2 * Copyright 2012 Red Hat Inc.
3 * Parts based on xf86-video-ast
4 * Copyright (c) 2005 ASPEED Technology Inc.
6 * Permission is hereby granted, free of charge, to any person obtaining a
7 * copy of this software and associated documentation files (the
8 * "Software"), to deal in the Software without restriction, including
9 * without limitation the rights to use, copy, modify, merge, publish,
10 * distribute, sub license, and/or sell copies of the Software, and to
11 * permit persons to whom the Software is furnished to do so, subject to
12 * the following conditions:
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
17 * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
18 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
19 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
20 * USE OR OTHER DEALINGS IN THE SOFTWARE.
22 * The above copyright notice and this permission notice (including the
23 * next paragraph) shall be included in all copies or substantial portions
28 * Authors: Dave Airlie <airlied@redhat.com>
30 #include <linux/export.h>
32 #include <drm/drm_crtc.h>
33 #include <drm/drm_crtc_helper.h>
34 #include <drm/drm_plane_helper.h>
37 #include "ast_tables.h"
39 static struct ast_i2c_chan
*ast_i2c_create(struct drm_device
*dev
);
40 static void ast_i2c_destroy(struct ast_i2c_chan
*i2c
);
41 static int ast_cursor_set(struct drm_crtc
*crtc
,
42 struct drm_file
*file_priv
,
46 static int ast_cursor_move(struct drm_crtc
*crtc
,
49 static inline void ast_load_palette_index(struct ast_private
*ast
,
50 u8 index
, u8 red
, u8 green
,
53 ast_io_write8(ast
, AST_IO_DAC_INDEX_WRITE
, index
);
54 ast_io_read8(ast
, AST_IO_SEQ_PORT
);
55 ast_io_write8(ast
, AST_IO_DAC_DATA
, red
);
56 ast_io_read8(ast
, AST_IO_SEQ_PORT
);
57 ast_io_write8(ast
, AST_IO_DAC_DATA
, green
);
58 ast_io_read8(ast
, AST_IO_SEQ_PORT
);
59 ast_io_write8(ast
, AST_IO_DAC_DATA
, blue
);
60 ast_io_read8(ast
, AST_IO_SEQ_PORT
);
63 static void ast_crtc_load_lut(struct drm_crtc
*crtc
)
65 struct ast_private
*ast
= crtc
->dev
->dev_private
;
72 r
= crtc
->gamma_store
;
73 g
= r
+ crtc
->gamma_size
;
74 b
= g
+ crtc
->gamma_size
;
76 for (i
= 0; i
< 256; i
++)
77 ast_load_palette_index(ast
, i
, *r
++ >> 8, *g
++ >> 8, *b
++ >> 8);
80 static bool ast_get_vbios_mode_info(struct drm_crtc
*crtc
, struct drm_display_mode
*mode
,
81 struct drm_display_mode
*adjusted_mode
,
82 struct ast_vbios_mode_info
*vbios_mode
)
84 struct ast_private
*ast
= crtc
->dev
->dev_private
;
85 const struct drm_framebuffer
*fb
= crtc
->primary
->fb
;
86 u32 refresh_rate_index
= 0, mode_id
, color_index
, refresh_rate
;
87 const struct ast_vbios_enhtable
*best
= NULL
;
91 switch (fb
->format
->cpp
[0] * 8) {
93 vbios_mode
->std_table
= &vbios_stdtable
[VGAModeIndex
];
94 color_index
= VGAModeIndex
- 1;
97 vbios_mode
->std_table
= &vbios_stdtable
[HiCModeIndex
];
98 color_index
= HiCModeIndex
;
102 vbios_mode
->std_table
= &vbios_stdtable
[TrueCModeIndex
];
103 color_index
= TrueCModeIndex
;
109 switch (crtc
->mode
.crtc_hdisplay
) {
111 vbios_mode
->enh_table
= &res_640x480
[refresh_rate_index
];
114 vbios_mode
->enh_table
= &res_800x600
[refresh_rate_index
];
117 vbios_mode
->enh_table
= &res_1024x768
[refresh_rate_index
];
120 if (crtc
->mode
.crtc_vdisplay
== 800)
121 vbios_mode
->enh_table
= &res_1280x800
[refresh_rate_index
];
123 vbios_mode
->enh_table
= &res_1280x1024
[refresh_rate_index
];
126 vbios_mode
->enh_table
= &res_1360x768
[refresh_rate_index
];
129 vbios_mode
->enh_table
= &res_1440x900
[refresh_rate_index
];
132 if (crtc
->mode
.crtc_vdisplay
== 900)
133 vbios_mode
->enh_table
= &res_1600x900
[refresh_rate_index
];
135 vbios_mode
->enh_table
= &res_1600x1200
[refresh_rate_index
];
138 vbios_mode
->enh_table
= &res_1680x1050
[refresh_rate_index
];
141 if (crtc
->mode
.crtc_vdisplay
== 1080)
142 vbios_mode
->enh_table
= &res_1920x1080
[refresh_rate_index
];
144 vbios_mode
->enh_table
= &res_1920x1200
[refresh_rate_index
];
150 refresh_rate
= drm_mode_vrefresh(mode
);
151 check_sync
= vbios_mode
->enh_table
->flags
& WideScreenMode
;
153 const struct ast_vbios_enhtable
