2 * rcar_du_kms.c -- R-Car Display Unit Mode Setting
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.
15 #include <drm/drm_crtc.h>
16 #include <drm/drm_crtc_helper.h>
17 #include <drm/drm_fb_cma_helper.h>
18 #include <drm/drm_gem_cma_helper.h>
20 #include <linux/of_graph.h>
22 #include "rcar_du_crtc.h"
23 #include "rcar_du_drv.h"
24 #include "rcar_du_encoder.h"
25 #include "rcar_du_kms.h"
26 #include "rcar_du_lvdsenc.h"
27 #include "rcar_du_regs.h"
29 /* -----------------------------------------------------------------------------
33 static const struct rcar_du_format_info rcar_du_format_infos
[] = {
35 .fourcc
= DRM_FORMAT_RGB565
,
38 .pnmr
= PnMR_SPIM_TP
| PnMR_DDDF_16BPP
,
39 .edf
= PnDDCR4_EDF_NONE
,
41 .fourcc
= DRM_FORMAT_ARGB1555
,
44 .pnmr
= PnMR_SPIM_ALP
| PnMR_DDDF_ARGB
,
45 .edf
= PnDDCR4_EDF_NONE
,
47 .fourcc
= DRM_FORMAT_XRGB1555
,
50 .pnmr
= PnMR_SPIM_ALP
| PnMR_DDDF_ARGB
,
51 .edf
= PnDDCR4_EDF_NONE
,
53 .fourcc
= DRM_FORMAT_XRGB8888
,
56 .pnmr
= PnMR_SPIM_TP
| PnMR_DDDF_16BPP
,
57 .edf
= PnDDCR4_EDF_RGB888
,
59 .fourcc
= DRM_FORMAT_ARGB8888
,
62 .pnmr
= PnMR_SPIM_ALP
| PnMR_DDDF_16BPP
,
63 .edf
= PnDDCR4_EDF_ARGB8888
,
65 .fourcc
= DRM_FORMAT_UYVY
,
68 .pnmr
= PnMR_SPIM_TP_OFF
| PnMR_DDDF_YC
,
69 .edf
= PnDDCR4_EDF_NONE
,
71 .fourcc
= DRM_FORMAT_YUYV
,
74 .pnmr
= PnMR_SPIM_TP_OFF
| PnMR_DDDF_YC
,
75 .edf
= PnDDCR4_EDF_NONE
,
77 .fourcc
= DRM_FORMAT_NV12
,
80 .pnmr
= PnMR_SPIM_TP_OFF
| PnMR_DDDF_YC
,
81 .edf
= PnDDCR4_EDF_NONE
,
83 .fourcc
= DRM_FORMAT_NV21
,
86 .pnmr
= PnMR_SPIM_TP_OFF
| PnMR_DDDF_YC
,
87 .edf
= PnDDCR4_EDF_NONE
,
89 /* In YUV 4:2:2, only NV16 is supported (NV61 isn't) */
90 .fourcc
= DRM_FORMAT_NV16
,
93 .pnmr
= PnMR_SPIM_TP_OFF
| PnMR_DDDF_YC
,
94 .edf
= PnDDCR4_EDF_NONE
,
98 const struct rcar_du_format_info
*rcar_du_format_info(u32 fourcc
)
102 for (i
= 0; i
< ARRAY_SIZE(rcar_du_format_infos
); ++i
) {
103 if (rcar_du_format_infos
[i
].fourcc
== fourcc
)
104 return &rcar_du_format_infos
[i
];
110 /* -----------------------------------------------------------------------------
114 int rcar_du_dumb_create(struct drm_file
*file
, struct drm_device
*dev
,
115 struct drm_mode_create_dumb
*args
)
117 struct rcar_du_device
*rcdu
= dev
->dev_private
;
118 unsigned int min_pitch
= DIV_ROUND_UP(args
->width
* args
->bpp
, 8);
121 /* The R8A7779 DU requires a 16 pixels pitch alignment as documented,
122 * but the R8A7790 DU seems to require a 128 bytes pitch alignment.
124 if (rcar_du_needs(rcdu
, RCAR_DU_QUIRK_ALIGN_128B
))
127 align
= 16 * args
->bpp
/ 8;
129 args
->pitch
= roundup(max(args
->pitch
, min_pitch
), align
);
131 return drm_gem_cma_dumb_create(file
, dev
, args
);
134 static struct drm_framebuffer
*
135 rcar_du_fb_create(struct drm_device
*dev
, struct drm_file
*file_priv
,
136 struct drm_mode_fb_cmd2
*mode_cmd
)
138 struct rcar_du_device
*rcdu
= dev
->dev_private
;
139 const struct rcar_du_format_info
*format
;
140 unsigned int max_pitch
;
144 format
= rcar_du_format_info(mode_cmd
->pixel_format
);
145 if (format
== NULL
) {
146 dev_dbg(dev
->dev
, "unsupported pixel format %08x\n",
147 mode_cmd
->pixel_format
);
148 return ERR_PTR(-EINVAL
);
152 * The pitch and alignment constraints are expressed in pixels on the
153 * hardware side and in bytes in the DRM API.
