blob: f9d71b617dd0256a4083f329cbf67884d8261fff [file] [log] [blame]
Minkyu Kang9e408082011-01-24 15:33:50 +09001/*
2 * Copyright (C) 2010 Samsung Electronics
3 * Minkyu Kang <mk7.kang@samsung.com>
4 * Kyungmin Park <kyungmin.park@samsung.com>
5 *
Wolfgang Denk1a459662013-07-08 09:37:19 +02006 * SPDX-License-Identifier: GPL-2.0+
Minkyu Kang9e408082011-01-24 15:33:50 +09007 */
8
9#include <common.h>
Piotr Wilczekff0fedd2012-10-19 05:34:03 +000010#include <spi.h>
Piotr Wilczekd984b9f2012-10-19 05:34:07 +000011#include <lcd.h>
Minkyu Kang9e408082011-01-24 15:33:50 +090012#include <asm/io.h>
Piotr Wilczekff0fedd2012-10-19 05:34:03 +000013#include <asm/gpio.h>
Minkyu Kang9e408082011-01-24 15:33:50 +090014#include <asm/arch/adc.h>
15#include <asm/arch/gpio.h>
Piotr Wilczekea7991b2012-09-20 00:19:59 +000016#include <asm/arch/pinmux.h>
Piotr Wilczek11a44792012-09-20 00:20:00 +000017#include <asm/arch/watchdog.h>
Piotr Wilczekd984b9f2012-10-19 05:34:07 +000018#include <ld9040.h>
Łukasz Majewskic7336812012-11-13 03:21:55 +000019#include <power/pmic.h>
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +010020#include <usb.h>
Lukasz Majewskiddc7e542011-12-15 10:32:12 +010021#include <usb/s3c_udc.h>
22#include <asm/arch/cpu.h>
Łukasz Majewskic7336812012-11-13 03:21:55 +000023#include <power/max8998_pmic.h>
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +010024#include <libtizen.h>
Przemyslaw Marczak82b0a0552014-01-22 11:24:20 +010025#include <samsung/misc.h>
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +010026#include <usb_mass_storage.h>
Minkyu Kang9e408082011-01-24 15:33:50 +090027
28DECLARE_GLOBAL_DATA_PTR;
29
Chander Kashyap393cb362011-12-06 23:34:12 +000030struct exynos4_gpio_part1 *gpio1;
31struct exynos4_gpio_part2 *gpio2;
Minkyu Kang9e408082011-01-24 15:33:50 +090032unsigned int board_rev;
33
34u32 get_board_rev(void)
35{
36 return board_rev;
37}
38
39static int get_hwrev(void)
40{
41 return board_rev & 0xFF;
42}
43
Minkyu Kang48e91ca2012-12-09 20:50:11 +000044static void init_pmic_lcd(void);
45
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +010046int exynos_power_init(void)
Łukasz Majewskif5a70042012-11-13 03:22:17 +000047{
48 int ret;
49
Łukasz Majewski2936df12013-08-16 15:33:33 +020050 /*
51 * For PMIC the I2C bus is named as I2C5, but it is connected
52 * to logical I2C adapter 0
53 */
Piotr Wilczekc47817b2014-01-14 08:15:07 +010054 ret = pmic_init(I2C_0);
Łukasz Majewskif5a70042012-11-13 03:22:17 +000055 if (ret)
56 return ret;
57
Minkyu Kang48e91ca2012-12-09 20:50:11 +000058 init_pmic_lcd();
59
Łukasz Majewskif5a70042012-11-13 03:22:17 +000060 return 0;
61}
Minkyu Kang9e408082011-01-24 15:33:50 +090062
Minkyu Kang9e408082011-01-24 15:33:50 +090063static unsigned short get_adc_value(int channel)
64{
