 			for (i = 0; i < (size - 16) / 4; i += 2) {
2952 				dst[i] = (src[i + 1] << 16) | (src[i + 1] >> 16);
2953 				dst[i + 1] = (src[i] << 16) | (src[i] >> 16);
2954 			}
2955 		}
2956 	} else {
2957 		/* Copy the already reordered firmware image */
2958 		memcpy(dev->codebuf.vaddr, src, size);
2959 	}
2960 }
2961 
2962 static void coda_fw_callback(const struct firmware *fw, void *context);
2963 
coda_firmware_request(struct coda_dev * dev)2964 static int coda_firmware_request(struct coda_dev *dev)
2965 {
2966 	char *fw;
2967 
2968 	if (dev->firmware >= ARRAY_SIZE(dev->devtype->firmware))
2969 		return -EINVAL;
2970 
2971 	fw = dev->devtype->firmware[dev->firmware];
2972 
2973 	dev_dbg(dev->dev, "requesting firmware '%s' for %s\n", fw,
2974 		coda_product_name(dev->devtype->product));
2975 
2976 	return request_firmware_nowait(THIS_MODULE, true, fw, dev->dev,
2977 				       GFP_KERNEL, dev, coda_fw_callback);
2978 }
2979 
coda_fw_callback(const struct firmware * fw,void * context)2980 static void coda_fw_callback(const struct firmware *fw, void *context)
2981 {
2982 	struct coda_dev *dev = context;
2983 	int i, ret;
2984 
2985 	if (!fw) {
2986 		dev->firmware++;
2987 		ret = coda_firmware_request(dev);
2988 		if (ret < 0) {
2989 			v4l2_err(&dev->v4l2_dev, "firmware request failed\n");
2990 			goto put_pm;
2991 		}
2992 		return;
2993 	}
2994 	if (dev->firmware > 0) {
2995 		/*
2996 		 * Since we can't suppress warnings for failed asynchronous
2997 		 * firmware requests, report that the fallback firmware was
2998 		 * found.
2999 		 */
3000 		dev_info(dev->dev, "Using fallback firmware %s\n",
3001 			 dev->devtype->firmware[dev->firmware]);
3002 	}
3003 
3004 	/* allocate auxiliary per-device code buffer for the BIT processor */
3005 	ret = coda_alloc_aux_buf(dev, &dev->codebuf, fw->size, "codebuf",
3006 				 dev->debugfs_root);
3007 	if (ret < 0)
3008 		goto put_pm;
3009 
3010 	coda_copy_firmware(dev, fw->data, fw->size);
3011 	release_firmware(fw);
3012 
3013 	ret = coda_hw_init(dev);
3014 	if (ret < 0) {
3015 		v4l2_err(&dev->v4l2_dev, "HW initialization failed\n");
3016 		goto put_pm;
3017 	}
3018 
3019 	ret = coda_check_firmware(dev);
3020 	if (ret < 0)
3021 		goto put_pm;
3022 
3023 	dev->m2m_dev = v4l2_m2m_init(&coda_m2m_ops);
3024 	if (IS_ERR(dev->m2m_dev)) {
3025 		v4l2_err(&dev->v4l2_dev, "Failed to init mem2mem device\n");
3026 		goto put_pm;
3027 	}
3028 
3029 	for (i = 0; i < dev->devtype->num_vdevs; i++) {
3030 		ret = coda_register_device(dev, i);
3031 		if (ret) {
3032 			v4l2_err(&dev->v4l2_dev,
3033 				 "Failed to register %s video device: %d\n",
3034 				 dev->devtype->vdevs[i]->name, ret);
3035 			goto rel_vfd;
3036 		}
3037 	}
3038 
3039 	pm_runtime_put_sync(dev->dev);
3040 	return;
3041 
3042 rel_vfd:
3043 	while (--i >= 0)
3044 		video_unregister_device(&dev->vfd[i]);
3045 	v4l2_m2m_release(dev->m2m_dev);
3046 put_pm:
3047 	pm_runtime_put_sync(dev->dev);
3048 }
3049 
3050 enum coda_platform {
3051 	CODA_IMX27,
3052 	CODA_IMX51,
3053 	CODA_IMX53,
3054 	CODA_IMX6Q,
3055 	CODA_IMX6DL,
3056 };
3057 
3058 static const struct coda_devtype coda_devdata[] = {
3059 	[CODA_IMX27] = {
3060 		.firmware     = {
3061 			"vpu_fw_imx27_TO2.bin",
3062 			"vpu/vpu_fw_imx27_TO2.bin",
3063 			"v4l-codadx6-imx27.bin"
3064 		},
3065 		.product      = CODA_DX6,
3066 		.codecs       = codadx6_codecs,
3067 		.num_codecs   = ARRAY_SIZE(codadx6_codecs),
3068 		.vdevs        = codadx6_video_devices,
3069 		.num_vdevs    = ARRAY_SIZE(codadx6_video_devices),
