ASoC: rl6231: remove never matched if condition
[sfrench/cifs-2.6.git] / drivers / media / platform / exynos4-is / media-dev.c
1 /*
2  * S5P/EXYNOS4 SoC series camera host interface media device driver
3  *
4  * Copyright (C) 2011 - 2013 Samsung Electronics Co., Ltd.
5  * Author: Sylwester Nawrocki <s.nawrocki@samsung.com>
6  *
7  * This program is free software; you can redistribute it and/or modify
8  * it under the terms of the GNU General Public License as published
9  * by the Free Software Foundation, either version 2 of the License,
10  * or (at your option) any later version.
11  */
12
13 #include <linux/bug.h>
14 #include <linux/clk.h>
15 #include <linux/clk-provider.h>
16 #include <linux/device.h>
17 #include <linux/errno.h>
18 #include <linux/i2c.h>
19 #include <linux/kernel.h>
20 #include <linux/list.h>
21 #include <linux/module.h>
22 #include <linux/of.h>
23 #include <linux/of_platform.h>
24 #include <linux/of_device.h>
25 #include <linux/of_graph.h>
26 #include <linux/platform_device.h>
27 #include <linux/pm_runtime.h>
28 #include <linux/types.h>
29 #include <linux/slab.h>
30 #include <media/v4l2-async.h>
31 #include <media/v4l2-ctrls.h>
32 #include <media/v4l2-fwnode.h>
33 #include <media/media-device.h>
34 #include <media/drv-intf/exynos-fimc.h>
35
36 #include "media-dev.h"
37 #include "fimc-core.h"
38 #include "fimc-is.h"
39 #include "fimc-lite.h"
40 #include "mipi-csis.h"
41
42 /* Set up image sensor subdev -> FIMC capture node notifications. */
43 static void __setup_sensor_notification(struct fimc_md *fmd,
44                                         struct v4l2_subdev *sensor,
45                                         struct v4l2_subdev *fimc_sd)
46 {
47         struct fimc_source_info *src_inf;
48         struct fimc_sensor_info *md_si;
49         unsigned long flags;
50
51         src_inf = v4l2_get_subdev_hostdata(sensor);
52         if (!src_inf || WARN_ON(fmd == NULL))
53                 return;
54
55         md_si = source_to_sensor_info(src_inf);
56         spin_lock_irqsave(&fmd->slock, flags);
57         md_si->host = v4l2_get_subdevdata(fimc_sd);
58         spin_unlock_irqrestore(&fmd->slock, flags);
59 }
60
61 /**
62  * fimc_pipeline_prepare - update pipeline information with subdevice pointers
63  * @me: media entity terminating the pipeline
64  *
65  * Caller holds the graph mutex.
66  */
67 static void fimc_pipeline_prepare(struct fimc_pipeline *p,
68                                         struct media_entity *me)
69 {
70         struct fimc_md *fmd = entity_to_fimc_mdev(me);
71         struct v4l2_subdev *sd;
72         struct v4l2_subdev *sensor = NULL;
73         int i;
74
75         for (i = 0; i < IDX_MAX; i++)
76                 p->subdevs[i] = NULL;
77
78         while (1) {
79                 struct media_pad *pad = NULL;
80
81                 /* Find remote source pad */
82                 for (i = 0; i < me->num_pads; i++) {
83                         struct media_pad *spad = &me->pads[i];
84                         if (!(spad->flags & MEDIA_PAD_FL_SINK))
85                                 continue;
86                         pad = media_entity_remote_pad(spad);
87                         if (pad)
88                                 break;
89                 }
90
91                 if (!pad || !is_media_entity_v4l2_subdev(pad->entity))
92                         break;
93                 sd = media_entity_to_v4l2_subdev(pad->entity);
94
95                 switch (sd->grp_id) {
96                 case GRP_ID_SENSOR:
97                         sensor = sd;
98                         /* fall through */
99                 case GRP_ID_FIMC_IS_SENSOR:
100                         p->subdevs[IDX_SENSOR] = sd;
101                         break;
102                 case GRP_ID_CSIS:
103                         p->subdevs[IDX_CSIS] = sd;
104                         break;
105                 case GRP_ID_FLITE:
106                         p->subdevs[IDX_FLITE] = sd;
107                         break;
108                 case GRP_ID_FIMC:
109                         p->subdevs[IDX_FIMC] = sd;
110                         break;
111                 case GRP_ID_FIMC_IS:
112                         p->subdevs[IDX_IS_ISP] = sd;
113                         break;
114                 default:
115                         break;
116                 }
117                 me = &sd->entity;
118                 if (me->num_pads == 1)
119                         break;
120         }
121
122         if (sensor && p->subdevs[IDX_FIMC])
123                 __setup_sensor_notification(fmd, sensor, p->subdevs[IDX_FIMC]);
124 }
125
126 /**
127  * __subdev_set_power - change power state of a single subdev
128  * @sd: subdevice to change power state for
129  * @on: 1 to enable power or 0 to disable
130  *
131  * Return result of s_power subdev operation or -ENXIO if sd argument
132  * is NULL. Return 0 if the subdevice does not implement s_power.
133  */
134 static int __subdev_set_power(struct v4l2_subdev *sd, int on)
135 {
136         int *use_count;
137         int ret;
138
139         if (sd == NULL)
140                 return -ENXIO;
141
142         use_count = &sd->entity.use_count;
143         if (on && (*use_count)++ > 0)
144                 return 0;
145         else if (!on && (*use_count == 0 || --(*use_count) > 0))
146                 return 0;
147         ret = v4l2_subdev_call(sd, core, s_power, on);
148
149         return ret != -ENOIOCTLCMD ? ret : 0;
150 }
151
152 /**
153  * fimc_pipeline_s_power - change power state of all pipeline subdevs
154  * @fimc: fimc device terminating the pipeline
155  * @state: true to power on, false to power off
156  *
157  * Needs to be called with the graph mutex held.
158  */
159 static int fimc_pipeline_s_power(struct fimc_pipeline *p, bool on)
160 {
161         static const u8 seq[2][IDX_MAX - 1] = {
162                 { IDX_IS_ISP, IDX_SENSOR, IDX_CSIS, IDX_FLITE },
163                 { IDX_CSIS, IDX_FLITE, IDX_SENSOR, IDX_IS_ISP },
164         };
165         int i, ret = 0;
166
167         if (p->subdevs[IDX_SENSOR] == NULL)
168                 return -ENXIO;
169
170         for (i = 0; i < IDX_MAX - 1; i++) {
171                 unsigned int idx = seq[on][i];
172
173                 ret = __subdev_set_power(p->subdevs[idx], on);
174
175
176                 if (ret < 0 && ret != -ENXIO)
177                         goto error;
178         }
179         return 0;
180 error:
181         for (; i >= 0; i--) {
182                 unsigned int idx = seq[on][i];
183                 __subdev_set_power(p->subdevs[idx], !on);
184         }
185         return ret;
186 }
187
188 /**
189  * __fimc_pipeline_enable - enable power of all pipeline subdevs
190  *                          and the sensor clock
191  * @ep: video pipeline structure
192  * @fmd: fimc media device
193  *
194  * Called with the graph mutex held.
