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Laurent Pinchart1c4b5f42018-04-22 17:33:20 -04001// SPDX-License-Identifier: GPL-2.0+
Laurent Pinchart26e0ca22013-06-04 11:22:30 -03002/*
3 * vsp1_entity.c -- R-Car VSP1 Base Entity
4 *
Laurent Pinchart8a1edc52014-02-06 14:42:31 -03005 * Copyright (C) 2013-2014 Renesas Electronics Corporation
Laurent Pinchart26e0ca22013-06-04 11:22:30 -03006 *
7 * Contact: Laurent Pinchart (laurent.pinchart@ideasonboard.com)
Laurent Pinchart26e0ca22013-06-04 11:22:30 -03008 */
9
10#include <linux/device.h>
11#include <linux/gfp.h>
12
13#include <media/media-entity.h>
Laurent Pincharta626e642013-07-10 12:03:30 -030014#include <media/v4l2-ctrls.h>
Laurent Pinchart26e0ca22013-06-04 11:22:30 -030015#include <media/v4l2-subdev.h>
16
17#include "vsp1.h"
Laurent Pinchartaa380ea2015-11-01 10:46:25 -020018#include "vsp1_dl.h"
Laurent Pinchart26e0ca22013-06-04 11:22:30 -030019#include "vsp1_entity.h"
Laurent Pinchartc8663c82016-09-07 09:09:53 -030020#include "vsp1_pipe.h"
21#include "vsp1_rwpf.h"
Laurent Pinchartaa380ea2015-11-01 10:46:25 -020022
Laurent Pinchartc8663c82016-09-07 09:09:53 -030023void vsp1_entity_route_setup(struct vsp1_entity *entity,
24 struct vsp1_pipeline *pipe,
Laurent Pinchart5e8dbbf2015-11-22 20:29:25 -020025 struct vsp1_dl_list *dl)
Laurent Pinchart665b6932015-08-02 18:58:31 -030026{
Laurent Pinchartc8663c82016-09-07 09:09:53 -030027 struct vsp1_entity *source;
Laurent Pinchart61341482017-05-25 00:16:57 +030028 u32 route;
Laurent Pinchart665b6932015-08-02 18:58:31 -030029
Laurent Pinchartf2421522016-02-24 20:40:22 -030030 if (entity->type == VSP1_ENTITY_HGO) {
31 u32 smppt;
32
33 /*
34 * The HGO is a special case, its routing is configured on the
35 * sink pad.
36 */
Laurent Pinchart2275e8d2017-06-25 20:15:22 +030037 source = entity->sources[0];
Laurent Pinchartf2421522016-02-24 20:40:22 -030038 smppt = (pipe->output->entity.index << VI6_DPR_SMPPT_TGW_SHIFT)
39 | (source->route->output << VI6_DPR_SMPPT_PT_SHIFT);
40
41 vsp1_dl_list_write(dl, VI6_DPR_HGO_SMPPT, smppt);
42 return;
Niklas Söderlund0ac702d2016-09-06 11:38:56 -030043 } else if (entity->type == VSP1_ENTITY_HGT) {
44 u32 smppt;
45
46 /*
47 * The HGT is a special case, its routing is configured on the
48 * sink pad.
49 */
Laurent Pinchart2275e8d2017-06-25 20:15:22 +030050 source = entity->sources[0];
Niklas Söderlund0ac702d2016-09-06 11:38:56 -030051 smppt = (pipe->output->entity.index << VI6_DPR_SMPPT_TGW_SHIFT)
52 | (source->route->output << VI6_DPR_SMPPT_PT_SHIFT);
53
54 vsp1_dl_list_write(dl, VI6_DPR_HGT_SMPPT, smppt);
55 return;
Laurent Pinchartf2421522016-02-24 20:40:22 -030056 }
57
Laurent Pinchartc8663c82016-09-07 09:09:53 -030058 source = entity;
Laurent Pinchart665b6932015-08-02 18:58:31 -030059 if (source->route->reg == 0)
60 return;
61
Laurent Pinchart61341482017-05-25 00:16:57 +030062 route = source->sink->route->inputs[source->sink_pad];
63 /*
64 * The ILV and BRS share the same data path route. The extra BRSSEL bit
65 * selects between the ILV and BRS.
