blob: df351d2a9424e7a045f3e8f708f88ddb806535c9 [file] [log] [blame]
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -08001/* Copyright (c) 2011, Code Aurora Forum. All rights reserved.
2 *
3 * This program is free software; you can redistribute it and/or modify
4 * it under the terms of the GNU General Public License version 2 and
5 * only version 2 as published by the Free Software Foundation.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 *
12 */
13
14#include <linux/init.h>
15#include <linux/ioport.h>
16#include <linux/platform_device.h>
17#include <linux/bootmem.h>
18#include <asm/mach-types.h>
19#include <mach/msm_bus_board.h>
Huaibin Yanga5419422011-12-08 23:52:10 -080020#include <mach/msm_memtypes.h>
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -080021#include <mach/board.h>
22#include <mach/gpio.h>
23#include <mach/gpiomux.h>
24#include "devices.h"
Stepan Moskovchenko5a83dba2011-12-05 17:30:17 -080025#include "board-8960.h"
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -080026
27#ifdef CONFIG_FB_MSM_TRIPLE_BUFFER
28#define MSM_FB_PRIM_BUF_SIZE (1376 * 768 * 4 * 3) /* 4 bpp x 3 pages */
29#else
30#define MSM_FB_PRIM_BUF_SIZE (1376 * 768 * 4 * 2) /* 4 bpp x 2 pages */
31#endif
32
33#ifdef CONFIG_FB_MSM_HDMI_MSM_PANEL
34#define MSM_FB_EXT_BUF_SIZE (1920 * 1088 * 2 * 1) /* 2 bpp x 1 page */
35#elif defined(CONFIG_FB_MSM_TVOUT)
36#define MSM_FB_EXT_BUF_SIZE (720 * 576 * 2 * 2) /* 2 bpp x 2 pages */
37#else
38#define MSM_FB_EXT_BUF_SIZE 0
39#endif
40
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -080041#ifdef CONFIG_FB_MSM_HDMI_AS_PRIMARY
42/* 4 bpp x 2 page HDMI case */
43#define MSM_FB_SIZE roundup((1920 * 1088 * 4 * 2), 4096)
44#else
45/* Note: must be multiple of 4096 */
Huaibin Yang27634b82011-12-09 00:16:25 -080046#define MSM_FB_SIZE roundup(MSM_FB_PRIM_BUF_SIZE + MSM_FB_EXT_BUF_SIZE, 4096)
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -080047#endif
48
Huaibin Yanga5419422011-12-08 23:52:10 -080049#ifdef CONFIG_FB_MSM_OVERLAY0_WRITEBACK
50#define MSM_FB_OVERLAY0_WRITEBACK_SIZE roundup((1376 * 768 * 3 * 2), 4096)
51#else
52#define MSM_FB_OVERLAY0_WRITEBACK_SIZE (0)
53#endif /* CONFIG_FB_MSM_OVERLAY0_WRITEBACK */
54
55#ifdef CONFIG_FB_MSM_OVERLAY1_WRITEBACK
56#define MSM_FB_OVERLAY1_WRITEBACK_SIZE roundup((1920 * 1088 * 3 * 2), 4096)
57#else
58#define MSM_FB_OVERLAY1_WRITEBACK_SIZE (0)
59#endif /* CONFIG_FB_MSM_OVERLAY1_WRITEBACK */
60
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -080061#define MDP_VSYNC_GPIO 0
62
63#define PANEL_NAME_MAX_LEN 30
64#define MIPI_CMD_NOVATEK_QHD_PANEL_NAME "mipi_cmd_novatek_qhd"
65#define MIPI_VIDEO_NOVATEK_QHD_PANEL_NAME "mipi_video_novatek_qhd"
66#define MIPI_VIDEO_TOSHIBA_WSVGA_PANEL_NAME "mipi_video_toshiba_wsvga"
67#define MIPI_VIDEO_CHIMEI_WXGA_PANEL_NAME "mipi_video_chimei_wxga"
68#define MIPI_VIDEO_SIMULATOR_VGA_PANEL_NAME "mipi_video_simulator_vga"
69#define MIPI_CMD_RENESAS_FWVGA_PANEL_NAME "mipi_cmd_renesas_fwvga"
70#define HDMI_PANEL_NAME "hdmi_msm"
71#define TVOUT_PANEL_NAME "tvout_msm"
72
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -080073static struct resource msm_fb_resources[] = {
74 {
75 .flags = IORESOURCE_DMA,
76 }
77};
78
79static int msm_fb_detect_panel(const char *name)
80{
81 if (machine_is_msm8960_liquid()) {