195  */
196 static int __fimc_pipeline_enable(struct exynos_media_pipeline *ep,
197                                   struct fimc_md *fmd)
198 {
199         struct fimc_pipeline *p = to_fimc_pipeline(ep);
200         int ret;
201
202         /* Enable PXLASYNC clock if this pipeline includes FIMC-IS */
203         if (!IS_ERR(fmd->wbclk[CLK_IDX_WB_B]) && p->subdevs[IDX_IS_ISP]) {
204                 ret = clk_prepare_enable(fmd->wbclk[CLK_IDX_WB_B]);
205                 if (ret < 0)
206                         return ret;
207         }
208
209         ret = fimc_pipeline_s_power(p, 1);
210         if (!ret)
211                 return 0;
212
213         if (!IS_ERR(fmd->wbclk[CLK_IDX_WB_B]) && p->subdevs[IDX_IS_ISP])
214                 clk_disable_unprepare(fmd->wbclk[CLK_IDX_WB_B]);
215
216         return ret;
217 }
218
219 /**
220  * __fimc_pipeline_open - update the pipeline information, enable power
221  *                        of all pipeline subdevs and the sensor clock
222  * @me: media entity to start graph walk with
223  * @prepare: true to walk the current pipeline and acquire all subdevs
224  *
225  * Called with the graph mutex held.
226  */
227 static int __fimc_pipeline_open(struct exynos_media_pipeline *ep,
228                                 struct media_entity *me, bool prepare)
229 {
230         struct fimc_md *fmd = entity_to_fimc_mdev(me);
231         struct fimc_pipeline *p = to_fimc_pipeline(ep);
232         struct v4l2_subdev *sd;
233
234         if (WARN_ON(p == NULL || me == NULL))
235                 return -EINVAL;
236
237         if (prepare)
238                 fimc_pipeline_prepare(p, me);
239
240         sd = p->subdevs[IDX_SENSOR];
241         if (sd == NULL) {
242                 pr_warn("%s(): No sensor subdev\n", __func__);
243                 /*
244                  * Pipeline open cannot fail so as to make it possible
245                  * for the user space to configure the pipeline.
246                  */
247                 return 0;
248         }
249
250         return __fimc_pipeline_enable(ep, fmd);
251 }
252
253 /**
254  * __fimc_pipeline_close - disable the sensor clock and pipeline power
255  * @fimc: fimc device terminating the pipeline
256  *
257  * Disable power of all subdevs and turn the external sensor clock off.
258  */
259 static int __fimc_pipeline_close(struct exynos_media_pipeline *ep)
260 {
261         struct fimc_pipeline *p = to_fimc_pipeline(ep);
262         struct v4l2_subdev *sd = p ? p->subdevs[IDX_SENSOR] : NULL;
263         struct fimc_md *fmd;
264         int ret;
265
266         if (sd == NULL) {
267                 pr_warn("%s(): No sensor subdev\n", __func__);
268                 return 0;
269         }
270
271         ret = fimc_pipeline_s_power(p, 0);
272
273         fmd = entity_to_fimc_mdev(&sd->entity);
274
275         /* Disable PXLASYNC clock if this pipeline includes FIMC-IS */
276         if (!IS_ERR(fmd->wbclk[CLK_IDX_WB_B]) && p->subdevs[IDX_IS_ISP])
277                 clk_disable_unprepare(fmd->wbclk[CLK_IDX_WB_B]);
278
279         return ret == -ENXIO ? 0 : ret;
280 }
281
282 /**
283  * __fimc_pipeline_s_stream - call s_stream() on pipeline subdevs
284  * @pipeline: video pipeline structure
285  * @on: passed as the s_stream() callback argument
286  */
287 static int __fimc_pipeline_s_stream(struct exynos_media_pipeline *ep, bool on)
288 {
289         static const u8 seq[2][IDX_MAX] = {
290                 { IDX_FIMC, IDX_SENSOR, IDX_IS_ISP, IDX_CSIS, IDX_FLITE },
291                 { IDX_CSIS, IDX_FLITE, IDX_FIMC, IDX_SENSOR, IDX_IS_ISP },
292         };
293         struct fimc_pipeline *p = to_fimc_pipeline(ep);
294         struct fimc_md *fmd = entity_to_fimc_mdev(&p->subdevs[IDX_CSIS]->entity);
295         enum fimc_subdev_index sd_id;
296         int i, ret = 0;
297
298         if (p->subdevs[IDX_SENSOR] == NULL) {
299                 if (!fmd->user_subdev_api) {
300                         /*
301                          * Sensor must be already discovered if we
302                          * aren't in the user_subdev_api mode
303                          */
304                         return -ENODEV;
305                 }
306
307                 /* Get pipeline sink entity */
308                 if (p->subdevs[IDX_FIMC])
309                         sd_id = IDX_FIMC;
310                 else if (p->subdevs[IDX_IS_ISP])
311                         sd_id = IDX_IS_ISP;
312                 else if (p->subdevs[IDX_FLITE])
313                         sd_id = IDX_FLITE;
314                 else
315                         return -ENODEV;
316
317                 /*
318                  * Sensor could have been linked between open and STREAMON -
319                  * check if this is the case.
320                  */
321                 fimc_pipeline_prepare(p, &p->subdevs[sd_id]->entity);
322
323                 if (p->subdevs[IDX_SENSOR] == NULL)
324                         return -ENODEV;
325
326                 ret = __fimc_pipeline_enable(ep, fmd);
327                 if (ret < 0)
328                         return ret;
329
330         }
331
332         for (i = 0; i < IDX_MAX; i++) {
333                 unsigned int idx = seq[on][i];
334
335                 ret = v4l2_subdev_call(p->subdevs[idx], video, s_stream, on);
336
337                 if (ret < 0 && ret != -ENOIOCTLCMD && ret != -ENODEV)
338                         goto error;
339         }
340
341         return 0;
342 error:
343         fimc_pipeline_s_power(p, !on);
344         for (; i >= 0; i--) {
345                 unsigned int idx = seq[on][i];
346                 v4l2_subdev_call(p->subdevs[idx], video, s_stream, !on);
347         }
348         return ret;
349 }
350
351 /* Media pipeline operations for the FIMC/FIMC-LITE video device driver */
352 static const struct exynos_media_pipeline_ops fimc_pipeline_ops = {
353         .open           = __fimc_pipeline_open,
354         .close          = __fimc_pipeline_close,
355         .set_stream     = __fimc_pipeline_s_stream,
356 };
357
358 static struct exynos_media_pipeline *fimc_md_pipeline_create(
359                                                 struct fimc_md *fmd)
360 {
361         struct fimc_pipeline *p;
362
363         p = kzalloc(sizeof(*p), GFP_KERNEL);
364         if (!p)
365                 return NULL;
366
367         list_add_tail(&p->list, &fmd->pipelines);
368
369         p->ep.ops = &fimc_pipeline_ops;
370         return &p->ep;
371 }
372
373 static void fimc_md_pipelines_free(struct fimc_md *fmd)
374 {
375         while (!list_empty(&fmd->pipelines)) {
376                 struct fimc_pipeline *p;
377
378                 p = list_entry(fmd->pipelines.next, typeof(*p), list);
379                 list_del(&p->list);
380                 kfree(p);
381         }
382 }
383
384 /* Parse port node and register as a sub-device any sensor specified there. */
385 static int fimc_md_parse_port_node(struct fimc_md *fmd,
386                                    struct device_node *port,
387                                    unsigned int index)
388 {
389         struct fimc_source_info *pd = &fmd->sensor[index].pdata;
390         struct device_node *rem, *ep, *np;
391         struct v4l2_fwnode_endpoint endpoint;
392         int ret;
393
394         /* Assume here a port node can have only one endpoint node. */
395         ep = of_get_next_child(port, NULL);
396         if (!ep)
397                 return 0;
398
399         ret = v4l2_fwnode_endpoint_parse(of_fwnode_handle(ep), &endpoint);
400         if (ret) {
401                 of_node_put(ep);
402                 return ret;
403         }
404
405         if (WARN_ON(endpoint.base.port == 0) || index >= FIMC_MAX_SENSORS) {
406                 of_node_put(ep);
407                 return -EINVAL;
408         }
409
410         pd->mux_id = (endpoint.base.port - 1) & 0x1;
411
412         rem = of_graph_get_remote_port_parent(ep);
413         of_node_put(ep);
414         if (rem == NULL) {
415                 v4l2_info(&fmd->v4l2_dev, "Remote device at %pOF not found\n",
416                                                         ep);
417                 return 0;
418         }
419
420         if (fimc_input_is_parallel(endpoint.base.port)) {
421                 if (endpoint.bus_type == V4L2_MBUS_PARALLEL)
422                         pd->sensor_bus_type = FIMC_BUS_TYPE_ITU_601;
423                 else
424                         pd->sensor_bus_type = FIMC_BUS_TYPE_ITU_656;
425                 pd->flags = endpoint.bus.parallel.flags;
426         } else if (fimc_input_is_mipi_csi(endpoint.base.port)) {
427                 /*
428                  * MIPI CSI-2: only input mux selection and
429                  * the sensor's clock frequency is needed.