3070 		.workbuf_size = 288 * 1024 + FMO_SLICE_SAVE_BUF_SIZE * 8 * 1024,
3071 		.iram_size    = 0xb000,
3072 	},
3073 	[CODA_IMX51] = {
3074 		.firmware     = {
3075 			"vpu_fw_imx51.bin",
3076 			"vpu/vpu_fw_imx51.bin",
3077 			"v4l-codahx4-imx51.bin"
3078 		},
3079 		.product      = CODA_HX4,
3080 		.codecs       = codahx4_codecs,
3081 		.num_codecs   = ARRAY_SIZE(codahx4_codecs),
3082 		.vdevs        = codahx4_video_devices,
3083 		.num_vdevs    = ARRAY_SIZE(codahx4_video_devices),
3084 		.workbuf_size = 128 * 1024,
3085 		.tempbuf_size = 304 * 1024,
3086 		.iram_size    = 0x14000,
3087 	},
3088 	[CODA_IMX53] = {
3089 		.firmware     = {
3090 			"vpu_fw_imx53.bin",
3091 			"vpu/vpu_fw_imx53.bin",
3092 			"v4l-coda7541-imx53.bin"
3093 		},
3094 		.product      = CODA_7541,
3095 		.codecs       = coda7_codecs,
3096 		.num_codecs   = ARRAY_SIZE(coda7_codecs),
3097 		.vdevs        = coda7_video_devices,
3098 		.num_vdevs    = ARRAY_SIZE(coda7_video_devices),
3099 		.workbuf_size = 128 * 1024,
3100 		.tempbuf_size = 304 * 1024,
3101 		.iram_size    = 0x14000,
3102 	},
3103 	[CODA_IMX6Q] = {
3104 		.firmware     = {
3105 			"vpu_fw_imx6q.bin",
3106 			"vpu/vpu_fw_imx6q.bin",
3107 			"v4l-coda960-imx6q.bin"
3108 		},
3109 		.product      = CODA_960,
3110 		.codecs       = coda9_codecs,
3111 		.num_codecs   = ARRAY_SIZE(coda9_codecs),
3112 		.vdevs        = coda9_video_devices,
3113 		.num_vdevs    = ARRAY_SIZE(coda9_video_devices),
3114 		.workbuf_size = 80 * 1024,
3115 		.tempbuf_size = 204 * 1024,
3116 		.iram_size    = 0x21000,
3117 	},
3118 	[CODA_IMX6DL] = {
3119 		.firmware     = {
3120 			"vpu_fw_imx6d.bin",
3121 			"vpu/vpu_fw_imx6d.bin",
3122 			"v4l-coda960-imx6dl.bin"
3123 		},
3124 		.product      = CODA_960,
3125 		.codecs       = coda9_codecs,
3126 		.num_codecs   = ARRAY_SIZE(coda9_codecs),
3127 		.vdevs        = coda9_video_devices,
3128 		.num_vdevs    = ARRAY_SIZE(coda9_video_devices),
3129 		.workbuf_size = 80 * 1024,
3130 		.tempbuf_size = 204 * 1024,
3131 		.iram_size    = 0x1f000, /* leave 4k for suspend code */
3132 	},
3133 };
3134 
3135 static const struct of_device_id coda_dt_ids[] = {
3136 	{ .compatible = "fsl,imx27-vpu", .data = &coda_devdata[CODA_IMX27] },
3137 	{ .compatible = "fsl,imx51-vpu", .data = &coda_devdata[CODA_IMX51] },
3138 	{ .compatible = "fsl,imx53-vpu", .data = &coda_devdata[CODA_IMX53] },
3139 	{ .compatible = "fsl,imx6q-vpu", .data = &coda_devdata[CODA_IMX6Q] },
3140 	{ .compatible = "fsl,imx6dl-vpu", .data = &coda_devdata[CODA_IMX6DL] },
3141 	{ /* sentinel */ }
3142 };
3143 MODULE_DEVICE_TABLE(of, coda_dt_ids);
3144 
coda_probe(struct platform_device * pdev)3145 static int coda_probe(struct platform_device *pdev)
3146 {
3147 	struct device_node *np = pdev->dev.of_node;
3148 	struct gen_pool *pool;
3149 	struct coda_dev *dev;
3150 	int ret, irq;
3151 
3152 	dev = devm_kzalloc(&pdev->dev, sizeof(*dev), GFP_KERNEL);
3153 	if (!dev)
3154 		return -ENOMEM;
3155 
3156 	dev->devtype = of_device_get_match_data(&pdev->dev);
3157 
3158 	dev->dev = &pdev->dev;
3159 	dev->clk_per = devm_clk_get(&pdev->dev, "per");
3160 	if (IS_ERR(dev->clk_per)) {
3161 		dev_err(&pdev->dev, "Could not get per clock\n");
3162 		return PTR_ERR(dev->clk_per);
3163 	}
3164 
3165 	dev->clk_ahb = devm_clk_get(&pdev->dev, "ahb");
3166 	if (IS_ERR(dev->clk_ahb)) {
3167 		dev_err(&pdev->dev, "Could not get ahb clock\n");
3168 		return PTR_ERR(dev->clk_ahb);
3169 	}
3170 
3171 	/* Get  memory for physical registers */
3172 	dev->regs_base = devm_platform_ioremap_resource(pdev, 0);