82 if (!strncmp(name, MIPI_VIDEO_CHIMEI_WXGA_PANEL_NAME,
83 strnlen(MIPI_VIDEO_CHIMEI_WXGA_PANEL_NAME,
84 PANEL_NAME_MAX_LEN)))
85 return 0;
86 } else {
87 if (!strncmp(name, MIPI_VIDEO_TOSHIBA_WSVGA_PANEL_NAME,
88 strnlen(MIPI_VIDEO_TOSHIBA_WSVGA_PANEL_NAME,
89 PANEL_NAME_MAX_LEN)))
90 return 0;
91
92#ifndef CONFIG_FB_MSM_MIPI_PANEL_DETECT
93 if (!strncmp(name, MIPI_VIDEO_NOVATEK_QHD_PANEL_NAME,
94 strnlen(MIPI_VIDEO_NOVATEK_QHD_PANEL_NAME,
95 PANEL_NAME_MAX_LEN)))
96 return 0;
97
98 if (!strncmp(name, MIPI_CMD_NOVATEK_QHD_PANEL_NAME,
99 strnlen(MIPI_CMD_NOVATEK_QHD_PANEL_NAME,
100 PANEL_NAME_MAX_LEN)))
101 return 0;
102
103 if (!strncmp(name, MIPI_VIDEO_SIMULATOR_VGA_PANEL_NAME,
104 strnlen(MIPI_VIDEO_SIMULATOR_VGA_PANEL_NAME,
105 PANEL_NAME_MAX_LEN)))
106 return 0;
107
108 if (!strncmp(name, MIPI_CMD_RENESAS_FWVGA_PANEL_NAME,
109 strnlen(MIPI_CMD_RENESAS_FWVGA_PANEL_NAME,
110 PANEL_NAME_MAX_LEN)))
111 return 0;
112#endif
113 }
114
115 if (!strncmp(name, HDMI_PANEL_NAME,
116 strnlen(HDMI_PANEL_NAME,
117 PANEL_NAME_MAX_LEN)))
118 return 0;
119
120 if (!strncmp(name, TVOUT_PANEL_NAME,
121 strnlen(TVOUT_PANEL_NAME,
122 PANEL_NAME_MAX_LEN)))
123 return 0;
124
125 pr_warning("%s: not supported '%s'", __func__, name);
126 return -ENODEV;
127}
128
129static struct msm_fb_platform_data msm_fb_pdata = {
130 .detect_client = msm_fb_detect_panel,
131};
132
133static struct platform_device msm_fb_device = {
134 .name = "msm_fb",
135 .id = 0,
136 .num_resources = ARRAY_SIZE(msm_fb_resources),
137 .resource = msm_fb_resources,
138 .dev.platform_data = &msm_fb_pdata,
139};
140
141static bool dsi_power_on;
142
143/**
144 * LiQUID panel on/off
145 *
146 * @param on
147 *
148 * @return int
149 */
150static int mipi_dsi_liquid_panel_power(int on)
151{
152 static struct regulator *reg_l2, *reg_ext_3p3v;
153 static int gpio21, gpio24, gpio43;
154 int rc;
155
156 pr_info("%s: on=%d\n", __func__, on);
157
158 gpio21 = PM8921_GPIO_PM_TO_SYS(21); /* disp power enable_n */
159 gpio43 = PM8921_GPIO_PM_TO_SYS(43); /* Displays Enable (rst_n)*/
160 gpio24 = PM8921_GPIO_PM_TO_SYS(24); /* Backlight PWM */
161
162 if (!dsi_power_on) {
163
164 reg_l2 = regulator_get(&msm_mipi_dsi1_device.dev,
165 "dsi_vdda");
166 if (IS_ERR(reg_l2)) {
167 pr_err("could not get 8921_l2, rc = %ld\n",
168 PTR_ERR(reg_l2));
169 return -ENODEV;
170 }
171
172 rc = regulator_set_voltage(reg_l2, 1200000, 1200000);
173 if (rc) {
174 pr_err("set_voltage l2 failed, rc=%d\n", rc);
175 return -EINVAL;
176 }
177
178 reg_ext_3p3v = regulator_get(&msm_mipi_dsi1_device.dev,
179 "vdd_lvds_3p3v");
180 if (IS_ERR(reg_ext_3p3v)) {
181 pr_err("could not get reg_ext_3p3v, rc = %ld\n",
182 PTR_ERR(reg_ext_3p3v));
183 return -ENODEV;
184 }
185
186 rc = gpio_request(gpio21, "disp_pwr_en_n");
187 if (rc) {
188 pr_err("request gpio 21 failed, rc=%d\n", rc);
189 return -ENODEV;
190 }
191
192 rc = gpio_request(gpio43, "disp_rst_n");
193 if (rc) {
194 pr_err("request gpio 43 failed, rc=%d\n", rc);
195 return -ENODEV;
196 }
197
198 rc = gpio_request(gpio24, "disp_backlight_pwm");
199 if (rc) {
200 pr_err("request gpio 24 failed, rc=%d\n", rc);
201 return -ENODEV;
202 }
203
204 dsi_power_on = true;
205 }
206
207 if (on) {
208 rc = regulator_set_optimum_mode(reg_l2, 100000);
209 if (rc < 0) {
210 pr_err("set_optimum_mode l2 failed, rc=%d\n", rc);