430                  */
431                 pd->sensor_bus_type = FIMC_BUS_TYPE_MIPI_CSI2;
432         } else {
433                 v4l2_err(&fmd->v4l2_dev, "Wrong port id (%u) at node %pOF\n",
434                          endpoint.base.port, rem);
435         }
436         /*
437          * For FIMC-IS handled sensors, that are placed under i2c-isp device
438          * node, FIMC is connected to the FIMC-IS through its ISP Writeback
439          * input. Sensors are attached to the FIMC-LITE hostdata interface
440          * directly or through MIPI-CSIS, depending on the external media bus
441          * used. This needs to be handled in a more reliable way, not by just
442          * checking parent's node name.
443          */
444         np = of_get_parent(rem);
445
446         if (np && !of_node_cmp(np->name, "i2c-isp"))
447                 pd->fimc_bus_type = FIMC_BUS_TYPE_ISP_WRITEBACK;
448         else
449                 pd->fimc_bus_type = pd->sensor_bus_type;
450
451         if (WARN_ON(index >= ARRAY_SIZE(fmd->sensor))) {
452                 of_node_put(rem);
453                 return -EINVAL;
454         }
455
456         fmd->sensor[index].asd.match_type = V4L2_ASYNC_MATCH_FWNODE;
457         fmd->sensor[index].asd.match.fwnode.fwnode = of_fwnode_handle(rem);
458         fmd->async_subdevs[index] = &fmd->sensor[index].asd;
459
460         fmd->num_sensors++;
461
462         of_node_put(rem);
463         return 0;
464 }
465
466 /* Register all SoC external sub-devices */
467 static int fimc_md_register_sensor_entities(struct fimc_md *fmd)
468 {
469         struct device_node *parent = fmd->pdev->dev.of_node;
470         struct device_node *node, *ports;
471         int index = 0;
472         int ret;
473
474         /*
475          * Runtime resume one of the FIMC entities to make sure
476          * the sclk_cam clocks are not globally disabled.
477          */
478         if (!fmd->pmf)
479                 return -ENXIO;
480
481         ret = pm_runtime_get_sync(fmd->pmf);
482         if (ret < 0)
483                 return ret;
484
485         fmd->num_sensors = 0;
486
487         /* Attach sensors linked to MIPI CSI-2 receivers */
488         for_each_available_child_of_node(parent, node) {
489                 struct device_node *port;
490
491                 if (of_node_cmp(node->name, "csis"))
492                         continue;
493                 /* The csis node can have only port subnode. */
494                 port = of_get_next_child(node, NULL);
495                 if (!port)
496                         continue;
497
498                 ret = fimc_md_parse_port_node(fmd, port, index);
499                 if (ret < 0) {
500                         of_node_put(node);
501                         goto rpm_put;
502                 }
503                 index++;
504         }
505
506         /* Attach sensors listed in the parallel-ports node */
507         ports = of_get_child_by_name(parent, "parallel-ports");
508         if (!ports)
509                 goto rpm_put;
510
511         for_each_child_of_node(ports, node) {
512                 ret = fimc_md_parse_port_node(fmd, node, index);
513                 if (ret < 0) {
514                         of_node_put(node);
515                         break;
516                 }
517                 index++;
518         }
519 rpm_put:
520         pm_runtime_put(fmd->pmf);
521         return ret;
522 }
523
524 static int __of_get_csis_id(struct device_node *np)
525 {
526         u32 reg = 0;
527
528         np = of_get_child_by_name(np, "port");
529         if (!np)
530                 return -EINVAL;
531         of_property_read_u32(np, "reg", &reg);
532         return reg - FIMC_INPUT_MIPI_CSI2_0;
533 }
534
535 /*
536  * MIPI-CSIS, FIMC and FIMC-LITE platform devices registration.
537  */
538 static int register_fimc_lite_entity(struct fimc_md *fmd,
539                                      struct fimc_lite *fimc_lite)
540 {
541         struct v4l2_subdev *sd;
542         struct exynos_media_pipeline *ep;
543         int ret;
544
545         if (WARN_ON(fimc_lite->index >= FIMC_LITE_MAX_DEVS ||
546                     fmd->fimc_lite[fimc_lite->index]))
547                 return -EBUSY;
548
549         sd = &fimc_lite->subdev;
550         sd->grp_id = GRP_ID_FLITE;
551
552         ep = fimc_md_pipeline_create(fmd);
553         if (!ep)
554                 return -ENOMEM;
555
556         v4l2_set_subdev_hostdata(sd, ep);
557
558         ret = v4l2_device_register_subdev(&fmd->v4l2_dev, sd);
559         if (!ret)
560                 fmd->fimc_lite[fimc_lite->index] = fimc_lite;
561         else
562                 v4l2_err(&fmd->v4l2_dev, "Failed to register FIMC.LITE%d\n",
563                          fimc_lite->index);
564         return ret;
565 }
566
567 static int register_fimc_entity(struct fimc_md *fmd, struct fimc_dev *fimc)
568 {
569         struct v4l2_subdev *sd;
570         struct exynos_media_pipeline *ep;
571         int ret;
572
573         if (WARN_ON(fimc->id >= FIMC_MAX_DEVS || fmd->fimc[fimc->id]))
574                 return -EBUSY;
575
576         sd = &fimc->vid_cap.subdev;
577         sd->grp_id = GRP_ID_FIMC;
578
579         ep = fimc_md_pipeline_create(fmd);
580         if (!ep)
581                 return -ENOMEM;
582
583         v4l2_set_subdev_hostdata(sd, ep);
584
585         ret = v4l2_device_register_subdev(&fmd->v4l2_dev, sd);
586         if (!ret) {
587                 if (!fmd->pmf && fimc->pdev)
588                         fmd->pmf = &fimc->pdev->dev;
589                 fmd->fimc[fimc->id] = fimc;
590                 fimc->vid_cap.user_subdev_api = fmd->user_subdev_api;
591         } else {
592                 v4l2_err(&fmd->v4l2_dev, "Failed to register FIMC.%d (%d)\n",
593                          fimc->id, ret);
594         }
595         return ret;
596 }
597
598 static int register_csis_entity(struct fimc_md *fmd,
599                                 struct platform_device *pdev,
600                                 struct v4l2_subdev *sd)
601 {
602         struct device_node *node = pdev->dev.of_node;
603         int id, ret;
604
605         id = node ? __of_get_csis_id(node) : max(0, pdev->id);
606
607         if (WARN_ON(id < 0 || id >= CSIS_MAX_ENTITIES))
608                 return -ENOENT;
609
610         if (WARN_ON(fmd->csis[id].sd))
611                 return -EBUSY;
612
613         sd->grp_id = GRP_ID_CSIS;
614         ret = v4l2_device_register_subdev(&fmd->v4l2_dev, sd);
615         if (!ret)
616                 fmd->csis[id].sd = sd;
617         else
618                 v4l2_err(&fmd->v4l2_dev,
619                          "Failed to register MIPI-CSIS.%d (%d)\n", id, ret);
620         return ret;
621 }
622
623 static int register_fimc_is_entity(struct fimc_md *fmd, struct fimc_is *is)
624 {
625         struct v4l2_subdev *sd = &is->isp.subdev;
