2 * vsp1_wpf.c -- R-Car VSP1 Write Pixel Formatter
4 * Copyright (C) 2013-2014 Renesas Electronics Corporation
6 * Contact: Laurent Pinchart (laurent.pinchart@ideasonboard.com)
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
14 #include <linux/device.h>
16 #include <media/v4l2-subdev.h>
20 #include "vsp1_pipe.h"
21 #include "vsp1_rwpf.h"
22 #include "vsp1_video.h"
24 #define WPF_GEN2_MAX_WIDTH 2048U
25 #define WPF_GEN2_MAX_HEIGHT 2048U
26 #define WPF_GEN3_MAX_WIDTH 8190U
27 #define WPF_GEN3_MAX_HEIGHT 8190U
29 /* -----------------------------------------------------------------------------
33 static inline void vsp1_wpf_write(struct vsp1_rwpf
*wpf
,
34 struct vsp1_dl_list
*dl
, u32 reg
, u32 data
)
36 vsp1_dl_list_write(dl
, reg
+ wpf
->entity
.index
* VI6_WPF_OFFSET
, data
);
39 /* -----------------------------------------------------------------------------
49 static int vsp1_wpf_s_ctrl(struct v4l2_ctrl
*ctrl
)
51 struct vsp1_rwpf
*wpf
=
52 container_of(ctrl
->handler
, struct vsp1_rwpf
, ctrls
);
59 for (i
= 0; i
< WPF_CTRL_MAX
; ++i
) {
60 if (wpf
->flip
.ctrls
[i
])
61 flip
|= wpf
->flip
.ctrls
[i
]->val
? BIT(i
) : 0;
64 spin_lock_irq(&wpf
->flip
.lock
);
65 wpf
->flip
.pending
= flip
;
66 spin_unlock_irq(&wpf
->flip
.lock
);
76 static const struct v4l2_ctrl_ops vsp1_wpf_ctrl_ops
= {
77 .s_ctrl
= vsp1_wpf_s_ctrl
,
80 static int wpf_init_controls(struct vsp1_rwpf
*wpf
)
82 struct vsp1_device
*vsp1
= wpf
->entity
.vsp1
;
83 unsigned int num_flip_ctrls
;
85 spin_lock_init(&wpf
->flip
.lock
);
87 if (wpf
->entity
.index
!= 0) {
88 /* Only WPF0 supports flipping. */
90 } else if (vsp1
->info
->features
& VSP1_HAS_WPF_HFLIP
) {
91 /* When horizontal flip is supported the WPF implements two
92 * controls (horizontal flip and vertical flip).
95 } else if (vsp1
->info
->features
& VSP1_HAS_WPF_VFLIP
) {
96 /* When only vertical flip is supported the WPF implements a
97 * single control (vertical flip).
101 /* Otherwise flipping is not supported. */
105 vsp1_rwpf_init_ctrls(wpf
, num_flip_ctrls
);
107 if (num_flip_ctrls
>= 1) {
108 wpf
->flip
.ctrls
[WPF_CTRL_VFLIP
] =
109 v4l2_ctrl_new_std(&wpf
->ctrls
, &vsp1_wpf_ctrl_ops
,
110 V4L2_CID_VFLIP
, 0, 1, 1, 0);
113 if (num_flip_ctrls
== 2) {
114 wpf
->flip
.ctrls
[WPF_CTRL_HFLIP
] =
115 v4l2_ctrl_new_std(&wpf
->ctrls
, &vsp1_wpf_ctrl_ops
,
116 V4L2_CID_HFLIP
, 0, 1, 1, 0);
118 v4l2_ctrl_cluster(2, wpf
->flip
.ctrls
);
121 if (wpf
->ctrls
.error
) {
122 dev_err(vsp1
->dev
, "wpf%u: failed to initialize controls\n",
124 return wpf
->ctrls
.error
;
130 /* -----------------------------------------------------------------------------
131 * V4L2 Subdevice Core Operations
134 static int wpf_s_stream(struct v4l2_subdev
*subdev
, int enable
)
136 struct vsp1_rwpf
*wpf
= to_rwpf(subdev
);
137 struct vsp1_device
*vsp1
= wpf
->entity
.vsp1
;
142 /* Write to registers directly when stopping the stream as there will be
143 * no pipeline run to apply the display list.
