1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Copyright (C) 2015 Samsung Electronics
4  * Przemyslaw Marczak <p.marczak@samsung.com>
5  */
6 
7 #include <common.h>
8 #include <adc.h>
9 #include <dm.h>
10 #include <errno.h>
11 #include <fdtdec.h>
12 #include <asm/global_data.h>
13 #include <linux/delay.h>
14 #include <power/pmic.h>
15 #include <power/regulator.h>
16 #include <power/s2mps11.h>
17 #include <samsung/exynos5-dt-types.h>
18 #include <samsung/misc.h>
19 
20 DECLARE_GLOBAL_DATA_PTR;
21 
22 static const struct udevice_id board_ids[] = {
23 	{ .compatible = "samsung,odroidxu3", .data = EXYNOS5_BOARD_ODROID_XU3 },
24 	{ .compatible = "samsung,exynos5", .data = EXYNOS5_BOARD_GENERIC },
25 	{ },
26 };
27 
28 /**
29  * Odroix XU3/XU4/HC1/HC2 board revisions (from HC1+_HC2_MAIN_REV0.1_20171017.pdf):
30  * Rev   ADCmax  Board
31  * 0.1     0     XU3 0.1
32  * 0.2   372     XU3 0.2 | XU3L - no DISPLAYPORT (probe I2C0:0x40 / INA231)
33  * 0.3  1280     XU4 0.1
34  * 0.4   739     XU4 0.2
35  * 0.5  1016     XU4+Air0.1 (Passive cooling)
36  * 0.6  1309     XU4-HC1 0.1
37  * 0.7  1470     XU4-HC1+ 0.1 (HC2)
38  * Use +1% for ADC value tolerance in the array below, the code loops until
39  * the measured ADC value is lower than then ADCmax from the array.
40  */
41 struct odroid_rev_info odroid_info[] = {
42 	{ EXYNOS5_BOARD_ODROID_XU3_REV01, 1, 10, "xu3" },
43 	{ EXYNOS5_BOARD_ODROID_XU3_REV02, 2, 375, "xu3" },
44 	{ EXYNOS5_BOARD_ODROID_XU4_REV01, 1, 1293, "xu4" },
45 	{ EXYNOS5_BOARD_ODROID_HC1_REV01, 1, 1322, "hc1" },
46 	{ EXYNOS5_BOARD_ODROID_HC2_REV01, 1, 1484, "hc1" },
47 	{ EXYNOS5_BOARD_ODROID_UNKNOWN, 0, 4095, "unknown" },
48 };
49 
odroid_get_rev(void)50 static unsigned int odroid_get_rev(void)
51 {
52 	int i;
53 
54 	for (i = 0; i < ARRAY_SIZE(odroid_info); i++) {
55 		if (odroid_info[i].board_type == gd->board_type)
56 			return odroid_info[i].board_rev;
57 	}
58 
59 	return 0;
60 }
61 
62 /*
63  * Read ADC at least twice and check the resuls.  If regulator providing voltage
64  * on to measured point was just turned on, first reads might require time
65  * to stabilize.
66  */
odroid_get_adc_val(unsigned int * adcval)67 static int odroid_get_adc_val(unsigned int *adcval)
68 {
69 	unsigned int adcval_prev = 0;
70 	int ret, retries = 20;
71 
72 	ret = adc_channel_single_shot("adc@12D10000", CONFIG_ODROID_REV_AIN,
73 				      &adcval_prev);
74 	if (ret)
75 		return ret;
76 
77 	while (retries--) {
78 		mdelay(5);
79 
80 		ret = adc_channel_single_shot("adc@12D10000",
81 					      CONFIG_ODROID_REV_AIN, adcval);
82 		if (ret)
83 			return ret;
84 
85 		/*
86 		 * If difference between ADC reads is less than 3%,
87 		 * accept the result
88 		 */
89 		if ((100 * abs(*adcval - adcval_prev) / adcval_prev) < 3)
90 			return ret;
91 
92 		adcval_prev = *adcval;
93 	}
94 
95 	return ret;
96 }
97 
odroid_get_board_type(void)98 static int odroid_get_board_type(void)
99 {
100 	unsigned int adcval;
101 	int ret, i;
102 
103 	ret = odroid_get_adc_val(&adcval);
104 	if (ret)
105 		goto rev_default;
106 
107 	for (i = 0; i < ARRAY_SIZE(odroid_info); i++) {
108 		/* ADC tolerance: +1% */
109 		if (adcval < odroid_info[i].adc_val)
110 			return odroid_info[i].board_type;
111 	}
112 
113 rev_default:
114 	return EXYNOS5_BOARD_ODROID_XU3;
115 }
116 
117 /**
118  * odroid_get_type_str - returns pointer to one of the board type string.