65 struct s5p_adc *adc = (struct s5p_adc *)samsung_get_base_adc();
66 unsigned short ret = 0;
67 unsigned int reg;
68 unsigned int loop = 0;
69
70 writel(channel & 0xF, &adc->adcmux);
71 writel((1 << 14) | (49 << 6), &adc->adccon);
72 writel(1000 & 0xffff, &adc->adcdly);
73 writel(readl(&adc->adccon) | (1 << 16), &adc->adccon); /* 12 bit */
74 udelay(10);
75 writel(readl(&adc->adccon) | (1 << 0), &adc->adccon); /* Enable */
76 udelay(10);
77
78 do {
79 udelay(1);
80 reg = readl(&adc->adccon);
81 } while (!(reg & (1 << 15)) && (loop++ < 1000));
82
83 ret = readl(&adc->adcdat0) & 0xFFF;
84
85 return ret;
86}
87
Łukasz Majewski4d86bf02012-03-26 21:53:48 +000088static int adc_power_control(int on)
89{
90 int ret;
Łukasz Majewskic7336812012-11-13 03:21:55 +000091 struct pmic *p = pmic_get("MAX8998_PMIC");
92 if (!p)
93 return -ENODEV;
Łukasz Majewski4d86bf02012-03-26 21:53:48 +000094
95 if (pmic_probe(p))
96 return -1;
97
98 ret = pmic_set_output(p,
99 MAX8998_REG_ONOFF1,
100 MAX8998_LDO4, !!on);
101
102 return ret;
103}
104
Minkyu Kang9e408082011-01-24 15:33:50 +0900105static unsigned int get_hw_revision(void)
106{
107 int hwrev, mode0, mode1;
108
Łukasz Majewski4d86bf02012-03-26 21:53:48 +0000109 adc_power_control(1);
110
Minkyu Kang9e408082011-01-24 15:33:50 +0900111 mode0 = get_adc_value(1); /* HWREV_MODE0 */
112 mode1 = get_adc_value(2); /* HWREV_MODE1 */
113
114 /*
115 * XXX Always set the default hwrev as the latest board
116 * ADC = (voltage) / 3.3 * 4096
117 */
118 hwrev = 3;
119
120#define IS_RANGE(x, min, max) ((x) > (min) && (x) < (max))
121 if (IS_RANGE(mode0, 80, 200) && IS_RANGE(mode1, 80, 200))
122 hwrev = 0x0; /* 0.01V 0.01V */
123 if (IS_RANGE(mode0, 750, 1000) && IS_RANGE(mode1, 80, 200))
124 hwrev = 0x1; /* 610mV 0.01V */
125 if (IS_RANGE(mode0, 1300, 1700) && IS_RANGE(mode1, 80, 200))
126 hwrev = 0x2; /* 1.16V 0.01V */
127 if (IS_RANGE(mode0, 2000, 2400) && IS_RANGE(mode1, 80, 200))
128 hwrev = 0x3; /* 1.79V 0.01V */
129#undef IS_RANGE
130
131 debug("mode0: %d, mode1: %d, hwrev 0x%x\n", mode0, mode1, hwrev);
132
Łukasz Majewski4d86bf02012-03-26 21:53:48 +0000133 adc_power_control(0);
134
Minkyu Kang9e408082011-01-24 15:33:50 +0900135 return hwrev;
136}
137
138static void check_hw_revision(void)
139{
140 int hwrev;
141
142 hwrev = get_hw_revision();
143
144 board_rev |= hwrev;
145}
146
Lukasz Majewskiddc7e542011-12-15 10:32:12 +0100147#ifdef CONFIG_USB_GADGET
148static int s5pc210_phy_control(int on)
149{
Anatolij Gustschine03492c2011-12-19 04:20:04 +0000150 int ret = 0;
Łukasz Majewskic7336812012-11-13 03:21:55 +0000151 struct pmic *p = pmic_get("MAX8998_PMIC");
152 if (!p)
153 return -ENODEV;
Lukasz Majewskiddc7e542011-12-15 10:32:12 +0100154
155 if (pmic_probe(p))
156 return -1;
157
158 if (on) {
159 ret |= pmic_set_output(p,
