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Henrik Nordstromaa382ad2014-06-13 22:55:50 +02001/*
2 * (C) Copyright 2012
3 * Henrik Nordstrom <henrik@henriknordstrom.net>
4 *
5 * SPDX-License-Identifier: GPL-2.0+
6 */
7
8#include <common.h>
9#include <i2c.h>
Paul Kocialkowski66cc0952015-03-22 18:07:11 +010010#include <asm/arch/gpio.h>
Henrik Nordstromaa382ad2014-06-13 22:55:50 +020011#include <axp209.h>
12
Henrik Nordstromaa382ad2014-06-13 22:55:50 +020013static int axp209_write(enum axp209_reg reg, u8 val)
14{
15 return i2c_write(0x34, reg, 1, &val, 1);
16}
17
18static int axp209_read(enum axp209_reg reg, u8 *val)
19{
20 return i2c_read(0x34, reg, 1, val, 1);
21}
22
23static u8 axp209_mvolt_to_cfg(int mvolt, int min, int max, int div)
24{
25 if (mvolt < min)
26 mvolt = min;
27 else if (mvolt > max)
28 mvolt = max;
29
30 return (mvolt - min) / div;
31}
32
33int axp209_set_dcdc2(int mvolt)
34{
35 int rc;
36 u8 cfg, current;
37
38 cfg = axp209_mvolt_to_cfg(mvolt, 700, 2275, 25);
39
40 /* Do we really need to be this gentle? It has built-in voltage slope */
41 while ((rc = axp209_read(AXP209_DCDC2_VOLTAGE, &current)) == 0 &&
42 current != cfg) {
43 if (current < cfg)
44 current++;
45 else
46 current--;
47
48 rc = axp209_write(AXP209_DCDC2_VOLTAGE, current);
49 if (rc)
50 break;
51 }
52
53 return rc;
54}
55
56int axp209_set_dcdc3(int mvolt)
57{
58 u8 cfg = axp209_mvolt_to_cfg(mvolt, 700, 3500, 25);
59
60 return axp209_write(AXP209_DCDC3_VOLTAGE, cfg);
61}
62
63int axp209_set_ldo2(int mvolt)
64{
65 int rc;
66 u8 cfg, reg;
67
68 cfg = axp209_mvolt_to_cfg(mvolt, 1800, 3300, 100);
69
70 rc = axp209_read(AXP209_LDO24_VOLTAGE, &reg);
71 if (rc)
72 return rc;
73
74 /* LDO2 configuration is in upper 4 bits */
75 reg = (reg & 0x0f) | (cfg << 4);
76 return axp209_write(AXP209_LDO24_VOLTAGE, reg);
77}
78
79int axp209_set_ldo3(int mvolt)
80{
81 u8 cfg;
82
83 if (mvolt == -1)
84 cfg = 0x80; /* determined by LDO3IN pin */
85 else
Iain Paton71a7b3b2015-03-25 16:03:26 +000086 cfg = axp209_mvolt_to_cfg(mvolt, 700, 3500, 25);
Henrik Nordstromaa382ad2014-06-13 22:55:50 +020087
88 return axp209_write(AXP209_LDO3_VOLTAGE, cfg);
89}
90
91int axp209_set_ldo4(int mvolt)
92{
93 int rc;
94 static const int vindex[] = {
95 1250, 1300, 1400, 1500, 1600, 1700, 1800, 1900, 2000, 2500,
96 2700, 2800, 3000, 3100, 3200, 3300
97 };
98 u8 cfg, reg;
99
100 /* Translate mvolt to register cfg value, requested <= selected */
101 for (cfg = 15; vindex[cfg] > mvolt && cfg > 0; cfg--);
102
103 rc = axp209_read(AXP209_LDO24_VOLTAGE, &reg);
104 if (rc)
105 return rc;
106
107 /* LDO4 configuration is in lower 4 bits */
108 reg = (reg & 0xf0) | (cfg << 0);
109 return axp209_write(AXP209_LDO24_VOLTAGE, reg);
110}
111
112int axp209_init(void)
113{
114 u8 ver;
Hans de Goedec004b9f2015-01-17 16:39:20 +0100115 int i, rc;
Henrik Nordstromaa382ad2014-06-13 22:55:50 +0200116
117 rc = axp209_read(AXP209_CHIP_VERSION, &ver);
118 if (rc)
119 return rc;
120
121 /* Low 4 bits is chip version */
122 ver &= 0x0f;
123
124 if (ver != 0x1)
125 return -1;
126
Hans de Goedec004b9f2015-01-17 16:39:20 +0100127 /* Mask all interrupts */
128 for (i = AXP209_IRQ_ENABLE1; i <= AXP209_IRQ_ENABLE5; i++) {
129 rc = axp209_write(i, 0);
130 if (rc)
131 return rc;
132 }
133
Henrik Nordstromaa382ad2014-06-13 22:55:50 +0200134 return 0;
135}
136
137int axp209_poweron_by_dc(void)
138{
139 u8 v;
140
141 if (axp209_read(AXP209_POWER_STATUS, &v))
142 return 0;
143
144 return (v & AXP209_POWER_STATUS_ON_BY_DC);
145}
146
147int axp209_power_button(void)
148{
149 u8 v;
150
151 if (axp209_read(AXP209_IRQ_STATUS5, &v))
152 return 0;
153
154 axp209_write(AXP209_IRQ_STATUS5, AXP209_IRQ5_PEK_DOWN);
155
156 return v & AXP209_IRQ5_PEK_DOWN;
157}