3173 	if (IS_ERR(dev->regs_base))
3174 		return PTR_ERR(dev->regs_base);
3175 
3176 	/* IRQ */
3177 	irq = platform_get_irq_byname(pdev, "bit");
3178 	if (irq < 0)
3179 		irq = platform_get_irq(pdev, 0);
3180 	if (irq < 0)
3181 		return irq;
3182 
3183 	ret = devm_request_irq(&pdev->dev, irq, coda_irq_handler, 0,
3184 			       CODA_NAME "-video", dev);
3185 	if (ret < 0) {
3186 		dev_err(&pdev->dev, "failed to request irq: %d\n", ret);
3187 		return ret;
3188 	}
3189 
3190 	/* JPEG IRQ */
3191 	if (dev->devtype->product == CODA_960) {
3192 		irq = platform_get_irq_byname(pdev, "jpeg");
3193 		if (irq < 0)
3194 			return irq;
3195 
3196 		ret = devm_request_threaded_irq(&pdev->dev, irq, NULL,
3197 						coda9_jpeg_irq_handler,
3198 						IRQF_ONESHOT, CODA_NAME "-jpeg",
3199 						dev);
3200 		if (ret < 0) {
3201 			dev_err(&pdev->dev, "failed to request jpeg irq\n");
3202 			return ret;
3203 		}
3204 	}
3205 
3206 	dev->rstc = devm_reset_control_get_optional_exclusive(&pdev->dev,
3207 							      NULL);
3208 	if (IS_ERR(dev->rstc)) {
3209 		ret = PTR_ERR(dev->rstc);
3210 		dev_err(&pdev->dev, "failed get reset control: %d\n", ret);
3211 		return ret;
3212 	}
3213 
3214 	/* Get IRAM pool from device tree */
3215 	pool = of_gen_pool_get(np, "iram", 0);
3216 	if (!pool) {
3217 		dev_err(&pdev->dev, "iram pool not available\n");
3218 		return -ENOMEM;
3219 	}
3220 	dev->iram_pool = pool;
3221 
3222 	/* Get vdoa_data if supported by the platform */
3223 	dev->vdoa = coda_get_vdoa_data();
3224 	if (PTR_ERR(dev->vdoa) == -EPROBE_DEFER)
3225 		return -EPROBE_DEFER;
3226 
3227 	ret = v4l2_device_register(&pdev->dev, &dev->v4l2_dev);
3228 	if (ret)
3229 		return ret;
3230 
3231 	ratelimit_default_init(&dev->mb_err_rs);
3232 	mutex_init(&dev->dev_mutex);
3233 	mutex_init(&dev->coda_mutex);
3234 	ida_init(&dev->ida);
3235 
3236 	dev->debugfs_root = debugfs_create_dir("coda", NULL);
3237 
3238 	/* allocate auxiliary per-device buffers for the BIT processor */
3239 	if (dev->devtype->product == CODA_DX6) {
3240 		ret = coda_alloc_aux_buf(dev, &dev->workbuf,
3241 					 dev->devtype->workbuf_size, "workbuf",
3242 					 dev->debugfs_root);
3243 		if (ret < 0)
3244 			goto err_v4l2_register;
3245 	}
3246 
3247 	if (dev->devtype->tempbuf_size) {
3248 		ret = coda_alloc_aux_buf(dev, &dev->tempbuf,
3249 					 dev->devtype->tempbuf_size, "tempbuf",
3250 					 dev->debugfs_root);
3251 		if (ret < 0)
3252 			goto err_v4l2_register;
3253 	}
3254 
3255 	dev->iram.size = dev->devtype->iram_size;
3256 	dev->iram.vaddr = gen_pool_dma_alloc(dev->iram_pool, dev->iram.size,
3257 					     &dev->iram.paddr);
3258 	if (!dev->iram.vaddr) {
3259 		dev_warn(&pdev->dev, "unable to alloc iram\n");
3260 	} else {
3261 		memset(dev->iram.vaddr, 0, dev->iram.size);
3262 		dev->iram.blob.data = dev->iram.vaddr;
3263 		dev->iram.blob.size = dev->iram.size;
3264 		dev->iram.dentry = debugfs_create_blob("iram", 0444,
3265 						       dev->debugfs_root,
3266 						       &dev->iram.blob);
3267 	}
3268 
3269 	dev->workqueue = alloc_ordered_workqueue("coda", WQ_MEM_RECLAIM);
3270 	if (!dev->workqueue) {
3271 		dev_err(&pdev->dev, "unable to alloc workqueue\n");
3272 		ret = -ENOMEM;
3273 		goto err_v4l2_register;
3274 	}
3275 
3276 	platform_set_drvdata(pdev, dev);
3277 
3278 	/*
3279 	 * Start activated so we can directly call coda_hw_init in
3280 	 * coda_fw_callback regardless of whether CONFIG_PM is
3281 	 * enabled or whether the device is associated with a PM domain.