145 vsp1_write(vsp1
, VI6_WPF_IRQ_ENB(wpf
->entity
.index
), 0);
146 vsp1_write(vsp1
, wpf
->entity
.index
* VI6_WPF_OFFSET
+
152 /* -----------------------------------------------------------------------------
153 * V4L2 Subdevice Operations
156 static const struct v4l2_subdev_video_ops wpf_video_ops
= {
157 .s_stream
= wpf_s_stream
,
160 static const struct v4l2_subdev_ops wpf_ops
= {
161 .video
= &wpf_video_ops
,
162 .pad
= &vsp1_rwpf_pad_ops
,
165 /* -----------------------------------------------------------------------------
166 * VSP1 Entity Operations
169 static void vsp1_wpf_destroy(struct vsp1_entity
*entity
)
171 struct vsp1_rwpf
*wpf
= entity_to_rwpf(entity
);
173 vsp1_dlm_destroy(wpf
->dlm
);
176 static void wpf_set_memory(struct vsp1_entity
*entity
, struct vsp1_dl_list
*dl
)
178 struct vsp1_rwpf
*wpf
= entity_to_rwpf(entity
);
179 const struct v4l2_pix_format_mplane
*format
= &wpf
->format
;
180 struct vsp1_rwpf_memory mem
= wpf
->mem
;
181 unsigned int flip
= wpf
->flip
.active
;
184 /* Update the memory offsets based on flipping configuration. The
185 * destination addresses point to the locations where the VSP starts
186 * writing to memory, which can be different corners of the image
187 * depending on vertical flipping. Horizontal flipping is handled
188 * through a line buffer and doesn't modify the start address.
190 if (flip
& BIT(WPF_CTRL_VFLIP
)) {
191 mem
.addr
[0] += (format
->height
- 1)
192 * format
->plane_fmt
[0].bytesperline
;
194 if (format
->num_planes
> 1) {
195 offset
= (format
->height
/ wpf
->fmtinfo
->vsub
- 1)
196 * format
->plane_fmt
[1].bytesperline
;
197 mem
.addr
[1] += offset
;
198 mem
.addr
[2] += offset
;
202 vsp1_wpf_write(wpf
, dl
, VI6_WPF_DSTM_ADDR_Y
, mem
.addr
[0]);
203 vsp1_wpf_write(wpf
, dl
, VI6_WPF_DSTM_ADDR_C0
, mem
.addr
[1]);
204 vsp1_wpf_write(wpf
, dl
, VI6_WPF_DSTM_ADDR_C1
, mem
.addr
[2]);
207 static void wpf_configure(struct vsp1_entity
*entity
,
208 struct vsp1_pipeline
*pipe
,
209 struct vsp1_dl_list
*dl
, bool full
)
211 struct vsp1_rwpf
*wpf
= to_rwpf(&entity
->subdev
);
212 struct vsp1_device
*vsp1
= wpf
->entity
.vsp1
;
213 const struct v4l2_mbus_framefmt
*source_format
;
214 const struct v4l2_mbus_framefmt
*sink_format
;
215 const struct v4l2_rect
*crop
;
221 const unsigned int mask
= BIT(WPF_CTRL_VFLIP
)
222 | BIT(WPF_CTRL_HFLIP
);
224 spin_lock(&wpf
->flip
.lock
);
225 wpf
->flip
.active
= (wpf
->flip
.active
& ~mask
)
226 | (wpf
->flip
.pending
& mask
);
227 spin_unlock(&wpf
->flip
.lock
);
229 outfmt
= (wpf
->alpha
<< VI6_WPF_OUTFMT_PDV_SHIFT
) | wpf
->outfmt
;
231 if (wpf
->flip
.active
& BIT(WPF_CTRL_VFLIP
))
232 outfmt
|= VI6_WPF_OUTFMT_FLP
;
233 if (wpf
->flip
.active
& BIT(WPF_CTRL_HFLIP
))
234 outfmt
|= VI6_WPF_OUTFMT_HFLP
;
236 vsp1_wpf_write(wpf
, dl
, VI6_WPF_OUTFMT
, outfmt
);
241 crop
= vsp1_rwpf_get_crop(wpf
, wpf
->entity
.config
);
243 vsp1_wpf_write(wpf
, dl
, VI6_WPF_HSZCLIP
, VI6_WPF_SZCLIP_EN
|
244 (crop
->left
<< VI6_WPF_SZCLIP_OFST_SHIFT
) |
245 (crop
->width
<< VI6_WPF_SZCLIP_SIZE_SHIFT
));
246 vsp1_wpf_write(wpf
, dl
, VI6_WPF_VSZCLIP
, VI6_WPF_SZCLIP_EN
|
247 (crop
->top
<< VI6_WPF_SZCLIP_OFST_SHIFT
) |
248 (crop
->height
<< VI6_WPF_SZCLIP_SIZE_SHIFT
));
251 sink_format
= vsp1_entity_get_pad_format(&wpf
->entity
,
254 source_format
= vsp1_entity_get_pad_format(&wpf