155 bpp
= format
->planes
== 2 ? 1 : format
->bpp
/ 8;
156 max_pitch
= 4096 * bpp
;
158 if (rcar_du_needs(rcdu
, RCAR_DU_QUIRK_ALIGN_128B
))
163 if (mode_cmd
->pitches
[0] & (align
- 1) ||
164 mode_cmd
->pitches
[0] >= max_pitch
) {
165 dev_dbg(dev
->dev
, "invalid pitch value %u\n",
166 mode_cmd
->pitches
[0]);
167 return ERR_PTR(-EINVAL
);
170 if (format
->planes
== 2) {
171 if (mode_cmd
->pitches
[1] != mode_cmd
->pitches
[0]) {
173 "luma and chroma pitches do not match\n");
174 return ERR_PTR(-EINVAL
);
178 return drm_fb_cma_create(dev
, file_priv
, mode_cmd
);
181 static void rcar_du_output_poll_changed(struct drm_device
*dev
)
183 struct rcar_du_device
*rcdu
= dev
->dev_private
;
185 drm_fbdev_cma_hotplug_event(rcdu
->fbdev
);
188 static const struct drm_mode_config_funcs rcar_du_mode_config_funcs
= {
189 .fb_create
= rcar_du_fb_create
,
190 .output_poll_changed
= rcar_du_output_poll_changed
,
193 static int rcar_du_encoders_init_pdata(struct rcar_du_device
*rcdu
)
195 unsigned int num_encoders
= 0;
199 for (i
= 0; i
< rcdu
->pdata
->num_encoders
; ++i
) {
200 const struct rcar_du_encoder_data
*pdata
=
201 &rcdu
->pdata
->encoders
[i
];
202 const struct rcar_du_output_routing
*route
=
203 &rcdu
->info
->routes
[pdata
->output
];
205 if (pdata
->type
== RCAR_DU_ENCODER_UNUSED
)
208 if (pdata
->output
>= RCAR_DU_OUTPUT_MAX
||
209 route
->possible_crtcs
== 0) {
211 "encoder %u references unexisting output %u, skipping\n",
216 ret
= rcar_du_encoder_init(rcdu
, pdata
->type
, pdata
->output
,
227 static int rcar_du_encoders_init_dt_one(struct rcar_du_device
*rcdu
,
228 enum rcar_du_output output
,
229 struct of_endpoint
*ep
)
231 static const struct {
232 const char *compatible
;
233 enum rcar_du_encoder_type type
;
235 { "adi,adv7123", RCAR_DU_ENCODER_VGA
},
236 { "thine,thc63lvdm83d", RCAR_DU_ENCODER_LVDS
},
239 enum rcar_du_encoder_type enc_type
= RCAR_DU_ENCODER_NONE
;
240 struct device_node
*connector
= NULL
;
241 struct device_node
*encoder
= NULL
;
242 struct device_node
*prev
= NULL
;
243 struct device_node
*entity_ep_node
;
244 struct device_node
*entity
;
248 * Locate the connected entity and infer its type from the number of
251 entity
= of_graph_get_remote_port_parent(ep
->local_node
);
253 dev_dbg(rcdu
->dev
, "unconnected endpoint %s, skipping\n",
254 ep
->local_node
->full_name
);
258 entity_ep_node
= of_parse_phandle(ep
->local_node
, "remote-endpoint", 0);
261 struct device_node
*ep_node
;
263 ep_node
= of_graph_get_next_endpoint(entity
, prev
);
270 if (ep_node
== entity_ep_node
)
274 * We've found one endpoint other than the input, this must
275 * be an encoder. Locate the connector.