*loop
= vbios_mode
->enh_table
;
155 while (loop
->refresh_rate
!= 0xff) {
157 (((mode
->flags
& DRM_MODE_FLAG_NVSYNC
) &&
158 (loop
->flags
& PVSync
)) ||
159 ((mode
->flags
& DRM_MODE_FLAG_PVSYNC
) &&
160 (loop
->flags
& NVSync
)) ||
161 ((mode
->flags
& DRM_MODE_FLAG_NHSYNC
) &&
162 (loop
->flags
& PHSync
)) ||
163 ((mode
->flags
& DRM_MODE_FLAG_PHSYNC
) &&
164 (loop
->flags
& NHSync
)))) {
168 if (loop
->refresh_rate
<= refresh_rate
169 && (!best
|| loop
->refresh_rate
> best
->refresh_rate
))
173 if (best
|| !check_sync
)
178 vbios_mode
->enh_table
= best
;
180 hborder
= (vbios_mode
->enh_table
->flags
& HBorder
) ? 8 : 0;
181 vborder
= (vbios_mode
->enh_table
->flags
& VBorder
) ? 8 : 0;
183 adjusted_mode
->crtc_htotal
= vbios_mode
->enh_table
->ht
;
184 adjusted_mode
->crtc_hblank_start
= vbios_mode
->enh_table
->hde
+ hborder
;
185 adjusted_mode
->crtc_hblank_end
= vbios_mode
->enh_table
->ht
- hborder
;
186 adjusted_mode
->crtc_hsync_start
= vbios_mode
->enh_table
->hde
+ hborder
+
187 vbios_mode
->enh_table
->hfp
;
188 adjusted_mode
->crtc_hsync_end
= (vbios_mode
->enh_table
->hde
+ hborder
+
189 vbios_mode
->enh_table
->hfp
+
190 vbios_mode
->enh_table
->hsync
);
192 adjusted_mode
->crtc_vtotal
= vbios_mode
->enh_table
->vt
;
193 adjusted_mode
->crtc_vblank_start
= vbios_mode
->enh_table
->vde
+ vborder
;
194 adjusted_mode
->crtc_vblank_end
= vbios_mode
->enh_table
->vt
- vborder
;
195 adjusted_mode
->crtc_vsync_start
= vbios_mode
->enh_table
->vde
+ vborder
+
196 vbios_mode
->enh_table
->vfp
;
197 adjusted_mode
->crtc_vsync_end
= (vbios_mode
->enh_table
->vde
+ vborder
+
198 vbios_mode
->enh_table
->vfp
+
199 vbios_mode
->enh_table
->vsync
);
201 refresh_rate_index
= vbios_mode
->enh_table
->refresh_rate_index
;
202 mode_id
= vbios_mode
->enh_table
->mode_id
;
204 if (ast
->chip
== AST1180
) {
207 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x8c, (u8
)((color_index
& 0xf) << 4));
208 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x8d, refresh_rate_index
& 0xff);
209 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x8e, mode_id
& 0xff);
211 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x91, 0x00);
212 if (vbios_mode
->enh_table
->flags
& NewModeInfo
) {
213 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x91, 0xa8);
214 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x92,
215 fb
->format
->cpp
[0] * 8);
216 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x93, adjusted_mode
->clock
/ 1000);
217 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x94, adjusted_mode
->crtc_hdisplay
);
218 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x95, adjusted_mode
->crtc_hdisplay
>> 8);
220 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x96, adjusted_mode
->crtc_vdisplay
);
221 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x97, adjusted_mode
->crtc_vdisplay
>> 8);
229 static void ast_set_std_reg(struct drm_crtc
*crtc
, struct drm_display_mode
*mode
,
230 struct ast_vbios_mode_info
*vbios_mode
)
232 struct ast_private
*ast
= crtc
->dev
->dev_private
;
233 const struct ast_vbios_stdtable
*stdtable
;
237 stdtable
= vbios_mode
->std_table
;
239 jreg
= stdtable
->misc
;
240 ast_io_write8(ast
, AST_IO_MISC_PORT_WRITE
, jreg
);
243 ast_set_index_reg(ast
, AST_IO_SEQ_PORT
, 0x00, 0x03);
244 for (i
= 0; i
< 4; i
++) {
245 jreg
= stdtable
->seq
[i
];
248 ast_set_index_reg(ast
, AST_IO_SEQ_PORT
, (i
+ 1) , jreg
);
252 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x11, 0x7f, 0x00);
253 for (i
= 0; i
< 25; i
++)
254 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, i
, stdtable
->crtc
[i
]);
257 jreg
= ast_io_read8(ast
, AST_IO_INPUT_STATUS1_READ
);
258 for (i
= 0; i
< 20; i
++) {
259 jreg
= stdtable
->ar
[i
];
260 ast_io_write8(ast
, AST_IO_AR_PORT_WRITE
, (u8
)i
);
261 ast_io_write8(ast
, AST_IO_AR_PORT_WRITE
, jreg
);
263 ast_io_write8(ast
, AST_IO_AR_PORT_WRITE
, 0x14);
264 ast_io_write8(ast
, AST_IO_AR_PORT_WRITE
, 0x00);
266 jreg
= ast_io_read8(ast
, AST_IO_INPUT_STATUS1_READ
);
267 ast_io_write8(ast
, AST_IO_AR_PORT_WRITE
, 0x20);
270 for (i
= 0; i
< 9; i
++)
