1 // SPDX-License-Identifier: GPL-2.0+
3 * vsp1_sru.c -- R-Car VSP1 Super Resolution Unit
5 * Copyright (C) 2013 Renesas Corporation
10 #include <linux/device.h>
11 #include <linux/gfp.h>
13 #include <media/v4l2-subdev.h>
17 #include "vsp1_pipe.h"
20 #define SRU_MIN_SIZE 4U
21 #define SRU_MAX_SIZE 8190U
23 /* -----------------------------------------------------------------------------
27 static inline void vsp1_sru_write(struct vsp1_sru *sru,
28 struct vsp1_dl_body *dlb, u32 reg, u32 data)
30 vsp1_dl_body_write(dlb, reg, data);
33 /* -----------------------------------------------------------------------------
37 #define V4L2_CID_VSP1_SRU_INTENSITY (V4L2_CID_USER_BASE | 0x1001)
39 struct vsp1_sru_param {
44 #define VI6_SRU_CTRL0_PARAMS(p0, p1) \
45 (((p0) << VI6_SRU_CTRL0_PARAM0_SHIFT) | \
46 ((p1) << VI6_SRU_CTRL0_PARAM1_SHIFT))
48 #define VI6_SRU_CTRL2_PARAMS(p6, p7, p8) \
49 (((p6) << VI6_SRU_CTRL2_PARAM6_SHIFT) | \
50 ((p7) << VI6_SRU_CTRL2_PARAM7_SHIFT) | \
51 ((p8) << VI6_SRU_CTRL2_PARAM8_SHIFT))
53 static const struct vsp1_sru_param vsp1_sru_params[] = {
55 .ctrl0 = VI6_SRU_CTRL0_PARAMS(256, 4) | VI6_SRU_CTRL0_EN,
56 .ctrl2 = VI6_SRU_CTRL2_PARAMS(24, 40, 255),
58 .ctrl0 = VI6_SRU_CTRL0_PARAMS(256, 4) | VI6_SRU_CTRL0_EN,
59 .ctrl2 = VI6_SRU_CTRL2_PARAMS(8, 16, 255),
61 .ctrl0 = VI6_SRU_CTRL0_PARAMS(384, 5) | VI6_SRU_CTRL0_EN,
62 .ctrl2 = VI6_SRU_CTRL2_PARAMS(36, 60, 255),
64 .ctrl0 = VI6_SRU_CTRL0_PARAMS(384, 5) | VI6_SRU_CTRL0_EN,
65 .ctrl2 = VI6_SRU_CTRL2_PARAMS(12, 27, 255),
67 .ctrl0 = VI6_SRU_CTRL0_PARAMS(511, 6) | VI6_SRU_CTRL0_EN,
68 .ctrl2 = VI6_SRU_CTRL2_PARAMS(48, 80, 255),
70 .ctrl0 = VI6_SRU_CTRL0_PARAMS(511, 6) | VI6_SRU_CTRL0_EN,
71 .ctrl2 = VI6_SRU_CTRL2_PARAMS(16, 36, 255),
75 static int sru_s_ctrl(struct v4l2_ctrl *ctrl)
77 struct vsp1_sru *sru =
78 container_of(ctrl->handler, struct vsp1_sru, ctrls);
81 case V4L2_CID_VSP1_SRU_INTENSITY:
82 sru->intensity = ctrl->val;
89 static const struct v4l2_ctrl_ops sru_ctrl_ops = {
93 static const struct v4l2_ctrl_config sru_intensity_control = {
95 .id = V4L2_CID_VSP1_SRU_INTENSITY,
97 .type = V4L2_CTRL_TYPE_INTEGER,
104 /* -----------------------------------------------------------------------------
105 * V4L2 Subdevice Operations
108 static int sru_enum_mbus_code(struct v4l2_subdev *subdev,
109 struct v4l2_subdev_state *sd_state,
110 struct v4l2_subdev_mbus_code_enum *code)
112 static const unsigned int codes[] = {
113 MEDIA_BUS_FMT_ARGB8888_1X32,
114 MEDIA_BUS_FMT_AYUV8_1X32,
117 return vsp1_subdev_enum_mbus_code(subdev, sd_state, code, codes,
121 static int sru_enum_frame_size(struct v4l2_subdev *subdev,
122 struct v4l2_subdev_state *sd_state,
123 struct v4l2_subdev_frame_size_enum *fse)
125 struct vsp1_sru *sru = to_sru(subdev);
126 struct v4l2_subdev_state *config;
127 struct v4l2_mbus_framefmt *format;
130 config = vsp1_entity_get_pad_config(&sru->entity, sd_state,
135 format = vsp1_entity_get_pad_format(&sru->entity, config, SRU_PAD_SINK);
137 mutex_lock(&sru->entity.lock);
139 if (fse->index || fse->code != format->code) {
144 if (fse->pad == SRU_PAD_SINK) {
145 fse->min_width = SRU_MIN_SIZE;