626         struct exynos_media_pipeline *ep;
627         int ret;
628
629         /* Allocate pipeline object for the ISP capture video node. */
630         ep = fimc_md_pipeline_create(fmd);
631         if (!ep)
632                 return -ENOMEM;
633
634         v4l2_set_subdev_hostdata(sd, ep);
635
636         ret = v4l2_device_register_subdev(&fmd->v4l2_dev, sd);
637         if (ret) {
638                 v4l2_err(&fmd->v4l2_dev,
639                          "Failed to register FIMC-ISP (%d)\n", ret);
640                 return ret;
641         }
642
643         fmd->fimc_is = is;
644         return 0;
645 }
646
647 static int fimc_md_register_platform_entity(struct fimc_md *fmd,
648                                             struct platform_device *pdev,
649                                             int plat_entity)
650 {
651         struct device *dev = &pdev->dev;
652         int ret = -EPROBE_DEFER;
653         void *drvdata;
654
655         /* Lock to ensure dev->driver won't change. */
656         device_lock(dev);
657
658         if (!dev->driver || !try_module_get(dev->driver->owner))
659                 goto dev_unlock;
660
661         drvdata = dev_get_drvdata(dev);
662         /* Some subdev didn't probe successfully id drvdata is NULL */
663         if (drvdata) {
664                 switch (plat_entity) {
665                 case IDX_FIMC:
666                         ret = register_fimc_entity(fmd, drvdata);
667                         break;
668                 case IDX_FLITE:
669                         ret = register_fimc_lite_entity(fmd, drvdata);
670                         break;
671                 case IDX_CSIS:
672                         ret = register_csis_entity(fmd, pdev, drvdata);
673                         break;
674                 case IDX_IS_ISP:
675                         ret = register_fimc_is_entity(fmd, drvdata);
676                         break;
677                 default:
678                         ret = -ENODEV;
679                 }
680         }
681
682         module_put(dev->driver->owner);
683 dev_unlock:
684         device_unlock(dev);
685         if (ret == -EPROBE_DEFER)
686                 dev_info(&fmd->pdev->dev, "deferring %s device registration\n",
687                         dev_name(dev));
688         else if (ret < 0)
689                 dev_err(&fmd->pdev->dev, "%s device registration failed (%d)\n",
690                         dev_name(dev), ret);
691         return ret;
692 }
693
694 /* Register FIMC, FIMC-LITE and CSIS media entities */
695 static int fimc_md_register_platform_entities(struct fimc_md *fmd,
696                                               struct device_node *parent)
697 {
698         struct device_node *node;
699         int ret = 0;
700
701         for_each_available_child_of_node(parent, node) {
702                 struct platform_device *pdev;
703                 int plat_entity = -1;
704
705                 pdev = of_find_device_by_node(node);
706                 if (!pdev)
707                         continue;
708
709                 /* If driver of any entity isn't ready try all again later. */
710                 if (!strcmp(node->name, CSIS_OF_NODE_NAME))
711                         plat_entity = IDX_CSIS;
712                 else if (!strcmp(node->name, FIMC_IS_OF_NODE_NAME))
713                         plat_entity = IDX_IS_ISP;
714                 else if (!strcmp(node->name, FIMC_LITE_OF_NODE_NAME))
715                         plat_entity = IDX_FLITE;
716                 else if (!strcmp(node->name, FIMC_OF_NODE_NAME) &&
717                          !of_property_read_bool(node, "samsung,lcd-wb"))
718                         plat_entity = IDX_FIMC;
719
720                 if (plat_entity >= 0)
721                         ret = fimc_md_register_platform_entity(fmd, pdev,
722                                                         plat_entity);
723                 put_device(&pdev->dev);
724                 if (ret < 0) {
725                         of_node_put(node);
726                         break;
727                 }
728         }
729
730         return ret;
731 }
732
733 static void fimc_md_unregister_entities(struct fimc_md *fmd)
734 {
735         int i;
736
737         for (i = 0; i < FIMC_MAX_DEVS; i++) {
738                 struct fimc_dev *dev = fmd->fimc[i];
739                 if (dev == NULL)
740                         continue;
741                 v4l2_device_unregister_subdev(&dev->vid_cap.subdev);
742                 dev->vid_cap.ve.pipe = NULL;
743                 fmd->fimc[i] = NULL;
744         }
745         for (i = 0; i < FIMC_LITE_MAX_DEVS; i++) {
746                 struct fimc_lite *dev = fmd->fimc_lite[i];
747                 if (dev == NULL)
748                         continue;
749                 v4l2_device_unregister_subdev(&dev->subdev);
750                 dev->ve.pipe = NULL;
751                 fmd->fimc_lite[i] = NULL;
752         }
753         for (i = 0; i < CSIS_MAX_ENTITIES; i++) {
754                 if (fmd->csis[i].sd == NULL)
755                         continue;
756                 v4l2_device_unregister_subdev(fmd->csis[i].sd);
757                 fmd->csis[i].sd = NULL;
758         }
759
760         if (fmd->fimc_is)
761                 v4l2_device_unregister_subdev(&fmd->fimc_is->isp.subdev);
762
763         v4l2_info(&fmd->v4l2_dev, "Unregistered all entities\n");
764 }
765
766 /**
767  * __fimc_md_create_fimc_links - create links to all FIMC entities
768  * @fmd: fimc media device
769  * @source: the source entity to create links to all fimc entities from
770  * @sensor: sensor subdev linked to FIMC[fimc_id] entity, may be null
771  * @pad: the source entity pad index
772  * @link_mask: bitmask of the fimc devices for which link should be enabled
773  */
774 static int __fimc_md_create_fimc_sink_links(struct fimc_md *fmd,
775                                             struct media_entity *source,
776                                             struct v4l2_subdev *sensor,
777                                             int pad, int link_mask)
778 {
779         struct fimc_source_info *si = NULL;
780         struct media_entity *sink;
781         unsigned int flags = 0;
782         int i, ret = 0;
783
784         if (sensor) {
785                 si = v4l2_get_subdev_hostdata(sensor);
786                 /* Skip direct FIMC links in the logical FIMC-IS sensor path */
787                 if (si && si->fimc_bus_type == FIMC_BUS_TYPE_ISP_WRITEBACK)
788                         ret = 1;
789         }
790
791         for (i = 0; !ret && i < FIMC_MAX_DEVS; i++) {
792                 if (!fmd->fimc[i])
793                         continue;
794                 /*
795                  * Some FIMC variants are not fitted with camera capture
796                  * interface. Skip creating a link from sensor for those.