271 ast_set_index_reg(ast
, AST_IO_GR_PORT
, i
, stdtable
->gr
[i
]);
274 static void ast_set_crtc_reg(struct drm_crtc
*crtc
, struct drm_display_mode
*mode
,
275 struct ast_vbios_mode_info
*vbios_mode
)
277 struct ast_private
*ast
= crtc
->dev
->dev_private
;
278 u8 jreg05
= 0, jreg07
= 0, jreg09
= 0, jregAC
= 0, jregAD
= 0, jregAE
= 0;
279 u16 temp
, precache
= 0;
281 if ((ast
->chip
== AST2500
) &&
282 (vbios_mode
->enh_table
->flags
& AST2500PreCatchCRT
))
285 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x11, 0x7f, 0x00);
287 temp
= (mode
->crtc_htotal
>> 3) - 5;
289 jregAC
|= 0x01; /* HT D[8] */
290 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x00, 0x00, temp
);
292 temp
= (mode
->crtc_hdisplay
>> 3) - 1;
294 jregAC
|= 0x04; /* HDE D[8] */
295 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x01, 0x00, temp
);
297 temp
= (mode
->crtc_hblank_start
>> 3) - 1;
299 jregAC
|= 0x10; /* HBS D[8] */
300 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x02, 0x00, temp
);
302 temp
= ((mode
->crtc_hblank_end
>> 3) - 1) & 0x7f;
304 jreg05
|= 0x80; /* HBE D[5] */
306 jregAD
|= 0x01; /* HBE D[5] */
307 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x03, 0xE0, (temp
& 0x1f));
309 temp
= ((mode
->crtc_hsync_start
-precache
) >> 3) - 1;
311 jregAC
|= 0x40; /* HRS D[5] */
312 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x04, 0x00, temp
);
314 temp
= (((mode
->crtc_hsync_end
-precache
) >> 3) - 1) & 0x3f;
316 jregAD
|= 0x04; /* HRE D[5] */
317 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x05, 0x60, (u8
)((temp
& 0x1f) | jreg05
));
319 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xAC, 0x00, jregAC
);
320 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xAD, 0x00, jregAD
);
323 temp
= (mode
->crtc_vtotal
) - 2;
330 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x06, 0x00, temp
);
332 temp
= (mode
->crtc_vsync_start
) - 1;
339 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x10, 0x00, temp
);
341 temp
= (mode
->crtc_vsync_end
- 1) & 0x3f;
346 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x11, 0x70, temp
& 0xf);
348 temp
= mode
->crtc_vdisplay
- 1;
355 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x12, 0x00, temp
);
357 temp
= mode
->crtc_vblank_start
- 1;
364 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x15, 0x00, temp
);
366 temp
= mode
->crtc_vblank_end
- 1;
369 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x16, 0x00, temp
);
371 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x07, 0x00, jreg07
);
372 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x09, 0xdf, jreg09
);
373 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xAE, 0x00, (jregAE
| 0x80));
376 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xb6, 0x3f, 0x80);
378 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xb6, 0x3f, 0x00);
380 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0x11, 0x7f, 0x80);
383 static void ast_set_offset_reg(struct drm_crtc
*crtc
)
385 struct ast_private
*ast
= crtc
->dev
->dev_private
;
386 const struct drm_framebuffer
*fb
= crtc
->primary
->fb
;
390 offset
= fb
->pitches
[0] >> 3;
391 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x13, (offset
& 0xff));
392 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xb0, (offset
>> 8) & 0x3f);
395 static void ast_set_dclk_reg(struct drm_device
*dev
, struct drm_display_mode
*mode
,
396 struct ast_vbios_mode_info
*vbios_mode
)
398 struct ast_private
*ast
= dev
->dev_private
;
399 const struct ast_vbios_dclk_info
*clk_info
;
401 if (ast
->chip
== AST2500
)
402 clk_info
= &dclk_table_ast2500
[vbios_mode
->enh_table
->dclk_index
];
404 clk_info
= &dclk_table
[vbios_mode
->enh_table
->dclk_index
];
406 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xc0, 0x00, clk_info
->param1
);
407 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xc1, 0x00, clk_info
->param2
);
408 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xbb, 0x0f,
409 (clk_info
->param3
& 0xc0) |
410 ((clk_info
->param3
& 0x3) << 4));
413 static void ast_set_ext_reg(struct drm_crtc
*crtc
, struct drm_display_mode
*mode
,