->entity
,
259 const struct v4l2_pix_format_mplane
*format
= &wpf
->format
;
260 const struct vsp1_format_info
*fmtinfo
= wpf
->fmtinfo
;
262 outfmt
= fmtinfo
->hwfmt
<< VI6_WPF_OUTFMT_WRFMT_SHIFT
;
265 outfmt
|= VI6_WPF_OUTFMT_PXA
;
266 if (fmtinfo
->swap_yc
)
267 outfmt
|= VI6_WPF_OUTFMT_SPYCS
;
268 if (fmtinfo
->swap_uv
)
269 outfmt
|= VI6_WPF_OUTFMT_SPUVS
;
271 /* Destination stride and byte swapping. */
272 vsp1_wpf_write(wpf
, dl
, VI6_WPF_DSTM_STRIDE_Y
,
273 format
->plane_fmt
[0].bytesperline
);
274 if (format
->num_planes
> 1)
275 vsp1_wpf_write(wpf
, dl
, VI6_WPF_DSTM_STRIDE_C
,
276 format
->plane_fmt
[1].bytesperline
);
278 vsp1_wpf_write(wpf
, dl
, VI6_WPF_DSWAP
, fmtinfo
->swap
);
280 if (vsp1
->info
->features
& VSP1_HAS_WPF_HFLIP
&&
281 wpf
->entity
.index
== 0)
282 vsp1_wpf_write(wpf
, dl
, VI6_WPF_ROT_CTRL
,
283 VI6_WPF_ROT_CTRL_LN16
|
284 (256 << VI6_WPF_ROT_CTRL_LMEM_WD_SHIFT
));
287 if (sink_format
->code
!= source_format
->code
)
288 outfmt
|= VI6_WPF_OUTFMT_CSC
;
290 wpf
->outfmt
= outfmt
;
292 vsp1_dl_list_write(dl
, VI6_DPR_WPF_FPORCH(wpf
->entity
.index
),
293 VI6_DPR_WPF_FPORCH_FP_WPFN
);
295 vsp1_dl_list_write(dl
, VI6_WPF_WRBCK_CTRL
, 0);
297 /* Sources. If the pipeline has a single input and BRU is not used,
298 * configure it as the master layer. Otherwise configure all
299 * inputs as sub-layers and select the virtual RPF as the master
302 for (i
= 0; i
< vsp1
->info
->rpf_count
; ++i
) {
303 struct vsp1_rwpf
*input
= pipe
->inputs
[i
];
308 srcrpf
|= (!pipe
->bru
&& pipe
->num_inputs
== 1)
309 ? VI6_WPF_SRCRPF_RPF_ACT_MST(input
->entity
.index
)
310 : VI6_WPF_SRCRPF_RPF_ACT_SUB(input
->entity
.index
);
313 if (pipe
->bru
|| pipe
->num_inputs
> 1)
314 srcrpf
|= VI6_WPF_SRCRPF_VIRACT_MST
;
316 vsp1_wpf_write(wpf
, dl
, VI6_WPF_SRCRPF
, srcrpf
);
318 /* Enable interrupts */
319 vsp1_dl_list_write(dl
, VI6_WPF_IRQ_STA(wpf
->entity
.index
), 0);
320 vsp1_dl_list_write(dl
, VI6_WPF_IRQ_ENB(wpf
->entity
.index
),
321 VI6_WFP_IRQ_ENB_FREE
);
324 static const struct vsp1_entity_operations wpf_entity_ops
= {
325 .destroy
= vsp1_wpf_destroy
,
326 .set_memory
= wpf_set_memory
,
327 .configure
= wpf_configure
,
330 /* -----------------------------------------------------------------------------
331 * Initialization and Cleanup
334 struct vsp1_rwpf
*vsp1_wpf_create(struct vsp1_device
*vsp1
, unsigned int index
)
336 struct vsp1_rwpf
*wpf
;
340 wpf
= devm_kzalloc(vsp1
->dev
, sizeof(*wpf
), GFP_KERNEL
);
342 return ERR_PTR(-ENOMEM
);
344 if (vsp1
->info
->gen
== 2) {
345 wpf
->max_width
= WPF_GEN2_MAX_WIDTH
;
346 wpf
->max_height
= WPF_GEN2_MAX_HEIGHT
;
348 wpf
->max_width
= WPF_GEN3_MAX_WIDTH
;
349 wpf
->max_height
= WPF_GEN3_MAX_HEIGHT
;
352 wpf
->entity
.ops
= &wpf_entity_ops
;
353 wpf
->entity
.type
= VSP1_ENTITY_WPF
;
354 wpf
->entity
.index
= index
;
356 sprintf(name
, "wpf.%u", index
);
357 ret
= vsp1_entity_init(vsp1
, &wpf
->entity
, name
, 2, &wpf_ops
,
358 MEDIA_ENT_F_PROC_VIDEO_PIXEL_FORMATTER
);
362 /* Initialize the display list manager. */
363 wpf
->dlm
= vsp1_dlm_create(vsp1
, index
, 4);
369 /* Initialize the control handler. */
370 ret
= wpf_init_controls(wpf
);
372 dev_err(vsp1
->dev
, "wpf%u: failed to initialize controls\n",
377 v4l2_ctrl_handler_setup(&wpf
->ctrls
);
382 vsp1_entity_destroy(&wpf
->entity
);