797                  */
798                 if (!fmd->fimc[i]->variant->has_cam_if)
799                         continue;
800
801                 flags = ((1 << i) & link_mask) ? MEDIA_LNK_FL_ENABLED : 0;
802
803                 sink = &fmd->fimc[i]->vid_cap.subdev.entity;
804                 ret = media_create_pad_link(source, pad, sink,
805                                               FIMC_SD_PAD_SINK_CAM, flags);
806                 if (ret)
807                         return ret;
808
809                 /* Notify FIMC capture subdev entity */
810                 ret = media_entity_call(sink, link_setup, &sink->pads[0],
811                                         &source->pads[pad], flags);
812                 if (ret)
813                         break;
814
815                 v4l2_info(&fmd->v4l2_dev, "created link [%s] %c> [%s]\n",
816                           source->name, flags ? '=' : '-', sink->name);
817         }
818
819         for (i = 0; i < FIMC_LITE_MAX_DEVS; i++) {
820                 if (!fmd->fimc_lite[i])
821                         continue;
822
823                 sink = &fmd->fimc_lite[i]->subdev.entity;
824                 ret = media_create_pad_link(source, pad, sink,
825                                                FLITE_SD_PAD_SINK, 0);
826                 if (ret)
827                         return ret;
828
829                 /* Notify FIMC-LITE subdev entity */
830                 ret = media_entity_call(sink, link_setup, &sink->pads[0],
831                                         &source->pads[pad], 0);
832                 if (ret)
833                         break;
834
835                 v4l2_info(&fmd->v4l2_dev, "created link [%s] -> [%s]\n",
836                           source->name, sink->name);
837         }
838         return 0;
839 }
840
841 /* Create links from FIMC-LITE source pads to other entities */
842 static int __fimc_md_create_flite_source_links(struct fimc_md *fmd)
843 {
844         struct media_entity *source, *sink;
845         int i, ret = 0;
846
847         for (i = 0; i < FIMC_LITE_MAX_DEVS; i++) {
848                 struct fimc_lite *fimc = fmd->fimc_lite[i];
849
850                 if (fimc == NULL)
851                         continue;
852
853                 source = &fimc->subdev.entity;
854                 sink = &fimc->ve.vdev.entity;
855                 /* FIMC-LITE's subdev and video node */
856                 ret = media_create_pad_link(source, FLITE_SD_PAD_SOURCE_DMA,
857                                                sink, 0, 0);
858                 if (ret)
859                         break;
860                 /* Link from FIMC-LITE to IS-ISP subdev */
861                 sink = &fmd->fimc_is->isp.subdev.entity;
862                 ret = media_create_pad_link(source, FLITE_SD_PAD_SOURCE_ISP,
863                                                sink, 0, 0);
864                 if (ret)
865                         break;
866         }
867
868         return ret;
869 }
870
871 /* Create FIMC-IS links */
872 static int __fimc_md_create_fimc_is_links(struct fimc_md *fmd)
873 {
874         struct fimc_isp *isp = &fmd->fimc_is->isp;
875         struct media_entity *source, *sink;
876         int i, ret;
877
878         source = &isp->subdev.entity;
879
880         for (i = 0; i < FIMC_MAX_DEVS; i++) {
881                 if (fmd->fimc[i] == NULL)
882                         continue;
883
884                 /* Link from FIMC-IS-ISP subdev to FIMC */
885                 sink = &fmd->fimc[i]->vid_cap.subdev.entity;
886                 ret = media_create_pad_link(source, FIMC_ISP_SD_PAD_SRC_FIFO,
887                                                sink, FIMC_SD_PAD_SINK_FIFO, 0);
888                 if (ret)
889                         return ret;
890         }
891
892         /* Link from FIMC-IS-ISP subdev to fimc-is-isp.capture video node */
893         sink = &isp->video_capture.ve.vdev.entity;
894
895         /* Skip this link if the fimc-is-isp video node driver isn't built-in */
896         if (sink->num_pads == 0)
897                 return 0;
898
899         return media_create_pad_link(source, FIMC_ISP_SD_PAD_SRC_DMA,
900                                         sink, 0, 0);
901 }
902
903 /**
904  * fimc_md_create_links - create default links between registered entities
905  *
906  * Parallel interface sensor entities are connected directly to FIMC capture
907  * entities. The sensors using MIPI CSIS bus are connected through immutable
908  * link with CSI receiver entity specified by mux_id. Any registered CSIS
909  * entity has a link to each registered FIMC capture entity. Enabled links
910  * are created by default between each subsequent registered sensor and
911  * subsequent FIMC capture entity. The number of default active links is
912  * determined by the number of available sensors or FIMC entities,
913  * whichever is less.
914  */
915 static int fimc_md_create_links(struct fimc_md *fmd)
916 {
917         struct v4l2_subdev *csi_sensors[CSIS_MAX_ENTITIES] = { NULL };
918         struct v4l2_subdev *sensor, *csis;
919         struct fimc_source_info *pdata;
920         struct media_entity *source, *sink;
921         int i, pad, fimc_id = 0, ret = 0;
922         u32 flags, link_mask = 0;
923
924         for (i = 0; i < fmd->num_sensors; i++) {
925                 if (fmd->sensor[i].subdev == NULL)
926                         continue;
927
928                 sensor = fmd->sensor[i].subdev;
929                 pdata = v4l2_get_subdev_hostdata(sensor);
930                 if (!pdata)
931                         continue;
932
933                 source = NULL;
934
935                 switch (pdata->sensor_bus_type) {
936                 case FIMC_BUS_TYPE_MIPI_CSI2:
937                         if (WARN(pdata->mux_id >= CSIS_MAX_ENTITIES,
938                                 "Wrong CSI channel id: %d\n", pdata->mux_id))
939                                 return -EINVAL;
940
941                         csis = fmd->csis[pdata->mux_id].sd;
942                         if (WARN(csis == NULL,
943                                  "MIPI-CSI interface specified but s5p-csis module is not loaded!\n"))
944                                 return -EINVAL;
945
946                         pad = sensor->entity.num_pads - 1;
947                         ret = media_create_pad_link(&sensor->entity, pad,
948                                               &csis->entity, CSIS_PAD_SINK,
949                                               MEDIA_LNK_FL_IMMUTABLE |
950                                               MEDIA_LNK_FL_ENABLED);
951                         if (ret)
952                                 return ret;
953
954                         v4l2_info(&fmd->v4l2_dev, "created link [%s] => [%s]\n",
955                                   sensor->entity.name, csis->entity.name);
956
957                         source = NULL;
958                         csi_sensors[pdata->mux_id] = sensor;
959                         break;
960
961                 case FIMC_BUS_TYPE_ITU_601...FIMC_BUS_TYPE_ITU_656:
962                         source = &sensor->entity;
963                         pad = 0;
964                         break;
965
966                 default:
967                         v4l2_err(&fmd->v4l2_dev, "Wrong bus_type: %x\n",
968                                  pdata->sensor_bus_type);
969                         return -EINVAL;
970                 }
971                 if (source == NULL)
972                         continue;
973
974                 link_mask = 1 << fimc_id++;
975                 ret = __fimc_md_create_fimc_sink_links(fmd, source, sensor,
976                                                        pad, link_mask);
977         }
978
979         for (i = 0; i < CSIS_MAX_ENTITIES; i++) {
980                 if (fmd->csis[i].sd == NULL)
981                         continue;
982
983                 source = &fmd->csis[i].sd->entity;
984                 pad = CSIS_PAD_SOURCE;
985                 sensor = csi_sensors[i];
986
987                 link_mask = 1 << fimc_id++;
988                 ret = __fimc_md_create_fimc_sink_links(fmd, source, sensor,
989                                                        pad, link_mask);
990         }
991
992         /* Create immutable links between each FIMC's subdev and video node */
993         flags = MEDIA_LNK_FL_IMMUTABLE | MEDIA_LNK_FL_ENABLED;
994         for (i = 0; i < FIMC_MAX_DEVS; i++) {
995                 if (!fmd->fimc[i])
996                         continue;
997
998                 source = &fmd->fimc[i]->vid_cap.subdev.entity;
999                 sink = &fmd->fimc[i]->vid_cap.ve.vdev.entity;
1000
1001                 ret = media_create_pad_link(source, FIMC_SD_PAD_SOURCE,
1002                                               sink, 0, flags);
1003                 if (ret)
1004                         break;
1005         }
1006
1007         ret = __fimc_md_create_flite_source_links(fmd);
1008         if (ret < 0)
1009                 return ret;
1010
1011         if (fmd->use_isp)
1012                 ret = __fimc_md_create_fimc_is_links(fmd);
1013
1014         return ret;
1015 }
1016
1017 /*
1018  * The peripheral sensor and CAM_BLK (PIXELASYNCMx) clocks management.