66 */
67 if (source->type == VSP1_ENTITY_BRS)
68 route |= VI6_DPR_ROUTE_BRSSEL;
69 vsp1_dl_list_write(dl, source->route->reg, route);
Laurent Pinchart665b6932015-08-02 18:58:31 -030070}
71
Laurent Pinchart26e0ca22013-06-04 11:22:30 -030072/* -----------------------------------------------------------------------------
73 * V4L2 Subdevice Operations
74 */
75
Laurent Pincharte790c3c2015-11-15 19:14:22 -020076/**
77 * vsp1_entity_get_pad_config - Get the pad configuration for an entity
78 * @entity: the entity
79 * @cfg: the TRY pad configuration
80 * @which: configuration selector (ACTIVE or TRY)
81 *
Laurent Pinchart34e77ed2016-06-26 08:09:31 -030082 * When called with which set to V4L2_SUBDEV_FORMAT_ACTIVE the caller must hold
83 * the entity lock to access the returned configuration.
84 *
Laurent Pincharte790c3c2015-11-15 19:14:22 -020085 * Return the pad configuration requested by the which argument. The TRY
86 * configuration is passed explicitly to the function through the cfg argument
87 * and simply returned when requested. The ACTIVE configuration comes from the
88 * entity structure.
89 */
90struct v4l2_subdev_pad_config *
91vsp1_entity_get_pad_config(struct vsp1_entity *entity,
92 struct v4l2_subdev_pad_config *cfg,
93 enum v4l2_subdev_format_whence which)
94{
95 switch (which) {
96 case V4L2_SUBDEV_FORMAT_ACTIVE:
97 return entity->config;
98 case V4L2_SUBDEV_FORMAT_TRY:
99 default:
100 return cfg;
101 }
102}
103
104/**
105 * vsp1_entity_get_pad_format - Get a pad format from storage for an entity
106 * @entity: the entity
107 * @cfg: the configuration storage
108 * @pad: the pad number
109 *
110 * Return the format stored in the given configuration for an entity's pad. The
111 * configuration can be an ACTIVE or TRY configuration.
112 */
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300113struct v4l2_mbus_framefmt *
114vsp1_entity_get_pad_format(struct vsp1_entity *entity,
Hans Verkuilf7234132015-03-04 01:47:54 -0800115 struct v4l2_subdev_pad_config *cfg,
Laurent Pincharte790c3c2015-11-15 19:14:22 -0200116 unsigned int pad)
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300117{
Laurent Pincharte790c3c2015-11-15 19:14:22 -0200118 return v4l2_subdev_get_try_format(&entity->subdev, cfg, pad);
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300119}
120
Laurent Pinchartccd3d952016-03-03 20:17:49 -0300121/**
122 * vsp1_entity_get_pad_selection - Get a pad selection from storage for entity
123 * @entity: the entity
124 * @cfg: the configuration storage
125 * @pad: the pad number
126 * @target: the selection target
127 *
128 * Return the selection rectangle stored in the given configuration for an
129 * entity's pad. The configuration can be an ACTIVE or TRY configuration. The
130 * selection target can be COMPOSE or CROP.
131 */
Laurent Pinchartb7e51072015-11-15 19:14:22 -0200132struct v4l2_rect *
Laurent Pinchartccd3d952016-03-03 20:17:49 -0300133vsp1_entity_get_pad_selection(struct vsp1_entity *entity,
134 struct v4l2_subdev_pad_config *cfg,
135 unsigned int pad, unsigned int target)
Laurent Pinchartb7e51072015-11-15 19:14:22 -0200136{
Laurent Pinchartccd3d952016-03-03 20:17:49 -0300137 switch (target) {
138 case V4L2_SEL_TGT_COMPOSE:
139 return v4l2_subdev_get_try_compose(&entity->subdev, cfg, pad);
140 case V4L2_SEL_TGT_CROP:
141 return v4l2_subdev_get_try_crop(&entity->subdev, cfg, pad);
142 default:
143 return NULL;
144 }
Laurent Pinchartb7e51072015-11-15 19:14:22 -0200145}
146
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300147/*
Laurent Pinchart0efdf0f2015-11-15 20:09:08 -0200148 * vsp1_entity_init_cfg - Initialize formats on all pads
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300149 * @subdev: V4L2 subdevice
Hans Verkuilf7234132015-03-04 01:47:54 -0800150 * @cfg: V4L2 subdev pad configuration
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300151 *
Laurent Pinchart0efdf0f2015-11-15 20:09:08 -0200152 * Initialize all pad formats with default values in the given pad config. This
153 * function can be used as a handler for the subdev pad::init_cfg operation.