160 MAX8998_REG_BUCK_ACTIVE_DISCHARGE3,
161 MAX8998_SAFEOUT1, LDO_ON);
162 ret |= pmic_set_output(p, MAX8998_REG_ONOFF1,
163 MAX8998_LDO3, LDO_ON);
164 ret |= pmic_set_output(p, MAX8998_REG_ONOFF2,
165 MAX8998_LDO8, LDO_ON);
166
167 } else {
168 ret |= pmic_set_output(p, MAX8998_REG_ONOFF2,
169 MAX8998_LDO8, LDO_OFF);
170 ret |= pmic_set_output(p, MAX8998_REG_ONOFF1,
171 MAX8998_LDO3, LDO_OFF);
172 ret |= pmic_set_output(p,
173 MAX8998_REG_BUCK_ACTIVE_DISCHARGE3,
174 MAX8998_SAFEOUT1, LDO_OFF);
175 }
176
177 if (ret) {
178 puts("MAX8998 LDO setting error!\n");
179 return -1;
180 }
181
182 return 0;
183}
184
185struct s3c_plat_otg_data s5pc210_otg_data = {
186 .phy_control = s5pc210_phy_control,
187 .regs_phy = EXYNOS4_USBPHY_BASE,
188 .regs_otg = EXYNOS4_USBOTG_BASE,
189 .usb_phy_ctrl = EXYNOS4_USBPHY_CONTROL,
190 .usb_flags = PHY0_SLEEP,
191};
192#endif
Piotr Wilczek11a44792012-09-20 00:20:00 +0000193
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +0100194int board_usb_init(int index, enum usb_init_type init)
195{
196 debug("USB_udc_probe\n");
197 return s3c_udc_probe(&s5pc210_otg_data);
198}
199
200#ifdef CONFIG_USB_CABLE_CHECK
201int usb_cable_connected(void)
202{
203 return 0;
204}
205#endif
206
207int exynos_early_init_f(void)
Piotr Wilczek11a44792012-09-20 00:20:00 +0000208{
209 wdt_stop();
210
211 return 0;
212}
Piotr Wilczekff0fedd2012-10-19 05:34:03 +0000213
214#ifdef CONFIG_SOFT_SPI
215static void soft_spi_init(void)
216{
217 gpio_direction_output(CONFIG_SOFT_SPI_GPIO_SCLK,
218 CONFIG_SOFT_SPI_MODE & SPI_CPOL);
219 gpio_direction_output(CONFIG_SOFT_SPI_GPIO_MOSI, 1);
220 gpio_direction_input(CONFIG_SOFT_SPI_GPIO_MISO);
221 gpio_direction_output(CONFIG_SOFT_SPI_GPIO_CS,
222 !(CONFIG_SOFT_SPI_MODE & SPI_CS_HIGH));
223}
224
225void spi_cs_activate(struct spi_slave *slave)
226{
227 gpio_set_value(CONFIG_SOFT_SPI_GPIO_CS,
228 !(CONFIG_SOFT_SPI_MODE & SPI_CS_HIGH));
229 SPI_SCL(1);
230 gpio_set_value(CONFIG_SOFT_SPI_GPIO_CS,
231 CONFIG_SOFT_SPI_MODE & SPI_CS_HIGH);
232}
233
234void spi_cs_deactivate(struct spi_slave *slave)
235{
236 gpio_set_value(CONFIG_SOFT_SPI_GPIO_CS,
237 !(CONFIG_SOFT_SPI_MODE & SPI_CS_HIGH));
238}
239
240int spi_cs_is_valid(unsigned int bus, unsigned int cs)
241{
242 return bus == 0 && cs == 0;
243}
244
245void universal_spi_scl(int bit)
246{
247 gpio_set_value(CONFIG_SOFT_SPI_GPIO_SCLK, bit);
248}
249
250void universal_spi_sda(int bit)
251{
252 gpio_set_value(CONFIG_SOFT_SPI_GPIO_MOSI, bit);
253}
254
255int universal_spi_read(void)
256{
257 return gpio_get_value(CONFIG_SOFT_SPI_GPIO_MISO);
258}
259#endif
260
Piotr Wilczekd984b9f2012-10-19 05:34:07 +0000261static void init_pmic_lcd(void)
262{
263 unsigned char val;
264 int ret = 0;
265
Minkyu Kang48e91ca2012-12-09 20:50:11 +0000266 struct pmic *p = pmic_get("MAX8998_PMIC");