1019  */
1020 static void fimc_md_put_clocks(struct fimc_md *fmd)
1021 {
1022         int i = FIMC_MAX_CAMCLKS;
1023
1024         while (--i >= 0) {
1025                 if (IS_ERR(fmd->camclk[i].clock))
1026                         continue;
1027                 clk_put(fmd->camclk[i].clock);
1028                 fmd->camclk[i].clock = ERR_PTR(-EINVAL);
1029         }
1030
1031         /* Writeback (PIXELASYNCMx) clocks */
1032         for (i = 0; i < FIMC_MAX_WBCLKS; i++) {
1033                 if (IS_ERR(fmd->wbclk[i]))
1034                         continue;
1035                 clk_put(fmd->wbclk[i]);
1036                 fmd->wbclk[i] = ERR_PTR(-EINVAL);
1037         }
1038 }
1039
1040 static int fimc_md_get_clocks(struct fimc_md *fmd)
1041 {
1042         struct device *dev = &fmd->pdev->dev;
1043         char clk_name[32];
1044         struct clk *clock;
1045         int i, ret = 0;
1046
1047         for (i = 0; i < FIMC_MAX_CAMCLKS; i++)
1048                 fmd->camclk[i].clock = ERR_PTR(-EINVAL);
1049
1050         for (i = 0; i < FIMC_MAX_CAMCLKS; i++) {
1051                 snprintf(clk_name, sizeof(clk_name), "sclk_cam%u", i);
1052                 clock = clk_get(dev, clk_name);
1053
1054                 if (IS_ERR(clock)) {
1055                         dev_err(dev, "Failed to get clock: %s\n", clk_name);
1056                         ret = PTR_ERR(clock);
1057                         break;
1058                 }
1059                 fmd->camclk[i].clock = clock;
1060         }
1061         if (ret)
1062                 fimc_md_put_clocks(fmd);
1063
1064         if (!fmd->use_isp)
1065                 return 0;
1066         /*
1067          * For now get only PIXELASYNCM1 clock (Writeback B/ISP),
1068          * leave PIXELASYNCM0 out for the LCD Writeback driver.
1069          */
1070         fmd->wbclk[CLK_IDX_WB_A] = ERR_PTR(-EINVAL);
1071
1072         for (i = CLK_IDX_WB_B; i < FIMC_MAX_WBCLKS; i++) {
1073                 snprintf(clk_name, sizeof(clk_name), "pxl_async%u", i);
1074                 clock = clk_get(dev, clk_name);
1075                 if (IS_ERR(clock)) {
1076                         v4l2_err(&fmd->v4l2_dev, "Failed to get clock: %s\n",
1077                                   clk_name);
1078                         ret = PTR_ERR(clock);
1079                         break;
1080                 }
1081                 fmd->wbclk[i] = clock;
1082         }
1083         if (ret)
1084                 fimc_md_put_clocks(fmd);
1085
1086         return ret;
1087 }
1088
1089 static int __fimc_md_modify_pipeline(struct media_entity *entity, bool enable)
1090 {
1091         struct exynos_video_entity *ve;
1092         struct fimc_pipeline *p;
1093         struct video_device *vdev;
1094         int ret;
1095
1096         vdev = media_entity_to_video_device(entity);
1097         if (vdev->entity.use_count == 0)
1098                 return 0;
1099
1100         ve = vdev_to_exynos_video_entity(vdev);
1101         p = to_fimc_pipeline(ve->pipe);
1102         /*
1103          * Nothing to do if we are disabling the pipeline, some link
1104          * has been disconnected and p->subdevs array is cleared now.
1105          */
1106         if (!enable && p->subdevs[IDX_SENSOR] == NULL)
1107                 return 0;
1108
1109         if (enable)
1110                 ret = __fimc_pipeline_open(ve->pipe, entity, true);
1111         else
1112                 ret = __fimc_pipeline_close(ve->pipe);
1113
1114         if (ret == 0 && !enable)
1115                 memset(p->subdevs, 0, sizeof(p->subdevs));
1116
1117         return ret;
1118 }
1119
1120 /* Locking: called with entity->graph_obj.mdev->graph_mutex mutex held. */
1121 static int __fimc_md_modify_pipelines(struct media_entity *entity, bool enable,
1122                                       struct media_graph *graph)
1123 {
1124         struct media_entity *entity_err = entity;
1125         int ret;
1126
1127         /*
1128          * Walk current graph and call the pipeline open/close routine for each
1129          * opened video node that belongs to the graph of entities connected
1130          * through active links. This is needed as we cannot power on/off the
1131          * subdevs in random order.
1132          */
1133         media_graph_walk_start(graph, entity);
1134
1135         while ((entity = media_graph_walk_next(graph))) {
1136                 if (!is_media_entity_v4l2_video_device(entity))
1137                         continue;
1138
1139                 ret  = __fimc_md_modify_pipeline(entity, enable);
1140
1141                 if (ret < 0)
1142                         goto err;
1143         }
1144
1145         return 0;
1146
1147 err:
1148         media_graph_walk_start(graph, entity_err);
1149
1150         while ((entity_err = media_graph_walk_next(graph))) {
1151                 if (!is_media_entity_v4l2_video_device(entity_err))
1152                         continue;
1153
1154                 __fimc_md_modify_pipeline(entity_err, !enable);
1155
1156                 if (entity_err == entity)
1157                         break;
1158         }
1159
1160         return ret;
1161 }
1162
1163 static int fimc_md_link_notify(struct media_link *link, unsigned int flags,
1164                                 unsigned int notification)
1165 {
1166         struct media_graph *graph =
1167                 &container_of(link->graph_obj.mdev, struct fimc_md,
1168                               media_dev)->link_setup_graph;
1169         struct media_entity *sink = link->sink->entity;
1170         int ret = 0;
1171
1172         /* Before link disconnection */
1173         if (notification == MEDIA_DEV_NOTIFY_PRE_LINK_CH) {
1174                 ret = media_graph_walk_init(graph,
1175                                                    link->graph_obj.mdev);
1176                 if (ret)
1177                         return ret;
1178                 if (!(flags & MEDIA_LNK_FL_ENABLED))
1179                         ret = __fimc_md_modify_pipelines(sink, false, graph);
1180 #if 0
1181                 else
1182                         /* TODO: Link state change validation */
1183 #endif
1184         /* After link activation */
1185         } else if (notification == MEDIA_DEV_NOTIFY_POST_LINK_CH) {
1186                 if (link->flags & MEDIA_LNK_FL_ENABLED)
1187                         ret = __fimc_md_modify_pipelines(sink, true, graph);
1188                 media_graph_walk_cleanup(graph);
1189         }
1190
1191         return ret ? -EPIPE : 0;
1192 }
1193
1194 static const struct media_device_ops fimc_md_ops = {
1195         .link_notify = fimc_md_link_notify,
1196 };
1197
1198 static ssize_t fimc_md_sysfs_show(struct device *dev,
1199                                   struct device_attribute *attr, char *buf)
1200 {
1201         struct platform_device *pdev = to_platform_device(dev);
1202         struct fimc_md *fmd = platform_get_drvdata(pdev);
1203
1204         if (fmd->user_subdev_api)
1205                 return strlcpy(buf, "Sub-device API (sub-dev)\n", PAGE_SIZE);
1206
1207         return strlcpy(buf, "V4L2 video node only API (vid-dev)\n", PAGE_SIZE);
1208 }
1209
1210 static ssize_t fimc_md_sysfs_store(struct device *dev,
1211                                    struct device_attribute *attr,
1212                                    const char *buf, size_t count)
1213 {
1214         struct platform_device *pdev = to_platform_device(dev);
1215         struct fimc_md *fmd = platform_get_drvdata(pdev);
1216         bool subdev_api;
1217         int i;
1218
1219         if (!strcmp(buf, "vid-dev\n"))
1220                 subdev_api = false;
1221         else if (!strcmp(buf, "sub-dev\n"))
1222                 subdev_api = true;
1223         else
1224                 return count;
1225
1226         fmd->user_subdev_api = subdev_api;
1227         for (i = 0; i < FIMC_MAX_DEVS; i++)
1228                 if (fmd->fimc[i])
1229                         fmd->fimc[i]->vid_cap.user_subdev_api = subdev_api;
1230         return count;
1231 }
1232 /*
1233  * This device attribute is to select video pipeline configuration method.