414 struct ast_vbios_mode_info
*vbios_mode
)
416 struct ast_private
*ast
= crtc
->dev
->dev_private
;
417 const struct drm_framebuffer
*fb
= crtc
->primary
->fb
;
418 u8 jregA0
= 0, jregA3
= 0, jregA8
= 0;
420 switch (fb
->format
->cpp
[0] * 8) {
439 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xa0, 0x8f, jregA0
);
440 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xa3, 0xf0, jregA3
);
441 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xa8, 0xfd, jregA8
);
444 if (ast
->chip
== AST2300
|| ast
->chip
== AST2400
||
445 ast
->chip
== AST2500
) {
446 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xa7, 0x78);
447 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xa6, 0x60);
448 } else if (ast
->chip
== AST2100
||
449 ast
->chip
== AST1100
||
450 ast
->chip
== AST2200
||
451 ast
->chip
== AST2150
) {
452 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xa7, 0x3f);
453 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xa6, 0x2f);
455 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xa7, 0x2f);
456 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xa6, 0x1f);
460 static void ast_set_sync_reg(struct drm_device
*dev
, struct drm_display_mode
*mode
,
461 struct ast_vbios_mode_info
*vbios_mode
)
463 struct ast_private
*ast
= dev
->dev_private
;
466 jreg
= ast_io_read8(ast
, AST_IO_MISC_PORT_READ
);
468 if (vbios_mode
->enh_table
->flags
& NVSync
) jreg
|= 0x80;
469 if (vbios_mode
->enh_table
->flags
& NHSync
) jreg
|= 0x40;
470 ast_io_write8(ast
, AST_IO_MISC_PORT_WRITE
, jreg
);
473 static bool ast_set_dac_reg(struct drm_crtc
*crtc
, struct drm_display_mode
*mode
,
474 struct ast_vbios_mode_info
*vbios_mode
)
476 const struct drm_framebuffer
*fb
= crtc
->primary
->fb
;
478 switch (fb
->format
->cpp
[0] * 8) {
487 static void ast_set_start_address_crt1(struct drm_crtc
*crtc
, unsigned offset
)
489 struct ast_private
*ast
= crtc
->dev
->dev_private
;
493 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x0d, (u8
)(addr
& 0xff));
494 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0x0c, (u8
)((addr
>> 8) & 0xff));
495 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xaf, (u8
)((addr
>> 16) & 0xff));
499 static void ast_crtc_dpms(struct drm_crtc
*crtc
, int mode
)
501 struct ast_private
*ast
= crtc
->dev
->dev_private
;
503 if (ast
->chip
== AST1180
)
507 case DRM_MODE_DPMS_ON
:
508 case DRM_MODE_DPMS_STANDBY
:
509 case DRM_MODE_DPMS_SUSPEND
:
510 ast_set_index_reg_mask(ast
, AST_IO_SEQ_PORT
, 0x1, 0xdf, 0);
511 if (ast
->tx_chip_type
== AST_TX_DP501
)
512 ast_set_dp501_video_output(crtc
->dev
, 1);
513 ast_crtc_load_lut(crtc
);
515 case DRM_MODE_DPMS_OFF
:
516 if (ast
->tx_chip_type
== AST_TX_DP501
)
517 ast_set_dp501_video_output(crtc
->dev
, 0);
518 ast_set_index_reg_mask(ast
, AST_IO_SEQ_PORT
, 0x1, 0xdf, 0x20);
523 /* ast is different - we will force move buffers out of VRAM */
524 static int ast_crtc_do_set_base(struct drm_crtc
*crtc
,
525 struct drm_framebuffer
*fb
,
526 int x
, int y
, int atomic
)
528 struct ast_private
*ast
= crtc
->dev
->dev_private
;
529 struct drm_gem_object
*obj
;
530 struct ast_framebuffer
*ast_fb
;
535 /* push the previous fb to system ram */
537 ast_fb
= to_ast_framebuffer(fb
);
539 bo
= gem_to_ast_bo(obj
);
540 ret
= ast_bo_reserve(bo
, false);
543 ast_bo_push_sysram(bo
);
544 ast_bo_unreserve(bo
);
547 ast_fb
= to_ast_framebuffer(crtc
->primary
->fb
);
549 bo
= gem_to_ast_bo(obj
);
551 ret
= ast_bo_reserve(bo
, false);
555 ret
= ast_bo_pin(bo
, TTM_PL_FLAG_VRAM
, &gpu_addr
);
557 ast_bo_unreserve(bo
);
561 if (&ast
->fbdev
->afb
== ast_fb
) {
562 /* if pushing console in kmap it */
563 ret
= ttm_bo_kmap(&bo
->bo
, 0, bo
->bo
.num_pages
, &bo
->kmap
);
565 DRM_ERROR("failed to kmap fbcon\n");
567 ast_fbdev_set_base(ast
, gpu_addr
);
569 ast_bo_unreserve(bo
);
571 ast_set_start_address_crt1(crtc
, (u32
)gpu_addr
);
576 static int ast_crtc_mode_set_base(struct drm_crtc
*crtc
, int x
, int y
,
577 struct drm_framebuffer
*old_fb
)
579 return ast_crtc_do_set_base(crtc
, old_fb
, x
, y
, 0);
582 static int ast_crtc_mode_set(struct drm_crtc
*crtc
,
583 struct drm_display_mode