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300154 */
Laurent Pinchart0efdf0f2015-11-15 20:09:08 -0200155int vsp1_entity_init_cfg(struct v4l2_subdev *subdev,
156 struct v4l2_subdev_pad_config *cfg)
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300157{
158 struct v4l2_subdev_format format;
159 unsigned int pad;
160
161 for (pad = 0; pad < subdev->entity.num_pads - 1; ++pad) {
162 memset(&format, 0, sizeof(format));
163
164 format.pad = pad;
Hans Verkuilf7234132015-03-04 01:47:54 -0800165 format.which = cfg ? V4L2_SUBDEV_FORMAT_TRY
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300166 : V4L2_SUBDEV_FORMAT_ACTIVE;
167
Hans Verkuilf7234132015-03-04 01:47:54 -0800168 v4l2_subdev_call(subdev, pad, set_fmt, cfg, &format);
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300169 }
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300170
171 return 0;
172}
173
Laurent Pinchart3f557222016-02-24 21:10:13 -0300174/*
175 * vsp1_subdev_get_pad_format - Subdev pad get_fmt handler
176 * @subdev: V4L2 subdevice
177 * @cfg: V4L2 subdev pad configuration
178 * @fmt: V4L2 subdev format
179 *
180 * This function implements the subdev get_fmt pad operation. It can be used as
181 * a direct drop-in for the operation handler.
182 */
183int vsp1_subdev_get_pad_format(struct v4l2_subdev *subdev,
184 struct v4l2_subdev_pad_config *cfg,
185 struct v4l2_subdev_format *fmt)
186{
187 struct vsp1_entity *entity = to_vsp1_entity(subdev);
188 struct v4l2_subdev_pad_config *config;
189
190 config = vsp1_entity_get_pad_config(entity, cfg, fmt->which);
191 if (!config)
192 return -EINVAL;
193
Laurent Pinchart34e77ed2016-06-26 08:09:31 -0300194 mutex_lock(&entity->lock);
Laurent Pinchart3f557222016-02-24 21:10:13 -0300195 fmt->format = *vsp1_entity_get_pad_format(entity, config, fmt->pad);
Laurent Pinchart34e77ed2016-06-26 08:09:31 -0300196 mutex_unlock(&entity->lock);
Laurent Pinchart3f557222016-02-24 21:10:13 -0300197
198 return 0;
199}
200
Laurent Pinchart6ad9ba92016-02-24 20:25:42 -0300201/*
202 * vsp1_subdev_enum_mbus_code - Subdev pad enum_mbus_code handler
203 * @subdev: V4L2 subdevice
204 * @cfg: V4L2 subdev pad configuration
205 * @code: Media bus code enumeration
206 * @codes: Array of supported media bus codes
207 * @ncodes: Number of supported media bus codes
208 *
209 * This function implements the subdev enum_mbus_code pad operation for entities
210 * that do not support format conversion. It enumerates the given supported
211 * media bus codes on the sink pad and reports a source pad format identical to
212 * the sink pad.
213 */
214int vsp1_subdev_enum_mbus_code(struct v4l2_subdev *subdev,
215 struct v4l2_subdev_pad_config *cfg,
216 struct v4l2_subdev_mbus_code_enum *code,
217 const unsigned int *codes, unsigned int ncodes)
218{
219 struct vsp1_entity *entity = to_vsp1_entity(subdev);
220
221 if (code->pad == 0) {
222 if (code->index >= ncodes)
223 return -EINVAL;
224
225 code->code = codes[code->index];
226 } else {
227 struct v4l2_subdev_pad_config *config;
228 struct v4l2_mbus_framefmt *format;
229
Laurent Pinchart9dbed952017-02-26 10:29:50 -0300230 /*
231 * The entity can't perform format conversion, the sink format
Laurent Pinchart6ad9ba92016-02-24 20:25:42 -0300232 * is always identical to the source format.