146 fse->max_width = SRU_MAX_SIZE;
147 fse->min_height = SRU_MIN_SIZE;
148 fse->max_height = SRU_MAX_SIZE;
150 fse->min_width = format->width;
151 fse->min_height = format->height;
152 if (format->width <= SRU_MAX_SIZE / 2 &&
153 format->height <= SRU_MAX_SIZE / 2) {
154 fse->max_width = format->width * 2;
155 fse->max_height = format->height * 2;
157 fse->max_width = format->width;
158 fse->max_height = format->height;
163 mutex_unlock(&sru->entity.lock);
167 static void sru_try_format(struct vsp1_sru *sru,
168 struct v4l2_subdev_state *sd_state,
169 unsigned int pad, struct v4l2_mbus_framefmt *fmt)
171 struct v4l2_mbus_framefmt *format;
172 unsigned int input_area;
173 unsigned int output_area;
177 /* Default to YUV if the requested format is not supported. */
178 if (fmt->code != MEDIA_BUS_FMT_ARGB8888_1X32 &&
179 fmt->code != MEDIA_BUS_FMT_AYUV8_1X32)
180 fmt->code = MEDIA_BUS_FMT_AYUV8_1X32;
182 fmt->width = clamp(fmt->width, SRU_MIN_SIZE, SRU_MAX_SIZE);
183 fmt->height = clamp(fmt->height, SRU_MIN_SIZE, SRU_MAX_SIZE);
187 /* The SRU can't perform format conversion. */
188 format = vsp1_entity_get_pad_format(&sru->entity, sd_state,
190 fmt->code = format->code;
193 * We can upscale by 2 in both direction, but not independently.
194 * Compare the input and output rectangles areas (avoiding
195 * integer overflows on the output): if the requested output
196 * area is larger than 1.5^2 the input area upscale by two,
197 * otherwise don't scale.
199 input_area = format->width * format->height;
200 output_area = min(fmt->width, SRU_MAX_SIZE)
201 * min(fmt->height, SRU_MAX_SIZE);
203 if (fmt->width <= SRU_MAX_SIZE / 2 &&
204 fmt->height <= SRU_MAX_SIZE / 2 &&
205 output_area > input_area * 9 / 4) {
206 fmt->width = format->width * 2;
207 fmt->height = format->height * 2;
209 fmt->width = format->width;
210 fmt->height = format->height;
215 fmt->field = V4L2_FIELD_NONE;
216 fmt->colorspace = V4L2_COLORSPACE_SRGB;
219 static int sru_set_format(struct v4l2_subdev *subdev,
220 struct v4l2_subdev_state *sd_state,
221 struct v4l2_subdev_format *fmt)
223 struct vsp1_sru *sru = to_sru(subdev);
224 struct v4l2_subdev_state *config;
225 struct v4l2_mbus_framefmt *format;
228 mutex_lock(&sru->entity.lock);
230 config = vsp1_entity_get_pad_config(&sru->entity, sd_state,
237 sru_try_format(sru, config, fmt->pad, &fmt->format);
239 format = vsp1_entity_get_pad_format(&sru->entity, config, fmt->pad);
240 *format = fmt->format;
242 if (fmt->pad == SRU_PAD_SINK) {
243 /* Propagate the format to the source pad. */
244 format = vsp1_entity_get_pad_format(&sru->entity, config,
246 *format = fmt->format;
248 sru_try_format(sru, config, SRU_PAD_SOURCE, format);
252 mutex_unlock(&sru->entity.lock);
256 static const struct v4l2_subdev_pad_ops sru_pad_ops = {
257 .init_cfg = vsp1_entity_init_cfg,
258 .enum_mbus_code = sru_enum_mbus_code,
259 .enum_frame_size = sru_enum_frame_size,
260 .get_fmt = vsp1_subdev_get_pad_format,
261 .set_fmt = sru_set_format,
264 static const struct v4l2_subdev_ops sru_ops = {
268 /* -----------------------------------------------------------------------------
269 * VSP1 Entity Operations