*mode
,
584 struct drm_display_mode
*adjusted_mode
,
586 struct drm_framebuffer
*old_fb
)
588 struct drm_device
*dev
= crtc
->dev
;
589 struct ast_private
*ast
= crtc
->dev
->dev_private
;
590 struct ast_vbios_mode_info vbios_mode
;
592 if (ast
->chip
== AST1180
) {
593 DRM_ERROR("AST 1180 modesetting not supported\n");
597 ret
= ast_get_vbios_mode_info(crtc
, mode
, adjusted_mode
, &vbios_mode
);
602 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xa1, 0xff, 0x04);
604 ast_set_std_reg(crtc
, adjusted_mode
, &vbios_mode
);
605 ast_set_crtc_reg(crtc
, adjusted_mode
, &vbios_mode
);
606 ast_set_offset_reg(crtc
);
607 ast_set_dclk_reg(dev
, adjusted_mode
, &vbios_mode
);
608 ast_set_ext_reg(crtc
, adjusted_mode
, &vbios_mode
);
609 ast_set_sync_reg(dev
, adjusted_mode
, &vbios_mode
);
610 ast_set_dac_reg(crtc
, adjusted_mode
, &vbios_mode
);
612 ast_crtc_mode_set_base(crtc
, x
, y
, old_fb
);
617 static void ast_crtc_disable(struct drm_crtc
*crtc
)
622 ast_crtc_dpms(crtc
, DRM_MODE_DPMS_OFF
);
623 if (crtc
->primary
->fb
) {
624 struct ast_framebuffer
*ast_fb
= to_ast_framebuffer(crtc
->primary
->fb
);
625 struct drm_gem_object
*obj
= ast_fb
->obj
;
626 struct ast_bo
*bo
= gem_to_ast_bo(obj
);
628 ret
= ast_bo_reserve(bo
, false);
632 ast_bo_push_sysram(bo
);
633 ast_bo_unreserve(bo
);
635 crtc
->primary
->fb
= NULL
;
638 static void ast_crtc_prepare(struct drm_crtc
*crtc
)
643 static void ast_crtc_commit(struct drm_crtc
*crtc
)
645 struct ast_private
*ast
= crtc
->dev
->dev_private
;
646 ast_set_index_reg_mask(ast
, AST_IO_SEQ_PORT
, 0x1, 0xdf, 0);
647 ast_crtc_load_lut(crtc
);
651 static const struct drm_crtc_helper_funcs ast_crtc_helper_funcs
= {
652 .dpms
= ast_crtc_dpms
,
653 .mode_set
= ast_crtc_mode_set
,
654 .mode_set_base
= ast_crtc_mode_set_base
,
655 .disable
= ast_crtc_disable
,
656 .prepare
= ast_crtc_prepare
,
657 .commit
= ast_crtc_commit
,
661 static void ast_crtc_reset(struct drm_crtc
*crtc
)
666 static int ast_crtc_gamma_set(struct drm_crtc
*crtc
, u16
*red
, u16
*green
,
667 u16
*blue
, uint32_t size
,
668 struct drm_modeset_acquire_ctx
*ctx
)
670 ast_crtc_load_lut(crtc
);
676 static void ast_crtc_destroy(struct drm_crtc
*crtc
)
678 drm_crtc_cleanup(crtc
);
682 static const struct drm_crtc_funcs ast_crtc_funcs
= {
683 .cursor_set
= ast_cursor_set
,
684 .cursor_move
= ast_cursor_move
,
685 .reset
= ast_crtc_reset
,
686 .set_config
= drm_crtc_helper_set_config
,
687 .gamma_set
= ast_crtc_gamma_set
,
688 .destroy
= ast_crtc_destroy
,
691 static int ast_crtc_init(struct drm_device
*dev
)
693 struct ast_crtc
*crtc
;
695 crtc
= kzalloc(sizeof(struct ast_crtc
), GFP_KERNEL
);
699 drm_crtc_init(dev
, &crtc
->base
, &ast_crtc_funcs
);
700 drm_mode_crtc_set_gamma_size(&crtc
->base
, 256);
701 drm_crtc_helper_add(&crtc
->base
, &ast_crtc_helper_funcs
);
705 static void ast_encoder_destroy(struct drm_encoder
*encoder
)
707 drm_encoder_cleanup(encoder
);
712 static struct drm_encoder
*ast_best_single_encoder(struct drm_connector
*connector
)
714 int enc_id
= connector
->encoder_ids
[0];
715 /* pick the encoder ids */
717 return drm_encoder_find(connector
->dev
, NULL
, enc_id
);
722 static const struct drm_encoder_funcs ast_enc_funcs
= {
723 .destroy
= ast_encoder_destroy
,
726 static void ast_encoder_dpms(struct drm_encoder
*encoder
, int mode
)
731 static void ast_encoder_mode_set(struct drm_encoder
*encoder
,
732 struct drm_display_mode
*mode
,
733 struct drm_display_mode
*adjusted_mode
)
737 static void ast_encoder_prepare(struct drm_encoder
*encoder
)
742 static void ast_encoder_commit(struct drm_encoder
*encoder
)
748 static const struct drm_encoder_helper_funcs ast_enc_helper_funcs
= {
749 .dpms
= ast_encoder_dpms
,
750 .prepare
= ast_encoder_prepare
,
751 .commit
= ast_encoder_commit
,
752 .mode_set
= ast_encoder_mode_set
,
755 static int ast_encoder_init(struct drm_device
*dev
)
757 struct ast_encoder
*ast_encoder
;
759 ast_encoder
= kzalloc(sizeof(struct ast_encoder
), GFP_KERNEL
);
763 drm_encoder_init(dev
, &ast_encoder
->base
, &ast_enc_funcs
,
764 DRM_MODE_ENCODER_DAC
, NULL
);
765 drm_encoder_helper_add(&ast_encoder