Piotr Wilczekd984b9f2012-10-19 05:34:07 +0000267
Minkyu Kangfbef8e62012-12-10 22:43:57 +0900268 if (!p)
269 return;
270
Piotr Wilczekd984b9f2012-10-19 05:34:07 +0000271 if (pmic_probe(p))
272 return;
273
274 /* LDO7 1.8V */
275 val = 0x02; /* (1800 - 1600) / 100; */
276 ret |= pmic_reg_write(p, MAX8998_REG_LDO7, val);
277
278 /* LDO17 3.0V */
279 val = 0xe; /* (3000 - 1600) / 100; */
280 ret |= pmic_reg_write(p, MAX8998_REG_LDO17, val);
281
282 /* Disable unneeded regulators */
283 /*
284 * ONOFF1
285 * Buck1 ON, Buck2 OFF, Buck3 ON, Buck4 ON
286 * LDO2 ON, LDO3 OFF, LDO4 OFF, LDO5 ON
287 */
288 val = 0xB9;
289 ret |= pmic_reg_write(p, MAX8998_REG_ONOFF1, val);
290
291 /* ONOFF2
292 * LDO6 OFF, LDO7 ON, LDO8 OFF, LDO9 ON,
293 * LDO10 OFF, LDO11 OFF, LDO12 OFF, LDO13 OFF
294 */
295 val = 0x50;
296 ret |= pmic_reg_write(p, MAX8998_REG_ONOFF2, val);
297
298 /* ONOFF3
299 * LDO14 OFF, LDO15 OFF, LGO16 OFF, LDO17 OFF
300 * EPWRHOLD OFF, EBATTMON OFF, ELBCNFG2 OFF, ELBCNFG1 OFF
301 */
302 val = 0x00;
303 ret |= pmic_reg_write(p, MAX8998_REG_ONOFF3, val);
304
305 if (ret)
306 puts("LCD pmic initialisation error!\n");
307}
308
Ajay Kumar29fd5702013-02-21 23:52:57 +0000309void exynos_cfg_lcd_gpio(void)
Piotr Wilczekd984b9f2012-10-19 05:34:07 +0000310{
311 unsigned int i, f3_end = 4;
312
313 for (i = 0; i < 8; i++) {
314 /* set GPF0,1,2[0:7] for RGB Interface and Data lines (32bit) */
315 s5p_gpio_cfg_pin(&gpio1->f0, i, GPIO_FUNC(2));
316 s5p_gpio_cfg_pin(&gpio1->f1, i, GPIO_FUNC(2));
317 s5p_gpio_cfg_pin(&gpio1->f2, i, GPIO_FUNC(2));
318 /* pull-up/down disable */
319 s5p_gpio_set_pull(&gpio1->f0, i, GPIO_PULL_NONE);
320 s5p_gpio_set_pull(&gpio1->f1, i, GPIO_PULL_NONE);
321 s5p_gpio_set_pull(&gpio1->f2, i, GPIO_PULL_NONE);
322
323 /* drive strength to max (24bit) */
324 s5p_gpio_set_drv(&gpio1->f0, i, GPIO_DRV_4X);
325 s5p_gpio_set_rate(&gpio1->f0, i, GPIO_DRV_SLOW);
326 s5p_gpio_set_drv(&gpio1->f1, i, GPIO_DRV_4X);
327 s5p_gpio_set_rate(&gpio1->f1, i, GPIO_DRV_SLOW);
328 s5p_gpio_set_drv(&gpio1->f2, i, GPIO_DRV_4X);
329 s5p_gpio_set_rate(&gpio1->f0, i, GPIO_DRV_SLOW);
330 }
331
332 for (i = 0; i < f3_end; i++) {
333 /* set GPF3[0:3] for RGB Interface and Data lines (32bit) */
334 s5p_gpio_cfg_pin(&gpio1->f3, i, GPIO_FUNC(2));
335 /* pull-up/down disable */
336 s5p_gpio_set_pull(&gpio1->f3, i, GPIO_PULL_NONE);
337 /* drive strength to max (24bit) */
338 s5p_gpio_set_drv(&gpio1->f3, i, GPIO_DRV_4X);
339 s5p_gpio_set_rate(&gpio1->f3, i, GPIO_DRV_SLOW);
340 }
341
342 /* gpio pad configuration for LCD reset. */
343 s5p_gpio_cfg_pin(&gpio2->y4, 5, GPIO_OUTPUT);
344
345 spi_init();
346}
347
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +0100348int mipi_power(void)
349{
350 return 0;
351}
352
Ajay Kumar29fd5702013-02-21 23:52:57 +0000353void exynos_reset_lcd(void)