211 return -EINVAL;
212 }
213 rc = regulator_enable(reg_l2);
214 if (rc) {
215 pr_err("enable l2 failed, rc=%d\n", rc);
216 return -ENODEV;
217 }
218
219 rc = regulator_enable(reg_ext_3p3v);
220 if (rc) {
221 pr_err("enable reg_ext_3p3v failed, rc=%d\n", rc);
222 return -ENODEV;
223 }
224
225 /* set reset pin before power enable */
226 gpio_set_value_cansleep(gpio43, 0); /* disp disable (resx=0) */
227
228 gpio_set_value_cansleep(gpio21, 0); /* disp power enable_n */
229 msleep(20);
230 gpio_set_value_cansleep(gpio43, 1); /* disp enable */
231 msleep(20);
232 gpio_set_value_cansleep(gpio43, 0); /* disp enable */
233 msleep(20);
234 gpio_set_value_cansleep(gpio43, 1); /* disp enable */
235 msleep(20);
236 } else {
237 gpio_set_value_cansleep(gpio43, 0);
238 gpio_set_value_cansleep(gpio21, 1);
239
240 rc = regulator_disable(reg_l2);
241 if (rc) {
242 pr_err("disable reg_l2 failed, rc=%d\n", rc);
243 return -ENODEV;
244 }
245 rc = regulator_disable(reg_ext_3p3v);
246 if (rc) {
247 pr_err("disable reg_ext_3p3v failed, rc=%d\n", rc);
248 return -ENODEV;
249 }
250 rc = regulator_set_optimum_mode(reg_l2, 100);
251 if (rc < 0) {
252 pr_err("set_optimum_mode l2 failed, rc=%d\n", rc);
253 return -EINVAL;
254 }
255 }
256
257 return 0;
258}
259
260static int mipi_dsi_cdp_panel_power(int on)
261{
262 static struct regulator *reg_l8, *reg_l23, *reg_l2;
263 static int gpio43;
264 int rc;
265
266 pr_info("%s: state : %d\n", __func__, on);
267
268 if (!dsi_power_on) {
269
270 reg_l8 = regulator_get(&msm_mipi_dsi1_device.dev,
271 "dsi_vdc");
272 if (IS_ERR(reg_l8)) {
273 pr_err("could not get 8921_l8, rc = %ld\n",
274 PTR_ERR(reg_l8));
275 return -ENODEV;
276 }
277 reg_l23 = regulator_get(&msm_mipi_dsi1_device.dev,
278 "dsi_vddio");
279 if (IS_ERR(reg_l23)) {
280 pr_err("could not get 8921_l23, rc = %ld\n",
281 PTR_ERR(reg_l23));
282 return -ENODEV;
283 }
284 reg_l2 = regulator_get(&msm_mipi_dsi1_device.dev,
285 "dsi_vdda");
286 if (IS_ERR(reg_l2)) {
287 pr_err("could not get 8921_l2, rc = %ld\n",
288 PTR_ERR(reg_l2));
289 return -ENODEV;
290 }
291 rc = regulator_set_voltage(reg_l8, 2800000, 3000000);
292 if (rc) {
293 pr_err("set_voltage l8 failed, rc=%d\n", rc);
294 return -EINVAL;
295 }
296 rc = regulator_set_voltage(reg_l23, 1800000, 1800000);
297 if (rc) {
298 pr_err("set_voltage l23 failed, rc=%d\n", rc);
299 return -EINVAL;
300 }
301 rc = regulator_set_voltage(reg_l2, 1200000, 1200000);
302 if (rc) {
303 pr_err("set_voltage l2 failed, rc=%d\n", rc);
304 return -EINVAL;
305 }
306 gpio43 = PM8921_GPIO_PM_TO_SYS(43);
307 rc = gpio_request(gpio43, "disp_rst_n");
308 if (rc) {
309 pr_err("request gpio 43 failed, rc=%d\n", rc);
310 return -ENODEV;
311 }
312 dsi_power_on = true;
313 }
314 if (on) {
315 rc = regulator_set_optimum_mode(reg_l8, 100000);
316 if (rc < 0) {
317 pr_err("set_optimum_mode l8 failed, rc=%d\n", rc);
318 return -EINVAL;
319 }
320 rc = regulator_set_optimum_mode(reg_l23, 100000);
321 if (rc < 0) {
322 pr_err("set_optimum_mode l23 failed, rc=%d\n", rc);
323 return -EINVAL;
324 }
325 rc = regulator_set_optimum_mode(reg_l2, 100000);
326 if (rc < 0) {
327 pr_err("set_optimum_mode l2 failed, rc=%d\n", rc);
328 return -EINVAL;
329 }
330 rc = regulator_enable(reg_l8);
331 if (rc) {
332 pr_err("enable l8 failed, rc=%d\n", rc);