->base
, &ast_enc_helper_funcs
);
767 ast_encoder
->base
.possible_crtcs
= 1;
771 static int ast_get_modes(struct drm_connector
*connector
)
773 struct ast_connector
*ast_connector
= to_ast_connector(connector
);
774 struct ast_private
*ast
= connector
->dev
->dev_private
;
778 if (ast
->tx_chip_type
== AST_TX_DP501
) {
779 ast
->dp501_maxclk
= 0xff;
780 edid
= kmalloc(128, GFP_KERNEL
);
784 flags
= ast_dp501_read_edid(connector
->dev
, (u8
*)edid
);
786 ast
->dp501_maxclk
= ast_get_dp501_max_clk(connector
->dev
);
791 edid
= drm_get_edid(connector
, &ast_connector
->i2c
->adapter
);
793 drm_mode_connector_update_edid_property(&ast_connector
->base
, edid
);
794 ret
= drm_add_edid_modes(connector
, edid
);
798 drm_mode_connector_update_edid_property(&ast_connector
->base
, NULL
);
802 static int ast_mode_valid(struct drm_connector
*connector
,
803 struct drm_display_mode
*mode
)
805 struct ast_private
*ast
= connector
->dev
->dev_private
;
806 int flags
= MODE_NOMODE
;
809 if (ast
->support_wide_screen
) {
810 if ((mode
->hdisplay
== 1680) && (mode
->vdisplay
== 1050))
812 if ((mode
->hdisplay
== 1280) && (mode
->vdisplay
== 800))
814 if ((mode
->hdisplay
== 1440) && (mode
->vdisplay
== 900))
816 if ((mode
->hdisplay
== 1360) && (mode
->vdisplay
== 768))
818 if ((mode
->hdisplay
== 1600) && (mode
->vdisplay
== 900))
821 if ((ast
->chip
== AST2100
) || (ast
->chip
== AST2200
) ||
822 (ast
->chip
== AST2300
) || (ast
->chip
== AST2400
) ||
823 (ast
->chip
== AST2500
) || (ast
->chip
== AST1180
)) {
824 if ((mode
->hdisplay
== 1920) && (mode
->vdisplay
== 1080))
827 if ((mode
->hdisplay
== 1920) && (mode
->vdisplay
== 1200)) {
828 jtemp
= ast_get_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xd1, 0xff);
836 switch (mode
->hdisplay
) {
838 if (mode
->vdisplay
== 480) flags
= MODE_OK
;
841 if (mode
->vdisplay
== 600) flags
= MODE_OK
;
844 if (mode
->vdisplay
== 768) flags
= MODE_OK
;
847 if (mode
->vdisplay
== 1024) flags
= MODE_OK
;
850 if (mode
->vdisplay
== 1200) flags
= MODE_OK
;
859 static void ast_connector_destroy(struct drm_connector
*connector
)
861 struct ast_connector
*ast_connector
= to_ast_connector(connector
);
862 ast_i2c_destroy(ast_connector
->i2c
);
863 drm_connector_unregister(connector
);
864 drm_connector_cleanup(connector
);
868 static const struct drm_connector_helper_funcs ast_connector_helper_funcs
= {
869 .mode_valid
= ast_mode_valid
,
870 .get_modes
= ast_get_modes
,
871 .best_encoder
= ast_best_single_encoder
,
874 static const struct drm_connector_funcs ast_connector_funcs
= {
875 .dpms
= drm_helper_connector_dpms
,
876 .fill_modes
= drm_helper_probe_single_connector_modes
,
877 .destroy
= ast_connector_destroy
,
880 static int ast_connector_init(struct drm_device
*dev
)
882 struct ast_connector
*ast_connector
;
883 struct drm_connector
*connector
;
884 struct drm_encoder
*encoder
;
886 ast_connector
= kzalloc(sizeof(struct ast_connector
), GFP_KERNEL
);
890 connector
= &ast_connector
->base
;
891 drm_connector_init(dev
, connector
, &ast_connector_funcs
, DRM_MODE_CONNECTOR_VGA
);
893 drm_connector_helper_add(connector
, &ast_connector_helper_funcs
);
895 connector
->interlace_allowed
= 0;
896 connector
->doublescan_allowed
= 0;
898 drm_connector_register(connector
);
900 connector
->polled
= DRM_CONNECTOR_POLL_CONNECT
;
902 encoder
= list_first_entry(&dev
->mode_config
.encoder_list
, struct drm_encoder
, head
);
903 drm_mode_connector_attach_encoder(connector
, encoder
);
905 ast_connector
->i2c
= ast_i2c_create(dev
);
906 if (!ast_connector
->i2c
)
907 DRM_ERROR("failed to add ddc bus for connector\n");
912 /* allocate cursor cache and pin at start of VRAM */
913 static int ast_cursor_init(struct drm_device
*dev
)
915 struct ast_private
*ast
= dev
->dev_private
;
918 struct drm_gem_object
*obj
;
922 size
= (AST_HWC_SIZE
+ AST_HWC_SIGNATURE_SIZE
) * AST_DEFAULT_HWC_NUM
;
924 ret
= ast_gem_create(dev
, size
, true, &obj
);
927 bo
= gem_to_ast_bo(obj
);
928 ret
= ast_bo_reserve(bo
, false);
929 if (unlikely(ret
!= 0))
932 ret
= ast_bo_pin(bo
, TTM_PL_FLAG_VRAM
, &gpu_addr
);
933 ast_bo_unreserve(bo