1234  * There are following valid values:
1235  *  vid-dev - for V4L2 video node API only, subdevice will be configured
1236  *  by the host driver.
1237  *  sub-dev - for media controller API, subdevs must be configured in user
1238  *  space before starting streaming.
1239  */
1240 static DEVICE_ATTR(subdev_conf_mode, S_IWUSR | S_IRUGO,
1241                    fimc_md_sysfs_show, fimc_md_sysfs_store);
1242
1243 static int fimc_md_get_pinctrl(struct fimc_md *fmd)
1244 {
1245         struct device *dev = &fmd->pdev->dev;
1246         struct fimc_pinctrl *pctl = &fmd->pinctl;
1247
1248         pctl->pinctrl = devm_pinctrl_get(dev);
1249         if (IS_ERR(pctl->pinctrl))
1250                 return PTR_ERR(pctl->pinctrl);
1251
1252         pctl->state_default = pinctrl_lookup_state(pctl->pinctrl,
1253                                         PINCTRL_STATE_DEFAULT);
1254         if (IS_ERR(pctl->state_default))
1255                 return PTR_ERR(pctl->state_default);
1256
1257         pctl->state_idle = pinctrl_lookup_state(pctl->pinctrl,
1258                                         PINCTRL_STATE_IDLE);
1259         return 0;
1260 }
1261
1262 static int cam_clk_prepare(struct clk_hw *hw)
1263 {
1264         struct cam_clk *camclk = to_cam_clk(hw);
1265         int ret;
1266
1267         if (camclk->fmd->pmf == NULL)
1268                 return -ENODEV;
1269
1270         ret = pm_runtime_get_sync(camclk->fmd->pmf);
1271         return ret < 0 ? ret : 0;
1272 }
1273
1274 static void cam_clk_unprepare(struct clk_hw *hw)
1275 {
1276         struct cam_clk *camclk = to_cam_clk(hw);
1277
1278         if (camclk->fmd->pmf == NULL)
1279                 return;
1280
1281         pm_runtime_put_sync(camclk->fmd->pmf);
1282 }
1283
1284 static const struct clk_ops cam_clk_ops = {
1285         .prepare = cam_clk_prepare,
1286         .unprepare = cam_clk_unprepare,
1287 };
1288
1289 static void fimc_md_unregister_clk_provider(struct fimc_md *fmd)
1290 {
1291         struct cam_clk_provider *cp = &fmd->clk_provider;
1292         unsigned int i;
1293
1294         if (cp->of_node)
1295                 of_clk_del_provider(cp->of_node);
1296
1297         for (i = 0; i < cp->num_clocks; i++)
1298                 clk_unregister(cp->clks[i]);
1299 }
1300
1301 static int fimc_md_register_clk_provider(struct fimc_md *fmd)
1302 {
1303         struct cam_clk_provider *cp = &fmd->clk_provider;
1304         struct device *dev = &fmd->pdev->dev;
1305         int i, ret;
1306
1307         for (i = 0; i < FIMC_MAX_CAMCLKS; i++) {
1308                 struct cam_clk *camclk = &cp->camclk[i];
1309                 struct clk_init_data init;
1310                 const char *p_name;
1311
1312                 ret = of_property_read_string_index(dev->of_node,
1313                                         "clock-output-names", i, &init.name);
1314                 if (ret < 0)
1315                         break;
1316
1317                 p_name = __clk_get_name(fmd->camclk[i].clock);
1318
1319                 /* It's safe since clk_register() will duplicate the string. */
1320                 init.parent_names = &p_name;
1321                 init.num_parents = 1;
1322                 init.ops = &cam_clk_ops;
1323                 init.flags = CLK_SET_RATE_PARENT;
1324                 camclk->hw.init = &init;
1325                 camclk->fmd = fmd;
1326
1327                 cp->clks[i] = clk_register(NULL, &camclk->hw);
1328                 if (IS_ERR(cp->clks[i])) {
1329                         dev_err(dev, "failed to register clock: %s (%ld)\n",
1330                                         init.name, PTR_ERR(cp->clks[i]));
1331                         ret = PTR_ERR(cp->clks[i]);
1332                         goto err;
1333                 }
1334                 cp->num_clocks++;
1335         }
1336
1337         if (cp->num_clocks == 0) {
1338                 dev_warn(dev, "clk provider not registered\n");
1339                 return 0;
1340         }
1341
1342         cp->clk_data.clks = cp->clks;
1343         cp->clk_data.clk_num = cp->num_clocks;
1344         cp->of_node = dev->of_node;
1345         ret = of_clk_add_provider(dev->of_node, of_clk_src_onecell_get,
1346                                   &cp->clk_data);
1347         if (ret == 0)
1348                 return 0;
1349 err:
1350         fimc_md_unregister_clk_provider(fmd);
1351         return ret;
1352 }
1353
1354 static int subdev_notifier_bound(struct v4l2_async_notifier *notifier,
1355                                  struct v4l2_subdev *subdev,
1356                                  struct v4l2_async_subdev *asd)
1357 {
1358         struct fimc_md *fmd = notifier_to_fimc_md(notifier);
1359         struct fimc_sensor_info *si = NULL;
1360         int i;
1361
1362         /* Find platform data for this sensor subdev */
1363         for (i = 0; i < ARRAY_SIZE(fmd->sensor); i++)
1364                 if (fmd->sensor[i].asd.match.fwnode.fwnode ==
1365                     of_fwnode_handle(subdev->dev->of_node))
1366                         si = &fmd->sensor[i];
1367
1368         if (si == NULL)
1369                 return -EINVAL;
1370
1371         v4l2_set_subdev_hostdata(subdev, &si->pdata);
1372
1373         if (si->pdata.fimc_bus_type == FIMC_BUS_TYPE_ISP_WRITEBACK)
1374                 subdev->grp_id = GRP_ID_FIMC_IS_SENSOR;
1375         else
1376                 subdev->grp_id = GRP_ID_SENSOR;
1377
1378         si->subdev = subdev;
1379
1380         v4l2_info(&fmd->v4l2_dev, "Registered sensor subdevice: %s (%d)\n",
1381                   subdev->name, fmd->num_sensors);
1382
1383         fmd->num_sensors++;
1384
1385         return 0;
1386 }
1387
1388 static int subdev_notifier_complete(struct v4l2_async_notifier *notifier)
1389 {
1390         struct fimc_md *fmd = notifier_to_fimc_md(notifier);
1391         int ret;
1392
1393         mutex_lock(&fmd->media_dev.graph_mutex);
1394
1395         ret = fimc_md_create_links(fmd);
1396         if (ret < 0)
1397                 goto unlock;
1398
1399         ret = v4l2_device_register_subdev_nodes(&fmd->v4l2_dev);
1400 unlock:
1401         mutex_unlock(&fmd->media_dev.graph_mutex);
1402         if (ret < 0)
1403                 return ret;
1404
1405         return media_device_register(&fmd->media_dev);
1406 }
1407
1408 static const struct v4l2_async_notifier_operations subdev_notifier_ops = {
1409         .bound = subdev_notifier_bound,
1410         .complete = subdev_notifier_complete,
1411 };
1412
1413 static int fimc_md_probe(struct platform_device *pdev)
1414 {
1415         struct device *dev = &pdev->dev;
1416         struct v4l2_device *v4l2_dev;
1417         struct fimc_md *fmd;
1418         int ret;
1419
1420         fmd = devm_kzalloc(dev, sizeof(*fmd), GFP_KERNEL);
1421         if (!fmd)
1422                 return -ENOMEM;
1423
1424         spin_lock_init(&fmd->slock);
1425         INIT_LIST_HEAD(&fmd->pipelines);
1426         fmd->pdev = pdev;
1427
1428         strlcpy(fmd->media_dev.model, "SAMSUNG S5P FIMC",
1429                 sizeof(fmd->media_dev.model));
1430         fmd->media_dev.ops = &fimc_md_ops;
1431         fmd->media_dev.dev = dev;
1432
1433         v4l2_dev = &fmd->v4l2_dev;
1434         v4l2_dev->mdev = &fmd->media_dev;
1435         v4l2_dev->notify = fimc_sensor_notify;
1436         strlcpy(v4l2_dev->name, "s5p-fimc-md", sizeof(v4l2_dev->name));
1437
1438         fmd->use_isp = fimc_md_is_isp_available(dev->of_node);
1439         fmd->user_subdev_api = true;
1440
1441         media_device_init(&fmd->media_dev);
1442
1443         ret = v4l2_device_register(dev, &fmd->v4l2_dev);
1444         if (ret < 0) {
1445                 v4l2_err(v4l2_dev, "Failed to register v4l2_device: %d\n", ret);
1446                 return ret;
1447         }
1448
1449         ret = fimc_md_get_clocks(fmd);
1450         if (ret)
1451                 goto err_md;
1452
1453         ret = fimc_md_get_pinctrl(fmd);
1454         if (ret < 0) {
1455                 if (ret != EPROBE_DEFER)
1456                         dev_err(dev, "Failed to get pinctrl: %d\n", ret);
1457                 goto err_clk;
1458         }
1459
1460         platform_set_drvdata(pdev, fmd);
1461
1462         ret = fimc_md_register_platform_entities(fmd, dev->of_node);
1463         if (ret)
1464                 goto err_clk;
1465
1466         ret = fimc_md_register_sensor_entities(fmd);
1467         if (ret)
1468                 goto err_m_ent;
1469
1470         ret = device_create_file(&pdev->dev, &dev_attr_subdev_conf_mode);
1471         if (ret)
1472                 goto err_m_ent;
1473         /*
1474          * FIMC platform devices need to be registered before the sclk_cam
1475          * clocks provider, as one of these devices needs to be activated
1476          * to enable the clock.
1477          */
1478         ret = fimc_md_register_clk_provider(fmd);
1479         if (ret < 0) {
1480                 v4l2_err(v4l2_dev, "clock provider registration failed\n");
1481                 goto err_attr;
1482         }
1483
1484         if (fmd->num_sensors > 0) {
1485                 fmd->subdev_notifier.subdevs = fmd->async_subdevs;
1486                 fmd->subdev_notifier.num_subdevs = fmd->num_sensors;
1487                 fmd->subdev_notifier.ops = &subdev_notifier_ops;
1488                 fmd->num_sensors = 0;
1489
1490                 ret = v4l2_async_notifier_register(&fmd->v4l2_dev,
1491                                                 &fmd->subdev_notifier);
1492                 if (ret)
1493                         goto err_clk_p;
1494         }
1495
1496         return 0;
1497
1498 err_clk_p:
1499         fimc_md_unregister_clk_provider(fmd);
1500 err_attr:
1501         device_remove_file(&pdev->dev, &dev_attr_subdev_conf_mode);
1502 err_clk:
1503         fimc_md_put_clocks(fmd);
1504 err_m_ent:
1505         fimc_md_unregister_entities(fmd);
1506 err_md:
1507         media_device_cleanup(&fmd->media_dev);
1508         v4l2_device_unregister(&fmd->v4l2_dev);
1509         return ret;
1510 }
1511
1512 static int fimc_md_remove(struct platform_device *pdev)
1513 {
1514         struct fimc_md *fmd = platform_get_drvdata(pdev);
1515
1516         if (!fmd)
1517                 return 0;
1518
1519         fimc_md_unregister_clk_provider(fmd);
1520         v4l2_async_notifier_unregister(&fmd->subdev_notifier);
1521
1522         v4l2_device_unregister(&fmd->v4l2_dev);
1523         device_remove_file(&pdev->dev, &dev_attr_subdev_conf_mode);
1524         fimc_md_unregister_entities(fmd);
1525         fimc_md_pipelines_free(fmd);
1526         media_device_unregister(&fmd->media_dev);
1527         media_device_cleanup(&fmd->media_dev);
1528         fimc_md_put_clocks(fmd);
1529
1530         return 0;
1531 }
1532
1533 static const struct platform_device_id fimc_driver_ids[] __always_unused = {
1534         { .name = "s5p-fimc-md" },
1535         { },
1536 };
1537 MODULE_DEVICE_TABLE(platform, fimc_driver_ids);
1538
1539 static const struct of_device_id fimc_md_of_match[] = {
1540         { .compatible = "samsung,fimc" },
1541         { },
1542 };
1543 MODULE_DEVICE_TABLE(of, fimc_md_of_match);
1544
1545 static struct platform_driver fimc_md_driver = {
1546         .probe          = fimc_md_probe,
1547         .remove         = fimc_md_remove,
1548         .driver = {
1549                 .of_match_table = of_match_ptr(fimc_md_of_match),
1550                 .name           = "s5p-fimc-md",
1551         }
1552 };
1553
1554 static int __init fimc_md_init(void)
1555 {
1556         int ret;
1557
1558         request_module("s5p-csis");
1559         ret = fimc_register_driver();
1560         if (ret)
1561                 return ret;
1562
1563         return platform_driver_register(&fimc_md_driver);
1564 }
1565
1566 static void __exit fimc_md_exit(void)
1567 {
1568         platform_driver_unregister(&fimc_md_driver);
1569         fimc_unregister_driver();
1570 }
1571
1572 module_init(fimc_md_init);
1573 module_exit(fimc_md_exit);
1574
1575 MODULE_AUTHOR("Sylwester Nawrocki <s.nawrocki@samsung.com>");
1576 MODULE_DESCRIPTION("S5P FIMC camera host interface/video postprocessor driver");
1577 MODULE_LICENSE("GPL");
1578 MODULE_VERSION("2.0.1");