233 */
234 if (code->index)
235 return -EINVAL;
236
237 config = vsp1_entity_get_pad_config(entity, cfg, code->which);
238 if (!config)
239 return -EINVAL;
240
Laurent Pinchart34e77ed2016-06-26 08:09:31 -0300241 mutex_lock(&entity->lock);
Laurent Pinchart6ad9ba92016-02-24 20:25:42 -0300242 format = vsp1_entity_get_pad_format(entity, config, 0);
243 code->code = format->code;
Laurent Pinchart34e77ed2016-06-26 08:09:31 -0300244 mutex_unlock(&entity->lock);
Laurent Pinchart6ad9ba92016-02-24 20:25:42 -0300245 }
246
247 return 0;
248}
249
Laurent Pinchart076e8342016-02-24 20:25:42 -0300250/*
251 * vsp1_subdev_enum_frame_size - Subdev pad enum_frame_size handler
252 * @subdev: V4L2 subdevice
253 * @cfg: V4L2 subdev pad configuration
254 * @fse: Frame size enumeration
255 * @min_width: Minimum image width
256 * @min_height: Minimum image height
257 * @max_width: Maximum image width
258 * @max_height: Maximum image height
259 *
260 * This function implements the subdev enum_frame_size pad operation for
261 * entities that do not support scaling or cropping. It reports the given
262 * minimum and maximum frame width and height on the sink pad, and a fixed
263 * source pad size identical to the sink pad.
264 */
265int vsp1_subdev_enum_frame_size(struct v4l2_subdev *subdev,
266 struct v4l2_subdev_pad_config *cfg,
267 struct v4l2_subdev_frame_size_enum *fse,
268 unsigned int min_width, unsigned int min_height,
269 unsigned int max_width, unsigned int max_height)
270{
271 struct vsp1_entity *entity = to_vsp1_entity(subdev);
272 struct v4l2_subdev_pad_config *config;
273 struct v4l2_mbus_framefmt *format;
Laurent Pinchart34e77ed2016-06-26 08:09:31 -0300274 int ret = 0;
Laurent Pinchart076e8342016-02-24 20:25:42 -0300275
276 config = vsp1_entity_get_pad_config(entity, cfg, fse->which);
277 if (!config)
278 return -EINVAL;
279
280 format = vsp1_entity_get_pad_format(entity, config, fse->pad);
281
Laurent Pinchart34e77ed2016-06-26 08:09:31 -0300282 mutex_lock(&entity->lock);
283
284 if (fse->index || fse->code != format->code) {
285 ret = -EINVAL;
286 goto done;
287 }
Laurent Pinchart076e8342016-02-24 20:25:42 -0300288
289 if (fse->pad == 0) {
290 fse->min_width = min_width;
291 fse->max_width = max_width;
292 fse->min_height = min_height;
293 fse->max_height = max_height;
294 } else {
Laurent Pinchart9dbed952017-02-26 10:29:50 -0300295 /*
296 * The size on the source pad are fixed and always identical to
Laurent Pinchart076e8342016-02-24 20:25:42 -0300297 * the size on the sink pad.
298 */
299 fse->min_width = format->width;
300 fse->max_width = format->width;
301 fse->min_height = format->height;
302 fse->max_height = format->height;
303 }
304
Laurent Pinchart34e77ed2016-06-26 08:09:31 -0300305done:
306 mutex_unlock(&entity->lock);
307 return ret;
Laurent Pinchart076e8342016-02-24 20:25:42 -0300308}
309
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300310/* -----------------------------------------------------------------------------
311 * Media Operations
312 */
313
Laurent Pinchart2275e8d2017-06-25 20:15:22 +0300314static inline struct vsp1_entity *
315media_entity_to_vsp1_entity(struct media_entity *entity)
316{
317 return container_of(entity, struct vsp1_entity, subdev.entity);
318}
319
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300320static int vsp1_entity_link_setup_source(const struct media_pad *source_pad,
321 const struct media_pad *sink_pad,
322 u32 flags)
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300323{
324 struct vsp1_entity *source;
325
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300326 source = media_entity_to_vsp1_entity(source_pad->entity);
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300327
328 if (!source->route)
329 return 0;
330
331 if (flags & MEDIA_LNK_FL_ENABLED) {
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300332 struct vsp1_entity *sink
333 = media_entity_to_vsp1_entity(sink_pad->entity);
334
335 /*
336 * Fan-out is limited to one for the normal data path plus
337 * optional HGO and HGT. We ignore the HGO and HGT here.