272 static void sru_configure_stream(struct vsp1_entity *entity,
273 struct vsp1_pipeline *pipe,
274 struct vsp1_dl_list *dl,
275 struct vsp1_dl_body *dlb)
277 const struct vsp1_sru_param *param;
278 struct vsp1_sru *sru = to_sru(&entity->subdev);
279 struct v4l2_mbus_framefmt *input;
280 struct v4l2_mbus_framefmt *output;
283 input = vsp1_entity_get_pad_format(&sru->entity, sru->entity.config,
285 output = vsp1_entity_get_pad_format(&sru->entity, sru->entity.config,
288 if (input->code == MEDIA_BUS_FMT_ARGB8888_1X32)
289 ctrl0 = VI6_SRU_CTRL0_PARAM2 | VI6_SRU_CTRL0_PARAM3
290 | VI6_SRU_CTRL0_PARAM4;
292 ctrl0 = VI6_SRU_CTRL0_PARAM3;
294 if (input->width != output->width)
295 ctrl0 |= VI6_SRU_CTRL0_MODE_UPSCALE;
297 param = &vsp1_sru_params[sru->intensity - 1];
299 ctrl0 |= param->ctrl0;
301 vsp1_sru_write(sru, dlb, VI6_SRU_CTRL0, ctrl0);
302 vsp1_sru_write(sru, dlb, VI6_SRU_CTRL1, VI6_SRU_CTRL1_PARAM5);
303 vsp1_sru_write(sru, dlb, VI6_SRU_CTRL2, param->ctrl2);
306 static unsigned int sru_max_width(struct vsp1_entity *entity,
307 struct vsp1_pipeline *pipe)
309 struct vsp1_sru *sru = to_sru(&entity->subdev);
310 struct v4l2_mbus_framefmt *input;
311 struct v4l2_mbus_framefmt *output;
313 input = vsp1_entity_get_pad_format(&sru->entity, sru->entity.config,
315 output = vsp1_entity_get_pad_format(&sru->entity, sru->entity.config,
319 * The maximum input width of the SRU is 288 input pixels, but 32
320 * pixels are reserved to support overlapping partition windows when
323 if (input->width != output->width)
329 static void sru_partition(struct vsp1_entity *entity,
330 struct vsp1_pipeline *pipe,
331 struct vsp1_partition *partition,
332 unsigned int partition_idx,
333 struct vsp1_partition_window *window)
335 struct vsp1_sru *sru = to_sru(&entity->subdev);
336 struct v4l2_mbus_framefmt *input;
337 struct v4l2_mbus_framefmt *output;
339 input = vsp1_entity_get_pad_format(&sru->entity, sru->entity.config,
341 output = vsp1_entity_get_pad_format(&sru->entity, sru->entity.config,
344 /* Adapt if SRUx2 is enabled. */
345 if (input->width != output->width) {
350 partition->sru = *window;
353 static const struct vsp1_entity_operations sru_entity_ops = {
354 .configure_stream = sru_configure_stream,
355 .max_width = sru_max_width,
356 .partition = sru_partition,
359 /* -----------------------------------------------------------------------------
360 * Initialization and Cleanup
363 struct vsp1_sru *vsp1_sru_create(struct vsp1_device *vsp1)
365 struct vsp1_sru *sru;
368 sru = devm_kzalloc(vsp1->dev, sizeof(*sru), GFP_KERNEL);
370 return ERR_PTR(-ENOMEM);
372 sru->entity.ops = &sru_entity_ops;
373 sru->entity.type = VSP1_ENTITY_SRU;
375 ret = vsp1_entity_init(vsp1, &sru->entity, "sru", 2, &sru_ops,
376 MEDIA_ENT_F_PROC_VIDEO_SCALER);
380 /* Initialize the control handler. */
381 v4l2_ctrl_handler_init(&sru->ctrls, 1);
382 v4l2_ctrl_new_custom(&sru->ctrls, &sru_intensity_control, NULL);
386 sru->entity.subdev.ctrl_handler = &sru->ctrls;
388 if (sru->ctrls.error) {
389 dev_err(vsp1->dev, "sru: failed to initialize controls\n");
390 ret = sru->ctrls.error;
391 vsp1_entity_destroy(&sru->entity);