333 return -ENODEV;
334 }
335 rc = regulator_enable(reg_l23);
336 if (rc) {
337 pr_err("enable l8 failed, rc=%d\n", rc);
338 return -ENODEV;
339 }
340 rc = regulator_enable(reg_l2);
341 if (rc) {
342 pr_err("enable l2 failed, rc=%d\n", rc);
343 return -ENODEV;
344 }
345 gpio_set_value_cansleep(gpio43, 1);
346 } else {
347 rc = regulator_disable(reg_l2);
348 if (rc) {
349 pr_err("disable reg_l2 failed, rc=%d\n", rc);
350 return -ENODEV;
351 }
352 rc = regulator_disable(reg_l8);
353 if (rc) {
354 pr_err("disable reg_l8 failed, rc=%d\n", rc);
355 return -ENODEV;
356 }
357 rc = regulator_disable(reg_l23);
358 if (rc) {
359 pr_err("disable reg_l23 failed, rc=%d\n", rc);
360 return -ENODEV;
361 }
362 rc = regulator_set_optimum_mode(reg_l8, 100);
363 if (rc < 0) {
364 pr_err("set_optimum_mode l8 failed, rc=%d\n", rc);
365 return -EINVAL;
366 }
367 rc = regulator_set_optimum_mode(reg_l23, 100);
368 if (rc < 0) {
369 pr_err("set_optimum_mode l23 failed, rc=%d\n", rc);
370 return -EINVAL;
371 }
372 rc = regulator_set_optimum_mode(reg_l2, 100);
373 if (rc < 0) {
374 pr_err("set_optimum_mode l2 failed, rc=%d\n", rc);
375 return -EINVAL;
376 }
377 gpio_set_value_cansleep(gpio43, 0);
378 }
379 return 0;
380}
381
382static int mipi_dsi_panel_power(int on)
383{
384 int ret;
385
386 pr_info("%s: on=%d\n", __func__, on);
387
388 if (machine_is_msm8960_liquid())
389 ret = mipi_dsi_liquid_panel_power(on);
390 else
391 ret = mipi_dsi_cdp_panel_power(on);
392
393 return ret;
394}
395
396static struct mipi_dsi_platform_data mipi_dsi_pdata = {
397 .vsync_gpio = MDP_VSYNC_GPIO,
398 .dsi_power_save = mipi_dsi_panel_power,
399};
400
401#ifdef CONFIG_MSM_BUS_SCALING
402
403static struct msm_bus_vectors mdp_init_vectors[] = {
404 {
405 .src = MSM_BUS_MASTER_MDP_PORT0,
406 .dst = MSM_BUS_SLAVE_EBI_CH0,
407 .ab = 0,
408 .ib = 0,
409 },
410};
411
412#ifdef CONFIG_FB_MSM_HDMI_AS_PRIMARY
413static struct msm_bus_vectors hdmi_as_primary_vectors[] = {
414 /* If HDMI is used as primary */
415 {
416 .src = MSM_BUS_MASTER_MDP_PORT0,
417 .dst = MSM_BUS_SLAVE_EBI_CH0,
418 .ab = 2000000000,
419 .ib = 2000000000,
420 },
421};
422static struct msm_bus_paths mdp_bus_scale_usecases[] = {
423 {
424 ARRAY_SIZE(mdp_init_vectors),
425 mdp_init_vectors,
426 },
427 {
428 ARRAY_SIZE(hdmi_as_primary_vectors),
429 hdmi_as_primary_vectors,
430 },
431 {
432 ARRAY_SIZE(hdmi_as_primary_vectors),
433 hdmi_as_primary_vectors,
434 },
435 {
436 ARRAY_SIZE(hdmi_as_primary_vectors),
437 hdmi_as_primary_vectors,
438 },
439 {
440 ARRAY_SIZE(hdmi_as_primary_vectors),
441 hdmi_as_primary_vectors,
442 },
443 {
444 ARRAY_SIZE(hdmi_as_primary_vectors),
445 hdmi_as_primary_vectors,
446 },
447};
448#else
449static struct msm_bus_vectors mdp_ui_vectors[] = {
450 {
451 .src = MSM_BUS_MASTER_MDP_PORT0,
452 .dst = MSM_BUS_SLAVE_EBI_CH0,
453 .ab = 216000000 * 2,
454 .ib = 270000000 * 2,
455 },
456};
457
458static struct msm_bus_vectors mdp_vga_vectors[] = {
459 /* VGA and less video */
460 {
461 .src = MSM_BUS_MASTER_MDP_PORT0,
462 .dst = MSM_BUS_SLAVE_EBI_CH0,
463 .ab = 216000000 * 2,
464 .ib = 270000000 * 2,
465 },
466};
467
468static struct msm_bus_vectors mdp_720p_vectors[] = {
469 /* 720p and less video */
470 {
471 .src = MSM_BUS_MASTER_MDP_PORT0,
472 .dst = MSM_BUS_SLAVE_EBI_CH0,
473 .ab = 230400000 * 2,
474 .ib = 288000000 * 2,