119  * Board types: "xu3", "xu3-lite", "xu4". However the "xu3lite" can be
120  * detected only when the i2c controller is ready to use. Fortunately,
121  * XU3 and XU3L are compatible, and the information about board lite
122  * revision is needed before booting the linux, to set proper environment
123  * variable: $fdtfile.
124  */
odroid_get_type_str(void)125 static const char *odroid_get_type_str(void)
126 {
127 	const char *type_xu3l = "xu3-lite";
128 	struct udevice *dev, *chip;
129 	int i, ret;
130 
131 	if (gd->board_type != EXYNOS5_BOARD_ODROID_XU3_REV02)
132 		goto exit;
133 
134 	ret = pmic_get("s2mps11_pmic@66", &dev);
135 	if (ret)
136 		goto exit;
137 
138 	/* Enable LDO26: 3.0V */
139 	ret = pmic_reg_write(dev, S2MPS11_REG_L26CTRL,
140 			     S2MPS11_LDO26_ENABLE);
141 	if (ret)
142 		goto exit;
143 
144 	/* Check XU3Lite by probe INA231 I2C0:0x40 */
145 	ret = uclass_get_device(UCLASS_I2C, 0, &dev);
146 	if (ret)
147 		goto exit;
148 
149 	ret = dm_i2c_probe(dev, 0x40, 0x0, &chip);
150 	if (ret)
151 		return type_xu3l;
152 
153 exit:
154 	for (i = 0; i < ARRAY_SIZE(odroid_info); i++) {
155 		if (odroid_info[i].board_type == gd->board_type)
156 			return odroid_info[i].name;
157 	}
158 
159 	return NULL;
160 }
161 
board_is_odroidxu3(void)162 bool board_is_odroidxu3(void)
163 {
164 	if (gd->board_type >= EXYNOS5_BOARD_ODROID_XU3 &&
165 	    gd->board_type <= EXYNOS5_BOARD_ODROID_XU3_REV02)
166 		return true;
167 
168 	return false;
169 }
170 
board_is_odroidxu4(void)171 bool board_is_odroidxu4(void)
172 {
173 	if (gd->board_type == EXYNOS5_BOARD_ODROID_XU4_REV01)
174 		return true;
175 
176 	return false;
177 }
178 
board_is_odroidhc1(void)179 bool board_is_odroidhc1(void)
180 {
181 	if (gd->board_type == EXYNOS5_BOARD_ODROID_HC1_REV01)
182 		return true;
183 
184 	return false;
185 }
186 
board_is_odroidhc2(void)187 bool board_is_odroidhc2(void)
188 {
189 	if (gd->board_type == EXYNOS5_BOARD_ODROID_HC2_REV01)
190 		return true;
191 
192 	return false;
193 }
194 
board_is_generic(void)195 bool board_is_generic(void)
196 {
197 	if (gd->board_type == EXYNOS5_BOARD_GENERIC)
198 		return true;
199 
200 	return false;
201 }
202 
203 /**
204  * get_board_rev() - return detected board revision.
205  *
206  * @return:  return board revision number for XU3 or 0 for generic
207  */
get_board_rev(void)208 u32 get_board_rev(void)
209 {
210 	if (board_is_generic())
211 		return 0;
212 
213 	return odroid_get_rev();
214 }
215 
216 /**
217  * get_board_type() - returns board type string.
218  *
219  * @return:  return board type string for XU3 or empty string for generic
220  */
get_board_type(void)221 const char *get_board_type(void)
222 {
223 	const char *generic = "";
224 
225 	if (board_is_generic())
226 		return generic;
227 
228 	return odroid_get_type_str();
229 }
230 
231 /**
232  * set_board_type() - set board type in gd->board_type.
233  * As default type set EXYNOS5_BOARD_GENERIC. If Odroid is detected,
234  * set its proper type based on device tree.
235  *
236  * This might be called early when some more specific ways to detect revision
237  * are not yet available.
238  */
set_board_type(void)239 void set_board_type(void)
240 {
241 	const struct udevice_id *of_match = board_ids;
242 	int ret;
243 
244 	gd->board_type = EXYNOS5_BOARD_GENERIC;
245 
246 	while (of_match->compatible) {
247 		ret = fdt_node_check_compatible(gd->fdt_blob, 0,
248 						of_match->compatible);
249 		if (ret)
250 			of_match++;
251 
252 		gd->board_type = of_match->data;
253 		break;
254 	}
255 }
256 
257 /**
258  * set_board_revision() - set detailed board type in gd->board_type.
259  * Should be called when resources (e.g. regulators) are available
260  * so ADC can be used to detect the specific revision of a board.
261  */
set_board_revision(void)262 void set_board_revision(void)
263 {
264 	if (board_is_odroidxu3())
265 		gd->board_type = odroid_get_board_type();
266 }
267