);
937 /* kmap the object */
938 ret
= ttm_bo_kmap(&bo
->bo
, 0, bo
->bo
.num_pages
, &ast
->cache_kmap
);
942 ast
->cursor_cache
= obj
;
943 ast
->cursor_cache_gpu_addr
= gpu_addr
;
944 DRM_DEBUG_KMS("pinned cursor cache at %llx\n", ast
->cursor_cache_gpu_addr
);
950 static void ast_cursor_fini(struct drm_device
*dev
)
952 struct ast_private
*ast
= dev
->dev_private
;
953 ttm_bo_kunmap(&ast
->cache_kmap
);
954 drm_gem_object_put_unlocked(ast
->cursor_cache
);
957 int ast_mode_init(struct drm_device
*dev
)
959 ast_cursor_init(dev
);
961 ast_encoder_init(dev
);
962 ast_connector_init(dev
);
966 void ast_mode_fini(struct drm_device
*dev
)
968 ast_cursor_fini(dev
);
971 static int get_clock(void *i2c_priv
)
973 struct ast_i2c_chan
*i2c
= i2c_priv
;
974 struct ast_private
*ast
= i2c
->dev
->dev_private
;
977 val
= ast_get_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xb7, 0x10) >> 4;
978 return val
& 1 ? 1 : 0;
981 static int get_data(void *i2c_priv
)
983 struct ast_i2c_chan
*i2c
= i2c_priv
;
984 struct ast_private
*ast
= i2c
->dev
->dev_private
;
987 val
= ast_get_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xb7, 0x20) >> 5;
988 return val
& 1 ? 1 : 0;
991 static void set_clock(void *i2c_priv
, int clock
)
993 struct ast_i2c_chan
*i2c
= i2c_priv
;
994 struct ast_private
*ast
= i2c
->dev
->dev_private
;
998 for (i
= 0; i
< 0x10000; i
++) {
999 ujcrb7
= ((clock
& 0x01) ? 0 : 1);
1000 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xb7, 0xfe, ujcrb7
);
1001 jtemp
= ast_get_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xb7, 0x01);
1002 if (ujcrb7
== jtemp
)
1007 static void set_data(void *i2c_priv
, int data
)
1009 struct ast_i2c_chan
*i2c
= i2c_priv
;
1010 struct ast_private
*ast
= i2c
->dev
->dev_private
;
1014 for (i
= 0; i
< 0x10000; i
++) {
1015 ujcrb7
= ((data
& 0x01) ? 0 : 1) << 2;
1016 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xb7, 0xfb, ujcrb7
);
1017 jtemp
= ast_get_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xb7, 0x04);
1018 if (ujcrb7
== jtemp
)
1023 static struct ast_i2c_chan
*ast_i2c_create(struct drm_device
*dev
)
1025 struct ast_i2c_chan
*i2c
;
1028 i2c
= kzalloc(sizeof(struct ast_i2c_chan
), GFP_KERNEL
);
1032 i2c
->adapter
.owner
= THIS_MODULE
;
1033 i2c
->adapter
.class = I2C_CLASS_DDC
;
1034 i2c
->adapter
.dev
.parent
= &dev
->pdev
->dev
;
1036 i2c_set_adapdata(&i2c
->adapter
, i2c
);
1037 snprintf(i2c
->adapter
.name
, sizeof(i2c
->adapter
.name
),
1039 i2c
->adapter
.algo_data
= &i2c
->bit
;
1041 i2c
->bit
.udelay
= 20;
1042 i2c
->bit
.timeout
= 2;
1043 i2c
->bit
.data
= i2c
;
1044 i2c
->bit
.setsda
= set_data
;
1045 i2c
->bit
.setscl
= set_clock
;
1046 i2c
->bit
.getsda
= get_data
;
1047 i2c
->bit
.getscl
= get_clock
;
1048 ret
= i2c_bit_add_bus(&i2c
->adapter
);
1050 DRM_ERROR("Failed to register bit i2c\n");
1060 static void ast_i2c_destroy(struct ast_i2c_chan
*i2c
)
1064 i2c_del_adapter(&i2c
->adapter
);
1068 static void ast_show_cursor(struct drm_crtc
*crtc
)
1070 struct ast_private
*ast
= crtc
->dev
->dev_private
;
1074 /* enable ARGB cursor */
1076 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xcb, 0xfc, jreg
);
1079 static void ast_hide_cursor(struct drm_crtc
*crtc
)
1081 struct ast_private
*ast
= crtc
->dev
->dev_private
;
1082 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xcb, 0xfc, 0x00);
1085 static u32
copy_cursor_image(u8
*src
, u8
*dst
, int width
, int height
)
1090 } srcdata32
[2], data32
;
1096 s32 alpha_dst_delta
, last_alpha_dst_delta
;
1097 u8
*srcxor
, *dstxor
;
1099 u32 per_pixel_copy
, two_pixel_copy
;
1101 alpha_dst_delta
= AST_MAX_HWC_WIDTH
<< 1;
1102 last_alpha_dst_delta
= alpha_dst_delta
- (width
<< 1);
1105 dstxor
= (u8
*)dst
+ last_alpha_dst_delta
+ (AST_MAX_HWC_HEIGHT
- height
) * alpha_dst_delta
;
1106 per_pixel_copy
= width
& 1;
1107 two_pixel_copy
= width
>> 1;
1109 for (j
= 0; j
< height
; j
++) {
1110 for (i
= 0; i
< two_pixel_copy
; i
++) {
1111 srcdata32
[0].ul
= *((u32
*)srcxor
) & 0xf0f0f0f0;
1112 srcdata32
[1].ul
= *((u32
*)(srcxor
+ 4)) & 0xf0f0f0f0;
1113 data32
.b
[0] = srcdata32
[0].b
[1] | (srcdata32
[0].b