338 */
339 if (sink->type != VSP1_ENTITY_HGO &&
340 sink->type != VSP1_ENTITY_HGT) {
341 if (source->sink)
342 return -EBUSY;
Laurent Pinchart2275e8d2017-06-25 20:15:22 +0300343 source->sink = sink;
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300344 source->sink_pad = sink_pad->index;
345 }
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300346 } else {
347 source->sink = NULL;
Laurent Pinchartd9b45ed2013-07-10 18:37:27 -0300348 source->sink_pad = 0;
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300349 }
350
351 return 0;
352}
353
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300354static int vsp1_entity_link_setup_sink(const struct media_pad *source_pad,
355 const struct media_pad *sink_pad,
356 u32 flags)
357{
358 struct vsp1_entity *sink;
Laurent Pinchart2275e8d2017-06-25 20:15:22 +0300359 struct vsp1_entity *source;
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300360
361 sink = media_entity_to_vsp1_entity(sink_pad->entity);
Laurent Pinchart2275e8d2017-06-25 20:15:22 +0300362 source = media_entity_to_vsp1_entity(source_pad->entity);
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300363
364 if (flags & MEDIA_LNK_FL_ENABLED) {
365 /* Fan-in is limited to one. */
366 if (sink->sources[sink_pad->index])
367 return -EBUSY;
368
Laurent Pinchart2275e8d2017-06-25 20:15:22 +0300369 sink->sources[sink_pad->index] = source;
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300370 } else {
371 sink->sources[sink_pad->index] = NULL;
372 }
373
374 return 0;
375}
376
377int vsp1_entity_link_setup(struct media_entity *entity,
378 const struct media_pad *local,
379 const struct media_pad *remote, u32 flags)
380{
381 if (local->flags & MEDIA_PAD_FL_SOURCE)
382 return vsp1_entity_link_setup_source(local, remote, flags);
383 else
384 return vsp1_entity_link_setup_sink(remote, local, flags);
385}
386
387/**
388 * vsp1_entity_remote_pad - Find the pad at the remote end of a link
389 * @pad: Pad at the local end of the link
390 *
391 * Search for a remote pad connected to the given pad by iterating over all
392 * links originating or terminating at that pad until an enabled link is found.
393 *
394 * Our link setup implementation guarantees that the output fan-out will not be
395 * higher than one for the data pipelines, except for the links to the HGO and
396 * HGT that can be enabled in addition to a regular data link. When traversing
397 * outgoing links this function ignores HGO and HGT entities and should thus be
398 * used in place of the generic media_entity_remote_pad() function to traverse
399 * data pipelines.
400 *
401 * Return a pointer to the pad at the remote end of the first found enabled
402 * link, or NULL if no enabled link has been found.
403 */
404struct media_pad *vsp1_entity_remote_pad(struct media_pad *pad)
405{
406 struct media_link *link;
407
408 list_for_each_entry(link, &pad->entity->links, list) {
409 struct vsp1_entity *entity;
410
411 if (!(link->flags & MEDIA_LNK_FL_ENABLED))
412 continue;
413
414 /* If we're the sink the source will never be an HGO or HGT. */
415 if (link->sink == pad)
416 return link->source;
417
418 if (link->source != pad)
419 continue;
420
421 /* If the sink isn't a subdevice it can't be an HGO or HGT. */
422 if (!is_media_entity_v4l2_subdev(link->sink->entity))
423 return link->sink;
424