475 },
476};
477
478static struct msm_bus_vectors mdp_1080p_vectors[] = {
479 /* 1080p and less video */
480 {
481 .src = MSM_BUS_MASTER_MDP_PORT0,
482 .dst = MSM_BUS_SLAVE_EBI_CH0,
483 .ab = 334080000 * 2,
484 .ib = 417600000 * 2,
485 },
486};
487
488static struct msm_bus_paths mdp_bus_scale_usecases[] = {
489 {
490 ARRAY_SIZE(mdp_init_vectors),
491 mdp_init_vectors,
492 },
493 {
494 ARRAY_SIZE(mdp_ui_vectors),
495 mdp_ui_vectors,
496 },
497 {
498 ARRAY_SIZE(mdp_ui_vectors),
499 mdp_ui_vectors,
500 },
501 {
502 ARRAY_SIZE(mdp_vga_vectors),
503 mdp_vga_vectors,
504 },
505 {
506 ARRAY_SIZE(mdp_720p_vectors),
507 mdp_720p_vectors,
508 },
509 {
510 ARRAY_SIZE(mdp_1080p_vectors),
511 mdp_1080p_vectors,
512 },
513};
514#endif
515
516static struct msm_bus_scale_pdata mdp_bus_scale_pdata = {
517 mdp_bus_scale_usecases,
518 ARRAY_SIZE(mdp_bus_scale_usecases),
519 .name = "mdp",
520};
521
522#endif
523
524#ifdef CONFIG_FB_MSM_HDMI_AS_PRIMARY
Stepan Moskovchenkofc70d902011-11-30 12:39:36 -0800525static int mdp_core_clk_rate_table[] = {
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800526 200000000,
527 200000000,
528 200000000,
529 200000000,
530};
531#else
Stepan Moskovchenkofc70d902011-11-30 12:39:36 -0800532static int mdp_core_clk_rate_table[] = {
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800533 85330000,
534 85330000,
535 160000000,
536 200000000,
537};
538#endif
539
540static struct msm_panel_common_pdata mdp_pdata = {
541 .gpio = MDP_VSYNC_GPIO,
542#ifdef CONFIG_FB_MSM_HDMI_AS_PRIMARY
543 .mdp_core_clk_rate = 200000000,
544#else
545 .mdp_core_clk_rate = 85330000,
546#endif
547 .mdp_core_clk_table = mdp_core_clk_rate_table,
548 .num_mdp_clk = ARRAY_SIZE(mdp_core_clk_rate_table),
549#ifdef CONFIG_MSM_BUS_SCALING
550 .mdp_bus_scale_table = &mdp_bus_scale_pdata,
551#endif
552 .mdp_rev = MDP_REV_42,
Huaibin Yanga5419422011-12-08 23:52:10 -0800553 .mdp_writeback_memtype = MEMTYPE_EBI1,
554 .mdp_writeback_phys = NULL,
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800555};
556
Huaibin Yanga5419422011-12-08 23:52:10 -0800557void __init msm8960_mdp_writeback(struct memtype_reserve* reserve_table)
558{
559 mdp_pdata.mdp_writeback_size_ov0 = MSM_FB_OVERLAY0_WRITEBACK_SIZE;
560 mdp_pdata.mdp_writeback_size_ov1 = MSM_FB_OVERLAY1_WRITEBACK_SIZE;
561
562 reserve_table[mdp_pdata.mdp_writeback_memtype].size +=
563 mdp_pdata.mdp_writeback_size_ov0;
564 reserve_table[mdp_pdata.mdp_writeback_memtype].size +=
565 mdp_pdata.mdp_writeback_size_ov1;
566}
567
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800568static struct platform_device mipi_dsi_renesas_panel_device = {
569 .name = "mipi_renesas",
570 .id = 0,
571};
572
573static struct platform_device mipi_dsi_simulator_panel_device = {
574 .name = "mipi_simulator",
575 .id = 0,
576};
577
578#define LPM_CHANNEL0 0
579static int toshiba_gpio[] = {LPM_CHANNEL0};
580
581static struct mipi_dsi_panel_platform_data toshiba_pdata = {
582 .gpio = toshiba_gpio,
583};
584
585static struct platform_device mipi_dsi_toshiba_panel_device = {
586 .name = "mipi_toshiba",
587 .id = 0,
588 .dev = {
589 .platform_data = &toshiba_pdata,
590 }
591};
592
593#define FPGA_3D_GPIO_CONFIG_ADDR 0xB5
594static int dsi2lvds_gpio[2] = {
595 0,/* Backlight PWM-ID=0 for PMIC-GPIO#24 */