[0] >> 4);
1114 data32
.b
[1] = srcdata32
[0].b
[3] | (srcdata32
[0].b
[2] >> 4);
1115 data32
.b
[2] = srcdata32
[1].b
[1] | (srcdata32
[1].b
[0] >> 4);
1116 data32
.b
[3] = srcdata32
[1].b
[3] | (srcdata32
[1].b
[2] >> 4);
1118 writel(data32
.ul
, dstxor
);
1126 for (i
= 0; i
< per_pixel_copy
; i
++) {
1127 srcdata32
[0].ul
= *((u32
*)srcxor
) & 0xf0f0f0f0;
1128 data16
.b
[0] = srcdata32
[0].b
[1] | (srcdata32
[0].b
[0] >> 4);
1129 data16
.b
[1] = srcdata32
[0].b
[3] | (srcdata32
[0].b
[2] >> 4);
1130 writew(data16
.us
, dstxor
);
1131 csum
+= (u32
)data16
.us
;
1136 dstxor
+= last_alpha_dst_delta
;
1141 static int ast_cursor_set(struct drm_crtc
*crtc
,
1142 struct drm_file
*file_priv
,
1147 struct ast_private
*ast
= crtc
->dev
->dev_private
;
1148 struct ast_crtc
*ast_crtc
= to_ast_crtc(crtc
);
1149 struct drm_gem_object
*obj
;
1154 struct ttm_bo_kmap_obj uobj_map
;
1156 bool src_isiomem
, dst_isiomem
;
1158 ast_hide_cursor(crtc
);
1162 if (width
> AST_MAX_HWC_WIDTH
|| height
> AST_MAX_HWC_HEIGHT
)
1165 obj
= drm_gem_object_lookup(file_priv
, handle
);
1167 DRM_ERROR("Cannot find cursor object %x for crtc\n", handle
);
1170 bo
= gem_to_ast_bo(obj
);
1172 ret
= ast_bo_reserve(bo
, false);
1176 ret
= ttm_bo_kmap(&bo
->bo
, 0, bo
->bo
.num_pages
, &uobj_map
);
1178 src
= ttm_kmap_obj_virtual(&uobj_map
, &src_isiomem
);
1179 dst
= ttm_kmap_obj_virtual(&ast
->cache_kmap
, &dst_isiomem
);
1181 if (src_isiomem
== true)
1182 DRM_ERROR("src cursor bo should be in main memory\n");
1183 if (dst_isiomem
== false)
1184 DRM_ERROR("dst bo should be in VRAM\n");
1186 dst
+= (AST_HWC_SIZE
+ AST_HWC_SIGNATURE_SIZE
)*ast
->next_cursor
;
1188 /* do data transfer to cursor cache */
1189 csum
= copy_cursor_image(src
, dst
, width
, height
);
1191 /* write checksum + signature */
1192 ttm_bo_kunmap(&uobj_map
);
1193 ast_bo_unreserve(bo
);
1195 u8
*dst
= (u8
*)ast
->cache_kmap
.virtual + (AST_HWC_SIZE
+ AST_HWC_SIGNATURE_SIZE
)*ast
->next_cursor
+ AST_HWC_SIZE
;
1197 writel(width
, dst
+ AST_HWC_SIGNATURE_SizeX
);
1198 writel(height
, dst
+ AST_HWC_SIGNATURE_SizeY
);
1199 writel(0, dst
+ AST_HWC_SIGNATURE_HOTSPOTX
);
1200 writel(0, dst
+ AST_HWC_SIGNATURE_HOTSPOTY
);
1202 /* set pattern offset */
1203 gpu_addr
= ast
->cursor_cache_gpu_addr
;
1204 gpu_addr
+= (AST_HWC_SIZE
+ AST_HWC_SIGNATURE_SIZE
)*ast
->next_cursor
;
1206 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xc8, gpu_addr
& 0xff);
1207 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xc9, (gpu_addr
>> 8) & 0xff);
1208 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xca, (gpu_addr
>> 16) & 0xff);
1210 ast_crtc
->cursor_width
= width
;
1211 ast_crtc
->cursor_height
= height
;
1212 ast_crtc
->offset_x
= AST_MAX_HWC_WIDTH
- width
;
1213 ast_crtc
->offset_y
= AST_MAX_HWC_WIDTH
- height
;
1215 ast
->next_cursor
= (ast
->next_cursor
+ 1) % AST_DEFAULT_HWC_NUM
;
1217 ast_show_cursor(crtc
);
1219 drm_gem_object_put_unlocked(obj
);
1222 drm_gem_object_put_unlocked(obj
);
1226 static int ast_cursor_move(struct drm_crtc
*crtc
,
1229 struct ast_crtc
*ast_crtc
= to_ast_crtc(crtc
);
1230 struct ast_private
*ast
= crtc
->dev
->dev_private
;
1231 int x_offset
, y_offset
;
1234 sig
= (u8
*)ast
->cache_kmap
.virtual + (AST_HWC_SIZE
+ AST_HWC_SIGNATURE_SIZE
)*ast
->next_cursor
+ AST_HWC_SIZE
;
1235 writel(x
, sig
+ AST_HWC_SIGNATURE_X
);
1236 writel(y
, sig
+ AST_HWC_SIGNATURE_Y
);
1238 x_offset
= ast_crtc
->offset_x
;
1239 y_offset
= ast_crtc
->offset_y
;
1241 x_offset
= (-x
) + ast_crtc
->offset_x
;
1246 y_offset
= (-y
) + ast_crtc
->offset_y
;
1249 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xc2, x_offset
);
1250 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xc3, y_offset
);
1251 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xc4, (x
& 0xff));
1252 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xc5, ((x
>> 8) & 0x0f));
1253 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xc6, (y
& 0xff));
1254 ast_set_index_reg(ast
, AST_IO_CRTC_PORT
, 0xc7, ((y
>> 8) & 0x07));
1256 /* dummy write to fire HWC */
1257 ast_set_index_reg_mask(ast
, AST_IO_CRTC_PORT
, 0xCB, 0xFF, 0x00);