Piotr Wilczekd984b9f2012-10-19 05:34:07 +0000354{
355 s5p_gpio_set_value(&gpio2->y4, 5, 1);
356 udelay(10000);
357 s5p_gpio_set_value(&gpio2->y4, 5, 0);
358 udelay(10000);
359 s5p_gpio_set_value(&gpio2->y4, 5, 1);
360 udelay(100);
361}
362
Ajay Kumar29fd5702013-02-21 23:52:57 +0000363void exynos_lcd_power_on(void)
Piotr Wilczekd984b9f2012-10-19 05:34:07 +0000364{
Minkyu Kang48e91ca2012-12-09 20:50:11 +0000365 struct pmic *p = pmic_get("MAX8998_PMIC");
Piotr Wilczekd984b9f2012-10-19 05:34:07 +0000366
Minkyu Kangfbef8e62012-12-10 22:43:57 +0900367 if (!p)
368 return;
369
Piotr Wilczekd984b9f2012-10-19 05:34:07 +0000370 if (pmic_probe(p))
371 return;
372
373 pmic_set_output(p, MAX8998_REG_ONOFF3, MAX8998_LDO17, LDO_ON);
374 pmic_set_output(p, MAX8998_REG_ONOFF2, MAX8998_LDO7, LDO_ON);
375}
376
Ajay Kumar29fd5702013-02-21 23:52:57 +0000377void exynos_cfg_ldo(void)
378{
379 ld9040_cfg_ldo();
380}
381
382void exynos_enable_ldo(unsigned int onoff)
383{
384 ld9040_enable_ldo(onoff);
385}
386
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +0100387int exynos_init(void)
Piotr Wilczekff0fedd2012-10-19 05:34:03 +0000388{
389 gpio1 = (struct exynos4_gpio_part1 *) EXYNOS4_GPIO_PART1_BASE;
390 gpio2 = (struct exynos4_gpio_part2 *) EXYNOS4_GPIO_PART2_BASE;
391
392 gd->bd->bi_arch_number = MACH_TYPE_UNIVERSAL_C210;
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +0100393
394 switch (get_hwrev()) {
395 case 0:
396 /*
397 * Set the low to enable LDO_EN
398 * But when you use the test board for eMMC booting
399 * you should set it HIGH since it removes the inverter
400 */
401 /* MASSMEMORY_EN: XMDMDATA_6: GPE3[6] */
402 s5p_gpio_direction_output(&gpio1->e3, 6, 0);
403 break;
404 default:
405 /*
406 * Default reset state is High and there's no inverter
407 * But set it as HIGH to ensure
408 */
409 /* MASSMEMORY_EN: XMDMADDR_3: GPE1[3] */
410 s5p_gpio_direction_output(&gpio1->e1, 3, 1);
411 break;
412 }
Piotr Wilczekff0fedd2012-10-19 05:34:03 +0000413
Piotr Wilczekff0fedd2012-10-19 05:34:03 +0000414#ifdef CONFIG_SOFT_SPI
415 soft_spi_init();
416#endif
417 check_hw_revision();
418 printf("HW Revision:\t0x%x\n", board_rev);
419
420 return 0;
421}
Przemyslaw Marczak679549d2014-01-22 11:24:12 +0100422
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +0100423void exynos_lcd_misc_init(vidinfo_t *vid)
Przemyslaw Marczak679549d2014-01-22 11:24:12 +0100424{
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +0100425#ifdef CONFIG_TIZEN
426 get_tizen_logo_info(vid);
Piotr Wilczek815a6072014-01-22 15:54:34 +0100427#endif
Piotr Wilczek3f41ffe2014-03-07 14:59:47 +0100428
429 /* for LD9040. */
430 vid->pclk_name = 1; /* MPLL */
431 vid->sclk_div = 1;
432
433 setenv("lcdinfo", "lcd=ld9040");
Przemyslaw Marczak679549d2014-01-22 11:24:12 +0100434}