425 entity = media_entity_to_vsp1_entity(link->sink->entity);
426 if (entity->type != VSP1_ENTITY_HGO &&
427 entity->type != VSP1_ENTITY_HGT)
428 return link->sink;
429 }
430
431 return NULL;
432
433}
434
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300435/* -----------------------------------------------------------------------------
436 * Initialization
437 */
438
Laurent Pinchart44f46192016-02-24 19:10:04 -0300439#define VSP1_ENTITY_ROUTE(ent) \
440 { VSP1_ENTITY_##ent, 0, VI6_DPR_##ent##_ROUTE, \
441 { VI6_DPR_NODE_##ent }, VI6_DPR_NODE_##ent }
442
443#define VSP1_ENTITY_ROUTE_RPF(idx) \
444 { VSP1_ENTITY_RPF, idx, VI6_DPR_RPF_ROUTE(idx), \
445 { 0, }, VI6_DPR_NODE_RPF(idx) }
446
447#define VSP1_ENTITY_ROUTE_UDS(idx) \
448 { VSP1_ENTITY_UDS, idx, VI6_DPR_UDS_ROUTE(idx), \
449 { VI6_DPR_NODE_UDS(idx) }, VI6_DPR_NODE_UDS(idx) }
450
451#define VSP1_ENTITY_ROUTE_WPF(idx) \
452 { VSP1_ENTITY_WPF, idx, 0, \
453 { VI6_DPR_NODE_WPF(idx) }, VI6_DPR_NODE_WPF(idx) }
454
Laurent Pinchartd9b45ed2013-07-10 18:37:27 -0300455static const struct vsp1_route vsp1_routes[] = {
Laurent Pinchart61341482017-05-25 00:16:57 +0300456 { VSP1_ENTITY_BRS, 0, VI6_DPR_ILV_BRS_ROUTE,
457 { VI6_DPR_NODE_BRS_IN(0), VI6_DPR_NODE_BRS_IN(1) }, 0 },
Laurent Pinchart629bb6d2013-07-10 18:03:46 -0300458 { VSP1_ENTITY_BRU, 0, VI6_DPR_BRU_ROUTE,
459 { VI6_DPR_NODE_BRU_IN(0), VI6_DPR_NODE_BRU_IN(1),
Laurent Pinchart7f2d50f2015-09-07 08:05:39 -0300460 VI6_DPR_NODE_BRU_IN(2), VI6_DPR_NODE_BRU_IN(3),
Laurent Pinchart44f46192016-02-24 19:10:04 -0300461 VI6_DPR_NODE_BRU_IN(4) }, VI6_DPR_NODE_BRU_OUT },
Laurent Pinchart1fd87bf2015-11-11 23:04:44 -0200462 VSP1_ENTITY_ROUTE(CLU),
Laurent Pinchartf2421522016-02-24 20:40:22 -0300463 { VSP1_ENTITY_HGO, 0, 0, { 0, }, 0 },
Niklas Söderlund0ac702d2016-09-06 11:38:56 -0300464 { VSP1_ENTITY_HGT, 0, 0, { 0, }, 0 },
Laurent Pinchart44f46192016-02-24 19:10:04 -0300465 VSP1_ENTITY_ROUTE(HSI),
466 VSP1_ENTITY_ROUTE(HST),
Laurent Pinchart3be0bf92017-06-21 16:10:18 +0300467 { VSP1_ENTITY_LIF, 0, 0, { 0, }, 0 },
468 { VSP1_ENTITY_LIF, 1, 0, { 0, }, 0 },
Laurent Pinchart44f46192016-02-24 19:10:04 -0300469 VSP1_ENTITY_ROUTE(LUT),
470 VSP1_ENTITY_ROUTE_RPF(0),
471 VSP1_ENTITY_ROUTE_RPF(1),
472 VSP1_ENTITY_ROUTE_RPF(2),
473 VSP1_ENTITY_ROUTE_RPF(3),
474 VSP1_ENTITY_ROUTE_RPF(4),
475 VSP1_ENTITY_ROUTE(SRU),
476 VSP1_ENTITY_ROUTE_UDS(0),
477 VSP1_ENTITY_ROUTE_UDS(1),
478 VSP1_ENTITY_ROUTE_UDS(2),
479 VSP1_ENTITY_ROUTE_WPF(0),
480 VSP1_ENTITY_ROUTE_WPF(1),
481 VSP1_ENTITY_ROUTE_WPF(2),
482 VSP1_ENTITY_ROUTE_WPF(3),
Laurent Pinchartd9b45ed2013-07-10 18:37:27 -0300483};
484
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300485int vsp1_entity_init(struct vsp1_device *vsp1, struct vsp1_entity *entity,
Laurent Pinchart823329d2015-11-15 19:42:01 -0200486 const char *name, unsigned int num_pads,
Laurent Pinchart6a8e07b2016-02-15 22:10:26 -0200487 const struct v4l2_subdev_ops *ops, u32 function)
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300488{
Laurent Pinchart823329d2015-11-15 19:42:01 -0200489 struct v4l2_subdev *subdev;
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300490 unsigned int i;
Laurent Pinchart823329d2015-11-15 19:42:01 -0200491 int ret;
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300492
Laurent Pinchartd9b45ed2013-07-10 18:37:27 -0300493 for (i = 0; i < ARRAY_SIZE(vsp1_routes); ++i) {