596 0x1F08 /* DSI2LVDS Bridge GPIO Output, mask=0x1f, out=0x08 */
597 };
598
599static struct msm_panel_common_pdata mipi_dsi2lvds_pdata = {
600 .gpio_num = dsi2lvds_gpio,
601};
602
603static struct mipi_dsi_phy_ctrl dsi_novatek_cmd_mode_phy_db = {
604
605/* DSI_BIT_CLK at 500MHz, 2 lane, RGB888 */
606 {0x0F, 0x0a, 0x04, 0x00, 0x20}, /* regulator */
607 /* timing */
608 {0xab, 0x8a, 0x18, 0x00, 0x92, 0x97, 0x1b, 0x8c,
609 0x0c, 0x03, 0x04, 0xa0},
610 {0x5f, 0x00, 0x00, 0x10}, /* phy ctrl */
611 {0xff, 0x00, 0x06, 0x00}, /* strength */
612 /* pll control */
613 {0x40, 0xf9, 0x30, 0xda, 0x00, 0x40, 0x03, 0x62,
614 0x40, 0x07, 0x03,
615 0x00, 0x1a, 0x00, 0x00, 0x02, 0x00, 0x20, 0x00, 0x01},
616};
617
618static struct mipi_dsi_panel_platform_data novatek_pdata = {
619 .fpga_3d_config_addr = FPGA_3D_GPIO_CONFIG_ADDR,
620 .fpga_ctrl_mode = FPGA_SPI_INTF,
621 .phy_ctrl_settings = &dsi_novatek_cmd_mode_phy_db,
622};
623
624static struct platform_device mipi_dsi_novatek_panel_device = {
625 .name = "mipi_novatek",
626 .id = 0,
627 .dev = {
628 .platform_data = &novatek_pdata,
629 }
630};
631
632static struct platform_device mipi_dsi2lvds_bridge_device = {
633 .name = "mipi_tc358764",
634 .id = 0,
635 .dev.platform_data = &mipi_dsi2lvds_pdata,
636};
637
638#ifdef CONFIG_FB_MSM_HDMI_MSM_PANEL
639static struct resource hdmi_msm_resources[] = {
640 {
641 .name = "hdmi_msm_qfprom_addr",
642 .start = 0x00700000,
643 .end = 0x007060FF,
644 .flags = IORESOURCE_MEM,
645 },
646 {
647 .name = "hdmi_msm_hdmi_addr",
648 .start = 0x04A00000,
649 .end = 0x04A00FFF,
650 .flags = IORESOURCE_MEM,
651 },
652 {
653 .name = "hdmi_msm_irq",
654 .start = HDMI_IRQ,
655 .end = HDMI_IRQ,
656 .flags = IORESOURCE_IRQ,
657 },
658};
659
660static int hdmi_enable_5v(int on);
661static int hdmi_core_power(int on, int show);
662static int hdmi_cec_power(int on);
663
664static struct msm_hdmi_platform_data hdmi_msm_data = {
665 .irq = HDMI_IRQ,
666 .enable_5v = hdmi_enable_5v,
667 .core_power = hdmi_core_power,
668 .cec_power = hdmi_cec_power,
669};
670
671static struct platform_device hdmi_msm_device = {
672 .name = "hdmi_msm",
673 .id = 0,
674 .num_resources = ARRAY_SIZE(hdmi_msm_resources),
675 .resource = hdmi_msm_resources,
676 .dev.platform_data = &hdmi_msm_data,
677};
678#endif /* CONFIG_FB_MSM_HDMI_MSM_PANEL */
679
680#ifdef CONFIG_FB_MSM_WRITEBACK_MSM_PANEL
681static struct platform_device wfd_panel_device = {
682 .name = "wfd_panel",
683 .id = 0,
684 .dev.platform_data = NULL,
685};
Stepan Moskovchenko270888d2011-11-30 12:19:11 -0800686
687static struct platform_device wfd_device = {
688 .name = "msm_wfd",
689 .id = -1,
690};
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800691#endif
692
693#ifdef CONFIG_MSM_BUS_SCALING
694static struct msm_bus_vectors dtv_bus_init_vectors[] = {
695 {
696 .src = MSM_BUS_MASTER_MDP_PORT0,
697 .dst = MSM_BUS_SLAVE_EBI_CH0,
698 .ab = 0,
699 .ib = 0,
700 },
701};
702
703#ifdef CONFIG_FB_MSM_HDMI_AS_PRIMARY
704static struct msm_bus_vectors dtv_bus_def_vectors[] = {
705 {
706 .src = MSM_BUS_MASTER_MDP_PORT0,
707 .dst = MSM_BUS_SLAVE_EBI_CH0,
708 .ab = 2000000000,
709 .ib = 2000000000,
710 },
711};
712#else
713static struct msm_bus_vectors dtv_bus_def_vectors[] = {
714 {
715 .src = MSM_BUS_MASTER_MDP_PORT0,
716 .dst = MSM_BUS_SLAVE_EBI_CH0,
717 .ab = 566092800 * 2,