3282 	 */
3283 	pm_runtime_get_noresume(&pdev->dev);
3284 	pm_runtime_set_active(&pdev->dev);
3285 	pm_runtime_enable(&pdev->dev);
3286 
3287 	ret = coda_firmware_request(dev);
3288 	if (ret)
3289 		goto err_alloc_workqueue;
3290 	return 0;
3291 
3292 err_alloc_workqueue:
3293 	pm_runtime_disable(&pdev->dev);
3294 	pm_runtime_put_noidle(&pdev->dev);
3295 	destroy_workqueue(dev->workqueue);
3296 err_v4l2_register:
3297 	v4l2_device_unregister(&dev->v4l2_dev);
3298 	return ret;
3299 }
3300 
coda_remove(struct platform_device * pdev)3301 static void coda_remove(struct platform_device *pdev)
3302 {
3303 	struct coda_dev *dev = platform_get_drvdata(pdev);
3304 	int i;
3305 
3306 	for (i = 0; i < ARRAY_SIZE(dev->vfd); i++) {
3307 		if (video_get_drvdata(&dev->vfd[i]))
3308 			video_unregister_device(&dev->vfd[i]);
3309 	}
3310 	if (dev->m2m_dev)
3311 		v4l2_m2m_release(dev->m2m_dev);
3312 	pm_runtime_disable(&pdev->dev);
3313 	v4l2_device_unregister(&dev->v4l2_dev);
3314 	destroy_workqueue(dev->workqueue);
3315 	if (dev->iram.vaddr)
3316 		gen_pool_free(dev->iram_pool, (unsigned long)dev->iram.vaddr,
3317 			      dev->iram.size);
3318 	coda_free_aux_buf(dev, &dev->codebuf);
3319 	coda_free_aux_buf(dev, &dev->tempbuf);
3320 	coda_free_aux_buf(dev, &dev->workbuf);
3321 	debugfs_remove_recursive(dev->debugfs_root);
3322 	ida_destroy(&dev->ida);
3323 }
3324 
3325 #ifdef CONFIG_PM
coda_runtime_resume(struct device * dev)3326 static int coda_runtime_resume(struct device *dev)
3327 {
3328 	struct coda_dev *cdev = dev_get_drvdata(dev);
3329 	int ret = 0;
3330 
3331 	if (dev->pm_domain && cdev->codebuf.vaddr) {
3332 		ret = coda_hw_init(cdev);
3333 		if (ret)
3334 			v4l2_err(&cdev->v4l2_dev, "HW initialization failed\n");
3335 	}
3336 
3337 	return ret;
3338 }
3339 #endif
3340 
3341 static const struct dev_pm_ops coda_pm_ops = {
3342 	SET_RUNTIME_PM_OPS(NULL, coda_runtime_resume, NULL)
3343 	SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend, pm_runtime_force_resume)
3344 };
3345 
3346 static struct platform_driver coda_driver = {
3347 	.probe	= coda_probe,
3348 	.remove = coda_remove,
3349 	.driver	= {
3350 		.name	= CODA_NAME,
3351 		.of_match_table = coda_dt_ids,
3352 		.pm	= &coda_pm_ops,
3353 	},
3354 };
3355 
3356 module_platform_driver(coda_driver);
3357 
3358 MODULE_LICENSE("GPL");
3359 MODULE_AUTHOR("Javier Martin <javier.martin@vista-silicon.com>");
3360 MODULE_DESCRIPTION("Coda multi-standard codec V4L2 driver");
3361