494 if (vsp1_routes[i].type == entity->type &&
495 vsp1_routes[i].index == entity->index) {
496 entity->route = &vsp1_routes[i];
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300497 break;
498 }
499 }
500
Laurent Pinchartd9b45ed2013-07-10 18:37:27 -0300501 if (i == ARRAY_SIZE(vsp1_routes))
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300502 return -EINVAL;
503
Laurent Pinchart34e77ed2016-06-26 08:09:31 -0300504 mutex_init(&entity->lock);
505
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300506 entity->vsp1 = vsp1;
507 entity->source_pad = num_pads - 1;
508
Laurent Pincharte790c3c2015-11-15 19:14:22 -0200509 /* Allocate and initialize pads. */
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300510 entity->pads = devm_kzalloc(vsp1->dev, num_pads * sizeof(*entity->pads),
511 GFP_KERNEL);
512 if (entity->pads == NULL)
513 return -ENOMEM;
514
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300515 for (i = 0; i < num_pads - 1; ++i)
516 entity->pads[i].flags = MEDIA_PAD_FL_SINK;
517
Laurent Pinchartc8663c82016-09-07 09:09:53 -0300518 entity->sources = devm_kcalloc(vsp1->dev, max(num_pads - 1, 1U),
519 sizeof(*entity->sources), GFP_KERNEL);
520 if (entity->sources == NULL)
521 return -ENOMEM;
522
523 /* Single-pad entities only have a sink. */
524 entity->pads[num_pads - 1].flags = num_pads > 1 ? MEDIA_PAD_FL_SOURCE
525 : MEDIA_PAD_FL_SINK;
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300526
527 /* Initialize the media entity. */
Laurent Pinchart823329d2015-11-15 19:42:01 -0200528 ret = media_entity_pads_init(&entity->subdev.entity, num_pads,
529 entity->pads);
530 if (ret < 0)
531 return ret;
532
533 /* Initialize the V4L2 subdev. */
534 subdev = &entity->subdev;
535 v4l2_subdev_init(subdev, ops);
536
Laurent Pinchart6a8e07b2016-02-15 22:10:26 -0200537 subdev->entity.function = function;
Laurent Pinchart823329d2015-11-15 19:42:01 -0200538 subdev->entity.ops = &vsp1->media_ops;
Laurent Pinchart823329d2015-11-15 19:42:01 -0200539 subdev->flags |= V4L2_SUBDEV_FL_HAS_DEVNODE;
540
541 snprintf(subdev->name, sizeof(subdev->name), "%s %s",
542 dev_name(vsp1->dev), name);
543
Laurent Pinchart0efdf0f2015-11-15 20:09:08 -0200544 vsp1_entity_init_cfg(subdev, NULL);
Laurent Pinchart823329d2015-11-15 19:42:01 -0200545
Laurent Pinchart9dbed952017-02-26 10:29:50 -0300546 /*
547 * Allocate the pad configuration to store formats and selection
Laurent Pincharte790c3c2015-11-15 19:14:22 -0200548 * rectangles.
549 */
550 entity->config = v4l2_subdev_alloc_pad_config(&entity->subdev);
551 if (entity->config == NULL) {
552 media_entity_cleanup(&entity->subdev.entity);
553 return -ENOMEM;
554 }
555
Laurent Pinchart823329d2015-11-15 19:42:01 -0200556 return 0;
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300557}
558
559void vsp1_entity_destroy(struct vsp1_entity *entity)
560{
Laurent Pinchart52434532015-11-17 12:23:23 -0200561 if (entity->ops && entity->ops->destroy)
562 entity->ops->destroy(entity);
Laurent Pincharta626e642013-07-10 12:03:30 -0300563 if (entity->subdev.ctrl_handler)
564 v4l2_ctrl_handler_free(entity->subdev.ctrl_handler);
Laurent Pincharte790c3c2015-11-15 19:14:22 -0200565 v4l2_subdev_free_pad_config(entity->config);
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300566 media_entity_cleanup(&entity->subdev.entity);
Laurent Pinchart26e0ca22013-06-04 11:22:30 -0300567}