718 .ib = 707616000 * 2,
719 },
720};
721#endif
722
723static struct msm_bus_paths dtv_bus_scale_usecases[] = {
724 {
725 ARRAY_SIZE(dtv_bus_init_vectors),
726 dtv_bus_init_vectors,
727 },
728 {
729 ARRAY_SIZE(dtv_bus_def_vectors),
730 dtv_bus_def_vectors,
731 },
732};
733static struct msm_bus_scale_pdata dtv_bus_scale_pdata = {
734 dtv_bus_scale_usecases,
735 ARRAY_SIZE(dtv_bus_scale_usecases),
736 .name = "dtv",
737};
738
739static struct lcdc_platform_data dtv_pdata = {
740 .bus_scale_table = &dtv_bus_scale_pdata,
741};
742#endif
743
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800744#ifdef CONFIG_FB_MSM_HDMI_MSM_PANEL
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800745static int hdmi_enable_5v(int on)
746{
747 /* TBD: PM8921 regulator instead of 8901 */
748 static struct regulator *reg_8921_hdmi_mvs; /* HDMI_5V */
749 static int prev_on;
750 int rc;
751
752 if (on == prev_on)
753 return 0;
754
755 if (!reg_8921_hdmi_mvs)
756 reg_8921_hdmi_mvs = regulator_get(&hdmi_msm_device.dev,
757 "hdmi_mvs");
758
759 if (on) {
760 rc = regulator_enable(reg_8921_hdmi_mvs);
761 if (rc) {
762 pr_err("'%s' regulator enable failed, rc=%d\n",
763 "8921_hdmi_mvs", rc);
764 return rc;
765 }
766 pr_debug("%s(on): success\n", __func__);
767 } else {
768 rc = regulator_disable(reg_8921_hdmi_mvs);
769 if (rc)
770 pr_warning("'%s' regulator disable failed, rc=%d\n",
771 "8921_hdmi_mvs", rc);
772 pr_debug("%s(off): success\n", __func__);
773 }
774
775 prev_on = on;
776
777 return 0;
778}
779
780static int hdmi_core_power(int on, int show)
781{
782 static struct regulator *reg_8921_l23, *reg_8921_s4;
783 static int prev_on;
784 int rc;
785
786 if (on == prev_on)
787 return 0;
788
789 /* TBD: PM8921 regulator instead of 8901 */
790 if (!reg_8921_l23) {
791 reg_8921_l23 = regulator_get(&hdmi_msm_device.dev, "hdmi_avdd");
792 if (IS_ERR(reg_8921_l23)) {
793 pr_err("could not get reg_8921_l23, rc = %ld\n",
794 PTR_ERR(reg_8921_l23));
795 return -ENODEV;
796 }
797 rc = regulator_set_voltage(reg_8921_l23, 1800000, 1800000);
798 if (rc) {
799 pr_err("set_voltage failed for 8921_l23, rc=%d\n", rc);
800 return -EINVAL;
801 }
802 }
803 if (!reg_8921_s4) {
804 reg_8921_s4 = regulator_get(&hdmi_msm_device.dev, "hdmi_vcc");
805 if (IS_ERR(reg_8921_s4)) {
806 pr_err("could not get reg_8921_s4, rc = %ld\n",
807 PTR_ERR(reg_8921_s4));
808 return -ENODEV;
809 }
810 rc = regulator_set_voltage(reg_8921_s4, 1800000, 1800000);
811 if (rc) {
812 pr_err("set_voltage failed for 8921_s4, rc=%d\n", rc);
813 return -EINVAL;
814 }
815 }
816
817 if (on) {
818 rc = regulator_set_optimum_mode(reg_8921_l23, 100000);
819 if (rc < 0) {
820 pr_err("set_optimum_mode l23 failed, rc=%d\n", rc);
821 return -EINVAL;
822 }
823 rc = regulator_enable(reg_8921_l23);
824 if (rc) {
825 pr_err("'%s' regulator enable failed, rc=%d\n",
826 "hdmi_avdd", rc);
827 return rc;
828 }
829 rc = regulator_enable(reg_8921_s4);
830 if (rc) {
831 pr_err("'%s' regulator enable failed, rc=%d\n",
832 "hdmi_vcc", rc);
833 return rc;
834 }
835 rc = gpio_request(100, "HDMI_DDC_CLK");
836 if (rc) {
837 pr_err("'%s'(%d) gpio_request failed, rc=%d\n",
838 "HDMI_DDC_CLK", 100, rc);
839 goto error1;
840 }
841 rc = gpio_request(101, "HDMI_DDC_DATA");
842 if (rc) {
843 pr_err("'%s'(%d) gpio_request failed, rc=%d\n",