278 connector
= of_graph_get_remote_port_parent(ep_node
);
279 of_node_put(ep_node
);
283 "no connector for encoder %s, skipping\n",
285 of_node_put(entity_ep_node
);
286 of_node_put(encoder
);
293 of_node_put(entity_ep_node
);
297 * If an encoder has been found, get its type based on its
302 for (i
= 0; i
< ARRAY_SIZE(encoders
); ++i
) {
303 if (of_device_is_compatible(encoder
,
304 encoders
[i
].compatible
)) {
305 enc_type
= encoders
[i
].type
;
310 if (i
== ARRAY_SIZE(encoders
)) {
312 "unknown encoder type for %s, skipping\n",
314 of_node_put(encoder
);
315 of_node_put(connector
);
320 * If no encoder has been found the entity must be the
326 ret
= rcar_du_encoder_init(rcdu
, enc_type
, output
, NULL
, connector
);
327 of_node_put(encoder
);
328 of_node_put(connector
);
330 return ret
< 0 ? ret
: 1;
333 static int rcar_du_encoders_init_dt(struct rcar_du_device
*rcdu
)
335 struct device_node
*np
= rcdu
->dev
->of_node
;
336 struct device_node
*prev
= NULL
;
337 unsigned int num_encoders
= 0;
340 * Iterate over the endpoints and create one encoder for each output
344 struct device_node
*ep_node
;
345 enum rcar_du_output output
;
346 struct of_endpoint ep
;
350 ep_node
= of_graph_get_next_endpoint(np
, prev
);
357 ret
= of_graph_parse_endpoint(ep_node
, &ep
);
359 of_node_put(ep_node
);
363 /* Find the output route corresponding to the port number. */
364 for (i
= 0; i
< RCAR_DU_OUTPUT_MAX
; ++i
) {
365 if (rcdu
->info
->routes
[i
].possible_crtcs
&&
366 rcdu
->info
->routes
[i
].port
== ep
.port
) {
372 if (i
== RCAR_DU_OUTPUT_MAX
) {
374 "port %u references unexisting output, skipping\n",
379 /* Process the output pipeline. */
380 ret
= rcar_du_encoders_init_dt_one(rcdu
, output
, &ep
);
382 of_node_put(ep_node
);
392 int rcar_du_modeset_init(struct rcar_du_device
*rcdu
)
394 static const unsigned int mmio_offsets
[] = {
395 DU0_REG_OFFSET
, DU2_REG_OFFSET
398 struct drm_device
*dev
= rcdu
->ddev
;
399 struct drm_encoder
*encoder
;
400 struct drm_fbdev_cma
*fbdev
;
401 unsigned int num_encoders
;
402 unsigned int num_groups
;
406 drm_mode_config_init(dev
);
408 dev
->mode_config
.min_width
= 0;
409 dev
->mode_config
.min_height
= 0;
410 dev
->mode_config
.max_width
= 4095;
411 dev
->mode_config
.max_height
= 2047;
412 dev
->mode_config
.funcs
= &rcar_du_mode_config_funcs
;
414 rcdu
->num_crtcs
= rcdu
->info
->num_crtcs
;
416 /* Initialize the groups. */
417 num_groups
= DIV_ROUND_UP(rcdu
->num_crtcs
, 2);
419 for (i
= 0; i
< num_groups
; ++i
) {
420 struct rcar_du_group
*rgrp
= &rcdu
->groups
[i
];
423 rgrp
->mmio_offset
= mmio_offsets
[i
];
426 ret
= rcar_du_planes_init(rgrp
);
431 /* Create the CRTCs. */
432 for (i
= 0; i
< rcdu
->num_crtcs
; ++i
) {
433 struct rcar_du_group
*rgrp
= &rcdu
->groups
[i
/ 2];
435 ret
= rcar_du_crtc_create(rgrp
, i
);
440 /* Initialize the encoders. */
441 ret
= rcar_du_lvdsenc_init(rcdu
);
446 ret
= rcar_du_encoders_init_pdata(rcdu
);
448 ret
= rcar_du_encoders_init_dt(rcdu
);
455 /* Set the possible CRTCs and possible clones. There's always at least
456 * one way for all encoders to clone each other, set all bits in the
457 * possible clones field.
459 list_for_each_entry(encoder
, &dev
->mode_config
.encoder_list
, head
) {
460 struct rcar_du_encoder
*renc
= to_rcar_encoder(encoder
);
461 const struct rcar_du_output_routing
*route
=
462 &rcdu
->info
->routes
[renc
->output
];
464 encoder
->possible_crtcs
= route
->possible_crtcs
;
465 encoder
->possible_clones
= (1 << num_encoders
) - 1;
468 /* Now that the CRTCs have been initialized register the planes. */
469 for (i
= 0; i
< num_groups
; ++i
) {
470 ret
= rcar_du_planes_register(&rcdu
->groups
[i
]);
475 drm_kms_helper_poll_init(dev
);
477 drm_helper_disable_unused_functions(dev
);
479 fbdev
= drm_fbdev_cma_init(dev
, 32, dev
->mode_config
.num_crtc
,
480 dev
->mode_config
.num_connector
);
482 return PTR_ERR(fbdev
);
484 #ifndef CONFIG_FRAMEBUFFER_CONSOLE
485 drm_fbdev_cma_restore_mode(fbdev
);