844 "HDMI_DDC_DATA", 101, rc);
845 goto error2;
846 }
847 rc = gpio_request(102, "HDMI_HPD");
848 if (rc) {
849 pr_err("'%s'(%d) gpio_request failed, rc=%d\n",
850 "HDMI_HPD", 102, rc);
851 goto error3;
852 }
853 pr_debug("%s(on): success\n", __func__);
854 } else {
855 gpio_free(100);
856 gpio_free(101);
857 gpio_free(102);
858
859 rc = regulator_disable(reg_8921_l23);
860 if (rc) {
861 pr_err("disable reg_8921_l23 failed, rc=%d\n", rc);
862 return -ENODEV;
863 }
864 rc = regulator_disable(reg_8921_s4);
865 if (rc) {
866 pr_err("disable reg_8921_s4 failed, rc=%d\n", rc);
867 return -ENODEV;
868 }
869 rc = regulator_set_optimum_mode(reg_8921_l23, 100);
870 if (rc < 0) {
871 pr_err("set_optimum_mode l23 failed, rc=%d\n", rc);
872 return -EINVAL;
873 }
874 pr_debug("%s(off): success\n", __func__);
875 }
876
877 prev_on = on;
878
879 return 0;
880
881error3:
882 gpio_free(101);
883error2:
884 gpio_free(100);
885error1:
886 regulator_disable(reg_8921_l23);
887 regulator_disable(reg_8921_s4);
888 return rc;
889}
890
891static int hdmi_cec_power(int on)
892{
893 static int prev_on;
894 int rc;
895
896 if (on == prev_on)
897 return 0;
898
899 if (on) {
900 rc = gpio_request(99, "HDMI_CEC_VAR");
901 if (rc) {
902 pr_err("'%s'(%d) gpio_request failed, rc=%d\n",
903 "HDMI_CEC_VAR", 99, rc);
904 goto error;
905 }
906 pr_debug("%s(on): success\n", __func__);
907 } else {
908 gpio_free(99);
909 pr_debug("%s(off): success\n", __func__);
910 }
911
912 prev_on = on;
913
914 return 0;
915error:
916 return rc;
917}
918#endif /* CONFIG_FB_MSM_HDMI_MSM_PANEL */
919
920void __init msm8960_init_fb(void)
921{
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800922 platform_device_register(&msm_fb_device);
923
Stepan Moskovchenko270888d2011-11-30 12:19:11 -0800924#ifdef CONFIG_FB_MSM_WRITEBACK_MSM_PANEL
925 platform_device_register(&wfd_panel_device);
926 platform_device_register(&wfd_device);
927#endif
928
Stepan Moskovchenko24cd8642011-11-29 13:07:53 -0800929 if (machine_is_msm8960_sim())
930 platform_device_register(&mipi_dsi_simulator_panel_device);
931
932 if (machine_is_msm8960_rumi3())
933 platform_device_register(&mipi_dsi_renesas_panel_device);
934
935 if (!machine_is_msm8960_sim() && !machine_is_msm8960_rumi3()) {
936 platform_device_register(&mipi_dsi_novatek_panel_device);
937
938#ifdef CONFIG_FB_MSM_HDMI_MSM_PANEL
939 platform_device_register(&hdmi_msm_device);
940#endif
941 }
942
943 if (machine_is_msm8960_liquid())
944 platform_device_register(&mipi_dsi2lvds_bridge_device);
945 else
946 platform_device_register(&mipi_dsi_toshiba_panel_device);
947
948 if (machine_is_msm8x60_rumi3()) {
949 msm_fb_register_device("mdp", NULL);
950 mipi_dsi_pdata.target_type = 1;
951 } else
952 msm_fb_register_device("mdp", &mdp_pdata);
953 msm_fb_register_device("mipi_dsi", &mipi_dsi_pdata);
954#ifdef CONFIG_MSM_BUS_SCALING
955 msm_fb_register_device("dtv", &dtv_pdata);
956#endif
957}
958
959void __init msm8960_allocate_fb_region(void)
960{
961 void *addr;
962 unsigned long size;
963
964 size = MSM_FB_SIZE;
965 addr = alloc_bootmem_align(size, 0x1000);
966 msm_fb_resources[0].start = __pa(addr);
967 msm_fb_resources[0].end = msm_fb_resources[0].start + size - 1;
968 pr_info("allocating %lu bytes at %p (%lx physical) for fb\n",
969 size, addr, __pa(addr));
970}